My Jar Supplier Changed the Internal Diameter from 7.6 cm to 7.9 cm — Is That Difference Large Enough to Require New Wick Testing?

My Jar Supplier Changed the Internal Diameter from 7.6 cm to 7.9 cm — Is That Difference Large Enough to Require New Wick Testing?

 

CSI 464 wax from ₹260.00 / 500 g Blue Ocean from ₹93.22 / 15 g Eco wicks from ₹59.00 / 10
CSI change-control guides · I changed my jar
A 3 mm wider jar, turned into square centimetres, a retest matrix and a nine-candle test you can price today.
★★★★☆
"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
★★★★☆
"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 jar-change testing method set out below. Wording is unedited.
✓ Test sizes: oils from 15 g, wax from 500 g ✓ Prices pulled 24 September 2026 ✓ GST invoicing · MSDS & IFRA documentation on request
Change Control · Cluster Hub · Jars
Three millimetres of diameter is eight per cent more wax surface for the same wick to melt, and the same 200 g now sits lower in the jar. Your formula tests still stand. Your wick-and-jar tests need one controlled comparison before the first production pour.
+8.05%
more melt-pool area: 45.36 cm² → 49.02 cm² (π × d² ÷ 4) · geometry from the reader's diameters
Quick answers — read this first
Is 7.6 cm to 7.9 cm a big enough change to retest the wick? Partly — retest the wick-and-jar lines. The diameter is 3.95% wider, but the melt-pool area is +8.05% larger (45.36 cm² → 49.02 cm²). That is enough to confirm with a side-by-side, not enough to redo your formulation.

What stays valid? Fragrance–wax compatibility at your load, cure schedule and cold throw: KEEP. Time to full pool, tunnelling, flame, soot, jar-side reading, hot throw and consumption: CONFIRM. Full-life burn: REPEAT only if an early line fails.

Does the same 200 g fit differently? Yes. At a labelled 0.88 g/ml, 200 g is 227.3 ml; it stands 5.01 cm tall in the old jar and 4.64 cm in the new one — 3.7 mm lower. Fill to the old line instead and each candle becomes 216.1 g.

How many candles, and what does it cost? Nine: 3 old jar, 3 new jar with your wick, 3 new jar with a bracket wick. In CSI materials — CSI 464, Blue Ocean, Eco wicks, centering device — ₹2,121.42; six candles without the bracket, ₹1,532.62. See the priced kit.
The short answer
Geometry: Area = π × d² ÷ 4: 45.36 cm² at 7.6 cm, 49.02 cm² at 7.9 cm, +8.05%. Area change ≈ twice the diameter change.
Verdict: Partly — KEEP formula tests, CONFIRM wick-and-jar lines side by side against a control, REPEAT the full-life burn only if an early line is worse.
Decision: Pass only if every safety line is no worse than the control jar. Never trade a hotter jar or taller flame for throw. Broader jar list: if you change only the jar.
7.6 cm to 7.9 cm: 3 mm on the ruler, 8.05% more wax surface Internal diameters from the reader's question · same 200 g fill · wax factor 0.88 g/ml (labelled approximation) TOP VIEW · MELT-POOL AREA wick old jar 7.6 cm 45.36 cm² new jar 7.9 cm 49.02 cm² shaded ring = 3.65 cm² the wick must now melt +8.05% area from +3.95% diameter SIDE VIEW · SAME 200 g, LOWER FILL old · 7.6 cm new · 7.9 cm 5.01 cm fill height 4.64 cm 3.7 mm lower KEEP formula data · CONFIRM wick fit · REPEAT only on a fail
Left: the two melt pools drawn to scale from the reader's internal diameters; the shaded ring is the extra 3.65 cm² the wick must melt each burn. Right: the same 200 g candle at a labelled wax factor of 0.88 g/ml stands 5.01 cm tall in the old jar and 4.64 cm in the new one. Geometry only — no burn result is implied.
Straight answer
My jar supplier changed the internal diameter from 7.6 cm to 7.9 cm — is that difference large enough to require new wick testing?
Partly — retest the wick-and-jar lines, keep the formula data. The change looks like 3 mm, but a wick works on area, not diameter. π × d² ÷ 4 gives 45.36 cm² for the old jar and 49.02 cm² for the new one: +8.05% more wax surface for the same wick to melt, from a 3.95% wider jar. The same 200 g candle also sits about 3.7 mm lower (at a labelled 0.88 g/ml). Nothing about the wax, oil or load has changed, so compatibility, cure and cold-throw results stand — KEEP. What the wider pool can change is time to a full melt pool, tunnelling, flame, soot, jar-side heat, hot throw and consumption, so CONFIRM those with a side-by-side: three candles in the old jar, three in the new one with your approved wick, and three with a bracket wick if you want insurance. REPEAT the full-life burn if any early line is worse. Pass only if every safety line is no worse than the control. In CSI test sizes the nine-candle kit costs ₹2,121.42.
One line: square the diameter change before you judge it — 3.95% wider is 8.05% more for the wick to melt.
Testing the wider jar against your old one? A nine-candle side-by-side at 200 g and 8% needs about 151.2 g of oil and 1,738.8 g of wax with a 5% allowance. In CSI stock that is Blue Ocean 1 × 100 g + 1 × 50 g + 1 × 15 g (₹835.22) and Luxury Soy Wax CSI 464 2 × 1 kg (₹1,014.80), plus ten Eco Thin C1 and ten Thick C2 wicks. Use your own oil and wax if they are your approved formula — the point is to keep them identical across both jars.
Buy Luxury Soy Wax CSI 464

What 3 mm actually does to the candle

A wick does not see a diameter. It sees a surface of wax it has to melt, edge to edge.

The number your jar supplier changed is a diameter, and 7.6 cm to 7.9 cm reads like a rounding difference: 3 mm, or 3.95% wider. The wick does not work on diameter, though. Each burn, it has to liquefy the whole top surface of the candle out to the glass, and that surface is a circle whose area is π × d² ÷ 4. Squaring the diameter is what turns a small-looking change into a bigger one. The old jar's melt-pool area is 45.36 cm²; the new jar's is 49.02 cm². That is 3.65 cm² more wax surface, or +8.05% — roughly double the percentage change you see on the ruler.

The second thing that changes is height. If you keep selling a 200 g candle, the same wax has to spread over a wider floor, so the fill line drops. Solid soy wax is lighter than water — we use a labelled approximate factor of 0.86–0.9 g per ml, which varies by wax, temperature and fill line, so confirm it with a weighed test pour. At the middle of that range, 0.88 g/ml, 200 g of candle takes up 227.3 ml. In the 7.6 cm jar that is a 5.01 cm column of wax; in the 7.9 cm jar it is 4.64 cm, about 3.7 mm lower. Nothing about the formula has changed, but the wick now starts a little deeper below the rim and has a little less depth to burn through.

Geometry only · internal diameters from the question · 200 g fill · wax factor a labelled approximation
The same 200 g candle in the old and the new jar
Measure Old jar · 7.6 cm New jar · 7.9 cm Change
Internal diameter 7.60 cm 7.90 cm +0.30 cm (+3.95%)
Melt-pool area (π × d² ÷ 4) 45.36 cm² 49.02 cm² +3.65 cm² (+8.05%)
Wick to glass (radius) 3.80 cm 3.95 cm +0.15 cm
Volume of 200 g at 0.88 g/ml 227.3 ml 227.3 ml none
Fill height at 0.86 g/ml 5.13 cm 4.74 cm −3.8 mm
Fill height at 0.88 g/ml 5.01 cm 4.64 cm −3.7 mm
Fill height at 0.90 g/ml 4.90 cm 4.53 cm −3.6 mm
If you keep the old fill height instead 200.0 g 216.1 g +16.1 g per candle

The last row matters more than it looks. Many makers fill to a line, not to a weight. If your pourer keeps the same fill height in the new jar, each candle quietly becomes 216.1 g, not 200 g — 16.1 g more candle, 1.29 g more oil and 14.8 g more wax at an 8% load. Over a 1,000-candle run that is 14.81 kg of extra wax and 1,288 g of extra oil you did not budget for, and a label weight that is now wrong. Decide which you are holding constant — the weight or the line — before you test, because it changes what you are testing. The wider-and-shorter jar post works the same-weight case in detail, and the 1,000-candle substitution post prices the same-line case.

The CSI principle
Diameter changes are felt as area. Area is the diameter change, squared.
A 3.95% wider jar is an 8.05% bigger melt pool. Every jar question in this cluster starts by converting the ruler reading into square centimetres.

How big is "big enough"? The sensitivity table

The question in the title — is 3 mm large enough to matter? — has no universal cut-off. CSI does not publish a wick-size-per-diameter chart, and nobody can tell you from a drawing that a particular wick will or will not cope with a particular jar. What geometry can do is show you how fast the load on the wick grows as the diameter creeps up, so you can see where your change sits.

Starting from a 7.6 cm internal diameter · 200 g fill at 0.88 g/ml (labelled approximation)
Millimetres on the ruler versus square centimetres for the wick
Wider by New internal diameter Melt-pool area Area change Diameter change 200 g fill height
1 mm 7.70 cm 46.57 cm² +2.65% +1.32% 4.88 cm
2 mm 7.80 cm 47.78 cm² +5.33% +2.63% 4.76 cm
3 mm 7.90 cm 49.02 cm² +8.05% +3.95% 4.64 cm
5 mm 8.10 cm 51.53 cm² +13.59% +6.58% 4.41 cm
10 mm 8.60 cm 58.09 cm² +28.05% +13.16% 3.91 cm

Two readings of that table are worth holding on to. First, the area change is always about twice the diameter change for small changes, so a supplier telling you a jar is "only 4% wider" is telling you the wick has about 8% more to melt. Second, there is no step in the table where the physics suddenly changes. A 1 mm difference (+2.65% area) is within what many makers see between two jars from the same mould run, while a 1 cm difference (+28.05%) is a different candle. Your 3 mm sits between those. That is exactly the zone where a short, controlled comparison is cheaper than an argument.

Measure it yourself before you believe it
Supplier drawings often give the outside diameter or the rim opening. What the wick cares about is the internal diameter at the fill line, and in moulded glass it can differ from jar to jar. Measure five new jars and five old jars with a vernier caliper across the inside at the fill height, twice at right angles. If the new jars range from 7.8 to 8.0 cm, you are testing a range, not a number — pick the widest jar for the test candles. The 1,000-candle post has a full measurement sheet.
"It's only 3 mm, the wick will manage." It may — and the test is how you find out, not how you avoid finding out. The failure this shortcut invites is quiet: the new jar reaches a full melt pool one burn later than it used to, leaves a thin ring on the glass that thickens every burn, and the customer calls it tunnelling in week three. The fix is not a bigger wick by instinct. It is three candles in each jar, burned side by side, with the time to a full melt pool written down. If the new jar keeps pace with the control, you have proved the 3 mm does not matter to your candle.

The retest matrix: what stays valid, what is void

You changed the container, not the candle. Most of your test history survives. The part that does not is the part that decides safety.

A jar is not part of the formulation, so the tests that describe the formula itself — whether the oil binds in the wax at your load, how the candle cures, its cold throw, its surface appearance after storage — are not voided by a wider jar. The tests that describe how the wick, the wax pool and the glass behave together are voided, because the geometry they measured has changed. The matrix below sorts every test you are likely to have on file into the four words this series uses consistently: KEEP (still valid), CONFIRM (short side-by-side check), REPEAT (full retest) and NEW (a test you never needed before).

Retest matrix · internal diameter 7.6 → 7.9 cm · wax, oil, load, wick and fill weight unchanged
Which earlier results you can keep
Test on file Verdict Why What to do
Fragrance–wax compatibility at your load (no seepage, no separation) KEEP Chemistry of wax + oil is unchanged Nothing
Cure schedule and cold throw KEEP Formula unchanged; slightly larger open surface only Nothing; note it on the record
Frosting / wet spots after storage CONFIRM Glass surface and cooling can differ between jar makers Inspect the six test candles after your usual cure
Time to full melt pool CONFIRM +8.05% more surface to melt Record per burn, all six candles
Melt-pool depth and tunnelling CONFIRM Wider pool, same wick Measure depth at end of every burn
Flame height, mushrooming, soot CONFIRM Wick fuel supply can shift with pool size Record at a fixed time into each burn
Jar-side temperature / feel CONFIRM Different glass maker, different wall Same thermometer, same point on the glass
Hot throw in a fixed room CONFIRM Pool size affects how much fragrance is released Score new vs control, same room, same day
Consumption rate (g per hour) CONFIRM Needed to recheck burn time on the label Weigh before and after every burn
Full-life burn to end of usable wax REPEAT if any CONFIRM line fails Late-stage heat depends on the base and the lower wall One full-life candle per variant minimum
Label burn time and net weight NEW check Fill height moved; weight may too Recalculate from measured g/hour

Two lines in that matrix deserve a second look. Frosting sits under CONFIRM, not KEEP, even though the wax has not changed, because the glass and the way it cools can differ between jar makers — the only way to know is to look at the test candles after your usual cure. And the full-life burn is conditional: if the upper-jar CONFIRM tests match the control, the late-stage behaviour is unlikely to be the first place a 3 mm difference shows up, but if any early line is worse, repeat the full-life burn before release. If the new jar's base or walls are also different, that condition flips — see the thicker-base post and the thicker-glass post. The broader version of this matrix, for any jar change, lives in the only-the-jar-changed post.

The minimum test: nine candles, two jars, one variable

The protocol below is a working practice, not a standard. It is built to answer one question with as few candles as possible: does the approved wick, in the approved formula, behave the same in the new jar as it did in the old one? Everything except the jar is held constant. The third set of three candles is optional insurance — a bracket wick poured at the same time, so that if the approved wick struggles you already have the answer cured and waiting, instead of starting another week-long cycle.

1
Pull the control jars from stockYou need three of the old 7.6 cm jars. If you have none left, use a retained candle from an earlier approved batch as the control and note that it is older. A test with no control is just a burn; it cannot tell you whether the jar changed anything.
2
Pour all nine from one meltOne batch of wax and oil, one pour session: 3 × old jar with the approved wick, 3 × new jar with the approved wick, 3 × new jar with the bracket wick. At 200 g and 8%, that is 16 g of oil and 184 g of wax per candle, 1,800 g in total before allowance. Weigh every candle; write the weight on the base.
3
Cure them togetherUse your normal cure for this formula — for example 7 days, a labelled checkpoint rather than a rule — on the same shelf. Look at the tops and the glass before the first burn and photograph them.
4
Burn in cycles, side by sideBurn all candles in the same room, away from draughts, for about 3–4 hours per cycle (a commonly used cycle; label it on your sheet) and let them cool fully between cycles. Record every line of the scoring sheet at the same time into each burn.
5
Take one of each to the endAfter the early cycles, pick one candle from each set and burn it in cycles to the end of usable wax. That is the full-life check the matrix makes conditional; doing it on one candle per set costs little and removes the doubt.
6
Decide, then recordApply the decision rule below. Whatever you decide, write down the jar supplier, the measured internal diameter range and the test result on the product record before a single production candle is poured.
Scoring sheet · fill one row per candle per burn · every line compared with the control jar
What to measure in each burn
Line How to measure Control (7.6 cm) New jar, approved wick New jar, bracket wick
Weight before / after burn Scale, to 0.1 g … … …
Consumption (g per hour) Weight loss ÷ burn hours … … …
Time to full melt pool Minutes until the pool touches the glass all round … … …
Melt-pool diameter at 1 h / 2 h / end Ruler across the pool, two directions … … …
Melt-pool depth at end of burn Blunt skewer, marked … … …
Flame height Ruler behind the flame, same time each burn … … …
Mushrooming / soot on glass 0 none · 1 slight · 2 clear · 3 heavy … … …
Jar-side reading Same thermometer, same point, same time … … …
Tunnel ring left on glass Width in mm after cool-down … … …
Hot throw, fixed room 1–5 from two noses, blind if you can … … …

Consumption rate is the line people skip and later regret. A wider pool can burn a little more wax per hour, and if it does, the burn time on your label is out of date even when every safety line passes. Weigh before and after each burn, divide the loss by the hours, and carry that number into your label. The rest of the sheet is the same one used across this series, so results from the taller-jar post or the frosted-glass post can sit on the same record.

The priced test kit

The kit below is built from listed, in-stock CSI sizes on the 24 September 2026 pull. We use Luxury Soy Wax CSI 464 and Blue Ocean as the worked example; if your approved formula is a different wax or oil, substitute it — the quantities do not change, only the prices. The load is our 8% working assumption, inside CSI 464's stated 10% maximum. Allowance: 5% for pour loss, a labelled working assumption.

Nine 200 g test candles · 8% load · 5% allowance · 1,890 g melted in total
What the side-by-side costs in CSI materials
Item Need Buy Price
Luxury Soy Wax CSI 464 1,738.8 g 2 × 1 kg ₹1,014.80
Blue Ocean Fragrance Oil 151.2 g 1 × 100 g + 1 × 50 g + 1 × 15 g ₹835.22
Eco Candle Wicks Thin C1 6 approved + spares 1 × 10 ₹59.00
Eco Candle Wicks Thick C2 3 bracket + spares 1 × 10 ₹94.40
Wick Centering Device reusable 1 × 5 ₹118.00
CSI materials total ₹2,121.42
Six-candle version (no bracket set) 1,159.2 g wax · 100.8 g oil 1 × 1 kg + 1 × 500 g · 1 × 100 g + 1 × 15 g · Thin C1 × 10 · centering × 5 ₹1,532.62
Your jars (example: ₹45.00 each — replace with your supplier's price) 6 new jars from your jar supplier example ₹270.00

The wick choice needs one honest note. In this worked example the approved wick is Eco Thin C1 and the bracket is Eco Thick C2, simply because those are the two Eco sizes CSI lists. We do not publish a size chart that says Thick C2 is right for a 7.9 cm jar or that the two sizes are one step apart for your wax — nobody can say that without a burn. If your approved wick is from another range, bracket it with the next size in that range. The wider-and-shorter post discusses when the bracket is worth pouring and when it is not.

1
Container soy wax · up to 10% load
Luxury Soy Wax CSI 464
Our worked example wax. The wax maker rates it up to 10% fragrance load; CSI's guidance is to melt and pour it at 80–90°C — confirm on the product page. Per-kilo price is the same at 1, 5 and 10 kg, so a test needs only the bags that cover it: 2 × 1 kg here. Each 200 g candle at 8% uses 184 g of wax, ₹93.36 at the 1 kg rate.
Pack Price Per kg
500 g ₹260.00 ₹520.00
1 kg ₹507.40 ₹507.40
5 kg ₹2,537.00 ₹507.40
10 kg ₹5,074.00 ₹507.40
₹1,014.80 covers the nine-candle test Buy CSI 464
2
Fresh / aquatic · test sizes in stock
Blue Ocean Fragrance Oil
The oil in the worked example. Its 50 g and 100 g packs are priced almost identically per gram (₹4.94 and ₹4.95), so there is no reason to buy a bigger bottle for a test. 151.2 g with allowance rounds to 1 × 100 g + 1 × 50 g + 1 × 15 g. At 16 g per candle, the oil in one 200 g candle costs ₹79.20 at the 100 g rate.
Pack Price Per gram
15 g ₹93.22 ₹6.21
50 g ₹247.00 ₹4.94
100 g ₹495.00 ₹4.95
500 g ₹2,478.00 ₹4.96
1 kg ₹4,956.00 ₹4.96
₹835.22 for 165 g covers the test Buy Blue Ocean
Argued against our own interest, plainly. We sell wax, oil and wicks, and the easy thing to tell you would be "new jar, new formula — order a fresh round of everything". It is not true. A 3 mm change in diameter does not void your fragrance, load or cure work, and you do not need to buy a new oil or wax to test it. You need six to nine candles of the formula you already approved. If you still have enough approved wax and oil in stock, use it and buy nothing from us but, perhaps, a pack of bracket wicks at ₹94.40.

The decision rule: pass, adjust or escalate

A hotter jar or a taller flame is never traded for more throw. That line is not negotiable; everything else is.

CSI publishes no numeric limit for flame height or jar temperature, and we will not invent one. The acceptance test that holds up is relative: the new jar must be no worse than the approved control on every safety line, and within your jar supplier's guidance and the recognised candle fire-safety standard you work to (ASTM F2417 is a commonly cited US one). Performance lines — throw, time to full pool, consumption — get a tolerance you set yourself and write down before you look at the results, so the data cannot talk you into a pass.

Decision rule · the tolerances marked "yours" are set by you before testing
Reading the scoring sheet
Result on the new jar, approved wick Verdict Next step
Every safety line (flame, soot, mushrooming, jar-side reading) no worse than control; performance lines within your tolerance PASS Release with the approved wick; update the jar spec and label burn time
Safety lines fine; slower to full pool or deeper tunnel than control ADJUST Look at the bracket set; if it passes every safety line, release on the bracket wick after a full-life check
Any safety line worse than control (hotter glass, taller flame, soot, heavy mushrooming) FAIL Do not release; if the bracket set is also worse, the jar is the problem, not the wick
Both wicks fail in different directions (one tunnels, the other runs hot) ESCALATE Treat as a new candle system: full wick series and full-life testing — see the tapered and thick-glass posts
Results vary more between two new jars than between jar types ESCALATE The jar lot is inconsistent; measure more jars before any decision

The last row is the one people do not expect. Sometimes the test shows that the variation within the new jar lot is larger than the change you were worried about — one candle reaches the wall in two hours, its neighbour in three. That is not a wick problem. It is a measurement problem, and the answer is to measure more jars and talk to the supplier, not to resize the wick for the widest jar in the box. The alternative-container post includes a scoring rule for exactly that kind of lot comparison.

The wick was approved for a surface, not for a jar name. Change the surface and you owe the wick one honest burn.
— CandleMakingSuppliesIndia

Release and record

A pass is not finished until it is written down, because the next time someone asks why the Blue Ocean candle is in a different jar, the answer has to be on paper, not in your memory. The record does not need software. A single row in a spreadsheet or a page in a bound notebook is enough if it holds the lines below.

Release record · one row per changed SKU
What to write down before the first production pour
Field Example entry
Change Jar internal diameter 7.6 → 7.9 cm (measured range 7.85–7.95 cm on 10 jars)
Reason Supplier changed mould; old jar no longer offered
Held constant Wax, oil, load 8%, wick, fill weight 200 g
Tests run 3 + 3 + 3 side-by-side; 1 full-life per set; scoring sheet attached
Result PASS on approved wick / ADJUST to bracket wick
Label changes Burn time recalculated from measured g/hour; net weight unchanged
Retained samples One control and one new-jar candle kept, dated
Approved by / date Name, date

Keep one unburned candle from each set as a retained sample, dated and labelled. If a customer complaint arrives in three months, that candle is the only way to show whether the problem is the jar or something that changed later. The full version of this record — with a form you can copy — is the simple change-control form post, and the reproducibility record post covers how to write jar dimensions so they mean the same thing a year from now.

Diwali falls on 8 November 2026. If your jar supplier has changed ahead of festive production, test now rather than in the last week of October — a nine-candle side-by-side plus a cure takes more than a weekend. Send us your formula and the new jar's measurements on WhatsApp and we will help you put the test kit together from listed stock. Larger festive quantities of wax and oil are quoted on WhatsApp; no volume discount figure is published.
Plan the test on WhatsApp

Which jar change are you making?

This page is the hub for the jar-change questions in this series. Each sibling takes one kind of container change and works its own geometry, its own retest matrix and its own test. If your change is not simply "a bit wider", go to the one that matches.

Cluster 4861–4870 · I changed my jar
Find your jar change
Your change Main geometry What the post adds
Same 200 g, wider and shorter Fill height from diameter When the approved wick can carry over, and the bracket decision
Same outside, thicker glass Wall thickness → internal diameter Why the outside tape measure misleads; heat in the glass
Much thicker base Last centimetre of wax End-of-life burn testing when the top is unchanged
Taller, same diameter Headspace and depth zones Early vs late burns; where heat testing concentrates
Clear to frosted glass None — finish only Measuring through glass you cannot see through
Straight to tapered Area at each depth Why the same wick changes as the candle burns down
Narrows toward the bottom Wall gap at depth When a correct wick becomes too powerful later
Supplier out of stock — choosing an alternative Comparison sheet Scoring rule across several candidate jars
1,000 candles due, slightly different jar Measurement sheet + quantity impact Go / conditional / no-go under a deadline

Two posts outside this cluster sit alongside it. If you change only the jar is the general retest list for any container change, in the change-control part of the series, and the revised-formulation post draws the line between a change you confirm and a change so large the candle should be treated as a new product.

Considering CSI's own jars as the replacement? CSI lists the White Matte Glass Jar (₹354.00 for 5), the 200 ml Salsa Glass Jar (₹200.60 for 5) and the Yankee Glass Jar 130 ml (₹47.20 each). Their internal diameters, glass thickness, base thickness and fill weights are not published, so measure a sample before you compare it with your current jar. The only published fills in the range are the Golden Aluminium Tin (85 g) and the Heart Cutout Velvet Jar (50 g wax capacity). Browse Glass Jars.

Where jar changes go wrong

Almost every jar-change failure starts with the same sentence: "the supplier said it was the same size".

The first mistake is testing the wrong jar. A supplier sends three samples, they are the best-finished jars of the run, and the production lot measures differently. Test with jars from the actual lot you will use. The second is changing something else at the same time — a new jar and a new wick lot and a new wax delivery in one week. If the candle then fails, you cannot tell which change did it, and the two-changes-at-once post is the long way back. Change the jar first, alone.

The third is calling it done after one burn. A wider jar often looks fine on the first burn, when the wick has a fresh, flat top and a cool jar. The differences show up by the third or fourth cycle, when the tunnel ring either closes or grows. Burn at least the early cycles on all six test candles before deciding. The fourth is forgetting the label. If the new jar burns a little more wax per hour, the burn time you print is no longer true, and a label that promises more hours than the candle gives is a complaint you wrote yourself.

Finally, do not let this single test harden into a rule of thumb. "3 mm didn't matter last time" is true for that wick, that wax, that oil and that jar. The next change — a different oil in the same jar, or the same oil in a jar with a thicker base — is a new question. The geometry takes two minutes; do it every time.

Why trust this guide

CANDLEMAKINGSUPPLIESINDIA supplies raw materials, not finished candles or jars made to your specification. This page tells you that a jar change does not void your fragrance, wax or cure work, that you probably need no new oil or wax to test it, and that the only CSI purchase it may justify is a ₹94.40 pack of bracket wicks. That is less than a "start again" answer would sell.

Wax and oil prices are CSI live pricing, pulled on 24 September 2026; wick, jar and tool prices are those verified for Blog 760 on 10 September 2026, with the wick pack list rechecked on 25 September 2026. Every area, volume and fill height on this page is plain geometry from the reader's two diameters — π × d² ÷ 4 and volume ÷ area — shown to two decimals so you can check it. No burn result is implied by any number here.

The 200 g fill, 8% load, 0.86–0.90 g/ml wax factor, 5% allowance, three-candle sets, 3–4 hour cycles and 7-day cure are labelled working assumptions — replace them with yours. CSI does not publish jar dimensions, wick-size-per-diameter charts or numeric flame or jar-temperature limits. For help planning a test, GST invoicing, MSDS or IFRA documentation, message us on WhatsApp at +91 7397976926.

Frequently asked questions

Does a small change in jar diameter affect candle wick size?
It can, because the wick has to melt the whole surface and area grows with the square of the diameter. 7.6 → 7.9 cm is +8.05% more area. Whether your wick copes is a burn-test answer, not a chart answer.
How do I calculate the melt pool area of a candle jar?
Area = π × internal diameter² ÷ 4. Use the internal diameter at the fill line, measured with a caliper. For a 7.9 cm jar that is 49.02 cm².
Do I need to redo fragrance testing if only the jar changes?
No for compatibility, load and cold throw — the formula is unchanged, so KEEP those. Hot throw should be CONFIRMED side by side, because pool size affects release. The only-the-jar post has the full list.
How many test candles for a new jar?
As a working practice, at least three in the old jar as a control and three in the new jar with your approved wick; add three with a bracket wick if you want the fallback ready. One of each goes to a full-life burn.
Will the same 200 g of wax fill a wider jar to the same height?
No. At a labelled 0.88 g/ml, 200 g stands 5.01 cm in a 7.6 cm jar and 4.64 cm in a 7.9 cm jar. Filling to the old line instead makes a 216.1 g candle.
What is a safe flame height or jar temperature for candles?
CSI publishes no numeric limit. Judge the new jar against your approved control — no worse on any safety line — and against your jar supplier's guidance and the fire-safety standard you work to, such as ASTM F2417.
Measure, then burn
Turn the diameter into area. Keep what the jar cannot change. Burn the rest side by side.
Luxury Soy Wax CSI 464 from ₹260.00 for 500 g, Blue Ocean from ₹93.22 for 15 g, Eco wicks from ₹59.00 for 10 and a Wick Centering Device at ₹118.00 for 5. Send us your old and new jar measurements and we will help you size the test kit.
Shop candle wicks Plan my jar test on WhatsApp
Editorial standards & sources
About this guide: Written by the CANDLEMAKINGSUPPLIESINDIA team. Product recommendations reflect the CSI range. The geometry and the retest method apply to any jar and any supplier's wax, oil and wicks.

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 pulled 24 September 2026, CSI live pricing: Luxury Soy Wax CSI 464 ₹260.00 / 500 g, ₹507.40 / 1 kg, ₹2,537.00 / 5 kg, ₹5,074.00 / 10 kg (rated up to 10% fragrance load; CSI guidance 80–90°C). Blue Ocean Fragrance Oil ₹93.22 / 15 g, ₹247.00 / 50 g, ₹495.00 / 100 g, ₹2,478.00 / 500 g, ₹4,956.00 / 1 kg. Figures verified 10 September 2026 (Blog 760), wick packs rechecked 25 September 2026: Eco Candle Wicks Thin C1 ₹59.00 / 10; Thick C2 ₹94.40 / 10; Wick Centering Device ₹118.00 / 5; White Matte Glass Jar ₹354.00 / 5. Salsa 200 ml jar ₹200.60 / 5 and Yankee 130 ml jar ₹47.20 each (24–25 September 2026 pull).

Non-price figures and assumptions: Internal diameters 7.6 cm and 7.9 cm are the reader's figures. Melt-pool area = π × d² ÷ 4; fill height = (mass ÷ wax factor) ÷ area. The 0.86–0.90 g/ml wax factor is a labelled approximation — confirm with a weighed pour. The 200 g fill, 8% load (CSI convention: oil = W × L), 5% allowance, three-candle sets, 3–4 hour burn cycles and 7-day cure checkpoint are working practices, not standards. The ₹45.00 jar price is an example to replace. CSI does not publish jar dimensions, wick-size charts, burn results or numeric safety limits. Diwali 2026 falls on 8 November.
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