How Do I Calculate the Cost of Remelting, Additional Wax, Labour, Jars and Retesting Before Deciding Whether a Failed Batch Is Worth Rescuing?
शेयर करना
Do retest candles cost money? Yes. They come out of the batch, so they reduce the candles you can sell. Divide the rescue cost by sellable candles, not total candles.
How do I estimate remelt energy? Count the melts the rescue needs at your melter's capacity, then multiply by your own measured power per melt. CSI does not publish running costs.
Should I add fresh fragrance during the rescue? No. The point of dilution is to lower the load. Topping up oil without testing recreates the original problem.
Why a rescue needs a full cost sheet
When a batch sweats and the diagnosis points to an oil load above what that wax holds, dilution is the textbook fix: remelt, add unscented wax, pour again at the lower load. Most makers then cost the rescue as the price of the extra wax and stop. That number is real, but it is a fraction of the spend. Dilution grows the batch, so it needs more jars and more wicks. Every candle needs a new wick because the old ones come out with the wax. The lower load can change how the wick behaves, so you may need a second wick size to test. And you will burn and heat-test some of the rescued candles, which means fewer to sell.
This page builds the sheet line by line for one example batch, then turns it into a cost per sellable candle you can compare with remaking. The figures are an example; the structure is what you copy.
The example batch and the dilution maths
Example: 400 candles of 150 g at 10% Bergamot Amber, poured in CSI 468 in clear 150 g apothecary jars with Eco C1 wicks. Testing showed the batch sweats at 10% of total weight. Note that 10% of total is 15 ÷ 135 = 11.11% of wax weight, which is within CSI 468's stated 'up to 13%' (a wax-weight figure) yet still sweated with this oil. A stated maximum is a ceiling for typical oils, not a promise for yours.
Your test candles have already shown 8% holds. Batch weight: 400 × 150 g = 60,000 g, of which oil is 60,000 × 0.10 = 6,000 g. Target batch weight: 6,000 ÷ 0.08 = 75,000 g. Wax to add: 75,000 − 60,000 = 15,000 g. Candles: 75,000 ÷ 150 = 500. Recheck: 6,000 ÷ 75,000 = 8%.
The rescue cost sheet
| Line | Quantity | Working | Cost |
|---|---|---|---|
| 1. Added wax | 15 kg CSI 468 | ₹6,370.00 + ₹3,185.00 | ₹9,555.00 |
| 2. Extra jars | 100 × 150 g jar | 5 × ₹1,888.00 | ₹9,440.00 |
| 3. New wicks | 500 Eco C1 | 500-pack | ₹2,950.00 |
| 4. Wick stickers | 13 sheets of 40 | 13 × ₹100.00 | ₹1,300.00 |
| 5. Wick samples | 10 Eco C2 | 10-pack | ₹94.40 |
| 6. Remelt energy | melts at your capacity | your power per melt | your figure |
| 7. Labour | each step timed | your minutes × your rate | your figure |
| Materials subtotal | lines 1 to 5 | ₹23,339.40 | |
| Retest candles held back | 12 of 500 | lost sales, not extra spend | 488 sellable |
| Per sellable candle | ₹23,339.40 ÷ 488 | ₹47.83 |
The materials subtotal: ₹9,555.00 + ₹9,440.00 + ₹2,950.00 + ₹1,300.00 + ₹94.40 = ₹23,339.40. Per sellable candle: ₹23,339.40 ÷ 488 = ₹47.83. Twelve retest candles is a suggested starting point: a few for a day 1, 3, 7 and 14 observation log, a few for your own warm-room hold if you ship in summer, and a few for full burns with C1 and C2. Use your own number, and keep the division honest.
Energy and labour: count them, do not guess them
CSI does not publish power consumption for its melters, and this page will not invent one. What you can count is melts. The Electric Wax Melter page states it melts 10 kg of soy wax in approximately 30 minutes at 100°C; a 75,000 g rescue in the 10 kg capacity melter is 75,000 ÷ 10,000 = 7.5, so eight melts, or four on the 20 kg melter. Scented wax should not be pushed to temperatures you would not normally use, and the melter display carries a stated ±10°C deviation, so check every melt with a separate thermometer.
Multiply melts by your own measured energy per melt. For labour, time a single tray end to end: freeing the wax from the jars, cleaning the jars and inspecting them for chips, remelting, weighing the recovered wax, adding and stirring the fresh wax, re-wicking, pouring, and logging the retest candles. Divide by the candles in the tray and multiply by 500. Some steps, such as the wax extraction, take far longer per candle than a normal pour. That is exactly why they must be measured.
Four ways rescue sheets get under-costed
Pricing wax per gram but buying it in packs. The sheet above works cleanly because 15 kg is exactly one 10 kg and one 5 kg pack of CSI 468. A rescue that needs 12.3 kg still means buying 15 kg at list packs, or a WhatsApp quote for something larger. Cost the packs you will actually buy, and note what is left over for the next batch.
Forgetting that the jar count changes. Makers often order wicks for the original 400 and discover at the pour that the batch fills 500. Order from the diluted candle count, plus a margin for the jars your timed tray showed get damaged during extraction.
Treating retest candles as free. The twelve candles you burn and heat-hold were made from wax, oil, jars and wicks you paid for. They do not appear as a separate spend line because they come from the batch, but they shrink the divisor. Dividing by 500 instead of 488 understates cost per candle.
Adding a 'little extra' oil to compensate for scent lost in remelting. Reheating can drive off some fragrance, but topping up oil blindly raises the load back towards the level that sweated. If the diluted retest candles throw too weakly, that is a finding to act on in the next formula, not a reason to undo the rescue. Any top-up is a new formula and needs its own test candles before it touches the batch.
Turning the sheet into a decision
Now compare with remaking. Both routes need 500 new wicks, the stickers and the 100 extra jars, so those lines cancel. The difference is wax and oil. Remaking 500 candles at 8% needs 500 × 138 g = 69,000 g of wax, costing 69,000 × ₹0.637 = ₹43,953.00, and 500 × 12 g = 6,000 g of oil, costing 6,000 × ₹5.437 = ₹32,622.00. The rescue buys only the 15 kg of wax. The material gap is ₹43,953.00 + ₹32,622.00 − ₹9,555.00 = ₹67,020.00, which is simply the value of the wax and oil already sitting in your failed batch.
Per sellable candle: ₹67,020.00 ÷ 488 = ₹137.34. If your measured extra labour and energy for the rescue come to clearly less than ₹137.34 a candle over a normal production run, rescue. If they approach it, or if your timed tray produced a high jar reject rate, remaking becomes the lower-risk option. Either way, the remake happens at 8%, not 10%: the lower load is the fix, and it needs less oil than the batch that failed.
Whatever the sheet says, a rescued batch earns dispatch only after its retest candles pass. If they sweat, the cost sheet has done its job by stopping you before the full remelt.
Where this page fits
CSI already has guides that cover parts of this question. This page answers one sweating decision; these cover the neighbouring questions:
Three things to buy for this fix
| Option | Price | Status on the October 2026 pull |
|---|---|---|
| 500 g | ₹325.00 | In stock |
| 1 kg | ₹650.00 | In stock |
| 5 kg | ₹3,185.00 | In stock |
| 10 kg | ₹6,370.00 | In stock |
| Option | Price | Status on the October 2026 pull |
|---|---|---|
| 10 kg capacity | ₹21,240.00 | In stock |
| 20 kg capacity | ₹25,960.00 | In stock |
| Option | Price | Status on the October 2026 pull |
|---|---|---|
| Thin (C1) × 10 | ₹59.00 | Out of stock |
| Thin (C1) × 20 | ₹118.00 | In stock |
| Thin (C1) × 100 | ₹590.00 | In stock |
| Thin (C1) × 500 | ₹2,950.00 | In stock |
| Thin (C1) × 1,000 | ₹5,900.00 | In stock |
| Thick (C2) × 10 | ₹94.40 | In stock |
| Thick (C2) × 20 | ₹188.80 | In stock |
| Thick (C2) × 100 | ₹944.00 | In stock |
CANDLEMAKINGSUPPLIESINDIA supplies raw materials and production equipment, not finished candles. This guide separates general formulation practice from what CSI's own product pages state, converts the pages' wax-weight loads to the total-weight basis used here, says plainly where CSI publishes no figure (wax heat resistance, survival temperatures, oil composition beyond the page), and labels every load step, test temperature, observation day or reject rate as a starting point for your own validation.
Prices are live CSI prices from October 2026; product pages are authoritative. Where a spec is not published — such as the temperature at which a wax starts to release oil — this guide says so rather than filling the gap.
For bulk quotes, GST invoicing, IFRA and MSDS documents, message us on WhatsApp at +91 7397976926.
Frequently asked questions
- My Fragrance Continues Separating Even at a Lower Load — When Should I Stop Trying to Rescue the Formulation and Replace the Fragrance Oil?
- My Fragrance Performs Well but My Wax Cannot Keep It Stable During Indian Summer — When Should I Replace the Wax Instead?
- I Found a New Wax That Fixes the Sweating Problem — What Other Tests Must I Complete Before Buying 25–100 Kg for Production?
- I Found a New Fragrance Oil That Stays Stable at My Target Load — Should I Compare Hot Throw and Wick Behaviour Before Placing a Bulk Order?
- How Do I Compare Two Wax-Fragrance Combinations Using Stability, Hot Throw, Burn Quality, Summer Resistance and Cost per Finished Candle?
- Should Every Commercial Candle Formula Have an Approved Maximum Fragrance Load Rather Than Allowing Production Staff to Add Extra Fragrance for “Stronger” Candles?
- How Do I Document an Approved Wax × Fragrance × Load × Wick × Process Combination so Future Production Does Not Recreate a Sweating Failure?
- How Do I Take a Candle From Visible Oil Droplets → Identify Whether It Is Fragrance Migration → Test Fragrance Load → Check Wax Compatibility → Standardise Processing → Heat-Test for Indian Conditions → Rescue Failed Stock If Possible → Select the Correct CSI Wax/Fragrance → Validate → Bulk Purchase?
- Can I Fix a Sweating Candle Batch by Remelting It and Adding More Wax or Should the Batch Be Reformulated Completely?
- I Made 10 Kg of Candle Wax at 10% Fragrance Load but Need It at 8% — How Much Unscented Wax Should I Add to Correct the Entire Production Batch?
Customer reviews: The reviews at the top are genuine, published Judge.me reviews — Shanu Shah (5★, verified); Deepika k. (5★, verified); Tina Raha (4★, verified); Ashwini (5★, not recorded as verified); S.A. (4★, not recorded as verified); PREETHI PRASATH (5★, verified). Names, ratings, dates and products as recorded by Judge.me.
Product facts (October 2026, CSI live store): Premium Coconut Soy Wax CSI 468 (flakes): 500 g ₹325.00, 1 kg ₹650.00, 5 kg ₹3,185.00, 10 kg ₹6,370.00 — coconut-soy blend · stated melt point 50–53°C, pour 58–60°C · stated fragrance load up to 13% · stated shelf life 60 months. Electric Wax Melter (Imported): 10 kg capacity ₹21,240.00, 20 kg capacity ₹25,960.00 — stated 9.5 litres per melt · display 60–100°C with a stated ±10°C deviation · stated 10 kg of soy in about 30 minutes at 100°C. Eco Candle Wicks: Thin (C1) × 10 ₹59.00 (out of stock), Thin (C1) × 20 ₹118.00, Thin (C1) × 100 ₹590.00, Thin (C1) × 500 ₹2,950.00, Thin (C1) × 1,000 ₹5,900.00, Thick (C2) × 10 ₹94.40, Thick (C2) × 20 ₹188.80, Thick (C2) × 100 ₹944.00 — natural cotton and paper fibres · ₹5.90 (C1) and ₹9.44 (C2) per wick at every pack size · no dimensions or burn chart published.
Assumptions: Fragrance load is a percentage of total candle weight (200 g = 184 g wax + 16 g oil at 8%); CSI wax pages phrase their ceilings as a share of wax weight. CSI wax pages state fragrance loads as a share of wax weight; converted here to total weight with W ÷ (100 + W) (10% of wax = 9.09% of the candle; 13% = 11.50%). A stated maximum is the wax maker's ceiling for typical oils, not a promise for every oil. CSI publishes no wax heat-resistance or survival temperature; every test temperature, observation day, load step, reject rate and labour or energy cost is a suggested starting point or the reader's own figure. Blends with microcrystalline wax, Vybar, paraffin or Soy Pillar Wax are the maker's own to test. Wax prices re-checked 7 October 2026, oil prices 1 October 2026; product pages are authoritative.