Multi-flap standing wave type ultrasonic motor
09853577 ยท 2017-12-26
Assignee
Inventors
- Min Huan (Jingjiang, CN)
- Zhendong Tang (Jianjiang, CN)
- Yuanxing Tang (Jianjiang, CN)
- Honglin Lu (Jingjiang, CN)
- Tong Lu (Jingjiang, CN)
Cpc classification
H02N2/142
ELECTRICITY
International classification
H02N2/02
ELECTRICITY
H02N2/00
ELECTRICITY
Abstract
Provided is a multi-flap standing wave type ultrasonic motor, including a rotor part, a stator part, a control circuit board, and a fixing attachment. The rotor part includes a flange, a rotor ring, and a shaft. The shaft and the flange are joined together by using a first screw and the flange and the rotor ring are joined together by using a second screw. The stator part includes a piezoelectric ceramics, an excitation ring, and flaps. The piezoelectric ceramics and the excitation ring are fixed with glue, the flaps and the excitation ring are connected through welding, and form an angle with the radial direction of the excitation ring. The stator part is sleeved on a support, is attached to a pressure plate and is connected, through an upright, to a locking plate, and to a substrate of the control circuit board to form a fixing attachment. The flaps are an elastomer and a preload provider. The inner diameter of the rotor ring is less than the outer diameter of the flaps. Adopted is a circular-distributed flap structure, an outer rotor design, an integrated design of motor and control, and a sensor, thereby simplifying the system structure. By adopting circular-distributed assembled flaps, the processing difficulty of the flaps is reduced.
Claims
1. A multi-flap standing wave type ultrasonic motor, comprising a rotor part, a stator part, a control circuit board and a fixing attachment, wherein the rotor part comprises a flange, a rotor ring and a shaft, the shaft and the flange are joined together by using a first screw and the flange and the rotor ring are joined together by using a second screw, the stator part comprises a piezoelectric ceramics, an excitation ring and flaps, the piezoelectric ceramics and the excitation ring are glued together, and the stator part is sleeved on a support, is attached to a pressure plate and is connected, through an upright, to a locking plate and to a substrate of the control circuit board, an inner diameter of the rotor ring is less than an outer diameter of the flaps, each flap comprises a solder, is inserted into a slot of the excitation ring, is joined together with the excitation ring through welding with the solder, and forms an angle with an radial direction of the excitation ring, a slot forming an angle with a radial direction of the excitation ring is opened on an outer circumference of the excitation ring, a width of the slot is 0.10 mm to 0.25 mm, and a thickness of the each of the flaps is in correspondence with the width of the slot, the excitation ring and the flaps are made of an elastic sheet material, and a photoelectric sensor is installed in a circuit of the control circuit board, so as to determine an operating angle of the rotor by detecting an outer circle of the rotor.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The disclosure will become more fully understood from the detailed description given herein below for illustration only, and thus are not limitative of the disclosure, and wherein:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION
(6) As shown in
(7) The flaps 23 are made of an elastic sheet material, form the preload on the surface of the rotor, and form an angle with the radial direction of the excitation ring so as to promote the rotor to move in the inclined direction of the flaps.
(8) A photoelectric sensor 31 is installed in the circuit, so as to determine the rotational angle of the rotor by detecting the outer circle of the rotor, thereby achieving precise operation.
(9) It can be known from
(10) The excitation ring 22 and the flaps 23 are made of an elastic sheet material and form a preload on the surface of the rotor, form an angle with the radial direction of the excitation ring, and form elliptical particles after excitation so as to promote the rotor to move in the inclined direction of the flaps.