A novel toleranced approach to component match via selective assembly
Selective assembly process has been an effective approach to reduce the final assembled product dimension variations ever since the establishment of assembling processes. In this process, all sub parts are measured and grouped into numbers of divisions according to their dimensions. The final produc...
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sg-ntu-dr.10356-652102023-03-04T19:29:47Z A novel toleranced approach to component match via selective assembly Cao, Wenyu Lye Sun Woh School of Mechanical and Aerospace Engineering DRNTU::Engineering::Manufacturing::Quality control Selective assembly process has been an effective approach to reduce the final assembled product dimension variations ever since the establishment of assembling processes. In this process, all sub parts are measured and grouped into numbers of divisions according to their dimensions. The final product is formed by assembling the sub parts from certain appropriate divisions to meet the design requirements. This FYP is continuing the work from a previous FYP which set the framework of the project. In this report, the complete process of selective assembly is designed and simulated staring from the manufacturing of subparts to the final assembly process. A few points are emphasized including the development of algorithm and the performance verification. Bachelor of Engineering (Mechanical Engineering) 2015-06-17T01:08:01Z 2015-06-17T01:08:01Z 2015 2015 Final Year Project (FYP) http://hdl.handle.net/10356/65210 en Nanyang Technological University 57 p. application/pdf |
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DRNTU::Engineering::Manufacturing::Quality control Cao, Wenyu A novel toleranced approach to component match via selective assembly |
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Selective assembly process has been an effective approach to reduce the final assembled product dimension variations ever since the establishment of assembling processes. In this process, all sub parts are measured and grouped into numbers of divisions according to their dimensions. The final product is formed by assembling the sub parts from certain appropriate divisions to meet the design requirements. This FYP is continuing the work from a previous FYP which set the framework of the project. In this report, the complete process of selective assembly is designed and simulated staring from the manufacturing of subparts to the final assembly process. A few points are emphasized including the development of algorithm and the performance verification. |
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Lye Sun Woh |
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Lye Sun Woh Cao, Wenyu |
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Final Year Project |
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Cao, Wenyu |
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Cao, Wenyu |
title |
A novel toleranced approach to component match via selective assembly |
title_short |
A novel toleranced approach to component match via selective assembly |
title_full |
A novel toleranced approach to component match via selective assembly |
title_fullStr |
A novel toleranced approach to component match via selective assembly |
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A novel toleranced approach to component match via selective assembly |
title_sort |
novel toleranced approach to component match via selective assembly |
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2015 |
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http://hdl.handle.net/10356/65210 |
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1759855526490931200 |