WO2020164325A1 - 扭簧可变阻尼转轴 - Google Patents

扭簧可变阻尼转轴 Download PDF

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Publication number
WO2020164325A1
WO2020164325A1 PCT/CN2019/130457 CN2019130457W WO2020164325A1 WO 2020164325 A1 WO2020164325 A1 WO 2020164325A1 CN 2019130457 W CN2019130457 W CN 2019130457W WO 2020164325 A1 WO2020164325 A1 WO 2020164325A1
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WO
WIPO (PCT)
Prior art keywords
hole
torsion spring
connecting mechanism
unit
variable damping
Prior art date
Application number
PCT/CN2019/130457
Other languages
English (en)
French (fr)
Inventor
邹东洪
Original Assignee
欧普照明股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 欧普照明股份有限公司 filed Critical 欧普照明股份有限公司
Publication of WO2020164325A1 publication Critical patent/WO2020164325A1/zh
Priority to US17/402,124 priority Critical patent/US20210372462A1/en

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D11/00Additional features or accessories of hinges
    • E05D11/10Devices for preventing movement between relatively-movable hinge parts
    • E05D11/1028Devices for preventing movement between relatively-movable hinge parts for maintaining the hinge in two or more positions, e.g. intermediate or fully open
    • E05D11/1078Devices for preventing movement between relatively-movable hinge parts for maintaining the hinge in two or more positions, e.g. intermediate or fully open the maintaining means acting parallel to the pivot
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C3/00Shafts; Axles; Cranks; Eccentrics
    • F16C3/02Shafts; Axles
    • F16C3/023Shafts; Axles made of several parts, e.g. by welding
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F1/00Springs
    • F16F1/02Springs made of steel or other material having low internal friction; Wound, torsion, leaf, cup, ring or the like springs, the material of the spring not being relevant
    • F16F1/04Wound springs
    • F16F1/12Attachments or mountings
    • F16F1/123Attachments or mountings characterised by the ends of the spring being specially adapted, e.g. to form an eye for engagement with a radial insert
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C2361/00Apparatus or articles in engineering in general
    • F16C2361/53Spring-damper, e.g. gas springs
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F2236/00Mode of stressing of basic spring or damper elements or devices incorporating such elements
    • F16F2236/08Torsion
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T403/00Joints and connections
    • Y10T403/32Articulated members
    • Y10T403/32606Pivoted
    • Y10T403/32614Pivoted including circumferential biasing or damping means

Definitions

  • This application relates to the technical field of rotating shafts, in particular to a torsion spring variable damping rotating shaft.
  • the embodiment of the present application provides a torsion spring variable damping shaft to solve the problem that the displacement of the housing does not change, which greatly limits the movement space of the nut and restricts the application of the damping shaft.
  • an embodiment of the present application provides a torsion spring variable damping rotating shaft, including a moving unit, a fixing unit, a first connecting mechanism, a second connecting mechanism, and a torsion spring;
  • the fixed unit is detachably plugged into the mobile unit
  • the first connecting mechanism is arranged inside the fixed unit and is connected to an end of the fixed unit along a direction away from the moving unit;
  • the torsion spring is sleeved on the first connecting mechanism, one end of the torsion spring is inserted into the fixed unit, and the other end of the torsion spring is inserted into the moving unit;
  • the second connecting mechanism is arranged in the moving unit and is used in conjunction with the first connecting mechanism; the second connecting mechanism rotates on the first connecting mechanism to drive the moving unit to the The fixed unit moves.
  • the above-mentioned torsion spring variable damping shaft away from the direction of the fixed unit, a first through hole is provided at one end of the moving unit; near the direction of the fixed unit, a protrusion is provided at one end of the moving unit, and the convex A second through hole is provided inside, the first through hole communicates with the second through hole; the first connecting mechanism is inserted into the second through hole and the first through hole, and the first The two connecting mechanisms are sleeved on the first connecting mechanism located in the second through hole.
  • the aforementioned torsion spring variable damping shaft faces the fixing unit, and a third through hole is provided on the protrusion, and the third through hole communicates with the first through hole, and the torsion spring One end of is inserted into the third through hole.
  • the aforementioned torsion spring variable damping shaft faces the fixed unit, the moving unit is provided with an annular groove or an annular through hole, and the fixed unit is inserted into the annular groove or the annular through hole .
  • the annular groove or the annular through hole is arranged concentrically with the second through hole, and the diameter of the annular groove or the annular through hole is larger than that of the second through hole.
  • the diameter of the hole; the third through hole is located between the first through hole and the second through hole.
  • a fourth through hole is provided inside the fixing unit, and the fourth through hole communicates with the first through hole and the second through hole, and the first The connecting mechanism is fixedly arranged on the fourth through hole.
  • the aforementioned torsion spring variable damping shaft is away from the second through hole, and a fifth mounting hole is provided on the surface of the fixing unit along the direction of the fourth through hole, and the torsion spring is inserted Connected to the fifth mounting hole.
  • the above-mentioned torsion spring variable damping shaft is away from the second through hole, and a fifth mounting hole is provided on the surface of the fixing unit in a direction perpendicular to the fourth through hole, and one end of the torsion spring is inserted Connected to the fifth mounting hole.
  • a rotating part is provided on the side of the first connecting mechanism away from the direction of the second through hole, and one end of the torsion spring is close to the rotating part.
  • the above-mentioned torsion spring variable damping shaft further includes: at least one gasket, the gasket is sleeved on the first connection mechanism, and the gasket is located between the torsion spring and the second connection mechanism , And the gasket is located in the first through hole.
  • the embodiment of the present application discloses a torsion spring variable damping shaft, by providing a detachable fixed unit and a moving unit, and when the second connecting mechanism rotates on the first connecting mechanism, the moving unit will be driven to move to the fixed unit, thereby expanding
  • the movement space of the second connecting mechanism can compress and expand the torsion spring to the maximum, which improves the application range of the variable damping shaft of the torsion spring, and the installation and disassembly of the fixed unit and the mobile unit are more convenient.
  • Figure 1 is a perspective view of a torsion spring variable damping shaft disclosed in an embodiment of the application
  • Figure 2 is a schematic diagram of the explosive structure of Figure 1;
  • Figure 3 is a vertical sectional view of Figure 1;
  • FIG. 4 is a cross-sectional view of a torsion spring variable damping shaft disclosed in another embodiment of the application
  • FIG. 5 is a schematic diagram of an exploded structure of a torsion spring variable damping shaft disclosed in another embodiment of the application;
  • Mobile unit 1 First through hole 11, protrusion 12, second through hole 13, third through hole 14, annular groove or annular through hole 15, fixed unit 2, fourth through hole 21, fifth mounting hole 22 ,
  • an embodiment of the present application provides a torsion spring variable damping shaft, including a moving unit 1, a fixing unit 2, a first connecting mechanism 3, a second connecting mechanism 4, and a torsion spring 5;
  • the fixed unit 2 is detachably plugged into the mobile unit 1;
  • the first connecting mechanism 3 is arranged inside the fixed unit 2, and along the direction away from the mobile unit 1, the first connecting mechanism 3 is connected to the end of the fixed unit 2;
  • the torsion spring 5 is sleeved on the first connecting mechanism 3, and one end of the torsion spring 5 is inserted into the fixed unit 2, and the other end of the torsion spring 5 is inserted into the mobile unit 1.
  • the second connecting mechanism 4 is arranged in the mobile unit 1, and And it is used in conjunction with the first connecting mechanism 3; the second connecting mechanism 4 rotates on the first connecting mechanism 3 to drive the mobile unit 1 to move to the fixed unit 2.
  • the first connecting mechanism 3 and the fixing unit 2 are designed separately, the first connecting mechanism 3 is inserted into the fixing unit 2.
  • the embodiment of the present application discloses a torsion spring variable damping shaft.
  • the fixed unit 2 and the moving unit 1 are detachably installed, and when the second connecting mechanism 4 rotates on the first connecting mechanism 3, the moving unit 1 will be driven to the fixed unit. 2
  • Move, thereby expanding the movement space of the second connecting mechanism 4, can compress and extend the torsion spring to the maximum, improve the application range of the torsion spring variable damping shaft, and make the installation and disassembly of the fixed unit 2 and the mobile unit 1 more convenient .
  • a first through hole 11 is provided at one end of the mobile unit 1; in the direction close to the fixed unit 2, a protrusion 12 is provided at one end of the mobile unit 1, and a second through hole is provided inside the protrusion 12 13.
  • the first through hole 11 communicates with the second through hole 13; the first connecting mechanism 3 is inserted into the second through hole 13 and the first through hole 11, and the second connecting mechanism 4 is sleeved in the second through hole 13 The first connection mechanism 3 on.
  • a third through hole 14 is provided on the protrusion 12.
  • the third through hole 14 communicates with the first through hole 11, and one end of the torsion spring 5 is inserted into the third through hole. ⁇ 14 ⁇ .
  • the contact opposite ends of the mobile unit 1 and the fixed unit 2 are flat surfaces, and the two end surfaces abut against each other.
  • annular groove or annular through hole 15 is provided on the mobile unit 1, and the fixed unit 2 is inserted into the annular groove or annular through hole 15.
  • the annular groove or the annular through hole 15 and the second through hole 13 are arranged concentrically, and the diameter of the annular groove or the annular through hole 15 is larger than the diameter of the second through hole 13; the third through hole 14 Located between the first through hole 11 and the second through hole 13.
  • a fourth through hole 21 is provided inside the fixing unit 2, and the fourth through hole 21 is in communication with the first through hole 11 and the second through hole 13, and the first connecting mechanism 3 is fixedly arranged in the fourth through hole. 21 on.
  • a fifth mounting hole 22 is provided on the surface of the fixing unit 2 facing away from the second through hole 13 and along the direction of the fourth through hole 21, and the torsion spring 5 is inserted into Inside the fifth mounting hole 22. It can be seen from FIG. 2 that one end of the fifth mounting hole 22 and one end of the first connecting mechanism 3 are on the same horizontal plane. The torsion spring 5 is fixed through the fifth mounting hole 22, which is cleverly arranged.
  • a fifth mounting hole 22 is provided on the surface of the fixing unit 2 facing away from the second through hole 13 and perpendicular to the fourth through hole 21, and one end of the torsion spring 5 is inserted into Inside the fifth mounting hole 22.
  • the torsion spring 5 is fixed through the fifth mounting hole 22, which is cleverly arranged, and the position of the fifth mounting hole 22 is diversified and more flexible.
  • a rotating part 6 is provided on the side of the first connecting mechanism 3 facing away from the second through hole 13, and one end of the torsion spring 5 is close to the rotating part 6.
  • a rotating hole 61 is further provided on the rotating part 6 to facilitate hand grip. The rotating part 6 facilitates the rotating installation of the fixed unit 2 and the first connecting mechanism 3.
  • it further includes: at least one gasket 7, which is sleeved on the first connection mechanism 3, and the gasket 7 is located between the torsion spring 5 and the second connection mechanism 4, and the gasket 7 Located in the first through hole 11.
  • the gasket 7 includes an adjusting gasket 71 and a flat gasket 72.
  • the adjusting gasket 71 adopts a dish-shaped structure with a shaft hole.
  • the adjusting gasket 71 It has a non-slip effect with the port 3 of the first connecting mechanism.
  • adjustment pads 71 When there are two or more adjustment pads 71, they will be offset by the bottom or opening between the two adjustment pads 71; thus, adjustment pads can also be used
  • the structure tension of 71 itself can enhance the effect of adjustment.
  • the plate gasket 72 plays a compact role and can tightly connect the first connecting mechanism 3 and the second connecting mechanism 4 together.
  • the first connecting mechanism 3 is a T-shaped screw
  • the second connecting mechanism 4 is a nut
  • the top surface of the T-shaped screw is arranged in the fourth through hole 21 of the fixing unit 2 by interference fit.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Ocean & Marine Engineering (AREA)
  • Springs (AREA)
  • Mechanical Operated Clutches (AREA)
  • Physics & Mathematics (AREA)
  • Acoustics & Sound (AREA)
  • Aviation & Aerospace Engineering (AREA)

Abstract

一种扭簧可变阻尼转轴,包括移动单元(1)、固定单元(2)、第一连接机构(3)、第二连接机构(4)和扭簧(5);固定单元(2)可拆卸地插接于移动单元(1)上;第一连接机构(3)设置于固定单元(2)内部,第一连接机构(3)与固定单元(2)端部连接;扭簧(5)套装于第一连接机构(3)上,扭簧(5)一端插接于固定单元(2)上,扭簧(5)另一端插接于移动单元(1)上;第二连接机构(4)设置于移动单元(1)内,与第一连接机构(3)配合使用;第二连接机构(4)在第一连接机构(3)上转动,用于带动移动单元(1)向固定单元(2)移动。第二连接机构(4)在第一连接机构(3)上转动时会带动移动单元(1)向固定单元(2)移动,扩大了第二连接机构(4)的运动空间,能够最大的压缩和伸展扭簧(5),提高了扭簧可变阻尼转轴的应用范围,固定单元(2)和移动单元(1)的安装和拆卸更加方便。

Description

扭簧可变阻尼转轴 技术领域
本申请涉及转轴技术领域,尤其涉及一种扭簧可变阻尼转轴。
背景技术
在日常应用中,两个有旋转运动关系的零件,当需要其中一个旋转件实现在任意旋转角度暂停,且手动推动其中一个旋转件时,有阻尼手感是一种常见应用需求。
目前的阻尼转轴大多套装一个壳体内,通过螺母在螺钉上的旋转调节扭簧的扭矩,而壳体的位移不会发生变化,大大的限制了螺母的运动空间,使阻尼转轴应用受限。
实用新型内容
本申请实施例提供了一种扭簧可变阻尼转轴,以解决壳体的位移不会发生变化,大大的限制了螺母的运动空间,使阻尼转轴应用受限的问题。
本申请实施例采用下述技术方案:
第一方面,本申请实施例提供了一种扭簧可变阻尼转轴,包括移动单元、固定单元、第一连接机构、第二连接机构和扭簧;
所述固定单元可拆卸地插接于所述移动单元上;
所述第一连接机构设置于所述固定单元内部,且沿着背离所述移动单元方向,所述第一连接机构与所述固定单元端部连接;
所述扭簧套装于所述第一连接机构上,且所述扭簧一端插接于所述固定单元上,所述扭簧另一端插接于所述移动单元上;
所述第二连接机构设置于所述移动单元内,且与所述第一连接机构配合使用;所述第二连接机构在所述第一连接机构上转动,用于带动所述移动单元向 所述固定单元移动。
可选地,上述的扭簧可变阻尼转轴,背离所述固定单元方向,所述移动单元一端设置第一通孔;靠近所述固定单元方向,所述移动单元一端设置凸起,所述凸起内部设置第二通孔,所述第一通孔与所述第二通孔连通;所述第一连接机构插接于所述第二通孔和所述第一通孔内,所述第二连接机构套装于位于所述第二通孔的所述第一连接机构上。
可选地,上述的扭簧可变阻尼转轴,朝向所述固定单元方向,所述凸起上设置第三通孔,所述第三通孔与所述第一通孔连通,所述扭簧的一端插接于所述第三通孔内。
可选地,上述的扭簧可变阻尼转轴,朝向所述固定单元方向,所述移动单元设置环形凹槽或者环形通孔,所述固定单元插接于所述环形凹槽或者环形通孔内。
可选地,上述的扭簧可变阻尼转轴,所述环形凹槽或者环形通孔与所述第二通孔同心设置,且所述环形凹槽或者环形通孔的直径大于所述第二通孔的直径;所述第三通孔位于所述第一通孔与所述第二通孔之间。
可选地,上述的扭簧可变阻尼转轴,所述固定单元内部设置第四通孔,所述第四通孔与所述第一通孔、所述第二通孔连通,所述第一连接机构固定设置于所述第四通孔上。
可选地,上述的扭簧可变阻尼转轴,背离所述第二通孔,且沿着所述第四通孔方向的所述固定单元的表面上设置第五安装孔,所述扭簧插接于所述第五安装孔内。
可选地,上述的扭簧可变阻尼转轴,背离所述第二通孔,且垂直所述第四通孔方向的所述固定单元的表面上设置第五安装孔,所述扭簧一端插接于所述 第五安装孔内。
可选地,上述的扭簧可变阻尼转轴,背离所述第二通孔方向的所述第一连接机构一侧设置旋转部,所述扭簧一端紧挨所述旋转部。
可选地,上述的扭簧可变阻尼转轴,还包括:至少一个垫片,所述垫片套装于所述第一连接机构上,且所述垫片位于扭簧与所述第二连接机构之间,且所述垫片位于所述第一通孔内。
本申请实施例采用的上述至少一个技术方案能够达到以下有益效果:
本申请实施例公开了扭簧可变阻尼转轴,通过设置可拆卸安装的固定单元和移动单元,且第二连接机构在第一连接机构上转动时会带动移动单元向固定单元移动,进而扩大了第二连接机构的运动空间,能够最大的压缩和伸展扭簧,提高了扭簧可变阻尼转轴的应用范围,且固定单元和移动单元的安装和拆卸更加方便。
附图说明
此处所述明的附图用来提供对本申请的进一步理解,构成本申请的一部分,本申请的示意性实施例及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1为本申请一个实施例公开的扭簧可变阻尼转轴的立体图;
图2为图1的爆炸结构示意图;
图3为图1的竖直方向剖视图;
图4为本申请另一实施例公开的扭簧可变阻尼转轴的剖视图
图5为本申请另一实施例公开的扭簧可变阻尼转轴的爆炸结构示意图;
附图标记说明:
移动单元1,第一通孔11,凸起12,第二通孔13,第三通孔14,环形凹槽或者环形通孔15,固定单元2,第四通孔21,第五安装孔22,第一连接机 构3,第二连接机构4,扭簧5,旋转部6,旋转孔61,垫片7,调节垫片71,平板垫片72。
具体实施方式
为使本申请的目的、技术方案和优点更加清楚,下面将结合本申请具体实施例及相应的附图对本申请技术方案进行清楚、完整地描述。显然,所描述的实施例仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
以下结合附图,详细说明本申请各实施例提供的技术方案。
如图1、图2和图5所示,本申请实施例提供了一种扭簧可变阻尼转轴,包括移动单元1、固定单元2、第一连接机构3、第二连接机构4和扭簧5;固定单元2可拆卸地插接于移动单元1上;第一连接机构3设置于固定单元2内部,且沿着背离移动单元1方向,第一连接机构3与固定单元2端部连接;扭簧5套装于第一连接机构3上,且扭簧5一端插接于固定单元2上,扭簧5另一端插接于移动单元1上;第二连接机构4设置于移动单元1内,且与第一连接机构3配合使用;第二连接机构4在第一连接机构3上转动,用于带动移动单元1向固定单元2移动。
当第一连接机构3与固定单元2为分体设计时,第一连接机构3插接于固定单元2内。
本申请实施例公开了扭簧可变阻尼转轴,通过设置可拆卸安装的固定单元2和移动单元1,且第二连接机构4在第一连接机构3上转动时会带动移动单元1向固定单元2移动,进而扩大了第二连接机构4的运动空间,能够最大的压缩和伸展扭簧,提高了扭簧可变阻尼转轴的应用范围,且固定单元2和移动单元1的安装和拆卸更加方便。
本申请的一个实施例中,在背离固定单元2方向,移动单元1一端设置第一通孔11;靠近固定单元2方向,移动单元1一端设置凸起12,凸起12内部 设置第二通孔13,第一通孔11与第二通孔13连通;第一连接机构3插接于第二通孔13和第一通孔11内,第二连接机构4套装于位于第二通孔13的第一连接机构3上。
本申请的一个实施例中,在朝向固定单元2方向,凸起12上设置第三通孔14,第三通孔14与第一通孔11连通,扭簧5的一端插接于第三通孔14内。
本申请的一个实施例中,移动单元1和固定单元2的接触相对端为平面,两端面抵接。
本申请的一个实施例中,朝向固定单元2方向,移动单元1上设置环形凹槽或者环形通孔15,固定单元2插接于环形凹槽或者环形通孔15内。
本申请的一个实施例中,环形凹槽或者环形通孔15与第二通孔13同心设置,且环形凹槽或者环形通孔15的直径大于第二通孔13的直径;第三通孔14位于第一通孔11与第二通孔13之间。
本申请的一个实施例中,固定单元2内部设置第四通孔21,第四通孔21与第一通孔11、第二通孔13连通,第一连接机构3固定设置于第四通孔21上。
如图4所示,本申请的一个实施例中,背离第二通孔13,且沿着第四通孔21方向的固定单元2的表面上设置第五安装孔22,扭簧5插接于第五安装孔22内。由图2可知,第五安装孔22一端与第一连接机构3一端处于同一水平面。通过第五安装孔22对扭簧5进行固定,设置巧妙。
如图3所示,本申请的一个实施例中,背离第二通孔13,且垂直第四通孔21方向的固定单元2的表面上设置第五安装孔22,扭簧5一端插接于第五安装孔22内。通过第五安装孔22对扭簧5进行固定,设置巧妙,并且第五安装孔22的位置设置多样化,更加灵活。
如图5所示,本申请的一个实施例中,背离第二通孔13方向的第一连接机构3一侧设置旋转部6,扭簧5一端紧挨旋转部6。进一步在旋转部6上设置旋转孔61,便于手部握持。通过旋转部6便于对固定单元2及第一连接机构 3进行旋转安装。
本申请的一个实施例中,还包括:至少一个垫片7,垫片7套装于第一连接机构3上,且垫片7位于扭簧5与第二连接机构4之间,且垫片7位于第一通孔11内。
如图5所示,垫片7包括调节垫片71和平板垫片72,调节垫片71采用具有轴孔的碟状结构体,当使用一个调节垫片71进行调节时,通过调节垫片71与第一连接机构3端口起到防滑作用,两个或者两个以上的调节垫片71时,通过两个调节垫片71之间的碟底或碟口相抵;由此也可利用调节垫片71本身的结构张力,来增强调节的效果。平板垫片72起到紧凑的作用,能够将第一连接机构3、第二连机构4紧密的连接在一起。
本申请的一个实施例中,第一连接机构3为T字型螺钉,第二连接机构4为螺母,T字型螺钉顶面通过过盈配合设置于固定单元2的第四通孔21内。
本申请上文实施例中重点描述的是各个实施例之间的不同,各个实施例之间不同的优化特征只要不矛盾,均可以组合形成更优的实施例,考虑到行文简洁,在此则不再赘述。
以上所述仅为本申请的实施例而已,并不用于限制本申请。对于本领域技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原理之内所作的任何修改、等同替换、改进等,均应包含在本申请的权利要求范围之内。

Claims (10)

  1. 一种扭簧可变阻尼转轴,其中,包括移动单元、固定单元、第一连接机构、第二连接机构和扭簧;
    所述固定单元可拆卸地插接于所述移动单元上;
    所述第一连接机构设置于所述固定单元内部,且沿着背离所述移动单元方向,所述第一连接机构与所述固定单元端部连接;
    所述扭簧套装于所述第一连接机构上,且所述扭簧一端插接于所述固定单元上,所述扭簧另一端插接于所述移动单元上;
    所述第二连接机构设置于所述移动单元内,且与所述第一连接机构配合使用;所述第二连接机构在所述第一连接机构上转动,用于带动所述移动单元向所述固定单元移动。
  2. 根据权利要求1所述的扭簧可变阻尼转轴,其中,背离所述固定单元方向,所述移动单元一端设置第一通孔;靠近所述固定单元方向,所述移动单元一端设置凸起,所述凸起内部设置第二通孔,所述第一通孔与所述第二通孔连通;所述第一连接机构插接于所述第二通孔和所述第一通孔内,所述第二连接机构套装于位于所述第二通孔的所述第一连接机构上。
  3. 根据权利要求2所述的扭簧可变阻尼转轴,其中,朝向所述固定单元方向,所述凸起上设置第三通孔,所述第三通孔与所述第一通孔连通,所述扭簧的一端插接于所述第三通孔内。
  4. 根据权利要求3所述的扭簧可变阻尼转轴,其中,朝向所述固定单元方向,所述移动单元设置环形凹槽或者环形通孔,所述固定单元插接于所述环形凹槽或者环形通孔内。
  5. 根据权利要求4所述的扭簧可变阻尼转轴,其中,所述环形凹槽或者环形通孔与所述第二通孔同心设置,且所述环形凹槽或者环形通孔的直径大于所 述第二通孔的直径;所述第三通孔位于所述第一通孔与所述第二通孔之间。
  6. 根据权利要求3所述的扭簧可变阻尼转轴,其中,所述固定单元内部设置第四通孔,所述第四通孔与所述第一通孔、所述第二通孔连通,所述第一连接机构固定设置于所述第四通孔上。
  7. 根据权利要求6所述的扭簧可变阻尼转轴,其中,背离所述第二通孔,且沿着所述第四通孔方向的所述固定单元的表面上设置第五安装孔,所述扭簧插接于所述第五安装孔内。
  8. 根据权利要求6所述的扭簧可变阻尼转轴,其中,背离所述第二通孔,且垂直所述第四通孔方向的所述固定单元的表面上设置第五安装孔,所述扭簧一端插接于所述第五安装孔内。
  9. 根据权利要求6所述的扭簧可变阻尼转轴,其中,背离所述第二通孔方向的所述第一连接机构一侧设置旋转部,所述扭簧一端紧挨所述旋转部。
  10. 根据权利要求2所述的扭簧可变阻尼转轴,其中,还包括:至少一个垫片,所述垫片套装于所述第一连接机构上,且所述垫片位于扭簧与所述第二连接机构之间,且所述垫片位于所述第一通孔内。
PCT/CN2019/130457 2019-02-14 2019-12-31 扭簧可变阻尼转轴 WO2020164325A1 (zh)

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