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Featured researches published by Donghui Wen.


Chinese Journal of Mechanical Engineering | 2013

Parameters optimization of a novel 5-DOF gasbag polishing machine tool

Yanbiao Li; Dapeng Tan; Donghui Wen; ShiMing Ji; Donghai Cai

The research on the parameters optimization for gasbag polishing machine tools, mainly aims at a better kinematics performance and a design scheme. Serial structural arm is mostly employed in gasbag polishing machine tools at present, but it is disadvantaged by its complexity, big inertia, and so on. In the multi-objective parameters optimization, it is very difficult to select good parameters to achieve excellent performance of the mechanism. In this paper, a statistics parameters optimization method based on index atlases is presented for a novel 5-DOF gasbag polishing machine tool. In the position analyses, the structure and workspace for a novel 5-DOF gasbag polishing machine tool is developed, where the gasbag polishing machine tool is advantaged by its simple structure, lower inertia and bigger workspace. In the kinematics analyses, several kinematics performance evaluation indices of the machine tool are proposed and discussed, and the global kinematics performance evaluation atlases are given. In the parameters optimization process, considering the assembly technique, a design scheme of the 5-DOF gasbag polishing machine tool is given to own better kinematics performance based on the proposed statistics parameters optimization method, and the global linear isotropic performance index is 0.5, the global rotational isotropic performance index is 0.5, the global linear velocity transmission performance index is 1.012 3 m/s in the case of unit input matrix, the global rotational velocity transmission performance index is 0.102 7 rad/s in the case of unit input matrix, and the workspace volume is 1. The proposed research provides the basis for applications of the novel 5-DOF gasbag polishing machine tool, which can be applied to the modern industrial fields requiring machines with lower inertia, better kinematics transmission performance and better technological efficiency.


Archive | 2011

Novel method and special device for precisely processing titanium alloy joint prosthesis by curved-surface turbulence

Li Zhang; Yamin Xu; Xi Zeng; Donghui Wen; Dapeng Tan; Shiming Ji; Yanbiao Li; Qiaoling Yuan


The International Journal of Advanced Manufacturing Technology | 2013

Softness consolidation abrasives material removal characteristic oriented to laser hardening surface

Xi Zeng; Shiming Ji; Dapeng Tan; Mingsheng Jin; Donghui Wen; Li Zhang


Archive | 2011

High-speed milling vibration testing device for multi-hardness spliced materials

Donghui Wen; Yangyu Wang; Shiming Ji; Xian Zhang; Yongjiang Tang


Archive | 2011

Multihardness splicing material high-speed milling cutting-force test device

Donghui Wen; Yangyu Wang; Shiming Ji; Xian Zhang; Yongjiang Tang


Archive | 2012

Graded structured composite elastic grinding and polishing disc

Mingsheng Jin; Shiming Ji; Li Zhang; Donghui Wen; Haiping Ao


Archive | 2011

Device for testing high-speed milling and cutting forces for spliced materials with different hardness

Donghui Wen; Yangyu Wang; Shiming Ji; Xian Zhang; Yongjiang Tang


Archive | 2011

Curved-surface turbulence precision processing device for titanium-alloy artificial joint

Li Zhang; Yamin Xu; Xi Zeng; Donghui Wen; Dapeng Tan; Shiming Ji; Yanbiao Li; Qiaoling Yuan


Archive | 2011

Multi-rigidity jointing material high-speed milling vibration testing device

Donghui Wen; Yangyu Wang; Shiming Ji; Xian Zhang; Yongjiang Tang


Archive | 2012

Hierarchical structurization-based dynamic pressure polishing system of composite elastic grinding and polishing disk

Mingsheng Jin; Shiming Ji; Haiping Ao; Li Zhang; Donghui Wen

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Shiming Ji

Zhejiang University of Technology

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Li Zhang

Zhejiang University of Technology

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Mingsheng Jin

Zhejiang University of Technology

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Qiaoling Yuan

Zhejiang University of Technology

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Dapeng Tan

Zhejiang University of Technology

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Xian Zhang

Zhejiang University of Technology

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Yanbiao Li

Zhejiang University of Technology

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Yongjiang Tang

Zhejiang University of Technology

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Haiping Ao

Zhejiang University of Technology

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Xi Zeng

Zhejiang University of Technology

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