首页> 外文会议>International Manufacturing Science and Engineering Conference >(V002T01A012-1)STUDY OF THE DEGRADATION OF POLYETHYLENE GLYCOL IN INCONEL 718 FEEDSTOCK DURING POWDER INJECTION MOULDING PROCESS
【24h】

(V002T01A012-1)STUDY OF THE DEGRADATION OF POLYETHYLENE GLYCOL IN INCONEL 718 FEEDSTOCK DURING POWDER INJECTION MOULDING PROCESS

机译:(v002t01a012-1)在粉末注射成型过程中的第718原料中的聚乙二醇中聚乙二醇的降解研究

获取原文

摘要

Metal injection moulding (MIM) has over the past decade established itself as a competitive manufacturing process to produce in large quantities small precision components with complex shape which would be costly to produce by alternative methods (Enneti, 2012). MIM is a process which combines the versatility of plastic injection moulding with the strength and integrity of machined, pressed or otherwise manufactured small, complex metal parts. MIM consist in shaping powder particles in injection process and then sintering them. MIM make use of the plastic moulding concepts to shape powder-polymer feedstock into the required geometry. During the injection phase, segregation appears in the feedstock and defects will be appear in the component during the sintering. To limit this effect a vast variety of binder systems have been developed (Enneti, 2012) to improve the homogeneity of feedstocks and limit segregation. Binder is formulated as a mixture of different organic or inorganic substances with several functions. Binder has the main commitments of giving the necessary rheological behavior to the feedstocks for injection moulding to transport the powder particles into the mould cavity and the cohesion of the green part (Enneti, 2012).
机译:金属注射成型(MIM)在过去十年中,将自己建立为竞争制造过程,以生产大量小精密组件,具有复杂的形状,通过替代方法生产成本高昂(Enneti,2012)。 MIM是一种与加工,压制或以其他方式制造的小型复杂金属部件的强度和完整性相结合的塑料注塑成型的过程。 MIM在注射过程中成形粉末颗粒,然后烧结它们。 MIM利用塑料模塑概念将粉末聚合物原料形状成所需的几何形状。在注射阶段期间,偏析出现在原料中,并且在烧结期间将出现在该组件中的缺陷。为了限制这种效果,已经开发了许多粘合剂系统(Enneti,2012),以改善原料的均匀性和限制偏析。将粘合剂配制成具有多种功能的不同有机或无机物质的混合物。粘合剂具有给予注射成型的原料的必要流变行为的主要承诺,以将粉末颗粒输送到模具腔中和绿色部分的内聚力(Enneti,2012)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号