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Vibration suppressing structure

A vibration damping structure and component technology, applied in the direction of friction damper, non-rotational vibration suppression, etc., can solve the problems of inability to obtain sufficient vibration damping effect, limit the length and thickness of linear components, etc., to increase bending moment, suppress Effects of vibration and increased friction

Inactive Publication Date: 2009-11-04
TOYOTA JIDOSHA KK
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, there is obviously a limit to increasing the length or expanding the diameter of the linear part
For example, when the case or cover of a transmission mounted on a vehicle is used as the object to be damped, due to restrictions on mounting on the vehicle, and the problem of interference with other parts when the linear part vibrates and deforms, etc., The length and thickness of linear parts are limited, so there is a possibility that sufficient vibration damping effect cannot be obtained

Method used

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Examples

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Comparison scheme
Effect test

no. 1 example

[0032] The present invention will be described based on specific examples. figure 1 It is a schematic diagram for explaining the first embodiment of the vibration damping structure in the present invention, and here is an example of a structure in which, for example, a transmission 1 mounted on a vehicle is used as the vibration damping object 1 .

[0033] exist figure 1 , in the direction mainly indicated by the arrow V ( figure 1 On the vibration-damping site 2 of the vibration-damping object 1 that vibrates in the vertical direction), there is provided a boss portion 3 integrally formed with or fixed to the vibration-damping object 1 . The boss portion 3 is integrally formed by, for example, casting, or fixed by welding or bonding, and is integrated with the vibration-damping object 1 , that is, the vibration-damping site 2 of the transmission case 1 .

[0034] The linear member 4 is integrally fixed to the boss portion 3 of the transmission case 1 by bolting, for example...

no. 2 example

[0045] figure 2 It is a schematic diagram for explaining the second embodiment of the vibration damping structure of the present invention, showing the above-mentioned figure 1 This is an example of a partially modified configuration of the structure of the first embodiment shown. Therefore, for figure 1 The constituent parts identical to those in the first embodiment shown are marked with figure 1 The same reference symbols are used, and detailed descriptions thereof are omitted.

[0046] exist figure 2 Among them, the side of the linear part 4 that is not fixed with the mounting part 8 ( figure 2 The left side in the figure), that is, the end portion 4b on the free end side of the linear member 4 is fitted with a crimping member 10 . The crimping member 10 may have the same configuration as the above-mentioned crimping member 9 and the main body portion 8a of the mounting member 8, and is formed so that the other end of the linear member 4, that is, the rear end ( ...

no. 3 example

[0056] image 3 It is a schematic diagram for explaining the third embodiment of the vibration damping structure of the present invention, which shows the above-mentioned figure 2 A modification of the configuration of the second embodiment shown. Therefore, for figure 2 In the shown second embodiment, the same constituent parts are marked with figure 2 The same reference numerals are used, and detailed descriptions thereof are omitted.

[0057] exist image 3 In, the side of the linear part 4 to which the mounting part 8 is not fixed ( image 3 On the left side in the middle), that is, on the end 4b of the free end side of the linear member 4, the crimping member 11 is attached. This crimping member 11 is divided into a plurality, and they respectively have the same configuration as the above-mentioned crimping members 9 and 10 and the main body portion 8a of the attachment member 8 . And, it is formed so that the other top end of the linear member 4, that is, the re...

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PUM

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Abstract

The invention provides a vibration suppressing structure which can obtain a sufficient vibration suppression effect by using a member capable of converting kinetic energy into thermal energy. A plurality of members (6) are held in contact with one another so that they can be relatively displaced. The members (6) a attached to a vibration-to-be-controlled object (1). When the vibration-to-be-controlled object (1) vibrates, the kinetic energy relatively displaces the plurality of members (6) so as to convert the kinetic energy into thermal energy, thereby suppressing vibration of the vibration-to-be-controlled object (1). A pressed contact member (9) is mounted on the members (6) so as to bring the members (6) into a pressed contact with one another and increase a frictional force between the members (6).

Description

technical field [0001] The present invention relates to a vibration-damping structure that suppresses vibration of a vibration-damping object by using a member capable of converting kinetic energy when the vibration-damping object vibrates into thermal energy. Background technique [0002] Conventionally, a technique has been proposed in which a cable or steel wire is attached to a vibration-damping object, and the vibration of the vibration-damping object is suppressed or attenuated by absorbing the kinetic energy of the vibration-damping object through the cable or steel wire. As one example thereof, JP-A-2003-328590 discloses an invention related to a vibration-damping device for a hollow tower-like structure such as a lamp post or a lightning rod. The tower-shaped structure with a vibration damping device described in this JP Unexamined Publication No. 2003-328590 is constituted in such a way that the tower-shaped structure having a hollow inside has a cable in the hollo...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F16F15/02
CPCF16F15/02F16F7/08
Inventor 天野浩之舟桥真黑山嘉宣
Owner TOYOTA JIDOSHA KK
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