CAE Analysis for Molding Design of Microchip Encapsulation

Author(s):  
Ya-Yuen Chou ◽  
Chih-Jen Lin ◽  
Chao-Kai Yu ◽  
Hsien-Sen Chiu
2012 ◽  
Vol 496 ◽  
pp. 50-53
Author(s):  
Zhan Shun Yin ◽  
Yong Wei Han ◽  
Xi Chun Cai

Based on the CAE analysis. The dual variable gear shaft of the transmission for domestic ZL50 wheel loader was redesigned and the processing technology was optimized. The problem of the hardness of the spline which connects the dual variable gear shaft and the working hydraulic pump can not meet the requirements after heat treatment caused by unreasonable design was solved. The problem of the low geometric tolerance and early wear of the spline were solved. After practical application, the market feedback shows that the failure rate, service life and reliability greatly of new designed shaft were enhanced


Seikei-Kakou ◽  
2010 ◽  
Vol 22 (6) ◽  
pp. 297-299
Author(s):  
Tomohisa Hashimoto

2014 ◽  
Vol 2014.11 (0) ◽  
pp. _1-1_-_1-2_
Author(s):  
Masashi Yamabe ◽  
Masahiro Seto ◽  
Hiroaki Tanaka

Author(s):  
Hiroshi Masuda ◽  
Kenta Ogawa

Mesh deformation, which is sometimes referred to as mesh morphing in CAE, is useful for providing various shapes of meshes for CAE tools. This paper proposes a new framework for interactively and consistently deforming assembly models of sheet structure for mechanical parts. This framework is based on a surface-based deformation, which calculates the vertex positions so that the mean curvature normal is preserved at each vertex in a least squares sense. While existing surface-based deformation techniques cannot simultaneously deform assembly mesh models, our method allows us to smoothly deform disconnected meshes by propagating the rotations and translations through disconnected vertices. In addition, we extend our deformation technique to handle non-manifold conditions, because shell structure models may include non-manifold edges. We have applied our method to assembly mesh models of automobile parts. Our experimental results have shown that our method requires almost the same pre-processing time as existing methods and can deform practical assembly models interactively.


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