光稳定剂:户外件的“防晒霜”,HALS+UV吸收剂三重协同才扛得住日晒雨淋

塑料知识科普 发布时间: 2026-09-13 1093 阅读

The newly installed outdoor fitness equipment in the community faded and turned white after just one summer, and fine cracks appeared on the surface of the seats. The property management sought compensation from the manufacturer, and the manufacturer's formulator pulled out the formula — it only added UV absorber 531, without HALS. The free radicals generated by ultraviolet light were not captured, which is equivalent to only applying sunscreen without doing any after-sun repair.

Outdoor PP without light stabilizers starts shedding powder onto the surface in the first summer.

This article is compiled by Ningbo Kolong New Materials Co., Ltd., which has long been engaged in the business of plastic raw materials and additives. The grade and batch information are subject to the actual supply channels.

Quick Reference Table of Photostabilizers: See at a Glance Who's Working in the Four Main Categories

Weather resistance does not rely on a single additive acting alone, but on the division of labor among several 'types of work': one type blocks ultraviolet rays from entering, another type neutralizes the free radicals that have already formed, and another provides backup support. The table below clearly lists representative varieties, key parameters, and typical uses of mainstream systems. When selecting a type, first determine the level of protection, then discuss the brand.

systemRepresentative varietiesKey Mechanism/ParameterTypical productsAdd ratio
Hindered amine HALS (radical scavenger)770, 944, 622Alkaline piperidine structure, cyclic capture of free radicalsCar exterior trim, outdoor guardrails0.1%-0.4%
Ultraviolet Absorber UVA (Shielding)UV531, UV326, UV327Absorbs UV energy and converts it into heat, benzotriazole/benzophenoneFilms, paint chips, transparent parts0.1%-0.3%
ExtinguisherNickel chelatesTake away the energy of the excited moleculesAgricultural film and fibers0.1%-0.3%
Compound Weather-Resistant MasterbatchHALS UVA AntioxidantTriple synergy, pre-disperse well before addingPP/PE Outdoor General UseTotal 0.3%-0.6%

Note: The above are common parameter ranges in the industry. The UV absorption spectrum and weather resistance data of specific grades should be based on the official information from the manufacturer. The approach is straightforward: first ask how many years the product will be exposed outdoors, whether it is thin or thick, transparent or opaque, and then decide which layer of protection to use.

Figure 1 Light Stabilizer — Weather-Resistant Protective Layer for Outdoor Plastic Parts

UV stabilizers aren't effective just by adding one; only a triple synergy can withstand sun exposure and rain.

The protagonist of this story has long stood behind the scenes. Ningbo Kolong New Materials Co., Ltd. has long been engaged in various plastic additives and modified raw materials, covering multiple domestic and international brands, and has stable supply channels for commonly used outdoor additives such as light stabilizers, antioxidants, and lubricants. As for the category of light stabilizers, its essence is like the "sunscreen" for outdoor plastics—the invisible ultraviolet rays in sunlight excite the polyolefin molecular chains into free radicals, and once the chain reaction starts, the material yellows, becomes brittle, and the surface chalks. The job of light stabilizers is to intervene in this chain: either block the ultraviolet rays at the door or suppress the free radicals on the spot.

A light stabilizer is like sunscreen for plastics: UV absorbers are applied on the outside to block the sun, while HALS repair the damage inside after exposure.

Mechanistically, weather protection is like three layers of sentinels. Leading the charge are ultraviolet absorbers (UVA), which act like a sunshade, absorbing ultraviolet rays between 300 and 350 nanometers and converting them into harmless heat, thereby reducing light damage at the source. The middle layer consists of hindered amine light stabilizers (HALS), which, unlike UVA, do not 'block light'; instead, they penetrate the material to cyclically capture already formed free radicals, stabilizing the reactive molecules. The final layer is antioxidants, which catch the remnants of thermal oxidation aging. The coordination of all three layers constitutes a complete weather-resistant system.

The three-layer sentry post isn’t some mystical buff stacking; it’s a schedule worked out after decades of sun exposure, and missing even one layer means you won’t make it to the end of the year.

Many formulators have a misconception: they think that adding HALS solves everything, or conversely, they only use UVA. In fact, UVA is a 'one-time consumption'—it gets used up as it blocks light; HALS is 'cyclically regenerating'—long-lasting but powerless against light that has already hit. For thin products and transparent parts, prioritize UVA; for thick-walled products and long-term weather resistance, prioritize polymeric HALS. Using both together is the most stable approach. So the industry's term 'HALS UV absorber triple synergy' is not just marketing talk; it reflects the division of labor proven through decades of sun exposure testing.

You call this 'outdoor weather resistance'? After 1,000 hours of QUV exposure, it powders and flakes. It's like putting sunscreen on the soles of shoes.

Quick reference by variety: 944 for long-lasting protection, 770 for general use, UV531 as a partner

The grades for light stability look confusing, but by focusing on a few main products, you can cover 80% of outdoor scenarios. Below, we'll break them down one by one, explaining the positioning, applicable signals, and precautions for each.

When choosing HALS, look at the molecular weight: if you want long-lasting effect, go for polymeric 944; don't try to use small molecule 770 for outdoor exposure.

HALS 944 (Polymeric Hindered Amine): High molecular weight, extraction-resistant, and migration-resistant, it is the main choice for thick-walled, long-lasting outdoor parts. For items like automobile bumpers, outdoor railings, and garden furniture that are expected to resist chalking after three to five years in the sun, it is often used as a primer. Signals to choose it: long-lasting outdoor use, thick walls, and high requirements for migration resistance. Note: The price range of 944 is about 60 to 100 RMB/kg, which is more expensive than small molecules, but when spread over a ton of material, the actual cost is not much.

Supply Tip: HALS 944 and UV531 are commonly used combinations for outdoor components. Kolon New Materials can provide matching supply, with UV aging test reference data attached to each batch. Kilogram-level samples support testing before use.

HALS 770 (small molecule hindered amine): has a small molecular weight, disperses easily, and works quickly, but its extraction resistance and long-lasting effect are not as good as 944, making it suitable for thin products, fibers, and cost-sensitive outdoor items. Indicators for choosing it: making PE agricultural films, thin outdoor products, or requiring fast initial weather resistance. Note: Small molecule 770 is prone to migration and exudation; for thick-walled, long-lasting outdoor items, it is recommended to switch to 944 or 622.

HALS 622 (Polymeric Hindered Amine): Like 944, it belongs to the polymeric type, has relatively long-lasting extraction resistance, and is often blended with 770 for balance. Signals to choose it: thin films, flat fibers, and when both dispersion and long-lasting effect are needed. Note: For acidic systems, the compatibility of 622 should be tested.

HALS is alkaline, so when encountering acidic flame retardants like red phosphorus, a compatibility test should be done first; don't just mix everything together.

UV531 (Benzophenone-type UV absorber): absorbs UV, cost-friendly, often partnered with HALS as the "forward line" for PP outdoor parts. A typical combination is about 0.2% HALS 944 plus about 0.1% UV531. Signals to choose it: making PP/PE outdoor parts, needing a light-blocking layer, being cost-sensitive. Note: UV531 has some migration; for transparent parts, light transmittance changes need to be measured.

UV326, UV327 (Benzotriazole UV Absorbers): High absorption efficiency and good heat resistance, suitable for products with high processing temperatures or strict color requirements. Signals for choosing them: outdoor parts of engineering plastics, need for higher light stability. Note: Benzotriazole types are slightly more expensive than benzophenone types, choose as needed.

Nickel chelate quenchers: Commonly used in early agricultural films to 'quench' the energy of excited molecules. Nowadays, they are mostly replaced by or used in combination with HALS, and are rarely used alone. Signals for choosing it: agricultural films, need to balance with anti-fogging function. Note: nickel-containing systems should pay attention to environmental protection and food contact compliance.

Alternative comparison: Can imported light stabilizers be replaced? First, look at this table

Common Procurement Question: Can imported HALS and UVA be replaced with domestic versions? The answer is yes, but it depends on the scenario. For general outdoor PP/PE applications using 770, 944, UV531, the main domestic brands have very small gaps in key indicators, and stable domestic brands are completely sufficient; however, for high-end certified scenarios like automotive low VOC and photovoltaic back sheets, imported brands still have advantages in batch consistency and low exudation. The table below lists common alternatives and the prerequisites for switching.

Original imported directionTypical ApplicationsBenchmark solutionSwitch premise
BASF Tinuvin 770PE agricultural film/thin outdoor partsDomestic 770Small test comparison of QUV/xenon lamp aging 1000h, chalking grade
BASF Chimassorb 944PP Car Exterior/GuardrailDomestic 944Comparison of weathering accelerated aging, yellowing index, and migration resistance
BASF Tinuvin 622Film/Flat Yarn Long-LastingDomestic 622Comparison of precipitation, light transmittance, and spinning stability
Cytec UV531PP/UVA light-blocking partnerDomestic UV531Compare ultraviolet absorption peaks, processing yellowing, and migration amount

The above provides a benchmarking direction, not a performance commitment. The switching should proceed according to the following rhythm: small-scale parallel comparison → written confirmation from the customer → small batch → mass production. If any step encounters a problem, stop to investigate.

The replacement verification cycle for outdoor components is long. When Kolon New Materials sends kilogram-level samples of light stabilizers, they can provide QUV/xenon lamp aging reference data and compliance documents, helping customers save the preliminary preparation for parallel testing.

Still fading even after adding a light stabilizer? It's most likely due to the cream separating, or reacting with acidic fillers or flame retardants.

Quick Industry Reference: How the Weather Resistance Requirements Differ for Various Outdoor Components

Even though they are both light stabilizers, the requirements for weather resistance, migration, and certification are completely different when used for automotive exteriors and plastic flower pots. The table below breaks it down by industry to help you quickly find the right solution.

IndustryTypical productsThe parameters the client asked about firstRecommendation systemCertification requirements
CarBumper, mirror cover, door handleXenon lamp aging 1000h, luminous retention rate, low VOC944 UV326 Antioxidant CompoundIATF 16949, Automotive OEM VOC
Building Materials / LandscapingGuardrails, trash cans, outdoor tables and chairsOutdoor exposure 3-5 years, degree of powdering944 0.2% UV531 0.1%GB Weather Resistance, RoHS
AgriculturePE greenhouse film, mulch filmConsidering both the lifespan of agricultural film and droplet anti-fogging622 770 sudden extinguishing compoundGB agricultural film standard
Photovoltaic / New EnergyBattery module frame, junction boxUV-resistant, damp-heat resistant, PID-resistantPolymerized HALS UVAUL, IEC
Home appliancesOutdoor air conditioner unit cover, satellite antenna coverLong-term weather resistance, yellowing, surface944 UV531 General CompoundRoHS, REACH

Here's a specific scenario: when making car bumpers, the customer requires that after 1,000 hours of xenon lamp aging, the light retention rate remains above 80% and the impact retention rate does not significantly decrease, and also demands low VOC. At this point, using only one HALS is not enough; you need 944 for long-lasting priming, UV326 for high-efficiency light blocking, and then a low-volatility antioxidant for finishing, while also controlling the precipitation of the additives themselves to avoid odors in the interior.

Dosage and pairing tips: Remembering four outdoor formulas is enough

The addition and combination of light stabilizers follow certain rules, so there is no need to start from scratch each time. The following four schemes are industry-validated common practices, covering most outdoor scenarios.

Outdoor parts shouldn't rely solely on a single agent; HALS as the base coat and UV absorbers upfront. This batch was arranged incorrectly, and it will show faults after one year in the sun.

◆ General-purpose PP outdoor thick parts: HALS 944 (about 0.2%) UV531 (about 0.1%) 1010/168 antioxidants (about 0.2%), totaling around 0.5%. This is a common formulation for railings and garden furniture.

◆ PE film / agricultural film: HALS 622 or 770 (about 0.2%-0.3%) with a small amount of UVA; for thin items, dispersibility and resistance to precipitation are prioritized.

◆ Long-lasting automotive exterior finish: polymeric 944, benzotriazole UV326, low-volatility antioxidant, ensuring both gloss retention and low VOC.

◆ Black/Dark Outdoor Parts: Carbon black itself is good at UV resistance, so the light stabilizer can be appropriately reduced, but for long-lasting parts, it is still recommended to retain HALS.

Here are three additional tips on compatibility: First, HALS is alkaline and may be 'neutralized' and rendered ineffective by acidic flame retardants (such as red phosphorus) or acidic fillers, so compatibility tests must be conducted first; second, light stabilizers and antioxidants have a synergistic relationship rather than a replacement relationship. For outdoor parts exposed to both thermal oxidation and photo-oxidation, both are necessary; third, recycled materials that have been exposed to strong sunlight or multiple processing cycles have already consumed their original light stabilizers, so the proportion of recycled material should be appropriately supplemented.

Ultraviolet rays are invisible knives, and HALS keeps rolling the blades back again and again.

Weather resistance: stable only with three layers.

Processing and Compliance Red Lines: Avoid These Five Pitfalls

If the light stabilizer is not used properly, it will either cause yellowing or whitening. The table below clearly lists the key steps and the consequences of doing them wrong; following it can help avoid 80% of the pitfalls.

link; segment; partReference valueThe consequences of doing wrong
Premixed dispersionMix at high speed for 3-5 minutes, pre-mix with the resin before feedingUneven mixing → local poor weather resistance, mottling
Blended with acidic flame retardantsFirst conduct a compatibility small test, and adjust the system if necessaryAcid-base neutralization → UV stabilizer failure, sudden drop in weather resistance
Dosage controlHALS total 0.1%-0.5%, limited by wall thickness and yearExcess → Frosting and surface haze
Select formulation for thin partsSmall molecules 770/622 for film, avoid large particlesPoor dispersion → crystal points, decreased light transmittance
Storage conditionsKeep in a cool, dry, and sealed place, avoid exposure to high temperatures and sunlightVolatilization/Caking when heated → Effective content decreases

Also, don't relax on compliance requirements: light stabilizers for food contact products must comply with GB 4806 series or FDA regulations; Exports to the EU must comply with REACH and EU 10/2011; Automotive interiors must meet the automaker's low VOC and odor standards; Nickel-containing quenching agents are restricted by certain environmental regulations, so be sure to verify before export. Compliance documents should be requested and archived with the goods.

FAQ: Six common questions from purchasers and formulators

Q1 Can domestic light stabilizers replace imported materials?

Yes, but you have to open it up to determine which level it is used. General outdoor PP/PE 770, 944, UV531 have very small differences among mainstream domestic grades, and domestic brands with stable batch sizes can be fully substituted; However, in high-end scenarios such as low VOC in automobiles, photovoltaic backsheets, and medical contacts, imported grades still have advantages in batch consistency and low precipitation control. The correct approach is to use kilogram-level samples for parallel comparison of QUV/xenon lamps, checking powder level, yellowing index, and light retention rate, then testing in small batches and finally scaling up. For benchmark and sample samples used in parallel testing, Kelong New Materials can send them together by kilogram, with reference data for UV aging.

Q2: Even after adding light stabilizer, the product still turns yellow and loses powder. What's going on?

First, check three points: First, insufficient dosage or wrong dosage form, such as using small molecule 770 in thick-walled long-acting parts, which cannot withstand the load; Second, reacting with acidic flame retardants and acidic fillers, causing HALS to neutralize and fail; Third, processing temperature too high or residence time too long, causing the light stabilizer to volatilize and lose during the extrusion stage. Eliminate all three points, then consider the raw material batch issue.

Q3: Why should light stabilizers and antioxidants be used together?

Because outdoor aging occurs simultaneously with hot oxygen and photo-oxygen. Photo-oxygen aging caused by UV rays in the light stabilizer tube, and thermal oxygen aging caused by processing and heating of antioxidant tubes, are coordinated. A typical PP outdoor component formula is HALS 944 plus UV531, combined with 1010/168 antioxidants, with a total addition of about 0.5%.

Q4: What are the considerations for choosing HALS for films and thick-walled parts?

Film has thin walls and a large specific surface area, with small molecules 770 that disperse well and act quickly, which is often preferred; For thick-walled long-lasting outdoor parts, polymer 944 is more suitable for extraction resistance and long-lasting performance. Simply put: the thinner the material, the better the dispersion; the thicker the material, the longer the resistance to migration.

Q5: What is the approximate price range for light stabilizers?

Common price range (RMB/kg): HALS 944 about 60 to 100, 770 about 50 to 90, UV531 about 50 to 90, benzotriazole UV326/327 slightly higher. Prices fluctuate with raw material prices, subject to current quotations. The cost per ton is not high, but if a problem occurs, the cost of returning a whole batch is much greater than this difference.

Q6: Does black products no longer need to add light stabilizers?

Carbon black does have some UV resistance, but that doesn't mean it's exempt. For long-lasting outdoor black parts, it's still recommended to retain a certain amount of HALS, especially for structural parts that require long-term impact strength, as carbon black alone is not stable.

Three-step selection checklist: Follow this to avoid pitfalls

◆ Step 1 · Set sun exposure conditions: First, clarify the product's usage environment (sunlight intensity, duration, wall thickness, transparency, contact medium), determine which UV segment to block, and whether it is long-lasting or fast-acting.

◆ Step 2 · Composition system: Select the UVA+HALS+antioxidant combination according to the quick reference table, determine the dosage (total 0.3%-0.6%), and check the acid-base compatibility with flame retardants and fillers.

◆ Step 3 · Nuclear Weather Resistance Certification: Verify GB 4806, FDA, REACH, automotive company VOC, UL/IEC requirements according to end use and export destination, request compliance documents from suppliers, and archive them.

The lifespan of outdoor components starts with a UV aging report

The effectiveness of light stabilizers depends on QUV or xenon lamp aging data, not just words. When Cologne New Materials supplies HALS and UV absorbers, they can provide reference data and compliance documents for the corresponding grade of UV aging (FDA, RoHS, etc.); For outdoor parts selection, it is recommended to combine HALS + UV absorbers + antioxidants, and samples can be shipped by kilogram to be compared. Customers can compare aging before finalizing the plan.

Last year, a factory producing outdoor leisure furniture had a batch returned by a customer—the chairs faded and cracked after less than half a year of use. Manager Wu from Cologne visited the site to inspect, brought back the formula list, and found only UV531, no HALS. He sent the customer a sample of a combination of HALS 944 (about 0.2%) + UV531 (about 0.1%). The customer conducted a 2000-hour QUV test, and the color difference ΔE dropped from 8 to about 3. After resuming production, there were no more fading complaints the following summer, and the customer increased orders by 30% at once.

Your formula only added UV absorber and not HALS?

Disclaimer: The brands, trademarks, and product names mentioned in this article belong to their respective original manufacturers. This article is a third-party material selection knowledge sharing. The grades, parameters, prices, certifications, and application cases mentioned in the article are for reference only. Please refer to the latest official information and batch test reports from each manufacturer. This article does not constitute any procurement or investment advice. Readers are responsible for any actions based on them

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