2009Machine Tool & HydraulicsRequires access

Modeling and Simulation of Virtual Prototype of the Break and Trim Machine Tool Based on SolidWorks and ADAMS

AN Mei-ling

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Abstract

The virtual prototype technology was applied to mechanism designing.The modeling and dynamic simulation of break and trim machine tool were proposed by using SolidWorks and ADAMS software.The advantage of this is that the product characteristics can be calculated in the design stage,and the feasible study and design of the tool can be completed in a virtual environment.As a result,the design quality and efficiency of the tool are improved,and its developing and manufacturing period is reduced correspondingly.

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What this paper is about

The virtual prototype technology was applied to mechanism designing.The modeling and dynamic simulation of break and trim machine tool were proposed by using SolidWorks and ADAMS software.The advantage of this is that the product characteristics can be calculated in the design stage,and the feasible study and design of the tool can be completed in a virtual environment.As a result,the design quality and efficiency of the tool are improved,and its developing and manufacturing period is reduced correspondingly.

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Available abstract

The virtual prototype technology was applied to mechanism designing.The modeling and dynamic simulation of break and trim machine tool were proposed by using SolidWorks and ADAMS software.The advantage of this is that the product characteristics can be calculated in the design stage,and the feasible study and design of the tool can be completed in a virtual environment.As a result,the design quality and efficiency of the tool are improved,and its developing and manufacturing period is reduced correspondingly.

Key concepts: Trim, Machine tool, Software, Engineering, Mechanism (biology), Quality (philosophy), Virtual machine, Product (mathematics)

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Modeling and Simulation of Virtual Prototype of the Break and Trim Machine Tool Based on SolidWorks and ADAMS — Research Paper | ScholarLens