尼龙询盘怎么写才能拿到准报价?只报牌号,价格就谈不准

应用领域 发布时间: 2026-09-12 3019 阅读

191 How to Write a Nylon Inquiry to Get an Accurate Quotation

Last March, I received an inquiry, and the original text was like this:

What is the price of PA66-GF30?

Eleven characters, one punctuation mark, no signature, no working conditions, no quantity.

As usual, we replied with a price range, and as usual, we attached three sentences: what it is used for, whether there are flame retardant requirements, and roughly how much is used per month. The other party didn't respond.

Two months later, I happened to find out that the order had been given to someone else, and the price was three thousand yuan per ton lower than ours.

Things should have ended here. But six months later, I received a call from the same person again—not to ask for a price, but for emergency help. The end products of his batch of goods got stuck during certification, and the heating filament part couldn't pass.

When I dug it out and looked, the brand we dealt with back then didn't have corresponding yellow card coverage, and GWIT couldn't reach the temperature required by the terminal. This is not a counterfeit; it's a genuine quote that "only meets the first eleven characters".

He later added a sentence, which I think is worth writing down:

I thought I was buying a brand. Later I realized I was buying a set of working conditions.

What this article is going to talk about is how to turn these eleven words into a letter that can get a preliminary quotation and also receive inquiries about the product.

1. Why are quotes always inaccurate

Let me first say an unpleasant truth: when the quotation is inaccurate, it is often not because the supplier is reporting incorrectly, but because they can only quote higher.

How is a quote for modified nylon calculated?

The quotation for the modified material, broken down, is roughly these parts:

Base material: the price of the resin itself follows the trends of upstream products like crude oil, adiponitrile, and caprolactam, changing month by month.

Additives: fiberglass, flame retardant, toughening agent, color masterbatch, antioxidant system—each addition is real money

Processing fee: electricity consumption, labor, loss, and yield for one pass through the twin-screw extruder

Certification amortization: UL Yellow Card is maintained annually, and when allocated per kilogram, it is a real cost.

Batching and packaging: producing one ton and producing twenty tons, the unit costs differ greatly

Billing period: This is the easiest item to be overlooked, let's talk about it later.

Among these six items, at least four depend on your working conditions.

So when an inquiry only provides the five characters 'PA66-GF30', the remaining four items are all unknown. And the common way to deal with the unknown is to add the risk cost in.

How high is the cost of this 'guess'?

In the industry, it is very common for the quotations of the same grade under different working conditions to differ by as much as 30%.

This thirty percent is not an exaggeration—it comes from this: the levels of flame retardant vs. non-flame retardant, high GWIT vs. no GWIT, can make a difference of three or four yuan per kilogram; whether to have long-term yellow card coverage can also make a difference; monthly usage of five hundred kilograms versus three tons represents two different pricing systems.

These cannot be bargained down; they are determined by the formula and the orders themselves.

So we have a saying here: the completeness of an inquiry is directly equal to the accuracy of the quotation. This is not a polite remark; it is a calculation that can be made.

2. Element One: Talk about working conditions, not grades

Many people start by saying 'How much is PA66-GF30?'

This way of asking won't get you an accurate price, and you're very likely to get a 'can be issued but not usable' quote.

GF30 is just the glass fiber content, not the formula

PA66-GF30, these five characters, convey only one thing: this material contains thirty percent glass fiber.

What it didn't say is:

Flame retardant or not flame retardant (this item alone can make a 20% difference in cost)

With halogen or without halogen (halogen-free systems require larger amounts and are 20-40% more expensive)

Do you want it to be weather-resistant (UV three-piece set for outdoor parts)?

Whether to resist hydrolysis (a necessity for plumbing and water-exposed parts)

Toughen or not toughen (the key bifurcation for low-temperature parts)

You can randomly choose three items, which means three completely different ingredients and three prices.

The same sentence, five different quotes

We conducted a very simple comparison: asking the same sentence 'How much is PA66-GF30' under five common working conditions, the final reported price range is like this——

Operating condition versionActual formulaRelative price
Keep dry indoors, at room temperature, no certificationPA66-GF30 Natural ColorBenchmark
Same as above Flame retardant UL94 V-0PA66-GF30 with halogen flame retardant15-20%
Home appliance casing, withstands GWIT 850℃PA66-GF30 Halogen-Free Flame Retardant High GWIT35-45%
Outdoor photovoltaic buckle, ten-year weather resistancePA66-GF30 Weather-Resistant Three-Piece Set Hydrolysis Resistant40-50%
Motor end plate, long-term 150℃PA66-GF30 Heat Resistant and Stable High CTI30-40%

(The relative price level is common in the industry and is for reference only)

For the same sentence, the quoted price can differ by more than 40%.

So the correct order is: first talk about the working conditions, then discuss the grade.

What kind of product it is used on, the long-term temperature, what medium it comes into contact with, and whether there are certification requirements—once these four questions are answered, the supplier is only then likely to give you a number that isn't just a guess.

There is a counterintuitive benefit here: once the working conditions are clarified, the supplier might actually suggest that you reduce the specifications.

——For indoor components that are only at 80°C for a long time, there is originally no need to use certain high-end grades; if you make it clear, someone will tell you this. Information symmetry is not only good for you, but also makes things easier for suppliers who are willing to work long-term.

3. Element Two: Quantity and Rhythm

Monthly usage, annual usage, and single delivery quantity should be stated separately.

This is not just a formality; the three items correspond to three different things:

Monthly usage determines the batch size and price tier for each production run

The annual usage determines whether an annual agreement can be signed and whether the price needs to be locked.

The quantity per single delivery determines the packaging method, logistics cost, and inventory turnover.

Only saying 'about a few tons per month,' the supplier can only report based on a conservative estimate.

There's one more thing that must be clarified: is it stable or not?

Orders with large fluctuations in demand will definitely have higher prices.

The reason is also very practical: modified materials are produced in single-line batches. Changing the formula on a twin-screw machine requires cleaning the machine and running transitional materials, all of which are costs. If orders fluctuate greatly and temporary orders are frequently inserted, the utilization rate of production capacity cannot increase, and this part of the loss will eventually be included in the unit price.

So this sentence is worth saying proactively: 'Monthly usage is X tons, currently no annual framework is signed, fluctuations may be within ±20%'.

Putting uncertainty on the table is better than hiding it. If you hide it, the result is that the other party will quote you based on the worst-case fluctuation assumption.

4. Element Three: Certification and Testing Requirements

Do you need UL yellow card, ROHS, REACH, food contact, or water sanitation permits—these are hard costs, not freebies.

Why is the yellow card valuable?

UL certification is not something you obtain just once and it's done. Its composition is roughly as follows:

The initial certification fee is a considerable fixed investment.

Annual maintenance fee, to be paid every year

Regular factory inspections, this is a matter of time and labor costs

Each time a new color or thickness is added, it may need to be reevaluated.

This money needs to be distributed over every kilogram of material sold under this grade. If the annual sales of a grade are not large, the certification cost per kilogram becomes very significant.

So the same model with a yellow card is 10-20% more expensive than without a yellow card, which is a normal and reasonable price difference in the industry.

The key action is: clarify in advance and include this part of the cost in the budget, rather than realizing at the end that it is 'more expensive' compared to another company's bare price.

Don't buy the yellow card that 'isn't covered.'

The client mentioned at the beginning fell into this very pit.

UL Yellow Card has coverage—that includes color, thickness, flame retardant rating, and even processing technology. Many times, a grade may have a V-0 Yellow Card, but:

Your wall thickness is 0.8mm, while the coverage on the card is over 1.5mm

You want black, the card only covers the base color and a few standard colors.

Your terminal needs to do GWIT or GWFI, but this card hasn't evaluated this item at all.

None of these can be called 'fake'; they are all just non-compliantly covering your operating conditions.

So what should be written in the inquiry is not 'must have certification,' but —

The terminal is to be exported to the EU, and the complete machine needs to have CE certification. It involves a heating wire at 850°C. Please confirm whether the yellow card covers GMb30 black, with a minimum wall thickness of 1.0mm, and provide the CTI value.

This sentence can block eighty percent of the trouble that follows.

5. Element Four: Color and Appearance

The prices of natural color, black, and custom color are different, and custom color also requires a minimum order quantity.

Why is there a minimum order quantity for custom colors?

Because color matching is not just 'adding paint and stirring it around'.

A set of custom colors needs to go through: making a small sample → customer confirmation → making a larger sample → confirming again, and there may be several rounds back and forth in the process. Moreover, once the colors are finalized for mass production, batch-to-batch color variation (ΔE value) must also be considered.

The time and materials consumed are fixed costs. Therefore, the minimum order quantity is usually between one and three tons — below this amount, the cost of color matching cannot be spread out.

Natural color and black are different; they are regular stock, with a minimum order quantity as low as a few hundred kilograms, and the price is also cheaper (the price of black masterbatch itself is low, and black parts are not sensitive to batch color differences).

Appearance requirements are more important than imagined

The material formulas for exterior parts and internal parts are completely different paths.

The things that need to be explained clearly are:

Is there an exterior surface (the side facing outwards, visible to the customer)?

Whether floating fibers are allowed (an inherent problem of glass fiber reinforced parts)

Glossiness requirement (glossy or matte)

Whether there are skin textures, and whether there has been post-coating or electroplating

If this item is not clarified, the produced pieces may pass at any time, but they will fail the inspection.

A situation often seen in the industry is: all material properties meet the standards, all dimensions pass, and in the end it gets stuck at 'this batch looks different from the previous batch'.

This is not a quality problem; no one wrote down 'what it should look like' in the first place.

6. Element Five: Processing Methods and Equipment

Injection molding, extrusion, and blow molding have different requirements for the flowability of materials; everyone understands this sentence.

But what is really easy to be overlooked is the second half: the mold situation.

The matter of changing materials for the old mold

Whether it is a new mold or an old mold, the type of gate, the length of the runner, and whether there is a hot runner—all of these directly determine the recommended flow grade.

And the most common problem occurs when an old model has its materials replaced.

Here's an example with a real scale: a certain factory originally used PA6-GF30 for a housing, but because it couldn't withstand the temperature, it needed to be changed to PA66-GF30. The mold was not modified.

As a result, the first batch that was produced all turned out to be of poor quality.

The reason is that the shrinkage rates of PA6 and PA66 differ by about 0.3% (the transverse difference may be even greater in the GF30 system). It sounds small, but in the critical fitting area of this part, it precisely caused the tolerance to fall outside the limit.

The cost of repairing this mold far exceeds the small savings from the material price difference we got back then.

So in the inquiry, you should proactively write: 'The existing mold has an XX structure with X gate injection. We hope to change the material without modifying the mold. Please assess the shrinkage rate compatibility.'

Write this sentence, and the supplier will give you targeted recommendations; if you don't write it, everyone will assume you can modify the mold.

Also the equipment tonnage and screws

The tonnage of the injection molding machine, the length-to-diameter ratio of the screw, and whether there is a mixing head—all of these have a significant impact on materials with high glass fiber content.

Drying conditions are also worth explaining: whether there is a dehumidifying dryer, and whether the required time and temperature can be achieved. PA6 has high drying requirements (this part is covered in a separate section). If only ordinary hot air drying can be done on-site, some high-demand materials are not suitable for recommendation.

7. Element Six: Acceptance Criteria and Objection Period

How is it considered qualified?

This sentence is the one most people skip and also the one most prone to mistakes. What needs to be clearly written are four points:

First: According to what standard is it considered qualified

Is it based on the material properties table (melt index, tensile, impact) or on the actual sample results (fits in, stays in place, looks acceptable)?

These two can sometimes conflict. The material properties of a single piece are completely within the indicated values, but when processed, there are floating fibers; or conversely, the properties are slightly low, but the processed piece is completely fine.

If both parties haven't agreed in advance, they will definitely each have their own version when problems arise.

Second: What is the detection method?

Even though it is the same 'tensile strength', the specimen shapes and tensile speeds of ISO 527 and ASTM D638 are different, so the measured values cannot be directly compared.

The same batch of material can show a considerable difference between the two standards. This is not data fabrication; it's simply that the testing methods are inherently different.

So you should write the standard number into the technical agreement, rather than just writing 'Tensile strength ≥150MPa'.

Third: In case of dispute, whose third party shall prevail

The goods leave the factory with an inspection report, and the customer will re-inspect them upon receipt. If both sides get different results, what should be done?

The easiest way is to clearly state in the contract: use a mutually recognized third-party testing organization as the standard, with the costs borne by the responsible party.

This phrase usually sounds like a formal clause, but when disputes arise, it's the only thing that can stop the dispute.

Part Four: How long is the objection period ?

Modified materials have a shelf life—they degrade after moisture, especially PA-type. Materials stored for half a year and freshly released materials don't perform on the same level.

So the objection period must be clear: how many days after delivery is valid to be raised, and what if it exceeds that.

Clearly stating these four rules can save you 90% of the later disputes.

But the reality in the industry is: many so-called "quality disputes" are essentially not about quality issues, but about misalignment of standards.

Engineering Actual Testing: Four Mandatory Tests

Testing 1: Quotation Deviation

Inquiries with Complete Information usually narrow the price deviation to a very small range; For inquiries with incomplete information, the deviation is greatly magnified. This difference is not bargaining power, but information cost.

Test 2: Certification Cost

For the same grade with UL Yellow Card, there is a significant price difference compared to versions without a yellow card. Include this in your budget, rather than treating it as "expensive" when discovered.

Test 3: Shrinkage rate matching

PA6 There is a systematic difference in molding shrinkage rate compared to PA66 (usually around 0.3%. Old molds must be checked before refilling, which is the dividing line for mold modification costs.

Test 4: Minimum order quantity

Custom colors usually have a minimum order quantity of one to three tons, while natural colors can reach several hundred kilograms. This directly determines whether you can lock inventory.

boundary declaration

operating conditionshow should it be handled
only reported one graderevised_reporting operating condition + quantity + certification requirements
usage description vaguemonthly, annual, and single pickups should be explained separately, with fluctuation ranges specified
Certification requirementsSpecify specific standards and coverage in advance, accept reasonable premiums
Appearance partsClarify appearance surface, floating fiber tolerance, gloss requirements
Old mold material replacementVerify shrinkage rate in advance and assess whether mold modification is necessary

Engineering memo

A qualified nylon inquiry = Working conditions + Quantity rhythm + Certification + Color appearance + Processing method + Acceptance standards.

Only when all six elements are present can you negotiate a quotation; If six are missing more than three, it's all guesswork.

Practical Case: Three Common Pitfalls

Pitfall One: Only compare unit prices, not count overall cost.

Material that is two yuan cheaper per kilogram may cause batch fluctuations to raise the defect rate by three percentage points. Based on the processing cost of ordinary parts, a defect rate of three points would have already eaten up those two yuan.

Correct solution: Make a comprehensive cost table that includes materials, scrap, downtime, and after-sales service. This chart can be used for many years after making it once.

Pitfall 2: Technical requirements are only verbal.

It was clearly explained over the phone, but not in the email; Or it was written in the email, but not in the contract attachment. When problems arise, all you find is the contract.

Correct answer: Technical requirements are included in the contract attachment, including physical property indicators, testing method criteria, and acceptance standards. Even three pages of paper are more useful than ten phone calls.

Pit 3: Only work with one supplier.

I've heard this a thousand times, but the reason it can't be done is that having one more supplier means more round of sample testing and one more management cost.

Correct answer: Key part numbers should be maintained from at least two qualified suppliers. Even if the second company only accounts for 20% of the share, it will be the whole company when supply is cut off.

Extended judgment: Two easily confused concepts

In the discussions about nylon inquiries, two concepts have been mixed together for years.

First: flame retardancy and insulation.

Flame retardancy solves the problem of non-fire, while insulation and mark resistance solve the problem of no creeping or breakdown. These are two things.

One material can achieve flame retardancy to V-0, but CTI is only 250V—mounting it on live parts can still cause problems.

Second: strength and toughness.

Glass fiber reinforcement increases strength but reduces toughness; toughening increases toughness but reduces strength and rigidity. On the same part, the two often have a dynamic of one taking advantage of the other.

On the same shell: structural mounting positions need strength, snapping positions need toughness. Usually, it needs to be split into two types of materials. For convenience, using one material results in either snap clips breaking or the main body cracks.

Writing these items into a sheet and sending them to suppliers is more effective than making ten phone calls—the communication costs for nylon inquiries are basically spent on repeated confirmations of these items.

Conclusion

Back to the eleven words at the beginning.

Later, that client learned how to send an inquiry. The last thing he sent me was a page PDF: working conditions, size diagram, terminal certification list, monthly usage curve, mold photos, acceptance standard number.

He said he sends inquiries very slowly now, but basically gets the price in one go.

When it comes to inquiries, the first half hour is slow, the faster the year after.

Just a grain—the earlier you ask about material selection, the easier it is.

For these kinds of pieces, material selection and mold testing can be discussed together

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