自行车尼龙件换料:踏板、导轮、线管各动什么

应用领域 发布时间: 2026-09-13 3158 阅读

Last winter, a customer who makes electric-assist bike gear guide wheels sent a small bag of parts, saying that this batch was produced after changing the materials.

The bag is a resealable bag used for holding chain oil, and the opening of the bag is still coated with oil.

Inside, there are six guide wheels, and the outer ring's tooth surface has worn into a step, which can catch your nail when you scrape it.

On the phone, he asked very directly: 'After replacing the material, the teeth were still cut according to the original drawing, so how come they rounded off after just three months of riding?'

This is the most common opening scenario for changing materials of bicycle nylon parts: the appearance matches, the size also passes inspection, but the account is recorded elsewhere.

I first asked him three questions.

Are you replacing just the substrate, or the substrate along with the lubrication system?

When performing the impact acceptance test, is the item in a dry state or after humidity adjustment?

For the low temperature part, is it tested at minus twenty degrees, or at normal workshop temperature?

He paused and said he couldn't answer the first question, and the workshop hadn't done the last two questions.

These three questions will be addressed in verse nine.

If you lay this matter out as a timeline, the accounts will be clear.

Starting point: The guide wheel made from new material has a qualified appearance, and both the tooth thickness and hole diameter are within tolerance. The material unit price is even lower than before.

Lurking: In the first two months there were no complaints, the rider only felt that the shifting was slightly stickier than before, and there were a few fine particles in the chain oil.

Outbreak: In the third month, a batch of guide wheels showed tooth top breakage and skipping in the low-temperature section, and the after-sales department returned them according to the vehicle batch.

Settlement: Re-testing after disassembly, the formula has hardly changed; what has changed are the dry-state low-temperature impact, the tooth thickness after humidity adjustment, and the rate at which the lubrication system migrates to the surface.

A calculation correction: the outer diameter of the guide wheel is only a little over twenty millimeters, and the ring at the tooth top bears more concentrated force. Grinding off 0.1 millimeters is enough to create engagement side play that the rider can feel as shifting jumps.

The plastic parts on the bicycle are all small, but each one is exposed outdoors, in low temperatures, through hundreds of thousands of cycles.

1. Before changing materials, at least four items in the six-dimensional working conditions must have completed numbers.

The temperature question needs to be divided into three parts; giving only one number is not enough to ask accurately.

Ambient temperature: In the Yangtze River Basin, it ranges from minus 5 degrees to 40 degrees. In northern regions, it can drop to minus 25 degrees during winter, and for exports to Northern Europe, it can be ten degrees lower.

Sun-exposed temperature: Dark-colored items exposed to the sun at noon in summer can reach over seventy degrees on the surface, much higher than the air temperature.

The heat generated by the part itself: the chain friction area and around the brakes, for a short time can reach around eighty degrees.

The portion at low temperature is heavier than at high temperature—nylon is most brittle under two conditions: one is in a dry state, and the other is at low temperature. Problems only occur when the two conditions come together.

This load should be calculated according to cycles, not statically.

Pedaling at eighty revolutions per minute, riding for an hour amounts to 4,800 revolutions; if riding three hundred hours a year, that's over 1.4 million revolutions.

The load frequency of the variable-speed guide wheel is even higher than that of the crank, as each link of the chain must engage once as it rolls by.

This medium doesn’t only include rainwater: there is also muddy water, chain oil, car wash water, and sweat. When cycling by the sea, salt spray also counts.

Mud and water are the easiest to underestimate—after the slurry dries on the surface, it has an abrasive effect, and the wear rate will increase.

Lifespan is calculated backwards based on the total vehicle years: commuter cars are considered five years, sports cars three years, and shared and rental cars two years.

Mileage is calculated at 2,000 to 5,000 kilometers per year. For easily worn parts like guide wheels, the common replacement cycle in the industry is 3,000 to 5,000 kilometers.

Appearance is a strict criterion for colored parts: colorfastness, color difference, and floating fibers on dark-colored parts all need to be checked after being exposed outdoors.

Compliance should be addressed in advance in separate sections: the sharpness of the edges of children's strollers, the pull strength of small parts, and restricted substances. For export items, refer to the regulations of the destination.

Among these six dimensions, ask for the numbers for temperature, load, medium, and lifespan first, then discuss which material to change.

They can't even specify the operating temperature range of the original parts, so this time changing the material is just taking a batch of goods to gamble with.

2. Lay out three routes without making a judgment about which is better

Changing materials is not about choosing the strongest one, but about spreading the costs of several routes on the table.

RouteLow-temperature toughnessWeather resistance and appearanceWater Absorption and SizeWhich one do you usually switch from?
PA66-GF30 Toughened Weather-resistant systemUpper-middleDark-colored pieces are easy to make, while light-colored pieces require selecting the system.Medium water absorption, dimensions based on wet state coreGeneral-purpose PA66-GF30, recycled material blend parts
PA6-GF30 with mineral filler (cost range)middleGenerally, exterior parts need to be selectedHigher water absorption, prone to warping under prolonged conditionsHigh glass fiber PA66
Self-lubricating PA66 (for guide wheels and wire tubes)Upper-middleLook at the system, adding carbon black is more stableMedium, the thickness of the teeth should be based on the wet state coreGeneral-purpose PA66, POM
PA11 / PA12 and POM (non-water-absorbing grade)GoodGoodVery low water absorption, dimensionally stableGeneral PA66, small metal parts

There is no hierarchy in the four lines, only matching.

The fiberglass with added toughening provides low-temperature toughness, but the cost is a reduction in rigidity.

The mineral mixed filler suppresses anisotropy, making it less likely to warp over long conditions, but the trade-off is that both wear resistance and appearance are mediocre.

The PA6 system looks better in terms of cost, but it has a high water absorption rate, so the dimensions need to be recalculated based on the wet state.

The long carbon chain and the one that does not absorb water stabilize the size, at the cost of unit price and processing window.

Why is the low-temperature column listed separately? Because ordinary elastomer toughening will become brittle on its own at low temperatures.

Its glass transition temperature is around minus twenty or thirty degrees; once it reaches that temperature, the toughening phase changes from soft to hard, which is equivalent to adding whiteness.

To work in this temperature, you need a core-shell structured toughening agent: the shell layer spreads the stress, while the core layer still retains deformation ability at low temperatures.

This is not a secret of the recipe, but a difference in molecular structure.

One more thing: whether it is weather-resistant or not basically has nothing to do with the glass fiber content, but is related to the stabilization system.

So in the schedule, the column 'Weather Resistance and Appearance' is not asking about the substrate, but whether this whole system has been properly applied.

3. The form that needs to be re-verified after changing materials

The thresholds in the table only provide a direction; the acceptance values need to be determined based on your components, your climate zone, and actual measured data.

IndicatorDirectional ThresholdVerification Method / StandardCommon failures after material changeCommon solutionCorresponding auxiliary agent system
UV aging retention rateAfter 1000 hours of xenon lamp exposure, tensile strength retains more than 70%Xenon lamp aging ISO 4892-2 / ISO 527Surface chalking, fading of light-colored partsStabilization system matched according to outdoor gradeLight stabilizers (hindered amine, UV absorbers)
Low temperature shockSet the threshold according to the minimum installation temperature in winterLow Temperature Box ISO 179Tooth top chipping, buckle crackingCore-shell toughening system Increase mold temperatureToughening agent (core-shell structure)
Dry impactResidue in dry state and in conditioned stateDry specimen ISO 179Factory-new parts are more brittle than parts that have been used for half a year.Release according to dry state, recheck according to wet state
Dimensions after moisture conditioningTooth thickness and hole diameter are still within the tolerance windowISO 1110 Humidity Control Coordinate Measuring MachineReduced backlash and abnormal noiseCheck the mold according to the wet dimensions
Fatigue (Meshing and Trampling)Number of cycles converted based on mileageCyclic loading notch specimenTooth surface spalling, root cracksReduce stress concentration Increase toughness
Wear-resistant and self-lubricatingWear controllable at the 5,000-kilometer levelTest Bench Wear Comparison WeighingTooth rounding and chippingDense surface Reduces friction
Color Fastness and Color DifferenceGray card level according to appearance part requirementsChromatic aberration after xenon lamp Gray card evaluationColored parts fade firstPre-confirmation of weather-resistant pigment file
Stabilization marginDoes not yellow or precipitate after long-term thermal oxidationHeat Aging Chamber Appearance EvaluationThe same batch of pieces varies in yellow, some deeper and some lighter.Checking Mixed Material and PelletizingAntioxidant (hindered phenol, phosphite)

How to read this table: first look at the first two rows.

Ultraviolet and low temperature are the main concerns for bicycle parts, and they are also the first two items to deteriorate after material changes.

The third row is inconspicuous, but most complaints about brittle fractures in winter occur here, and it cannot be detected in tests at normal temperature.

The fourth line is an old problem with precision parts: dimensional drift after moisture absorption is often due to the measurement conditions not being set together with the material.

The middle three rows determine how long the component can be used and also determine whether the rider will hear abnormal noises.

When quoting standards, include the version year in the specification. If measurement methods are inconsistent, the data from the two companies cannot be compared together.

4. The Five Most Common Failures After Material Change

Failure 1: The tooth tip breaks off in the low-temperature range.

Most people first think of 'adding toughness when it's brittle,' but you need to consider two things: one is whether it is in a dry state or a conditioned state, and whether it is broken at room temperature or below zero.

This is often attributed to the additives side: if an ordinary elastomer is used in the toughening system, it itself enters the glassy state around minus twenty degrees, making the part even more brittle.

It's like spending money and getting the opposite effect.

Failure 2: Surface chalking, fading of light-colored parts.

This is not 'material instability'; for the most part, it's that the settings of the stabilization system haven't been adjusted for outdoor conditions.

The damage from ultraviolet light occurs in two steps: ultraviolet first breaks the molecular chains, and oxygen then follows to attack.

So light stabilizers and antioxidants are two complementary things; if you only add one, the remaining amount of the other will be exhausted first.

Failure three: Within the same batch of parts, the yellowing varies from deep to light.

The common root cause is uneven dispersion of the antioxidant, or the temperature during extrusion and pelletizing was too high.

The direction points to mixing and masterbatching, not to the substrate.

Failure 4: The sprocket teeth are worn round, and fine debris appears inside the chain.

The root cause is often not that the material is soft, but that the lubrication system moves to the surface, making the surface dry instead.

On top of that, the humidity adjustment wasn't done, the tooth thickness was approved in the dry state, and after loading and absorbing moisture, it jammed, the side clearance decreased, and both abnormal noise and wear occurred.

Failure Five: The colored pedals turn gray after a year, and the color does not match.

The root cause lies in the weather resistance of the pigment, not the substrate; it only affects the physical property surface, not the pigment list, so this column will inevitably be dropped.

There is a sentence I want to say separately.

When something goes wrong with bicycle parts, most people first ask, 'Is it this material's fault?'

But more than half of what I saw on site was that drying, humidity control, and mold temperature were not changed along with the material.

The material follows the process. If the process hasn't changed, it will be the same no matter what material is used.

5. Processing and verification, the order cannot be changed

It is recommended that the verification sequence of bicycle parts be arranged in reverse according to 'how the parts fail on the bike'.

Let's talk about drying first. If the moisture-absorbing material exceeds the moisture limit, the feed tube will be chain-cut, the parts become brittle, silver streaks appear on the surface, and defects become visible very late.

We have handled a very typical type of complaint: the same bag of material, the same mold, one mold turn out fine, the next one is brittle.

After checking to the end, the formula wasn't changed at all; the problem was in the drying.

Moisture content is hardest to maintain during the plum rainy season in the south. After opening the package and leaving it in the workshop for a few hours, the moisture can recover to some extent.

Our approach is to confirm with instruments or dew point data before going online, not based on touch.

Let's talk about mold temperature again. Fiberglass materials are most afraid of a low mold temperature: the fiber ends get frozen on the surface of the part, turning into floating fibers.

The floating fibers of the dark-colored parts are turning white piece by piece; after another exposure to ultraviolet light, the peeling starts from the fiber tips.

The mold temperature column supports crystallinity and surface condition, and this is more important for bicycle exterior parts than for structural parts.

The floating fibers are often not due to "too much fiberglass." Raising the mold temperature from 80 degrees to 115 degrees caused the same batch of material, with the same mold, to immediately separate on the surface comparison pieces.

Then comes humidity adjustment. Matching parts such as guide wheels and buckles must be re-measured and accepted according to the humidity-adjusted state.

A guide wheel weighing over twenty grams can absorb about half a gram of water when balanced.

When this quantity is transferred to a mating surface of the fifty-millimeter scale, the dimensional change is on the order of 0.1 millimeters.

On the meshing clearance, this is moving from 'just right' to 'fully tight'.

The verification order is arranged as follows:

1. Material Level: UV aging retention rate, impact in dry and conditioned states

2. Process window: Compare parts molded under different mold temperatures and holding pressures, and check for floating fibers and key dimensions

3. Component Level: Tooth thickness and aperture after humidity adjustment, fatigue and wear

4. Test Bench: Four working conditions of low temperature, normal temperature, salt spray, and muddy water

5. Complete Vehicle: Run the vehicle for one season after loading, and re-test for abnormal noises and handling during the period

If the previous item fails, moving on means the subsequent data has no explanatory value.

Why can't the order be changed? Because both impact and size are affected by moisture content.

If the state isn't locked, running the test bench will only make the lifespan valid for that batch, and it will drift again when mass produced.

6. Boundary: In these positions, stop changing bicycle parts first

This section helps you cut your losses before starting work.

First, main load-bearing structures such as the frame, front fork, and seat tube.

What they need is a comprehensive account of rigidity and fatigue; carbon fiber or aluminum alloy is more suitable.

Secondly, things like the hub axle, quick-release lever, crank, and chain.

It is subjected to metal-level stress and impact, and the plastic part has no margin in this position.

Third, the brake caliper body and disc. Involving braking safety, the materials must follow certification, modified nylon is not acceptable.

Fourth, bearing positions that are soaked in water for a long time or buried below the waterline. Both wear and size considerations are not cost-effective; stainless steel or oil-containing bearings should be used.

Fifth, load-bearing components for long-term riding below minus thirty degrees. In this range, one should consider low-temperature specialized systems or long carbon chain routes, as ordinary glass fiber reinforced systems lack sufficient data support.

Sixth, parts whose failure points have not yet been identified. Whether it is a dimensional issue or a material issue, the solutions are completely different. Identify the problem first before handling the material.

Putting these six points at the front is not to discourage, but to save time.

Proofing orders, batch cards, and full case rollbacks—this tuition fee is much higher than if it hadn't changed from the start.

7. Material Change Risk List (From the original route to this one, things that need to be moved)

link; segment; partWhat needs to be moved?Points that are easy to overlook
MoldIf the substrate and filling system change, the shrinkage rate changes accordingly, and the tooth thickness and pore spacing need to be recalculated.Only the material is changed without checking shrinkage, and the meshing side clearance is consumed
DryDetermine the window based on the actual measured moisture content, with the dehumidifying dryer as a prerequisiteHot air drying is basically ineffective for water-absorbing materials
Humidity controlCoordinate parts to be retested and accepted under conditioned moisture stateRelease according to dry-state dimensions
Material Temperature and Mold TemperatureThe glass fiber system and the toughening system require higher mold temperatures.Copy the gear settings of the original material
Pressure Holding and DemoldingThe tooth root and snap fit need to have pressure retention redefined, and the draft angle for demolding needs to be reviewedStress concentration at the root of the tooth, whitening when demolded
Color differenceAdvance confirmation of color samples for uncoated parts and colored partsThere are differences in the base color of different batches of substrate
Ultraviolet and Color FastnessColorful items require climate-based inspection according to the destinationOnly test the properties at normal temperature, do not test the color difference after xenon lamp exposure
Verification orderMaterial → Process → Component level → Test bench → Complete vehicleIf the previous item fails, just move on.

8. Proofing and trial mold scheduling (number of machine runs, what is inspected each round, how long samples are kept)

Replacing materials and testing molds for bicycle parts is usually done in three rounds, without skipping steps between rounds.

First round · Sample comparison: Use your original mold to make three to five samples, only checking moisture content, appearance, weld lines during short shots, and key dimensions.

This round should first confirm whether the 'material can fill the teeth', keep two samples, mark the batch number and drying parameters, and keep them at least until the end of the second round.

Second Round · Process Window and Part Level: fix the material, change mold temperature and holding pressure, make two sets of comparison parts.

Check the tooth thickness after humidity adjustment along with the aperture, low-temperature impact, fatigue, and wear; UV aging samples should be submitted for inspection simultaneously.

This round basically sets the mass production parameters. Samples are sealed and stored by batch, with a storage period of at least three months after mass production stabilizes.

Round 3 · Test bench and complete vehicle: Run the test bench under four conditions - low temperature, normal temperature, salt spray, and mud and water, then install on the vehicle and run for one season.

Only after this round is over is it recommended to increase the volume.

Why can't three rounds skip? Because the conclusion of each round is the premise of the next round.

The cooperation on our self-produced side focuses on three things: the formula can be adjusted according to your climate zone and riding conditions, sampling can be done together to find the optimal window, and small-batch trials with multiple grades can be conducted in parallel.

The auxiliary system in the formula is matched according to the working conditions per item — conventional auxiliaries are kept in stock, and special models are matched as needed; you report the working conditions and grade, and the material and auxiliaries are prepared together at once.

A one-page document for purchasers and technicians

SceneRecommended RouteKey indicatorsVerification StandardConditions that need to be confirmed first
Pedal bodyGlass fiber reinforced Core-shell tougheningLow-temperature shock, fatigueISO 179 Cyclic LoadingMinimum installation temperature in winter
Variable speed guide pulleySelf-lubricating PA66Wear amount, tooth thicknessTest Bench Wear ComparisonMileage and types of chain oil
Conduit and sheathLow water absorption nylonDimensions after water absorption, bending fatigueCoordinate measuring machine after humidity adjustmentRouting Space and Minimum Bend Radius
Water bottle cage, computer mountGlass fiber reinforced weather-resistant systemUV retention rate, color fastnessISO 4892-2 AgingWhether the exterior parts match the color scheme
Bicycle Basket MountHigh-toughness systemImpact, creepISO 179 Long-term loadMaximum Overload and Road Conditions

9. Several Frequently Asked Questions

Question: After changing the material, if the room temperature properties match, can it be approved?

Answer: Not enough. The main stress tests for bicycle parts are ultraviolet, low temperature, and fatigue. Passing the room temperature column only indicates that the material can be produced.

Question: The original material has been discontinued. Can the formula be copied exactly?

Answer: You can copy the material properties, but you cannot copy the process. Drying, mold temperature, and holding pressure should follow the equipment and workshop conditions.

Question: Is it necessary to add carbon black to colored parts?

Answer: Carbon black absorbs ultraviolet light and also deepens the color, so it can't be used for light-colored parts.

The approach for light-colored pieces is to fully adjust the levels of the light stabilizer, and then screen each piece according to the weather resistance grade of the pigment.

Question: If a little recycled material is mixed into the guide wheel, can it save costs?

Answer: The money saved usually gets spent back on wear and gear skipping.

If the molecular chain in the recycled material breaks, viscosity decreases, wear resistance and fatigue drop first, and batches will also differ.

Question: Between dry and humidity conditioning, which release should be used?

Answer: Assembly tolerances are calculated according to humidity condition, factory inspection is done as dry state, and both copies must be retained.

Keeping only one copy means pushing the risk to after loading.

Question: Why do the first three sentences set the direction?

Answer: The first sentence clarifies whether the base material is replaced or the entire system; the second asks about acceptance status; the third confirms whether low-temperature testing has been conducted.

If you answer all three sentences together, the question usually narrows down to one or two items.

Back to the three questions at the beginning.

Ask about the base material route, acceptance status, and low-temperature operating conditions.

If you answer all three, the direction for replacing nylon parts like shift guide wheels is basically settled.

The plastic parts on the bike are all small, but the bill is big.

The real price difference is never the price difference per bag of material, but the after-sales service for the batch returned from the whole bike.

The most troublesome inquiry is this sentence—"After replacing the material, the teeth are still the same, how come they are rounded in just three months?"

Because behind this sentence often lies three lines simultaneously: ultraviolet, low temperature, and fatigue, and the verification order of these three lines cannot be changed.

We do modified nylon pelletizing, mixing material and additives together; For these parts, material change and mold trial can be discussed together

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