CN208844130U - A kind of back-fire arrangement for clutch diaphragm heat treatment - Google Patents

A kind of back-fire arrangement for clutch diaphragm heat treatment Download PDF

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Publication number
CN208844130U
CN208844130U CN201821375566.2U CN201821375566U CN208844130U CN 208844130 U CN208844130 U CN 208844130U CN 201821375566 U CN201821375566 U CN 201821375566U CN 208844130 U CN208844130 U CN 208844130U
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CN
China
Prior art keywords
shaft
fixed link
endless glide
clutch diaphragm
tempering furnace
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CN201821375566.2U
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Chinese (zh)
Inventor
方向东
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Zhejiang Tieliu Clutch Co,.Ltd
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Hubei Sanhuan Clutch Co Ltd
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Priority to CN201821375566.2U priority Critical patent/CN208844130U/en
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Abstract

The utility model discloses a kind of back-fire arrangement for clutch diaphragm heat treatment, including tempering furnace, two annular supply units, multiple hook units, discharge unit;Two annular elements are oppositely arranged, and each annular supply unit includes endless glide, sliding block, ring chain, head sprocket, driving motor, and endless glide part is built in tempering furnace;Sliding block sliding is connected in endless glide;Ring chain is for driving sliding block to slide in endless glide;Head sprocket engagement is connected in ring chain;Driving motor output shaft is coaxially connected in head sprocket;Each hook unit includes shaft, hook member, and shaft one end is connected in sliding block, the other end is connected in the sliding block of another annular supply unit;Each hook member includes sleeve, connecting rod, fixed link, and sleeve is placed on shaft, and connecting rod one end is connected in sleeve, and fixed link one end is connected in the connecting rod other end;Discharge unit includes cylinder, and cylinder is set to below endless glide.The utility model can automatically remove clutch diaphragm from hook member.

Description

A kind of back-fire arrangement for clutch diaphragm heat treatment
Technical field
The utility model relates to clutch diaphragm technical field of heat treatment, and in particular to one kind is at clutch diaphragm heat The back-fire arrangement of reason.
Background technique
The main heat treatment process process of clutch diaphragm are as follows: pressure quench, be tempered, ball blast, detection, clutch diaphragm be tempered when It is handled by tempering furnace, existing tempering furnace generally comprises furnace body, bracket, fire door, and bracket fixation is built in furnace body, people Clutch diaphragm is placed on bracket and fixed by work, closes fire door, and clutch diaphragm carries out tempering, this tradition in furnace body Tempering furnace existing defects, after clutch diaphragm carries out tempering in furnace body, need manually by hook by high temperature from Clutch diaphragm is removed from bracket takes out furnace body, large labor intensity, it has not been convenient to feeding.
Utility model content
The purpose of the utility model is to overcome above-mentioned technical deficiencies, provide a kind of returning for clutch diaphragm heat treatment Fiery device, solve in the prior art tempering furnace inconvenience feeding the technical issues of.
To reach above-mentioned technical purpose, the technical solution of the utility model provides a kind of for clutch diaphragm heat treatment Back-fire arrangement, including rack, tempering furnace, two annular supply units, multiple hook units, discharge unit, the tempering furnace are set It is placed in the rack;Two annular elements are parallel and are oppositely arranged, and each annular supply unit includes that annular is sliding Rail, multiple sliding blocks, ring chain, head sprocket, driving motor, the endless glide are vertically arranged, and part is built in described return Stove;Multiple sliding blocks are slidably connected to the endless glide;The relatively described endless glide setting of the ring chain, and portion Divide and be built in the tempering furnace, the ring chain is connected with each sliding block, for driving the sliding block described Sliding is recycled in endless glide;The head sprocket engagement is connected to the ring chain;The driving motor is set to the machine On frame, and the output shaft of the driving motor is coaxially connected in the head sprocket;Each hook unit includes a shaft, more A hook member, described shaft one end are connected to the sliding block, other end horizontal connection in the institute of another annular supply unit State sliding block;Multiple hook members are axially uniformly distributed along the shaft, and each hook member includes a sleeve, a connection Bar, a fixed link, the sleeve are rotatably sheathed on the shaft, and described connecting rod one end is connected radially to institute along the sleeve Sleeve outer peripheral surface is stated, described fixed link one end is connected to the connecting rod other end, and the fixed link other end tilts upwards to be set It sets, and the fixed link is set to the connecting rod close to the side of the tempering furnace feed end;The discharge unit includes two A cylinder, in rack described in two cylinders, and the output shaft of two cylinders is oppositely arranged, the output shaft of the cylinder It is set to below the endless glide.
Compared with prior art, the beneficial effects of the utility model include: by setting cylinder, locating part and hook Part can simply and easily unload clutch diaphragm from fixed link, take the clutch diaphragm in fixed link without manually going Under;By the way that clutch diaphragm to be hung on hook member, drives hook member mobile by chain, sliding block, material list is unloaded by setting Clutch diaphragm can be removed automatically from hook member, alleviate the labor intensity of worker, make clutch by hook member by member Diaphragm leaves inboard wall of furnace body.
Detailed description of the invention
Fig. 1 is the schematic three dimensional views of the utility model;
Fig. 2 is the partial enlargement diagram in Fig. 1 at M;
Fig. 3 is rack in the utility model, annular supply unit, the schematic three dimensional views for hooking unit and discharge unit.
Fig. 4 is the partial enlargement diagram in Fig. 3 at N;
Fig. 5 is rack in the utility model, annular supply unit, the structural schematic diagram for hooking unit and discharge unit;
Fig. 6 is the partial enlargement diagram in Fig. 5 at P;
Fig. 7 is that the structure of annular supply unit in the utility model, hook unit, electric heating tube and hot air circulation unit is shown It is intended to;
Fig. 8 is the cross-sectional view of A-A line along Fig. 7;
Fig. 9 is the schematic three dimensional views of tempering furnace and hot air circulation unit in the utility model;
Figure 10 is the schematic three dimensional views of tempering furnace and another visual angle of hot air circulation unit in the utility model;
Figure 11 is the schematic three dimensional views of hook member in the utility model.
Specific embodiment
In order to make the purpose of the utility model, technical solutions and advantages more clearly understood, below in conjunction with attached drawing and implementation Example, the present invention will be further described in detail.It should be appreciated that specific embodiment described herein is only used to explain The utility model is not used to limit the utility model.
The utility model provides a kind of back-fire arrangement for the heat treatment of clutch damping disk(-isc), as shown in Fig. 1 to 11, packet Including rack 1, tempering furnace 2, two annular supply units 3, multiple hook units 4, discharge unit 5, multiple electric heating tubes 6, hot wind Cycling element 7.
Rack 1 is steel frame construction.
Tempering furnace 2 is set in rack 1, and tempering furnace 2 includes furnace body 21, the first fire door 22, the second fire door 23;21 water of furnace body Flat to be set in rack 1, the first fire door 22, the second fire door 23 are arranged with respect to the feed inlet of furnace body 21, discharge port respectively, the first furnace The 22, second fire door 23 of door is door curtain structure, and the first fire door 22, the second fire door 23 are made of flexible material.
Two annular supply units 3 are parallel and are oppositely arranged, and each annular supply unit 3 includes endless glide 31, multiple Sliding block 32,35, two driving motors 36 of accessary sprocket wheel of head sprocket 34, two of ring chain 33, two, endless glide 31 are set vertically It sets, and part is built in furnace body 21;Multiple sliding blocks 32 are slidably connected to endless glide 31;33 opposed annular sliding rail 31 of ring chain Setting, and part is built in furnace body 21, ring chain 33 is connected with each sliding block 32, for driving sliding block 32 sliding in annular Cycle rotation on rail 31;Four corners that two head sprockets, 34, two accessary sprocket wheels 35 distinguish opposed annular chain 33 are arranged, and two Head sprocket 34 is arranged close to the bottom of ring chain 33, and head sprocket 34, accessary sprocket wheel 35 engage be connected to ring chain 33 respectively;It drives Dynamic motor 36 is arranged in a one-to-one correspondence with head sprocket 34, and driving motor 36 is set in rack 1, and the output shaft of driving motor 36 is same Axis connection is in head sprocket 34.
Unit 4 is hooked to be arranged in a one-to-one correspondence with the sliding block 32 on each annular supply unit 3;Each hook unit 4 includes One shaft 41, multiple hook members 42, multiple locating parts 43,41 one end of shaft are connected to sliding block 32, other end horizontal connection in another The sliding block 32 of one annular supply unit 3;Multiple hook members 42 are axially uniformly distributed along shaft 41, and each hook member 42 includes a set of Cylinder 421, one connecting rod 422, a fixed link 423, sleeve 421 are rotatably sheathed on shaft 41, and 422 one end of connecting rod is along sleeve 421 are connected radially to 421 outer peripheral surface of sleeve, and 423 one end of fixed link is connected to 422 other end of connecting rod, 423 other end of fixed link Edge is obliquely installed upwards, and fixed link 423 is set to connecting rod 422 close to the side of 21 feed end of furnace body, fixed link 423 and company Angle between extension bar 422 is 45 degree to 60 degree, and the length of fixed link 423 is 2 to 3 centimetres;Locating part 43 and hook member 42 It is arranged in a one-to-one correspondence, each locating part 43 includes two fixed rings 431, and 431 fixing sleeve of fixed ring is set to shaft 41, and two solid Determine the two sides that ring 431 is set to corresponding sleeve 421.
Discharge unit 5 includes two discharging blocks 52 of cylinders 51, one, and two cylinders 51 are set to the rack 1 of 21 lower section of furnace body On, and two 51 output shafts of cylinder are oppositely arranged, the output shaft of cylinder 51 is set to 31 lower section of endless glide;The block 52 that discharges is arranged In on the bracket of 51 lower section of cylinder, discharging block 52 offers a V-groove along its length, and the V-groove runs through discharging block 52, and The V-groove upper end is connected with the external world.
Preferably, the output shaft of cylinder 51 is set to the lower section of the sleeve 421 of 31 lower end of endless glide, and close to the set Cylinder 421 is arranged.
Multiple electric heating tubes 6 are vertically arranged at furnace body 21 on the two sidewalls of bottom, and multiple electric heating tubes 6 are along furnace body 21 length directions are uniformly distributed, and electric heating tube 6 is electric ceramic pipe, and electric ceramic tube lifetime is long, and heat-radiating properties are good.
Hot air circulation unit 7 includes multiple circulation motors 71, multiple blades 72, and circulation motor 71 is set to the top of furnace body 21 Portion, and be uniformly arranged along 21 length direction of furnace body, and the output shaft of circulation motor 71 can be rotated across 21 inner wall of furnace body;Blade 72 It is inside set to furnace body 21, and is set to 41 top of shaft, blade 72 is arranged in a one-to-one correspondence with circulation motor 71, and blade 72 is coaxial It is connected to the output shaft of corresponding circulation motor 71.
The specific workflow of the utility model: clutch damping disk(-isc) to be processed is hung over outside 2 feed end of tempering furnace In fixed link 423, driving motor 36 drives head sprocket 34 to rotate, and head sprocket 34 drives ring chain 33 to rotate, ring chain 33 Band movable slider 32 slides in endless glide 31, and the sliding block 32 on two annular supply units 3 moves synchronously, and keeps shaft 41 horizontal It is moved into furnace, hook member 42 drives clutch damping disk(-isc) to move into furnace, and clutch damping disk(-isc) enters across the first fire door 22 In furnace body 21, multiple 6 electrified regulations of electric heating tube, circulation motor 71 starts, and blade 72 starts turning, and makes the air in furnace body 21 It circulates, tempering is carried out to the clutch damping disk(-isc) in furnace body 21;Clutch damping disk(-isc) after tempering is complete is hung It is pierced by furnace body 21 from 21 second fire door 23 of furnace body under the drive of hook 42, and continues to slide along annular under the drive of ring chain 33 Rail 31 is mobile, when clutch damping disk(-isc) moves on discharging block 52, starts two cylinders 51, the output of two cylinders 51 is axial Outer stretching, until the output shaft of two cylinders 51 abuts against;Hook member 42 drives clutch damping disk(-isc) to continue to move, connecting rod 422 abut to 51 output shaft of cylinder, and hook member 42 drives clutch damping disk(-isc) to continue to move, and connecting rod 422 opens up rotation and band Moving sleeve 421 rotates, and clutch damping disk(-isc) slowly rises, when connecting rod 422, fixed link 423 rise to certain angle, clutch Device damping disk(-isc) slides from fixed link 423, and falls into discharging block 52, clutch damping disk(-isc) fitting discharging 52 one side wall of block, and edge Discharging 52 length direction of block skids off downwards, and the output shaft of cylinder 51 is replied, and connecting rod 422, fixed link 423 rotate down.
The beneficial effects of the utility model include: by two cylinders of setting, locating part and hook member, can simply by Clutch diaphragm is unloaded from fixed link, takes down the clutch diaphragm in fixed link without manually going;By by clutch film Piece is hung on hook member, drives hook member mobile by chain, sliding block, can be automatically by clutch by the way that discharge unit is arranged Device diaphragm is removed from hook member, alleviates the labor intensity of worker, so that clutch diaphragm is left inboard wall of furnace body by hook member, Prevent the even situation of uneven heating;Angle between fixed link and connecting rod is 45 degree to 60 degree, and the length of fixed link It is 2 to 3 centimetres, clutch diaphragm hanging in fixed link steadily can be made, and when unloading clutch diaphragm, make clutch diaphragm It can directly be slided from fixed link;By setting discharge block, the clutch diaphragm unloaded from fixed link can be caught, and can make from Clutch diaphragm is skidded off from discharging block.
Specific embodiment of the present utility model described above does not constitute the restriction to scope of protection of the utility model. Any other various changes and modifications that any technical concept according to the present utility model is made should be included in practical In novel scope of protection of the claims.

Claims (6)

1. a kind of back-fire arrangement for clutch diaphragm heat treatment, including it is rack, tempering furnace, two annular supply units, more A hook unit, discharge unit, the tempering furnace are set in the rack;Two annular elements are parallel and set relatively It sets, each annular supply unit includes endless glide, multiple sliding blocks, ring chain, head sprocket, driving motor, the ring Shape sliding rail is vertically arranged, and part is built in the tempering furnace;Multiple sliding blocks are slidably connected to the endless glide;It is described The relatively described endless glide setting of ring chain, and part is built in the tempering furnace, the ring chain and each cunning Block is connected, for driving the sliding block to recycle sliding in the endless glide;The head sprocket engagement is connected to described Ring chain;The driving motor is set in the rack, and the output shaft of the driving motor is coaxially connected in the master Sprocket wheel;Each hook unit includes a shaft, multiple hook members, and described shaft one end is connected to the sliding block, the other end Horizontal connection is in the sliding block of another annular supply unit;Axial uniform point along the shaft of multiple hook members Cloth, each hook member include a sleeve, a connecting rod, a fixed link, and the sleeve is rotatably sheathed on the shaft, institute It states connecting rod one end and is connected radially to the sleeve outer peripheral surface along the sleeve, described fixed link one end is connected to the connecting rod The other end, the fixed link other end are obliquely installed upwards, and the fixed link is set to the connecting rod close to the tempering The side of furnace feed end;The discharge unit includes two cylinders, in rack described in two cylinders, and two cylinders Output shaft be oppositely arranged, the output shaft of the cylinder is set to below the endless glide.
2. the back-fire arrangement according to claim 1 for clutch diaphragm heat treatment, each hook unit also wrap Multiple locating parts are included, the locating part is arranged in a one-to-one correspondence with the hook member, and each locating part includes two described solid Determine ring, the fixed ring fixing sleeve is set to the shaft, and two fixed rings are set to the corresponding hook member Two sides.
3. the back-fire arrangement according to claim 1 for clutch diaphragm heat treatment, described for clutch diaphragm heat The back-fire arrangement of processing further includes hot air circulation unit, and the hot air circulation unit includes multiple circulation motors, multiple blades, institute It states circulation motor to be set at the top of the tempering furnace, and is uniformly arranged along the tempering furnace length direction, and the circulation motor Output shaft can be rotated across the tempering furnace inner wall;It is set to the tempering furnace in the blade, and is set to the shaft Top, the blade are arranged in a one-to-one correspondence with the circulation motor, and the blade is coaxially connected in the corresponding circulation The output shaft of motor.
4. the back-fire arrangement according to claim 1 for clutch diaphragm heat treatment, the fixed link and the connection Angle between bar is 45 degree to 60 degree.
5. the back-fire arrangement according to claim 1 for clutch diaphragm heat treatment, the length of the fixed link be 2 to 3 centimetres.
6. the back-fire arrangement according to claim 1 for clutch diaphragm heat treatment, the discharge unit further includes one Discharge block, and the discharging block is set to below the cylinder, and the discharging block offers a V-groove, the V-type along its length Slot runs through the discharging block, and the V-groove upper end is connected with the external world.
CN201821375566.2U 2018-08-24 2018-08-24 A kind of back-fire arrangement for clutch diaphragm heat treatment Active CN208844130U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821375566.2U CN208844130U (en) 2018-08-24 2018-08-24 A kind of back-fire arrangement for clutch diaphragm heat treatment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821375566.2U CN208844130U (en) 2018-08-24 2018-08-24 A kind of back-fire arrangement for clutch diaphragm heat treatment

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111135992A (en) * 2019-12-20 2020-05-12 南京联众工程技术有限公司 Heating equipment suitable for powder spraying of oversized metal workpiece

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111135992A (en) * 2019-12-20 2020-05-12 南京联众工程技术有限公司 Heating equipment suitable for powder spraying of oversized metal workpiece

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20191218

Address after: 311100 Xingguo Road 398 Linping Street, Yuhang District, Hangzhou City, Zhejiang Province

Patentee after: Zhejiang Tieliu Clutch Co,.Ltd

Address before: 435000 No. 616, Shen Lu, Huangshi, Hubei

Patentee before: Sanhuan Clutch Co., Ltd., Hubei Prov.

TR01 Transfer of patent right