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1)  nylon/copper composite powder
尼龙/Cu复合粉末
1.
Technological process of selective laser sintered nylon/copper composite powder;
尼龙/Cu复合粉末选择性激光烧结成形
2)  nylon powder composite
复合尼龙粉末
3)  nylon 12 coated copper powders
尼龙覆膜Cu粉复合材料
4)  composite nylon powder
复合尼龙粉末材料
1.
Based on analyzing the laser sintering course of composite nylon powder,a measuring system was developed to study the laser sintering temperature field.
对复合尼龙粉末材料激光烧结成型的加热过程进行了分析,在此基础上研制了一种适合于粉末材料激光烧结成型过程温度场的测试系统。
5)  nylon composite powder
复合尼龙粉
1.
With the ortho-design experiment method, the sintering process of nylon composite powder is optimized.
采用溶剂沉析法制备了低熔点复合尼龙12基料,对其改性处理后获得适合于选择性激光烧结用的复合尼龙粉末。
2.
The method of modifying by physical mixing can make nylon composite powder with high function,which is suitable for selective laser sintering,and greatly reduce its shrinking and bending.
采用尼龙12基料,对其改性处理后获得适合于选择性激光烧结用的复合尼龙粉末。
3.
With the orthogonal experiment method,the sintering process of nylon composite powder was optimized.
采用溶剂沉析法制备了复合尼龙基料,对其改性处理后获得适合于选择性激光烧结用的复合尼龙粉末。
6)  Mo-Cu composite powder
Mo-Cu复合粉末
1.
Mo-Cu composite powders were prepared by gelatinization-coreduction method,in which gels were obtained from precursors of(NH4)6Mo7O24.
干凝胶经煅烧、还原后,获得Cu含量为20%(质量分数)的Mo-Cu复合粉末。
2.
The Mo-Cu Composite powder was prepared by high energy balling,and the sintering densification behavior and evolution of microstructure and properties of the mechanically alloyed Mo-Cu composite powder in the process of sintering were studied by optical microscope,XRD,SEM and TEM.
采用高能球磨方法制备了超细Mo-Cu复合粉末,通过X射线衍射,金相显微镜,扫描电镜和透射电镜等方法研究分析了所制备Mo-Cu粉末的烧结致密化、显微组织及性能的变化,并与未球磨粉末的烧结试样进行了比较。
补充资料:尼龙-6
分子式:
分子量:
CAS号:

性质:学名聚已内酰胺。国外商品名卡普隆(Caprone)。一种聚酰胺树脂。密度1.14。熔点210-220℃(比尼龙-66低)。溶于苯酚、甲酸、二甲苯酚等。电绝缘性优越。对酸、碱等化学品的耐腐蚀性尚可。耐光性较差。可用作工程塑料。拉伸强度7.03-8.27千牛/厘米2(717-844公斤力/厘米2)。弯曲强度5.51-9.60千牛/厘米2(562-980公斤力/厘米2)。压缩强度4.62-8.60千牛/厘米2(471-877公斤力/厘米2)。冲击强度21-118牛·厘米/厘米2(2.1-11.8公斤力·厘米/厘米2)。洛氏硬度103-118。热变温度(1.81兆帕,18.5公斤力/厘米2)60-70℃。可作精密机器的齿轮、外壳、软管、耐油容器、电缆护套、纺织工业的设备零件等。也可用于制合成纤维(锦纶)。由ω-己内酰胺开环缩聚而成。

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