WO2014201639A1 - 具有弹性保护套的转动机构 - Google Patents

具有弹性保护套的转动机构 Download PDF

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Publication number
WO2014201639A1
WO2014201639A1 PCT/CN2013/077480 CN2013077480W WO2014201639A1 WO 2014201639 A1 WO2014201639 A1 WO 2014201639A1 CN 2013077480 W CN2013077480 W CN 2013077480W WO 2014201639 A1 WO2014201639 A1 WO 2014201639A1
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WO
WIPO (PCT)
Prior art keywords
rotor
elastic protective
rotating mechanism
protective sleeve
outer circumference
Prior art date
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PCT/CN2013/077480
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English (en)
French (fr)
Inventor
龚蜀刚
吴星寅
朱山静
黄涛
林绍荣
Original Assignee
成都优阳机电产品设计有限公司
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.)
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Application filed by 成都优阳机电产品设计有限公司 filed Critical 成都优阳机电产品设计有限公司
Priority to EP13887060.5A priority Critical patent/EP3012115A4/en
Priority to JP2016520216A priority patent/JP6412929B2/ja
Priority to US14/899,655 priority patent/US9944118B2/en
Priority to PCT/CN2013/077480 priority patent/WO2014201639A1/zh
Priority to KR1020157036447A priority patent/KR101884054B1/ko
Publication of WO2014201639A1 publication Critical patent/WO2014201639A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60BVEHICLE WHEELS; CASTORS; AXLES FOR WHEELS OR CASTORS; INCREASING WHEEL ADHESION
    • B60B25/00Rims built-up of several main parts ; Locking means for the rim parts
    • B60B25/04Rims with dismountable flange rings, seat rings, or lock rings
    • B60B25/08Continuous flange rings; Arrangement of recesses enabling the flange rings to be slipped over the rim body
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60BVEHICLE WHEELS; CASTORS; AXLES FOR WHEELS OR CASTORS; INCREASING WHEEL ADHESION
    • B60B25/00Rims built-up of several main parts ; Locking means for the rim parts
    • B60B25/04Rims with dismountable flange rings, seat rings, or lock rings
    • B60B25/10Seat rings for the tyre bead part, e.g. split
    • B60B25/12Seat rings for the tyre bead part, e.g. split with integral flange part
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60CVEHICLE TYRES; TYRE INFLATION; TYRE CHANGING; CONNECTING VALVES TO INFLATABLE ELASTIC BODIES IN GENERAL; DEVICES OR ARRANGEMENTS RELATED TO TYRES
    • B60C7/00Non-inflatable or solid tyres
    • B60C7/24Non-inflatable or solid tyres characterised by means for securing tyres on rim or wheel body

Definitions

  • the present invention relates to the technical field of a rotating mechanism, and more particularly to a rotating mechanism having an elastic protective cover.
  • the rotating mechanism is an indispensable part of the current machinery and equipment, such as bearings, runners and tires.
  • the rotating mechanism in the prior art requires continuous or intermittent rotation during the working process.
  • the outer circumference of the rotating mechanism sometimes needs to cooperate with other components, such as friction transmission, and the existing rotating mechanism does not have any protective structure on the outer circumference.
  • the noise of the rotating mechanism has always been a common problem that plagues the technician.
  • the current rotating mechanism has a problem of excessive noise.
  • the object of the present invention is to provide a rotating mechanism with an elastic protective cover, which aims to solve the rotating mechanism of the prior art, and when the power is transmitted to other mechanisms or devices, the radial impact is excessively large, and it is easily corroded to cause damage and noise. Too big a problem.
  • the present invention is realized in this way, a rotating mechanism having an elastic protective sleeve, comprising a stator and a rotor, the rotor is circumferentially sleeved on the outer circumference of the stator, and the outer circumference of the rotor is sleeved with an elastic protective sleeve, and the elastic protective sleeve is It is annular and arranged around the outer circumference of the rotor.
  • an inner surface of the elastic protective sleeve abuts against an outer circumference of the rotor, and both sides of the outer end thereof extend outward to form an expanded shape, and a stepped structure is formed on both sides of the outer end.
  • the height of both sides of the outer end of the elastic protective sleeve is greater than the height of the rotor.
  • stator is sleeved on the outer circumference of the stator shaft, and the outer circumference of the stator shaft is sleeved with a rotor support frame, and the rotor support frame is rotatably connected with the stator shaft, and the rotor is connected to the stator On the rotor support frame.
  • a peripheral sleeve of the rotor is provided with a plurality of fasteners disposed between the two, and an inner surface of the elastic sleeve is abutted on the fastener.
  • the upper end surface of the rotor is provided with a brake bracket, and the brake bracket extends around the upper end surface of the rotor.
  • an upper end surface of the rotor is provided with an upper fixing bracket, and the upper fixing bracket extends around the upper end surface of the rotor, one end of which is connected to the brake bracket, and the other end is opposite to the elastic protective sleeve The outer end extends to form an upper pressure plate that is pressed against the stepped structure of the upper side of the outer end of the elastic protective cover.
  • the upper pressing plate is pressed against the step structure on the upper side of the outer end of the elastic protective sleeve and extends outside the step structure.
  • one end of the rotor support frame is rotatably connected to the stator shaft, and the other end extends toward the outer end of the elastic protective sleeve to form a step structure that is pressed against the lower side of the outer end of the elastic protective sleeve. Press plate.
  • the lower pressing plate is pressed against the step structure of the lower side of the outer end of the elastic protective sleeve and extends outside the step structure.
  • the rotating mechanism provided by the present invention has an elastic protective sleeve on the outer circumference of the rotor, and the elastic protective sleeve has an elastic deformation effect.
  • the rotating mechanism transmits power to other mechanisms or devices, the external force can be reduced.
  • the radial impact of the rotor protects the outer circumference of the rotor, greatly extending the service life of the rotor mechanism.
  • the elastic protective cover can absorb most of the noise generated by the rotor mechanism, making the rotating mechanism suitable for high-demand applications.
  • FIG. 1 is a longitudinal cross-sectional view of a rotating mechanism with an elastic protective cover according to an embodiment of the present invention
  • Figure 2 is an enlarged schematic view of A in Figure 1;
  • FIG. 3 is a partial cross-sectional view showing a rotating mechanism with an elastic protective cover according to an embodiment of the present invention
  • Figure 4 is an enlarged schematic view of B in Figure 3.
  • the rotating mechanism 1 provided in this embodiment can be used in various types of equipment and can be used as a variety of accessories, for example, as a power transmission device, a reel, or the like, or as a tire or the like.
  • the rotating mechanism 1 provided in this embodiment can be applied as long as the component of the effect is required to be rotated.
  • the rotating mechanism 1 includes a stator 102 and a rotor 103.
  • the rotor 103 is sleeved around the outer circumference of the stator 102, and has a gap between the inner side and the outer side of the stator 102, and is circumferentially rotatable relative to the stator 102, and surrounds the outer circumference of the rotor 103.
  • An elastic protective sleeve 104 is provided, and the elastic protective sleeve 104 is externally protruded from the rotor 103.
  • the rotating mechanism 1 provided above has an elastic protective sleeve 104 sleeved on the outer circumference of the rotor 103.
  • the elastic protective sleeve 104 is subjected to an external force, deformation occurs, and after the external force is removed, the shape is restored to approximate its original shape.
  • the rotating mechanism 1 can reduce the radial impact of the external force on it, and the outer circumference of the rotor 103 is protected from moisture by the elastic protective sleeve 104 around the outer circumference of the rotor 103, or Direct contact with corrosive other or liquid, thereby protecting the rotating mechanism 1, greatly extending the service life of the rotating mechanism 1; in addition, a large part of the noise generated by the rotating mechanism 1 during the rotation is elastic
  • the protective cover 104 absorbs, so that the noise can be greatly reduced, so that the rotating mechanism 1 can be applied to a variety of high-demand occasions.
  • the direct contact with the elastic protective cover 104 can greatly increase the circumferential frictional force of the rotating mechanism 1, for example, when the rotating mechanism 1 is used as a power transmitting member, through the external
  • the elastic protective sleeve 104 is connected to other components, and the effect of directly connecting the external components to the rotor 103 is much better, and the circumferential and axial frictional forces are greatly increased.
  • the elastic protective sleeve 104 has a closed loop shape, that is, it is continuously wrapped around the outer circumference of the rotor 103.
  • the elastic protective sleeve 104 is a ring body whose longitudinal cross-sectional shape and inner shape are polygonal, of course, The specific shape of the polygon can be determined according to actual needs.
  • the elastic protective sleeve 104 may also be a discontinuous ring shape, that is, a discontinuous surrounding sleeve is disposed on the outer circumference of the rotor 103, and the specific setting may be determined according to actual needs.
  • the inner surface of the elastic protective sleeve 104 directly abuts on the outer circumference of the rotor 103, and both sides of the outer end thereof extend outwardly to form an outer expansion shape, that is, a step structure is formed between the inner end and the outer end, and both sides of the outer end
  • the height is greater than the height of the rotor 103 such that both sides of the outer circumference extend to the outside of the rotor 103 so that it can protect both ends of the rotor 103 from collision between the two ends of the rotor 103 and the external components.
  • the outer surface is provided with the concave-convex structure 100, so that when the outer surface of the elastic protective cover 104 is engaged with other components, the concave-convex structure 100 on the outer surface can greatly increase its Friction between components.
  • the stator 102 is sleeved on the outer circumference of the stator shaft 101
  • a rotor support frame 106 is further sleeved on the outer circumference of the stator shaft 101.
  • the rotor support frame 106 and the stator shaft 101 are connected by a bearing 108, thereby making the rotor support.
  • the frame 106 can be rotated relative to the stator shaft 101. Of course, it can also be connected by rolling elements such as balls. As long as the rotor support frame 106 is rotated relative to the stator shaft 101, the rotation between the rotor support frame 106 and the stator shaft 101 can be realized. Yes.
  • the rotor 103 is coupled to the rotor support frame 106 and sleeved on the outer circumference of the stator 102.
  • the inner side forms a gap with the outer side of the stator 102.
  • the rotor support frame 106 rotates relative to the stator 102, the rotor 103 is also opposite to the stator. 102 turns.
  • a plurality of fasteners 107 are arranged interposed, and a plurality of fasteners 107 are arranged around the outer circumference of the rotor 103.
  • it may be a uniform surrounding arrangement, that is, two adjacent fasteners 107.
  • the spacing between the two is uniform, and may also be a non-uniform surrounding arrangement, depending on actual needs.
  • the elastic protective sleeve 104 is sleeved around the outer circumference of the stator 102, and its inner surface abuts on the fastener 107, so that as the rotor 103 rotates, the fastener 107 also rotates, and the elastic protective sleeve 104 is also opposite to the stator. 102 turns.
  • a brake frame 109 is disposed on the upper end surface of the rotor 103, and the brake frame 109 is arranged to extend around the upper end surface of the rotor 103 to form an annular shape, which is fixedly coupled to the rotor 103, along with the rotor 103. Turn and turn.
  • the upper end surface of the rotor 103 is provided with an upper mounting bracket 105 extending around the upper end surface of the rotor 103 and one end connected to the brake.
  • the frame 109 may be connected by a fastener 107 such as a screw, or may be of other various connection means, as long as it is fixedly connected to the brake frame 109; the other end is directed to the outer end of the elastic protective cover 104.
  • an upper pressing plate 1052 is formed, and the upper pressing plate 1052 is pressed against the step structure on the upper side of the outer end of the elastic protective cover 104, so that the elastic protective cover 104 is fixed from the upper side.
  • the upper pressing plate 1052 is pressed against the step structure of the upper side of the outer end of the elastic protective cover 104 and extends outside the stepped structure, so that the pressing of the upper side of the elastic protective cover 104 can be increased.
  • the upper pressing plate 1052 is formed with a structure matching with the step structure, thereby ensuring an abutting connection with the upper side of the elastic protective cover 104.
  • one end of the rotor support frame 106 is rotatably connected to the stator shaft 101, and the other end thereof extends toward the outer end of the elastic protective sleeve 104 to form a lower pressing plate 1061.
  • the lower pressing plate 1061 is pressed against the elastic protective cover 104.
  • the step structure of the lower side of the outer end is such that it fixes the elastic protective cover 104 from the lower side.
  • the lower pressing plate 1061 is pressed against the stepped structure of the lower side of the outer end of the elastic protective cover 104 and extends outside the stepped structure, so that the pressing of the lower side of the elastic protective cover 104 can be increased.
  • the lower pressing plate 1061 is formed with a structure matching with the step structure, thereby ensuring an abutting connection with the lower side of the elastic protective cover 104.
  • the inner surface of the elastic protective cover 104 abuts against the fastener 107 on the outer circumference of the rotor 103, and the upper and lower sides thereof are respectively abutted by the upper pressing plate 1052 and the lower pressing plate 1061, thereby performing the elastic protective cover 104 from a plurality of directions.
  • the fixing is such that the elastic protective cover 104 is firmly connected to the outer circumference of the rotor 103.
  • the inner surface of the elastic protective sleeve 104 and the outer circumference of the rotor 103 may be directly connected by bonding, or may be directly abutted. Of course, it may be cast by the outer circumference of the rotor 103 to form an elastic protective sleeve. 104, there can be a variety of connection methods, depending on actual needs.
  • the rotating mechanism 1 provided in this embodiment can be used as a plurality of components, and the rotating mechanism 1 can be used as long as it is required to rotate.
  • the rotor 103 is integrated with the stator 102, that is, the stator shaft 101 is various. The manner is fixed on the frame. At this time, the rotor 103 and the stator 102 of the rotating mechanism 1 together form a smart hub, and the elastic protective sleeve 104 in the entire rotating mechanism 1 forms a tire.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Motor Or Generator Frames (AREA)
  • Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)
  • Vibration Prevention Devices (AREA)

Abstract

一种具有弹性保护套的转动机构(1),包括定子(102)和转子(103),所述转子环绕状套设于所述定子外周,转子外周套设有弹性保护套(104),所述弹性保护套呈环状,环绕转子外周布置。该弹性保护套具有弹性变形效果,当转动机构将动力传给其他机构或装置时,可减少外力对转子的径向冲击,保护转子外周,延长其使用寿命。另外,弹性保护套可以作为摩擦传动件来传递动力,并起到吸收噪音的作用。

Description

具有弹性保护套的转动机构 技术领域
本发明涉及转动机构的技术领域,尤其涉及具有弹性保护套的转动机构。
背景技术
转动机构是现时机器设备中不可或缺的重要组成部分,例如轴承、转轮以及轮胎等。
现有技术中的转动机构在工作过程需要连续或间断的转动,根据工作需求,转动机构的外周有时需要与其它部件进行配合,例如摩擦传动等,现有的转动机构外周并未任何保护结构,完全直接或间接与其它部件配合,从而承受的径向冲击较大,易损坏转动机构,且在工作环境中,其易受潮,或直接与具有腐蚀性的气体或液体接触,易被腐蚀,从而影响转动机构的工作寿命。另外,转动机构的噪音一直是较为常见且困扰技术员的问题,现时的转动机构存在噪音过大的问题。
技术问题
本发明的目的在于提供具有弹性保护套的转动机构,旨在解现有技术中的转动机构,将动力传给其它机构或装置时,承受径向冲击过大、易被腐蚀以致易损坏及噪音过大的问题。
技术解决方案
本发明是这样实现的,具有弹性保护套的转动机构,包括定子及转子,所述转子环绕状套设于所述定子外周,所述转子外周套设有弹性保护套,所述弹性保护套呈环状,环绕所述转子外周布置。
进一步地,所述弹性保护套的内表面抵接于所述转子的外周,其外端的两侧朝外延伸,形成外扩状,且于所述外端的两侧面上形成台阶结构。
进一步地,所述弹性保护套外端的两侧面的高度大于转子的高度。
进一步地,所述定子套设于所述定子轴的外周,所述定子轴的外周套设有转子支撑架,所述转子支撑架与所述定子轴之间转动连接,所述转子连接于所述转子支撑架上。
进一步地,所述转子的外周套设有多个相间布置的紧固件,所述弹性保护套的内表面抵接于所述紧固件上。
进一步地,所述转子的上端面设有制动架,所述制动架沿所述转子的上端面环绕状延伸布置。
进一步地,所述转子的上端面设有上固定架,所述上固定架沿所述转子的上端面环绕状延伸布置,其一端连接于所述制动架,另一端朝所述弹性保护套的外端延伸,形成抵压于所述弹性保护套的外端上侧面的台阶结构的上压板。
进一步地,所述上压板抵压于所述弹性保护套的外端上侧面的台阶结构上,且延伸至所述台阶结构外。
进一步地,所述转子支撑架的一端转动连接于所述定子轴,另一端朝所述弹性保护套的外端延伸,形成抵压于所述弹性保护套的外端下侧面的台阶结构的下压板。
进一步地,所述下压板抵压于所述弹性保护套的外端下侧面的台阶结构上,且延伸至所述台阶结构外。
有益效果
与现有技术相比,本发明提供的转动机构,其转子的外周套设有弹性保护套,弹性保护套具有弹性变形效果,当转动机构将动力传给其它机构或装置时,可减少外力对转子的径向冲击,并且对转子的外周进行了保护,大大延长转子机构的使用寿命,另外,弹性保护套可以吸收转子机构产生的大部分噪音,使得转动机构适用于高要求的场合。
附图说明
图1是本发明实施例提供的具有弹性保护套的转动机构的纵向剖切示意图;
图2是图1中的A处放大示意图;
图3是本发明实施例提供的具有弹性保护套的转动机构的部分剖切示意图;
图4是图3中的B处放大示意图。
本发明的实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
以下结合具体实施例对本发明的实现进行详细的描述。
如图1~4所示,为本发明提供的一较佳实施例。
参照图1~4所示,本实施例提供的转动机构1,可以运用在多种机器设备中,作为多种配件使用,例如可以作为动力传递装置、转轮等使用,或者可以作为轮胎等,只要需要转动效果的部件,本实施例提供的转动机构1都可以适用。
转动机构1包括定子102和转子103,转子103环绕套设在定子102外周,其内侧与定子102的外侧之间具有间隙,可以相对于定子102进行圆周转动,在转子103的外周上,环绕套设有弹性保护套104,该弹性保护套104转子103外凸出布置。
上述提供的转动机构1,其具有套设在转子103外周的弹性保护套104,由于弹性保护套104在受外力作用时,会产生变形,而外力撤除后,其形状会恢复至近似其原有形状,这样,转动机构1在工作过程中,可减少外力对其的径向冲击,且由于弹性保护套104环绕套设在转子103的外周,对转子103的外周进行保护,避免其受潮,或直接与腐蚀性的其它或液体接触,从而对转动机构1起到保护的作用,大大延伸转动机构1的使用寿命;另外,转动机构1在转动过程中,所产生的噪音,很大一部分被弹性保护套104所吸收,从而可以大大降低其噪音,使得转动机构1适用于多种高要求的场合。
再者,当转动机构1需要与其它部件配合时,直接利用弹性保护套104接触,可以大大增加转动机构1的周向摩擦力,例如,当转动机构1作为动力传递部件使用时,通过外部的弹性保护套104来连接其它部件,比转子103直接连接外部其它部件的效果好很多,其周向及轴向摩擦力大大增大。
[根据细则91更正 03.07.2013] 
本实施例中,弹性保护套104呈闭合环状,也就是其连续环绕套设在转子103外周,这样,弹性保护套104则环体,其纵向截面的外形和内形为多边形状,当然,该多边形的具体形状可以根据实际需要而定。
作为其它的实施例,弹性保护套104也可以为间断环状,即不连续的环绕套设在转子103外周上,具体设置可视实际需要而定。
弹性保护套104的内表面直接抵接在转子103的外周上,其外端的两侧分别朝外延伸,形成外扩状,也就是内端与外端之间形成台阶结构,并且外端两侧高度大于转子103的高度,这样,外周的两侧则延伸至转子103两端的外,从而其可以对转子103的两端进行保护,避免转子103的两端与外部部件发生碰撞。
为了增加弹性保护套104的摩擦性能,其外表面上设有凹凸结构100,从而,当弹性保护套104的外表面与其它部件配合时,该外表面上的凹凸结构100可以大大增加其与其它部件之间的摩擦力。
本实施例中,定子102套设在定子轴101的外周上,在定子轴101外周还套设有转子支撑架106,转子支撑架106与定子轴101之间通过轴承108连接,从而使得转子支撑架106可以相对于定子轴101转动,当然,也可以是通过滚珠等滚动件连接,只要实现转子支撑架106相对于定子轴101转动则可,实现转子支撑架106与定子轴101之间转动连接则可。
转子103连接在转子支撑架106上,且套设在定子102外周,内侧与定子102的外侧之间形成上述的间隙,随着转子支撑架106相对于定子102转动,从而转子103也相对于定子102转动。
在转子103的外周上,套设有多个相间布置的紧固件107,多个紧固件107环绕转子103的外周布置,当然,可以是均匀环绕布置,即相邻的两紧固件107之间的间隔是一致的,也可以是非均匀环绕布置,具体可视实际需要而定。
弹性保护套104环绕套设在定子102的外周,其内表面抵接在紧固件107上,从而,随着转子103转动,紧固件107也转动,弹性保护套104也随之相对于定子102转动。
本实施例中,在转子103的上端面上设有制动架109,该制动架109沿转子103的上端面环绕延伸布置,形成环形,其固定连接在转子103上,随着转子103的转动而转动。
为了对弹性保护套104进行进一步稳固,使得其与转子103稳固连接,本实施例中,转子103的上端面上设置上固定架105,其环绕转子103的上端面延伸布置,一端连接在制动架109上,当然,可以通过螺钉等紧固件107连接,或者,还可以是其它多种连接方式,只要使得其与制动架109固定连接则可;另一端则朝弹性保护套104外端延伸,形成上压板1052,该上压板1052抵压在弹性保护套104外端上侧面的台阶结构上,从而,其从上侧面对弹性保护套104进行固定。
具体地,上压板1052抵压在弹性保护套104外端的上侧面的台阶结构上,且延伸至台阶结构外,这样,可以增加对弹性保护套104上侧面的抵压。当然,相对应的,上压板1052上形成有与台阶结构相配合的结构,从而保证其与弹性保护套104的上侧面之间抵接连接。
本实施例中,上述的转子支撑架106的一端转动连接在定子轴101上,其另一端朝弹性保护套104的外端延伸,形成下压板1061,该下压板1061抵压在弹性保护套104外端下侧面的台阶结构上,从而,其从下侧面对弹性保护套104进行固定。
具体地,下压板1061抵压在弹性保护套104外端的下侧面的台阶结构上,且延伸至台阶结构外,这样,可以增加对弹性保护套104下侧面的抵压。当然,相对应的,下压板1061上形成有与台阶结构相配合的结构,从而保证其与弹性保护套104的下侧面之间抵接连接。
这样,弹性保护套104的内表面抵接在转子103的外周的紧固件107上,其上下侧面则分别由上压板1052及下压板1061抵接着,从而从多个方向对弹性保护套104进行固定,使得弹性保护套104稳固的连接在转子103的外周。
本实施例中,弹性保护套104的内表面与转子103的外周之间可以直接通过粘结方式连接,也可以直接抵接,当然,也可以是通过在转子103外周浇注,从而形成弹性保护套104,可以有多种连接方式,具体可视实际需要而定。
[根据细则91更正 03.07.2013] 
本实施例提供的转动机构1可以作为多种部件使用,只要是需要转动的效果,都可以采用该转动机构1,当然,当转子103与定子102形成一体时,也就是定子轴101被各种方式固定在车架上,此时,转动机构1的转子103及定子102一起形成智能轮毂,整个转动机构1中的弹性保护套104则形成轮胎。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (10)

  1. 具有弹性保护套的转动机构,包括定子及转子,所述转子环绕状套设于所述定子外周,其特征在于,所述转子外周套设有弹性保护套,所述弹性保护套呈环状,环绕所述转子外周布置。
  2. 如权利要求1所述的具有弹性保护套的转动机构,其特征在于,所述弹性保护套的内表面抵接于所述转子的外周,其外端的两侧朝外延伸,形成外扩状,且于所述外端的两侧面上形成台阶结构。
  3. 如权利要求2所述的具有弹性保护套的转动机构,其特征在于,所述弹性保护套外端的两侧面的高度大于转子的高度。
  4. 如权利要求1至3任一项所述的具有弹性保护套的转动机构,其特征在于,所述定子套设于所述定子轴的外周,所述定子轴的外周套设有转子支撑架,所述转子支撑架与所述定子轴之间转动连接,所述转子连接于所述转子支撑架上。
  5. 如权利要求1至3任一项所述的具有弹性保护套的转动机构,其特征在于,所述转子的外周套设有多个相间布置的紧固件,所述弹性保护套的内表面抵接于所述紧固件上。
  6. 如权利要求1至3任一项所述的具有弹性保护套的转动机构,其特征在于,所述转子的上端面设有制动架,所述制动架沿所述转子的上端面环绕状延伸布置。
  7. 如权利要求1至3任一项所述的具有弹性保护套的转动机构,其特征在于,所述转子的上端面设有上固定架,所述上固定架沿所述转子的上端面环绕状延伸布置,其一端连接于所述制动架,另一端朝所述弹性保护套的外端延伸,形成抵压于所述弹性保护套的外端上侧面的台阶结构的上压板。
  8. 如权利要求7所述的具有弹性保护套的转动机构,其特征在于,所述上压板抵压于所述弹性保护套的外端上侧面的台阶结构上,且延伸至所述台阶结构外。
  9. 如权利要求1至3任一项所述的具有弹性保护套的转动机构,其特征在于,所述转子支撑架的一端转动连接于所述定子轴,另一端朝所述弹性保护套的外端延伸,形成抵压于所述弹性保护套的外端下侧面的台阶结构的下压板。
  10. 如权利要求9所述的具有弹性保护套的转动机构,其特征在于,所述下压板抵压于所述弹性保护套的外端下侧面的台阶结构上,且延伸至所述台阶结构外。
PCT/CN2013/077480 2013-06-19 2013-06-19 具有弹性保护套的转动机构 WO2014201639A1 (zh)

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