By Daizhong Su, Qingbin Zhang, Shifan Zhu
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Additional resources for Advanced design and manufacture II
F. Yu, M. J. Dyer, G. D. Skidmore, H. W. Rohrs, X. K. Lu, K. D. J. Ausman, R. V. Her and R. S. 244  L. Dong, F. Arai and T. Fukuda: IEEE Trans. 350  S. Fahlbusch, S. Mazerolle, J. M. Breguet, A. Steinecker, J. Agnus, R. Perez and J. Michler: J. Mater. Proc. Tech. C. C. tw Keywords: topology optimization, computer-aided design, multidisciplinary design optimization Abstract. This paper presents an integrated process of structural topology optimization in minimizing both compliance and structural weight.
An accurate simulation allows one to detect potential failures and to predict the reliability of the components, so as to avoid high cost of the extensive physical test. To obtain the reliable simulation, good estimation of the material properties of the test specimen and drop target are essential. In this paper, board with fixture drop test was conduct. The material properties of the specimen and target including Young’s modulus and damping ratio are determined by incorporating the experimental results.
Thermoelectric coolers are often used in freezing chuck to freeze or to thaw easy broken egg-shells, clays, and other ferrous/nonferrous materials, which are incapable to machine it by other clamping technology. For design and application purposes, detailed studies of freezing/thawing processes by thermoelectric coolers are inevitable to the success of this technology. In this study, an experiment to measure the thermal resistance of single thermoelectric device is conducted and a model to calculate its hot and cold side temperatures is derived.
Advanced design and manufacture II by Daizhong Su, Qingbin Zhang, Shifan Zhu