柴油機(jī)齒輪室蓋鉆鏜專(zhuān)機(jī)總體及主軸箱設(shè)計(jì).rar
柴油機(jī)齒輪室蓋鉆鏜專(zhuān)機(jī)總體及主軸箱設(shè)計(jì),目錄1 組合機(jī)床的總體設(shè)計(jì) 11.1組合機(jī)床工藝方案的制定 11.2組合機(jī)床配置形式以及結(jié)構(gòu)方案的設(shè)定 11.3各個(gè)具體零部件的設(shè)計(jì)、計(jì)算及選擇 21.3.1刀具的選擇 21.3.2 右側(cè)面鉆9-Φ9 21.3.3 左側(cè)面鉆6-Φ5 41.3.4 后側(cè)鏜Φ45h8孔至Φ43.5,倒...
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內(nèi)容介紹
原文檔由會(huì)員 葛凱 發(fā)布柴油機(jī)齒輪室蓋鉆鏜專(zhuān)機(jī)總體及主軸箱設(shè)計(jì)
目錄
1 組合機(jī)床的總體設(shè)計(jì) 1
1.1組合機(jī)床工藝方案的制定 1
1.2組合機(jī)床配置形式以及結(jié)構(gòu)方案的設(shè)定 1
1.3各個(gè)具體零部件的設(shè)計(jì)、計(jì)算及選擇 2
1.3.1刀具的選擇 2
1.3.2 右側(cè)面鉆9-Φ9 2
1.3.3 左側(cè)面鉆6-Φ5 4
1.3.4 后側(cè)鏜Φ45H8孔至Φ43.5,倒孔角Φ46.6 6
1.4 機(jī)床生產(chǎn)率計(jì)算卡 8
2 組合機(jī)床多軸箱設(shè)計(jì)(右主軸箱) 10
2.1繪制右主軸箱設(shè)計(jì)原始依據(jù)圖 10
2.2 主軸、齒輪的確定及動(dòng)力計(jì)算 11
2.2.1 主軸型式和直徑、齒輪模數(shù)的確定 11
2.2.2 主軸箱的動(dòng)力計(jì)算 11
2.3主軸箱傳動(dòng)系統(tǒng)的設(shè)計(jì)與計(jì)算 11
2.3.1 驅(qū)動(dòng)軸、主軸的坐標(biāo)計(jì)算 11
2.3.2 擬訂主軸箱傳動(dòng)路線(xiàn) 12
2.3.3 確定傳動(dòng)軸位置和齒輪齒數(shù) 13
2.4 多軸箱坐標(biāo)計(jì)算、繪制坐標(biāo)檢查圖 16
2.4.1 選擇加工基準(zhǔn)坐標(biāo)系XOY,計(jì)算主軸、驅(qū)動(dòng)軸坐標(biāo) 16
2.4.2 計(jì)算傳動(dòng)軸的坐標(biāo) 16
2.4.3 驗(yàn)算中心距誤差 19
2.4.4 繪制坐標(biāo)檢查圖 20
2.5 主軸箱中變位齒輪的計(jì)算 20
2.6 變位齒輪的設(shè)計(jì) 20
2.6.1 軸13與軸7、8、9上的變位齒輪的設(shè)計(jì): 21
2.6.2 軸16與軸15上的變位齒輪設(shè)計(jì): 21
2.6.3 變位齒輪重合度的校核 22
2.7 齒輪強(qiáng)度校核 22
2.7.1 校核齒根彎曲疲勞強(qiáng)度 22
2.7.2 校核接觸疲勞強(qiáng)度 23
2.8 傳動(dòng)軸直徑的確定和軸的強(qiáng)度校核 24
2.8.1 軸的直徑的確定 24
2.8.2 軸的強(qiáng)度校核 25
2.9 主軸箱體及其附件的選擇設(shè)計(jì) 28
2.9.1 主軸箱的選擇設(shè)計(jì) 28
2.9.2 主軸箱上的附件材料的設(shè)計(jì) 28
3 結(jié)論 28
致 謝 29
參 考 文 獻(xiàn) 30
附 錄 31
摘 要
本課題設(shè)計(jì)一臺(tái)加工柴油機(jī)齒輪室蓋的鉆鏜組合機(jī)床,主要完成機(jī)床總體和右主軸箱的設(shè)計(jì)工作。
根據(jù)柴油機(jī)齒輪室蓋的結(jié)構(gòu)特點(diǎn)、加工部位、尺寸精度、表面粗糙度及生產(chǎn)率等要求,確定該機(jī)床為單工位臥式組合機(jī)床;為確保加工精度,采用“一面兩銷(xiāo)”的定位方案;為實(shí)現(xiàn)無(wú)級(jí)調(diào)速,安全可靠,選擇液壓滑臺(tái);根據(jù)零件的大小及被加工孔的位置確定主軸箱的輪廓尺寸;由加工工藝選擇滾珠軸承主軸,通過(guò)計(jì)算扭矩確定主軸和傳動(dòng)軸的直徑;齒輪的模數(shù)是通過(guò)類(lèi)比法確定; 齒輪齒數(shù)和中間傳動(dòng)軸的位置是由“計(jì)算、作圖和多次試湊”相結(jié)合的辦法確定;計(jì)算主軸、傳動(dòng)軸的坐標(biāo)并進(jìn)行中心距驗(yàn)算,確定部分軸上需采用變位齒輪;軸上的齒輪套、鍵等零件按軸號(hào)選取相應(yīng)的標(biāo)準(zhǔn)件。
本課題設(shè)計(jì)的組合機(jī)床采用“一面兩銷(xiāo)”定位、液動(dòng)夾緊,一次裝夾加工柴油機(jī)齒輪室蓋三個(gè)面上的孔,保證了加工精度,提高了生產(chǎn)效率,減少了工人的勞動(dòng)強(qiáng)度。而且在設(shè)計(jì)之中,盡量選用通用件,減少了制造成本,增加了經(jīng)濟(jì)效益。
關(guān)鍵詞:組合機(jī)床 主軸箱 主軸 傳動(dòng)軸 齒輪室蓋
Abstract
This project is to design a modular machine tool for manufacturing the gear chamber cap of diesel engine. Mainly work is the design of overall and the right headstock.
According to the request of construction features, processing spot, size precision, surface roughness and productivity that diesel engine gear chamber cap, sets the machine tool for single location horizontal type modular machine tool. In order to guarantee the processing precision, the localization plan use "two sells and a surface". In order to implement the stepless speed regulation, safe is reliable, therefore choice hydraulic pressure sliding table. According the size of components and the position of the hole that is processed to set the overall size of the headstock. Choicing ball bearing spindle by processing craft. The spindle and drive shaft diameter is decided through computation torque. The gear modulus is decided through the correlation method. The gear mentions and the position of intermediate propeller shaft is decided by the means " computation, mapping and tries to collect many times". Calculates the coordinates of the spindle and drive shaft and checking the center distance, determined department spindle must use dislodges the gear. The components of tooth wheel cover, key and so on that in axis select standard letter by the corresponding number.
The modular machine tool of this project design use “two sells and one surface” to locate , hydraulic press and clamps. In the situation of one clamp, the holes three surface of the diesel engine gear chamber cap, are guaranteed the processing precision, is enhanced the production efficiency, is increased worker's labor intensity. Moreover during the design, the standard parts are selected as far as possible, reduced the production cost and increased the economic efficiency.
Key words: modular machine tool headstock spindle drive shaft gear chamber cap
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