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通过缺陷诱导化学镀制备用于选择性激光烧结工艺的镍/聚酰胺12复合颗粒。

Preparation of nickel/PA12 composite particles by defect-induced electroless plating for use in SLS processing.

作者信息

Gui Chengmei, Chen Zhenming, Yao Chenguang, Yang Guisheng

机构信息

School of Chemistry and Chemical Engineering, Hefei University of Technology, Hefei, Anhui, 230009, China.

Guangxi Key Laboratory of Calcium Carbonate Resources Comprehensive Utilization, College of Materials and Environmental Engineering, Hezhou University, Hezhou, Guangxi, 542899, China.

出版信息

Sci Rep. 2018 Sep 7;8(1):13407. doi: 10.1038/s41598-018-31716-8.

Abstract

In this work, Ni particles/PA12 powders (Ni/PA12) and graphite oxide (GO)-encapsulated Ni particles/PA12 powders (GO-Ni/PA12) composite powders were prepared by defect-included electroless plating technique, and its laser sintered behaviour was investigated. Results showed that a lot of defects could formed on the surface of CHCOOH etched PA12 powders. The defects would induce Ni and GO-Ni particles independently plated on the PA12 surface. Adding GO in the plating solution would facilitate the deposition of Ni particles, GO, and NiO on the PA 12 surface, but inhibit the growth and the crystallinity of the Ni particles. The SLS process involved the contact of PA12 powders, the formation of sintering neck, the growth of sintering neck and the formation of fused solid. Sintering process could facilitate the re-arrangement of Ni particles due to surface tension and the growth of sintering neck. The Ni particles had well wettability, and the interfaces between Ni particles and PA 12 were contacted soundly. The tensile strength and bending strength of the 10 W-sintered Ni/PA12 specimen were 50 MPa and 60 MPa. But SLS process caused the serious aggregation of GO-Ni particles due to higher concentration, activity and surface area of GO-Ni particles.

摘要

在本工作中,采用含缺陷化学镀技术制备了镍颗粒/聚酰胺12粉末(Ni/PA12)和氧化石墨烯(GO)包覆的镍颗粒/聚酰胺12粉末(GO-Ni/PA12)复合粉末,并对其激光烧结行为进行了研究。结果表明,在CHCOOH蚀刻的PA12粉末表面会形成大量缺陷。这些缺陷会促使镍和GO-Ni颗粒分别镀覆在PA12表面。在镀液中添加GO会促进镍颗粒、GO和NiO在PA12表面的沉积,但会抑制镍颗粒的生长和结晶度。选择性激光烧结(SLS)过程包括PA12粉末的接触、烧结颈的形成、烧结颈的生长以及熔融固体的形成。烧结过程会由于表面张力促进镍颗粒的重新排列以及烧结颈的生长。镍颗粒具有良好的润湿性,镍颗粒与PA12之间的界面结合良好。10W烧结的Ni/PA12试样的拉伸强度和弯曲强度分别为50MPa和60MPa。但是由于GO-Ni颗粒具有较高的浓度、活性和表面积,SLS过程导致GO-Ni颗粒严重团聚。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1099/6128841/78710c5a3512/41598_2018_31716_Fig1_HTML.jpg

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