偶联剂:无机填料和树脂之间的“翻译官”,KH-550一句话让玻璃纤维爱上塑料

塑料知识科普 发布时间: 2026-09-14 1268 阅读

A batch of electric tool housings made of glass fiber reinforced PP delaminated entirely along the glass fiber interface during drop tests, and the tensile strength was only 60% of the design value. The R&D engineers examined the fracture surface under a microscope—it showed the glass fibers were perfectly clean with no resin attached, indicating that the coupling agent did not work, and the glass fibers and resin were just physically mixed together, separating whenever dropped.

Glass fiber reinforced material without a coupling agent is like plastic and filler sitting at the same table, each eating their own meal, not recognizing each other at all.

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 Coupling Agents: Understand the Three Major Chemical Families at a Glance

Coupling agents may sound mysterious, but chemically they fall into just three families: silanes, titanates, aluminates, and others. Silanes mainly target glass fiber and hydroxyl-containing silicate fillers, titanates mainly target calcium carbonate and talc for dry activation, and aluminates are cheap and mild, suitable for low-demand filling systems. When choosing, first look at which inorganic filler you are using, then match accordingly; don’t stubbornly use silanes on calcium carbonate.

Chemical familyRepresentative varietyKey parametersTypical productsAdd ratio
SilaneKH-550, KH-560, KH-570Amino/Epoxy/MethacryloyloxyGlass fiber reinforced PP/PA, epoxy, SMCAccording to the filler amount of 0.3%-1.0%
TitanatesMonalkoxyl-type, chelate-typeTemperature resistant 60-120℃, dispersible couplingCalcium carbonate-filled PP/PVC, talcAccording to the filler amount of 0.5%-2.0%
Aluminate estersDL-411 SeriesLow cost, good dispersion, weak couplingLow-demand filler masterbatch, pipesAccording to the filler amount, 0.5%-1.5%
Compound/Blended TypeSilane titanium ester compoundBalancing fiberglass and powderHigh filler composite systemTotal dosing of filler: 0.5%-1.5%

Note: The active ingredient content in the table is a general range; the specific coupling efficiency should be based on the official TDS and the measured interfacial strength. Keep in mind one premise: the amount of coupling agent is calculated based on the weight of the filler (glass fiber), not the total batch, which is the most common mistake for beginners.

Figure 1 Coupling Agent—Molecular Bridge Between Inorganic Filler and Resin

A coupling agent is like a translator that bridges two ends, one end is hydrophilic and the other end is lipophilic.

This protagonist is the translator between fillers and resins. Ningbo Cologne New Materials Co., Ltd. has long been engaged in various plastic additives and modified raw materials, covering many domestic and foreign brands, and has stable supply channels in interface modification categories such as coupling agents, compatibilizers, and toughening agents. The coupling agent category, in essence, is the 'translator' between inorganic fillers and resins — glass fibers, talc, and calcium carbonate are hydrophilic on the surface, while resins like PP and PA are hydrophobic. They are mutually receptive but not compatible, with weak interfacial bonding, causing debonding under stress. The coupling agent molecule is like a double-ended needle: one end has a polar group that can react with hydroxyl groups on the inorganic surface, and the other end has an oleophilic chain segment that can entangle with or even react with the resin, stitching these two incompatible worlds together.

A coupling agent is like a translator: on one side, there are hydrophilic glass fibers, and on the other side, there is water-averse plastic; it can communicate with both ends.

Take silane coupling agents with larger usage as an example. KH-550 is an amino silane, with one end's amino group able to react with or form hydrogen bonds with the active groups in PP and PA, while the other end's siloxane can hydrolyze and condense with the silanol groups on the surface of glass fibers, forming strong Si-O-Si bonds. Mechanistically, it addresses three things: improving the wetting and dispersion of the filler in the resin, transferring shear forces at the interface, and reducing interfacial degradation caused by the filler’s moisture absorption. When these three aspects are properly handled, the tensile, flexural, and impact properties of glass fiber-reinforced materials can truly improve.

Split the silane molecule in half, with one end embedding into the hydroxyl groups on the surface of the glass fiber and the other end penetrating the resin's molecular chains, and the interface is thus sewn together.

Many people have a misconception: the more coupling agent, the better. In fact, if the coupling agent is excessive, the extra molecules cannot all stay at the interface and can only float freely in the resin matrix, turning into a weak interfacial layer, which actually decreases performance. There is a saying in the industry: coupling agent is like 'MSG'—a little goes a long way, too much is overwhelming.

The break surface is completely clean with fiberglass, the resin didn't bond at all, and the filler was just added for nothing. That bit of strength was borrowed.

Quick reference by type: KH-550 is the standard for fiberglass, KH-560 protects epoxy, and titanium acid activates powders

The brands of coupling agents look confusing, but actually focusing on a few main varieties can cover 80% of applications. Below, we will explain their positioning, applicable signals, and precautions one by one.

If you want to increase the strength of glass fiber reinforced PP, first use KH-550; don't immediately add more filler.

KH-550 (γ-Aminopropyltriethoxysilane): The 'universal king' of silane coupling agents, with an amino functional group that can work with PA, PP, and epoxy. It is widely used in glass fiber reinforced PP, PA6/PA66 systems. Recommended dosage is 0.3%-0.8% based on glass fiber content, which can significantly improve tensile and flexural strength. Signals to choose it: when making glass fiber reinforced polyolefins or nylon. Note: KH-550 has a certain odor, so evaluation is needed for light-colored and low VOC parts.

Supply Notice: KH-550, KH-560, and other silane coupling agents have a stable supply at Kolon New Materials. Each batch comes with the content of active ingredients, and kilogram-level samples can be used for preliminary interfacial shear testing.

KH-560 (γ-Glycidoxypropyltrimethoxysilane): An epoxy-functional silane with mild reactivity, particularly suitable for thermosetting systems such as epoxy and phenolic resins, and also used in glass fiber reinforced PPO, PBT, and other engineering plastics. Price range is approximately 40-80 RMB/kg. Signals for selecting it: manufacturing epoxy fiberglass, copper-clad laminates, and glass fiber reinforced engineering plastics. Note: KH-560 is more sensitive to water and humidity; hydrolyzed solutions should be prepared fresh and used immediately.

KH-570 (γ-Methacryloyloxypropyltrimethoxysilane): A silane with double bonds, specially used for unsaturated polyester, acrylate, glass fiber reinforced thermosets, and transparent fiberglass products, which can co-curing with resin free radicals. Signal for choosing it: to make SMC/BMC, artificial stone, and light-transmitting fiberglass. Note: Not suitable for non-reactive PP, PE pure physical blending systems.

Coupling agents and compatibilizers are not the same thing—coupling agents deal with inorganic materials and resin, whereas compatibilizers deal with two kinds of resin. Using a ton if you get it wrong is useless.

Titanate coupling agents: divided into monoalkoxy type and chelated type, they are particularly skilled at dry activation of powder fillers like calcium carbonate, talc, and aluminum hydroxide, simultaneously reducing viscosity, dispersing, and coupling. They are cheaper than silanes and suitable for highly filled PP, PVC pipes, and masterbatch systems. Signals to choose them: making highly filled materials with calcium carbonate or talc. Note: Titanates are sensitive to water; fillers with high moisture content need to be dried first. The chelated type has better water resistance than the monoalkoxy type.

Alumina ester coupling agent: low cost, easy to use, mainly functions to reduce the oil absorption value of fillers and improve dispersion, but its coupling strength is not as good as silane. Suitable for filled masterbatches, low-end pipes, and disposable products with low mechanical requirements. Signals for choosing it: cost-sensitive, only requires processing flowability. Note: don't expect it for high-strength automotive, electronic, and similar parts.

Titanate activates calcium carbonate, silane stabilizes glass fiber, choosing the right chemical family is more effective than choosing a more expensive brand.

Alternative comparison: Can imported silane be replaced? Take a look at this table before taking action

The most frequently asked question in procurement: Can imported coupling agents be replaced with domestic ones? The answer is that the gaps in general grades are already very small, but for glass fiber reinforced high-strength parts, parallel validation is still required. The key of coupling agents lies in the hydrolytic stability of siloxane and the content of functional groups, and mainstream domestic brands can already match these indicators. The differences mainly lie in batch stability and oligomer control. The table below lists common replacement directions and prerequisites for switching.

Original imported directionTypical ApplicationsBenchmark solutionSwitch premise
Maitu A-1100 Type Amino SilaneGlass fiber reinforced PP/PADomestic KH-550Comparison of glass fiber impregnation, tensile/bending strength, and notched impact
Maitu A-187 Type Epoxy SilaneEpoxy and glass fiber reinforced engineering plasticsDomestic KH-560Comparison of hydrolytic stability and interlayer shear strength
Maitu A-174 type di-functional silaneUnsaturated Polyester/SMCDomestic KH-570Comparison of curing curves and mechanical retention rate
Kenrick TitanateCalcium Carbonate/Talc High FillingDomestic titanate coupling agentCompare melt flow, dispersibility, and oil absorption value
Imported Silane Compound SystemHigh filler compositeSilane titanium ester compoundComparison of comprehensive mechanics and cost

The table is for application direction reference and does not mean the performance is completely equivalent. The correct sequence for substitution is: small trial → parallel testing → written confirmation from the customer → small batch → mass production. If any step encounters a problem, it must stop for investigation.

The alternative verification of coupling agents requires interface strength testing. When Kolon New Materials provides kilogram-level silane/titanate samples, it accompanies the content of active ingredients. Customers can first compare tensile strength and fracture morphology to confirm the interface bonding before switching.

This thing called the interface usually stays hidden, but as soon as it breaks, its flaws are exposed—the fracture is the real report card of the coupling agent.

Industry Scenario Quick Check: Glass Fiber, Talc, and Aluminum Hydroxide Each Find Their Own Coupling Agent

Even though they are both coupling agents, the selection method is completely different for making fiberglass-reinforced automotive parts and for making daily products filled with calcium carbonate. The table below breaks it down by industry and filler type to help you quickly identify the options.

IndustryTypical productsThe parameters the customer asked about firstRecommended planCertification requirements
CarFiberglass-reinforced PP/PA66 bumper, intake manifoldTensile strength, low-temperature impact, thermal agingKH-550 or KH-560IATF 16949, low VOC
Home appliancesTalc-filled PP washing machine inner drumRigid shrinkage, warping, heat resistanceTitanate/Aluminate CompoundRoHS, REACH
Pipe materialCalcium carbonate/talc-filled PP-R and PE pipesPressure-resistant, long-term static hydraulicPrimarily titanatesGB/T 18742
Glass fiber reinforcedLong/short glass fiber reinforced PP, PAGlass fiber retained length, interfacial strengthKH-550UL, RoHS
halogen-free flame retardantAluminum hydroxide/Magnesium hydroxide filled systemFlame retardant synergistic effect, electrical performanceSilane couplingUL94, RoHS
Artificial Stone/FRPLight-transmitting flat panels, SMC productsLight transmittance, curing, interlayer strengthKH-570GB Building Materials Environmental Protection

Here's a specific scenario: making long glass fiber reinforced PP automotive brackets, the customer requires the glass fiber to retain a long length, high tensile strength at room temperature, and pass impact tests at -30°C. At this point, simply adding KH-550 is not enough; attention must also be paid to glass fiber wetting and screw shear— the coupling agent is responsible for the interface, and processing is responsible for retaining the glass fiber length; both are indispensable.

Dosage and key points for matching: First figure out whose measurement to follow

The amount of coupling agent added is a high-risk area for beginners to make mistakes. The key point is simple: calculate based on the weight percentage of the filler (glass fiber), not the entire batch. The following four formulations cover most scenarios.

The most common pitfall with coupling agents is not adding too little, but using the wrong measurement—measuring according to the main ingredient is equivalent to underdosing.

◆ Glass fiber reinforced PP/PA: Add KH-550 at 0.3%-0.8% according to the amount of glass fiber, and a small amount of KH-560 can be added to improve the interface, not exceeding 1.0% in total.

◆ Calcium carbonate/talc filling: Titanate coupling agent at 0.5%-1.5% of the powder amount, first activate with the powder at high speed before mixing with the resin.

◆ High-load halogen-free flame retardant: A large amount of aluminum hydroxide/magnesium hydroxide is used, and the powder is treated with a silane coupling agent at 0.5%-1.0% based on the amount of powder.

◆ Thermosetting fiberglass/SMC: KH-570 is added according to the amount of resin or glass fiber treatment liquid, in combination with an unsaturated polyester curing system.

Three key points for matching: First, coupling agents are often used together with lubricants and dispersants, but pay attention to the dosage to avoid over-accumulation, otherwise surface precipitation may occur; second, silane coupling agents on water-containing fillers should be hydrolyzed or made into masterbatch first, as direct dry powder mixing reduces effectiveness; third, coupling agents do not conflict with antioxidants or flame retardants, but acidic flame retardant systems may affect amino silanes, requiring adjustment.

The fiberglass was also puzzled: I'm so hard, how did I slide out of the plastic just by breaking? It just needs a translator.

Coupling: bridging at both ends.

Processing and Compliance Red Lines: The Three Pitfalls of Hydrolysis, Drying, and Measuring

If the coupling agent is not used properly, it either disperses unevenly or gives an inflated performance. The table below lists the key parameters in the processing steps and the consequences of doing them wrong; following it can avoid 80% of the pitfalls.

link; segment; partReference valueThe consequences of doing wrong
Coupling agent applicationSilane is first hydrolyzed or used with masterbatch; powder is activated at 80-110°CDirect dry mixing → uneven dispersion, low coupling efficiency
Material dryingHydroxyl-containing filler/glass fiber pre-baking at 80-120°CNot dried → excessive hydrolysis, decreased interfacial strength
Addition amountCalculate based on 0.3%-1.0% of the filler, not according to the main ingredient.Excess → Free coupling agent weakens the interfacial layer
Hybrid processMix at high speed for 3-8 minutes, keeping the temperature below the decomposition pointExcessively high temperature→ decomposition and failure of titanate/silane
Storage conditionsSealed moisture-proof, <30°C, use up quickly after openingMoisture→silane self-polymerization, titanate failure

Compliance red line: Coupling agents for food contact products must comply with relevant provisions of GB 4806; Exports to the EU must comply with REACH; Automotive parts must comply with IATF 16949 and low VOC requirements. Compliance documents for coupling agents (REACH registration certificate, RoHS testing, food contact declaration) must be requested and archived with the goods.

FAQ: Five common questions asked by procurement and formulation engineers

Q1: Can domestic coupling agents replace imported materials?

Yes, but it depends on the scenario. The gap between mainstream domestic and imported grades of general glass fiber reinforcement systems (KH-550, KH-560) is already very small, and domestic brands with stable batch sizes can be fully substituted. However, in long glass fiber high-strength parts, automotive low-VOC parts, and high-end electronics-grade scenarios, imported grades still have advantages in hydrolysis stability and batch consistency. The correct way to substitute is: first conduct kilogram-level samples for parallel testing, compare tensile, bending, impact, and fracture morphology, then use small batches for trial before scaling up. For test reference samples, you can request kilogram-level samples from Colon New Materials and compare them with batch data.

Q2: Even after adding coupling agent, why does the performance still not improve?

First, check three things: First, the amount added was miscalculated—adding according to the main material instead of the filler amount, resulting in insufficient actual usage; Second, silane was not hydrolyzed or not made into masterbatch, so the dry powder was mixed directly, and the molecules didn't reach the interface; Third, the screw was sheared too strongly, breaking the fiberglass, leaving the length insufficient. No matter how good the coupling agent was, it couldn't transfer force.

Q3: Can coupling agents and compatibilizers replace each other?

No. Coupling agents solve the interface between inorganic fillers and resins (low molecular weight), while compatibilizers address alloying between two resins (polymers like PP-g-MAH). Glass fiber reinforced PP with compatibilizer PP-g-MAH also has benefits, but that's another matter. Don't use KH-550 to solve compatibility between PP and PA6.

Q4: What is the most convenient way to use silane coupling agent?

There are three common industrial uses: first, pretreatment, where silane hydrolysate is first treated with glass fiber or powder, then dried and mixed with resin; second is overall blending, where silane is directly added to the mixture and hydrolyzed locally by processing heat; third, silane masterbatch, which is easy to feed and disperses evenly. For small and medium-sized modification factories, the masterbatch method is the most worry-free.

Q5: What is the approximate price range for coupling agents?

Common price range (RMB/kg): KH-550 about 30-80, KH-560 about 40-80, KH-570 about 50-90, titanate about 30-60, aluminate about 15-30. The current quote fluctuates with raw material prices. Coupling agent accounts for a low proportion of cost per ton, but it has a significant impact on performance. Don't choose unclear sources just to save a few yuan.

Three-step selection checklist: Follow these instructions to avoid pitfalls

◆ Step 1 · Identify the packing material: First, clarify whether the system contains glass fiber, talc powder, calcium carbonate, or aluminum hydroxide. The surface chemistry of the packing determines whether you choose silane, titanate, or aluminate.

◆ Step 2 · Fixed dosage: Calculate the amount by weight of the packing (glass fiber), 0.3%-1.0% silane, 0.5%-2.0% titanate, determine the application method (hydrolysis/masterbatch/dry mixing), and check compatibility with lubricants and flame retardants.

◆ Step 3 · Nuclear Verification: Perform parallel tests of tensile, bending, impact, and fracture surface morphology to confirm that the interface bonds properly, then verify and certify according to industry use (RoHS/REACH/Automotive VOC) and archive the documents.

Interfacial Adhesion Strength: Only after tearing can you know who is swimming naked

The effect of the coupling agent depends on interface shear strength and fracture morphology verification, not on how much is added. Columbus New Materials supplies coupling agents such as silane and titanate, providing active ingredient content and storage stability data; Glass fiber reinforced and mineral-filled systems can send samples by kilogram; customers can perform tensile and fracture analysis before determining dosage and category.

Last year, a factory producing glass fiber reinforced PP had tensile strength stuck at 45MPa, with the design requirement being 60MPa. Manager Wu from Cologne took their fracture samples; under the microscope, the glass fiber surface was smooth and lacked resin adhesion, clearly indicating the coupling agent was ineffective. They used titanate ester, but the glass fiber surface was silicon hydroxyl, so the matching was insufficient. They recommended switching to KH-550 silane, adding about 0.5% of the packing content and sending samples. After trial production, the customer's tensile strength rose to about 62MPa, successfully passing the drop test of power tools.

Your coupling agent is calculated by packing amount or is it randomly added based on the main material?

Statement: 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 are for reference only. Please refer to the latest official information and batch inspection reports from each manufacturer. This article does not constitute any procurement or investment advice. Readers are responsible for any actions based on it

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