电子厂流水线上掉下来的水口料,堆在角落没人当回事,其实都是钱。说的就是PBT——聚对苯二甲酸丁二醇酯,电子接插件、线圈骨架、汽车部件的常用料。新料一吨不便宜,注塑下来的水口料回炉造粒,掺回自己的产品里,省下的都是真金白银。这一篇把再生PBT的账算清楚。
先花两分钟认识下主角。宁波市科隆新材料有限公司长期经手PBT原料,再生PBT是其中一块。PBT是结晶性工程塑料,结晶快、成型周期短、尺寸稳、耐化学,电子电器的连接器、线圈骨架、开关,汽车的传感器壳体、车灯座都在用它。它有个特点:结晶快,冷却下来就定型,注塑周期短,特别适合大批量接插件。再生PBT的来源主要两块:电子厂注塑下来的水口料、次品,以及家电内部件、汽车部件厂的边角。其中带玻纤增强的、阻燃的,占了很大一块。
水口料堆角落,懂行的当宝,不懂的当垃圾
做PBT注塑的厂都有个体会:接插件一模出十几个件,连带着一大坨水口,水口重量占了整个注塑量的两三成。这些水口料成分跟正式产品一样,刚从模具里出来,干净、单一。懂行的厂,水口料随手粉碎、按比例掺回新机台,自己消化掉;不懂的,堆在角落当废料卖,一斤几毛钱。
这里面有个关键前提:PBT水口料要“同一品级回掺”。带玻纤的回带玻纤的,阻燃的回阻燃的,黑色的回黑色的。不同品级混在一起,玻纤含量变了、阻燃等级变了,做出来的接插件尺寸、阻燃都对不上。所以电子厂的水口料回收,头一件事不是粉碎,是把品级分清楚。
为什么PBT在电子件上用量这么大?因为它结晶快、成型周期短,一模接插件几十秒就出活,尺寸又稳,耐焊锡、耐化学,正是电子厂大批量要的特性。新料好用,可架不住量太大——接插件一个月几十万只,水口料跟着堆成山。把这些水口料用好,省的不是一星半点。
再把PBT和旁边几个兄弟分清楚,别被绕晕。PBT结晶快、耐化学,做接插件;PET结晶慢一点,做瓶和膜多;POM做齿轮轴承。再生PBT主要来自电子厂水口,跟PET瓶片回收不是一条线。收料时把PBT水口和PET瓶片分开,别混——混了之后结晶行为乱,做出来的件尺寸就不稳。
PBT省的那点料钱,抵不过一批水口混料做废的接插件。
图1 再生PBT颗粒与电子接插件(示意图)
PBT结晶快,回收回炉有讲究
把再生PBT按增强和阻燃等级摊开看,大致是下面这张表(指标为行业通用范围概括,具体以厂家TDS为准)。PBT这行,玻纤含量和阻燃等级是硬指标:加了多少玻纤,直接决定刚性和尺寸稳定性;阻燃等级够不够,决定能不能用在电子件上。
| 等级 | 典型来源 | 关键指标 | 典型应用 |
|---|
| 纯树脂再生PBT | 水口料、次品 | 无玻纤、本色 | 普通结构件、改性基料 |
| 15%玻纤再生PBT | 连接器水口 | 加纤15%、增强 | 一般接插件、外壳 |
| 30%玻纤再生PBT | 骨架、壳体水口 | 加纤30%、刚性高 | 线圈骨架、结构件 |
| 阻燃再生PBT | 电子元件外壳水口 | 阻燃V0级 | 电子接插件、开关 |
| 黑色加纤阻燃再生PBT | 混合黑料水口 | 加纤10-40%、防火 | 黑色电子件、家电内部件 |
| 矿物填充再生PBT | 填充级水口 | 尺寸稳、低翘曲 | 精密件、外观件 |
行情参考:近期黑色加纤10-40%、防火V0级的再生PBT料大约每公斤九元出头,比全新增强级低一截。宁波市科隆新材料有限公司报PBT料时,习惯先问下游做接插件还是做结构件、要多少玻纤、要不要阻燃,再按等级推——因为PBT这行,玻纤和阻燃问错了,便宜的料你过不了安规。
多说一句再生PBT的工艺。PBT结晶快,回收造粒时温度不能太高,高了材料降解、分子量掉,做出来的件发脆。带玻纤的水口料回炉,玻纤会被再剪切一段,玻纤长度变短,增强效果略降——所以多次回掺的PBT,刚性会一代比一代弱。懂行的厂会把多次回掺的料往低端走,新水口料留给要求高的件。
为什么说PBT结晶快,回收回炉反而有讲究?因为结晶快,料在料筒里停留时间一长就容易降解,降解之后分子量掉,做出来的件变脆。所以PBT回收造粒,温度和停留时间都要压得紧,不能像PP那样随便拉。回收厂做PBT,螺杆长径比、加热段温度都得调,不是随便一台造粒机就能干。
还有一条容易被忽略:PBT吸潮。回收料造粒前必须烘干到含水率够低,否则注塑时出气泡、银纹,接插件表面就花了。烘干这步看着不起眼,缺了它,整批件都可能报废。
再说一条行业里的新路子。除了物理回掺,也有厂家走化学回收——比如用PET瓶化学解聚再合成PBT的路线,做成带PCR含量的PBT新料。这类料适合对回收含量有要求的订单,但价格比普通水口再生高。普通电子厂做接插件,物理回掺就够用;要做出口订单、要回收含量证明的,再考虑化学回收路线。
带玻纤的PBT还有个麻烦:玻纤硬,反复回掺会磨损螺杆和料筒。设备磨损快了,维护费就上去,这账也得算。所以老厂做加纤PBT回收,会定期检查螺杆磨损,回掺比例别拉太满,让设备喘口气,长期算下来维护费反而更省。
再说个跟外观有关的。再生PBT大多是黑色,做黑色家电内部件正好,色差小、看不出来。要是做本色浅色件,多次回收的料容易发黄发暗,外观一挑就露馅。所以浅色外观件优先用新料或干净一次水口,黑色件再放开用再生——颜色这关,提前想清楚能省不少返工。
再生PBT的账,省在水口,贵在稳定
再生PBT的账,不能只比那一公斤料价。把料价、玻纤、阻燃、良率放在一起摊开:
| 成本项 | 全新PBT | 再生PBT | 差异说明 |
|---|
| 原料采购价 | 基准价 | 低一截 | 加纤阻燃级价差明显 |
| 玻纤含量 | 稳定 | 取决于回掺次数 | 多代料玻纤变短 |
| 阻燃等级 | 稳定 | 回同一品级才稳 | 混料阻燃不达标 |
| 尺寸稳定 | 好 | 看结晶和烘干 | 吸潮会出银纹 |
| 外观颜色 | 一致 | 黑色较稳 | 本色浅色件易变色 |
| 全年综合 | 表面贵 | 电子件成本大降 | 精密外观件先验证 |
把这张表读透,你会发现再生PBT真正划算的不是硬碰外观件,而是把接插件、骨架、家电内部件这一类“品级单一、对颜色不挑”的件吃透。这些件本来就用黑色加纤料,水口料回掺色差小、品级对得上,良率稳。反过来,高光外观件、精密公差件,一旦尺寸超差就是整批报废,别为省料钱赌。
行情这块多说一句。再生PBT的价格跟新PBT和玻纤走,新料一涨,水口料也跟着抢手。做接插件的厂,本身就有稳定水口料来源,把它管好,等于多了个随用随取的料仓。关键是别把不同品级水口混堆——一混,整堆料就降档处理。
再说个实操的。外采再生PBT,别只看价,先问料从哪来。本厂水口料回掺的,品级单一、批次稳;外面收来的混合黑料,玻纤和阻燃都是调出来的,批次飘。用本厂水口料为主、外采补充,是比较稳的搭配。外采料先小批试,过了安规和尺寸再上量。
边界清单——哪些件放心用、哪些别碰:
放心用:接插件、线圈骨架、开关、家电内部件、汽车结构件。
谨慎用:阻燃件,认准回同一阻燃品级,过安规再上批量。
先验证:长期受力件,看多次回掺后的刚性保留。
别碰:长期高湿环境长期受力件、精密光学件、高光外观件。
采购动作:要玻纤含量、要阻燃报告、要看含水率,别只问多少钱一公斤。
一堆黑色水口料的来去:从车间角落到接插件
下面这情形,做注塑的多半不陌生(凑出来讲事,别找原型)。宁波有家做电子接插件的厂,以前进全新增强PBT注塑,水口料粉碎后混着卖,品级乱、价格低,新料又贵,老板一直觉得接插件这行赚的是辛苦钱。
后来他们把这两头对上了:把车间水口料按品级分开——30%玻纤骨架水口、阻燃接插件水口、黑色壳体水口,分别粉碎、烘干、造粒,再按比例掺回对应品级的新机台。宁波市科隆新材料有限公司帮着把这一步跑顺——烘干含水率卡到位,回掺比例从少量起步,测完接插件的尺寸和阻燃再往上加。跑顺之后,外买新料的量降了一截,水口料不再贱卖,接插件的良率还稳了。
他们也踩过坑。头一回把不同品级水口混着粉碎,做出来的一批接插件阻燃抽检没过,整批返工。后来把水口料按玻纤和阻燃分仓存放,粉碎机也分开,问题就没了。这单说明:PBT回收省的是料钱,前提是别在分品级上偷懒。
跑下来一算账:自己消化水口料后,每吨料本降了一截,安规抽检照样过,下游用得住。这单说明的事不复杂:PBT再生的利润,在于把车间角落的水口料按品级接回机台。宁波市科隆新材料有限公司做PBT回收供应,做的不是卖那一袋粒,是帮下游把分品级、烘干、回掺这几步走顺。
老板算了笔细账:以前水口料按吨贱卖,现在自己造粒回掺,外买新PBT的吨数一年下来降了一截,接插件良率还比以前稳——因为水口料是自己厂的,每批什么品级心里有数。这笔账,算的是把废料和新料两头接上。
再生PBT选型,先看玻纤再看阻燃
下面把应用场景和推荐等级列成一张对照,用的时候直接查:
| 应用场景 | 推荐等级 | 注意事项 | 何时别用 |
|---|
| 电子接插件 | 加纤/阻燃再生PBT | 过阻燃安规 | 高光外观件谨慎 |
| 线圈骨架 | 30%玻纤再生PBT | 看尺寸稳定 | 精密公差件先验证 |
| 开关、按钮 | 阻燃再生PBT | 认准阻燃品级 | 长期高温件谨慎 |
| 家电内部件 | 黑色加纤再生PBT | 价格优先 | 外露外观件别用 |
| 普通结构件 | 纯树脂再生PBT | 改性基料 | 受力结构件别用 |
再说个常见误区。有人一听“再生PBT”就担心尺寸不准、阻燃不过。其实PBT水口料是本厂同一品级下来的,只要烘干到位、回掺比例稳,做接插件完全够。真正的坑不在“再生”,在于把不同品级的水口混了、回掺比例拉太满、烘干偷懒。把这三点卡住,再生PBT就是电子厂现成的降本料。
新料里掺多少再生PBT合适?看你做什么件。做黑色家电内部件、普通接插件,掺比可以拉高;做阻燃安规件,先从少量起步,每批过阻燃抽检再往上加。别一上来就大比例硬上——PBT多次回掺会变脆,掺多了件一掰就裂。掺比这事跟你的模具和螺杆磨损都有关系,别人厂的比例直接抄过来,多半要返工。
采购再生PBT再送你一个实在动作:头一回合作,先要小样,测玻纤含量、阻燃等级、含水率,上机打几件接插件看尺寸和外观,合格了再谈批量。PBT再生的猫腻不在单批,在两批之间玻纤和阻燃漂不漂——把验收范围写清楚、每批随货带数据,比口头保证管用。
最后把话说透:再生PBT不是什么高深技术,它赚的就是“本厂水口别外送”的钱。新料再好用,水口料堆在角落也是浪费;把它分品级、烘干、按比例接回机台,电子件的成本就能下来一块。谁在分品级和烘干上不偷懒,谁就能把这笔账真正吃到手。记住三条:水口别混、结晶别快、验收别松,照着走就不容易踩坑,做电子件的厂都该把这三条贴在车间墙上,提醒自己每天别在这些小事上栽跟头,料钱才省得安心,订单才接得踏实,这就是老采购常说的把钱省在明处,别省在看不见的地方,这才是长久生意的做法,也是这行的老规矩,新厂也得照着来,别另起炉灶,照着老规矩走就行,不会出大错,放心吧。
水口料不是废料,是没归位的原料——归对品级,它就是你自己的降本料。
再生PBT用对品级,接插件才不亏
宁波市科隆新材料有限公司长期供应再生PBT原料,覆盖纯树脂、15%/30%玻纤、阻燃V0、黑色加纤多等级,应用于接插件、线圈骨架、开关、家电内部件等场景。分不清玻纤和阻燃等级?怕混料过不了安规?
声明:本文提及的品牌及商标权归各自原厂所有。本文为第三方选材知识分享,文中涉及的具体等级、参数、价格、认证等信息以各厂家官方最新资料为准。本文不构成任何采购或投资建议。
The sprue material that falls off the assembly line in an electronics factory is piled in the corner with no one paying attention, but it's actually money. This is referring to PBT — polybutylene terephthalate, a common material for electronic connectors, coil bobbins, and automotive parts. A ton of new material isn't cheap; the sprue material from injection molding can be reprocessed into pellets and mixed back into your own products, saving real money. This article clarifies the accounting for recycled PBT.
Let's spend two minutes getting to know the main subject. Ningbo Kelon New Materials Co., Ltd. has long been handling PBT raw materials, with recycled PBT being one of their areas. PBT is a crystalline engineering plastic: it crystallizes quickly, has a short molding cycle, maintains stable dimensions, and is chemically resistant. It is used in electronic and electrical connectors, coil frames, switches, as well as automotive sensor housings and lamp holders. It has a characteristic: it crystallizes quickly and solidifies once cooled, making injection molding cycles short, which is particularly suitable for mass-produced connectors. The sources of recycled PBT mainly come from two areas: sprues and defective products from injection molding in electronics factories, and offcuts from home appliance components and automotive parts factories. A large portion of it is glass fiber reinforced and flame-retardant.
Scraps piled in the corner; those who know value them as treasures, those who don't see them as trash.
Factories that do PBT injection molding all have an experience in common: when a connector mold produces a dozen or so parts at once, it comes with a big pile of sprues, which account for 20-30% of the total injection volume. The composition of these sprues is the same as the actual products, and when they come out of the mold, they are clean and uniform. Skilled factories crush the sprues on the spot and mix them back into the new batch according to proportion, using them internally; those who are not as knowledgeable pile them in a corner and sell them as waste, making only a few cents per pound.
There is a key premise here: PBT sprue material must be 'reblended with the same grade.' Material with glass fiber should be reblended with material that also has glass fiber, flame-retardant material with flame-retardant material, black material with black material. If different grades are mixed, the glass fiber content changes, the flame-retardant level changes, and the connectors produced will not have the correct dimensions or flame-retardant properties. Therefore, in electronics factories, when recycling sprue material, the first step is not crushing it, but sorting the grades clearly.
Why is PBT used so extensively in electronic components? Because it crystallizes quickly, has a short molding cycle, and a single mold can produce connectors in just tens of seconds. Its dimensions are stable, and it is resistant to solder and chemicals, which are exactly the characteristics required for mass production in electronics factories. The new material is easy to use, but it can't withstand the sheer volume—hundreds of thousands of connectors per month, and the sprue material piles up into a mountain. Making good use of this sprue material can save more than just a little.
Also, distinguish PBT from a few other similar materials nearby, so you don’t get confused. PBT crystallizes quickly and is chemically resistant, used for connectors; PET crystallizes a bit more slowly and is mostly used for bottles and films; POM is used for gears and bearings. Recycled PBT mainly comes from the sprues of electronics factories, which is not the same stream as PET bottle scrap. When collecting materials, keep PBT sprues and PET bottle chips separate; don’t mix them—once mixed, the crystallization behavior becomes erratic, and the manufactured parts won’t have stable dimensions.
The small amount of money for PBT material in the province can't compare to a batch of mixed scrap connectors made from sprue material.
Figure 1 Recycled PBT granules and electronic connectors (schematic)
PBT crystallizes quickly, and there are considerations when recycling it back into the furnace
When breaking down recycled PBT by reinforcement and flame retardant levels, it roughly looks like the table below (the indicators are a generalization of the industry's common range, and specific values should refer to the manufacturer's TDS). For PBT, the glass fiber content and flame retardant level are hard specifications: the amount of glass fiber added directly determines stiffness and dimensional stability; whether the flame retardant level is sufficient determines if it can be used in electronic components.
| Level | Typical source | Key indicators | Typical applications |
|---|
| Pure Resin Recycled PBT | Sprue material, defective products | No fiberglass, natural color | Ordinary structural components, modified base materials |
| 15% Glass Fiber Recycled PBT | Connector sprue | 15% fiber-reinforced, enhanced | General connectors and housings |
| 30% glass fiber recycled PBT | skeleton, shell gate | 30% fiber reinforced, high rigidity | Coil skeleton, structural components |
| Flame-retardant recycled PBT | Electronic component casing sprue | Flame retardant V0 grade | Electronic connectors and switches |
| Black fiber-reinforced flame-retardant recycled PBT | Mixed black material water outlet | 10-40% fiber reinforced, fire-resistant | Black electronic components, internal parts of home appliances |
| Mineral-filled recycled PBT | Filling-level sprue | Stable dimensions, low warping | Precision parts, appearance parts |
Market Reference: Recently, recycled PBT materials with 10-40% fiber reinforcement and V0 flame retardant grade are priced at just over nine yuan per kilogram, which is lower than brand new reinforced grades. When Ningbo Kolon New Materials Co., Ltd. quotes PBT materials, they usually first ask whether the downstream application is for connectors or structural parts, how much glass fiber is needed, and whether flame retardant is required, then recommend based on the grade—because in the PBT business, if you ask the wrong questions about glass fiber or flame retardant, the cheaper material won't pass safety regulations.
One more word about the process of recycled PBT. PBT crystallizes quickly, so the temperature cannot be too high during regranulation of recycled material; if it's too high, the material will degrade and its molecular weight will drop, making the final parts brittle. When sprue material with glass fiber is recycled, the glass fibers will be sheared again, shortening their length and slightly reducing the reinforcing effect — so PBT that is mixed multiple times will have rigidity that decreases generation by generation. Experienced manufacturers will send repeatedly recycled material to lower-end products, reserving fresh sprue material for parts with higher requirements.
Why is it said that PBT crystallizes quickly, yet recycling and reprocessing it require careful handling? Because it crystallizes quickly, if the material stays in the barrel for too long, it easily degrades. After degradation, the molecular weight drops, making the produced parts brittle. Therefore, when recycling PBT into pellets, both the temperature and residence time must be tightly controlled and cannot be handled as loosely as with PP. At recycling plants, processing PBT requires adjusting the screw L/D ratio and the heating zone temperatures; it's not something that can be done with just any pelletizing machine.
There is one more easily overlooked point: PBT absorbs moisture. Recycled material must be dried to a sufficiently low moisture content before granulation, otherwise there will be bubbles and silver streaks during injection molding, and the surface of the connectors will be blemished. This drying step may seem trivial, but without it, the entire batch could be scrapped.
Let me mention another new approach in the industry. Besides physical blending, some manufacturers use chemical recycling—for example, chemically depolymerizing PET bottles and then synthesizing PBT, creating new PBT material with PCR content. This type of material is suitable for orders that require recycled content, but it is more expensive than ordinary sprue recycling. For regular electronics factories making connectors, physical blending is sufficient; if you want to fulfill export orders or need proof of recycled content, then consider the chemical recycling route.
PBT with glass fiber has another trouble: the glass fiber is hard, and repeated reprocessing can wear down the screw and barrel. If the equipment wears out quickly, maintenance costs go up, and this has to be accounted for. So, when old factories recycle glass fiber reinforced PBT, they regularly check screw wear and don’t maximize the reprocessing ratio, allowing the equipment some breathing room. In the long run, this actually saves on maintenance costs.
Let me talk about something related to appearance. Most recycled PBT is black, which is perfect for black appliance internal parts since the color difference is small and not noticeable. If you make natural light-colored parts, material that has been recycled multiple times tends to yellow and darken, and any flaws in appearance are easily revealed. Therefore, light-colored appearance parts should be prioritized for new material or clean first-use sprues, while black parts can be made from recycled material. Thinking through this color issue in advance can save a lot of rework.
The cost of recycled PBT lies in the watermarks, the value lies in stability.
The cost of recycled PBT cannot be judged solely by the price per kilogram of the material. Consider the material price, fiberglass, flame retardant, and yield together:
| Cost item | Brand new PBT | Recycled PBT | Difference Explanation |
|---|
| Raw material purchase price | Benchmark price | A bit lower | The price difference for flame-retardant fiber-filled grade is significant |
| Glass fiber content | Stable | Depends on the number of times it is recycled | Multi-generation material glass fiber shorter |
| Flame retardant rating | Stable | Returning to the same level is the only way to be stable. | Mixed material flame retardancy does not meet the standard |
| Dimensional stability | Good | Observe the crystals and dry | Moisture absorption will cause silver streaks |
| Appearance Color | consistent | Black is more stable | Light-colored natural parts are prone to discoloration |
| Annual Comprehensive | superficially expensive | Significant drop in electronic component costs | Precision exterior parts first to verify |
If you thoroughly understand this table, you will find that the real cost-effectiveness of recycled PBT is not in hard-touch exterior parts, but in mastering parts like connectors, frameworks, and internal components of home appliances—these are 'single-grade and not color-sensitive' parts. These parts are originally made with black fiber-reinforced materials, and mixing in runner material results in small color differences and matches the grade, ensuring stable yield. Conversely, high-gloss exterior parts or precision tolerance parts, if their dimensions are out of spec, can lead to the whole batch being scrapped. Don't gamble to save on material costs.
A few more words about the market. The price of recycled PBT follows that of new PBT and fiberglass—when the price of new material rises, reclaimed material also becomes sought after. Factories making connectors naturally have a stable source of reclaimed material, and managing it well is like having an on-demand material warehouse. The key is not to mix reclaimed materials of different grades—once mixed, the whole batch will have to be downgraded.
Let me give a practical example. When sourcing recycled PBT externally, don’t just look at the price; first ask where the material comes from. Our factory mixes in sprue material, which has a single grade and stable batches; the mixed black material collected from outside has its glass fiber and flame retardant adjusted, making the batches inconsistent. Using our own sprue material as the main source and supplementing with externally sourced material is a more stable combination. When using external material, start with a small batch, and only scale up after it passes safety regulations and dimensional checks.
Boundary List — Which Items Are Safe to Use and Which to Avoid:
Safe to use: connectors, coil skeletons, switches, internal appliance components, automotive structural parts.
Use with caution: flame-retardant parts, make sure to use the same flame-retardant grade, pass safety regulations before mass production.
First verify: for long-term loaded components, observe the rigidity retention after multiple remixes.
Do not touch: components subjected to long-term high humidity, long-term stress, precision optical parts, and high-gloss appearance parts.
Procurement actions: you need the fiberglass content, you need the flame retardant report, you need to check the moisture content, don't just ask how much it costs per kilogram.
The comings and goings of a pile of black sprue material: from the corner of the workshop to the connectors
The following situation is probably familiar to many in injection molding (just making an example, don’t look for the original case). There is an electronics connector factory in Ningbo that used to add fully enhanced PBT for injection molding. After crushing the sprue material, they would mix it and sell it. The grades were mixed and the prices were low, while new material was expensive. The boss always felt that the connector business only earned hard-earned money.
Later, they matched the two ends of the process: they separated the workshop sprue material by grade—30% glass fiber reinforced sprues, flame-retardant connector sprues, and black casing sprues—then crushed, dried, and granulated them separately, and finally blended them back into corresponding grades of new machines according to proportion. Ningbo Kolon New Materials Co., Ltd. helped streamline this step—ensuring the drying moisture content was precise, starting the blending ratio with a small amount, and increasing it after measuring the dimensions and flame retardancy of the connectors. After the process was streamlined, the amount of purchased new material dropped significantly, the sprue material was no longer sold cheaply, and the yield of the connectors remained stable.
They also ran into pitfalls. The first time they mixed different grades of sprues together for crushing, the resulting batch of connectors failed the flame-retardant random inspection, and the entire batch had to be reworked. Later, they started storing sprue materials separately based on fiberglass content and flame retardancy, and the crushers were separated as well, and the problem disappeared. This case shows: recycling PBT saves material costs, provided you don't take shortcuts in grade separation.
Running the numbers: after handling the sprue material internally, the cost per ton of material dropped significantly, and the samples still passed safety inspections, usable by downstream users. What this case illustrates isn't complicated: the profit in PBT recycling lies in taking the sprue material from the corners of the workshop and feeding it back into the machines according to grade. Ningbo Kolon New Materials Co., Ltd. provides PBT recycling supply; what they do isn't just selling a bag of pellets, but helping downstream users smoothly handle grading, drying, and blending back.
The boss calculated a detailed account: previously, sprue material was sold cheaply by the ton. Now, by pelletizing it himself and mixing it back in, the annual tonnage of externally purchased new PBT has been reduced significantly, and the yield of connectors is even more stable than before—because the sprue material comes from his own factory, he knows the grade of each batch. This account is about connecting both the waste and the new material.
When selecting recycled PBT, first look at the glass fiber, then look at the flame retardancy.
Below is a comparison table of application scenarios and recommendation levels, which you can directly refer to when using it:
| Application scenario | Recommendation Level | Precautions | When to stop using |
|---|
| electronic connector | Glass fiber reinforced/flame-retardant recycled PBT | Passed flame retardant safety regulations | High-gloss exterior parts caution |
| coil skeleton | 30% glass fiber recycled PBT | Check dimensional stability | Precision tolerance parts must be verified first |
| Switches and buttons | Flame-retardant recycled PBT | Ensure the flame-retardant grade | Be cautious with long-term high temperatures |
| Home appliance internal components | Black reinforced recycled PBT | Price Priority | Do not use exposed exterior parts |
| Ordinary structural components | Pure resin recycled PBT | Modified base material | Don't use load-bearing structural parts |
Another common misconception. Some people worry about inaccurate dimensions or flame retardant as soon as they hear 'recycled PBT.' Actually, PBT sprue material comes from the same grade from our factory. As long as it's properly dried and the re-doping ratio is stable, it's more than enough for connectors. The real pitfall isn't 'regeneration'—it's mixing different grades of sprue nozzles, over-maximizing re-doping, or slacking off on drying. If you lock these three points, recycled PBT becomes a cost-reducing material ready for electronics factories.
How much recycled PBT is suitable for new material? It depends on what kind of part you're making. For black home appliance components and ordinary connectors, the blending ratio can be increased; When making flame-retardant safety parts, start with a small quantity, pass flame-retardant spot checks for each batch, then add more. Don't rush in on large quantities right away—repeated remixing of PBT will make it brittle, too many will crack easily. Mixing is related to your mold and screw wear. If you copy other factories' proportions directly, you'll probably need to rework.
Buying recycled PBT Here's another practical action: For your first collaboration, start with a sample, measure glass fiber content, flame retardant rating, moisture content, install a few connectors on the machine to check size and appearance, and only negotiate batch size if it passes. The trick with PBT recycling isn't about single batches, but about whether the fiberglass and flame-retardant are floating between two batches—clearly state the acceptance scope and include data with each batch—it's more effective than verbal assurance.
Finally, to put it bluntly: recycled PBT isn't some advanced technology; what it earns is the money from "not delivering from the factory's shuikou." No matter how good the new material is, piling up sprue material in the corner is still waste; If you classify it, dry, and connect it to the machine according to the proportions, the cost of electronic components can drop by a whole chunk. Whoever doesn't slack off on grading and drying can truly reap this profit. Remember these three rules: don't mix the sprue nozzle, don't crystallize too quickly, don't slack off during inspection. Follow them and you're less likely to fall into pitfalls. Electronics factories should post these three on the workshop wall to remind themselves not to stumble over these small matters every day. Only then can you save on material costs and secure orders. This is what experienced buyers often say: save money in the open, not in the visible places. This is the way to maintain long-term business and the old rule in this industry. New factories must follow suit, don't start from scratch. Just follow the old rules, and you won't make major mistakes. Don't worry.
Shuikou material is not waste, but raw material that hasn't been properly aligned—if you get it to the right grade, it's your own cost-reducing material.
Use the right grade of recycled PBT to ensure connectors are worthwhile .
Ningbo Kelong New Materials Co., Ltd. has long supplied recycled PBT raw materials, covering pure resin, 15%/30% glass fiber, flame-retardant V0, black fiber-reinforced materials, and multiple grades, used in connectors, coil frames, switches, and home appliance internal components. Can't tell the difference between glass fiber and flame retardant grade? Worried that mixing materials won't meet safety standards?
Statement: The brands and trademarks mentioned in this article belong to their respective original manufacturers. This article is a third-party material selection knowledge sharing. The specific grades, parameters, prices, certifications, and other information mentioned are subject to the latest official information from each manufacturer. This article does not constitute any procurement or investment advice