产业新闻
镭雕尼龙 / 激光尼龙镭雕详解
镭雕尼龙 / 激光尼龙镭雕详解
一、什么是镭雕尼龙?
镭雕尼龙(又称激光尼龙镭雕料)是指在 PA6、PA66 等尼龙基材中,通过添加镭雕粉(激光添加剂/镭雕母粒)进行改性后,能够在激光照射下形成清晰、永久性标记的工程
2026-05-09
34
PA612用做磨料丝的原料
PA612用做磨料丝的原料
PA612 是高端磨料丝首选基材,核心优势是低吸水、高弹回复、耐温耐水解、耐磨与磨料包覆性好,适配长寿命、高精度、干湿两用的工业抛光 / 去毛刺场景。一、核心优势(对比 PA6/PA
2026-05-09
28
PA610切片的一些应用案例
PA610切片的一些应用案例
1. PA610切片应用于汽车燃油与流体系统
汽车尼龙燃油管、高压输油管、发动机油路接头
柴油 / 汽油滤清器壳体、油泵密封件、油杯内衬
变速箱油冷管路、液压制动
2026-04-09
53
PA1010用于断路器外壳
PA1010用于断路器外壳
PA1010(尼龙 1010)非常适合用于断路器外壳,尤其在中低压、精密型、耐候 / 耐油、新能源电气场景,是替代传统 PA6/PA66、DMC/BMC、部分热固性塑料的优质选择,核心靠低吸水、尺寸稳
2026-04-08
56
尼龙PA1010在汽车行业的应用
尼龙PA1010在汽车行业的应用
PA1010(尼龙 1010) 是一种长碳链生物基聚酰胺,凭借低吸水率、高耐磨、耐油耐化学、低温韧性好、尺寸稳定等核心优势,在汽车行业主要用于燃油系统、传动耐磨件、流体管路、电气绝
2026-04-08
50
为什么油门踏板模块的核心应力结构主要由尼龙增强改性PA66-GF30加强筋制成
为什么油门踏板模块的核心应力结构主要由尼龙增强改性PA66-GF30加强筋制成
加速踏板模块的核心受力结构主要由玻璃纤维增强PA6/PA66(尤其是PA66-GF30)制成,这是几乎所有汽车制造商和一级供应商(博世、大陆、电装、华宇等)的首选。这种偏好的核心原因可以概括为一句话:在汽车恶劣的操作条件下,它是唯一在强度、韧性、抗疲劳性、耐温性、成本和可成形性方面表现出色的选择。
2026-03-26
70
Toughened & Wear-Resistant PA66 Properties & Applications
Toughened & Wear-Resistant PA66 Properties & Applications
Toughened & Wear-Resistant PA66 Properties & Applications1. Key Properties

High toughness & impact resistance
Significantly improved notche
2026-03-19
75
PA1012 Nylon for Air Brake Tubes, Hoses and Similar Components
PA1012 Nylon for Air Brake Tubes, Hoses and Similar Components
PA1012 is a long-chain polyamide with low water absorption, excellent high and low temperature resistance, good flexibility, oil resistance and chemical resista
2026-03-17
109
Performance and application of PA-MXD6
Performance and application of PA-MXD6
PA - MXD6 (polyhexamethylene adipamide) is a high-performance semi-aromatic nylon resin. The aromatic ring structure in its molecular chain endows it with multi
2026-02-08
134
What are the specific application scenarios for PA610 and PP materials?
What are the specific application scenarios for PA610 and PP materials?
1. Specific application scenarios for PA610 (all of which are advantageous scenarios for PA610, where switching to PP would completely fail to meet performance
2026-02-07
135