I Want One Soy Wax That Can Survive Courier Shipping from Pune to Delhi in May — What Properties Should I Test Before Buying 100 Kg?

I Want One Soy Wax That Can Survive Courier Shipping from Pune to Delhi in May — What Properties Should I Test Before Buying 100 Kg?

 

CSI 464 wax ₹5,074.00 / 10 kg CSI 468 wax from ₹325.00 / 500 g Sandalwood oil from ₹93.22 / 15 g
CSI soy wax buying guides · Indian heat & shipping
Which soy wax properties to test for a hot courier route, how to test them against your own logged temperatures, and when 100 kg is justified.
★★★★☆
"Quality of the wick is good for jar candles, team can work on the pricing and delivery timelines."
Monika DeepVerified buyer · Oct 2025
Eco Candle Wicks
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"Quality wick, works very well"
AshwiniSep 2025
Eco Candle Wicks
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"Good quality .... if possible delivery date would be try little bit quick please"
Subhankar RoyVerified buyer · Sep 2024
Eco Candle Wicks
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"This needle is very helpful as it doesn't damage the mould and there is no leakage of wax while pouring.. I would definitely recommend this .."
LJAug 2024
Premium Candle Wicking Needle
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"Good one"
Sneha TamangVerified buyer · Apr 2025
Premium Candle Wicking Needle
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"This bamboo wick holder doesn't exert any pressure on the wicks… and it is a very useful product 👌🏻👌🏻.."
Lalitha JaganAug 2024
Bamboo Wick Holder
★★★★☆
"Quality of the wick is good for jar candles, team can work on the pricing and delivery timelines."
Monika DeepVerified buyer · Oct 2025
Eco Candle Wicks
★★★★★
"Quality wick, works very well"
AshwiniSep 2025
Eco Candle Wicks
★★★★☆
"Good quality .... if possible delivery date would be try little bit quick please"
Subhankar RoyVerified buyer · Sep 2024
Eco Candle Wicks
★★★★★
"This needle is very helpful as it doesn't damage the mould and there is no leakage of wax while pouring.. I would definitely recommend this .."
LJAug 2024
Premium Candle Wicking Needle
★★★★★
"Good one"
Sneha TamangVerified buyer · Apr 2025
Premium Candle Wicking Needle
★★★★★
"This bamboo wick holder doesn't exert any pressure on the wicks… and it is a very useful product 👌🏻👌🏻.."
Lalitha JaganAug 2024
Bamboo Wick Holder
Reviews collected and published through Judge.me on candlemakingsuppliesindia.store. They are general reviews of the wicks and wick tools named on each card, not assessments of the heat-qualification method set out below. Wording is unedited.
✓ Container soy wax bags 500 g to 10 kg ✓ Wax prices re-checked 1 October 2026 ✓ GST invoicing · MSDS on request
Indian Heat & Shipping · Cluster Hub
No CSI wax — and no wax anyone sells — comes with proof that it survives your route. This page turns a logged parcel into three test arms, separates the wax from the fragrance with unscented twins, and ends in a decision rule that tells you which wax, if any, earns the 100 kg order.
₹5,834.56
materials for a 20-candle heat qualification of two CSI soy waxes · CSI live pricing, re-checked 1 October 2026
Quick answers — read this first
Which soy wax survives Pune to Delhi in May? No published data answers that for any CSI wax. Log the route inside a real parcel, then test your finished candle in each candidate wax against twins that stayed home.

What properties should I test? Seven on the finished candle: surface, firmness and recovery, fragrance on the surface, glass contact, wick position, cold throw and the first burn after exposure. See the list.

Is melting point enough? No. Only CSI 468 publishes one (50–53°C), and a candle can sweat, lean or lift from the glass without melting. Melting point is a pour-planning fact, not a shipping verdict.

What does testing cost before 100 kg? ₹5,834.56 for 20 candles across two waxes — 11.5% of 100 kg of CSI 464 (₹50,740.00). See the priced kit.
The short answer
Answer: Test the finished candle after realistic heat, not the wax's label: surface, recovery, sweating, glass contact, wick lean, cold throw and the first burn — each against an unexposed twin.
Why: CSI publishes no heat-survival data, only CSI 468 has a published melting point, and courier failures are rarely a simple melt.
Method: Log the parcel route; build R / M / H arms from it; unscented + 8% candles in each arm and a 10% rung in H; 20 candles for two waxes; recover 24 h; burn vs twin.
Qualifying a soy wax for a hot courier route — before the 100 kg order Example: CSI 464 vs CSI 468 · Sandalwood at 8% · 200 g White Matte jar · no heat-survival data exists, so your route sets the test 1 · LOG Logger inside a real parcel on the Pune → Delhi route peak ___°C hours above ___ 2 · DESIGN 2 waxes × 3 temperature arms unscented + 8% + 10% rung = 20 candles 3 · EXPOSE R: workshop M: your logged peak H: M + your margin no flame, packed as you ship 4 · RECOVER 24 h back indoors blot · dent · wick lean · glass · top photo vs the R-arm twin 5 · BURN Exposed candle vs never-exposed twin melt pool, flame, soot, throw → PASS / STOP Decision: buy the 100 kg only in the wax whose exposed candles match their R-arm twins on every safety line, e.g. CSI 464 as 10 × 10 kg = ₹50,740.00 or CSI 468 as 10 × 10 kg = ₹63,700.00 — or neither, and keep testing. Temperatures in the arms are yours to fill in; nothing here says any wax survives a temperature.
The route is logged first, and every temperature in the test comes from that log. Two candidate waxes are poured unscented and at the working load, exposed in a workshop arm, a logged-route arm and a margin arm, recovered for 24 hours, scored against their unexposed twins and then burned. Only a wax that passes every safety line moves to a 10 kg pilot and the balance of the 100 kg. Temperatures are blank on purpose — they are yours.
Straight answer
I want one soy wax that can survive courier shipping from Pune to Delhi in May — what properties should I test before buying 100 kg?
Test the finished candle after realistic heat, not the wax's label. CSI publishes no heat-survival data for any wax; only CSI 468 publishes a melting point (50–53°C), and a candle can sweat, lean or lift from the glass well before anything melts. So: put a min/max thermometer or logger in a real parcel on the Pune–Delhi route and record the peak and the hours warm. Build three arms from it — R (workshop), M (your logged peak) and H (M plus a margin you choose). Pour each candidate wax unscented and at your 8% load, plus a 10% rung in H, and score seven properties against unexposed twins: surface, firmness and recovery, blot-tested surface oil, glass contact, wick position, cold throw, and the first burn. The 20-candle kit for CSI 464 and CSI 468 costs ₹5,834.56. Buy the 100 kg — ten 10 kg bags, ₹50,740.00 or ₹63,700.00 — only in the wax that passes every safety line, and start with a 10 kg pilot.
One line: your route sets the temperature, a twin that never travelled sets the standard, and only a wax that matches it gets the 100 kg.
The complete pre-purchase heat qualification on this page — 20 candles: CSI 464 and CSI 468, each unscented and at 8% Sandalwood across three temperature arms, plus a 10% rung — costs ₹5,834.56 in CSI materials. That is 11.5% of a 100 kg order of Luxury Soy Wax CSI 464 (₹50,740.00) and 9.2% of 100 kg of Premium Coconut Soy Wax CSI 468 (₹63,700.00).
Buy Luxury Soy Wax CSI 464

Test what heat does to the finished candle, not what a label says about the wax

Nobody can sell you a soy wax that "survives Pune to Delhi in May". Your route has to prove it.

The question sounds like it should have a spec-sheet answer: pick the wax with the right number and order 100 kg. It does not, for two reasons. First, the number most people reach for — melting point — is published for only one CSI soy wax. CSI's product page for Premium Coconut Soy Wax CSI 468 states a melting point of 50–53°C. The page for CSI 464 lists 80–90°C, but that is the page's melt-and-pour working range, not the melting point of the solid wax, so the two figures cannot be compared. Luxury Soy Wax Chunks, Natural Soy Pearl Wax and the other soy waxes publish no melting point at all. Second, even a perfect melting-point figure would not answer your question. A candle in a courier van does not fail by melting into a puddle at one temperature. It softens, sweats fragrance, lifts from the glass, leans its wick or dulls its top, and it may do that well below any melting point — or not at all — depending on the oil, the load, the jar, the packing and how long the heat lasts.

So the honest answer is a method, not a wax name. Log the real temperatures inside a parcel on the real route. Pour the finished candle you intend to sell — same jar, same oil, same load — in each candidate wax, plus unscented twins that separate the wax from the fragrance. Expose them to three temperature arms built from your logged numbers. Let them recover indoors, score them against twins that never left the workshop, then burn the exposed candles beside the unexposed ones. Only the wax that passes every safety line at your working load, in your margin arm, gets the 100 kg order. CSI publishes no heat-survival data for any wax, and this page will not invent any.

The properties worth testing are therefore properties of the finished candle after heat: does the surface stay intact, does fragrance oil appear on it, does the wax stay bonded to the glass, does the wick stay upright and centred, does the candle come back to its original firmness and look when it cools, and does it still burn and throw like a candle that was never in a van? Every sibling in this cluster takes one of those properties — or one route, one season, one storage problem — and goes deeper. This page sets out the whole qualification once, priced, with a decision rule that ends in a pack-size order.

The CSI principle
A wax does not survive a route. A finished candle does — or does not — and only a logged route and a control twin can tell you which.
Melting point, page adjectives and a supplier's "stable in Indian climate" are starting points to test, never evidence that your jar, oil and load will arrive intact.

The seven properties to test before a hot-route bulk order

Here is the list, with why heat reaches each property and how you measure it with nothing more than a scale, a ruler, tissue paper and a phone camera. The measurements are deliberately simple so that you can repeat them on every candle, every time, and compare them across arms. Write the pass rule before the first parcel moves — not after you see the results.

Finished candle after heat exposure · general candle-making practice, not CSI measurements
What to test, why heat reaches it, and how to read it
Property Why heat can change it How you measure it Pass rule (write it first)
1 · Surface integrity Warm wax softens; the top can dull, pit, wrinkle or slump Photo under the same light; 0–3 surface score No worse than the R-arm twin after 24 h recovery
2 · Firmness and recovery Softening is often reversible — the question is how far and how fast Thumb-press or a fixed weighted dent (method below), at 0 h and 24 h Back to the R-arm twin's reading within your recovery window
3 · Fragrance on the surface Warm wax can release oil it held when cool: sweat, film or droplets Blot test with one sheet of tissue; photograph the sheet Blot no wetter than the unscented twin from the same arm
4 · Glass contact Wax and glass expand and contract differently; adhesion can let go Look through the base and sides; mark any wet spot or pull-away No new pull-away area larger than your cosmetic standard
5 · Wick position A soft top lets the wick lean or drift in transit Measure lean and off-centre distance in mm Within your trimming / re-centring tolerance; no wick buried
6 · Cold throw after exposure Heat can drive off or redistribute fragrance in the set wax Blind sniff vs the R-arm twin, same cure age Equal or within one point on your 0–5 scale
7 · Burn after exposure Surface oil, wick lean or a changed top can alter the first burn Matched burn of exposed candle vs R-arm twin Safety: no taller flame, no more soot, no hotter jar than the twin

Notice what is not on the list: "melting point", "hardness" and "heat resistance" as numbers. They are inputs a wax maker may publish; they are not what your customer opens. Whether softness in summer shipping calls for a higher-melting wax or a blend change deals with the melting-point question directly, and a candle that softens in heat but firms again indoors sets out when reversible softening is acceptable for commercial shipping.

A dent test you can repeat
Pick one blunt object — the flat end of a marker, a coin taped to a pencil — and one weight you can repeat, for example a 100 g weight stacked on top for ten seconds. Press the same spot on every candle (say 1 cm from the wick) at 0 h and 24 h after exposure and measure the dent with a ruler or feeler card. This is an improvised, labelled working method, not a hardness standard. Its value is that it is identical across every wax, arm and day.

Step one: log the route before you choose a temperature

The workshop thermometer tells you about the workshop. The courier van is a different building.

Most heat-test advice starts with a temperature someone else chose. Start with your own. Put a min/max thermometer or a small temperature data logger (neither is a CSI item; buy one locally) inside a real parcel — your actual box, your actual packing — and send it on the actual route: Pune to a friend, a customer or your own address in Delhi, in the month you care about. A logger is better than a min/max thermometer because it records how long the parcel spent warm, not just the peak. Send two or three parcels if you can, because one trip is one day's weather and one driver's van.

General climate knowledge is enough to tell you that north-west India's May–June heat and a closed vehicle make a hard combination, and that a parcel can sit in a hub, a van and a doorstep on the same trip. It is not enough to tell you the number inside your box. Courier networks, packing and dispatch days all change it. This page therefore never says "Delhi in May reaches X". It gives you a sheet to fill in, and builds the test arms from what you write on it. Whether you should test above your normal workshop temperature when you ship across India explains why the workshop is never the worst case, and how to simulate hot courier conditions when comparing two waxes covers ways to recreate the logged profile at home.

Fill in from your logger · one row per test parcel
Route log sheet: what the parcel actually experienced
Field Parcel 1 Parcel 2 Parcel 3 How you use it
Route and dispatch date Pune → Delhi, ___ ___ ___ Repeat in the month you will ship
Packing (box, filler, inner wrap) ___ ___ ___ Must match production packing
Highest reading inside the parcel ___°C ___°C ___°C Sets the M arm
Hours above your workshop temperature ___ h ___ h ___ h Sets the exposure time
Number of warm–cool cycles (day/night) ___ ___ ___ Sets how many cycles to repeat
Days in transit ___ ___ ___ Total exposure window
Condition of a dummy candle sent with it ___ ___ ___ A free extra data point
Testing at the temperature you fear instead of the one you measured. A maker reads that summer is brutal, heats test candles until they visibly fail and concludes no soy wax can ship. Or the reverse: tests in the studio, sees perfect candles and ships. Both are guesses. Fix: the M arm is your highest logged reading for your logged duration; the H arm adds a margin you choose and write down in advance. An example condition — a closed chamber or closed car at about 40–45°C for 6 hours — is useful only until your logger gives you real numbers. Then replace it.

Step two: a design that separates wax, fragrance load and temperature

A heat problem in a finished candle has three possible owners: the wax, the fragrance load, and the exposure. A test that changes all three at once can only tell you that something went wrong. The design below changes one at a time and keeps a twin for every comparison. It uses two candidate waxes — Luxury Soy Wax CSI 464 and Premium Coconut Soy Wax CSI 468 — because both are container waxes whose product pages publish a fragrance ceiling (CSI 464 up to 10%, CSI 468 up to 13%), which lets the same 8% formula and a 10% rung run in both. That choice is a convenience, not a prediction: no CSI wax is claimed here to be more heat-stable than another.

Per wax · 200 g White Matte jar · Sandalwood · labelled working practice
The 20-candle heat design: three arms × unscented and scented
Candle R · workshop arm M · logged-route arm H · margin arm What it isolates
Unscented (0%) 1 1 1 The wax alone — any change here is wax + heat
Working load 8% (16 g oil + 184 g wax) 2 2 2 Your real product; one burns, one stays for storage
Upper rung 10% (20 g oil + 180 g wax) — — 1 Whether load headroom matters under heat
Per wax 3 3 4 10 candles
Both waxes 6 6 8 20 candles

Read the design across and down. If a wax's unscented candle changes in the M arm, the wax and the exposure own the problem, whatever the oil. If the unscented candle is fine but the 8% candle sweats, the wax–oil pairing at that load owns it. If 8% is fine and only the 10% rung sweats in the H arm, you have learned where your headroom ends. Sweating after a hot courier vehicle runs this separation with a full load ladder, and oil droplets after a warm room shows why the load is usually the cheapest variable to test first.

1
Pour all candles on the same day, from the same oil lotEach 8% candle takes 16 g of Sandalwood and 184 g of wax; each 10% rung 20 g and 180 g; each unscented candle 200 g of wax. Follow each wax maker's temperatures: CSI's page for CSI 468 states a pour temperature of 58–60°C; the CSI 464 page lists 80–90°C as its melt/pour working range. Label every base with wax, load, arm and number.
2
Cure to one checkpointUse the same cure checkpoint for every candle — the 48 hours, 7 days and 14 days used across CSI's guides are labelled examples. Heat-testing an uncured candle tests the cure, not the wax.
3
Pack exactly as you shipLids, inner wrap, box, filler and outer carton as in production. Heat reaches the candle through the packing, so a naked jar on a shelf is a different test. Heat-testing in retail packaging covers what the packing changes.
4
Expose the M and H arms; keep R at homeM follows your logged peak and duration; H adds your written margin. The R arm stays in the workshop, packed the same way, as the twin. Never heat a lit candle and never use a kitchen oven or a heater aimed at the parcels — both are uneven and a fire risk with fragrance oil.
5
Recover and score at 0 h and 24 hUnpack, photograph, dent-test and blot immediately, then again after 24 hours back indoors. A candle that softens and returns is a different result from one that stays changed.
6
Burn exposed against unexposedLight one M-arm 8% candle beside its R-arm twin, 3–4 hour cycles with full cool-down (a commonly used cycle — label it as yours), and record the burn lines in the scoring sheet.
7
Repeat the parcel onceIf time allows, send a second set of finished candles down the real route with the logger. A real trip catches handling, vibration and stacking that a box at home does not.

The scoring sheet: every exposed candle against its workshop twin

A heat test with no twin produces a photograph. A heat test with a twin produces a decision.

Fill in one sheet per candle at 0 h and 24 h after exposure, and a burn sheet for the candles you light. Safety lines have no tolerance. Cosmetic lines carry a tolerance you set before you begin. CSI publishes no numeric flame-height or jar-temperature limit; acceptance is no worse than the unexposed twin on every safety line, within your jar supplier's guidance and the candle fire-safety standard you work to (ASTM F2417 is a commonly cited US standard — read it for its own requirements).

Copy per candle · score at 0 h and 24 h · decide on the last column
Heat-exposure scoring sheet
Line Record R twin M arm H arm Pass rule
Weight before / after exposure Scale, 0.1 g ___ ___ ___ Record — loss can mean oil left the candle
Surface score 0 smooth – 3 slumped / pitted ___ ___ ___ No worse than R after 24 h
Dent depth Your fixed dent method, mm ___ ___ ___ Back within your tolerance of R by 24 h
Blot test 0 dry – 3 wet patch ___ ___ ___ No wetter than the same arm's unscented candle
Glass pull-away / wet spots Area sketched, photo ___ ___ ___ No new area beyond your cosmetic standard
Wick lean / off-centre mm from vertical / centre ___ ___ ___ Within your re-centring tolerance
Cold throw (blind) 0–5 ___ ___ ___ Within one point of R
First burn: flame, soot, jar reading Matched burn vs R twin ___ ___ ___ Safety: no worse than R
Calling a soft-but-recovered candle a failure — or a pass — without the burn. A candle that softens at the M arm and firms again overnight may be perfectly sellable, or its wick may have leaned two millimetres and now burns hot to one side. The photograph cannot tell you. Fix: every wax that reaches the decision has had at least one exposed 8% candle burned against its unexposed twin. Candles that change after delivery extends this to the customer's room, where the candle actually gets lit.

The priced qualification kit

Grams follow CSI's convention: load is a share of the finished candle, so oil = 200 g × load and wax = the rest. The two waxes each need 1,884 g for 10 candles; with a 5% pour-loss allowance (a working assumption) that is 1,978.2 g each. The oil is shared: 14 scented candles need 232.0 g, or 243.6 g with the same allowance.

20 candles · wax CSI live pricing, re-checked 1 October 2026 · oil pulled 24 September 2026 · wicks, jars verified 10 September 2026
Heat qualification kit: CSI 464 vs CSI 468, Sandalwood
Item Need Buy Price
Luxury Soy Wax CSI 464 1,978.2 g 2 × 1 kg ₹1,014.80
Premium Coconut Soy Wax CSI 468 1,978.2 g 2 × 1 kg ₹1,300.00
Sandalwood Fragrance Oil 243.6 g 2 × 100 g + 1 × 50 g ₹1,276.76
Eco Candle Wicks Thin C1 20 + 2 spare 1 × 20-pack + 1 × 10-pack ₹177.00
White Matte Glass Jar 20 jars 4 × 5-pack ₹1,416.00
Premium Packing Tissue Paper (blot test) 1 sheet per candle per check 1 × 100 sheets ₹650.00
Kit total ₹5,834.56

A few pack decisions are worth spelling out. Both waxes are cheapest here as 2 × 1 kg: CSI 464's 1 kg bag (₹507.40) costs less than two 500 g bags (₹520.00), and CSI 468's 1 kg (₹650.00) equals two 500 g bags. The oil is cheapest as two 100 g bottles plus one 50 g (₹1,276.76) rather than three 100 g bottles (₹1,508.04). The tissue paper is a CSI packing item; one sheet per blot, cut smaller if you like, leaves most of the pack for production. The min/max thermometer or data logger is not a CSI item and is not priced here — budget for it separately.

1
Candidate A · product page: up to 10% fragrance load
Luxury Soy Wax CSI 464
CSI's product page for CSI 464 states a fragrance load of up to 10%, a 60-month shelf life in cool, dry storage, and lists 80–90°C as its melt/pour working range. It also describes the wax as single-pour with glass adhesion and low frosting — the wax maker's description, which your heat test either confirms or does not for your jar and oil. Priced flat at ₹507.40 a kilo from 1 kg up.
Pack Price Per kg Candles at 184.0 g wax
500 g ₹260.00 ₹520.00 2.72
1 kg ₹507.40 ₹507.40 5.43
5 kg ₹2,537.00 ₹507.40 27.17
10 kg ₹5,074.00 ₹507.40 54.35
₹1,014.80 for the test · 100 kg would be ₹50,740.00 Buy Luxury Soy Wax CSI 464
2
Candidate B · product page: melting point 50–53°C, up to 13%
Premium Coconut Soy Wax CSI 468
CSI's product page for CSI 468 states a melting point of 50–53°C, a pour temperature of 58–60°C, a fragrance load of up to 13% and a 60-month shelf life in cool, dry storage. It is the only CSI soy wax with a published melting point. That is a useful fact for planning your pour, not a prediction of how the finished candle behaves in a parcel — test it.
Pack Price Per kg Candles at 184.0 g wax
500 g ₹325.00 ₹650.00 2.72
1 kg ₹650.00 ₹650.00 5.43
5 kg ₹3,185.00 ₹637.00 27.17
10 kg ₹6,370.00 ₹637.00 54.35
₹1,300.00 for the test · 100 kg would be ₹63,700.00 Buy Premium Coconut Soy Wax CSI 468
3
Shared oil · one lot for both waxes
Sandalwood Fragrance Oil
One oil lot split across both waxes means a lot difference cannot hide in the comparison. Sandalwood is a woody family that suits a year-round range, which is why it is the example here — not because any throw or heat data exists for it. At 16 g per 8% candle the twelve 8% candles take 192 g.
Pack Price Per gram Candles at 16.0 g
15 g ₹93.22 ₹6.21 0.94
50 g ₹271.40 ₹5.43 3.12
100 g ₹502.68 ₹5.03 6.25
500 g ₹2,513.40 ₹5.03 31.25
1 kg ₹5,026.80 ₹5.03 62.50
₹1,276.76 as 2 × 100 g + 1 × 50 g covers the test Buy Sandalwood

The 100 kg order: real packs, real per-candle cost

CSI lists no 100 kg pack and no 25 kg carton. Container soy wax bags stop at 10 kg, so 100 kg is ten 10 kg bags, or a WhatsApp quote — no volume discount figure is published. CSI 464's 10 kg bag is ₹5,074.00, so 100 kg is ₹50,740.00; CSI 468's is ₹6,370.00, so 100 kg is ₹63,700.00. At 184 g of wax per 8% candle, 100 kg of either is 543.5 candles' worth of wax before any pour loss.

200 g candle at 8% · wax at the 10 kg rate · Sandalwood at the 1 kg rate · Eco Thin C1 ₹5.90 · White Matte ₹70.80 · excludes labour, packaging, freight, GST
Cost per saleable candle if heat damage forces rejects or returns
Reject / return rate (your figure) CSI 464 candle CSI 468 candle Difference
0% (none) ₹250.49 ₹274.34 ₹23.85
2% (example) ₹255.60 ₹279.94 ₹24.33
5% (example) ₹263.67 ₹288.78 ₹25.10

The material cost per candle is ₹250.49 in CSI 464 (₹93.36 of wax) and ₹274.34 in CSI 468 (₹117.21 of wax), with ₹80.43 of Sandalwood, the wick and the jar on top. Divide by (1 − reject rate) and you have the cost per saleable candle. The table shows why heat qualification is cheap insurance: at an example 5% heat-damage rate, every saleable CSI 464 candle carries ₹13.18 of lost material on top, before courier charges for the replacement and the customer you may not see again. The ₹5,834.56 kit, spread over the 543 candles that 100 kg makes, is ₹10.74 a candle.

Buying 100 kg in stages · CSI listed packs · larger quantities quoted on WhatsApp
Pilot first, then the balance
Stage CSI 464 CSI 468 Why
Qualification kit (both waxes) ₹5,834.56 (same kit) Decides which wax, if either, goes forward
Pilot: 10 kg of the passing wax ₹5,074.00 ₹6,370.00 One production batch, shipped on the real route with a logger
Balance: 90 kg ₹45,666.00 ₹57,330.00 Only after the pilot parcels arrive clean
100 kg total ₹50,740.00 ₹63,700.00 Same price as one order — CSI's per-kg rate is flat at 10 kg

Because CSI's per-kilo price does not fall between one 10 kg bag and ten, splitting the order costs you nothing in rate. It does cost storage planning: 100 kg of wax held through a hot season is itself a heat question. Storing 100 kg of soy wax through an Indian summer covers that, and buying Diwali wax months ahead through the monsoon covers the festive timing.

Argued against our own interest, plainly. It would suit us to tell you that CSI 464 or CSI 468 is "made for Indian summers" and to sell you 100 kg today. We do not publish heat-survival data for any of our waxes, the adjectives on product pages are claims to test, and the cheaper wax in this example (CSI 464, ₹12,960.00 less per 100 kg) is not proven better or worse in heat by its price. If neither candidate passes your H arm at 8%, do not buy 100 kg of either from us. Lower the load, change the packing or the dispatch season, and test again.

The decision rule: which wax, if any, gets the 100 kg

Apply the rule after the 24-hour recovery checks and the first matched burn. It has four outcomes and is written so that two people reading the same sheets reach the same answer.

Working decision rule · apply per wax
Approve, approve with conditions, retest, or stop
Outcome When What you buy
APPROVE 8% candles in M and H arms match R twins on every safety line and inside your cosmetic tolerances after 24 h; unscented candles likewise 10 kg pilot of that wax, then the 90 kg balance after a logged pilot parcel
APPROVE AT LOWER LOAD Unscented fine in all arms, 8% fine in M but sweats or softens in H; 10% rung clearly worse Re-run the H arm at a lower load first (5428); buy only after it passes
RETEST Results split between waxes on different lines (one surface, the other blot) Nothing yet — repeat the arm that split, or extend with the tie-break tests in 5435
STOP Unscented candle of a wax changes in the M arm, or any exposed candle fails a burn safety line Not that wax for this route. Consider packing, season or a harder formulation (5430)

If both waxes approve, the tie-break is cost and convenience, not a guess about which is "tougher": CSI 464 is ₹507.40 a kilo at 10 kg and is rated up to 10%; CSI 468 is ₹637.00 a kilo and rated up to 13%. If your formula is 8% and stays there, the 10% ceiling is not a constraint and the lower price wins; if you want headroom above 10% for other oils, CSI 468's published ceiling may matter more than its price. Qualifying a wax across manufacturing, storage, courier and customer use joins this route test to the full life-cycle qualification, and one robust year-round candle versus seasonal formulas covers what to do if the answer depends on the month.

Which sibling answers your exact heat or shipping problem

This page is the hub for the twenty Indian heat and shipping questions. Every sibling uses the same route log, the same R / M / H arms, the same unscented-twin logic and the same scoring sheet; each starts from a different problem and uses a different pair of CSI waxes and a different oil, because any two waxes might behave differently and only the test shows whether they do.

Cluster 5421–5440 · Soy wax × Indian heat & shipping
Find your question
Your situation What the post decides The post
Candles soften in summer shipping Higher-melting wax or blend change — tested, not assumed 5422
Surface sweats after a hot vehicle Wax, load or exposure — a 3-factor test 5423
Perfect in an AC studio, different on delivery A realistic delivery simulation 5424
Made in Pune, shipped everywhere How far above workshop temperature to test 5425
Rajasthan in summer Multi-day heat-cycle approval 5426
Chennai and Mumbai humidity What to monitor in storage and appearance 5427
Droplets after a warm room Load ladder before blaming the wax 5428
Soft top in heat, firm again indoors Is reversible softening acceptable? 5429
Natural look plus summer stability Harder soy formulation vs commercial blend 5430
Heat resistance without losing the creamy look Trade-offs to test 5431
Simulating a hot courier at home Test rigs and logged profiles 5433
One robust wax for the whole year Summer, winter and Diwali timing 5437 · 5438
Diwali falls on Sunday 8 November 2026. If festive parcels will travel in October heat, the qualification above fits in the next three weeks: pour this week, cure, expose, recover and burn. Send us your route, candle weight, load and planned volume on WhatsApp and we will price the test kit and the 10 kg pilot together — wax bags go up to 10 kg (Natural Soy Pearl to 50 kg, listed in limited stock — confirm before planning around it), larger quantities by quote, no volume discount figure published.
Price my heat test and pilot on WhatsApp
The route is the specification. Log it, test against it, and buy for it.
— CandleMakingSuppliesIndia
Testing a different pair? The method does not change. Luxury Soy Wax Chunks (up to 13% per its page, ₹599.00 a kilo) and Natural Soy Pearl Wax (no ceiling or melt point published; ₹424.80 a kilo from 5 kg, the only CSI soy wax with a real bulk break) run through the same arms. 5423 uses that pair. The full range is in Candle Wax.
Why trust this guide

CANDLEMAKINGSUPPLIESINDIA supplies raw materials, not finished candles. The easy line for a wax seller in May is "this one is stable in Indian heat". We publish no heat-survival data for any of our waxes, so we will not say it. This page gives you the test that decides it for your candle and your route, even if the answer is a wax we do not sell or a smaller order.

Every soy-wax price is CSI live pricing, re-checked 1 October 2026; Sandalwood prices are from the 24 September 2026 pull; wick, jar and tool prices are those verified for Blog 760 on 10 September 2026. Candle splits, pack rounding, per-candle and per-saleable-candle costs are arithmetic, shown to two decimals so you can check them. Product-page statements are quoted as CSI's product page states them.

The 200 g candle, 8% load, 10% rung, three arms, candle counts, 24-hour recovery, dent method, 5% pour loss, reject rates and the example 40–45°C / 6 hour condition are labelled working practices and examples, not standards. Route temperatures are yours to log. For help planning the test, a bulk quote, GST invoicing or MSDS, message us on WhatsApp at +91 7397976926.

Frequently asked questions

Which soy wax is best for shipping candles in Indian summer?
No wax can be named from data, because no supplier's label measures your parcel. Log your route, test your finished candle in two candidate waxes against unexposed twins, and choose the one that passes every line at your working load.
Does a higher melting point soy wax stop candles melting in transit?
Not by itself. Courier damage is usually softening, sweating, glass pull-away or a leaning wick, which depend on the oil, load, jar, packing and duration as well as the wax. The softening post covers when a wax or blend change is the right fix.
How do I test candles for heat before shipping?
Send a logger in a real parcel, then expose packed finished candles at your logged peak and a margin above it, recover them for 24 hours, score them against twins that stayed home, and burn exposed against unexposed. 5433 covers home test rigs.
What temperature should I heat-test soy candles at?
Your own logged peak, for your logged duration, plus a margin you write down in advance. A closed chamber at about 40–45°C for 6 hours is only an example until your logger gives you real numbers.
Can I buy 100 kg of soy wax from CSI?
Yes, as listed packs — ten 10 kg bags: CSI 464 ₹50,740.00, CSI 468 ₹63,700.00. CSI lists no 100 kg or 25 kg pack; larger quantities are quoted on WhatsApp and no volume discount figure is published.
Why test an unscented candle in a heat test?
It separates the wax from the fragrance. If the unscented candle changes, the wax and the heat own the problem; if only the scented one does, look at the oil and the load first.
Test the route, then order
Log the parcel. Expose the candles. Buy 100 kg only of the wax that comes back looking like its twin.
Luxury Soy Wax CSI 464 from ₹260.00 for 500 g and ₹5,074.00 for 10 kg, Premium Coconut Soy Wax CSI 468 from ₹325.00, Sandalwood from ₹93.22 for 15 g, Eco wicks from ₹59.00 and White Matte jars at ₹354.00 for 5. Tell us your route and volume and we will price the test kit, the pilot and the balance.
Shop candle wax Plan my heat test on WhatsApp
Editorial standards & sources
About this guide: Written by the CANDLEMAKINGSUPPLIESINDIA team. Product recommendations reflect the CSI range. The route-logging and three-arm heat qualification method applies to any soy wax from any supplier.

Customer reviews: The six reviews at the top of this page are genuine, published Judge.me reviews left by CSI customers on the product pages named on each card — Eco Candle Wicks, Premium Candle Wicking Needle and Bamboo Wick Holder. They are general product reviews, not assessments of the guidance set out here. Names, star ratings, dates and products are as recorded by Judge.me and wording is unedited. "Verified buyer" appears only on the three reviews Judge.me recorded as verified — Monika Deep, Subhankar Roy and Sneha Tamang; the reviews from Ashwini, LJ and Lalitha Jagan are published but not recorded as verified, and carry no badge.

Figures used — wax CSI live pricing re-checked 1 October 2026; oil pulled 24 September 2026: Luxury Soy Wax CSI 464 ₹260.00 / 500 g, ₹507.40 / 1 kg, ₹2,537.00 / 5 kg, ₹5,074.00 / 10 kg (product page: up to 10%). Premium Coconut Soy Wax CSI 468 ₹325.00 / 500 g, ₹650.00 / 1 kg, ₹3,185.00 / 5 kg, ₹6,370.00 / 10 kg (product page: melting point 50–53°C, pour 58–60°C, up to 13%). Luxury Soy Wax Chunks ₹299.00 / 500 g, ₹599.00 / 1 kg, ₹2,995.00 / 5 kg, ₹5,999.00 / 10 kg (product page: up to 13%). Natural Soy Pearl Wax ₹450.00 / 1 kg, ₹2,124.00 / 5 kg, ₹4,248.00 / 10 kg, ₹21,240.00 / 50 kg. Sandalwood Fragrance Oil ₹93.22 / 15 g, ₹271.40 / 50 g, ₹502.68 / 100 g, ₹2,513.40 / 500 g, ₹5,026.80 / 1 kg. Figures verified 10 September 2026 (Blog 760), wick packs rechecked 25 September 2026: Eco Candle Wicks Thin C1 ₹59.00 / 10, ₹118.00 / 20, ₹295.00 / 50 (₹5.90 each); White Matte Glass Jar ₹354.00 / 5 (₹70.80 each); Candle Making Weighing Scale ₹354.00; Pen Thermometer ₹354.00; Wick Centering Device ₹118.00 / 5. Premium Packing Tissue Paper 50 × 75 cm, 22 GSM, ₹650.00 / 100 sheets (pulled 24–25 September 2026).

Non-price figures and assumptions: CSI convention: fragrance load is a share of the finished candle weight (200 g at 8% = 16 g oil + 184 g wax; at 10% = 20 g + 180 g). CSI publishes no heat-survival, softening or sweating data for any wax. Route temperatures are the reader's own logged readings; chamber, closed-car and cycle conditions are labelled example test conditions, not specifications or claims that any wax survives them. The three arms, candle counts, 24-hour recovery, dent method, 5% pour loss, reject rates and cure checkpoints are labelled working practices. CSI 464's 80–90°C is its page's melt/pour working range and is not compared with CSI 468's melting point. CSI publishes no flame-height or jar-temperature limits; ASTM F2417 is named only as a commonly cited standard. Material costs exclude labour, packaging, freight and GST. Diwali 2026 falls on 8 November.
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