在 9 月 18 -23 日于德國漢諾威舉辦的歐洲機(jī)床展 (EMO) 上舒勒展示這臺設(shè)備的3D模型-MSE 2000 型伺服鍛造壓力機(jī)。((15 號展廳,E29 展位)
At the European Machine Tool Exhibition (EMO), held in Hannover, Germany, on September 18-23, Schuler demonstrated the 3D model of this equipment, -MSE 2000 type servo forging press. ((Hall 15, E29 booth)
“與傳統(tǒng)的鍛造壓力機(jī)相比,我們最新研發(fā)的 MSE 2000 鍛造壓力機(jī)可以在相同的時間內(nèi)生產(chǎn)出更多的鍛件,”舒勒萬家頓公司的工業(yè)部負(fù)責(zé)人 Johannes Linden 說到。“模具的使用壽命獲得了顯著地提升。同時,整個設(shè)備能耗也得以降低。”
Compared with the traditional forging press, our newly developed MSE 2000 forging press can produce more products at the same time, "Schuler Weingarten, Ministry of industry leader Johannes Linden said. The service life of the mold has been remarkably improved. At the same time, the energy consumption of the whole equipment is also reduced."
這主要得益于安裝在這臺 2000 噸位鍛造壓力機(jī)上部的高動態(tài)性能伺服驅(qū)動裝置。該驅(qū)動裝置可以精準(zhǔn)控制模具接近以及離開鍛件時的速度:在鍛件傳送過程中采用較低的速度,而鍛造成形過程則采用較高的速度。到目前為止,常規(guī)的壓力機(jī)無法實(shí)現(xiàn)這種速度控制,因此,最慢的分工藝流程就會影響到整個工藝過程的時間。而伺服直驅(qū)技術(shù)使該問題迎刃而解,生產(chǎn)效率得到顯著提升。
This is mainly due to the high dynamic performance servo drive installed on the top of the 2000 tonnage forging press. The driving device can precisely control the speed of the die approaching and leaving the forging: the lower speed is adopted during the forging process, and the forging process adopts a higher speed. So far, the conventional press has failed to achieve this speed control, so the slowest process will affect the whole process time. The servo direct drive technology to solve the problem, production efficiency has been significantly improved.
MSE 2000 型壓力機(jī)的工作臺頂出器也具有獨(dú)立的伺服驅(qū)動裝置,不再需要像舊式壓力機(jī)那樣和主驅(qū)動裝置聯(lián)動。這不僅增加了鍛件傳輸?shù)撵`活性,同時也加速了生產(chǎn)過程。通過將傳動機(jī)構(gòu)中的縱軸改為橫軸設(shè)計,兩個偏心輪按照相反的方向旋轉(zhuǎn),設(shè)備的運(yùn)行狀況變得更加平穩(wěn)。
The ejector of the MSE 2000 press also has an independent servo drive that no longer needs to link with the main drive like an old press. This not only increases the flexibility of the forging transmission, but also accelerates the production process. By changing the vertical axis of the drive mechanism to the horizontal axis, the two eccentric wheels are rotated in opposite directions, and the running condition of the equipment becomes more stable.
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