WO2016095862A1 - 跑步机的跑台独立悬挂避震机构 - Google Patents

跑步机的跑台独立悬挂避震机构 Download PDF

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Publication number
WO2016095862A1
WO2016095862A1 PCT/CN2015/097968 CN2015097968W WO2016095862A1 WO 2016095862 A1 WO2016095862 A1 WO 2016095862A1 CN 2015097968 W CN2015097968 W CN 2015097968W WO 2016095862 A1 WO2016095862 A1 WO 2016095862A1
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running
suspension
cantilever
frame
running platform
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PCT/CN2015/097968
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English (en)
French (fr)
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朱征源
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浙江风尚科技有限公司
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Priority to US15/537,766 priority Critical patent/US9937375B2/en
Publication of WO2016095862A1 publication Critical patent/WO2016095862A1/zh

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B22/00Exercising apparatus specially adapted for conditioning the cardio-vascular system, for training agility or co-ordination of movements
    • A63B22/02Exercising apparatus specially adapted for conditioning the cardio-vascular system, for training agility or co-ordination of movements with movable endless bands, e.g. treadmills
    • A63B22/0207Exercising apparatus specially adapted for conditioning the cardio-vascular system, for training agility or co-ordination of movements with movable endless bands, e.g. treadmills having shock absorbing means
    • A63B22/0214Exercising apparatus specially adapted for conditioning the cardio-vascular system, for training agility or co-ordination of movements with movable endless bands, e.g. treadmills having shock absorbing means between the belt supporting deck and the frame
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B22/00Exercising apparatus specially adapted for conditioning the cardio-vascular system, for training agility or co-ordination of movements
    • A63B22/02Exercising apparatus specially adapted for conditioning the cardio-vascular system, for training agility or co-ordination of movements with movable endless bands, e.g. treadmills
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B71/00Games or sports accessories not covered in groups A63B1/00 - A63B69/00
    • A63B71/0054Features for injury prevention on an apparatus, e.g. shock absorbers

Definitions

  • the invention belongs to the technical field of fitness equipment, and in particular relates to a running suspension independent suspension mechanism of a treadmill.
  • a shock absorbing treadmill [application number: 201320136260.2] including a base and a column connected together, and a frame is also provided above the base, the frame being composed of a first frame and a second
  • the frame is composed of one end of the first frame connected to the column or the base, and the other end is hinged to the end of the second frame by a fixed shaft, and the bottom of the frame is provided with a damping device.
  • the above solution relieves the problem of poor damping effect of the existing treadmill to a certain extent, but the scheme adopts a spring as the shock absorption, and the spring fatigue absorption effect is greatly reduced, and the stability is poor, and the spring is generated to resist deformation.
  • the spring force is small, The shock absorbing effect obtained is very limited.
  • the object of the present invention is to provide a stand-alone suspension suspension mechanism for a treadmill with a simple and reasonable structure and good stability.
  • the present invention adopts the following technical solutions: the running platform independent suspension suspension mechanism of the treadmill, including a chassis and a running platform, wherein the front end of the running platform passes the suspension suspension structure
  • the suspension suspension structure suspended on the chassis and when the running frame is subjected to a downward force and forcing the front end of the running frame to descend, can assist the front end of the running platform to rise and reset.
  • the structure enables the treadmill to automatically reset the front end of the running frame under the action of the suspension suspension structure when the treadmill is under the force of use, which enhances the shock absorption effect of the treadmill.
  • the suspension suspension structure comprises at least one cantilever, one end of the cantilever is hinged on the running platform, and the other end is connected to the chassis through the elastic expansion and contraction assembly.
  • the middle of the cantilever is hinged on the chassis.
  • the elastic expansion and contraction assembly comprises a conductive rod, one end of the conductive rod is hinged to the cantilever, and the other end passes through the chassis and is fixed at the end end.
  • the elastic telescopic assembly comprises a spring, one end of the spring is connected to the cantilever and the other end is connected to the chassis. That is, after the cantilever swings, it is automatically reset by the action of the spring.
  • the cantilever is L-shaped and the corner portion of the cantilever is hinged on the chassis, and the length of one end of the cantilever connected to the running frame is greater than that of the elastic expansion and contraction assembly. The length of one end connected.
  • the structure is adopted such that the moment of the end of the cantilever connected to the running frame is greater than the other end, so that the power is enlarged, which makes the swing of the cantilever more convenient.
  • the suspension suspension structure has two groups and is symmetrically disposed on both sides of the running platform.
  • the stability of the treadmill is good when used, and the shock absorption effect on both sides of the front end of the running platform is ensured.
  • the running platform includes a frame body, and a cantilever frame is fixed on a lower side of the front portion of the frame body, and the cantilever is hinged at the front end of the cantilever frame,
  • a damping cylinder is arranged between the bottom frame and the middle of the running frame, and one end of the damping cylinder is fixedly connected with the bottom frame, and the other end is fixedly connected with the running frame.
  • the damper cylinder here can further improve the shock absorbing effect.
  • the above-mentioned frame body is provided with a running board disposed parallel to the frame body, and the running board is provided with a circular running belt, the running An elastic buffer structure is arranged between the plate and the frame.
  • the elastic cushioning structure here can increase the shock absorption for the rear end of the running platform, so that the running position can be shock-absorbing at various positions.
  • the elastic buffer structure comprises a plurality of elastic buffer members respectively disposed on two sides of the frame body and located between the frame body and the running board, and the elastic buffering device One-to-one correspondence. That is to say, the elastic buffer members are uniformly disposed on both sides of the frame body, and are arranged one by one.
  • the elastic buffering member comprises a first strip-shaped pressure plate and a second strip-shaped pressure plate correspondingly disposed above and below, and the first strip-shaped pressure plate and the running board side
  • the second strip-shaped pressing plate is fixedly disposed on a side of the frame body, and the first strip-shaped running board is disposed between the first strip-shaped running board and the second strip-shaped running board.
  • the advantage of the independent suspension suspension mechanism of the treadmill is that the structure is simple, the stability is good, the shock absorption effect is good, and the shock absorption buffer can be provided for multiple positions of the running platform, and the service life is long. , high mechanical strength.
  • FIG. 1 is a schematic structural view of Embodiment 1 of the present invention.
  • Figure 2 is a cross-sectional view showing the structure of a first embodiment of the present invention.
  • Figure 3 is an exploded view of the first embodiment of the present invention.
  • FIG. 4 is a schematic structural view of an elastic telescopic assembly according to Embodiment 1 of the present invention.
  • FIG. 5 is a schematic structural view of an elastic buffer member according to Embodiment 1 of the present invention.
  • FIG. 6 is a schematic structural view of an elastic telescopic assembly according to Embodiment 2 of the present invention.
  • the running platform of the treadmill independently suspends the suspension mechanism, including the chassis 1 and the running platform 2.
  • the front end of the running platform 2 is suspended on the chassis 1 by the suspension suspension structure 3 and
  • the suspension suspension structure 3 can assist the front end of the running platform 2 to rise and reset, and the structure is adopted.
  • the front end of the treadmill 2 can be automatically reset under the action of the suspension suspension structure 3 when the gantry 2 is pressed downward, which enhances the shock absorption effect of the treadmill when used.
  • the suspension suspension structure 3 herein includes at least one cantilever 31.
  • One end of the cantilever 31 is hinged on the running platform 2, and the other end is connected to the chassis 1 through an elastic expansion and contraction assembly 32.
  • the central portion of the cantilever 31 is hinged on the chassis 1 That is, when the running frame 2 is pressed downward, the cantilever 31 is swung, and the cantilever 31 is reset by the elastic telescopic assembly 32, so that the running frame 2 automatically rises.
  • the elastic expansion and contraction assembly 32 of the present embodiment includes a conductive rod 321 .
  • One end of the conductive rod 321 is hinged to the cantilever 31 , and the other end passes through the chassis 1 and is fixed at the end end to abut against the chassis 1 .
  • the cantilever 31 is L-shaped and the corner portion of the cantilever 31 is hinged on the chassis 1.
  • the length of one end of the cantilever 31 connected to the running frame 2 is greater than the length of one end connected to the elastic telescopic assembly 32, and the structure is adopted.
  • the moment at one end of the cantilever 31 connected to the running frame 2 is made larger than the other end, so that the power is enlarged, which makes it easier to swing the cantilever 31.
  • the shock absorption effect on both sides of the front end of the running platform is ensured, and the suspension suspension structure 3 has two groups and is symmetrically disposed on both sides of the running platform 2.
  • the running platform 2 includes a frame body 21, and a cantilever frame 22 is fixed on the lower side of the front portion of the frame body 21.
  • the cantilever arm 31 is hinged at the front end of the cantilever frame 22, and the bottom frame 1 and the middle portion of the running frame 2 are disposed.
  • There is a damper cylinder 23, one end of the damper cylinder 23 is fixedly connected to the chassis 1, and the other end is fixedly connected to the running gantry 2, and the damper cylinder 23 here can further improve the shock absorbing effect.
  • a running board 24 disposed parallel to the frame body 21 is disposed above the frame body 21, and an annular running belt 25 is disposed around the running board 24.
  • the elastic buffer structure is disposed between the running board 24 and the frame body 21, and the elastic buffer structure is disposed thereon. It can increase the shock absorption for the back end of the running platform, so that the running position can be shock-absorbing at all positions.
  • the elastic buffer structure includes a plurality of elastic buffering members 26 respectively disposed on the two sides of the frame body 21 and located between the frame body 21 and the running board 24, and the elastic buffering members 26 are arranged one by one, that is, the elastic buffering device here.
  • the pieces 26 are evenly disposed on both sides of the frame 21, and are disposed one by one.
  • the elastic buffering member 26 includes a first strip-shaped pressing plate 261 and a second strip-shaped pressing plate 262 disposed correspondingly above and below, the first strip-shaped pressing plate 261 is connected to the side of the running board 24, and the second strip-shaped pressing plate 262 is fixedly disposed at On the side of the frame 21, a plurality of buffer springs 263 are disposed between the first strip running board 24 and the second strip running board 24, that is, the buffer spring 263 can provide upward when the running board 24 is pressed downward. The reaction force is obtained to obtain the effect of cushioning and damping.
  • the structure and working principle of the embodiment are basically the same as those of the first embodiment, except that the elastic telescopic assembly 32 of the embodiment includes a spring 323, and one end of the spring 323 is connected to the cantilever 31, and One end is connected to the chassis 1, that is, the cantilever 31 is swung and then automatically reset by the action of the spring 323.
  • the terms of the two-shaped pressing plate 262, the buffer spring 263, the suspension suspension structure 3, the cantilever 31, the elastic expansion and contraction assembly 32, the conductive rod 321, the elastic barrier 322, the spring 323, etc., do not exclude the possibility of using other terms. These terms are only used to describe and explain the nature of the invention more conveniently; it is to be construed that any additional limitation is inconsistent with the spirit of the invention.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Cardiology (AREA)
  • Vascular Medicine (AREA)
  • Rehabilitation Tools (AREA)

Abstract

一种跑步机的跑台独立悬挂避震机构,包括底架(1)和跑台架(2),跑台架(2)的前端通过悬挂避震结构(3)悬置在底架(1)上,当跑台架(2)受到向下作用力并迫使跑台架(2)前端下降后,悬挂避震结构(3)能辅助跑台架(2)前端上升复位。

Description

跑步机的跑台独立悬挂避震机构 技术领域
本发明属于健身器材技术领域,尤其是涉及一种跑步机的跑台独立悬挂避震机构。
背景技术
随着社会的发展和进步,跑步健身已成为人们一种新的生活理念,但因跑步通常需要到室外进行,因此时常受天气因素的影响,难以实现常态化锻炼。为此,人们开始使用可以安放在室内的跑步机,从而达到运动、锻炼、健身的目的,因此,跑步机是家庭及健身房常备的器材,而且是当今家庭健身器材中最简单的一种,是家庭健身器的最佳选择。但是,跑步机发展至今,一直存在避震效果差的问题,用户在跑台上跑动时,跑台将受到的踩踏力完全反作用于人体,造成用户身体各部位尤其是脚踝、膝关节、脊椎等部位很大的反冲力,导致这些部位容易损伤,完全违背了跑步机作为一种运动健身器材的宗旨。
为了解决现有技术存在的问题,人们进行了长期的探索,提出了各式各样的解决方案。例如,中国专利文献公开了一种减震跑步机[申请号:201320136260.2],包括连接在一起的基座和立柱,所述基座上方还设有框架,所述框架由第一框架和第二框架组成,所述第一框架的一端与立柱或基座连接在一起,另一端通过固定轴与第二框架的一端铰接在一起,所述框架底部设有减震装置。上述方案在一定程度上缓解了现有跑步机减震效果差的问题,但是该方案采用弹簧作为减震,随着弹簧疲劳减震效果会大打折扣,且稳定性差,弹簧为了抵抗变形而产生的弹簧力较小, 致使获得的减震缓冲效果十分有限。
发明内容
本发明的目的是针对上述问题,提供一种结构简单合理,稳定性好的跑步机的跑台独立悬挂避震机构。
为达到上述目的,本发明采用了下列技术方案:本跑步机的跑台独立悬挂避震机构,包括底架和跑台架,其特征在于,所述的跑台架的前端通过悬挂避震结构悬置在底架上且当跑台架受到向下作用力并迫使跑台架前端下降后所述的悬挂避震结构能辅助跑台架前端上升复位。采用该结构使得跑步机在使用时跑台架向下受力时在悬挂避震结构作用下能跑台架前端自动复位,这样增强了跑步机使用时的减震效果。
在上述的跑步机的跑台独立悬挂避震机构中,所述的悬挂避震结构包括至少一个悬臂,所述的悬臂的一端铰接在跑台架上,另一端通过弹性伸缩组件与底架相连,所述的悬臂中部铰接在底架上。显然,当跑台架向下受力时带动悬臂摆动,在弹性伸缩组件作用下对将悬臂复位,使得跑台架自动上升。
在上述的跑步机的跑台独立悬挂避震机构中,所述的弹性伸缩组件包括传导杆,所述的传导杆的一端与悬臂相铰接,另一端穿过底架且在该端端部固定有能抵靠在底架上的弹性阻挡体。即这里的悬臂摆动使得传导杆穿设于底架上且往复移动,弹性阻挡体能防止传导杆脱离底架。
作为另一种优选方案,在上述的跑步机的跑台独立悬挂避震机构中,所述的弹性伸缩组件包括弹簧,弹簧的一端连接在悬臂上,另一端连接在底架上。即悬臂摆动后在弹簧的作用下自动复位。
在上述的跑步机的跑台独立悬挂避震机构中,所述的悬臂呈L型且悬臂的拐角部铰接在底架上,所述的悬臂与跑台架相连的一端长度大于与弹性伸缩组件相连的一端长度。显然,采用该结构使得悬臂与跑台架相连的一端的力矩大于另一端,便于力量的放大,这样更加便于悬臂的摆动。
在上述的跑步机的跑台独立悬挂避震机构中,所述的悬挂避震结构有两组且对称设置在跑台架两侧。使得跑步机使用时稳定性好,保证了跑台前端两侧减震效果一致性。
在上述的跑步机的跑台独立悬挂避震机构中,所述的跑台架包括框体,在框体的前部下侧固定有悬臂架,所述的悬臂铰接在悬臂架前端,所述的底架与跑台架中部之间设有阻尼缸,所述的阻尼缸的一端与底架固连,另一端与跑台架固连。这里的阻尼缸能进一步地提高减震缓冲的效果。
在上述的跑步机的跑台独立悬挂避震机构中,所述的框体上方设有与框体相互平行设置的跑板,所述的跑板上绕设有环形跑带,所述的跑板与框体之间设有弹性缓冲结构。显然,这里的弹性缓冲结构能为跑台后端提高减震,这样使得跑台各个位置均能进行减震。
在上述的跑步机的跑台独立悬挂避震机构中,所述的弹性缓冲结构包括若干分别设置在框体两侧且位于框体与跑板之间的弹性缓冲件,且所述的弹性缓冲件一一对应设置。即这里的弹性缓冲件分别均匀设置在框体的两侧,且一一对应设置。
在上述的跑步机的跑台独立悬挂避震机构中,所述的弹性缓冲件包括上下对应设置的第一条形压板与第二条形压板,所述的第一条形压板与跑板侧边相连,所述的第二条形压板固定设置在框体的侧边上,且所述的第一条形跑板与第二条形跑板之间设有 若干缓冲弹簧。显然,当跑板向下受力时缓冲弹簧能提供向上的反作用力,从而获得缓冲减震的效果。
与现有的技术相比,本跑步机的跑台独立悬挂避震机构的优点在于:结构简单,稳定性好,减震效果好,能对跑台多个位置提供减震缓冲,使用寿命长,机械强度高。
附图说明
图1为本发明提供的实施例一的结构示意图。
图2为本发明提供的实施例一的结构剖视图。
图3为本发明提供的实施例一的爆炸图。
图4为本发明实施例一中弹性伸缩组件的结构示意图。
图5为本发明实施例一中弹性缓冲件的结构示意图。
图6为本发明实施例二中弹性伸缩组件的结构示意图。
图中,底架1、跑台架2、框体21、悬臂架22、阻尼缸23、跑板24、环形跑带25、弹性缓冲件26、第一条形压板261、第二条形压板262、缓冲弹簧263、悬挂避震结构3、悬臂31、弹性伸缩组件32、传导杆321、弹性阻挡体322、弹簧323。
具体实施方式
下面结合附图和具体实施方式对本发明做进一步详细的说明。
实施例一
如图1-5所示,本跑步机的跑台独立悬挂避震机构,包括底架1和跑台架2,跑台架2的前端通过悬挂避震结构3悬置在底架1上且当跑台架2受到向下作用力并迫使跑台架2前端下降后悬挂避震结构3能辅助跑台架2前端上升复位,采用该结构使得 跑步机在使用时跑台架2向下受力时在悬挂避震结构3作用下能跑台架2前端自动复位,这样增强了跑步机使用时的减震效果。
具体地,这里的悬挂避震结构3包括至少一个悬臂31,悬臂31的一端铰接在跑台架2上,另一端通过弹性伸缩组件32与底架1相连,悬臂31中部铰接在底架1上,即当跑台架2向下受力时带动悬臂31摆动,在弹性伸缩组件32作用下对将悬臂31复位,使得跑台架2自动上升。其中,本实施例中的弹性伸缩组件32包括传导杆321,传导杆321的一端与悬臂31相铰接,另一端穿过底架1且在该端端部固定有能抵靠在底架1上的弹性阻挡体322,即这里的悬臂31摆动使得传导杆321穿设于底架1上且往复移动,弹性阻挡体322能防止传导杆321脱离底架1。
进一步地,本实施例中悬臂31呈L型且悬臂31的拐角部铰接在底架1上,悬臂31与跑台架2相连的一端长度大于与弹性伸缩组件32相连的一端长度,采用该结构使得悬臂31与跑台架2相连的一端的力矩大于另一端,便于力量的放大,这样更加便于悬臂31的摆动。为了使得跑步机使用时稳定性好,保证了跑台前端两侧减震效果一致性,悬挂避震结构3有两组且对称设置在跑台架2两侧。
更进一步地,这里的跑台架2包括框体21,在框体21的前部下侧固定有悬臂架22,悬臂31铰接在悬臂架22前端,底架1与跑台架2中部之间设有阻尼缸23,阻尼缸23的一端与底架1固连,另一端与跑台架2固连,这里的阻尼缸23能进一步地提高减震缓冲的效果。框体21上方设有与框体21相互平行设置的跑板24,跑板24上绕设有环形跑带25,跑板24与框体21之间设有弹性缓冲结构,这里的弹性缓冲结构能为跑台后端提高减震,这样使得跑台各个位置均能进行减震。
具体地,这里的弹性缓冲结构包括若干分别设置在框体21两侧且位于框体21与跑板24之间的弹性缓冲件26,且弹性缓冲件26一一对应设置,即这里的弹性缓冲件26分别均匀设置在框体21的两侧,且一一对应设置。其中,这里的弹性缓冲件26包括上下对应设置的第一条形压板261与第二条形压板262,第一条形压板261与跑板24侧边相连,第二条形压板262固定设置在框体21的侧边上,且第一条形跑板24与第二条形跑板24之间设有若干缓冲弹簧263,即当跑板24向下受力时缓冲弹簧263能提供向上的反作用力,从而获得缓冲减震的效果。
实施例二
如图6所示,本实施例的结构与工作原理与实施例一基本相同,不同之处在于,本实施例中的弹性伸缩组件32包括弹簧323,弹簧323的一端连接在悬臂31上,另一端连接在底架1上,即悬臂31摆动后在弹簧323的作用下自动复位。
本文中所描述的具体实施例仅仅是对本发明精神作举例说明。本发明所属技术领域的技术人员可以对所描述的具体实施例做各种各样的修改或补充或采用类似的方式替代,但并不会偏离本发明的精神或者超越所附权利要求书所定义的范围。
尽管本文较多地使用了底架1、跑台架2、框体21、悬臂架22、阻尼缸23、跑板24、环形跑带25、弹性缓冲件26、第一条形压板261、第二条形压板262、缓冲弹簧263、悬挂避震结构3、悬臂31、弹性伸缩组件32、传导杆321、弹性阻挡体322、弹簧323等术语,但并不排除使用其它术语的可能性。使用这些术语仅仅是为了更方便地描述和解释本发明的本质;把它们解释成任何一种附加的限制都是与本发明精神相违背的。

Claims (10)

  1. 一种跑步机的跑台独立悬挂避震机构,包括底架(1)和跑台架(2),其特征在于,所述的跑台架(2)的前端通过悬挂避震结构(3)悬置在底架(1)上且当跑台架(2)受到向下作用力并迫使跑台架(2)前端下降后所述的悬挂避震结构(3)能辅助跑台架(2)前端上升复位。
  2. 根据权利要求1所述的跑步机的跑台独立悬挂避震机构,其特征在于,所述的悬挂避震结构(3)包括至少一个悬臂(31),所述的悬臂(31)的一端铰接在跑台架(2)上,另一端通过弹性伸缩组件(32)与底架(1)相连,所述的悬臂(31)中部铰接在底架(1)上。
  3. 根据权利要求2所述的跑步机的跑台独立悬挂避震机构,其特征在于,所述的弹性伸缩组件(32)包括传导杆(321),所述的传导杆(321)的一端与悬臂(31)相铰接,另一端穿过底架(1)且在该端端部固定有能抵靠在底架(1)上的弹性阻挡体(322)。
  4. 根据权利要求2所述的跑步机的跑台独立悬挂避震机构,其特征在于,所述的弹性伸缩组件(32)包括弹簧(323),弹簧(323)的一端连接在悬臂(31)上,另一端连接在底架(1)上。
  5. 根据权利要求2或3或4所述的跑步机的跑台独立悬挂避震机构,其特征在于,所述的悬臂(31)呈L型且悬臂(31)的拐角部铰接在底架(1)上,所述的悬臂(31)与跑台架(2)相连的一端长度大于与弹性伸缩组件(32)相连的一端长度。
  6. 根据权利要求2或3或4所述的跑步机的跑台独立悬挂避震机构,其特征在于,所述的悬挂避震结构(3)有两组且对称设置在跑台架(2)两侧。
  7. 根据权利要求2或3或4所述的跑步机的跑台独立悬挂避震机构,其特征在于,所述的跑台架(2)包括框体(21),在框体(21)的前部下侧固定有悬臂架(22),所述的悬臂(31)铰接 在悬臂架(22)前端,所述的底架(1)与跑台架(2)中部之间设有阻尼缸(23),所述的阻尼缸(23)的一端与底架(1)固连,另一端与跑台架(2)固连。
  8. 根据权利要求7所述的跑步机的跑台独立悬挂避震机构,其特征在于,所述的框体(21)上方设有与框体(21)相互平行设置的跑板(24),所述的跑板(24)上绕设有环形跑带(25),所述的跑板(24)与框体(21)之间设有弹性缓冲结构。
  9. 根据权利要求8所述的跑步机的跑台独立悬挂避震机构,其特征在于,所述的弹性缓冲结构包括若干分别设置在框体(21)两侧且位于框体(21)与跑板(24)之间的弹性缓冲件(26),且所述的弹性缓冲件(26)一一对应设置。
  10. 根据权利要求9所述的跑步机的跑台独立悬挂避震机构,其特征在于,所述的弹性缓冲件(26)包括上下对应设置的第一条形压板(261)与第二条形压板(262),所述的第一条形压板(261)与跑板(24)侧边相连,所述的第二条形压板(262)固定设置在框体(21)的侧边上,且所述的第一条形跑板(24)与第二条形跑板(24)之间设有若干缓冲弹簧(263)。
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