Variation Propagation Analysis on Compliant Assemblies Considering Contact Interaction

Author:

Xie Kang1,Wells Lee1,Camelio Jaime A.1,Youn Byeng D.1

Affiliation:

1. Department of Mechanical Engineering–Engineering Mechanics, Michigan Technological University, Houghton, MI 49931

Abstract

Dimensional variation is inherent to any manufacturing process. In order to minimize its impact on assembly products it is important to understand how the variation propagates through the assembly process. Unfortunately, manufacturing processes are complex and in many cases highly nonlinear. Traditionally, assembly process modeling has been approached as a linear process. However, many assemblies undergo highly complex nonlinear physical processes, such as compliant deformation, contact interaction, and welding thermal deformation. This paper presents a new variation propagation methodology considering the compliant contact effect, which will be analyzed through nonlinear frictional contact analysis. Its variation prediction will be accurately and efficiently conducted using an enhanced dimension reduction method. A case study is presented to show the applicability of the proposed methodology.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference18 articles.

1. Modeling and Diagnosis of Multistage Manufacturing Process: Part I—State Space Model;Ding

2. Modeling and Controlling Variation Propagation in Mechanical Assemblies Using State Transition Models;Mantripragada;IEEE Trans. Rob. Autom.

3. Variation Simulation for Deformable Sheet Metal Assemblies Using Finite Element Methods;Liu;ASME J. Manuf. Sci. Eng.

4. Modeling Variation Propagation of Multi-Station Assembly Systems With Compliant Parts;Camelio;ASME J. Mech. Des.

5. Compliant Assembly Variation Analysis Using Components Geometric Covariance;Camelio;ASME J. Manuf. Sci. Eng.

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