泵体、阀门壳体用玻纤/矿物增强PP:耐腐蚀与耐水压怎么判

应用领域 发布时间: 2026-09-14 2286 阅读

The pump body and valve housing are made of modified PP. The material needs to be immersed in the medium for a long time and also withstand long-term pressure — 'just being able to endure' is not enough. This article discusses how to list the media, the criteria for chemical resistance under loading conditions, multi-temperature extrapolation for long-term hydrostatic pressure, flange creep relaxation and verification order, and explains why modified PP should not be forced in long-term scenarios above 90°C, with strong solvents, or in high-head situations.

There was an engineer who makes chemical metering pumps, and he brought a cracked pump casing to ask: 'I've used it for four months, and it cracked from the base of the flange, breaking as soon as I applied force. The material's tensile strength was tested and is up to standard. Could there be a problem with the material?'

I asked three questions: What is the medium, what temperature, and how much pressure. He answered: tap water with a little descaler, sixty to seventy degrees, pressure not high.

The direction has been determined—it's not that the 'strength is insufficient,' but that 'being in the medium for a long time and constantly pulled by the flange bolts' caused it to crack at the circle with the greatest stress.

For parts like pump bodies and valve housings, the material needs to be able to exist long-term in the medium and under long-term pressure. It must 'live' under the simultaneous presence of these two conditions, not just 'endure' them.

"Withstand" means it doesn't deform after a short soak; "survive" means that after thousands of hours, the flange is still there, the sealing surface is still intact, and the bolt preload is still maintained. The methods of verification for these two things are completely different.

1. Failure site of pump and valve parts: the crack is not in the flow passage, but on the circle with the maximum stress

Conclusion first: The most common failure of this type of part is not bursting under pressure, but cracking from the base of the flange, around the screw holes, and at the fillets — the locations almost all point to a combination of 'medium and stress'.

Scene 1: Cracking at the base of the flange, material inspection passed. The part was used for a few months and cracked radially from the fillet of the flange. Conventional physical testing could not detect any issues—this is environmental stress cracking: the medium penetrates and induces crazing, and assembly stress and preload forces pull it open. Short-term soaking does not reveal it because it is not under load.

A detail for insiders: For the same material and the same medium, a stress-free sample may show no change after soaking for 1000 hours; however, after being loaded to 1% strain, silver streaks can appear in a few hundred hours. Reports that only conduct stress-free soaking are basically of no reference value for pressure-bearing components.

2. Six-Dimensional Breakdown of Working Conditions: Temperature, Internal Pressure, Medium, Lifespan, report the numbers first

Conclusion first: In six dimensions, the medium and temperature are veto lines; the load dimension should be split into 'internal pressure' and 'assembly stress' as two separate accounts.

DimensionActual operating conditionsRequirements for the materials
TemperatureNormal temperature circulating water 20-40°C; hot water and cleaning conditions 60-80°C, locally can reach above 90°CDistinguish between ambient temperature and medium temperature; the inner wall of the pump casing is the medium temperature.
LoadInternal pressure (operating pressure, water hammer peak) Assembly stress (bolt preloading) Pipeline stress Pump pulsationPressure-bearing is judged according to long-term static hydraulic pressure, assembly stress is judged according to ESC, and the two accounts are calculated separately.
MediumFresh water, salt water / seawater, dilute acid, alkaline solution and detergents, mineral oil, organic solvents, chlorine-containing disinfectantsList each item according to the actual contact medium, with complete concentration/temperature/time information
LifespanThe same lifespan as the equipment; water treatment and general industrial pumps are commonly designed according to a 10-year grade.The criterion is long-term extrapolation, not initial strength.
AppearanceMainly not exterior parts; the real bottleneck is the accuracy of the sealing surface and the flange surface.Shrinkage rate 0.5-0.8% (glass fiber reinforced PP, open mold), and consider anisotropy
ComplianceSome parts involve food/medicine contact (GB 4806.7-2023 caliber); some occasions require flame retardancyCheck the items on the component list one by one; don't wait until the whole machine is certified to find out.

3. Division of material routes: each pipe section is assigned to glass fiber, mineral, homopolymer PPH, PVDF, and metal pump body respectively.

Conclusion first: These few routes are not alternatives to each other, but complementary in function—glass fiber reinforced PP is strong in stiffness, creep resistance, and dimensional stability; mineral-filled PP is strong in dimensional and medium resistance consistency; homo PPH, PVDF, and metals are strong in temperature limits and pressure ratings.

RouteGet whatCostSuitable for which section
Glass fiber reinforced modified PPStiffness and creep resistance improved, shrinkage rate can be reduced to 0.5-0.8% (public specifications: modulus 4000-5500 MPa, tensile strength 80-95 MPa, HDT 145-150°C)Anisotropic; the glass fiber and matrix interface may become a permeation channel under long-term medium exposure; generally erosion-resistantPositions on small and medium-sized pump bodies, valve bodies, and flanges that require high stiffness
Mineral-filled modified PPShrinkage and medium resistance are more consistent, and costs are controllable (public data: 20% mineral system modulus about 2700 MPa, HDT(0.45MPa) about 108°C, shrinkage rate about 0.88%)Rigidity and creep resistance are not as good as the glass fiber systemAtmospheric / low-pressure valve bodies, detergents and mild alkali conditions, flange dimension parts
Homopolymer PP (high molecular weight, low MFR)Better chemical stability and creep resistance—pressurized pipes follow this path (public specifications: MFR as low as 0.25 g/10min, OIT ≥60 min)Brittle, impact-resistant, narrow forming window for complex structuresSimple rotating body, pressure-bearing pipe fittings
PVDF / FluoroplasticsHigher chemical resistance and higher maximum temperature limit, good impermeabilityHigh cost, narrow processing window, rigidity requires structural reinforcementStrong solvents, strongly oxidizing media; high temperature and pressure
Metal pump body (including lining)Pressure rating, erosion resistance, and dimensional accuracy are naturally sufficientHeavy, requires corrosion resistance or lining, low forming freedomHigh lift and large flow, high solid content medium, mechanical seal precision position

For clear water at normal temperature with low lift, both PP routes are sufficient; whether to add fiberglass depends on the flange stiffness. For detergent and weak alkaline conditions, mineral-filled is more stable. For long-term pressurized rotating structures, refer to the low MFR homopolymer route of the pipe material; this structure is not advantageous for complex pump casings.

4. ★ Selection Criteria Table: Nine criteria, each with validation methods and standard numbers

Conclusion first: The column you should pay the most attention to in this table is the third one — what usually trips you up is not 'which indicator to look at,' but 'what to measure with and how much counts as passing.'

IndicatorThreshold Value (Typical)Verification Method · Standard NumberCommon FailuresCommon solution
Resistant to liquid chemical reagents (loaded state)Tensile strength retention ≥85%GB/T 11547-2008 / ASTM D543 Soaking frame, samples are loaded first and then soakedLong-term medium strength collapseMedium-resistant system Substrate review
Retention rate of elongation at breakAccording to itemized specifications, the focus is on whether there is a cliff-like declineAfter immersion in the same system, test according to GB/T 1040Embrittlement occurs before strength degradation exposureAntioxidant System Toughening Balance
Mass / Dimensional Variation RateMass ±2% and tending to be stable; dimensions ≤1%, sealing surface ≤0.5%GB/T 11547 Weighing and Measuring Dimensions Before and After SoakingLiquid absorption and precipitation; leakage due to deformation of the sealing surfaceAdditive leach resistance Low shrinkage
Appearance (cracking / whitening / becoming sticky / discoloration)No cracking, not sticky, no obvious chalkingGB/T 11547 Visual inspection, can be equipped with a microscopeCracks first appear at points of stress concentrationStress cracking resistant system Fillet
Long-term static liquid pressure strengthExtrapolated from multiple temperatures to the design life, not determined by a single point at room temperatureISO 1167 / GB/T 6111-2018 Body Testing; ISO 9080 / GB/T 18252-2020 ExtrapolationCreep degradation at high temperature section, early crackingLow MFR high molecular weight substrate, stable anti-oxidation system
Creep Resistance / Flange RelaxationFlange clearance and pre-tightening force retention rate under constant load shall follow the enterprise standardConstant Temperature and Constant Load Creep and Stress Relaxation TestFlange face relaxation leakage (the most typical failure in this case)Glass fiber reinforced flange structure reinforcement
Sealing surface dimensional accuracyFlatness of each part drawing and tolerance of sealing grooveGB/T 17037.4 / ISO 294-4; final pressure test of the whole machineAssembly leakageControl anisotropy Stabilize post-shrinkage
Temperature resistantHDT by piece plan; HDT only used as a short-term criterionGB/T 1634.2Use HDT as the long-term operating temperatureLong-term temperature is calculated separately according to the medium and lifespan
Antioxidant / Flame Retardant / Hygienic GradeOIT ≥15 min (for the open diameter of pipes and components); flame retardant and food contact according to GB 4806.7-2023GB/T 19466; GB/T 5169.16 / UL 94Oxidizing media consume antioxidants; compliance does not meet the standardAnti-extraction and anti-oxidation system; halogen-free flame retardant / food contact grade formulation

Text version conclusion: In the nine rows, chemical resistance, long-term static hydrostatic pressure, and flange relaxation are the main factors—the first two rows determine 'whether to choose modified PP,' and the third row determines 'if chosen, whether it will leak after a year.' For the temperature resistance row, remember: HDT is the onset of deformation under short-term load and cannot answer long-term questions.

5. How to determine chemical corrosion resistance: the list of media determines everything; 'no change after short-term soaking' does not mean corrosion resistance.

Conclusion first: Chemical resistance cannot be generally described as 'corrosion-resistant'; it must be listed item by item according to the actual contact media. Each item must also include three conditions: concentration, temperature, and time. Missing any one of these, the conclusion is not usable.

Medium typeThe main function of the materialCriterion landing point
Cold Water / Hot WaterHydrolysis Thermal-oxidative aging, the higher the temperature, the faster it occursMechanical Retention Rate OIT
Saltwater / SeawaterPermeation Electrochemical environment (affects fillers and additives)Brine soaking Size
dilute acidLimited effect on PP itself, significant effect on the glass fiber interfaceInterface and Mechanical Retention Rate
Alkaline solution / DetergentSurfactant Stress Co-activation Induced ESCESC evaluation under loading conditions
Mineral oilThe additives are extracted and migrated, causing the surface to become sticky and whitish.Rate of Quality Change Appearance
Organic solvents (aromatic hydrocarbons, halogenated hydrocarbons)Swelling or even dissolving, nonpolar PP is sensitive to aromaticsQuality and dimensional variation rate (often directly rejected)
Chlorine / Peroxide DisinfectantOxidizing medium continuously consumes antioxidantsOIT Molecular Weight Evaluation After Long-Term Soaking

All three elements must be complete: concentration, temperature, and time; if any one of them is off by an order of magnitude, the conclusion may be reversed. The three words 'acid and alkali resistance' carry no information in selection.

Can one deny a common practice: treating 'no change after short-term soaking' as chemically resistant pass.

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This is wrong, and mistakes are the most costly on pump and valve components. Many of PP's chemical attacks are chronic: the medium first penetrates the surface layer, lowers the glass transition temperature, induces crazing, and under the synergy of stress, expands into cracks—the component only cracks after a few weeks or months, while the first batch of soaked samples had long 'passed' and reports were issued.

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There is only one correct approach: chemical resistance testing must be done under load. The results differ by an order of magnitude between stressed and unstressed samples.

Three soaking loading methods: Constant strain method (bending load, strain 1.0-2.0%, in medium at 50-80℃, ISO 6252); Constant tensile stress method (constant stress immersed in actual medium such as detergent, 40℃, ISO 22088-3); Bent strip method (10% Igepal CO-630, 50±0.5℃, record F₅₀, ASTM D1693). For each group, a set of unstressed samples should be placed and reported alongside.

The oxidative medium also depends on the mechanism: According to publicly available data (A level, *Polymers* 2019), in water containing 2-5 mg/L of free chlorine, the antioxidant in α-crystal PP-R is depleted in about 250 hours, while in β-crystal PP-R it is about 1250 hours; after 1500 hours in 60°C chlorinated water, the weight-average molecular weight decreases from 742 to 45 kg/mol.

6. How to judge water pressure resistance and long-term static hydrostatic pressure: passing at room temperature does not mean it can pass at 60-80℃.

Conclusion first: There are two kinds of pressure to consider — instantaneous pressure (including water hammer) and long-term static pressure, with completely different criteria; the threshold for long-term static pressure drops sharply with temperature.

CriterionVerification Method and Standard NumberCommon FailuresCommon solution
Instantaneous Pressure / Surge (Water Hammer Peak, Overpressure)Short-term pressure holding and bursting should be carried out according to component specifications; the test pressure of the pipeline system can refer to maintaining a pressure of ≥1.5 times the working pressure for 30 minutes without pressure drop (GB/T 18742.3-2017 system).Instantaneous cracking, flange chippingStructural Reinforcement Flange and Fillet Design
Short-term static hydraulic (normal pressure-bearing of pump body at room temperature)ISO 1167 / GB/T 6111-2018 Hydrostatic Body TestCreep deformation in thick-walled areasBase Material Grade Wall Thickness
Long-term static hydraulic pressure (continuously under pressure within the design life)ISO 9080 / GB/T 18252-2020: Take grade temperatures of 20℃, 60-70℃, 95℃, and extrapolate failure times in four intervals of 10-100 h, 100-1000 h, 1000-8760 h, >8760 h; ≥97.5% of the data points must be above the reference curveHigh-temperature stage threshold attenuation, early crackingStable antioxidant system, low MFR high molecular weight base material, glass fiber to improve creep resistance
Additional Items for Glass Fiber Reinforced ComponentsSoaking Static and Hydraulic Combination VerificationThe interface becomes a penetration channelInterface processing is determined together with the ratio and the medium-resistant system

Temperature is the most expensive factor: long-term hydrostatic strength decreases with temperature in a downward slope, and the pressure value that can be passed at room temperature may be reduced by half at 60-80°C.

Dare to deny a common practice: using ambient temperature static hydraulic data to determine the pressure rating of a pressure-bearing component.

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The sample was pressed at room temperature, the report looks good, but it started to crack after running under 70°C hot water conditions for half a year. The criterion for long-term pressure-bearing parts is not a single pressure value, but a lifespan curve extrapolated from multiple temperatures.

Glass fiber reinforcement is a double-edged sword: it helps increase stiffness and creep resistance, but the interface may become a fast channel for permeation under long-term exposure to media, so a combined 'soaking + static hydraulic' verification must be performed.

7. Common Failures and Root Causes: Four Phenomena, Four Root Causes

Conclusion first: Among these four cases, very few truly fall under 'the material won't work'; most are 'insufficient testing of conditions' and 'places where the structure should have been changed, the formula was changed instead'.

Failure 1: Flange surface relaxation leakage — This is the most typical failure of this component. The bolts remain tightened, but the material slowly yields under the combined effects of temperature and medium, the preload decreases, and the medium is squeezed out from the sealing surface. First, check the flange stiffness and creep, then check the sealing ring.

Failure 2: Long-term interface failure in the medium, with surface blistering and whitening. Specific to fiberglass-reinforced parts: the medium penetrates along the fiber/matrix interface, and after interfacial debonding, the strength drops sharply. This is not obvious in pure matrix systems, but in fiberglass systems it must be tested separately.

Failure Three: Leakage after assembly, yet the part dimensions are within tolerance. It's not 'material shrinkage'; it's anisotropic shrinkage with subsequent contraction, causing the flange surface to exhibit local unevenness. This is the collateral cost of changing materials, not a defect of the material.

Invalid Point Four (Dare to Deny): It is said that if the medium contains particles causing flow channel erosion, then increasing the glass fiber content is the solution. This is wrong. Increasing glass fiber improves stiffness and creep resistance, but has limited effect on erosion rate. Moreover, as the amount increases, both impact resistance and interfacial resistance to the medium decrease, essentially replacing one problem with another. To deal with erosion, you need to address three things: flow velocity and impact angle, surface condition, and solid content in the medium.

8. Verification sequence: first load soaking, and finally long-term operation

Conclusion first: if the order is wrong, the costs will all explode at the final step; if the first-level loading soaking fails, all subsequent verifications are a waste.

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① Medium compatibility screening (soaking under loaded conditions)

Actual medium Concentration Temperature Time; Stress group and no-stress group side by side

↓ If any of the five change criteria exceed the threshold, or if the stress group cracks first → return to the base material and system, do not move the mold

② Normal Temperature Pressure and Explosion

ISO 1167 / GB/T 6111-2018 Body test; complete machine pressure test ≥1.5 times the working pressure, hold for 30 minutes

↓ However → Revert to wall thickness and flange structure

③ Long-term static hydraulic extrapolation at different temperatures

Take samples at 20℃ / 60-70℃ / 95℃, and extrapolate to the design life according to ISO 9080 / GB/T 18252-2020

↓ The extrapolation curve is insufficient at the design point → Directly change the route, do not adjust the formula anymore

④ Creep and Flange Relaxation

Inter-flange gap and preload retention under constant temperature and constant load, focusing on the performance after heating

↓ However → Revert the glass fiber ratio and flange structure

⑤ Assembly Sealing and Complete Machine Pressure Test

Sealing surface dimensions, assembly torque, water pressure test, re-measurement of bolt preload

↓ However → Return mold shrinkage rate and sealing structure

⑥ Long-term operation verification

Actual medium, actual temperature, continuous or cyclic operation according to working conditions

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The most common mistake is skipping ① and ③, and directly using the trial mold for room temperature pressure testing: the forming conditions of the trial mold are temporary, and the data are not representative; room temperature pressure testing only answers 'whether it can hold pressure now,' and cannot answer about three years later.

An insider detail: When loading soaked samples, they should be taken from their actual installation orientation; after soaking, adjust them to standard conditions before measuring. If the remaining surface medium is not wiped off, the values will be falsely high or low.

9. Reverse Honesty: In these situations, the pump body and valve casing should not use modified PP

Conclusion first: For long-term exposure above 90℃, strong solvents or strong oxidizing media, and high head with large flow—if any one of these three occurs, modified PP should not be the first choice; if two occur, it can basically be ruled out directly.

The situation that occurredWhy is modified PP not suitableWhich way should I go?
Long-term use temperature ≥90℃ (especially on the hot water and steam side)Long-term heat resistance is limited by the lifespan of the antioxidant system; as the temperature rises, the long-term static hydraulic threshold drops sharply.Homopolymer PPH (high molecular weight, low MFR), PVDF, or metal pump body lining
Strong solvents (aromatic hydrocarbons, halogenated hydrocarbons) or strong oxidizing mediaNon-polar PP is sensitive to swelling from aromatic hydrocarbons; oxidative media continuously consume antioxidantsFluoroplastic lining, PVDF, PTFE, ceramic
High lift, large flow (high pressure rating, strong water hammer impact)Long-term pressure relies on extrapolation; the higher the pressure level, the greater the extrapolation uncertainty.Metal pump body (casting / stainless steel) lined, or ceramic pump
The medium contains high-hardness solid particles and has a high flow rateSurface hardness and erosion resistance are limited, and the erosion rate is dominated by the medium and flow rateWear-resistant lining, ceramics, metal
Requires metal-level sealing surface precision (high-pressure mechanical seal position)Shrinkage, post-shrinkage, and creep differ from metals by an order of magnitudeMetal parts, or metal-plastic composite structures

As long as 'long-term high temperatures' and 'highly corrosive media' occur simultaneously, or the pressure rating exceeds the extrapolated reliable range, this part should not rely on modified PP for rigid support. When encountering such requirements, first make the situation clear before discussing whether there is a compromise structural solution — if you proceed rigidly, in the end, it will all have to be returned through rework and claims.

10. Material Change Risk Checklist: Seven Things to Confirm Before Switching from Metal Pump Body to Modified PP

Conclusion first: What customers are really worried about is not performance, but 'whether I need to change my current molds, machines, and sealing structure'.

Items to moveWhat needs to be confirmedWhat will happen if I don't do it?
Mold shrinkage rateHow different is the fiberglass/mineral system from the original plan; anisotropy needs to be confirmed separatelyFlange surface uneven, sealing groove out of tolerance
After contractionDimensional drift after part placementInstalled correctly, but leaks after being left for a while
Gate and VentingGlass fiber system weld line position changes; the flange circumferential weld line is a weak pointCracking at the weld line
Material Temperature and Mold TemperatureThe effect of mold temperature in the fiberglass system on floating fibers and orientationSurface defects, poor directionality
Drying / Pressure-Holding DemoldingIt depends on the specific system and cannot copy the original process; shrinkage differences cause deformation and whitening on raised areas.Silver wire bubbles; deformation, extreme flatness deviations
Sealing structureThe rigidity of plastic parts is lower than that of metal, and the sealing method and bolt preload need to be recalculated.Insufficient preload, loosening and leakage
Verification orderLoad soaking → Room temperature pressure test → Multi-temperature extrapolation → Creep relaxation → Complete machine pressure testAll the risk is pushed to the final step before it explodes

Eleven, One-page report comparison table: Direct reporting for five types of pump and valve scenarios

Conclusion first: There is only one criterion to determine whether this table is qualified——whether the client can use it to finalize the direction of the materials in a single meeting.

SceneRecommended RouteKey indicatorsVerification StandardConditions that need to be confirmed first
Normal temperature clear water circulation pump body (low head)Glass fiber reinforced modified PP (GF20-30) or mineral-filled PPMechanical retention rate after soaking, sealing surface dimensionsGB/T 11547 GB/T 6111Medium list, maximum water temperature
Detergent, weak alkali, 60-70°C cleaning pumpMineral-filled PP (20% mineral-grade alkali-resistant specification)Alkali-resistant, resistant to hot water soaking, loaded ESCGB/T 11547 ASTM D1693Detergent concentration, assembly stress
Brine / Seawater ConditionsGlass fiber or mineral-filled modified PPSize and appearance after soaking in salineGB/T 11547 GB/T 16422.2Free chlorine concentration, solid particles content
Long-term above 90℃ or strong solvents / strong oxidizing mediaModified PP is not a priority: homopolymer PPH / PVDF / metal liningLong-term static hydraulic extrusion, chemical resistance gradeGB/T 18252 / ISO 9080Temperature, medium concentration, design life
High lift, large flow (high pressure rating)Modified PP not preferred: castings / stainless steel lining, ceramic pumpsDesign pressure, long-term static hydraulic pressureGB/T 6111 / ISO 1167Design pressure, water hammer conditions

Text version conclusion: In the same pump room, it is completely normal to have one pump with a modified PP casing and another with a metal-lined casing. Each position only needs to match its own medium and pressure rating.

12. The parts of pumps and valves that are most prone to problems are often not the material.

The three types of issues most commonly discussed in public materials regarding pump bodies and valve housings are: strength degradation after long-term exposure to high-temperature media, environmental stress cracking under the combined effects of the media and assembly stress, and relaxation leakage of flanges and sealing surfaces. These three types of issues point to the same conclusion — the verification of such components must simultaneously achieve 'loading, media, and long-term' conditions.

The common practice is to determine three things together: the base material grade, the reinforcement method (glass fiber to improve creep resistance or minerals to stabilize dimensions), and the stabilization system (antioxidants and media-resistant additives); for flanges and other surfaces under long-term pressure, stiffness must also be provided in the structure. The most common deviation in the industry is to only do stress-free soaking versions.

Ningbo Cologne New Materials Co., Ltd. commonly supplies its own modified polypropylene (PP) granules for this type of part, focusing on glass fiber reinforcement and mineral filling. Based on the media list, media temperature, and pressure rating, the appropriate grade of base material, reinforcement method, and stabilization system are provided, with emphasis on addressing three issues: 'strength decay after soaking, synergistic cracking from media and stress, and flange surface relaxation leakage.' The formulation is adjusted according to the part and can be tested with small soak-load samples, multi-temperature hydrostatic sampling, and mold trials for verification.

Frequently Asked Questions

Question: The chemical resistance report shows that soaking for 168 hours is qualified. Can it be used?

Answer: It depends on two things: whether the sample was loaded (the reference value for unstressed soaking is very low) and how much the medium conditions differ from the actual working conditions (if the concentration, temperature, or time differs by an order of magnitude, the conclusion may be reversed).

Question: If the pump casing pressure is not high, is it possible to not use fiberglass?

Answer: If the flange surface is under long-term pressure and also exposed to temperature, mineral filling is sufficient and the dimensions are more stable; if the flange stiffness is insufficient and it warps after assembly, then use glass fiber reinforcement—but glass fiber parts need additional "soaking and hydrostatic" combined verification.

Question: Can chlorine disinfectant water be used?

Answer: When free chlorine is 2-5 mg/L, the antioxidant will be continuously consumed. The α crystal system will be depleted in about 250 hours, and the β crystal system in about 1250 hours. Under chlorinated conditions, investing in the antioxidant system is more worthwhile than in the toughening system.

Thirteen, finally say three sentences

First, chemical resistance does not mean 'it won't be damaged by soaking'; it means 'how long it can last when both stress and the medium are present.' Short-term soaking without change does not equal corrosion resistance.

Second, pressure stress involves three accounts: instantaneous pressure, short-term static pressure at normal temperature, and long-term extrapolation at multiple temperatures. Conclusions about the design life can only come from the third account.

Third, the verification sequence is more expensive than the verification items: soak loading → ambient pressure testing → multi-temperature extrapolation → creep relaxation → whole machine pressure testing.

The next article talks about industrial casters and rollers — the thing they fear most is not the load-bearing, but rolling wear and the rubber-covered interface.

About Us

About us, four sentences:

1. Modified polypropylene: homopolymer / random copolymer / impact copolymer;

2. Modification directions: filling, glass fiber reinforcement, toughening, flame retardant, low odor and low VOC, weather resistance, scratch resistance without spraying;

3. Trading of PP resins from major petrochemical plants;

4. Spot goods of secondary brand materials and large-bag materials.

Ningbo Kolong New Materials Co., Ltd. produces modified polypropylene (PP) granules, covering three types of base materials: homopolymer / random copolymer / impact copolymer, as well as modification directions such as filling, glass fiber reinforcement, toughening, flame retardant, low odor and low VOC, weather resistance, and scratch resistance without spraying; also engaged in trading PP resins from major petrochemical plants, secondary brand materials, and large-bag materials.

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