CMD CSV-8050/6 DUAL 6-PORT TRIDENT RAID CONTROLLER MODULE W/FRONT CONTROL PANEL
掛輪齒數;rt,%的選擇當q和選定后,根據圖形的形狀定出即可由式(3)計算掛輪齒數。例如:加工橢圓時,w= =菩,可取2= 60,=3,=々=>45,為保證兩齒輪正安裝,顯然掛輪r和d要選擇正傳動。

3多用途傳動裝置的應用如所示,若在M位置安裝車刀,或安裝帶動力的銑刀或砂輪,則可獲得相應的加工橢N邊形工件的車床、洗床或磨床;如所示,若將工件3與刀具9位置調,SP讓刀具運動,工件固定,則可得到加工所示非圓形缸體型腔的銑床、鏜床或磨床。由可知,刀具M點在固定坐標系中的坐標為:▲幾種非圓形缸體型腔式(5)即為被加工的非圓形缸體型腔的參數方程。有些人認為,由于諧波齒輪傳動的彈性變形協調作用,存在少量干涉不會導傳動卡,為了控制小側隙,因而可允許某些干涉存在,這種觀點顯然是片面的。若設計時允許某些干涉量存在,那么就有可能導傳動的磨損加劇,效率降低,波發生器上載荷和柔輪應力增大,甚至引起傳動滑移,破壞傳動的正常工作。
關于如何在保證不發生干涉的情況下,獲得合理側隙的問題,目前的些計算方法比較復雜,實用性不強。這里介紹種新的計算方法,實踐證明這種驗算方法度高,能夠滿足設計要求,而且簡單方便,實用性強。
2嚙出(或嚙入)瞬時不發生齒干涉的條件由于嚙合狀態的稱性,輪齒在嚙入瞬時的干涉情況完全可以由嚙出瞬時的情況來描述。所不同的是,若嚙入瞬時的齒廓干涉發生在柔輪齒左側齒廓和剛輪齒的右側齒廓上,那么,嚙出瞬時的齒廓干涉必定發生在柔輪齒右側齒廓和剛輪齒左側齒廓上。在剛脫離嚙合(或剛進行嚙合)的瞬間,不產生齒干涉的條件為:剛輪齒工作側的齒坐標所應之轉角PL2應大于柔輪齒工作側之齒坐標所應轉角,如。
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