PPE副牌,做电子散热器的厂为什么偷偷认这三家?

产品中心 发布时间: 2026-09-12 3134 阅读

In the modified material circle, there's a rather unimpressive hierarchy: those making PBT look down on those making PPE, and those making PPS look down on those making PBT. The reason is simple—pure PPE resin is too sticky and tough, and the processing temperature is high; you need a skilled brush to handle it.

But interestingly, in recent years, after 5G base stations, data centers, and power modules emerged, manufacturers making electronic radiator components have suffered the most setbacks—precisely PPE, which is looked down upon.

Why? Because radiator brackets need to be heat-resistant, low dielectric, have stable dimensions, and can't absorb water or deform—combined, PBT can't withstand long-term 150°C, PPS is ridiculously expensive, and PPE/PS alloy is stuck right on this line.

A factory in Dalian that makes power module heat dissipation brackets used a domestically modified PPE last year. In summer, a batch of brackets warped over 3% in the temperature control box and was returned as a whole batch. Later, the boss asked someone to find imported sub-brands and realized the waters in the PPE industry were much deeper than he had imagined. What is

PPE? A heat-resistant king that can't be used without modification ,

PPE full name Polyphenylene Ether, also called PPO. Essentially, these two terms refer to engineering plastics polymerized from the same type of resin—2,6-dimethylphenol. The Tg is around 210°C, long-term use temperatures can exceed 120°C, and the dielectric constant is as low as about 3, almost unchanged with frequency.

Pure PPE has a flaw: extremely high melt viscosity, processing temperatures above 300°C, and prone to oxidation and cross-linking. Therefore, 99% of PPE sold on the market is modified alloy—blended with PS to make PPE/PS (called MPPE), or with PA alloy (PPE/PA). The PPE sub-brand we commonly refer to refers to the original factory sub-brand material in these modified alloys.

Leading foreign companies in the global PPE modified alloy market by market share and capacity:

SABIC (Saudi Basic Industries): Noryl series, global market share about 18%-24%, industry leader;

Asahi Kasei (Japan): Xyron series, global market share about 14%-16%, Asia-Pacific leader;

Mitsubishi Engineering-Plastics (Japan): Iupiace series, about 9%-12% share.

These three plus BASF (Luranyl series, PPE/PA alloys) basically divide the global high-end PPE modification market. Domestic brands Bluestar and Kingfa have been chasing in recent years, but the power in electronic-grade low dielectric batteries still lies with SABIC and Asahi Kasei.

PPE sub-brand: original factory-modified pellets, not sprue re-pelletizing

PPE sub-brand. Let's clarify the concept first.

PPE sub-brand is not PPE recycled material, nor is it re-pelletizing sprue material. Its true identity is: SABIC, Asahi Kasei, Mitsubishi Engineering, and other original manufacturers on PPE/PS or PPE/PA alloy pelletizing lines. In the same batch modified product, factory inspection of heat resistance, dielectric, melt finger, and impact grade has one or two levels that slightly deviate from the official brand standards.

The four major sources are similar to other engineering plastics: start-stop head and tail material, grade switching transition material, process fluctuation batch, and auxiliary line tail material. Molecular structure and alloy ratios are consistent with the genuine brand, but the batch where the slices were sliced didn't meet certain indicators on the test form.

Draw the boundary again: genuine PPE meets all standards, used for electronic connectors, 5G base station filters, and automotive water chambers; Sub-brand PPE has slight fluctuations in some indicators, used for radiator brackets, electronic internal components, and general heat-resistant parts; Recycled PPE has already passed one thermal cycle, dielectric stability drops, and cannot be used for high-frequency high-speed components; Recycled PPE has large performance fluctuations and can only be made for structural parts that are not exposed or load-bearing.

In a nutshell: The secondary brand PPE is original factory modified particles, with an alloy formula identical to the genuine brand, except one indicator is half a notch off at the factory.

SABIC—Noryl series, the pioneer of PPE modification

PPE This was GE Plastics' earliest industrialized product. Later, GE Plastics was fully integrated into SABIC, and the Noryl series became SABIC's signature product. Noryl's product line covers the full range of PPE/PS, PPE/PA, PPE/PP, with grades so detailed you can flip through three pages.

SABIC's advantage is its global production capacity layout—bases in the US, Europe, Singapore, and Thailand. Electronic-grade low dielectric grades have a high penetration rate in 5G base station and server casings.

Subbrand Features: SABIC's sub-brands mostly come from the transition materials of the Noryl G series (glass fiber reinforced) and FN series (flame retardant). Heat resistance is usually 130°C-140°C (genuine 140°C-150°C), dielectric performance remains unchanged, but the glass fiber content or flame retardant rating is slightly uneven. Suitable for power module heat dissipation brackets, LED lamp holders, motor end covers, and other parts that require heat resistance and dimensional stability but do not require certification-level flame retardant. Packaging is mainly in large packages, but small packages are also available.

Asahi Kasei—Xyron series, Japanese precision school

Asahi Kasei's Xyron is a benchmark for PPE modification in the Asia-Pacific region, especially deeply tied to Toyota, Honda, and Nissan in the automotive and electronics sectors. Brands like Xyron 500H and V100 series are familiar to those who make cooling fan brackets and transformer frames.

Asahi Kasei's technical features include fine fiberglass wetting and flame-retardant systems, with dimensional stability earning a strong reputation among Japanese customers.

Subbrand features: Asahi Kasei's secondary brands often have slightly flushed melt fingers (± within 1.0) or slightly deeper hue, but stable alloy proportions and glass fiber content. Especially suitable for electronic radiator components—heat dissipation brackets require heat resistance, low moisture absorption, and stable dimensions, all of which Asahi Kasei secondary brands can handle. The power module factory in Dalian later switched to the Xyron subbrand, reducing warpage from 3% to within 0.5%.

Mitsubishi Engineering Plastics—Iupiace series, balanced and practical

Mitsubishi Engineering Plastics' Iupiace series is widely used in OA equipment and electronic components. Iupiace features a wide processing window, less sensitive to mold temperature and injection pressure, so beginners are less likely to fail. Its PPE/PA alloy series is also penetrating automotive water compartments and electric vehicle parts.

Subbrand Features: Mitsubishi's secondary brands usually deviate from specs relatively small, with prices slightly lower than SABIC and Asahi Kasei, but their delivery times domestically are less stable. Suitable for cost-sensitive products that require imported base materials for radiator housings and motor stator insulation frames.

PPE these three pitfalls of sub-brands, electronics factories can mess up if they step into one

PPE The sub-brand industry has more pitfalls than you might think.

First pitfall: selling PPE/PS secondary brands as PPE/PA secondary brands. These two alloys are far inferior—PPE/PS is heat-resistant, low dielectric, used for electronic components; PPE/PA is chemical-resistant and gasoline-resistant, used for automotive oil coolers. If you pick the wrong alloy, problems will arise as soon as you put it in the machine. Ask clearly about the alloy system before buying.

Second pitfall: Selling recycled PPE as a secondary brand. PPE recycled material undergoes two thermal cycles, causing molecular chain degradation and floating dielectric constant, which can cause a failure when making high-frequency, high-speed components. How to distinguish: original secondary brand particles have smooth surfaces and uniform color; Recycled material particles are dark, have black spots, and uneven particle size.

Third pit: Randomly applied regardless of purpose. Secondary brands usually have heat resistance 5°C-10°C lower than genuine ones. If your parts operate above 130°C for a long time, don't force secondary brands; Cooling brackets at 100°C-120°C, with a sub-brand just right.

Acceptance action: Testing three items upon arrival—thermal distortion temperature, dielectric constant, water absorption rate, and sealing samples in bags. Electronic cooling devices are sensitive to dielectric properties, so this item cannot be omitted.

Cologne Warehouse In Stock | PPE Terminal

Main Recommended Brands: SABIC, Asahi Kasei, Mitsubishi Engineering Plastics

Main grades: Noryl series, Xyron series, Iupiace series

Packaging specifications: Both large and small packages are available in stock

Warehouse spot inventory is usually between 3,000 and 6,000 tons

Small package secondary brand stock 500-800 tons, box-packed secondary brand stock 200-400 tons, large package material/ton package material stock 2500-4800 tons

Supply Guarantee: Direct procurement from the original factory with original packaging

Six tips to master PPE sub-brand selection

1. High frequency and high speed, 5G base stations, certification-grade flame retardant — Shangzheng brand;

2. Heat dissipation bracket, motor end cover, lamp holder — a secondary brand is sufficient;

3. For stable global delivery and complete grades — choose SABIC Noryl;

4. For Japanese-style precision and stable dimensions — choose Asahi Kasei Xyron;

5. For processing window width and cost sensitivity — recognize Mitsubishi Iupiace;

6. Auxiliary labels must be tested for heat deformation temperature, dielectric constant, and water absorption rate before entering the factory.

I don’t dare show the boss the price tag of the branded PPE. Using recycled material PPE on the machine causes it to warp, but the imported secondary PPE manages to meet the heat resistance and low dielectric requirements for the radiator bracket, fitting perfectly.

The customer in Dalian who manufactures power module heat dissipation brackets previously used domestically modified PPE. A batch warped by more than 3% in the temperature-controlled box during the summer, resulting in a total return loss of over 400,000 yuan. Later, they switched to Asahi Kasei Xyron’s secondary brand, reducing warping to within 0.5% and stabilizing the dielectric constant at 2.8–3.0, allowing the entire batch to pass customer certification. The material cost was reduced by more than 2,000 yuan per ton, and over the course of a year, the reduction in returns alone saved more than 300,000 yuan in compensation.

This is the value of choosing a secondary grade – it's not about picking the cheapest, but selecting the grade whose base material is suitable and whose specifications are just enough for your needs. Ningbo Kolon New Materials Co., Ltd. has been producing imported PPE secondary grades for many years. Secondary grade materials from SABIC, Asahi Kasei, and Mitsubishi Engineering are available year-round. They handle dozens of electronic heat dissipation component cases every year. Simply put, they help you test issues like 'whether it warps or whether the dielectric is stable' before mass production.

Those who make electronic heatsinks, power modules, or motor end covers—who hasn't been screwed over by PPE?

Is it that the cooling bracket warps excessively in summer? Or did the secondary brand alloy system get used incorrectly and crack as soon as it was put on the machine? Or did the dielectric deviate, causing a batch of high-frequency components to be completely scrapped?

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