再生PPS的应用版图:800V连接器、燃油泵、除尘滤袋,全是它的地盘

塑料知识科普 发布时间: 2026-09-12 4383 阅读

In the plastics industry, PPS is a mysterious figure—a ton of virgin material sells for fifty to sixty thousand yuan, three times more expensive than ABS. Most peers in general-purpose material manufacturing haven't even seen what it looks like; they've only heard that it can withstand over 200 degrees and is flame-retardant, a special engineering plastic hidden deep within the industry chain.

But you might not expect that inside your new energy vehicle, you'll find that the 800V high-voltage connector, electronic water pump, and IGBT module casing—if you look inside, it's very likely not virgin PPS, but recycled PPS.

On one side is a high price tag of fifty to sixty thousand yuan per ton; on the other, new energy vehicles, electronics, electrical appliances, and industrial pumps and valves are used abundantly—the recycled PPS market looks completely unrelated to the term "low-end recycled material." It's niche, but it's a high-value niche.

This article lays out the application map of recycled PPS for you: which parts have it actually consumed, why these parts dare to use recycled materials, and where their main battlefield lies.

First, clarify the positioning of the materials. PPS, Chinese name polyphenylene sulfide, is a semi-crystalline special engineering plastic with sulfur bonds attached to the benzene ring, with a melting point around 280°C and continuous use temperatures up to 200-240°C. Its flame retardancy is innate, reaching V-0 without additional flame retardants. Simply put, this thing is the high-temperature resistant contender in the plastics world.

The logic of recycled PPS is the same as all recycled materials: turn used PPS products back into pellets. But it's much more expensive than recycled PP and recycled ABS—the mainstream transaction price for recycled PPS is over 10,000 to over 40,000 yuan per ton, 30%-50% lower than virgin modified PPS. The real money saved is the real reason downstream customers are willing to use it.

From the perspective of absorption structure, automobiles consume about 45% of global PPS sales, making it the undisputed top downstream material for this material. The remaining plate is divided into electronics, electrical appliances, industrial pumps and valves, and environmental filtration systems. Suzhou and Ningbo in the Yangtze River Delta, Dongguan and Zhongshan in the Pearl River Delta, factories producing modified recycled PPS are one after another. Although this industrial cluster is small, its density is not low.

Just shake your head when you mention recycled materials? New energy vehicles are voting with their feet

When they hear "recycled PPS," many buyers immediately react: With such high requirements, would you dare to use recycled materials? Impurities, discoloration, unstable batches—just thinking about it is overwhelming.

This concern isn't entirely unreasonable, but that's not how the accounts are calculated. The common practice in the industry is not to use 100% recycled material, but to mix and use it. Mixing recycled material into new material at a proportional ratio of 10%-25%, with no obvious loss in mechanical properties—this isn't a small factory's unconventional approach. The official technical documentation of Durafide clearly states that recycled material is recommended to be kept below 25%, with some grades even higher.

Carefully Consider: Why do OEMs and connector manufacturers dare to mix? Because after mixing, prototyping, certification, and testing all match the data, and the cost per ton has truly dropped significantly. New energy vehicles have been rapidly increasing in recent years, with 800V platforms rolled out, demand for high-voltage connectors growing stronger year by year, and cost pressure for high-value parts growing year by year—voting with your feet is never about sentiment, it's about the ledger.

To put it bluntly, recycled PPS isn't about replacing all new materials, but about relaxing the cost curve while meeting performance standards. If you get the right balance, it's a cost-cutting tool; If you can't control it and go 100% for it, that's just planting a minefield for yourself.

Automotive electronics are the real major sponsor of recycled PPS

The top investor in recycled PPS consumption volume isn't home appliances or toys, but automotive electronics.

This wave of electrification in new energy vehicles keeps stuffing PPS into cars. High-voltage connectors and terminal blocks on 800V and even 1000V platforms, busbar brackets, casings and impellers of electronic water pumps and electronic oil pumps, valve cores of water valves, ignition coil housings, various sensor brackets, insulating frames and end plates of motor stators, IGBT module housings, fuse boxes, and even fuel pump housings, fuel guide rails, and injector assemblies—all these components are within PPS's range.

Why choose these parts? Three hard specifications are met: long-term resistance to thermal aging above 220°C, low dielectric loss to ensure high-voltage signal loss, resistance to antifreeze, fuel, and engine oil, plus high insulation CTI and innate flame retardancy V-0. In new energy vehicles, there are few materials that can withstand all three at once, and PPS is one of the few that can deliver results.

Most of these parts are hidden in the engine compartment and the three-electric system, invisible to customers, but if a single part fails, it means a recall for the entire vehicle. So the use of recycled PPS in automotive electronics is "blending without recklessness"—strict control over blending, batch sampling, and on-site testing. If this setup works smoothly, your name will appear on the OEM recycled material procurement list.

The hidden champion in electronics and electrical appliances

Besides cars, another high-value plate of recycled PPS is in electronics and electrical appliances.

SMD coil backbones of power inductors and transformers, relay housings, various connectors, USB Type-C interface components, 5G base station connectors, server high-speed connectors, filter housings, millimeter wave components, capacitor housings, LED lamp holders, and reflectors—these components share the following characteristics: they must withstand 260°C reflow soldering through the furnace, have thin walls to 0.15mm, have high insulation requirements, and must be flame-retardant. PPS is naturally weldable, flame-retardant, and dimensionally stable—it's practically tailor-made for these components.

The key here isn't whether it can be used, but whether the recycled material you receive is reliable. For connectors with 0.15mm thin walls, even a small amount of impurities can cause gate clogging, flash, and brittle cracking during injection molding, causing batch scrapping at once. Therefore, the electronics and electrical industry is even more selective about recycled PPS than cars.

Suzhou has a client making 5G base station connectors. Previously, they used virgin modified PPS for over 30,000 yuan per ton, and base station bidding had to undercut prices annually, squeezing profits strained. Later, we switched to a blended modified recycled PPS solution, strictly blending according to proportions, retaining samples for each batch. The connectors did not crack after 260°C reflow welding, CTI and flame retardant data all matched, cost per ton dropped by over 30%, annual usage exceeded 200 tons, saving hundreds of thousands in material costs alone, and supply batches never had issues.

This is the value of choosing the right material—not just making do, but thoroughly handling proportion, batch, and testing. Ningbo Kelong New Materials Co., Ltd. has handled many cases in the modification and selection of recycled PPS. Southeast Asian import channels are mature, high-value sources are stable, and stock is sufficient. Similar tasks are taken on every year.

Industrial pumps, valves, and dust filter bags, serving both ends

The third plate of recycled PPS is on the industrial and environmental protection lines.

Industrial machinery and chemical equipment: pump and valve linings, bearing cages, gears, mechanical seals, chemical pipeline fittings, heat exchanger components, oven oven parts—these parts must be wear-resistant, chemically resistant, self-lubricating, and withstand continuous temperatures of 220°C without flinching. PPS molecules themselves have extremely strong chemical resistance; below 200°C, there are almost no solvents that dissolve them. Combined with PTFE, carbon fiber, and graphite for wear-resistant modification, it is a regular in the pump and valve industry.

Another plate is even more interesting: dust filter bags. For flue gas dust removal in coal-fired power plants and waste incineration plants, PPS fiber filter bags are used—a main application of PPS fiber-grade and an important source of recycled PPS waste. Filter bags need to be replaced after a few years; dismantled waste bags are processed and returned to the pelletizing process. One end supplies industrial parts, the other digests waste filter bags. Recycled PPS effectively wins both ends of the industrial environmental protection chain.

Analyze carefully: Why are pump and valve factories and filter bag factories willing to accept recycled PPS? Because these parts don't directly meet the end consumers. As long as performance meets standards, the cost accounts are manageable—who would be at odds with money?

Five grades, each going their own way

Recycled PPS is divided by modification direction, mainly in these ways. Which one you choose depends on what your part will do:

Glass fiber reinforced grade: Main category, stretching and rigidity are pulled upward, used for automotive structural parts and connector housings;

Mineral-filled grade: more dimensionally stable, less warping, suitable for precision parts and thin-walled components;

Conductive grade: mixed with carbon fiber or carbon black, antistatic, conductive, suitable for coal mines, chemical industries, and other environments with explosion-proof requirements;

Wear-resistant grade: compounded with PTFE and graphite, used for bearings, gears, seals, gets smoother the more it wears;

High impact-toughness grade: restores toughness, suitable for structural parts with high impact resistance requirements.

If you choose the right approach, subsequent modification and coloring are easier to discuss; if you choose the wrong approach, even the cheapest material will just sit in the warehouse as inventory.

Final note: Eight tips to master recycled PPS

1. First, check if the part can withstand high temperatures: consider PPS only for engine compartment parts or reflow soldered parts, don’t waste money on ordinary housings;

2. Next, look at blending ratios: start with 10%-25% blend, don’t go straight to 100%;

3. Automotive electronic parts must pass test rigs and sample retention, batch instability is a recipe for recalls;

4. For thin-walled parts, first check the cleanliness of the material, too many black spots can directly block the gate;

5. Ask for the virgin material price first, recycled material is only cost-effective if it’s about 30% cheaper;

6. Buying the wrong grade is useless: reinforcement grade, mineral-filled grade, and conductive grade each serve different functions;

7. Every batch needs a test report, don’t trust “this batch is the same as last time”;

8. For high-value parts, first create samples and run small batches, then increase volume if successful.

Final note: Recycled PPS essentially transforms waste connectors, discarded pumps and valves, and used filter bags back into pellets—it’s application scope is far beyond what you might think. 800V connectors, electronic water pumps, IGBT housings, all fall within its domain. Ningbo Kolon New Materials Co., Ltd. has many years of experience in the modification and selection of recycled PPS, with mature import channels from Southeast Asia, stable high-value material sources, and sufficient stock. They have handled similar cases repeatedly.

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