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In the gear hobbing machine processing , gear requirements , However, the calculation of the differential gear selection especially cumbersome in gear, the helical gear (helical gear) movement and the driving force is to rely on the transmission of axial movement along the access track to achieve the, Helical gear is therefore a direct impact on the machining accuracy of the work of the helical gear stability. And helical gear of all kinds of mechanical processing methods, the first step is the calculation of the differential gear selection. However, due to traditional manual calculation of matching gear is not fast. Precise requirements of the above reasons, we studied differential gear selection algorithm based on the use of computer technology has develop ed a machine differential gear Select Software, The purpose of choosing this subject is to change the traditional differential gear hobbing machine of choice to find a simple and quick method of high accuracy, to replace the traditional time-consuming and error-prone that the look-up table method, the accuracy of this method is very low, sometimes even adjust the gear machine tools and installation conditions can not be equipped with gear to meet the requirements of the distribution of computing. The use of computer-assisted support options to meet on the set of gear with the requirements. In this paper, the use of computer technology to solve differential gear selection tools that exist in the database form, gear and traditional methods to find the problem of low accuracy, increased machine differential Calculation of gear to find accuracy and speed, the actual production to meet the needs of. Understanding of learning through textbooks differential gear hobbing of computer-assisted selection based on the principles and knowledge, more traditional hanging round the drawbacks of lack of choice. Aware that the choice of a new way the importance of the development. In the early stage of c With a deep understanding of language, according to the actual needs of the work to prepare the diagram c language program, to prepare a set of procedures used to select the right differential gear hobbing machine, debugger interface. Calculation of the transmission ratio and the transmission ratio must meet the conditions of assembly by applying the computer technology has developed a tool to choose software differential gear. Meet the user according to their actual gear machine tool settings with the needs of the situation. Select to differential gear, the gear can detect the correct installation and mating. Understanding of learning through textbooks differential gear hobbing of computer-assisted selection based on the principles and knowledge, more traditional hanging round the drawbacks of lack of choice. Aware of the choice of a new way the importance of the development. In the early stage of c has a profound understanding of the language, according to the actual needs of the work to prepare the diagram c language program, to prepare a set of procedures used to select the right differential gear hobbing machine, debugger interface. Calculation of transmission and the transmission ratio than the assembly must meet the conditions, use of computer technology has developed a tool to choose software differential gear. Meet the user according to their actual gear machine tool settings with the needs of the situation. Options for calculating the differential gear, gear testing whether the correct installation and mating. GOETSGH, D L.Advanced Manufacturing TechnologyM.Albany, NY: Delmar Publihers Inc.1990. 滾齒機加工齒輪時需要計算掛輪,特別是加工斜齒圓柱齒輪,大質(zhì)數(shù)圓齒輪和用切向走刀加工蝸輪時還需要計算差動掛輪。由于差動掛輪的速比時一個復(fù)雜的數(shù)據(jù),若采用手工計算其運算過程很容易出錯,同時也難于搭配成滿足要求的實用掛輪,即使采用查表法也很繁瑣。 在齒輪傳動中,螺旋齒 (斜齒輪 )運動和動力的傳遞是依靠接觸跡沿軸向移動實現(xiàn)的,因此斜齒輪的加工精度直接影響著斜齒輪工作的平穩(wěn)性。而在斜齒輪的各種機械加工方法中,其首要步驟是進行差動掛輪選擇計算。因為差動掛輪給工件以附加運動 ,切出螺旋齒,因此它的分配計算精度就決定了被加工齒輪螺旋角的加工精度。 另外,差動掛輪的速比值直接影響被加工齒輪的精度,只有精確選用掛輪才能滿足加工要求。如果我們利用計算機運算速度快,計算精度高且具有很強的邏輯判斷能力這一特點編寫相關(guān)的應(yīng)用程序,就能很好的解決上述問題。 滾齒機加工齒輪時需要計算掛輪,特別是加工斜齒圓柱齒輪,大質(zhì)數(shù)圓齒輪和用切向走刀加工蝸輪時還需要計算差動掛輪。由于差動掛輪的速比時一個復(fù)雜的數(shù)據(jù),若采用手工計算其運算過程很容易出錯,同時也難于搭配成滿足要求的實用掛輪,即使采用查表法也很繁瑣。 在齒輪傳動中,螺旋齒 (斜齒輪 )運動和動力的傳遞是依靠接觸跡沿軸向移動實現(xiàn)的,因此斜齒輪的加工精度直接影響著斜齒輪工作的平穩(wěn)性。而在斜齒輪的各種機械加工方法中,其首要步驟是進行差動掛輪選擇計算。因為差動掛輪給工件以附加運動,切出螺旋齒,因此它的分配計算精度就決定了被加工齒輪螺旋角的加工精度。 另外,差動掛輪的速比值直接影響被加工齒輪的精度,只有精確選用掛輪才能滿足加工要求。如果我們利用計算機運算速度快,計算精度高且具有很強的邏輯判斷能力這一特點編寫相關(guān)的應(yīng)用程序,就能很好的解決上述問題。 現(xiàn)今國內(nèi)外研究出了 各種計算機輔助選擇掛輪的程序, 運用了計算機技術(shù)開發(fā)了機床差動掛輪選擇軟件,滿足了用戶根據(jù)自己實際機床掛輪配備情況進行設(shè)置的需求,并在實際運用中取得了良好的效果。 有效的解決了傳統(tǒng)查表法和手工計算方法的弊端,不僅提高了生產(chǎn)效率且節(jié)省了勞動力,精度也得到了很大程度的提高,但是有些呈程序比較復(fù)雜,所以研究出簡單方便的加工程序變得尤為重要 。 在中國 滾齒差動掛輪的計算機輔助選擇 取得成績的同時,也必須看到我們的企業(yè)對它仍存在很大的誤區(qū)。主要是對計算機輔助選擇的認(rèn)識不足,缺乏這方面的發(fā)展戰(zhàn)略。沒有從企業(yè)發(fā)展戰(zhàn)略的高度去思考 其的重要,更別說實施。他們主要選擇方式仍然是傳統(tǒng)的人工查表模式。至于什么是計算機輔助設(shè)計,如何開展, 完全一竅不通,有部分企業(yè)甚至覺得自己在傳統(tǒng)行業(yè)里已經(jīng)做得很不錯,不需要花精力開拓計算機輔助設(shè)計。這種目光短視的行為給企業(yè)帶來的是在信息化進程中企業(yè)抗

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