阀门密封用什么TPE?水口料掺多少,成本差多少

应用领域 发布时间: 2026-09-12 4369 阅读

The valve seal leaks after being switched hundreds of times, causing the medium to escape as gas or liquid. If the valve seal's resistance to the medium and its rebound are not selected correctly, the valve becomes a leakage point.

After switching on and off hundreds of times, it leaks, and the medium loses gas and liquid.

Valve sealing is a 'component that withstands medium pressure': resistant to the medium, resilient, and sealing. The material must be resistant to the medium, resilient, and sealing — conclusion first: TPV is mainstream for valve sealing; for strongly corrosive media, rubber composites are retained.

The biggest pitfall in valve sealing: how much sprue material is mixed affects the cost. The more sprue material is mixed, the more cost is saved but also the riskier — sprue material is the dividing line for costs.

Valve sealing is a functional component: leakage and cracking are both problems. Only with the right material will the valve be stable—it's a functional component, don't skimp on material costs.

Why use TPV for valve sealing

Reasons for using TPV for valve sealing: good chemical resistance, good rebound, good sealing, long service life—together, these four reasons make it suitable for valve sealing.

Media resistance is key: contact with the medium. Media resistance testing is written into acceptance — swelling, that's the problem.

Rebound cannot be skipped: switch rebound. Rebound testing should be included in the acceptance—leakage is a problem.

Medium switch pressure, three-way shutoff

Medium conditions: Contacting medium. Resistance data must be verified—the swelling, that's the problem.

Switching condition: repeatedly switching on and off. Rebound data needs to be checked—leakage is the problem.

Pressure condition: pipeline pressure. Sealing data needs to be checked — leakage is the problem.

TPV or rubber? Check the valve at a glance

DimensionTPVRubber
Resistant to mediumGoodGood
reboundGoodGood
SealGoodGood
CostMedium-highMedium-high
EfficiencyInjection moldingVulcanization
PurposemainstreamCorrosion

Table reading: TPV has good efficiency; strong corrosion-resistant rubber is good—for valve sealing, TPV is mainstream.

Choose according to the medium: corrosion-resistant rubber, conventional TPV.

Valve inspection: First ask how much gate material is mixed in

PhenomenonReasonCountermeasure
Performance driftwatered-down materialNuclear formula
Batch differenceProportional fluctuationLock ratio
Low intensityMore recycled materialrecycled material
Low costMaterial Mixing DepartmentBalance

How to read the table: The ratio of sprue material is the key to understanding both cost and performance — if too much recycled material is added, medium resistance decreases and pressure sealing loosens first.

Scrap material is the dividing line of cost.

Only focusing on cost, three pits of gate material got out of control

Pitfall 1: Focusing only on cost. The proportion of recycled material is vague, causing leakage under pressure in valve parts — the formula must be inquired about.

Pitfall 2: Water gate material out of control. Batch drift — ratio locked.

Pitfall three: Medium resistance leak testing. Swelling — medium resistance testing must be done.

Before choosing valve seals, first ask about the formula

Three questions: What is the medium, what is the ratio of water gate material, and what is the pressure. One verification: actual operating conditions measured——three questions and one verification make the supplier's details clear.

Formula verification must come first: first ask about the mixing ratio of the runner material in the contract. Ask about the formula first, then talk about the price—runner material is the cost watershed.

Making sample retention a habit: retain samples for each batch and retest the medium rebound by batch. When changing material for a batch, compare first before scaling up — stable batches lead to fewer customer complaints.

Valve sealing: Don't panic when problems occur, match each issue correctly

PhenomenonReasonCountermeasure
LeakInsufficient reboundReplace with high-rebound material
SwellingResistant to weak mediaChange to a more resistant material
CrackingInsufficient strengthSwitch to high-strength material
Batch bleachingFluctuation of water outlet materialLock ratio
LeakageInsufficient sealingAdjust hardness level

Mainstream valve seals TPV, Shore A 75-85, switch fatigue measured according to actual frequency. Frequent switch seals rely on rebound; if compression set exceeds 30%, it cannot close tightly—lifetime depends on fatigue data.

TPV has good medium resistance and rebound performance, while rubber composites are highly corrosion-resistant. For water and oil media, use TPV; for strong acids and strong bases, use rubber composites — select according to the corrosiveness.

If the springback is insufficient, first check the injection molding parameters (mold temperature/material temperature/holding pressure), don't rush to blame the formulation. If the sprue-to-part ratio is out of control or the parameters aren't locked, the springback will drop—lock the parameter window first.

Valve seal acceptance: three-piece set of medium immersion resistance, rebound rate, and fatigue cycling. Include the proportion of sprue material in the acceptance, and perform assembly verification for the valve body fit.

After adjusting the parameters, rebound recovery and odor meet the acceptance standards, and valve seal rebound is stable from the source. Samples from each batch are tested for rebound plus fatigue, and when changing materials between batches, comparison is made before scaling up.

Valve sealing is selected according to corrosion resistance: for water and oil use TPV, for strong acids and bases use rubber composites. TPV has good rebound against media; if rebound is insufficient, first check mold temperature, material temperature, and holding pressure before blaming the formulation. If the sprue material ratio is out of control, the rebound will decrease.

Include the proportion of sprue material in the acceptance, and check the valve body fit during assembly. Test the set of three items together for medium resistance immersion and fatigue cycling, lock the parameter window first, and for each batch retain samples to measure rebound and fatigue.

Write the proportion of water inlet material into the acceptance, and lock the parameter window first. Keep samples from each batch to measure rebound and fatigue, perform assembly verification for valve body fit, and test resistance to medium immersion according to the time schedule.

If the valve sealing rebound is insufficient, first check the injection molding parameters, don't blame the formulation. For water-oil TPV with strong acids and bases, use rubber composites, and write the ratio of sprue material into the acceptance.

The parameter window first locks the valve body for assembly verification, and samples are taken from each batch for rebound and fatigue testing.

Cologne Customer Case: Insufficient rebound not up to standard, adjusting parameters causes odor during acceptance

An industrial equipment factory in Wuxi had insufficient valve seal rebound and functional parts that did not meet performance standards. Kolon cooperated to adjust the injection molding parameters (mold temperature/material temperature/holding pressure), and the rebound recovered, with the odor level meeting the customer's acceptance standards. The parameter window is locked, and the rebound is stable from the source—when dealing with rebound problems, first check the parameters and then the formulation.

Summary

For valve seal selection, first ask about the formula, then test the rebound. The cost difference depends on how much runner material is mixed in; runner material is the watershed.

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