1. Field of the Invention
The present invention relates generally to a ball screw and more particularly, to a ball screw capable of sensing torque in real time.
2. Description of the Related Art
A ball screw is a common component in precision positioning and keeps rolling to serve as the power transmission interface between the screw rod and the screw nut for much reduction of frictional resistance generated while the screw nut is working. However, in the process of processing a workpiece, different sizes of the workpieces lead to different torque applied to the screw nut. For example, if the workpiece is too heavy, enormous torque will occur while the screw nut is moving; meanwhile, if there is none of any immediate lubrication, the wear and tear will happen between the screw nut and the screw rod to further make the preload gradually disappear, thus reducing the positioning accuracy.
Taiwan Patent No. I407026 disclosed a method diagnostic of preload ineffectiveness of a ball screw and a device based on the method, in which a voiceprint signal generated while the ball screw is working can be filtered by empirical mode decomposition (EMD), then processed by Hilbert-Huang transform (HHT) to generate Hilbert-Huang spectrum (HHS), next processed by multi-scale entropy extraction to generate multi-scale entropy complexity mode, and after the raw multi-scale entropy complexity mode and the current multi-scale entropy complexity mode are compared, whether a preload of the ball screw disappears or not can be effectively diagnosed for the user to monitor the ball screw. However, in the process of measurement based on this method, the measuring accuracy may be adversely affected easily subject to other environmental factors, such as vibration, noise, or frequency. In other words, this method fails to provide accurate measuring outcome for the preload of the ball screw.
The primary objective of the present invention is to provide a ball screw, which can directly sense a torque applied to the working screw nut.
The foregoing objective of the present invention is attained by the ball screw formed of a screw rod, a screw nut, and a plurality of balls. The screw rod includes an external thread. The screw nut is sleeved onto the screw rod and includes an internal circulatory passage and an internal thread. A spiral passage is formed between the internal thread and the external thread and linked with the internal circulatory passage to define a load path with the internal circulatory passage. The balls are rollingly mounted within the load path. The torque sensor includes a first fastening portion and a second fastening portion opposite to the first fastening portion. The first fastening portion is fixed to a working bench and the second fastening portion is fixed to the screw nut, so the torque sensor can sense how much the torque is while the screw nut is working and meanwhile indirectly indicate whether the preload is changed or not in the process of operation of the ball screw.
Structural features and desired effects of the present invention will become more fully understood by reference to a preferred embodiment given hereunder. However, it is to be understood that the embodiment is given by way of illustration only, thus is not limitative of the claim scope of the present invention.
Referring to
The screw rod 20 runs through the working bench 12 and includes an extern al thread 22.
The screw nut 30 is sleeved onto the screw rod 20 and includes an internal circulatory passage 31 and an internal thread 32. As shown in
The balls 40 are mounted within the load path 34 for reducing frictional resistance generated while the screw nut 30 is working relative to the screw rod 20.
The torque sensor 50 includes a through hole 51 for the screw rod 20 to be inserted through. The through hole 51 has a diameter that is larger than an external diameter of the screw rod 20, as shown in
In actual operation, as shown in
In conclusion, the ball screw 10 of the present invention can sense the torque applied to the working screw rod 11 in real time. In this way, the user can make sure that the screw rod 30 keeps the normal preload by means of monitoring the voltage value outputted by the torque sensor 50, so the whole structure of the ball screw 10 can have preferable rigidity, positioning accuracy, and positioning stability.