CN205064828U - Direction of shifting assembly with clearance compensation function - Google Patents

Direction of shifting assembly with clearance compensation function Download PDF

Info

Publication number
CN205064828U
CN205064828U CN201520682342.6U CN201520682342U CN205064828U CN 205064828 U CN205064828 U CN 205064828U CN 201520682342 U CN201520682342 U CN 201520682342U CN 205064828 U CN205064828 U CN 205064828U
Authority
CN
China
Prior art keywords
cavity
gearshift
guide
vibration damper
axis
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.)
Expired - Fee Related
Application number
CN201520682342.6U
Other languages
Chinese (zh)
Inventor
钟华
钟川
高如富
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Chongqing Zhonghua Machinery Co Ltd
Original Assignee
Chongqing Zhonghua Machinery Co Ltd
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 by Chongqing Zhonghua Machinery Co Ltd filed Critical Chongqing Zhonghua Machinery Co Ltd
Priority to CN201520682342.6U priority Critical patent/CN205064828U/en
Application granted granted Critical
Publication of CN205064828U publication Critical patent/CN205064828U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Gears, Cams (AREA)

Abstract

The utility model discloses a direction of shifting assembly with clearance compensation function, including shifting the guiding axle, first bearing, turbine shaft gear shifts, the guiding axle worm wheel of shifting, second bearing and torsion absorber assembly, the torsion absorber assembly is including the bumper shock absorber left side lid that from left to right sets gradually, bumper shock absorber right side lid and torsion absorber retaining ring, the cylindrical spiral spring that is the circumference equipartition passes through the pretightning force and installs that to correspond the installation cavity that sets up in the lid of the bumper shock absorber right side internal, still be provided with the lightening hole between installation cavity and guiding axle, be in the same place with torsion absorber retaining ring lock after covering and crossing bumper shock absorber right side lid in a bumper shock absorber left side, cylindrical spiral spring's external diameter is greater than the cavity degree of depth of installing the cavity, make left cavity, when the cavity rotation is installed relatively to right side cavity, left side cavity, the lateral wall homoenergetic compression cylindrical spiral spring of right side cavity. When the turbine shaft gear's that shifts external tooth appearance is worn and torn, the clearance of ability automatic compensation wearing and tearing production, the zero clearance that turbine shaft gear and gear level were shifted in the realization meshes.

Description

A kind of gearshift guiding assemblage with clearance compensation function
Technical field
The utility model relates to transmission technology field, is specifically related to a kind of gearshift guiding assemblage with clearance compensation function.
Background technique
Shift of transmission guiding assemblage usually by the gearshift axis of guide, and is from left to right sleeved on clutch shaft bearing, gearshift worm-wheel shaft gear, gearshift axis of guide worm gear and the second bearing composition on the gearshift axis of guide successively.Clutch shaft bearing and the second bearing press mounting on the gearshift axis of guide, for the installation at axis of guide two ends of shifting gears.Gearshift axis of guide worm gear is fixedly set on the gearshift axis of guide, gearshift axis of guide worm gear is engaged by interior external tooth with the right-hand member of gearshift worm-wheel shaft gear, thus transferring power is to drive gearshift worm-wheel shaft pinion rotation, gearshift worm-wheel shaft gear driven gear level moves, drive shift fork to move by gear level, thus realize gearshift.
The subject matter that this structure exists is: in use, and wearing and tearing easily appear in the external tooth of gearshift worm-wheel shaft gear, once occur wearing and tearing, need frequent gearshift worm-wheel shaft gear of changing to ensure normally carrying out of gearshift, user cost is very high, and bothers very much.
Model utility content
Of the present utility modelly aim to provide a kind of gearshift guiding assemblage with clearance compensation function, when there are wearing and tearing in the external tooth of worm-wheel shaft gear of shifting gears, can the gap that produces of auto-compensation wearing and tearing, realize the tight mesh of gearshift worm-wheel shaft gear and gear level.
For this reason, the technological scheme that the utility model adopts is: a kind of gearshift guiding assemblage with clearance compensation function, comprise the gearshift axis of guide (1), and be from left to right sleeved on clutch shaft bearing (2), gearshift worm-wheel shaft gear (3) in the gearshift axis of guide (1), shift gears axis of guide worm gear (4) and the second bearing (5) successively, described clutch shaft bearing (2) and the second bearing (5) are fitted in the gearshift axis of guide (1), for the installation at the axis of guide of shifting gears (1) two ends, it is characterized in that:
The gearshift axis of guide (1) between described gearshift worm-wheel shaft gear (3) and gearshift axis of guide worm gear (4) is also set with torsion vibration absorber assembly, described torsion vibration absorber assembly comprises the vibration damper left cover (6) from left to right set gradually, vibration damper right cover (7) and torsion vibration absorber back-up ring (9), circumferentially uniform cylindrically coiled spring (8) is arranged in the installation cavity (7a) of corresponding setting in vibration damper right cover (7) by pretightening force, the outer side wall of described installation cavity (7a) is cambered surface, other three sidewalls are plane, lightening hole (7c) is also provided with between installation cavity (7a) and the axis of guide (7b), the right side of described vibration damper left cover (6) is provided with equal with installing cavity (7a) quantity, the left cavity (6a) that position is corresponding, the left side of torsion vibration absorber back-up ring (9) is provided with equal with installing cavity (7a) quantity, the right cavity (9a) that position is corresponding, and left cavity (6a), the length of right cavity (9a) is all greater than the length of installing cavity (7a), described vibration damper left cover (6) is crossed vibration damper right cover (7) and is snapped together with torsion vibration absorber back-up ring (9) afterwards, thus cylindrically coiled spring (8) and vibration damper right cover (7) are arranged between vibration damper left cover (6) and torsion vibration absorber back-up ring (9), the external diameter of described cylindrically coiled spring (8) is greater than the cavity depth of installing cavity (7a), make left cavity (6a), right cavity (9a) is mounted opposite cavity (7a) when rotating, left cavity (6a), the sidewall of right cavity (9a) all can compress cylindrically coiled spring (8),
The left end of described gearshift worm-wheel shaft gear (3) is by being sleeved on collar (10) axial limiting in the gearshift axis of guide (1), described gearshift axis of guide worm gear (4) is fixedly set in the gearshift axis of guide (1), described gearshift axis of guide worm gear (4) drives vibration damper right cover (7) to rotate by external splines, and vibration damper left cover (6) is engaged by the external tooth of internal tooth with gearshift worm-wheel shaft gear (3) right-hand member thus driven worm-wheel shaft gear (3) of shifting gears to rotate.
The beneficial effects of the utility model: by setting up torsion vibration absorber assembly on the gearshift axis of guide, and torsion vibration absorber assembly is between gearshift worm-wheel shaft gear and gearshift axis of guide worm gear, play transfer motion power and the effect in elimination gearshift worm-wheel shaft gear wear gap; Gearshift axis of guide worm gear, the gearshift axis of guide and torsion vibration absorber back-up ring synchronous axial system; vibration damper left cover is rotated with gearshift worm-wheel shaft gear synchronous; cylindrically coiled spring and vibration damper right cover are between vibration damper left cover and torsion vibration absorber back-up ring; by vibration damper left cover, gearshift worm-wheel shaft gear is provided to the torsion of a sense of rotation; even if there are wearing and tearing in gearshift worm-wheel shaft gear; also can guarantee gearshift worm-wheel shaft gear and gear level positive engagement, ensure normally carrying out of gearshift.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is the decomposing schematic representation of torsion vibration absorber assembly.
Fig. 3 is the right elevation of vibration damper left cover.
Fig. 4 is the left view of torsion vibration absorber back-up ring.
Embodiment
Below by embodiment also by reference to the accompanying drawings, the utility model is described in further detail:
As shown in Figure 1, a kind of gearshift guiding assemblage with clearance compensation function, primarily of the gearshift axis of guide 1, and clutch shaft bearing 2, gearshift worm-wheel shaft gear 3, gearshift axis of guide worm gear 4 and the second bearing 5 be from left to right sleeved on successively on the gearshift axis of guide 1 forms.Clutch shaft bearing 2 and the second bearing 5 are fitted on the gearshift axis of guide 1, for the installation at the axis of guide 1 two ends of shifting gears.
In addition, the gearshift axis of guide 1 between gearshift worm-wheel shaft gear 3 and gearshift axis of guide worm gear 4 is also set with torsion vibration absorber assembly.Shown in composition graphs 1-Fig. 4, torsion vibration absorber assembly forms primarily of vibration damper left cover 6, vibration damper right cover 7, torsion vibration absorber back-up ring 9 and cylindrically coiled spring 8.Vibration damper left cover 6, vibration damper right cover 7, torsion vibration absorber back-up ring 9, three from left to right sets gradually.Cylindrically coiled spring 8 is at least three, but is not limited to three.Circumferentially uniform cylindrically coiled spring 8 is arranged in the installation cavity 7a of corresponding setting in vibration damper right cover 7 by pretightening force.The outer side wall installing cavity 7a is cambered surface, and other three sidewalls are plane, between installation cavity 7a and axis of guide 7b, be also provided with lightening hole 7c.The right side of vibration damper left cover 6 is provided with and installs the left cavity 6a that cavity 7a quantity is equal, position is corresponding.The left side of torsion vibration absorber back-up ring 9 is provided with and installs the right cavity 9a that cavity 7a quantity is equal, position is corresponding, and the length of left cavity 6a, right cavity 9a is all greater than the length of installing cavity 7a.
The circumference of vibration damper left cover 6 is provided with four buckle 6b, and torsion vibration absorber back-up ring 9 is provided with equal with buckle 6b quantity, the buckle slot 9b that position is corresponding, the quantity of buckle 6b and buckle slot 9b is not limited to four.Vibration damper left cover 6 is crossed after vibration damper right cover 7 and torsion vibration absorber back-up ring 9 snaps together, thus cylindrically coiled spring 8 and vibration damper right cover 7 is arranged between vibration damper left cover 6 and torsion vibration absorber back-up ring 9.The external diameter of cylindrically coiled spring 8 is greater than the cavity depth of installing cavity 7a, and make left cavity 6a, right cavity 9a is mounted opposite cavity 7a when rotating, the sidewall of left cavity 6a, right cavity 9a all can compress cylindrically coiled spring 8.
Preferably, be provided with four circumferentially uniform installation cavity 7a in vibration damper right cover 7, correspondingly, cylindrically coiled spring 8, left cavity 6a and right cavity 9a are respectively four.Vibration damper left cover 6, vibration damper right cover 7 and torsion vibration absorber back-up ring 9 adopt PA66+30% glass to make.
During assembling torsion vibration absorber assembly, first cylindrically coiled spring 8 is arranged in the installation cavity 7a of vibration damper right cover 7, ensures that cylindrically coiled spring 8 can not drop out in installation cavity 7a by precompression; Vibration damper left cover 6 is placed on the left side of vibration damper right cover 7, torsion vibration absorber back-up ring 9 is placed on the right side of vibration damper right cover 7, and is snapped together by buckle again.After installing, vibration damper left cover 6 can be rotated relative to vibration damper right cover 7, in the process of rotating, compress cylindrically coiled spring 8; Torsion vibration absorber back-up ring 9 can rotate relative to vibration damper right cover 7, compresses cylindrically coiled spring 8 equally in the process of rotating.
The left end of gearshift worm-wheel shaft gear 3 is by being sleeved on collar 10 axial limiting on the gearshift axis of guide 1, gearshift axis of guide worm gear 4 is fixedly set on the gearshift axis of guide 1, gearshift axis of guide worm gear 4 drives vibration damper right cover 7 to rotate by external splines, and vibration damper left cover 6 is engaged by the external tooth of internal tooth with gearshift worm-wheel shaft gear 3 right-hand member thus driven worm-wheel shaft gear 3 of shifting gears to rotate.

Claims (3)

1. one kind has the gearshift guiding assemblage of clearance compensation function, comprise the gearshift axis of guide (1), and be from left to right sleeved on clutch shaft bearing (2), gearshift worm-wheel shaft gear (3) in the gearshift axis of guide (1), shift gears axis of guide worm gear (4) and the second bearing (5) successively, described clutch shaft bearing (2) and the second bearing (5) are fitted in the gearshift axis of guide (1), for the installation at the axis of guide of shifting gears (1) two ends, it is characterized in that:
The gearshift axis of guide (1) between described gearshift worm-wheel shaft gear (3) and gearshift axis of guide worm gear (4) is also set with torsion vibration absorber assembly, described torsion vibration absorber assembly comprises the vibration damper left cover (6) from left to right set gradually, vibration damper right cover (7) and torsion vibration absorber back-up ring (9), circumferentially uniform cylindrically coiled spring (8) is arranged in the installation cavity (7a) of corresponding setting in vibration damper right cover (7) by pretightening force, the outer side wall of described installation cavity (7a) is cambered surface, other three sidewalls are plane, lightening hole (7c) is also provided with between installation cavity (7a) and the axis of guide (7b), the right side of described vibration damper left cover (6) is provided with equal with installing cavity (7a) quantity, the left cavity (6a) that position is corresponding, the left side of torsion vibration absorber back-up ring (9) is provided with equal with installing cavity (7a) quantity, the right cavity (9a) that position is corresponding, and left cavity (6a), the length of right cavity (9a) is all greater than the length of installing cavity (7a), described vibration damper left cover (6) is crossed vibration damper right cover (7) and is snapped together with torsion vibration absorber back-up ring (9) afterwards, thus cylindrically coiled spring (8) and vibration damper right cover (7) are arranged between vibration damper left cover (6) and torsion vibration absorber back-up ring (9), the external diameter of described cylindrically coiled spring (8) is greater than the cavity depth of installing cavity (7a), make left cavity (6a), right cavity (9a) is mounted opposite cavity (7a) when rotating, left cavity (6a), the sidewall of right cavity (9a) all can compress cylindrically coiled spring (8),
The left end of described gearshift worm-wheel shaft gear (3) is by being sleeved on collar (10) axial limiting in the gearshift axis of guide (1), described gearshift axis of guide worm gear (4) is fixedly set in the gearshift axis of guide (1), described gearshift axis of guide worm gear (4) drives vibration damper right cover (7) to rotate by external splines, and vibration damper left cover (6) is engaged by the external tooth of internal tooth with gearshift worm-wheel shaft gear (3) right-hand member thus driven worm-wheel shaft gear (3) of shifting gears to rotate.
2. the gearshift guiding assemblage with clearance compensation function according to claim 1, it is characterized in that: in described vibration damper right cover (7), be provided with four circumferentially uniform installation cavitys (7a), correspondingly, cylindrically coiled spring (8), left cavity (6a) and right cavity (9a) are respectively four.
3. the gearshift guiding assemblage with clearance compensation function according to claim 1, is characterized in that: described vibration damper left cover (6), vibration damper right cover (7) and torsion vibration absorber back-up ring (9) adopt PA66+30% glass to make.
CN201520682342.6U 2015-09-06 2015-09-06 Direction of shifting assembly with clearance compensation function Expired - Fee Related CN205064828U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520682342.6U CN205064828U (en) 2015-09-06 2015-09-06 Direction of shifting assembly with clearance compensation function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520682342.6U CN205064828U (en) 2015-09-06 2015-09-06 Direction of shifting assembly with clearance compensation function

Publications (1)

Publication Number Publication Date
CN205064828U true CN205064828U (en) 2016-03-02

Family

ID=55391385

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520682342.6U Expired - Fee Related CN205064828U (en) 2015-09-06 2015-09-06 Direction of shifting assembly with clearance compensation function

Country Status (1)

Country Link
CN (1) CN205064828U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105114618A (en) * 2015-09-06 2015-12-02 重庆钟华机械有限责任公司 Gearshift guide assembly having clearance compensation function

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105114618A (en) * 2015-09-06 2015-12-02 重庆钟华机械有限责任公司 Gearshift guide assembly having clearance compensation function

Similar Documents

Publication Publication Date Title
CN102717705A (en) Mechanical intelligent adaptive double-gear automatic speed change hub with multiple cams
CN101454593A (en) Speed reducer and electric power steering device equipped therewith
CN205207631U (en) A bumper shock absorber for shifting gears on guiding axle assembly
CN205064828U (en) Direction of shifting assembly with clearance compensation function
CN205064827U (en) A torsion absorber for shifting gears on guiding axle assembly
CN205064811U (en) Automatic guiding axle subassembly of shifting of derailleur
CN205064696U (en) Torsion absorber assembly
CN205064814U (en) Bumper shock absorber of installing and removing fast
CN205064830U (en) Automatic gearbox's gearshift is exclusively used in
CN205064829U (en) A direction of shifting subassembly for automatic gearbox
CN205064812U (en) Back guiding axle mechanism of shifting of becoming invalid of turbine shaft gear wearing and tearing prevents to shift
CN102529572A (en) Mechanical intelligent self-adaption two-gear automatic-gear-shifting hub
CN205064813U (en) Two keep off automatic gearbox guiding axle assembly of shifting
CN204096025U (en) A kind of force-saving speed-changer
CN201050562Y (en) Composite roller type isolator
CN105114618A (en) Gearshift guide assembly having clearance compensation function
CN201863399U (en) Oil press
CN203023426U (en) Cylindrical gear power-shunting type limited slip differential
CN202834034U (en) Structure for reducing shifting force of heavy-duty transmission
CN105090342A (en) Torsion shock absorber assembly
CN105090475A (en) Damper capable of being assembled and disassembled quickly
CN105090476A (en) Gear shifting guide shaft mechanism preventing gear shifting worm wheel shaft gear from losing efficacy after gear shifting worm wheel shaft gear is abraded
CN206685785U (en) Electric chassis truck special clutch
CN202108943U (en) Skew angle harmonic speed reducer
CN102728622B (en) Coupling structure for rolling frame

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160302

Termination date: 20160906

CF01 Termination of patent right due to non-payment of annual fee