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直驅(qū)伺服+動(dòng)態(tài)補(bǔ)償算法:純電折彎?rùn)C(jī)精度突破±0.01

來(lái)源: 發(fā)布時(shí)間:2025-06-24

純電折彎?rùn)C(jī)精度躍升的**在于直驅(qū)伺服系統(tǒng)與多軸動(dòng)態(tài)補(bǔ)償算法的深度融合。以隴博智能科技有限公司的純電折彎?rùn)C(jī)機(jī)型為例,其搭載的永磁同步伺服電機(jī)(額定扭矩120N·m,響應(yīng)時(shí)間<10ms)直接驅(qū)動(dòng)滾珠絲杠,消除液壓系統(tǒng)滯后誤差;同時(shí),基于激光位移傳感器的實(shí)時(shí)閉環(huán)控制,通過卡爾曼濾波算法融合X/Y/Z三軸形變數(shù)據(jù),實(shí)現(xiàn)折彎角度動(dòng)態(tài)補(bǔ)償(補(bǔ)償精度±0.001mm)。測(cè)試數(shù)據(jù)顯示,在連續(xù)200次折彎工況下,REB-800Pro的角度一致性達(dá)±0.005mm(傳統(tǒng)液壓機(jī)型為±0.05mm)。行業(yè)應(yīng)用層面,該技術(shù)已覆蓋航空航天領(lǐng)域鈦合金薄板折彎(厚度0.5-2mm),助力某航空部件廠將零件***合格率從82%提升至97%。未來(lái)技術(shù)趨勢(shì)指向AI預(yù)測(cè)性補(bǔ)償——通過歷史數(shù)據(jù)訓(xùn)練神經(jīng)網(wǎng)絡(luò)模型,提前預(yù)判材料回彈量并調(diào)整折彎參數(shù)。The core of the significant improvement in the accuracy of pure electric bending machines lies in the deep integration of the direct drive servo system and the multi-axis dynamic compensation algorithm. Taking the pure electric bending machine model of Longbo Intelligent Technology Co., Ltd. as an example, the permanent magnet synchronous servo motor (rated torque 120N·m, response time < 10ms) directly drives the ball screw, eliminating the lag error of the hydraulic system; at the same time, based on the real-time closed-loop control of the laser displacement sensor, through the Kalman filtering algorithm to fuse the deformation data of the X/Y/Z three axes, dynamic compensation of the bending angle is achieved (compensation accuracy ±0.001mm). Test data shows that under continuous 200 bending conditions, the angle consistency of REB-800Pro reaches ±0.005mm (traditional hydraulic models are ±0.05mm). In terms of industry application, this technology has covered the bending of titanium alloy thin plates in the aerospace field (thickness 0.5-2mm), helping a certain aviation component factory increase the first-time qualification rate of parts from 82% to 97%. The future technological trend points to AI predictive compensation - through training neural network models with historical data, predicting the material rebound amount in advance and adjusting the bending parameters.


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