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    Jig design for reduction of assembly cycle time and defect for front panel assembly

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    Abstract,Acknowledgement.pdf (486.8Kb)
    Introduction.pdf (237.2Kb)
    Literature Review.pdf (456.6Kb)
    Methodology.pdf (893.3Kb)
    Results and Discussion.pdf (1.089Mb)
    Conclusion and Recommendation.pdf (205.5Kb)
    Refference and Appendics.pdf (144.4Kb)
    Date
    2016-06
    Author
    Siti Aishah, Mohamad Mukhtar
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    Abstract
    Problems that often occur when the assembly process is high assembly time and defect are serious problem that occurs in every production industry. To complete the assembly process of front panel at Wong Engineering the same problem happen which is the cycle time taking too long and defect frequently happens during assembly the front panel. The problem happens because the process of assembly without a suitable tool to guide the worker. Beside that, the existing assembly process does not use the right process instruction. Therefore, the objective of this study is to design a tool to reduce defects and cycle time. By referring the current problem, analysis of motion study in the workplace can help to improve the efficiency of producing the product. The analysis and motion study during assembly front panel is analysed by taking the cycle time during task by task. Based on the result analysis, it shows that the motion study during assembly the front panel needs the improvement by design the suitable jig to guide the worker during using the hand press machine. Beside that, the modification of existing assembly process also needs to be improved by using a standard working process. The design and analysis of jig is using the CATIA software. By doing analysis and evaluate the effectiveness of the jig to the front panel assembly, it shows the decreases on cycle time and defect of the product. Therefore, by applying the jig on assembly process it is very helpful in increasing the productivity of assembly process.
    URI
    http://dspace.unimap.edu.my:80/xmlui/handle/123456789/69827
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    • School of Manufacturing Engineering (FYP) [338]

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