Liu Xiaolong, Lu Qingyou
High Magnetic Field Laboratory, Chinese Academy of Sciences and University of Science and Technology of China, Hefei, Anhui 230026, People's Republic of China.
Rev Sci Instrum. 2012 Nov;83(11):115111. doi: 10.1063/1.4767246.
We present a linear piezoelectric motor as simple as one piezoelectric scanner tube (PST) spring-clamping a central shaft at both ends with roughly equal clamping forces. The clamping points are aligned with ±X electrodes at one end and ±Y electrodes at the other end. Thus, the ±X (or ±Y) push-pull motions of the PST can cause the push-pull motions of the clamping points on the shaft (called push-pull rubbing), which reduces the total dynamic friction force at one (or the other) end of the PST. This new piezo motor advances one step by fast push-pull rubbing at one end while slowly retracting the PST followed by fast push-pull rubbing at the other end while slowly elongating the PST. Apart from the obvious advantages of simplicity, rigidity, integrity, etc., we will also show that this motor can produce a large output force, which we believe is because of the huge drop of the clamping friction force when the push-pull rubbing occurs.
我们展示了一种线性压电马达,它简单到就像一个压电扫描管(PST),在两端以大致相等的夹紧力弹簧夹固定一根中心轴。夹紧点一端与±X电极对齐,另一端与±Y电极对齐。因此,PST的±X(或±Y)推挽运动可导致轴上夹紧点的推挽运动(称为推挽摩擦),这会降低PST一端(或另一端)的总动摩擦力。这种新型压电马达通过一端快速推挽摩擦、同时缓慢缩回PST,然后另一端快速推挽摩擦、同时缓慢伸长PST来前进一步。除了具有简单、刚性、整体性等明显优点外,我们还将证明这种马达能够产生较大的输出力,我们认为这是由于推挽摩擦发生时夹紧摩擦力大幅下降所致。