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An online dynamic balance adjustment device driven by a shape memory alloy

A memory alloy and adjusting device technology, applied in static/dynamic balance testing, measuring devices, machine/structural component testing, etc., can solve problems such as ineffective offline dynamic balance, difficult industrial realization, and complex auxiliary equipment. , to avoid the damage of rotor dynamic balance, ensure safe and stable operation, and avoid adverse effects.

Active Publication Date: 2020-07-03
XIDIAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] ① Time-consuming and inefficient;
[0005] ② If the unbalance distribution is disturbed and changed during the operation of the shaft, the offline dynamic balance will not work
[0006] ③When the precision machining equipment is running at high speed or even ultra-high speed, the dynamic characteristics of the rotor have changed, and its vibration behavior has shown a certain flexibility. At this time, the off-line dynamic balance will not be able to meet the needs of high-speed precision spindle dynamic balance
[0011] The online dynamic balance system mentioned above has some shortcomings. The laser deweighting method cannot restore the state before the adjustment, and the auxiliary equipment is complicated, and it is difficult to realize industrially; the balance device using electromagnetic force compensation consumes a lot of energy, and when it is running Non-linear enhancement of distortion control will occur in the magnetic field, and the control is difficult; the hybrid execution type generally has the disadvantages of long balancing time, cumbersome operation and complex mechanical structure

Method used

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  • An online dynamic balance adjustment device driven by a shape memory alloy
  • An online dynamic balance adjustment device driven by a shape memory alloy
  • An online dynamic balance adjustment device driven by a shape memory alloy

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0034]Embodiment 1: The online dynamic balance adjustment device includes a balance head 2 and a conductive slip ring 3, and a balance object 5 is connected to a fixed shaft on the rotating shaft 1, and the balance head 2 is connected to the balance object 5 shafts, and the conductive slip ring 3 It is connected with the balance head 2 shaft, and the balance head 2 introduces connecting wires through the conductive slip ring 3; the balance head 2 includes a housing 7, two flexible rings 9 and two rigid weight rings with unbalanced weights 8, wherein the flexible ring 9 is a metal elastic body part with a thin-walled annular feature, which is made of alloy structural steel with good strength and fatigue resistance. Specifically, the inner surface of the flexible ring 9 is welded and fixed to the ends of some memory alloy wires 13 passing through the center of rotation of the flexible ring 9; the outer side of each flexible ring 9 is also provided with outer teeth 16 around its c...

Embodiment 2

[0035] Embodiment 2: On the basis of Embodiment 1, the outer walls of the two rigid weight rings 8 of the online dynamic balance adjustment device are provided with a slideway 19, and each slideway 19 is provided with a cage, and each cage There are a plurality of balls 10 inside, and each ball 10 is respectively embedded in the corresponding slideway and between the chute 11 of the matching slideway 19 provided inside the housing 7, and each rigid weight ring 8 and the housing 7 pass through Ball 10 carries out circumferential limit. Specifically, half of the number of counterweight holes 17 in each rigid counterweight ring 8 is provided with counterweights 18 . The memory alloy wire 13 is electrically connected to the conductive slip ring 3 via the end cover lead groove 22 provided on the housing 7; The balancing object 5 is fixedly connected; the conductive slip ring 3 is axially connected to the end face of the housing 7 of the balancing head 2 through bolts. The balance...

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PUM

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Abstract

The invention discloses a shape memory alloy-driven online dynamic balance adjustment device, which comprises a balance head part and a conductive slip ring part, wherein the balance head is internally provided with a flexible ring which can be driven by a temperature-controlled memory alloy, and the flexible ring is deformed radially by the tensile drive of the memory alloy wire; the flexible ring and an outer rigid weight ring are meshed by teeth; and through controlling the power-on sequence of the memory alloy, the corresponding part of the flexible ring is stretched radially to realize the alternating change of the meshing part with the rigid weight ring. Through alternating meshing, circumferential displacement relative to the flexible ring fixed to the shell can be generated by therigid weight ring, the center of mass distribution is thus changed, and the purpose of dynamic balance is achieved. The structure form is concise, miniaturization is facilitated, self-locking in a power-off state can be carried out, and high-speed and high-precision rotor dynamic balance is facilitated.

Description

technical field [0001] The invention relates to the technical field of high-speed dynamic balance of a rotating shaft, in particular to an online dynamic balance adjustment device driven by a shape memory alloy. Background technique [0002] Modern high-speed precision machining equipment has the characteristics of high spindle speed, high running precision and high processing efficiency. For the main shaft, due to factors such as manufacturing and installation errors and uneven materials, the existence of unbalance is inevitable. The unbalanced spindle rotor will lead to spindle system vibration, noise, and bearing heating, etc., which will affect the machining accuracy. In severe cases, the spindle may even be unbalanced due to excessive spindle vibration. For this, the spindle needs to be dynamically balanced. [0003] Currently, most rotating machines use off-line dynamic balancing to eliminate vibrations caused by unbalance. However, the traditional off-line dynamic ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01M1/36
CPCG01M1/36
Inventor 章云李忠正翟丽娟勾燕洁
Owner XIDIAN UNIV
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