WO2012041194A1 - 卡动式滑座 - Google Patents

卡动式滑座 Download PDF

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Publication number
WO2012041194A1
WO2012041194A1 PCT/CN2011/080150 CN2011080150W WO2012041194A1 WO 2012041194 A1 WO2012041194 A1 WO 2012041194A1 CN 2011080150 W CN2011080150 W CN 2011080150W WO 2012041194 A1 WO2012041194 A1 WO 2012041194A1
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WO
WIPO (PCT)
Prior art keywords
socket
sleeve hole
clamp body
gear
clamping
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Application number
PCT/CN2011/080150
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English (en)
French (fr)
Inventor
周华松
陈永华
彭海松
陈健民
Original Assignee
厦门松霖科技有限公司
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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Priority claimed from CN2010205454474U external-priority patent/CN201823663U/zh
Priority claimed from CN2010102937152A external-priority patent/CN102101087B/zh
Application filed by 厦门松霖科技有限公司 filed Critical 厦门松霖科技有限公司
Publication of WO2012041194A1 publication Critical patent/WO2012041194A1/zh

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    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/06Devices for suspending or supporting the supply pipe or supply hose of a shower-bath
    • E03C1/066Devices for suspending or supporting the supply pipe or supply hose of a shower-bath allowing height adjustment of shower head

Definitions

  • the invention relates to a bathing device, in particular to a snap-type sliding seat mounted on a lifting rod.
  • Existing slides generally include a fixing mechanism and a socket mechanism.
  • a sliding hole and a sliding connecting pin are arranged on the fixing mechanism, and the lifting rod is provided with a locking hole arranged at intervals, and the sliding hole of the fixing mechanism is sleeved outside the lifting rod.
  • the latch is slidably coupled to the fixing mechanism and slid between the locking position and the releasing position. When the latch is in the locking position, the latch protrudes into the sliding hole of the fixing mechanism and is inserted into the locking hole.
  • the fixing mechanism can slide up and down with respect to the lifting rod when the bolt is in the releasing position. Since the locking hole needs to be opened in the lifting rod, the strength of the lifting rod is lowered and the processing is inconvenient.
  • the present invention provides a snap-on slider that overcomes the deficiencies of the sliders of the prior art.
  • a snap-type slide comprising a clamping mechanism and a socket mechanism attached to the clamping mechanism
  • the clamping mechanism comprises an upper clamping body and a lower clamping body, wherein the upper clamping body and the lower clamping body are pivotally connected together by a mandrel, and the clamping mechanism can be moved between the locked state and the released state by rotation;
  • the upper clamp body is provided with an upper sleeve hole penetrating vertically
  • the lower clamp body is provided with a lower sleeve hole penetrating vertically
  • a return spring is interposed between the upper clamp body and the lower clamp body, and the return spring position corresponds to Upper and lower sets of holes;
  • the clamping mechanism is in a released state, the top projection of the upper sleeve hole and the lower sleeve hole overlap, the return spring is in an energy storage state; and the clamping mechanism is in a locked state, the upper sleeve hole and the lower sleeve hole
  • the top view projection is staggered and the return spring is in the release state.
  • the upper sleeve hole is disposed at a rear portion of the upper clamp body, and a central portion of the upper clamp body protrudes downwardly to form a pivot joint; the lower sleeve hole is disposed at a rear portion of the lower clamp body, and the lower clamp body has a front end upward
  • the front end is convexly provided with two lugs, and the two lugs are clamped on two sides of the pivoting seat, and the mandrel passes through the pivoting seat and the two lugs.
  • the friction between the upper clamp body and the lifting rod is larger than the friction between the lower clamp body and the lifting rod, and the flexibility is poor. As long as the clamping mechanism is pushed upward, the clamping mechanism can be released, and the clamp can be moved upward. Holding institutions.
  • a friction ring is disposed in the upper and lower sleeve holes.
  • An upper positioning ring is protruded downwardly from the corresponding upper sleeve hole of the upper clamping body, and a lower positioning ring is protruded upwardly from the corresponding lower sleeve hole of the lower clamping body, and the upper and lower ends of the return spring are respectively positioned and positioned Connected to the upper and lower positioning rings.
  • the rear edge of the upper clip body extends downwardly to a surrounding wall to form a return spring receiving space.
  • the upper end of the upper clamp body is concavely formed to form a positioning fork;
  • the socket mechanism comprises a socket and two gear washers;
  • the socket is disposed in the positioning fork and the outer gear is disposed at both ends thereof, the two gear pads
  • the pieces respectively fix the left and right inner sides of the forks;
  • the gear washers are elastic and are provided with internal gears, and the internal gears of the two gear washers respectively engage the two external gears of the socket.
  • Applying torque to the socket the outer gear teeth of the socket rotate relative to the inner gear teeth of the inner gear to deform the inner gear teeth, and the outer gear teeth are moved from the first inner gear tooth engagement position to the second inner gear tooth engagement position, thereby enabling socket rotation , can achieve rotational positioning.
  • the socket mechanism further includes two limiting spacers, wherein the two limiting spacers are respectively disposed on the left and right outer sides of the positioning fork; and the screws are arranged to connect the socket, the gear spacer and the limiting spacer to the positioning Fork. It is easy to assemble and the assembly cost is low.
  • the socket mechanism further includes a two socket cover, the socket cover is attached to the limiting spacer and the screw and is fixed to the outer side of the positioning fork.
  • the appearance is beautiful.
  • the gear washer includes an elastic inner gear sleeve and a fixing seat fixed to an end surface of the inner gear sleeve, the fixing base includes a plurality of fixing strips of the annular display, and the end of the fixing rod protrudes beyond the inner gear sleeve;
  • the inner side surface of the positioning fork is provided with a positioning groove matching the fixed socket. The portion of the fixing bar extending beyond the inner gear sleeve and the positioning groove of the positioning fork can prevent the positioning fork and the inner gear sleeve from rotating relative to each other.
  • An annular groove is defined in an end surface of the socket, an inner gear surface of the annular groove is provided with an outer gear, the inner gear is sleeved in the annular groove, and the inner gear sleeve and the annular groove are There is a gap between the outer turning surfaces.
  • the rear end of the upper clamping body and the rear end of the lower clamping body are relatively opened by the return spring, so that the top projection of the upper sleeve hole and the lower sleeve hole are staggered, so that the upper portion of the upper sleeve hole is abutted against the lifting rod, so that the upper sleeve hole
  • the front lower part is abutted against the lifting rod, so that the lower part of the lower sleeve hole is abutted against the lifting rod, so that the upper part of the lower sleeve hole is abutted against the lifting rod, so that the clamping mechanism is locked, so as to be positioned above the lifting rod,
  • the stepless height adjustment is realized, and there is no need to open the lifting rod; and, since the spring position corresponds to the upper sleeve hole and the lower sleeve hole, the upper sleeve hole and the lower sleeve hole are relatively unfolded when the locking position is in the locking position, the
  • FIG. 1 is a perspective exploded view of a snap-on slider of a preferred embodiment.
  • FIG. 2 is a schematic view showing the cooperation between the upper and lower clamping bodies and the return spring of the snap-action slider of a preferred embodiment.
  • FIG 3 is a perspective view of the upper body of the snap-on slider of a preferred embodiment.
  • FIG 4 is a cross-sectional view of the snap-in slider of the preferred embodiment, in a locked state.
  • FIG. 5 is a cross-sectional view of the slidable slider of the preferred embodiment, in an upwardly moving state.
  • FIG. 6 is a cross-sectional view of the snap-in slider of a preferred embodiment, in a downward moving state.
  • FIG. 7 is a cross-sectional view showing the matching of the upper body and the socket mechanism of the snap-on slider of a preferred embodiment.
  • a snap-in slider is slidably coupled to the lifter bar 300 and includes a clamping mechanism 100 and a socket mechanism 200.
  • the clamping mechanism 100 includes an upper body 110 and a lower body 120.
  • a rear cover hole 111 is formed in the rear portion of the upper clamp body 110, and a pivot joint 112 is formed on the upper portion of the upper clamp body 110.
  • a lower sleeve hole 121 is formed in the rear portion of the lower clamp body 120.
  • the front end of the lower clamp body 120 is bent upward, and the front end is convexly provided with two lugs 122.
  • the two lugs 122 are disposed on two sides of the pivoting seat 112.
  • the mandrel 130 passes through the pivoting seat 112 and the two lugs 122, so that the upper clamping body 110 and the lower clamping body 120 pass through the mandrel 130.
  • the clamping mechanism 100 can be moved between the locked state and the released state by rotation.
  • a return spring 140 is disposed between the upper clamp body 110 and the lower clamp body 120.
  • the return spring 140 is located corresponding to the upper sleeve hole 111 and the lower sleeve hole 121.
  • the clamping mechanism 100 is in a released state, and the top projections of the upper sleeve hole 111 and the lower sleeve hole 121 coincide, their axes are overlapped and coincident with the axis of the lifting rod 300, and the return spring 140 is in an energy storage state; the clamping mechanism When the 100 is in the locked state, the top projections 111 and the lower sleeves 121 are staggered in plan view, and their axes are symmetrical and intersect with the axis of the lifting rod 300, and the return spring 140 is in the energy releasing state.
  • the rear end of the upper clamp body 110 and the rear end of the lower clamp body 120 are relatively opened by the return spring 140, and the top projections of the upper sleeve hole 111 and the lower sleeve hole 121 are staggered, so that the upper sleeve hole 111 is rearward.
  • the upper portion is abutted against the lifting rod 300 (at the point A in the figure), so that the front lower portion of the upper sleeve hole 111 abuts against the lifting rod 300 (B in the figure), so that the lower portion of the lower sleeve hole 121 abuts against the lifting rod 300 ( In the figure C, the front upper portion of the lower sleeve hole 121 is abutted against the lifting rod 300 (at the point D in the figure), so that the clamping mechanism 100 is in the locked state, thereby being positioned above the lifting rod 300.
  • friction rings 113, 123 are provided in the upper and lower sleeve holes.
  • the corresponding upper sleeve hole 111 of the upper clamp body 110 is convexly disposed with an upper positioning ring 114, and the corresponding lower sleeve hole 121 of the lower clamp body 120 is convexly positioned downwardly.
  • the upper and lower ends of the return spring 140 are respectively sleeved outside the upper and lower positioning rings 114, 124.
  • a rear wall 115 extends downwardly from the rear edge of the upper body 110 to form a return spring 140 receiving space.
  • the end of the upper clamping body 110 is recessed to form a positioning fork 150 , and the left and right forks of the positioning fork 150 are respectively provided with a stepped hole 160 extending from the outside to the outside.
  • a plurality of positioning grooves 161 are provided at the inner end portion of the stepped hole 160.
  • the socket mechanism 200 includes a socket 210, two gear spacers 220, two limiting spacers 230, two screws 240, and two socket covers 250.
  • Both end faces of the socket 210 are recessed to form an annular groove 211.
  • the annular groove 211 has an inner rotating surface and an outer rotating surface, and an outer gear 212 is disposed on the inner rotating surface.
  • the gear washer 220 includes an elastic inner gear sleeve 221 and a fixing seat fixed to the end surface of the inner gear sleeve 221, the fixing base includes a plurality of fixing bars 222 of the annular display, and the end of the fixing bar 222 protrudes from the inner gear Set of 221 outside.
  • the limiting spacer 230 is disposed as a stepped member having a small outer diameter, and the inner side surface of the limiting spacer 230 is recessed with a corresponding slot 231 adapted to the plurality of fixing strips 222.
  • the inner gear sleeve 221 of the gear washer 220 is engaged with the outer gear of the socket, and after the engagement, a gap is left between the outer side surface of the inner gear sleeve 221 and the outer rotary surface of the annular groove 211;
  • the socket 210 and the two gear spacers 220 are assembled in the positioning fork 150, and the end of the fixing strip 222 is correspondingly inserted into the positioning groove 161; the limiting spacer 230 abuts on the positioning fork
  • the outer side surface of the limiting spacer 230 abuts against the step surface of the stepped hole 160, so that the corresponding slot 231 is connected to the fixing strip 222; the screw end of the screw is free to pass through the limiting spacer 230 and the fixing seat And screwing into the end surface of the socket, the screw head abutting on the outer side of the limiting gasket;
  • the socket cover is connected to the limiting spacer and the screw and fixed to the outer side of the positioning fork.
  • the slidable sliding seat of the invention has the rear end of the upper clamping body and the rear end of the lower clamping body relatively open by the return spring, so that the clamping mechanism is in the locked state, thereby being positioned above the lifting rod, which can realize no The height is adjusted, no need to open the lifting rod, and the locking torque is large, and the locking is firm and reliable.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Mutual Connection Of Rods And Tubes (AREA)

Description

卡动式滑座 技术领域
本发明涉及一种沐浴装置,尤其涉及一种装设在升降杆上的卡动式滑座。
背景技术
现有的滑座,一般包括一固定机构和一插座机构。所述固定机构之上设有一滑动孔和一滑动连接的插销,所述升降杆上开设有间隔设置的锁接孔,所述固定机构的滑动孔套接在升降杆之外。所述插销滑动连接在固定机构并在锁接位置和松释位置之间滑动,所述插销位于锁接位置时所述插销伸进固定机构的滑动孔之内并插接进锁接孔,所述插销位于松释位置时所述固定机构能相对升降杆升降滑动。由于需在升降杆开设锁接孔,因此会降低升降杆强度,加工不便。由于滑座锁接位置受锁接孔位置限制,滑座定位位置受限,因此无法实现无级调高。由于锁接或松释需要三个步骤,拔出插销、升降固定机构、插入插销,因此使用不便。
发明内容
本发明提供了卡动式滑座,其克服了背景技术中的滑座所存在的不足。
本发明解决其技术问题的所采用的技术方案是:
卡动式滑座,它包括一夹持机构和一装接在夹持机构的插座机构;
所述夹持机构包括上夹体和下夹体,所述上夹体和下夹体通过芯轴枢接在一起,通过转动使夹持机构能在锁接状态和松释状态之间活动;
所述上夹体设有一上下贯穿的上套孔,所述下夹体设有一上下贯穿的下套孔,所述上夹体和下夹体之间夹设复位弹簧,所述复位弹簧位置对应上、下套孔;
其中:所述夹持机构处于松释状态,则上套孔和下套孔的俯视投影重合,复位弹簧处于储能状态;所述夹持机构处于锁接状态,则上套孔和下套孔的俯视投影交错,复位弹簧处于释能状态。
所述上套孔设在上夹体的后部,所述上夹体中部向下凸设形成有一枢接座;所述下套孔设在下夹体的后部,所述下夹体前端向上弯曲,所述前端凸设有二凸耳,所述二凸耳夹设在枢接座之二侧,所述芯轴穿过枢接座和二凸耳。则上夹体与升降杆之间的摩擦比下夹体与升降杆之间的摩擦大,且灵活度差,只要向上推动夹持机构即可使夹持机构处于松释状态,可向上移动夹持机构。
所述上、下套孔之内都设有摩擦环。
所述上夹体的对应上套孔位置向下凸设有上定位环,所述下夹体的对应下套孔位置向上凸设有下定位环,所述复位弹簧的上、下端分别定位套接在上、下定位环之外。
所述上夹体后部边缘向下延伸一围壁,形成一复位弹簧容置空间。
所述上夹体末端凹设形成定位叉口;所述插座机构包括一插座和二齿轮垫片;所述插座设在定位叉口之内且其二端都设外齿轮,所述二齿轮垫片分别固设定位叉口之左右二内侧面;所述齿轮垫片具有弹性并设有内齿轮,所述二齿轮垫片的内齿轮分别啮合插座的二外齿轮。对插座施加扭矩,插座的外轮齿相对内齿轮的内轮齿转动,使内轮齿变形,使外轮齿从第一内轮齿啮合位置移动至第二内轮齿啮合位置,则能实现插座转动,能实现转动定位。
所述插座机构还包括二限位垫片,所述二限位垫片分别靠设在定位叉口之左右二外侧面;另配设螺钉将插座、齿轮垫片和限位垫片连接在定位叉口。则便于装配,装配成本低。
所述插座机构还包括二插座盖,所述插座盖盖接限位垫片和螺钉并固接在定位叉口的外侧面。则外观美观。
所述齿轮垫片包括一弹性内齿轮套和一固接在内齿轮套端面的固定座,所述固定座包括环形陈列的若干固定条,所述固定条末端伸出内齿轮套之外;所述定位叉口的内侧面开设有匹配固定插座的定位槽。通过固定条伸出内齿轮套之外的部分和定位叉口的定位槽配合,能避免定位叉口和内齿轮套相对转动。
所述插座的端面凹设一环形凹槽,所述环形凹槽的内回转面设外齿轮,所述内齿轮套设在环形凹槽之内,而且,所述内齿轮套和环形凹槽的外回转面之间留有间隙。
本技术方案与背景技术相比,它具有如下优点:
通过复位弹簧使上夹体的后端和下夹体的后端相对张开,使上套孔和下套孔的俯视投影交错,使上套孔后上部分顶抵升降杆,使上套孔前下部分顶抵升降杆,使下套孔后下部分顶抵升降杆,使下套孔前上部分顶抵升降杆,使夹持机构处于锁接状态,从而定位在升降杆之上,能实现无级调高,无需在升降杆开孔;而且,由于弹簧位置对应上套孔和下套孔,处于锁接位置时上套孔和下套孔相对展开,间距大,锁接扭矩大,锁接牢固可靠。
附图说明
下面结合附图和实施例对本发明作进一步说明。
图1绘示了一较佳实施例的卡动式滑座的立体分解示意图。
图2绘示了一较佳实施例的卡动式滑座的上下夹体和复位弹簧之间的配合示意图。
图3绘示了一较佳实施例的卡动式滑座的上夹体的立体示意图。
图4绘示了一较佳实施例的卡动式滑座的剖面示意图,此时处于锁接状态。
图5绘示了一较佳实施例的卡动式滑座的剖面示意图,此时处于向上移动状态。
图6绘示了一较佳实施例的卡动式滑座的剖面示意图,此时处于向下移动状态。
图7绘示了一较佳实施例的卡动式滑座的上夹体和插座机构相配合的剖面示意图。
具体实施方式
请查阅图1至图6,卡动式滑座,它滑动连接在升降杆300之上,而且,它包括一夹持机构100和一插座机构200。
所述夹持机构100包括上夹体110和下夹体120。所述上夹体110后部设有一上下贯穿的上套孔111,上夹体110中部向下凸设形成有一枢接座112。所述下夹体120后部设有一上下贯穿的下套孔121,所述下夹体120前端向上弯曲,所述前端凸设有二凸耳122。所述二凸耳122夹设在枢接座112之二侧,所述芯轴130穿过枢接座112和二凸耳122,从而使上夹体110和下夹体120通过芯轴130枢接在一起,则通过转动使夹持机构100能在锁接状态和松释状态之间活动。
所述上夹体110和下夹体120之间夹设复位弹簧140,所述复位弹簧140位置对应上套孔111、下套孔121。
所述夹持机构100处于松释状态,则上套孔111和下套孔121的俯视投影重合,它们的轴线重合并重合升降杆300轴线,复位弹簧140处于储能状态;所述夹持机构100处于锁接状态,则上套孔111和下套孔121的俯视投影交错,它们轴线对称并都相交于升降杆300轴线,复位弹簧140处于释能状态。
请查阅图4,通过复位弹簧140使上夹体110的后端和下夹体120的后端相对张开,使上套孔111和下套孔121的俯视投影交错,使上套孔111后上部分顶抵升降杆300(图中的A处),使上套孔111前下部分顶抵升降杆300(图中的B处),使下套孔121后下部分顶抵升降杆300(图中的C处),使下套孔121前上部分顶抵升降杆300(图中的D处),使夹持机构100处于锁接状态,从而定位在升降杆300之上。请查阅图5,向上移动夹持机构100,由于上夹体110与升降杆300之间的摩擦比下夹体120与升降杆300之间的摩擦大,且灵活度差,因此沿升降杆300向上推动下夹体120并使其绕130发生偏转可使夹持机构100处于松释状态,则可向上移动夹持机构100。请查阅图6,压缩上下夹体110、120使夹持机构100处于松释状态,则向下移动,移动到位后放手,则弹簧140释能使夹持机构100处于锁接状态。
为了增加上、下套孔111、121和升降杆300之间的摩擦力,则上、下套孔之内都设有摩擦环113、123。
为了便于定位复位弹簧140,则所述上夹体110的对应上套孔111位置向下凸设有上定位环114,所述下夹体120的对应下套孔121位置向上凸设有下定位环124,所述复位弹簧140的上、下端分别定位套接在上、下定位环114、124之外。上夹体110后部边缘向下延伸一围壁115,形成一复位弹簧140容置空间。
请查阅图1、3、7,所述上夹体110末端凹设形成定位叉口150,所述定位叉口150的左右叉片都开设有左右贯穿的外大内小的阶梯孔160,所述阶梯孔160的内端部设多个定位槽161。所述插座机构200包括一插座210、二齿轮垫片220、二限位垫片230、二螺钉240、二插座盖250。
所述插座210之二端面都凹设形成一环形凹槽211,所述环形凹槽211具有一内回转面和一外回转面,所述内回转面之上设置有外齿轮212。
所述齿轮垫片220包括一弹性内齿轮套221和一固接在内齿轮套221端面的固定座,所述固定座包括环形陈列的若干固定条222,所述固定条222末端伸出内齿轮套221之外。
所述限位垫片230设成外大内小的阶梯件,而且,所述限位垫片230的内侧面凹设有与若干固定条222相适配的对应槽231。
装配时:将所述齿轮垫片220的内齿轮套221啮合在插座的外齿轮,啮合之后,所述内齿轮套221的外侧面和环形凹槽211的外回转面之间留有间隙;将装配之后的插座210和二齿轮垫片220装接在定位叉口150之内,而且,所述固定条222末端对应插入定位槽161之内;所述限位垫片230靠接在定位叉口的外侧面,使限位垫片230的阶梯面靠接在阶梯孔160的阶梯面,使所述对应槽231连接固定条222;螺钉的螺接端自由穿过限位垫片230和固定座并螺接进插座端面,所述螺钉头靠接在限位垫片外侧面;所述插座盖盖接限位垫片和螺钉并固接在定位叉口的外侧面。
以上所述,仅为本发明较佳实施例而已,故不能依此限定本发明实施的范围,即依本发明专利范围及说明书内容所作的等效变化与修饰,皆应仍属本发明涵盖的范围内。
工业实用性
本发明卡动式滑座,通过其复位弹簧使上夹体的后端和下夹体的后端相对张开,使夹持机构处于锁接状态,从而定位在升降杆之上,能实现无级调高,无需在升降杆开孔,且锁接扭矩大,锁接牢固可靠。

Claims (10)

  1. 卡动式滑座,它包括一夹持机构和一装接在夹持机构的插座机构,其特征在于:
    所述夹持机构包括上夹体和下夹体,所述上夹体和下夹体通过芯轴枢接在一起,通过转动使夹持机构能在锁接状态和松释状态之间活动;
    所述上夹体设有一上下贯穿的上套孔,所述下夹体设有一上下贯穿的下套孔,所述上夹体和下夹体之间夹设复位弹簧,所述复位弹簧位置对应上、下套孔;
    其中:所述夹持机构处于松释状态,则上套孔和下套孔的俯视投影重合,复位弹簧处于储能状态;所述夹持机构处于锁接状态,则上套孔和下套孔的俯视投影交错,复位弹簧处于释能状态。
  2. 根据权利要求1所述的卡动式滑座,其特征在于:
    所述上套孔设在上夹体的后部,所述上夹体中部向下凸设形成有一枢接座;
    所述下套孔设在下夹体的后部,所述下夹体前端向上弯曲,所述前端凸设有二凸耳,所述二凸耳夹设在枢接座之二侧,所述芯轴穿过枢接座和二凸耳。
  3. 根据权利要求1所述的卡动式滑座,其特征在于:所述上、下套孔之内都设有摩擦环。
  4. 根据权利要求1所述的卡动式滑座,其特征在于:所述上夹体的对应上套孔位置向下凸设有上定位环,所述下夹体的对应下套孔位置向上凸设有下定位环,所述复位弹簧的上、下端分别定位套接在上、下定位环之外。
  5. 根据权利要求1所述的卡动式滑座,其特征在于:所述上夹体的后部边缘向下延伸一围壁,形成一复位弹簧容置空间。
  6. 根据权利要求1或2或3或4或5所述的卡动式滑座,其特征在于:所述上夹体末端凹设形成定位叉口;所述插座机构包括一插座和二齿轮垫片;所述插座设在定位叉口之内且其二端都设外齿轮,所述二齿轮垫片分别固设定位叉口之左右二内侧面;所述齿轮垫片具有弹性并设有内齿轮,所述二齿轮垫片的内齿轮分别啮合插座的二外齿轮。
  7. 根据权利要求6所述的卡动式滑座,其特征在于:所述插座机构还包括二限位垫片,所述二限位垫片分别靠设在定位叉口之左右二外侧面;另配设螺钉将插座、齿轮垫片和限位垫片连接在定位叉口。
  8. 根据权利要求7所述的卡动式滑座,其特征在于:所述插座机构还包括二插座盖,所述插座盖盖接限位垫片和螺钉并固接在定位叉口的外侧面。
  9. 根据权利要求8所述的卡动式滑座,其特征在于:所述齿轮垫片包括一弹性内齿轮套和一固接在内齿轮套端面的固定座,所述固定座包括环形陈列的若干固定条,所述固定条末端伸出内齿轮套之外;所述定位叉口的内侧面开设有匹配固定插座的定位槽。
  10. 根据权利要求9所述的卡动式滑座,其特征在于:所述插座的端面凹设一环形凹槽,所述环形凹槽的内回转面设外齿轮,所述内齿轮套设在环形凹槽之内,而且,所述内齿轮套和环形凹槽的外回转面之间留有间隙。
PCT/CN2011/080150 2010-09-27 2011-09-26 卡动式滑座 WO2012041194A1 (zh)

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CN2010102937152A CN102101087B (zh) 2010-09-27 2010-09-27 卡动式滑座

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WO2014108836A1 (en) 2013-01-09 2014-07-17 Actelion Pharmaceuticals Ltd Antibacterial oxadiazolone derivatives
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