Design of the Vertical Roundness Tester Machine Using the AHP Method (Analytical Hierarchy Process) Through the DFM Approach (Design for Manufacturing)
{"title":"Design of the Vertical Roundness Tester Machine Using the AHP Method (Analytical Hierarchy Process) Through the DFM Approach (Design for Manufacturing)","authors":"Agus Reforiandi, D. Arief","doi":"10.36842/jomase.v65i2.251","DOIUrl":null,"url":null,"abstract":"The Roundness Tester Machine is a tool used to take measurements that are shown to check the Roundness of an object or to find out whether an object is really round or not when viewed carefully using a measuring instrument. DFM (Design for Manufacturing) is a method for reducing production costs by estimating production costs through reducing component costs, assembly costs, and other production supporting costs based on design submission data without reducing product quality. AHP (Analytical Hierarchy Process) method was chosen as a method to determine the optimal Vertical Roundness Tester Machine design based on a questionnaire given to the expert, to choose the best alternative decision. The questionnaire was created to get priority customer needs which was then used for the initial design. The next stage is selecting the optimal design using AHP which involves experts based on indicators of a product. The highest indicator value obtained on the Vertical Roundness Tester Machine is the accuracy indicator with a value of 48.52%. Then in choosing the optimal design in the DFM analysis, namely in alternative 3, where alternative 3 is the design with the lowest cost so as to minimize the cost of making a Vertical Roundness Tester Machine. The manufacturing cost for alternative design 3 is Rp. 4,173,000.","PeriodicalId":232042,"journal":{"name":"Journal of Ocean, Mechanical and Aerospace -science and engineering- (JOMAse)","volume":"108 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2021-07-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Ocean, Mechanical and Aerospace -science and engineering- (JOMAse)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.36842/jomase.v65i2.251","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The Roundness Tester Machine is a tool used to take measurements that are shown to check the Roundness of an object or to find out whether an object is really round or not when viewed carefully using a measuring instrument. DFM (Design for Manufacturing) is a method for reducing production costs by estimating production costs through reducing component costs, assembly costs, and other production supporting costs based on design submission data without reducing product quality. AHP (Analytical Hierarchy Process) method was chosen as a method to determine the optimal Vertical Roundness Tester Machine design based on a questionnaire given to the expert, to choose the best alternative decision. The questionnaire was created to get priority customer needs which was then used for the initial design. The next stage is selecting the optimal design using AHP which involves experts based on indicators of a product. The highest indicator value obtained on the Vertical Roundness Tester Machine is the accuracy indicator with a value of 48.52%. Then in choosing the optimal design in the DFM analysis, namely in alternative 3, where alternative 3 is the design with the lowest cost so as to minimize the cost of making a Vertical Roundness Tester Machine. The manufacturing cost for alternative design 3 is Rp. 4,173,000.
圆度测试机是一种用于测量的工具,用于检查物体的圆度,或者当使用测量仪器仔细观察时,发现物体是否真的是圆的。DFM (Design for Manufacturing)是一种在不降低产品质量的前提下,根据设计提交数据,通过降低部件成本、装配成本和其他生产支持成本来估算生产成本,从而降低生产成本的方法。采用层次分析法(AHP)对立式圆度试验机设计方案进行优化设计,通过对专家进行问卷调查,得出最佳方案。创建问卷是为了获得客户的优先需求,然后将其用于初始设计。下一阶段是根据产品的指标,利用专家参与的层次分析法选择最优设计。在立式圆度试验机上获得的最高指标值是精度指标,其值为48.52%。然后在DFM分析中选择最优设计,即方案3,其中方案3是成本最低的设计,以使制造立式圆度试验机的成本最小。替代设计3的制造成本为417.3万卢比。