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Comparative study of tolerance on cost for various metal-removal processes

机译:各种金属去除工艺的成本公差比较研究

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Tolerance design has been identified as one of the key areas to realize the objective of producing quality goods at affordable cost. The impact of tolerance on the cost of manufacture for various metal-removal processes are shown by cost models. These cost models are in turn used in tolerance design to arrive at the relative cost of manufacture to various tolerances. Most of the cost models available untill recently were based on data from industries in the USA. However, Gunasekaran et al. (Gunasekaran, K., Neelakrishnan, S., Ragu, K. and Mohanram, P.V., Influence of tolerance on cost for various manufacturing processes, in National Conference on CAGQ — 2004, Thiagarajar College of Engineering, Madurai, India, 2004) presented the relative cost of tightening manufacture in Indian industries for attaining various tolerance values in Indian rupees and the results have been presented in graphical format. These formats are useful in determining the cost involved when tolerance synthesis methods are used to allocate tolerances to parts. In order to have an understanding of the costs involved to manufacture to a specific tolerance among the job shop-type and organized sector found in Indian industry, the cost versus tolerance data presented by Gunasekaran et al. (job-shop industry) have been compared with further data gathered by the present authors. In addition, the comparison includes the cost curves presented by Chase et al. (Chase, K.W., Greenwood, W.H., Loosli, B.G. and Hauglund, L.F., Least cost tolerance allocation for mechanical assemblies with automated process selection, J. Manuf. Rev. ASME, 1989, 2(4), 49-59). This is especially useful in analysing the differences in sourcing from a job shop versus the organized sector. In addition, the results that are displayed graphically are also compared with the cost models that already exist. In addition, one of the benefits of the cost curves is illustrated with a case study of a simple component.
机译:公差设计已被确定为实现以可承受的成本生产优质产品的目标的关键领域之一。成本模型显示了公差对各种金属去除工艺的制造成本的影响。这些成本模型又用于公差设计中,以得出各种公差的相对制造成本。直到最近,大多数可用的成本模型都是基于美国各行业的数据。但是,Gunasekaran等。 (Kunasekaran,K.,Neelakrishnan,S.,Ragu,K。和Mohanram,PV,公差对各种制造工艺成本的影响,在2004年CAGQ全国会议上,印度马杜赖Thiagarajar工程学院,2004年)为了达到印度卢比的各种公差值,印度工业中拧紧制造的相对成本,并且结果以图形格式显示。当使用公差综合方法将公差分配给零件时,这些格式可用于确定所涉及的成本。为了了解在印度工业中的车间和有组织的部门中达到特定公差所需的制造成本,Gunasekaran等人提供了成本与公差数据。 (车间行业)已与本作者进一步收集的数据进行了比较。此外,比较还包括Chase等人提出的成本曲线。 (Chase,K.W.,Greenwood,W.H.,Boosli,B.G。和Hauglund,L.F。,具有自动过程选择的机械组件的最小成本公差分配,J.Manuf.Rev.ASME,1989,2(4),49-59)。这在分析从车间购买的资源与有组织的部门的采购差异时特别有用。此外,还将以图形方式显示的结果与现有成本模型进行比较。另外,通过简单组件的案例研究说明了成本曲线的优势之一。

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