汽车转向系统尼龙件怎么选?耐磨耐温尺寸稳定,低噪一起顾

应用领域 发布时间: 2026-09-12 1117 阅读

How to choose nylon parts for the 144 car steering system

Distribution of nylon parts in the steering system

The modified nylon components in the steering system include: the steering column cover and adjustment handle, end caps and covers of the steering gear housing, power steering fluid reservoir (for hydraulic power models), universal joint dust cover, and harness brackets and clamps.

The common requirements are wear resistance (relative motion), temperature resistance (-40℃ to 100℃), dimensional stability, and low noise—the abnormal noise in the steering system is a major source of user complaints.

On-site reconstruction: Three analysis meetings held for the sake of a strange noise

Last spring, a factory in Liuzhou that produces steering system components was complained about by a vehicle manufacturer: when turning the steering at low speed, the steering column cover made a slight clicking sound, which was recorded as a deduction by the driving evaluation engineer. In the first month, the factory tried to fix it by adjusting the assembly gap, but it didn't work; in the second month, they tried to adjust the mold size, but that also didn't work.

For the third analysis meeting, the material supplier was invited to attend. The engineer removed the protective cover and reinstalled it on the test bench, then used a stethoscope on the cover to listen. It was found that the noise came from intermittent contact between the liner of the cover and the steering shaft—the material hardens at low temperatures, and the contact rigidity issue was amplified into abnormal noise.

The solution is divided into two layers: change the material to a modified grade with better low-temperature toughness, so that the protective cover can still maintain flexible cushioning at minus twenty degrees; at the same time, add a felt pad on the contact surface. The improved part was tested on the vehicle for 15,000 kilometers, and the driving evaluation no longer recorded this issue.

The direct cost of the whole process was less than 80,000 yuan, but it took more than three months overall. The biggest cost was actually time—the car was hitting its annual sales target.

At the post-mortem meeting, the factory's Deputy Technical Director said a sentence that was written into the meeting minutes: 'Abnormal noise analysis must follow the approach of the Deputy in charge of contacts, and materials on both sides must be checked; only checking the structure is like a blind person touching an elephant.' This sentence later became the standard opening for their NVH-type complaints.

Abnormal noise is the number one problem of steering components

The steering system has high NVH (noise, vibration, harshness) requirements. The abnormal noise of plastic parts mainly comes from three sources: first, clattering caused by excessive clearance.

Second is the stick-slip phenomenon of friction pairs, and third is the loosening caused by the decay of preload after creep.

Solution direction: First, control the mating tolerance (the tolerance of plastic parts should be given according to the moisture-absorbed state).

Second is the friction pair uses self-lubricating materials, and third is the elastic compensation structure (using elastomers or wave washers to absorb gaps).

Wear-resistant parts operate on a self-lubricating system

The adjustment mechanism of the steering column and the sliding parts of the steering gear both have relative motion. Using self-lubricating modified nylon (PTFE or MoS₂ system) can reduce the friction coefficient from 0.4 to below 0.2, while also reducing wear and abnormal noise.

Note: The PV value of self-lubricating parts needs to be calculated. The load on the steering system is not large, but long-term stability is required (usually designed for over 10 years).

The assistive oil pot must be oil-resistant

The hydraulic power steering fluid reservoir contains power steering fluid (usually mineral-based or synthetic oil).

PA66 has good resistance to mineral oil, but two points need to be noted: first, the oil temperature can reach 100-120°C, so it must be heat-resistant;

Secondly, most oil bottles are semi-transparent (convenient for checking the liquid level), and the combination of semi-transparency, oil resistance, and heat resistance has a very narrow range of options.

Electric power-assisted (EPS) models do not have this part — this is also a change seen in new energy vehicles.

Low temperature and dimensional stability

The steering system has to face temperatures as low as -40℃ in northern winters. PA is most brittle in dry low temperatures, and parts like the column cover may crack from minor impacts.

It is necessary to adopt a toughening system. In terms of dimensional stability, the adjustment mechanism of the steering column is sensitive to clearance—

A PA moisture absorption expansion of 0.6% can change the feel of adjustment, so mineral filling or low moisture absorption systems like PA12 need to be used here.

A Deeper Look: The Three Major Failure Modes of Steering Components and Material Countermeasures

Failures of nylon components in the steering system can be classified into three categories, each corresponding to different material logic. The first category is abnormal noise, which essentially stems from a stiffness mismatch in the contact pair: hard-on-hard contact is particularly noticeable at low temperatures, and this can be resolved by using high-toughness grades at the material end or adding a flexible component to the friction pair.

The second type is wear. Sliding parts such as ball head seats and bushings have a wear rate that determines the maintenance cost. On the material side, a self-lubricating system is used, typically molybdenum disulfide or PTFE-modified PA66, with a friction coefficient that can be reduced to below 0.2.

The third type is creep. The installation claws of the power steering fluid reservoir are subjected to assembly pre-tightening force all year round. Ordinary materials relax by more than ten percent after one year. If the claws loosen, it will leak oil. A reinforced grade with metal inserts is the most stable combination.

The common prerequisite for the three types is low temperature. The steering component is installed in the lower part of the front compartment, and during cold starts in winter, the temperature is close to the ambient temperature; in northern conditions, minus thirty degrees Celsius is not uncommon. When selecting materials, both low-temperature impact and low-temperature friction coefficient data must be considered, although the latter is often overlooked—some grades have excellent friction performance at normal temperatures, but their friction coefficient doubles at low temperatures, causing the ball joint seat to wear excessively over the winter.

Another hidden variable is dust. When the steering component is positioned low, road dust is blown in by the airflow, changing the wear mechanism from pure sliding to abrasive wear. The evaluation of the wear-resistant system should be based on dust-containing conditions, and during testing, standard sandy dust should be added to make the data closer to reality.

Extended Judgment: The Hidden Variables of the Steering Component

There are three hidden variables that are most easily overlooked. The first is the decay of assembly preload — PA creep can cause the clip preload to decay by 20%-30% within half a year, so the design needs to use elastic compensation.

Second is the compatibility of the grease — the steering system commonly uses lithium-based grease, and certain thickeners can be extracted by the grease, leading to performance changes.

Third is the association of the airbag module—the steering column cover and the airbag cover have a mating relationship, and any changes need to be validated in coordination.

Engineering Test: 4 Mandatory Tests

Test 1: Friction coefficient (self-lubricating). MoS₂ system 0.22, general PA66 0.42 — self-lubrication significantly reduces the risk of abnormal noise.

Test 2: Low temperature -40℃ impact. The toughened system is 13 kJ/m², while general PA66 drops to 5 kJ/m².

Test 3: Assisted oil immersion for 1000 h / 100℃. PA66 mass change 2.2%, strength retention 82%.

Test 4: Creep decay (half a year). The preload of the clip decreased by 25%, and after adding elastic compensation, it dropped to 8%.

Boundary Declaration

Operating conditionRecommended materials
Column Guard / Adjusting PartToughened PA66 Mineral Filled
Sliding friction pairSelf-lubricating PA66 (MoS₂ or PTFE)
Power Assist Oil Pump (Hydraulic)PA66 Semi-Transparent Oil-Resistant Grade
Universal Joint Dust CoverToughened PA66 or TPE
Low noise requirementsSelf-lubricating elastic compensation structure

Engineering Memo

Abnormal noises in the steering system components are the number one problem, originating from clearance fit, stick-slip, and creeping loosening — it is necessary to use a self-lubricating system and elastic compensation structure.

The power steering oil reservoir is only available on hydraulic power steering models; electric power steering (EPS) models do not have this part.

Practical Case Study: Common Pitfalls and Correct Solutions

Pitfall 1: Selecting materials based on room temperature performance, ignoring the actual temperature and medium of the engine compartment. Correct answer: The working conditions for compartment components are four overlapping conditions: high temperature + oil vapor + vibration + alternating hot and cold conditions. Modified nylon should be accepted based on thermal aging performance, not according to the factory physical property sheet—a 75% retention rate after 1000 hours of thermal aging is a common threshold. Pitfall 2: Only room temperature assembly verification was done, without sealing and tightening verification after alternating hot and cold conditions. Correct answer: Alternating temperature from -40°C to 120°C causes the fit clearance to change by 0.3%-0.5%. Buckles and sealing surfaces should be checked according to the alternating condition. Pitfall 3: To reduce costs, the reinforcement content was reduced to just enough, resulting in batch warping and assembly difficulties. Correct answer: Leaving 15%-20% performance margin for automotive parts is an industry practice—assembly tolerances, batch fluctuations, and operating condition deviations all have to be taken into account. These three pitfalls are all checklists that must be self-checked before mass production.

Follow-up Question Three: Three practical questions for steering parts readers

First question: Which is more cost-effective, self-lubricating modification or the fuel tank? Depends on the part location. Bushings in closed structures can't be oiled, so self-lubricating modification is the only solution; In open structures, both are acceptable; the fuel tank structure is simple but adds an assembly station. Most steering parts use lubricating material, aiming for full lifespan and maintenance-free operation.

Second question: How to determine the oil resistance rating of the power oil tank? Decide according to the type of power oil tank. Electric power assist systems basically do not come into contact with oil; ordinary moisture-resistant grades are sufficient; For hydraulic power assist kettles soaked in oil year-round, soaking tests must be conducted according to the oil model. Different power assist oil formulas vary greatly, so tests should use real vehicle oil instead of standard substitute oil.

Third question: How to prevent recurrence of abnormal noises after rectification? Write low-temperature contact stiffness into incoming material inspection. Use low-temperature hardness data as a threshold; batches exceeding standards will not be put into production. The biggest concern with abnormal noises is that rectification is effective but cannot be quantified; if rectification fails to meet inspection standards, recurrence is only a matter of time.

Reverse Case: A failure of only changing materials without changing the structure

A supplier dealt with excessive wear on the ball joint seat by only replacing the material with a more wear-resistant grade, without changing the gap. Wear-resistant material slowed down wear, but the new material had a higher modulus, worsening clearance fit, and complaints about abnormal noises followed one after another. Materials are part of the system; replacing any link requires rechecking the entire chain's matching.

Addition: Practical issues from three other readers

Fourth question: How to balance appearance and functional parts like steering guards? Appearance depends on color difference and gloss uniformity; function depends on low-temperature toughness. The indicators on both ends don't conflict much, but a reminder: the surface of matte shields shows more obvious precipitation than glossy panels, and the standards for lubricating modified materials for appearance evaluation on matte surfaces are a step stricter.

Fifth question: Are there concerns about magnetic interference in plastic parts around EPS motors? The plastic itself is non-magnetic, but some customers require confirmation that the packing does not contain conductive or magnetic components, and pure fiberglass reinforced systems do not have this issue. At the document level, just provide a statement of packing composition; there have never been a single case of interference in actual testing.

Sixth question: How can small batch verification samples of steering parts be made economically? First, use an injection molding simulation card to fill and warp once, then start mold trial production. Simulation costs several thousand yuan and can avoid most trial rework. The steering component structure is not complex, and the simulation accuracy is among the highest among various parts.

Judgment in a set of scenarios

Scenario One, an afternoon at a test track. At the test track, I checked the durability of the steering bench with a client engineer. After 80,000 cycles, the ball head seat was removed and showed wear of only 0.04 millimeters. The engineer said this number passed, but what truly determined the loading experience was the friction curve during wear; only smooth curves showed no change in feel.

The stability of materials is more valuable than the ultimate value.

Scenario 2: A visit from a northern client. At the end of January, I went on a business trip to Changchun. The client drove out the car parked overnight, and both the wipers and steering were normal. The accompanying engineer said the advantage of local suppliers is that they can get through the winter together—only those who experience the cold can know the severity of the cold issue, and the physical condition rating of minus 30 degrees is a different matter when it arrives on site.

Remark: Two sets of easily overlooked details

Detail Group One, about humidity control. Nylon parts are assembled immediately after injection molding, and continued moisture absorption during use causes size and rigidity to drift. For parts with matching relationships inside steering parts, the standard practice is to adjust humidity before assembly, ensuring consistency between usage and assembly conditions.

Some customers' production lines skipped the humidity control process to avoid problems: after three months of new cars, the hood became loose, ultimately because the moisture content during assembly was different from when in use. The process takes half a day, but the risk saved is a two-year warranty period.

Detail Group Two: About the Archives. The more detailed the working condition records for steering parts, the faster the model replacement. One client's condition sheet even divided road types into three levels: urban, highway, and rural, with the rural dust coefficient listed separately. This set of files was directly referenced during the new platform's development, and the selection meeting ended after just one hour.

The thickness of early data accumulation determines the speed of project progress later.

Final Part: Final Words

The selection of steering parts doesn't have earth-shattering technology; it relies on thoroughly checking low-temperature, wear, and creep all three dimensions under the worst conditions. Detailed verification makes loading smooth; Saving one step makes the market come knocking. Slow progress is actually the fastest.

Conclusion

What we deliver is not just a package of materials—the earlier you ask about material selection, the easier it is.

For material selection and mold testing for these types of pieces, you can chat together

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