抗静电剂:塑料的“去静电贴”,内加外用两条路,炭黑碳管走导电

塑料知识科普 发布时间: 2026-09-15 1842 阅读

In the cleanroom of the electronics factory, a batch of IC trays discharged static electricity during the packaging process, destroying dozens of chips and causing six-figure losses. The quality manager investigated overnight and found that the trays were made of ordinary PP, with a surface resistance of 10^16 ohms, making it impossible for static electricity to dissipate—essentially placing a time bomb next to the chips.

Taking off a sweater makes crackling sounds, and pulling a plastic wrap sticks to your fingers—everyone has been shocked by static electricity, it's just that no one takes it seriously.

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 Antistatic Agents: Internal Addition, External Use, Permanent Conductive Three Lines

Anti-static agents are not a single thing, but three approaches: one relies on migrating to the surface to absorb moisture on its own, one relies on spraying afterwards for emergency use, and one simply weaves conductive fillers into the plastic. Which one to choose depends on how low you want the resistance to be, what colors you can accept, and how long you plan to use it. The table below lists the mainstream systems on one page.

systemRepresentative varietyKey parametersTypical productsAdd ratio
Internal and migratory typeEthoxyamine, GMS (glycerol monostearate), sorbitan estersAmphiphilic at both ends, relies on moisture absorption and migration, depends on environmental humidityPackaging film, turnover boxes, home appliance shells0.5%-2%
For external use, topical typeQuaternary ammonium salts, ethoxylated amine coatingSpray and wipe for immediate effect, effective in the short termPrefabricated parts, on-site emergencyCoating solution 0.1%-0.5%
Permanent conductive typeConductive carbon black, carbon nanotubes, carbon fibersForm a continuous conductive network, not dependent on humidityIC trays, conductive turnover boxes, explosion-proof tubesCarbon black 10%-20%
Intrinsic conductive coatingPolythiophene conductive polymersCan be coated, relatively transparent, with stable resistanceTransparent anti-static packaging, display screenCoating grade

Note: The above surface resistance values are reference ranges. The actual effect is influenced by environmental humidity and should be based on the official TDS and actual measurements. When selecting a model, first determine the resistance target and operating humidity, then discuss the approach—do not do it the other way around.

Figure 1 Antistatic Agent — Conductive Water Film and Conductive Network on Plastic Surface

There are two ways: internal and external; if you choose the wrong one, you’ll fail in winter.

This protagonist specializes in dealing with invisible static electricity. Ningbo Cologne New Materials Co., Ltd. has long been engaged in the business of various plastic additives and modified raw materials, covering supply sources of multiple domestic and international brands. It has stable supply channels in commonly used additive categories such as antistatic agents, colorants, and flame retardants. As for the antistatic agent category, its essence is essentially the 'anti-static sticker' for plastics—plastic molecular chains lack free electrons, so the charges generated by friction cannot be released and accumulate on the surface. The task of an antistatic agent is to build a path for these charges to move.

The invisible water film on the surface of plastic is the real channel for static electricity to drain — the ability of resistance to span seven orders of magnitude has never relied on mysticism.

The mainstream mechanisms are divided into two categories. One type is the migratory type: antistatic agent molecules are hydrophilic at one end and lipophilic at the other. The lipophilic end embeds into the plastic, while the hydrophilic end slowly migrates to the surface, adsorbing moisture from the air to form a very thin conductive water film, allowing charge to dissipate along the water film. The other type is the conductive type: conductive fillers such as carbon black or carbon nanotubes are directly added into the plastic, forming continuous pathways within the resin, providing routes for electrons, so charges naturally cannot accumulate.

Internal antistatic agents are like couriers who leave on a schedule, gradually migrating to the surface to take effect; external ones are like temporary band-aids, useful in emergencies but not lasting.

The weak point of the migratory type is also obvious: it relies on water absorption, and once the humidity drops below 40%, the water film becomes thinner or even breaks, reducing its anti-static effect; Moreover, it is continuously consumed by friction, cleaning, and aging, so it must be replenished by internal migration, so it is "long-lasting but not permanent." The conductive type is less sensitive to humidity and conditions; it is the only choice for black parts and high conductivity requirements, but the trade-off is blacker color, larger filler content, and higher costs.

The sadness of antistatic agents: they spend their whole life running outwards; they are only useful when they run out, and if they can't get out, they are just a lump of powder.

Quick reference by type: Ethoxyamine is general-purpose, quaternary ammonium salts for emergency, carbon black tubes for permanent

There seem to be many grades, but by focusing on a few main ones, you can cover 80% of the applications. Below, we will go through the positioning, applicable signals, and precautions one by one.

When making anti-static formulas, don't just focus on how many parts are added; pay attention to whether the layer of water in the dry workshop in winter is still there.

Ethoxylated amines: A main product of the internal migration type, compatible with PP, PE, and ABS, with moderate migration speed and surface resistivity stable in the 10^9 to 10^11 range. They are commonly chosen for general packaging films, turnover boxes, and household appliance housings. Signals for selecting it: the product is opaque or semi-transparent, accepts 0.5%-2% addition, and is used in an environment with some humidity. Note: Its heat resistance is average, so processing temperature should not be maintained above 260°C for long periods, otherwise it may decompose.

Supply Notice: Cologne New Materials has stock of ethoxyamine internal type and quaternary ammonium salt external type antistatic agents. Carbon black conductive masterbatch can also be supplied. Surface resistance data is provided with each batch, and kilogram-level samples are available for testing before use.

GMS glycerol monostearate, sorbitan esters: non-ionic migration antistatic agents, low toxicity, food-contact friendly, commonly used in food packaging films and thin film products. Signals for choosing it: for food-contact packaging, requiring low migration, cost-sensitive. Note: the antistatic effect is relatively weak; used alone, it can only reach 10^10 to 10^12 times, high-demand situations require blending with ethoxylated amines.

Quaternary ammonium salt topical solution: Prepared as an aqueous or alcohol solution, it can be sprayed or wiped onto the surface of a finished product. After drying, it forms an antistatic layer that can reduce surface resistance within a few hours. Reasons to choose it: emergency on-site treatment for finished parts, temporary antistatic measure, do not want to change the formula. Note: Not resistant to friction and washing, usually degrades in a few weeks to a few months, considered a "temporary solution."

Carbon black weaves a black network inside the plastic, allowing electrons to move along the network so that static electricity has nowhere to accumulate—this is using color to achieve conductivity.

Conductive carbon black, carbon nanotubes, carbon fibers: pursue permanent conductivity. The typical addition of conductive carbon black is 10%-20%, cost is controllable, and it is the main choice for IC trays, conductive turnover boxes, and mining conveyor pipes; carbon nanotubes require a low addition (2%-5% masterbatch is sufficient), suitable for thin parts and slightly lighter-colored conductive parts, but they are expensive and require high dispersion. The signal for choosing them: requires long-term stable conductivity, experiences large seasonal humidity fluctuations, and accepts dark colors. Note: carbon black absorbs light and colors, affecting gloss, while carbon nanotubes require addressing dispersion and dust protection.

Don't choose carbon black for transparent parts, and don't waste money on transparent antistatic agents for black parts.

Alternative Comparison: Can the imported anti-static system be replaced? Let's first look at this table.

The most frequently asked question in procurement is still this: Can imported antistatic systems be replaced with domestic ones? Yes, but the differences in antistatic agents often lie not in 'whether the resistivity can be reduced,' but in batch stability and consistency of migration cycles. The table below lists common replacement directions and the prerequisites for switching.

Original Import DirectionTypical ApplicationsBenchmark solutionSwitch premise
Imported internal-added ethoxyaminePackaging film / turnover boxDomestic ethoxylamineComparison of surface resistance versus humidity curve, migration stability period, and frosting
Imported topical quaternary ammonium saltsOn-site emergency coatingDomestic quaternary ammonium salt coating solutionComparison of resistance in dry and wet environments, wipe retention time, and adhesion
Imported conductive carbon blackIC Tray / Conductive PartsDomestic conductive carbon blackCompare volume resistivity, dispersibility, and color strength fluctuations
Imported carbon nanotube masterbatchUltrathin conductive filmDomestic carbon tube masterbatchComparison of added amount, light transmittance, and batch stability of resistance

The table only provides directional reference; the actual resistor curve and batch stability should still be based on parallel testing.

The replacement of antistatic agents depends on surface resistance and durability. When Cologne New Materials sends kilogram-scale samples, they include reference data for surface resistivity, allowing customers to directly compare resistance under high and low humidity conditions and switch only after verification.

Still attracting dust even with an antistatic agent? First, check if the workshop humidity is below 40%. Hygroscopic materials will stop working in a dry environment.

Quick industry check: What electronic factories and mines need is fundamentally not the same thing.

Although both are called anti-static, the requirements for making electronic IC trays and making dust-proof food films are vastly different. The table below separates them by industry.

IndustryTypical productsThe parameters the customer asked about firstRecommendation systemCertification requirements
Electronics and electrical appliancesIC trays, turnover boxes, shielded packaging bagsSurface resistance 10^8-10^11, static decay timeConductive carbon black/carbon tube permanent typeESD S20.20, RoHS
PackagingDust-proof film, food packaging linerTransparency, low additives, does not affect printingN-alkyl migratory ethoxyamineFDA, GB 4806
Mine/Explosion-ProofConveying pipe, fan impeller, anti-static floorSurface resistance < 10^6, long-term stabilityCarbon Black Conductive SystemGB 3836, Mining Certification
Home appliancesVacuum air duct, casing, copier componentsDust-resistant, does not affect the appearance colorEndogenous Migration SystemRoHS, REACH
Textile and chemical fiberSpinning components, carpets, non-woven fabricsSpinning without floating fibers, long-lasting anti-staticSpinning-grade internal additive typeOEKO-TEX

For a specific scenario: making electronic turnover boxes, the customer requires a surface resistance of 10^8 to 10^11 ohms, and the product must still meet the standard when re-tested in the dry workshop during winter. In this case, relying solely on internally added migration-type conductive agents is risky — in the low humidity season, if the water film breaks, the resistance will skyrocket. The safer approach is to use a permanent conductive carbon black system directly; the resistance will not be affected by humidity, but the trade-off is that it will be black.

What electronic workshops fear is not getting an electric shock, but static electricity quietly piercing the chip—the invisible damage is what really costs.

Dosage and Key Points of Combination: Three Formula Bottom Lines

The amount of antistatic agent added may look casual, but it actually follows a pattern. The following three formulas are industry-verified general solutions.

Anti-static packaging requires 10 to the power of 8 to 11, and for IC trays, choose a permanently conductive carbon black system. Do not use a migratory type in low humidity seasons.

◆ Internal migration type: ethoxylamine 0.5%-2%, PP/PE universal packaging and home appliance parts; When using lubricants and lubricating agents, pay attention to "surface protection," and do not exceed the total amount of external lubricating agent over antistatic agents.

◆ Permanent conductive type: 10%-20% conductive carbon black or 2%-5% carbon nanotube masterbatch, suitable for dark colors and making thick-walled conductive parts; the carbon black needs to be dispersed and impact compensated.

◆ External application: Quaternary ammonium salt solution at a concentration of 0.1%-0.5%, spray and let it dry, suitable for emergency use on finished products, don’t expect it to replace internal addition.

There are three more key points for formulation: First, internal additives and lubricants will compete for surface migration sites, and excessive external lubrication can trap antistatic agents inside, preventing them from coming out; second, if printing or bonding is required after external coating, adhesion and corona tests should be conducted first; third, conductive carbon black will reduce surface gloss and increase density, so allowances should be made when designing wall thickness and color matching.

Static electricity: Moisture absorption relies on migration, permanence relies on conductivity.

Processing and Compliance Red Lines: These Three Pitfalls Will Cause Increased Antistatic Issues

If antistatic agents are not used properly, it is often not because the material is bad, but because the processing stage wastes it. The table below lists the key parameters and the consequences of doing it wrong.

link; segment; partReference valueThe consequences of doing wrong
pre-mixed dispersionHigh-speed mixing for 3-5 minutes, conductive carbon black/carbon nanotubes need to be fully dispersedUneven dispersion → local resistance exceeds the standard, large batch-to-batch variation
Processing temperatureMigration-type heat resistance is generally <230℃, avoid prolonged high shearExcessive temperature/too strong shearing → antistatic agent decomposes or is prematurely consumed
Synergistic with lubricationExternal lubricants compete with antistatic agents for surface sites, and the total amount is controlledExcess lubricant → antistatic agent can't come out, surface resistance can't decrease
Resistance TestTest the finished product after balancing at 23℃/50% RHIf not balanced, measurement → data distortion, misjudgment of the formula

Exports to the EU need to verify the REACH and RoHS lists, and the corresponding surface resistance test reports should be filed with the goods.

Do your products need to withstand three months of static electricity, or three years? Think this through, and then you won't have to worry about adding migration and permanent conductivity.

FAQ: The Five Most Common Questions Asked by Purchasing and Formulation Engineers

Q1: Can domestically-produced antistatic agents replace imported materials?

It is possible, but it needs to be divided by type. For internal migration-type (ethoxyamine system), the gap between domestic and imported products is already very small. Domestic brands with stable batches are perfectly sufficient for general packaging and household appliance components. For external quaternary ammonium salt coatings, there are also many domestic options. However, for permanent conductive systems (high-end conductive carbon black, carbon nanotube masterbatches) and electronic conductive components that require high consistency of low resistance, imported products still have advantages in batch stability and dispersibility. The correct approach for replacement is to first test kilogram-level samples for surface resistance-humidity curve in parallel, focusing on verifying retention under low humidity conditions and after aging, and only after passing these tests can small-scale production be increased. If reference samples are needed, they can be requested at the kilogram level, with batch data provided for comparison.

Q2: Why does a newly made part have good anti-static properties, but they don't last after a month?

Migratory antistatic agents need time to 'migrate' to the surface. When a new part is just demolded, the effect may not have appeared yet; allowing it to sit for a few days to a few weeks can actually be better. However, conversely, if the storage environment is too dry or the surface is contaminated with oil or repeatedly wiped, the migration layer will be depleted and cannot be replenished. The solution is to control storage humidity, avoid surface contamination, and, if necessary, appropriately increase the initial addition amount.

Q3: Which one should be chosen for a low humidity environment (below 40% RH)?

In low-humidity environments, the effect of moisture-absorbing migrating antistatic agents will significantly decrease. At this point, don't rely on adding a water film; go directly for conductive types—carbon black or carbon nanotube permanent systems, whose resistance does not depend on moisture. If cost is sensitive and black color is acceptable, conductive carbon black is a reliable choice.

Q4: Can carbon black conductive components still be made in light colors or transparent?

Conductive carbon black itself is black and cannot be used for light colors or transparency. For light-colored conductivity, one could consider carbon nanotube masterbatches (low addition, lighter color) or intrinsic conductive polymer coatings, but the cost and process requirements are higher; for transparent antistatic properties, the approach is currently more focused on coatings rather than adding carbon black to the bulk material.

Q5: Which is more cost-effective, external spraying or adding internally?

Look at the scenario. For bulk new parts that require long-term stability, internal casting can solve it in one go, with a low cost per kilogram; for already formed parts needing on-site emergency, small batches, and short-term use, external spraying saves the cost of modifying molds and formulas. Don’t rely on spraying for long-term maintenance—the labor and consumables add up and aren’t cheap, and consistency is hard to maintain.

Three-step checklist for choosing: Follow it to avoid detours

◆ Step 1 · Set resistor target: First clarify whether you need "dustproof and antistatic" (10^9 to 10^11) or "conductive discharge" (below 10^6), as well as the humidity range for the season of use and lifespan requirements.

◆ Step 2 · Choose the route: Transparent light color for short-term use → add migration type inside; Black high conductivity for long-term use → carbon black/carbon tube permanent type; Emergency for already formed parts → apply externally.

◆ Step 3 · Certification and Compatibility: Verify certifications such as ESD, food contact, and mining, check compatibility with lubricants, flame retardants, and printing adhesives, and conduct a small-scale parallel test of the resistance-humidity curve before scaling up.

Static electricity is invisible, but its losses can be calculated.

Antistatic agents are categorized into migration type (internal/external) and permanent type (carbon black/carbon nanotubes/conductive polymers). The choice depends on the product's requirements for resistance value and durability. Cologne New Materials can provide reference data for surface resistance of different systems and low VOC compliance documents; for electronics packaging and cleanroom scenarios, a permanent conductive system is recommended. Kilogram-scale samples are available for preliminary surface resistance and static decay testing.

Last year, a factory producing IC trays was complained about by a customer for electrostatic breakdown of chips, resulting in a huge compensation payment. Kolon New Materials recommended a carbon black conductive masterbatch system to them, with an addition amount of about 20%, and surface resistance controlled between 10^6 and 10^8 ohms. After sending kilogram-level samples, the customer conducted electrostatic decay tests, and the decay time dropped from more than 30 seconds to within 0.5 seconds. After resuming production, no more electrostatic breakdown incidents occurred, and the customer's chip factory orders expanded from one to three.

Have you measured the surface resistance? Is it 10 to the power of what?

Statement: The brands, trademarks, and product names mentioned in this article are owned by 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. Specific information should be based on the latest official data and batch inspection reports from the respective manufacturers. This article does not constitute any procurement or investment advice, and readers bear the risks of any actions taken based on it.

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