CN204625684U - Continuous hot-wind tempering stove - Google Patents

Continuous hot-wind tempering stove Download PDF

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Publication number
CN204625684U
CN204625684U CN201520120032.5U CN201520120032U CN204625684U CN 204625684 U CN204625684 U CN 204625684U CN 201520120032 U CN201520120032 U CN 201520120032U CN 204625684 U CN204625684 U CN 204625684U
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CN
China
Prior art keywords
feeding
discharging
roller
power set
continuous hot
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Withdrawn - After Issue
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CN201520120032.5U
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Chinese (zh)
Inventor
顾志卓
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Suzhou Zhong Tai Power Spring Co Ltd
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Suzhou Zhong Tai Power Spring Co Ltd
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Priority to CN201520120032.5U priority Critical patent/CN204625684U/en
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Abstract

The utility model relates to technical field of metal material heat treatment, particularly relates to a kind of continuous hot-wind tempering stove; Comprise tempering body of heater and transmission rig, transmission rig comprises feeding unit, material transfer unit and discharging unit, wherein: feeding unit comprises cradle, feeding power set, feeding active roll tube, the driven roller of feeding and feeding belt; Discharging unit comprises discharge rack, discharging power set, discharging active roll tube, the driven roller of discharging and goes out material strip; Material transfer unit comprises material transfer power set, set of the rolls, guipure and swelling device, set of the rolls comprises and imports end roller into, spreads out of end roller, adjusting roller and two circulation rollers, and swelling device is connected with adjusting roller transmission and tensioner degree by regulating the relative position of adjusting roller to control guipure; Cradle is fixed with feeding sloping platform; Discharge rack is fixed with discharging sloping platform; Continuous hot-wind tempering stove of the present utility model, calorific loss is lower, be difficult to scald operator, effectively can ensure guipure tensioner degree simultaneously.

Description

Continuous hot-wind tempering stove
Technical field
The utility model relates to technical field of metal material heat treatment, particularly relates to a kind of continuous hot-wind tempering stove.
Background technology
Continuous hot-wind tempering stove is a kind of industrial equipment for Heating Processing of working continuously, as long as the metallic substance processed is sent into burner hearth by transmitting the ingress of guipure from this stove, namely whole heat-processed is completed when workpiece continuously moves towards exit, treatment temp can reach 650 DEG C, thus be widely used in the bulk workpiece such as spring, bullet pad, chain, standardized component, vehicle body fittings, bearing, piston ring, hardware products and carburizing and quenching part and carry out continous way tempering, there is the advantages such as operating efficiency is high, saving of work and time.Continuous hot-wind tempering stove generally includes tempering body of heater and transmission rig, and the guipure of transmission rig needs to use the drive of two ends roller to realize transmission agency, and roller shaft is arranged on bearing, and bearing is fixed on bearing support; This continuous hot-wind tempering stove transmission rig, although lasting expanding with heat and contract with cold in guipure cycle operation process effectively can be prevented, and then avoid the deformation damage of guipure, but amount of heat is taken out of outside tempering body of heater, calorific loss is higher, not only easily scald operator, be difficult to the tensioner degree ensureing guipure simultaneously.
Because above-mentioned defect, the design people, actively in addition research and innovation, to founding a kind of continuous hot-wind tempering stove of novel texture, make it have more utility value in industry.
Utility model content
For solving the problems of the technologies described above, the purpose of this utility model is to provide the continuous hot-wind tempering stove that a kind of calorific loss is lower, be difficult to scald operator, effectively can ensure guipure tensioner degree simultaneously.
Continuous hot-wind tempering stove of the present utility model, comprises tempering body of heater and transmission rig, and described transmission rig comprises feeding unit, material transfer unit and discharging unit, wherein:
Described feeding unit comprises cradle and is arranged on feeding power set, feeding active roll tube, the driven roller of feeding and the feeding belt on cradle, described feeding belt is wrapped on feeding active roll tube and the driven roller of feeding, and the output terminal of described feeding power set is connected with the transmission of described feeding active roll tube;
Described discharging unit comprises discharge rack and the discharging power set, discharging active roll tube, the driven roller of discharging that are arranged on discharge rack and go out material strip, described go out material strip be wrapped on discharging active roll tube and the driven roller of discharging, the output terminal of described discharging power set is connected with the transmission of described discharging active roll tube;
Described material transfer unit to be arranged in tempering body of heater and to comprise material transfer power set, set of the rolls, guipure and swelling device, described material transfer power set is connected with described set of the rolls power, described guipure is wrapped on described set of the rolls, described set of the rolls comprise import end roller into, spread out of end roller, adjusting roller and being arranged on imports end roller into and two circulation rollers spreading out of below end roller, described swelling device is connected with described adjusting roller transmission and tensioner degree by regulating the relative position of described adjusting roller to control described guipure;
Position on described cradle between feeding belt and guipure, is fixed with the feeding sloping platform under being tilted to; In guipure and the position that goes out between material strip on described discharge rack, be fixed with the discharging sloping platform under being tilted to.
Further, described swelling device comprises electronic dynamometer and is connected to the spring on electronic dynamometer, described swelling device is connected with described adjusting roller by described spring, and the two ends of described adjusting roller are provided with the first slide rail, and described adjusting roller is relatively sliding on described first slide rail.
Further, described swelling device comprises Connection Block, nut seat, guide rod, screw mandrel, master wheel, pinion(gear) and adjustment motor, described electronic dynamometer is fixed on described Connection Block, described Connection Block is fixed on described nut seat, described nut seat relatively sliding relatively rotating with described screw mandrel on described guide rod, the end winding support of described screw mandrel arranges described master wheel, and the output terminal of described adjustment motor is fixedly installed pinion(gear), and described pinion(gear) is meshed with described master wheel.
Further, described feeding sloping platform and discharging sloping platform are respectively ceramic feeding sloping platform and ceramic discharging sloping platform.
Further, described feeding unit also comprises the second slide rail and the first securing gear, and the driven roller of described feeding is relatively sliding on described second slide rail, and described first securing gear is used for the relative position of the driven roller of fastening described feeding and the second slide rail.
Further, described discharging unit also comprises the 3rd slide rail and the second securing gear, and the driven roller of described discharging is relatively sliding on described 3rd slide rail, and described second securing gear is used for the relative position of the driven roller of fastening described discharging and the 3rd slide rail.
Further, described feeding power set is feeding motor.
Further, described discharging power set is discharging motor.
Further, described material transfer power set is material transfer motor.
By such scheme, the utility model at least has the following advantages: because material transfer unit can not expose to outside tempering body of heater, and heat effectively cuts off by feeding sloping platform and discharging sloping platform, thus calorific loss is lower, feeding unit volume discharging unit does not accept the heat transmitted in tempering body of heater, is difficult to scald operator yet; In addition, even if the high temperature in tempering body of heater makes guipure generation deformation, swelling device also effectively can ensure guipure tensioner degree.
Above-mentioned explanation is only the general introduction of technical solutions of the utility model, in order to better understand technique means of the present utility model, and can be implemented according to the content of specification sheets, coordinates accompanying drawing to be described in detail as follows below with preferred embodiment of the present utility model.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the partial enlarged drawing in A portion in Fig. 1.
Embodiment
Below in conjunction with drawings and Examples, embodiment of the present utility model is described in further detail.Following examples for illustration of the utility model, but are not used for limiting scope of the present utility model.
See Fig. 1 and Fig. 2, a kind of continuous hot-wind tempering stove of the utility model one preferred embodiment, comprises tempering body of heater 1 and transmission rig, and transmission rig comprises feeding unit 2, material transfer unit 3 and discharging unit 4, wherein:
Feeding unit 2 comprises cradle 201 and is arranged on feeding power set (not shown), feeding active roll tube 202, the driven roller 203 of feeding and the feeding belt 204 on cradle 201, feeding belt 204 is wrapped on feeding active roll tube 202 and the driven roller 203 of feeding, and the output terminal of feeding power set is connected with feeding active roll tube 202 transmission; Feeding unit 2 also comprises the second slide rail 205 and the first securing gear (not shown), the driven roller 203 of feeding relatively sliding on the second slide rail 205, and the first securing gear is used for the relative position of the driven roller 203 of fastening feeding and the second slide rail 205.
Discharging unit 4 comprises discharge rack 401 and the discharging power set (not shown), discharging active roll tube 402, the driven roller 403 of discharging that are arranged on discharge rack 401 and go out material strip 404, go out material strip 404 to be wrapped on discharging active roll tube 402 and the driven roller 403 of discharging, the output terminal of discharging power set is connected with discharging active roll tube 402 transmission; Discharging unit 4 also comprises the 3rd slide rail 405 and the second securing gear (not shown), the driven roller 403 of discharging relatively sliding on the 3rd slide rail 405, and the second securing gear is used for the relative position of the driven roller 403 of fastening discharging and the 3rd slide rail 405.
Material transfer unit 3 to be arranged in tempering body of heater 1 and to comprise material transfer power set (not shown), set of the rolls, guipure 30 and swelling device 31, material transfer power set is connected with set of the rolls power, guipure 30 is wrapped on set of the rolls, set of the rolls comprise import end roller 301 into, spread out of end roller 302, adjusting roller 303 and being arranged on imports end roller 301 into and two circulation rollers 304 spreading out of below end roller 302, swelling device 31 is connected with adjusting roller 303 transmission and tensioner degree by regulating the relative position of adjusting roller 303 to control guipure 30;
Position on cradle 201 between feeding belt 204 and guipure 30, is fixed with the feeding sloping platform 206 under being tilted to; In guipure 30 and the position that goes out between material strip 404 on discharge rack 401, be fixed with the discharging sloping platform 406 under being tilted to.
Continuous hot-wind tempering stove of the present utility model, swelling device 31 comprises electronic dynamometer 311 and is connected to the spring 312 on electronic dynamometer 311, swelling device 31 is connected with adjusting roller 303 by spring 312, the two ends of adjusting roller 303 are provided with the first slide rail 305, and adjusting roller 303 is relatively sliding on the first slide rail 305.
Continuous hot-wind tempering stove of the present utility model, swelling device 31 comprises Connection Block 313, nut seat 314, guide rod 315, screw mandrel 316, master wheel 317, pinion(gear) 318 and regulates motor 319, electronic dynamometer 311 is fixed on Connection Block 313, Connection Block 313 is fixed on nut seat 314, nut seat 314 relatively sliding relatively rotating with screw mandrel 316 on guide rod 315, the end winding support of screw mandrel 316 arranges master wheel 317, regulate the output terminal of motor 319 to be fixedly installed pinion(gear) 318, pinion(gear) 318 is meshed with master wheel 317.
Continuous hot-wind tempering stove of the present utility model, feeding sloping platform 206 and discharging sloping platform 406 are respectively ceramic feeding sloping platform and ceramic discharging sloping platform.
Continuous hot-wind tempering stove of the present utility model, feeding power set is feeding motor; Discharging power set is discharging motor; Material transfer power set is material transfer motor.
The above is only preferred implementation of the present utility model; be not limited to the utility model; should be understood that; for those skilled in the art; under the prerequisite not departing from the utility model know-why; can also make some improvement and modification, these improve and modification also should be considered as protection domain of the present utility model.

Claims (9)

1. a continuous hot-wind tempering stove, is characterized in that: comprise tempering body of heater and transmission rig, and described transmission rig comprises feeding unit, material transfer unit and discharging unit, wherein:
Described feeding unit comprises cradle and is arranged on feeding power set, feeding active roll tube, the driven roller of feeding and the feeding belt on cradle, described feeding belt is wrapped on feeding active roll tube and the driven roller of feeding, and the output terminal of described feeding power set is connected with the transmission of described feeding active roll tube;
Described discharging unit comprises discharge rack and the discharging power set, discharging active roll tube, the driven roller of discharging that are arranged on discharge rack and go out material strip, described go out material strip be wrapped on discharging active roll tube and the driven roller of discharging, the output terminal of described discharging power set is connected with the transmission of described discharging active roll tube;
Described material transfer unit to be arranged in tempering body of heater and to comprise material transfer power set, set of the rolls, guipure and swelling device, described material transfer power set is connected with described set of the rolls power, described guipure is wrapped on described set of the rolls, described set of the rolls comprise import end roller into, spread out of end roller, adjusting roller and being arranged on imports end roller into and two circulation rollers spreading out of below end roller, described swelling device is connected with described adjusting roller transmission and tensioner degree by regulating the relative position of described adjusting roller to control described guipure;
Position on described cradle between feeding belt and guipure, is fixed with the feeding sloping platform under being tilted to; In guipure and the position that goes out between material strip on described discharge rack, be fixed with the discharging sloping platform under being tilted to.
2. continuous hot-wind tempering stove according to claim 1, it is characterized in that: described swelling device comprises electronic dynamometer and is connected to the spring on electronic dynamometer, described swelling device is connected with described adjusting roller by described spring, the two ends of described adjusting roller are provided with the first slide rail, and described adjusting roller is relatively sliding on described first slide rail.
3. continuous hot-wind tempering stove according to claim 2, it is characterized in that: described swelling device comprises Connection Block, nut seat, guide rod, screw mandrel, master wheel, pinion(gear) and adjustment motor, described electronic dynamometer is fixed on described Connection Block, described Connection Block is fixed on described nut seat, described nut seat relatively sliding relatively rotating with described screw mandrel on described guide rod, the end winding support of described screw mandrel arranges described master wheel, the output terminal of described adjustment motor is fixedly installed pinion(gear), and described pinion(gear) is meshed with described master wheel.
4. continuous hot-wind tempering stove according to claim 1, is characterized in that: described feeding sloping platform and discharging sloping platform are respectively ceramic feeding sloping platform and ceramic discharging sloping platform.
5. continuous hot-wind tempering stove according to claim 1, is characterized in that: described feeding power set is feeding motor.
6. continuous hot-wind tempering stove according to claim 1, it is characterized in that: described feeding unit also comprises the second slide rail and the first securing gear, the driven roller of described feeding is relatively sliding on described second slide rail, and described first securing gear is used for the relative position of the driven roller of fastening described feeding and the second slide rail.
7. continuous hot-wind tempering stove according to claim 1, it is characterized in that: described discharging unit also comprises the 3rd slide rail and the second securing gear, the driven roller of described discharging is relatively sliding on described 3rd slide rail, and described second securing gear is used for the relative position of the driven roller of fastening described discharging and the 3rd slide rail.
8. continuous hot-wind tempering stove according to claim 1, is characterized in that: described discharging power set is discharging motor.
9. continuous hot-wind tempering stove according to claim 1, is characterized in that: described material transfer power set is material transfer motor.
CN201520120032.5U 2015-02-28 2015-02-28 Continuous hot-wind tempering stove Withdrawn - After Issue CN204625684U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520120032.5U CN204625684U (en) 2015-02-28 2015-02-28 Continuous hot-wind tempering stove

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520120032.5U CN204625684U (en) 2015-02-28 2015-02-28 Continuous hot-wind tempering stove

Publications (1)

Publication Number Publication Date
CN204625684U true CN204625684U (en) 2015-09-09

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Application Number Title Priority Date Filing Date
CN201520120032.5U Withdrawn - After Issue CN204625684U (en) 2015-02-28 2015-02-28 Continuous hot-wind tempering stove

Country Status (1)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104694710A (en) * 2015-02-28 2015-06-10 苏州中太动力弹簧有限公司 Continuous hot air tempering furnace
CN107904381A (en) * 2017-11-03 2018-04-13 无锡琨圣科技有限公司 A kind of steelwork heat treatment feed device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104694710A (en) * 2015-02-28 2015-06-10 苏州中太动力弹簧有限公司 Continuous hot air tempering furnace
CN107904381A (en) * 2017-11-03 2018-04-13 无锡琨圣科技有限公司 A kind of steelwork heat treatment feed device

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AV01 Patent right actively abandoned

Granted publication date: 20150909

Effective date of abandoning: 20180105

AV01 Patent right actively abandoned