Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Changrui Wang is active.

Publication


Featured researches published by Changrui Wang.


Materials | 2018

Fabrication of Micro-Parts with High-Aspect Ratio Micro-Hole Array by Micro-Powder Injection Molding

Changrui Wang; Zhen Lu; Kaifeng Zhang

The present study investigated high-aspect ratio micro-hole array parts which were made by ZrO2 micro-powder with different particle sizes and micro-powder injection molding technology. It analysed the influence of particle sizes on feedstock, debinding and sintering of ceramic nozzles with multi-micro-holes. The forming quality of ceramic nozzles with multi-micro-holes was discussed in this paper. The results show that the two mixed ZrO2 feedstocks have fine uniformity. The average deviation of the feedstock made with 200 nm powder was −2%, and the average deviation of the feedstock made with 100 nm powder was −7.1%. The sample showed certain sintering characteristics which provided better strength (11.10 MPa) to parts after debinding. The linear shrinkage and the density of the two powder samples at different sintering temperatures increased as the sintering temperature increased. If the temperature continued to increase, the linear shrinkage and the density decreased. The highest hardness and flexural strength values of the ZrO2 sample with 200 nm powder used were: 1265.5 HV and 453.4 MPa, and the crystalline particle size was 0.36 μm. The highest hardness and flexural strength values of the ZrO2 sample with 100 nm powder used were: 1425.8 HV and 503.6 MPa, and the crystalline particle size was 0.18 μm. The ceramic nozzles with multi-micro holes shrunk to nearly the same axial, radial and circumferential directions during sintering. After sintering, the roundness of ceramic micro-hole met the user requirements, and the circular hole had a high parallelism in the axial direction. The micropore diameter was 450 ± 5 μm, and it was possible to control the dimensional accuracy within 1.5% after sintering. The study presented a superior application prospect for high-aspect ratio micro hole array parts in aerospace, electronics and biomedicine.


Archive | 2011

Preparation method for metal ceramic composite special-shaped piece

Zhen Lu; Changrui Wang; Kaifeng Zhang


Ceramics International | 2014

Densification and mechanical properties of boron carbide with micro-hole array by micro-powder injection molding

Changrui Wang; Hong Xiao; Kui-wu Shao; Zhen Lu; Kaifeng Zhang


Powder Technology | 2012

Microstructure, mechanical properties and sintering model of B4C nozzle with micro holes by powder injection molding

Changrui Wang; Zhen Lu; Kaifeng Zhang


The International Journal of Advanced Manufacturing Technology | 2012

Small-hole arrays of ceramic material manufactured by micro powder injection molding

Changrui Wang; Zhen Lu; Kaifeng Zhang


Powder Technology | 2011

Effects of oxidation on the strength of debound SiC parts by powder injection moulding

Zhen Lu; Kaifeng Zhang; Changrui Wang


The International Journal of Advanced Manufacturing Technology | 2013

Evaluation of thermal debinding of injection-molded boron carbide in an ambient atmosphere

Changrui Wang; Zhen Lu; Kaifeng Zhang


Archive | 2010

Powder micro injection molding method for ceramic substrate of printing head

Zhen Lu; Kaifeng Zhang; Changrui Wang


Archive | 2011

Powder injection molding method for silicon carbide ceramic sand-blasting nozzle

Zhen Lu; Shaosong Jiang; Kaifeng Zhang; Changrui Wang


Archive | 2011

Method for manufacturing silicon carbide ceramic parts through power injection molding (PIM)

Zhen Lu; Shaosong Jiang; Kaifeng Zhang; Changrui Wang

Collaboration


Dive into the Changrui Wang's collaboration.

Top Co-Authors

Avatar

Kaifeng Zhang

Harbin Institute of Technology

View shared research outputs
Top Co-Authors

Avatar

Zhen Lu

Harbin Institute of Technology

View shared research outputs
Top Co-Authors

Avatar

Shaosong Jiang

Harbin Institute of Technology

View shared research outputs
Researchain Logo
Decentralizing Knowledge