WO2020224671A2 - 一种机械设备防震装置 - Google Patents

一种机械设备防震装置 Download PDF

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WO2020224671A2
WO2020224671A2 PCT/CN2020/105322 CN2020105322W WO2020224671A2 WO 2020224671 A2 WO2020224671 A2 WO 2020224671A2 CN 2020105322 W CN2020105322 W CN 2020105322W WO 2020224671 A2 WO2020224671 A2 WO 2020224671A2
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shock
damping
absorbing
cavity
mechanical equipment
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PCT/CN2020/105322
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English (en)
French (fr)
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WO2020224671A3 (zh
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卢思雨
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苏州喜全软件科技有限公司
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Priority to JP2020600142U priority Critical patent/JP3233631U/ja
Priority to DE212020000141.3U priority patent/DE212020000141U1/de
Publication of WO2020224671A2 publication Critical patent/WO2020224671A2/zh
Publication of WO2020224671A3 publication Critical patent/WO2020224671A3/zh

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  • the utility model relates to the technical field of mechanical equipment, in particular to a shockproof device for mechanical equipment.
  • the mechanical equipment consists of a driving device, a transmission device, a transmission device, a working device, a braking device, a protection device, a lubrication system, and cooling. System and other parts.
  • a shock absorber to absorb the impact of the mechanical equipment, ensuring the good use of the mechanical equipment, and the overall effect of the traditional anti-vibration device is not good.
  • the performance is poor, and the overall energy absorption range is small, which cannot fully absorb the external impact force. At the same time, it cannot absorb the impact force in multiple directions with high precision, and it cannot effectively protect the mechanical equipment.
  • the existing technology has the following shortcomings: the traditional anti-vibration device has poor overall use effect, poor overall anti-seismic performance, and at the same time, the overall energy absorption range is small, unable to fully absorb the external impact force, and cannot perform the impact force with high precision. Multi-directional absorption treatment cannot effectively protect mechanical equipment, and the overall service life is relatively low.
  • the purpose of the utility model is to provide an anti-shock device for mechanical equipment to solve the poor overall use effect of traditional anti-shock devices and poor overall anti-vibration performance.
  • the overall energy absorption range is small and cannot fully absorb external impact.
  • the impact force cannot be absorbed in multiple directions with high precision.
  • a shock-proof device for mechanical equipment comprising: a base, a support platform, a No. 1 shock-absorbing assembly, two sets of No. 2 shock-absorbing assemblies, and an installation platform.
  • the bracket is installed above the base, the No. 1 shock absorption component is embedded in the center of the support platform, two sets of the No. 2 shock absorption component are embedded on both sides of the top of the support platform, and the installation platform is installed Shock components, the top of two sets of No. 2 shock absorption components.
  • the two sets of the No. 2 damping components each include a damping cavity, a guide plate, a guide column, and a buffer spring.
  • the damping cavity is opened on both sides of the top end of the support platform, and the guide plate is slidably mounted on the damping Inside the cavity, the guide column passes through the top end of the damping cavity and is connected to the guide plate, the buffer spring is installed between the guide column and the damping cavity, and the top end of the guide column is locked with the bottom end of the mounting platform for stable alignment.
  • the external vibration force is absorbed, which improves the stability of the mechanical equipment and prevents the mechanical equipment from being damaged by the external vibration force.
  • the guide plate is attached to the inner wall of the shock-absorbing cavity, and the inner wall of the shock-absorbing cavity is provided with a slide rail matching the guide plate.
  • the No. 1 shock absorption assembly includes an energy absorption cavity, a piston, a linkage column, an exhaust pipe, an air intake pipe, and a shock absorption spring
  • the energy absorption cavity is opened at the center of the inner top of the support platform
  • the piston is slidably installed Inside the energy absorbing cavity
  • the linkage column passes through the top end of the energy absorbing cavity and is connected to the piston
  • the exhaust pipe is installed at the bottom end of the energy absorbing cavity
  • the intake pipe is installed on one side of the energy absorbing cavity
  • the shock absorbing spring Installed between the installation platform and the support table
  • the shock-absorbing spring is sleeved outside the linkage column.
  • the inlet pipe and the exhaust pipe are evenly connected to the outside world, a one-way valve is installed at the end of the exhaust pipe, the output end of the one-way valve faces the outside of the energy absorption chamber, and the intake pipe end A No. 2 check valve is installed at the place, and the output end of the No. 2 check valve faces the inside of the energy absorption chamber, which can circulate and guide the gas and decelerate the piston, which improves the anti-vibration effect.
  • the bottom end of the installation platform is locked and fixed with the linkage column and the guide column, and a rubber pad is installed on the upper surface of the installation platform.
  • This utility model is equipped with two sets of No. 2 damping components.
  • the driving guide column and the guide plate are slidably installed inside the damping cavity to absorb the external vibration force, and at the same time use the assistance of the buffer spring
  • the external vibration can be stably absorbed, which improves the stability of the mechanical equipment and avoids damage to the mechanical equipment by the external vibration.
  • the utility model is equipped with No. 1 damping component, which can absorb the external impact force by the cooperation of the piston and the energy absorbing cavity to slide, and when the piston moves down, the gas inside the energy absorbing cavity is driven to be discharged from the exhaust pipe.
  • the air intake pipe is used to inhale the outside air to ensure the balance of the gas in the energy absorption chamber.
  • the shock-absorbing spring With the assistance of the shock-absorbing spring, the vibration force can be absorbed, and the movement of the piston and the circulation of the gas can be used to decelerate And under the absorption of the shock-absorbing spring, the full absorption of external impact is realized, and the stability of the mechanical equipment is guaranteed.
  • Figure 1 is a schematic diagram of the overall structure of the utility model
  • Figure 2 is a schematic diagram of the structure of the No. 2 shock absorption component of the utility model
  • Figure 3 is a schematic diagram of the structure of the No. 1 shock absorption component of the utility model
  • Figure 4 is an enlarged schematic diagram of the part A in Figure 2 of the utility model.
  • this utility model provides a technical solution: a shock-proof device for mechanical equipment, including: a base 1, a support platform 2, a No. 1 shock-absorbing component, two sets of No. 2 shock-absorbing components, and an installation platform 3.
  • the support platform 2 is installed above the base 1 through a bracket, the first shock absorbing component is embedded in the center of the support platform 2, and two sets of the second shock absorbing component are embedded on the top of the support platform 2.
  • the installation platform 3 is installed at the top of the No. 1 shock-absorbing assembly and two sets of No. 2 shock-absorbing assemblies.
  • the two groups of the No. 2 damping components each include a damping cavity 4, a guide plate 5, a guide column 6 and a buffer spring 7.
  • the damping cavity 4 is opened on both sides of the inner top of the support platform 2.
  • the guide plate 5 is slidably installed inside the shock-absorbing cavity 4, the guide post 6 passes through the top end of the shock-absorbing cavity 4 and is connected to the guide plate 5, the buffer spring 7 is installed between the guide post 6 and the shock-absorbing cavity 4, and the guide post 6 The top end is locked with the bottom end of the mounting platform 3.
  • the driving guide column 6 and the guide plate 5 are slidably installed inside the shock absorption chamber 4 to absorb the external vibration force, and at the same time, with the aid of the buffer spring 7, In turn, it can stably absorb the external vibration force, improve the stability of the mechanical equipment, and prevent the mechanical equipment from being damaged by the external vibration force;
  • the guide plate 5 is attached to the inner wall of the shock-absorbing cavity 4, and the inner wall of the shock-absorbing cavity 4 is provided with a slide rail matching the guide plate 5;
  • the No. 1 shock absorbing assembly includes an energy absorbing cavity 8, a piston 9, a linkage column 10, an exhaust pipe 11, an intake pipe 12, and a shock absorbing spring 13.
  • the energy absorbing cavity 8 is opened in the center of the inner top of the support platform 2.
  • the piston 9 is slidably installed inside the energy absorption chamber 8, the linkage column 10 passes through the top end of the energy absorption chamber 8 and is connected to the piston 9, and the exhaust pipe 11 is installed at the bottom end of the energy absorption chamber 8.
  • the air pipe 12 is installed on the side of the energy absorbing cavity 8, the damping spring 13 is installed between the installation platform 3 and the support platform 2, and the damping spring 13 is sleeved outside the linkage column 10, and the piston 9 and the energy absorbing
  • the cavity 8 slides in cooperation, the external impact can be absorbed, and when the piston 9 moves down, the gas inside the energy absorption cavity 8 is driven to be discharged along the exhaust pipe 11, and when the piston 9 is reset, the intake pipe 12 is used to inhale the outside air ,
  • the shock force can be absorbed, by adopting the movement of the piston 9, the deceleration of the circulation of the gas, and the absorption of the damping spring 13. It fully absorbs the external impact force and ensures the stability of the mechanical equipment;
  • a one-way valve 14 is installed at the end of the exhaust pipe 11, and the output end of the one-way valve 14 faces the outside of the energy absorbing chamber 8.
  • a No. 2 check valve 15 is installed at the end of the intake pipe 12, and the output end of the No. 2 check valve 15 faces the inside of the energy absorbing chamber 8, which can circulate and guide the gas and decelerate the piston 9. Improve the seismic effect;
  • the bottom end of the installation platform 3 is locked and fixed with the linkage column 10 and the guide column 6, and a rubber pad is installed on the upper surface of the installation platform 3.
  • the base 1 When in use, the base 1 is first positioned and installed, and then the mechanical equipment is installed on the installation platform 3 to ensure the normal use of the mechanical equipment.
  • the drive guide column 6 and the guide plate 5 are slidably installed inside the shock-absorbing cavity 4 to absorb the external vibration force.
  • the buffer spring 7 With the aid of the buffer spring 7, the external vibration force can be stably absorbed and the machine is improved.
  • the stability of the equipment is used to avoid damage to the mechanical equipment by the external vibration force.
  • the No. 1 damping component is provided to drive the linkage column 10 down when the mechanical equipment is subjected to external vibration, using the cooperation of the piston 9 and the energy absorbing cavity 8.
  • the external impact can be absorbed, and when the piston 9 moves downward, the gas inside the energy absorption chamber 8 is driven to be discharged along the exhaust pipe 11.
  • the intake pipe 12 is used to inhale the outside air to ensure energy absorption
  • the balance of the gas inside the cavity 8 can absorb the shock force with the assistance of the shock absorber spring 13.
  • the shock to the outside world is realized by the movement of the piston 9, the deceleration of the circulation of gas and the absorption of the shock absorber spring 13.
  • the full absorption of force ensures the stability of mechanical equipment and improves the service life of mechanical equipment.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Acoustics & Sound (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Vibration Prevention Devices (AREA)
  • Vibration Dampers (AREA)

Abstract

本实用新型公开了一种机械设备防震装置,包括:基座、支撑台、一号减震组件、两组二号减震组件以及安装平台,所述支撑台通过支架安装在基座上方,所述一号减震组件嵌设在支撑台内部中心处,两组所述二号减震组件嵌设在支撑台顶端两侧,所述安装平台安装在一号减震组件、两组二号减震组件顶端。本实用新型整体防震效果佳,可全面的对外界的冲击力进行吸收,通过采用活塞的运动、气体的循环流通减速以及减震弹簧的吸收下,实现了对外界冲击力的充分吸收,保证了机械设备使用的稳定性,提高了机械设备的使用寿命。

Description

一种机械设备防震装置 技术领域
本实用新型涉及机械设备技术领域,具体为一种机械设备防震装置。
背景技术
机械设备种类繁多,机械设备运行时,其一些部件甚至其本身可进行不同形式的机械运动,机械设备由驱动装置、变速装置、传动装置、工作装置、制动装置、防护装置、润滑系统、冷却系统等部分组成,同时机械设备在使用时,需要使用到减震装置对机械设备受到的冲击力进行吸收,保证了机械设备的良好使用状态,且传统的防震装置整体使用效果不佳,整体抗震性能较差,同时整体吸能范围较小,无法全面的对外界冲击力进行吸收,同时不能高精度的对冲击力进行多方位的吸收处理,无法有效的对机械设备进行防护。
现有技术有以下不足:传统的防震装置整体使用效果不佳,整体抗震性能较差,同时整体吸能范围较小,无法全面的对外界冲击力进行吸收,同时不能高精度的对冲击力进行多方位的吸收处理,无法有效的对机械设备进行防护,同时整体使用寿命较低。
实用新型内容
本实用新型的目的在于提供一种机械设备防震装置,以解决传统的防震装置整体使用效果不佳,整体抗震性能较差,同时整体吸能范围较小,无法全面的对外界冲击力进行吸收,同时不能高精度的对冲击力进行多方位的吸收处理等问题。
为实现上述目的,本实用新型提供如下技术方案:一种机械设备防震装置,包括:基座、支撑台、一号减震组件、两组二号减震组件以及安装平台,所述支撑台通过支架安装在基座上方,所述一号减震组件嵌设在支撑台内部中心处,两组所述二号减震组件嵌设在支撑台顶端两侧,所述安装平台安装 在一号减震组件、两组二号减震组件顶端。
优选的,两组所述二号减震组件均包括减震腔、导向板、导向柱以及缓冲弹簧,所述减震腔开设在支撑台内部顶端两侧,所述导向板滑动安装在减震腔内部,所述导向柱穿过减震腔顶端与导向板连接,所述缓冲弹簧安装在导向柱、减震腔之间,所述导向柱顶端与安装平台底端锁合,可稳定的对外界的震动力进行吸收,提升了机械设备的使用稳定性,避免机械设备受到外界震动力发生损伤。
优选的,所述导向板与减震腔内壁贴合,且所述减震腔内壁开设有与导向板匹配的滑轨。
优选的,所述一号减震组件包括吸能腔、活塞、联动柱、排气管、进气管以及减震弹簧,所述吸能腔开设在支撑台内部顶端中心处,所述活塞滑动安装在吸能腔内部,所述联动柱穿过吸能腔顶端与活塞连接,所述排气管安装在吸能腔底端,所述进气管安装在吸能腔一侧,所述减震弹簧安装在安装平台、支撑台之间,且所述减震弹簧套设在联动柱外部,通过采用活塞的运动、气体的循环流通减速以及减震弹簧的吸收下,实现了对外界冲击力的充分吸收,保证了机械设备使用的稳定性。
优选的,所述进气管、排气管均匀外界连通,所述排气管端处安装有一号单向阀,所述一号单向阀的输出端朝向吸能腔外部,所述进气管端处安装有二号单向阀,所述二号单向阀的输出端朝向吸能腔内部,可对气体进行循环导向处理,可对活塞进行减速处理,提升了抗震效果。
优选的,所述安装平台底端与联动柱、导向柱锁合固定,且所述安装平台上表面安装有橡胶垫。
具备以下有益效果:
(1)本实用新型通过设有两组二号减震组件,当机械设备发生震动时,驱动导向柱以及导向板滑动安装在减震腔内部对外界震动力进行吸收,同时 利用缓冲弹簧的辅助下,进而可稳定的对外界的震动力进行吸收,提升了机械设备的使用稳定性,避免机械设备受到外界震动力发生损伤。
(2)本实用新型通过设有一号减震组件,利用活塞与吸能腔的配合滑动下,可对外界冲击力进行吸收,且活塞在下移时,驱使吸能腔内部气体顺延排气管排出,当活塞复位时,利用进气管将外界气体吸入,保证吸能腔内部气体的平衡,同时在减震弹簧的辅助下,可对震动力进行吸收,通过采用活塞的运动、气体的循环流通减速以及减震弹簧的吸收下,实现了对外界冲击力的充分吸收,保证了机械设备使用的稳定性。
附图说明
图1为本实用新型的整体的结构示意图;
图2为本实用新型的二号减震组件结构示意图;
图3为本实用新型的一号减震组件结构示意图;
图4为本实用新型的图2中A处放大示意图。
图中:1、基座;2、支撑台;3、安装平台;4、减震腔;5、导向板;6、导向柱;7、缓冲弹簧;8、吸能腔;9、活塞;10、联动柱;11、排气管;12、进气管;13、减震弹簧;14、一号单向阀;15、二号单向阀。
具体实施方式
如图1-4所示,本实用新型提供一种技术方案:一种机械设备防震装置,包括:基座1、支撑台2、一号减震组件、两组二号减震组件以及安装平台3,所述支撑台2通过支架安装在基座1上方,所述一号减震组件嵌设在支撑台2内部中心处,两组所述二号减震组件嵌设在支撑台2顶端两侧,所述安装平台3安装在一号减震组件、两组二号减震组件顶端。
进一步,两组所述二号减震组件均包括减震腔4、导向板5、导向柱6以及缓冲弹簧7,所述减震腔4开设在支撑台2内部顶端两侧,所述导向板5滑动安装在减震腔4内部,所述导向柱6穿过减震腔4顶端与导向板5连接, 所述缓冲弹簧7安装在导向柱6、减震腔4之间,所述导向柱6顶端与安装平台3底端锁合,当机械设备发生震动时,驱动导向柱6以及导向板5滑动安装在减震腔4内部对外界震动力进行吸收,同时利用缓冲弹簧7的辅助下,进而可稳定的对外界的震动力进行吸收,提升了机械设备的使用稳定性,避免机械设备受到外界震动力发生损伤;
进一步,所述导向板5与减震腔4内壁贴合,且所述减震腔4内壁开设有与导向板5匹配的滑轨;
进一步,所述一号减震组件包括吸能腔8、活塞9、联动柱10、排气管11、进气管12以及减震弹簧13,所述吸能腔8开设在支撑台2内部顶端中心处,所述活塞9滑动安装在吸能腔8内部,所述联动柱10穿过吸能腔8顶端与活塞9连接,所述排气管11安装在吸能腔8底端,所述进气管12安装在吸能腔8一侧,所述减震弹簧13安装在安装平台3、支撑台2之间,且所述减震弹簧13套设在联动柱10外部,利用活塞9与吸能腔8的配合滑动下,可对外界冲击力进行吸收,且活塞9在下移时,驱使吸能腔8内部气体顺延排气管11排出,当活塞9复位时,利用进气管12将外界气体吸入,保证吸能腔8内部气体的平衡,同时在减震弹簧13的辅助下,可对震动力进行吸收,通过采用活塞9的运动、气体的循环流通减速以及减震弹簧13的吸收下,实现了对外界冲击力的充分吸收,保证了机械设备使用的稳定性;
进一步,所述进气管12、排气管11均匀外界连通,所述排气管11端处安装有一号单向阀14,所述一号单向阀14的输出端朝向吸能腔8外部,所述进气管12端处安装有二号单向阀15,所述二号单向阀15的输出端朝向吸能腔8内部,可对气体进行循环导向处理,可对活塞9进行减速处理,提升了抗震效果;
进一步,所述安装平台3底端与联动柱10、导向柱6锁合固定,且所述安装平台3上表面安装有橡胶垫。
工作原理:在使用时,首先将基座1进行定位安装,随后将机械设备安装在安装平台3上,确保了机械设备的正常使用,通过设有两组二号减震组件,当机械设备发生震动时,驱动导向柱6以及导向板5滑动安装在减震腔4内部对外界震动力进行吸收,同时利用缓冲弹簧7的辅助下,进而可稳定的对外界的震动力进行吸收,提升了机械设备的使用稳定性,避免机械设备受到外界震动力发生损伤,同时通过设有一号减震组件,当机械设备受到外界振动时,驱使联动柱10下移,利用活塞9与吸能腔8的配合滑动下,可对外界冲击力进行吸收,且活塞9在下移时,驱使吸能腔8内部气体顺延排气管11排出,当活塞9复位时,利用进气管12将外界气体吸入,保证吸能腔8内部气体的平衡,同时在减震弹簧13的辅助下,可对震动力进行吸收,通过采用活塞9的运动、气体的循环流通减速以及减震弹簧13的吸收下,实现了对外界冲击力的充分吸收,保证了机械设备使用的稳定性,提高了机械设备的使用寿命。

Claims (6)

  1. 一种机械设备防震装置,其特征在于,包括:基座(1)、支撑台(2)、一号减震组件、两组二号减震组件以及安装平台(3),所述支撑台(2)通过支架安装在基座(1)上方,所述一号减震组件嵌设在支撑台(2)内部中心处,两组所述二号减震组件嵌设在支撑台(2)顶端两侧,所述安装平台(3)安装在一号减震组件、两组二号减震组件顶端。
  2. 根据权利要求1所述的一种机械设备防震装置,其特征在于:两组所述二号减震组件均包括减震腔(4)、导向板(5)、导向柱(6)以及缓冲弹簧(7),所述减震腔(4)开设在支撑台(2)内部顶端两侧,所述导向板(5)滑动安装在减震腔(4)内部,所述导向柱(6)穿过减震腔(4)顶端与导向板(5)连接,所述缓冲弹簧(7)安装在导向柱(6)、减震腔(4)之间,所述导向柱(6)顶端与安装平台(3)底端锁合。
  3. 根据权利要求2所述的一种机械设备防震装置,其特征在于:所述导向板(5)与减震腔(4)内壁贴合,且所述减震腔(4)内壁开设有与导向板(5)匹配的滑轨。
  4. 根据权利要求1所述的一种机械设备防震装置,其特征在于:所述一号减震组件包括吸能腔(8)、活塞(9)、联动柱(10)、排气管(11)、进气管(12)以及减震弹簧(13),所述吸能腔(8)开设在支撑台(2)内部顶端中心处,所述活塞(9)滑动安装在吸能腔(8)内部,所述联动柱(10)穿过吸能腔(8)顶端与活塞(9)连接,所述排气管(11)安装在吸能腔(8)底端,所述进气管(12)安装在吸能腔(8)一侧,所述减震弹簧(13)安装在安装平台(3)、支撑台(2)之间,且所述减震弹簧(13)套设在联动柱(10)外部。
  5. 根据权利要求4所述的一种机械设备防震装置,其特征在于:所述进气管(12)、排气管(11)均匀外界连通,所述排气管(11)端处安装有一号单向阀(14),所述一号单向阀(14)的输出端朝向吸能腔(8)外部,所 述进气管(12)端处安装有二号单向阀(15),所述二号单向阀(15)的输出端朝向吸能腔(8)内部。
  6. 根据权利要求1所述的一种机械设备防震装置,其特征在于:所述安装平台(3)底端与联动柱(10)、导向柱(6)锁合固定,且所述安装平台(3)上表面安装有橡胶垫。
PCT/CN2020/105322 2020-07-25 2020-07-28 一种机械设备防震装置 WO2020224671A2 (zh)

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CN113482883B (zh) * 2021-08-24 2023-03-03 宁波华生压缩机有限公司 一种减振降噪的空压机
CN114183326A (zh) * 2021-12-22 2022-03-15 珠海格力电器股份有限公司 压缩机的减振装置及压缩机
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