JPH01143442U - - Google Patents

Info

Publication number
JPH01143442U
JPH01143442U JP3961488U JP3961488U JPH01143442U JP H01143442 U JPH01143442 U JP H01143442U JP 3961488 U JP3961488 U JP 3961488U JP 3961488 U JP3961488 U JP 3961488U JP H01143442 U JPH01143442 U JP H01143442U
Authority
JP
Japan
Prior art keywords
transmission member
cable
power
transmission
distance
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
JP3961488U
Other languages
Japanese (ja)
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 filed Critical
Priority to JP3961488U priority Critical patent/JPH01143442U/ja
Publication of JPH01143442U publication Critical patent/JPH01143442U/ja
Pending legal-status Critical Current

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Landscapes

  • Arrangement And Mounting Of Devices That Control Transmission Of Motive Force (AREA)
  • Flexible Shafts (AREA)
  • Vibration Prevention Devices (AREA)
  • Mechanical Control Devices (AREA)

Description

【図面の簡単な説明】[Brief explanation of the drawing]

第1〜2図は本考案の第一実施例を示しており
、第1図は第8図のA部に相当する分解斜視図、
第2図は第一伝達部材の断面図、第3図は第一伝
達部材の別例を示す、第2図同様の断面図、第4
図は本考案の第二実施例を、第5図は同第三実施
例を、第6図は同第四実施例を、第7図は同第五
実施例を、それぞれ示す、第8図のA部又はB部
に相当する断面図、第8〜9図はケーブルを用い
た動力伝達機構を組み込んだクラツチ装置の構成
を略示しており、第8図は動力伝達中の状態を、
第9図は動力切断中の状態を、それぞれ示す断面
図、第10図は従来の緩衝装置の断面図である。 1:クラツチペダル、2,2a,2b:ケーブ
ル、3:レリーズフオーク、4:枢軸、5:軸、
6:レリーズハブ、7:ダイヤフラムばね、8:
クラツチ板、9:フライホイール、10:プレツ
シヤープレート、11:ケーシング、12:係止
駒、12a:大径部、12b:小径部、13:緩
衝部材、14:ブラケツト、15:軸、16:円
孔、17:受部、18:レバー、19:第一伝達
部材、20:主体、20a:大径部、20b:小
径部、20c:段部、21:緩衝部材、22:ス
トツプリング、23:通孔、24:衝合片、25
:円筒壁。
1 and 2 show a first embodiment of the present invention, and FIG. 1 is an exploded perspective view corresponding to section A in FIG.
Figure 2 is a sectional view of the first transmission member, Figure 3 is a sectional view similar to Figure 2 showing another example of the first transmission member, and Figure 4 is a sectional view of the first transmission member.
The figure shows the second embodiment of the present invention, FIG. 5 shows the third embodiment, FIG. 6 shows the fourth embodiment, and FIG. 7 shows the fifth embodiment. 8 and 9 schematically illustrate the configuration of a clutch device incorporating a power transmission mechanism using a cable, and FIG. 8 shows the state during power transmission.
FIG. 9 is a sectional view showing a state in which power is being cut off, and FIG. 10 is a sectional view of a conventional shock absorber. 1: Clutch pedal, 2, 2a, 2b: Cable, 3: Release fork, 4: Pivot, 5: Axis,
6: Release hub, 7: Diaphragm spring, 8:
Clutch plate, 9: Flywheel, 10: Pressure plate, 11: Casing, 12: Locking piece, 12a: Large diameter portion, 12b: Small diameter portion, 13: Buffer member, 14: Bracket, 15: Shaft, 16 : circular hole, 17: receiving part, 18: lever, 19: first transmission member, 20: main body, 20a: large diameter part, 20b: small diameter part, 20c: step part, 21: buffer member, 22: stop ring, 23 : Through hole, 24: Collision piece, 25
: Cylindrical wall.

Claims (1)

【実用新案登録請求の範囲】 (1) ケーブルを押し引きする事で、このケーブ
ルの長さ方向の動力を伝達する動力伝達機構に付
設し、ケーブルの一端に加わる振動が他端に伝わ
るのを防止する緩衝装置であつて、動力伝達機構
の途中に、比較的軟質な弾性材により造られた初
期伝達部材と硬質材により造られた最終伝達部材
とを組み合わせた第一伝達部材と、この第一伝達
部材と対向する第二伝達部材とによる緩衝伝達部
を設け、この緩衝伝達部は、ケーブルによる動力
伝達の開始時に、第二伝達部材に当接した初期伝
達部材を弾性的に変形させてから、最終伝達部材
を第二伝達部材に当接させる様に、動力未伝達時
点に於ける第二伝達部材と初期伝達部材との距離
を、同時点に於ける第二伝達部材と最終伝達部材
との距離よりも短くしたケーブルを用いた動力伝
達機構に於ける緩衝装置。 (2) ケーブルの一端を結合したブラケツトの二
股部に掛け渡した軸に、大径の初期伝達部材と小
径の最終伝達部材とを組み合わせた第一伝達部材
を支持し、この第一伝達部材の外周に、第二伝達
部材を対向させた、請求項1に記載のケーブルを
用いた動力伝達機構に於ける緩衝装置。 (3) 第二伝達部材に形成した通孔にケーブルの
一端部を、長さ方向の移動自在に挿通すると共に
、上記第二伝達部材の一側に突出したケーブルの
一端に最終伝達部材を固定し、この最終伝達部材
と同心に初期伝達部材を装着し、動力未伝達時点
に於ける第二伝達部材と初期伝達部材との距離を
、同時点に於ける第二伝達部材と最終伝達部材と
の距離よりも短くした、請求項1に記載のケーブ
ルを用いた動力伝達機構に於ける緩衝装置。
[Claims for Utility Model Registration] (1) The device is attached to a power transmission mechanism that transmits power in the length direction of the cable by pushing and pulling the cable, and prevents vibrations applied to one end of the cable from being transmitted to the other end. This is a shock absorbing device for preventing the transmission of power, which includes a first transmission member in the middle of the power transmission mechanism, which is a combination of an initial transmission member made of a relatively soft elastic material and a final transmission member made of a hard material; A buffer transmission section including one transmission member and a second transmission member facing each other is provided, and the buffer transmission section elastically deforms the initial transmission member that is in contact with the second transmission member at the start of power transmission by the cable. , so that the final transmission member is in contact with the second transmission member, the distance between the second transmission member and the initial transmission member at the time when power is not transmitted is set to the distance between the second transmission member and the final transmission member at the same time. A shock absorber in a power transmission mechanism that uses a cable that is shorter than the distance between the two. (2) A first transmission member, which is a combination of a large-diameter initial transmission member and a small-diameter final transmission member, is supported on a shaft that spans the bifurcated part of the bracket that connects one end of the cable, and the first transmission member is A shock absorbing device in a power transmission mechanism using a cable according to claim 1, wherein the second transmission member is opposed to the outer periphery. (3) Insert one end of the cable into the through hole formed in the second transmission member so that it can move freely in the length direction, and fix the final transmission member to one end of the cable that protrudes to one side of the second transmission member. Then, an initial transmission member is installed concentrically with this final transmission member, and the distance between the second transmission member and the initial transmission member at the time when power is not transmitted is determined by the distance between the second transmission member and the final transmission member at the same time. A shock absorber in a power transmission mechanism using a cable according to claim 1, wherein the distance is shorter than the distance.
JP3961488U 1988-03-28 1988-03-28 Pending JPH01143442U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP3961488U JPH01143442U (en) 1988-03-28 1988-03-28

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3961488U JPH01143442U (en) 1988-03-28 1988-03-28

Publications (1)

Publication Number Publication Date
JPH01143442U true JPH01143442U (en) 1989-10-02

Family

ID=31266114

Family Applications (1)

Application Number Title Priority Date Filing Date
JP3961488U Pending JPH01143442U (en) 1988-03-28 1988-03-28

Country Status (1)

Country Link
JP (1) JPH01143442U (en)

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