技術(shù)文章
高精度機(jī)械設(shè)計(jì)所涉及的機(jī)床的性能和精度
閱讀:1106 發(fā)布時(shí)間:2013-11-15高精度機(jī)械設(shè)計(jì)所涉及的機(jī)床的性能和精度
為大家介紹一篇關(guān)于機(jī)床制造的外文,翻譯摘要,說(shuō)明出處及參考文獻(xiàn),希望對(duì)業(yè)內(nèi)同行有所幫助,另如果需要更多資訊,請(qǐng)登錄成海搖臂鉆床。
高性能機(jī)械加工機(jī)床
2009。 PP 219-260
摘要
本章介紹了主要機(jī)床的設(shè)計(jì),建造和測(cè)試方面實(shí)現(xiàn)高精度加工零件。不僅機(jī)床還加工過(guò)程本身是一個(gè)錯(cuò)誤的部分源代碼。因此,一個(gè)全面的看法的機(jī)加工要求。高精度機(jī)械設(shè)計(jì)所涉及的一些基本原理和方法,提出了進(jìn)一步深入的研究。一個(gè)關(guān)鍵的因素是誤差源識(shí)別,研究它們的物理原因和終的不確定性關(guān)聯(lián)。因此,裝配誤差,熱生長(zhǎng),構(gòu)件的變形和控制不的描述。在零部件和組件的錯(cuò)誤是沿機(jī)器運(yùn)動(dòng)鏈的傳播,產(chǎn)生較大的位置誤差在刀尖的位置和刀具軸方向。齊次矩陣的使用是一個(gè)非常有用的工具,用于估計(jì)的誤差傳播。通過(guò)切削力引起的撓度變形工具和機(jī)器的另一個(gè)重要的誤差源。不幸的是,變形是不可能避免的一些模型現(xiàn)在設(shè)置加工刀具路徑選擇器,這意味著小的切削力誤差敏感方向。施工后,就在機(jī)床交付給客戶(hù),精度驗(yàn)證和性能必須始終執(zhí)行。描述現(xiàn)有的標(biāo)準(zhǔn)和程序,這是在本章的后介紹了。
Aoyama T, Inasaki I (2001) Performances of HSK tool interfaces under high rotational speeds. CIRP Ann Manuf Technol 50:281–284 CrossRef
Arnone M (1998) High performance machining. Cincinnati, USA
Bryan JB (1990) International status of thermal error research. CIRP Ann-Manuf Technol. 39/2:645–656 CrossRef
Chatterjee S (1997) An assessment of quasi-static and operational errors in NC machine tools. J Manuf. Syst, 16:59–68 CrossRef
Dornfeld D, Dae-Eun L (2008) Machine design for precision manufacturing. In: Precision Manufacturing. Springer Verlag, USA
Evans C (1989) Precision Engineering: An Evolutionary View. Cranfield Press, Bedford, UK
Hocken R (Chairman) (1980) Machine tool accuracy, Report of Working Group 1 of the Machine Tool Task Force, UCRL-52960-S. Lawrence Livermore Laboratories, University of California, Livermore, CA
Hsu YY, Wang SS (2007) Mapping geometry errors of five-axis machine tools using decouple method. Int Precis Technol, 1:123–132 CrossRef
Kim GM, Kim BH, Chu CN (2003) Estimation of cutter deflection and form error in ball-end milling processes. Int J Mach Tool Manu 43:917–924 CrossRef
Lamikiz A, López de Lacalle LN, Ocerin O, Diez D, Maidagan E (2008) The Denavit and Hartenberg approach applied to evaluate the consequences in the tool tip position of geometrical errors in five-axis milling centres, Int J Adv Manuf Technol, DOI 10.1007/s00170-007-0956-5
Moriwaki T (1994) Inligent Machine Tool: Perspective and Themes for Future Development. Manuf Sci Eng Trans ASME, 68:841–849
Nakazawa H (1994) Principles of Precision Engineering. Oxford, UK
Nawara L, Kowalski J, Sladek J (1989) The influence of kinematic errors on the profile shapes by means of CMM. CIRP Ann Manuf Technol. 38:511–516 CrossRef
Reshetov DN, Portman VT (1989) Accuracy of Machine Tools. ASME Press Translations
Salgado MA et al. (2005) Evaluation of the stiffness chain on the deflection of end-mills under cutting forces. Int J Mach Tool Manu 45:727–739 CrossRef