户外家具椅条用改性PP怎么选?耐候要算到第五年

应用领域 发布时间: 2026-09-14 955 阅读

How to choose modified PP for outdoor furniture slats? The answer is not 'just add UV additives for weather resistance,' but first calculate how much impact strength and elongation at break remain after several years of sun exposure. This article thoroughly explains the two working conditions of slats and yoga mats, the three pillars of weather resistance, the division of PP and ASA enhancement, criteria tables, and the step-by-step verification order, and also points out which types of requirements should not use a PP-based solution.

A client who makes outdoor furniture sent a photo: a patio chair, the chair slats had been used for two summers, the color still looked okay, but when someone sat down, one of the slats broke.

He asked me a question: 'Is this material not sun-resistant? We specifically chose the one with UV additives back then.'

This sentence contains one of the most expensive misunderstandings in this industry. Having a UV additive does not equal weather resistance, and a color that hasn’t changed much does not mean it hasn’t degraded. The criterion for outdoor parts has never been 'whether it can resist UV,' but 'how much mechanical performance remains after being exposed to the sun for several years.'

In the same batch of inquiries, there is also a second type of item — yoga mats. They also seem to fall under the 'outdoor, sports' category, but the criteria are almost the opposite of those for chairs: chairs are concerned about becoming brittle in the sun and sagging under long-term pressure; yoga mats are concerned about being slippery, collapsing, having an odor, or cracking when rolled up.

So this article is written along two lines: the chair slats are judged based on 'performance retention after aging, long-term load-bearing'; the yoga mat is judged based on 'non-slip, compression rebound, sweat and odor resistance.' The materials and verification sequences for the two lines are not interchangeable.

1. Six-dimensional working conditions of outdoor chair slats and yoga mats: two components, two completely different sets of criteria

Modified PP is used on chair slats as a 'long-life load-bearing component,' and on yoga mats as a 'close-contact consumable' — with the six-dimensional one disassembly, the requirements for the two items hardly overlap.

DimensionOperating conditions of outdoor chair slatsOperating conditions of the yoga matRequirements for the materials
TemperatureIn summer, direct sunlight can heat the surface to 60-80°C; on winter nights, it can drop below −20°C; temperature differences repeat cyclically.Mainly indoors, in summer the inside of a car or balcony can reach above 50°C; in winter storage can go down to −10°CCheck the chair slats for maximum temperature resistance and low-temperature toughness; check the cushion for no hardening at low temperatures.
LoadAn adult sitting on it is tens of kilograms in static load, lasting for hours, with the backrest repeatedly bending.Repeated compression (high local pressure) Repeated folding when rolling upChair slats prioritize creep resistance; cushions consider permanent compression deformation and resilience.
MediumRainwater, dew, detergents, bird droppings, and acid rainSkin sweat and oil, cleansing wipes and alcohol swabsThe chair slats are resistant to hydrolysis and acids and alkalis; the cushion is resistant to sweat and oil.
LifespanCommon designs are based on 3-5 years, while mid-to-high-end models are designed for 8-10 years.For home use, 1-3 years; for commercial high-frequency scenarios, it might be replaced within 1 year.Chair slats are long-lasting components, while cushions are consumable items.
AppearanceColor and gloss are visible, slight loss of gloss and color change are acceptableSurface pattern, colorfastness, skin-friendly feelCheck the chair slats for color difference and chalking; check the cushions for color fastness and feel.
ComplianceConventional Furniture Safety (Structural Strength and Stability)Close-fitting garments have stricter chemical safety thresholds (see Section 5)The compliance threshold for mats is higher than that for chair strips

Text version conclusion: For chair slats, first ask 'how many years of use, how much weight per slat, and where it is installed'; for yoga mats, first ask 'slip resistance when dry and wet, smell, and compression rebound'.

2. The essence of weather resistance: it's not about 'being able to resist UV,' but how much of the mechanical properties remain after being exposed to the sun for several years

Durability is a performance issue concerning 'how much longer it can be used,' not an appearance issue about 'whether it has changed color.' If this point is not clear, all subsequent criteria will be biased.

First, dispel the biggest misunderstanding: 'Adding UV additives makes it weather-resistant' is wrong. True weather resistance relies on three factors working together; missing even one will fail at the most critical moment.

First leg: The stabilization system must work properly together. Ultraviolet absorbers (UVA), hindered amine light stabilizers (HALS), and antioxidants—these three cover three different aspects: UVA absorbs UV energy on the surface, HALS captures the free radicals already generated in the material, and antioxidants handle thermal-oxidative aging. Adding only one is like having only one leg left out of three.

Second Leg: Selection of Substrate and Pigments. Some pigments themselves can accelerate degradation; conversely, carbon black is a recognized UV shield. The industry criteria for outdoor polyolefins are precisely these two numbers: according to JT/T 1432.1-2022 (Class A), carbon black content ≥2.0% and UV resistance retention ≥90% — the public standard evaluates retention of strength, not color.

The third leg: structure. Wall thickness, avoid stress concentration, avoid long-term high-stress areas facing UV. No matter how well the first two are done, if a sharp stress concentration point is left in the structure, the break will still start from there.

Here's an insider detail: the stabilizer system is a consumable, not a one-time additive. According to *Polymers* 2019, 11(6):996 (Grade A), for PPR pipes in chlorinated water, the antioxidants in α-crystal formulations are depleted in about 250 hours, while for β-crystal formulations it takes about 1250 hours; after 1500 hours in 60°C chlorinated water, the weight-average molecular weight drops from 742 kg/mol to 45 kg/mol. How much is added does not equal how long it will last.

The second point to negate is 'if the color hasn't turned white, there's no problem.' Most suppliers only report a color difference ΔE in their weathering reports, but what truly determines whether a part can survive ten years outdoors is the retention rate of impact performance and elongation at break after aging. The industry's additional threshold for outdoor parts is: after UV and thermal aging for 500-1000 hours, performance must not decline (according to WO2015070360 patent specification, Grade A; Evonik technical data, Grade B). Passing ΔE ≠ passing mechanical retention, this is the most important sentence to remember from this article.

3. Division of labor between PP and ASA: ASA is responsible for weather resistance and surface, PP is responsible for cost and molding

The value of ASA lies in its weather resistance, while the value of PP lies in its cost and moldability; however, the two are thermodynamically incompatible, so there must be an intermediate layer for compatibility enhancement.

First, let's talk about why ASA is weather-resistant. The structural difference between ASA and ABS is only at one key position: ASA uses acrylate rubber instead of the butadiene in ABS. The double bonds in the butadiene segments happen to be the preferred targets for UV attack, so ABS left outdoors for a long time tends to yellow and become brittle; ASA essentially replaces this target (common knowledge, grade B).

Let's talk about division of labor. A common PP/ASA combination in the industry is: ASA handles weather resistance and surface, PP handles cost and molding. When making co-extruded parts, ASA is on the surface to provide weather resistance and appearance, while PP is in the main body to bear load, shape, and control cost; when making a blend, who is continuous and who is dispersed directly determines performance trends.

It is necessary to honestly clarify the phase behavior and compatibility here. PP is a non-polar polyolefin, while the matrix of ASA is a polar styrene-acrylonitrile copolymer, and direct mixing results in layering. According to the publicly available research in the December 2011 issue of "Plastics Industry" (A-level), the common practice for the PP/AS system is to introduce maleic anhydride-grafted polypropylene (PP-g-MAH), styrene-maleic anhydride copolymer (SMA), or epoxy compounds as compatibilizers; in that study, when three parts of epoxy resin were added to the grafted material and the curing agent was 4% of the epoxy amount, the bending modulus reached 1.75 GPa, and it increased to 1.84 GPa after heat treatment.

Boundaries need to be clarified: The literature measured the PP/AS system, and the rubber phase in ASA will lower the modulus, so the values from the literature cannot be directly applied to outdoor chair strips.

Golden Quote: ASA addresses weather resistance, while increased capacity addresses usability. Buying ASA as a 'weather-resistant additive' is the second most expensive misunderstanding with this part.

4. ★ Selection Criteria Table for Outdoor Chair Strips Using Modified PP: The first item is a veto

The table below is the part of the entire article most worth saving. Pay attention to the third column 'Verification Method · Standard Number', as well as the first row 'One-vote Veto' — it means that the subsequent items are pointless even if done.

IndicatorThreshold Value (Typical)Verification Method · Standard NumberCommon FailuresCommon solution
Retention rate of notch impact after aging (veto)UV heat aging for 500-1000 hours does not cause performance degradation; the public standard caliber refers to "UV resistance retention rate ≥90%" (JT/T 1432.1-2022)GB/T 16422.2 (Xenon Lamp) / GB/T 16422.3 (Fluorescent Ultraviolet) GB/T 1043.1After being exposed to the sun for two summers, it becomes brittle and breaks as soon as you sit on it.Stable system three groups evenly allocated, base material gear level review
Elongation at break retention after agingConsider together with impact; in the public testing specifications, the retention rate of wet-heat aging strength is commonly ≥80% (GB/T 3511, Class B)GB/T 1040.2The strip is stiff; it bends without cracking but breaks as soon as it is snapped.Stabilizing system Toughening system combination
Long-term creep under loadAccording to the design load and annual limit; the method refers to GB/T 11546.1 (tensile creep, corresponding to ISO 899-1); extrapolation logic refers to ISO 9080 / GB/T 18252-2020 (≥97.5% of data points fall above the reference curve)Constant load creep test Extrapolation at multiple temperature pointsAfter sitting for a long time, the skin sags and the joints openIncrease modulus Reinforced section Reduce long-term stress levels
Flexural Modulus900-1500 MPa (Typical value for copolymer PP, subject to the grade TDS)GB/T 9341Excessive sagging at the back support, seat feels soft and collapsingMineral/glass fiber filled, cross-section reinforced
Xenon lamp aging color differenceΔE ≤ 3.0GB/T 16422.2Fading, loss of gloss, chalking; passing this item does not mean that the above two items are qualifiedPigment Selection Stable System

Text version conclusion: In this table, only the first row is a veto. A common mistake is to look at ΔE first and discuss color first, leaving the two most expensive items for 'deal with problems later.' The correct order is: mechanical retention after aging → long-term load creep → environmental cycling → appearance color difference.

5. ★ This line about yoga mats should be judged separately: slip resistance, permanent deformation under compression, and odor

The criteria for yoga mats do not overlap with the slats, and it must be clarified here first: PP is usually not the main material for this type of part.

First, to be honest about the material reality: mainstream yoga mats are mainly made of TPE, PVC, natural rubber, and PU. Modified PP is more likely to serve as a blend component or a foaming carrier in these kinds of items—for example, blended with EVA or POE, or as a carrier for foam beads and sheets. Claiming PP as the main material is dishonest.

There is now a clear standard for compliance: TY/T 3802.1-2024 "Requirements and Test Methods for the Use of Fitness Yoga Sports Equipment Part 1: Yoga Mat" (issued on 2024-11-15, implemented on 2025-06-01, Class A), which references a whole set of method standards including GB/T 6344, GB/T 22048, GB 18587-2001, GB/T 8808, etc.

IndicatorThreshold value (typical, based on the standard original text and customer standards)Verification Method · Standard NumberCommon FailuresCommon solution
Slip-resistant in both wet and dry conditionsThe coefficient of static friction in dry and wet states μ ≥ 0.5 (measured by the inclined plane method at 15°, with a B-level testing agency caliber)Inclined Plane Method / Coefficient of Friction TesterSlipping after sweating, mat shiftingSurface texture design priority Formulation adjustment
Compression set and flexibilityCompression permanent deformation ≤15% (Grade B caliber); after repeated rolling and folding, it does not crack, and wiping does not remove flakesGB/T 6669 (Permanent compression deformation of soft foam); folding test (special fixture)Does not rebound after being pressed into a pit, cracks when folded once when rolled up, surface powderingFoamed structure (closed-cell rate, degree of crosslinking) Carrier and surface layer selection
Sweat-resistant and oil-resistantAfter soaking, the appearance and mechanical properties are maintained according to customer standardsArtificial Sweat/Oil Soaking Appearance and Mechanical EvaluationSticky surface, discoloration, coating peelingSurface Treatment and Substrate Selection
smellOdor level ≤ 3 (VDA 270 gauge)VDA 270 Odor Detection MethodClose-fitting garments are the most sensitive, and new cushions have a strong odor (residues of foaming agents and low molecular compounds, such as formamide).Dual tubes for raw materials and post-treatment (baking/washing)
Chemical SafetyPhthalates ≤0.1%, Polycyclic Aromatic Hydrocarbons (PAHs) ≤1 mg/kg, Formaldehyde ≤75 mg/kg (Grade B caliber)GB/T 22048, GB 6675.4, GB 18587 seriesIf not compliant, the entire batch will be returnedAvoid PVC plasticizer routes and raw material control

Text version conclusion: The most common mistake when it comes to mats is focusing the 'anti-slip' entirely on the formula. Anti-slip is influenced by both surface structure and formula, and texture design is often more direct than adding additives; whereas 'collapse' is an issue of foam structure. Criteria ranking: Anti-slip → compression deformation and fold resistance → sweat and odor resistance → chemical safety.

6. Common Failures and Root Causes: The truth about the failure of chair slats is 'brittleness and deformation occurring together'

Failure 1: Chair slats breaking after sun exposure. First, check whether the fracture location is in a long-term high-stress area or a stress concentration point; then look at the retention rate of impact and fracture elongation after aging; only then suspect that the material has deteriorated. Change the structure before replacing the material; if the order is reversed, you may go through several rounds of useless replacements.

Failure 2: The chair straps sag over time, and the joints start to open. The truth is: creep combined with weathering — after being exposed to the sun for two years, they become brittle, and at the same time, long-term load causes gradual deformation; both factors work together. Increasing the modulus and section stiffness can resist creep, and having a complete stable system can maintain performance after aging; these two things need to be addressed separately. Thickening the walls only solves immediate deflection and does not change the creep rate.

Failure 3: PP ASA surface peeling and delamination. The root cause basically falls on compatibility and phase state—insufficient compatibilizer, ASA proportion exceeding the system's stable window, improper processing temperature and residence time. This type of failure is most easily misjudged as 'less ASA added,' leading to continuing to increase the proportion, yet the problem persists.

Failure Four: Yoga mat is slippery, sagging, or has an odor. Slipperiness is assessed by the surface texture and wet-state friction coefficient; sagging is assessed by the permanent compression deformation of the foam structure; odor is assessed by the foaming agent and low-molecular residues. 'Odor' is a threshold item for close-contact items, not a bonus feature.

Can we challenge an industry-wide practice: taking the 'ΔE≤3.0 report provided by the supplier' as the basis for approving outdoor parts? Color difference only proves that the appearance hasn't changed much; it doesn't prove that the mechanical properties haven't degraded. What needs to be asked is the same question—after aging, what are the retention rates of impact resistance and elongation at break?

7. Verification sequence: Two chains of the chair strip and the yoga mat, going down step by step

Almost no one in the industry writes this part, but it is the key to whether material changes can save money. If the order is wrong, the costs will concentrate and explode at the final step.

levelChair strip: verification item → just rejectedYoga mat: Verification item → Just return it if it doesn't pass
① Operating conditions of the fixed gateService life, load capacity per item, installation orientation; if not specified → return for confirmationFrequency of use and scenarios (home / commercial); not clearly defined → return for re-questioning
② Veto itemImpact and elongation at break retention rate after aging (500-1000 h); however → return to the stable system and substrate file, do not go further downSlip-resistant in both wet and dry conditions (μ ≥ 0.5); however → revert to surface texture and formulation
③ Long-term loadLong-term load creep and extrapolation; however → modulus reduction, section design, and stress levelCompression set (≤15%) and fold resistance; however → reverts to foam structure
④ Environmental circulationTemperature cycling (GB/T 2423.22) and rain; however → structure return (wall thickness / stress concentration)Sweat and odor resistance (≤ level 3); however → return to raw materials and post-processing
⑤ Appearance and Color DifferenceΔE (GB/T 16422.2); Exceeds tolerance → Return pigment and color masterbatchCleaning agent wiping and color fastness; out of tolerance → return for surface treatment
⑥ Field ExposureNatural climate exposure (GB/T 3681), covering at least one complete annual cycle; only released in accelerated tests → returnedActual use verification (measured during continuous usage cycles); if not passed → return to Level ②

There is a judgment that must be included in the sequence: the relationship between accelerated aging and natural exposure is not linear. The natural aging rate of the same material varies greatly in different climate zones, orientations, and humidity levels. Accelerated testing can only screen and rank, it cannot replace field data—this is the reason why level 6 cannot be skipped.

Text version conclusion: The chair strip chain is operating conditions → mechanical retention rate after aging → long-term load creep → environmental cycling → appearance color difference → field exposure; the yoga mat chain is operating conditions → wet and dry slip resistance → compression deformation and folding resistance → sweat and odor resistance → cleaning and wiping → actual use. The second level in both chains is a veto.

8. Reverse honesty: In these situations, modified PP-based solutions should not be used

Earlier we talked about 'how to do it'; here we talk about 'when not to do it.' This section has the highest value for selection and judgment.

The situation that occurredWhy the PP-based solution is not suitableWhich way should I go?
Requires more than ten years of outdoor maintenance-free performance, and capable of bearing weight.After aging, performance retention and creep decline simultaneously; a stable system can only delay the onset time.Switch to a weather-resistant engineering plastic system, or use metal/wood/composite structures
Requires high-grade appearance (high gloss, no painting) Long-term outdoorPaint-free surfaces require less filler and a fine texture; outdoor surfaces need to resist chalking and loss of gloss. When both requirements are needed, the surface often loses gloss first.Surface uses ASA co-extrusion, lamination, or coating, while the main body follows a separate route
Require the yoga mat to fulfill its main functions (non-slip, resilience, skin-friendly feel)These items are the active components of the mat's main material; PP only serves as a carrier and component in blending or foaming.Follow the TPE/PVC/natural rubber/PU main route, PP is only used in foamed carriers or as a blending component
Narrow cross-section, long-span cantilever load-bearing stripCreep under long-term high stress is a structural shortcoming of PP, and modification can only alleviate it.Change the structure (add reinforcements, shorten the span, increase support points), or partially replace with metal / aluminum alloy

The pattern is consistent: whenever there is a 'requirement for two opposite directions at the same time' or 'pushing the material's weak point to the main load-bearing position of the design,' it indicates that this part should not be rigidly supported with PP. When we encounter such a situation, our approach is to first clarify this point before discussing whether there is any room for compromise.

9. What to Move When Changing Materials: A Checklist to Look Over Before Acting

Before deciding to try the PP-based solution, it is recommended to go through this table first. The customer's real concern is often not performance, but 'do I need to change my current molds, screws, and production line'.

Items to moveWhat needs to be confirmedWhat will happen if I don't do it?
Shrinkage rateThe shrinkage difference between new materials and the original plan is particularly sensitive under long-term conditions.The dimensions are out of tolerance, and the assembly and stacking do not align.
Co-extrusion layer thickness ratio (PP/ASA route)Surface layer thickness, interface bonding, differences in flow between the two layersSurface peeling, delamination, and the weather-resistant layer being thinned
Extrusion / Injection Molding Temperature WindowWeathering systems and toughening systems are sensitive to both temperature and dwell timeAuxiliary consumption, surface defects, and odor have increased
Traction and cooling shapingTraction speed under long conditions and cooling uniformityBending deformation and internal stress lead to cracking later
Color differenceOutdoor light-colored parts must have the color swatch confirmed before being processed on the machineBatch color difference controversy, lighter colors show aging more
Verification orderMechanical retention after aging → Long-term load creep → Environmental cycling → Appearance color differenceAll the risks are concentrated to explode at the final step

Text version conclusion: Changing materials involves three aspects: the mold, the extrusion/molding process, and color difference, among which the order of verification should be discussed first. Skipping the small sample and going straight to the machine is equivalent to spending the cost in advance.

10. One-page report sheet (can be directly pasted into PPT)

SceneRecommended RouteKey indicatorsVerification StandardConditions that need to be confirmed first
Standard Outdoor Patio Chair Slats (PP/ASA Co-Extruded)PP matrix ASA surface layer Three components of a stable systemRetention rate of impact and elongation at break after aging; ΔE ≤3.0GB/T 16422.2 GB/T 1043.1 GB/T 1040.2Service life, installation orientation, single load-bearing capacity
Long-term load-bearing, long-span chair stripMineral/glass fiber filled for modulus enhancement Cross-section reinforcement Stable systemLong-term load creep and extrapolation; bending modulusGB/T 11546.1 / GB/T 9341Design load, support span, service life
Foaming carrier and blended components of yoga matPP Base Carrier Rebound System (blended with EVA/POE type)Compression set ≤15%; rebound resilienceGB/T 6669; Ball ReboundDensity and hardness targets, odor requirements
A mat that needs to be skin-friendly, non-slip, and have a good tactile feelNot on the PP routeWet and dry slip resistance and hand feelTY/T 3802.1-2024 SystemDirectly use TPE/PVC/natural rubber/PU body

Text version conclusion: This table is for technicians to report conclusions directly. There is only one criterion for judgment — whether the client can use this table to finalize the direction of the materials in one meeting.

11. The part of this item that is most prone to problems is often not the material.

For components like outdoor chair slats, the most common early failures in the industry are 'becoming brittle after two years in the sun' and 'sagging under long-term load,' but the proportion of cases caused by the material itself is not high. Public standards state the criteria very directly: for outdoor polyolefin components, what matters is not the color, but the retention of performance.

The common approach is to address three things together: having a stable system with proper matching, choosing the right substrate and pigment, and eliminating stress concentration in the structure; for those following the PP ASA route, it is essential to first solidify the toughening and phase behavior. The key is not 'whose material is better,' but whether the four aspects—stable system, substrate level, phase interface, and structural design—can all be properly aligned simultaneously.

Ningbo Cologne New Materials Co., Ltd. commonly supplies in this case its self-produced modified polypropylene (PP) pellets focusing on weather resistance and compatibility with the PP/ASA system. Based on service life, individual load-bearing capacity, and installation conditions, they provide substrate grades, stable systems, and capacity-enhancing combinations, mainly addressing the two issues of 'brittleness after long-term exposure' and 'long-term load deformation.' The formulations can be adjusted according to working conditions and can be used for small sample comparisons, post-aging mechanical retention comparisons, and trial molding.

Frequently Asked Questions

Question: If UV additives are added, does that mean it is weather-resistant?

Answer: No. UVA, HALS, and antioxidants deal with three different things. Adding just one is like having only one leg out of three; adding any amount does not equate to how long it will last.

Question: The supplier provided an aging report with ΔE ≤3.0. Is that sufficient?

Answer: Not enough. Color difference only proves that the appearance hasn't changed much, it doesn't prove that the mechanical properties haven't deteriorated. What needs to be asked is the same question—after aging, what are the retention rates of impact strength and elongation at break.

Question: Why is yoga mat not made mainly of PP?

Answer: Because the slip resistance, rebound, and skin-friendly feel it requires are functions of the main material of the mat. Modified PP has a more practical role in such components as a blending component or a foam carrier.

Finally, say three sentences

First, the first question about outdoor chair slats is not 'Can it resist UV?', but 'How many years will it last, and how much performance remains after sun exposure?'. The criterion is the retention rate of impact and elongation at break after aging, not color difference.

Second, what chair slats fear most is the combination of creep and weather resistance, while yoga mats fear slipping, sagging, and odor. Don't test the two lines together; the materials are not the same.

Third, the order of verification is more important than the verification items. Chair strips should first pass aging, then mechanical retention rate (one-vote veto), and finally long-term load-bearing; yoga mats should first pass dry and wet anti-slip tests before considering rebound and compression.

About Us

The most troublesome inquiry is this one: the material hasn't changed, but the part has a problem.

The material really hasn't changed; what has changed are the batch, drying, mold temperature, mold wear, or one item was altered to save money. The parameters drift slowly, but the problem appears overnight.

Ningbo Cologne New Materials Co., Ltd. produces modified polypropylene (PP) granules, covering homopolymer, random copolymer, and block copolymer base materials, as well as modifications including filled, glass fiber reinforced, toughened, flame-retardant, low odor and low VOC, weather-resistant, and scratch-resistant without coating; it also deals in PP resins from major petrochemical plants, off-spec materials, and bulk materials.

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