CN117299980A - A multi-layer anti-corrosion temperature sensor processing device and its processing method - Google Patents

A multi-layer anti-corrosion temperature sensor processing device and its processing method Download PDF

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Publication number
CN117299980A
CN117299980A CN202311312943.3A CN202311312943A CN117299980A CN 117299980 A CN117299980 A CN 117299980A CN 202311312943 A CN202311312943 A CN 202311312943A CN 117299980 A CN117299980 A CN 117299980A
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China
Prior art keywords
temperature sensor
clamping
processing
motor
clamping seat
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CN202311312943.3A
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Chinese (zh)
Inventor
华庆生
赵永鼎
秦有国
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Xinguo Group Co ltd
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Xinguo Group Co ltd
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Priority to CN202311312943.3A priority Critical patent/CN117299980A/en
Publication of CN117299980A publication Critical patent/CN117299980A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D39/00Application of procedures in order to connect objects or parts, e.g. coating with sheet metal otherwise than by plating; Tube expanders
    • B21D39/02Application of procedures in order to connect objects or parts, e.g. coating with sheet metal otherwise than by plating; Tube expanders of sheet metal by folding, e.g. connecting edges of a sheet to form a cylinder
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D43/00Feeding, positioning or storing devices combined with, or arranged in, or specially adapted for use in connection with, apparatus for working or processing sheet metal, metal tubes or metal profiles; Associations therewith of cutting devices
    • B21D43/003Positioning devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D43/00Feeding, positioning or storing devices combined with, or arranged in, or specially adapted for use in connection with, apparatus for working or processing sheet metal, metal tubes or metal profiles; Associations therewith of cutting devices
    • B21D43/02Advancing work in relation to the stroke of the die or tool
    • B21D43/04Advancing work in relation to the stroke of the die or tool by means in mechanical engagement with the work
    • B21D43/14Advancing work in relation to the stroke of the die or tool by means in mechanical engagement with the work by turning devices, e.g. turn-tables

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Machine Tool Sensing Apparatuses (AREA)

Abstract

The invention discloses a multilayer anti-corrosion temperature sensor processing device and a processing method thereof, relates to the technical field of temperature sensor processing, and solves the problems that when the multilayer anti-corrosion temperature sensor processing device is used, the device is difficult to adapt to sensor shells of different sizes for punching, and any part of the surface of the sensor shell is difficult to punch. The utility model provides a multilayer anticorrosive temperature sensor processingequipment and processing method thereof, includes the processing platform, one side movable mounting in processing platform top has the motor saddle, the opposite side movable mounting in processing platform top has the backup pad, the top of motor saddle is equipped with actuating mechanism. According to the invention, through the cooperation of the servo motor and the fixed disc, the device can synchronously rotate the two clamping seats in a mode of controlling the servo motor to drive the fixed disc to rotate, so that the device can rotate the temperature sensor shell, and any side of the surface of the temperature sensor shell is punched.

Description

Multilayer anti-corrosion temperature sensor processing device and processing method thereof
Technical Field
The invention relates to the field of temperature sensor processing, in particular to a multilayer anti-corrosion temperature sensor processing device and a processing method thereof.
Background
A temperature sensor refers to a sensor that senses temperature and converts it into a usable output signal. The temperature sensor is a core part of the temperature measuring instrument and has various varieties. The temperature sensor can be divided into two main types of contact type and non-contact type according to the measurement mode, and is divided into two types of thermal resistors and thermocouples according to the characteristics of sensor materials and electronic elements, wherein the multilayer anti-corrosion temperature sensor is commonly used, anti-corrosion materials are added to realize anti-corrosion function when the temperature sensor is processed, and a plurality of parts are combined to form a multilayer structure so as to meet the requirements;
in the case of a multilayer corrosion-resistant temperature sensor, since a plurality of housings are laminated, it is generally necessary to press the housings of the temperature sensor so that the housings are stacked and combined, and a dedicated press machine is used for processing.
When the existing multilayer anti-corrosion temperature sensor processing device is used, the existing multilayer anti-corrosion temperature sensor processing device is difficult to adapt to sensor shells with different sizes for punching, and any part of the surface of the sensor shell is difficult to punch; therefore, the existing requirements are not met, and a processing device and a processing method of the multilayer anti-corrosion temperature sensor are provided.
Disclosure of Invention
The invention aims to provide a processing device and a processing method for a multilayer anti-corrosion temperature sensor, which are used for solving the problems that when the processing device for the multilayer anti-corrosion temperature sensor is used, the processing device is difficult to adapt to sensor shells with different sizes for punching, and any part of the surface of the sensor shell is difficult to punch.
In order to achieve the above purpose, the present invention provides the following technical solutions: the utility model provides a multilayer anticorrosion temperature sensor processingequipment, includes the processing platform, one side movable mounting in processing platform top has the motor saddle, the opposite side movable mounting in processing platform top has the backup pad, the top of motor saddle is equipped with actuating mechanism, one side that the backup pad is close to the motor saddle has fixed connecting rod through the hub connection, the surface of actuating mechanism and fixed connecting rod is all fixed mounting has the grip slipper, the inside of grip slipper all is equipped with clamping mechanism;
the clamping mechanism comprises a sensor supporting plate, clamping plates and compression springs, wherein one sensor supporting plate is movably installed in the clamping seat, two clamping plates are movably installed in the clamping seat, one ends of the clamping plates are movably clamped into the clamping seat, and the compression springs are movably installed on the surface of one end of the clamping plate clamped into the clamping seat.
Preferably, the driving mechanism comprises a servo motor, a fixed disc and a first linear motor, wherein the servo motor is movably arranged on the top surface of the motor supporting table, the output end of the servo motor is connected with the fixed disc through a coupling, the first linear motor is movably arranged on the outer side of the fixed disc, the output end of the first linear motor is fixedly connected with the clamping seat, and the fixed connecting rod is fixedly connected with the supporting plate through the fixed disc.
Preferably, the inside of grip slipper all is equipped with the movable groove, the inside in movable groove is gone into to the equal activity card of one end of sensor layer board, the inside position that is close to the top in movable groove all is equipped with the second linear motor, the output of second linear motor all with the top fixed connection of sensor layer board.
Preferably, the inside of grip slipper all is equipped with the centre gripping groove, the surface of centre gripping groove all is equipped with the spring groove near the position of grip block, the inside of spring groove is all gone into to the equal activity card of one end of grip block, the inside at the spring groove of equal movable mounting of compression spring.
Preferably, the inner side of the clamping seat is provided with a temperature sensor shell, the bottom end of the temperature sensor shell is attached to the top end surface of the sensor supporting plate, and the outer surface of the clamping plate is attached to the outer surface of the temperature sensor shell.
Preferably, the position that the surface of processing platform top is close to motor saddle and backup pad is equipped with the track groove respectively, the equal fixed mounting in bottom of motor saddle and backup pad has the sliding block, and the inside in track groove is gone into to the equal activity card of sliding block, the inside in track groove all is equipped with electric telescopic jar, electric telescopic jar's output all with sliding block fixed connection.
Preferably, the top fixed mounting of processing platform has the support frame, the bottom fixed mounting of support frame has processing agency, processing agency includes pneumatic cylinder, processing platform and stamping rod, pneumatic cylinder fixed mounting is at the bottom surface of support frame, the output fixedly connected with processing platform of pneumatic cylinder, the bottom movable mounting of processing platform has the stamping rod.
Preferably, the outer surface of the clamping seat connected with the first linear motor is fixedly provided with two clamping rods, the outer surface of the clamping seat connected with the fixed connecting rod is provided with two clamping grooves, and the clamping rods are movably clamped into the clamping grooves.
Preferably, a discharge hole is formed in the center of the surface of the processing table, and four support columns are fixedly arranged at the bottom end of the processing table.
A method of processing a multilayer corrosion resistant temperature sensor processing apparatus, the method comprising the steps of:
s1, when a temperature sensor shell needs to be subjected to punching processing, a clamping seat is driven to move through a first linear motor, so that the two clamping seats are separated, then the temperature sensor shell is placed in the clamping seat to be placed at the top end surface position of a sensor supporting plate, at the moment, a second linear motor is controlled to drive the sensor supporting plate to lift, and the temperature sensor shell is driven to lift along with the sensor supporting plate so that the bottom end of the temperature sensor shell enters the clamping seat;
s2, the clamping plate is outwards ejected to be attached to the surface of the temperature sensor shell due to elastic potential energy of the compression spring, then the clamping seat is driven by the first linear motor to move back to enable the two clamping seats to be attached, so that the temperature sensor shell is clamped through the clamping plate, at the moment, the processing table is driven by the hydraulic cylinder to move, the temperature sensor shell is subjected to punching processing through the punching rod, and residual materials left in the punching processing can fall through the clamping groove and the discharge hole to be collected;
s3, when the outer surface of the temperature sensor shell needs to be stamped, the motor support table and the sliding block at the bottom end of the supporting plate can be driven to move through the electric telescopic cylinder, so that the motor support table and the supporting plate are pushed by the electric telescopic cylinder on the surface of the processing table, and at the moment, the servo motor is controlled to drive the fixed disc to rotate so as to drive the first linear motor and the clamping seat to rotate;
s4, the clamping seat can drive the clamping seat on the other side to synchronously rotate through the clamping rod when rotating, at the moment, the fixed connecting rod can drive the fixed disc to rotate on the surface of the supporting plate, the servo motor is stopped after the clamping seat rotates by a specified angle, then the sensor supporting plate is pushed by the second linear motor to move so that the sensor supporting plate pushes the temperature sensor shell outwards along the direction of the clamping groove, the outer surface of the temperature sensor shell leaks out of the clamping seat, and at the moment, the processing table, the stamping rod and the temperature sensor shell are in a linear position, at the moment, the hydraulic cylinder drives the processing table to move so as to carry out stamping processing on the outer surface of the temperature sensor shell through the stamping rod, and residual materials left in stamping processing can fall through the clamping groove and the discharge hole to be collected.
Compared with the prior art, the invention has the beneficial effects that:
1. according to the invention, through the cooperation of the servo motor and the fixed disc, the device can synchronously rotate the two clamping seats in a mode of controlling the servo motor to drive the fixed disc to rotate, so that the device can rotate the temperature sensor shell, and any side of the surface of the temperature sensor shell is punched.
2. According to the invention, through the cooperation of the sensor supporting plate and the clamping plate, when the device is used, the temperature sensor shell can be clamped through the sensor supporting plate and the clamping plate, so that the device is suitable for stamping processing of temperature sensor shells with different sizes.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic diagram of the structure of the temperature sensor housing of the present invention after it is flipped over;
FIG. 3 is a cross-sectional elevation view of the entirety of the present invention;
FIG. 4 is a top view, in cross-section, of the entirety of the present invention;
FIG. 5 is a schematic view of the partial structure of the portion A of the present invention;
fig. 6 is a schematic partial structure of the portion B of the present invention.
In the figure: 1. a processing table; 2. a track groove; 3. a motor support; 4. a servo motor; 5. a fixed disc; 6. a first linear motor; 7. a fixed connecting rod; 8. a support plate; 9. a clamping seat; 10. punching a rod; 11. a discharge port; 12. a clamping groove; 13. a temperature sensor housing; 14. a movable groove; 15. a sensor pallet; 16. a clamping plate; 17. a second linear motor; 18. a spring groove; 19. a compression spring; 20. a clamping groove; 21. the rod is clamped.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments.
The electric telescopic cylinder (model number TYSC 250) and the electric push rod (model number DTZ 1600-50) are available from market purchase or private customization.
Referring to fig. 1 to 6, an embodiment of the present invention provides: the utility model provides a multilayer anticorrosion temperature sensor processingequipment, includes processing platform 1, one side movable mounting in processing platform 1 top has motor saddle 3, the opposite side movable mounting in processing platform 1 top has backup pad 8, the top of motor saddle 3 is equipped with actuating mechanism, one side that backup pad 8 is close to motor saddle 3 is connected with fixed connecting rod 7 through the axle, the surface of actuating mechanism and fixed connecting rod 7 is all fixed mounting has grip slipper 9, the inside of grip slipper 9 all is equipped with fixture;
the fixture includes sensor layer board 15, grip block 16 and compression spring 19, and the equal movable mounting in inside of grip block 9 has a sensor layer board 15, and the equal movable mounting in inside of grip block 9 has two grip blocks 16, and the inside of grip block 9 is gone into to the equal movable card of one end of grip block 16, and the equal movable mounting in one end surface of grip block 9 is gone into to grip block 16 card.
Wherein actuating mechanism includes servo motor 4, fixed disc 5 and first linear motor 6, and servo motor 4 movable mounting is on the top surface of motor saddle 3, and the output of servo motor 4 is connected with fixed disc 5 through the shaft coupling, and the outside movable mounting of fixed disc 5 has first linear motor 6, and the output and the grip slipper 9 fixed connection of first linear motor 6 pass through fixed disc 5 fixed connection between fixed connecting rod 7 and the backup pad 8.
Through adopting above-mentioned technical scheme, the cooperation of servo motor 4 and fixed disc 5 makes the device accessible control servo motor 4 drive fixed disc 5 pivoted mode, makes two grip brackets 9 synchronous rotation to thereby make the rotatable temperature sensor shell 13 of device carry out stamping processing to arbitrary one side on temperature sensor shell 13 surface.
The inside of grip slipper 9 all is equipped with movable groove 14, and the inside of movable groove 14 is gone into to the activity card of the one end of sensor layer board 15, and the inside position that is close to the top of movable groove 14 all is equipped with second linear electric motor 17, and the output of second linear electric motor 17 all is connected with the top fixed of sensor layer board 15.
The inside of grip slipper 9 all is equipped with centre gripping groove 12, and the surface of centre gripping groove 12 all is equipped with spring groove 18 near the position of grip block 16, and the inside of spring groove 18 is gone into to the activity card of one end of grip block 16, and compression spring 19 all movable mounting is in the inside of spring groove 18.
Wherein the inboard of grip slipper 9 is equipped with temperature sensor shell 13, and temperature sensor shell 13's bottom is laminated with sensor layer board 15's top surface, and the surface of grip block 16 all is laminated with temperature sensor shell 13's surface.
Through adopting above-mentioned technical scheme, the cooperation of sensor layer board 15 and grip block 16 makes the device when using, thereby accessible sensor layer board 15 and grip block 16 carry out the centre gripping to temperature sensor shell 13, thereby make the device adapt to not unidimensional temperature sensor shell 13 and carry out punching press processing.
The position that foretell processing platform 1 top surface is close to motor saddle 3 and backup pad 8 is equipped with track groove 2 respectively, and the equal fixed mounting in bottom of motor saddle 3 and backup pad 8 has the sliding block, and the inside in track groove 2 is gone into to the equal activity card of sliding block, and the inside in track groove 2 all is equipped with electric telescopic jar, and electric telescopic jar's output all is with sliding block fixed connection.
Through adopting above-mentioned technical scheme, make the device when need process the other angles of temperature sensor shell 13, the accessible electric telescopic cylinder drive sliding block removes to make temperature sensor shell 13 stay in the below position of ram rod 10, conveniently carry out the punching press.
The top fixed mounting of processing platform 1 has the support frame, and the bottom fixed mounting of support frame has processing agency, and processing agency includes pneumatic cylinder, processing platform and ram rod 10, and pneumatic cylinder fixed mounting is at the bottom surface of support frame, and the output fixedly connected with processing platform of pneumatic cylinder, the bottom movable mounting of processing platform have ram rod 10.
Two clamping rods 21 are fixedly arranged on the outer surface of the clamping seat 9 connected with the first linear motor 6, two clamping grooves 20 are formed in the outer surface of the clamping seat 9 connected with the fixed connecting rod 7, and the clamping rods 21 are movably clamped into the clamping grooves 20.
Through adopting above-mentioned technical scheme, when making the device drive the grip slipper 9 rotation of one side through servo motor 4, the accessible clamping pole 21 promotes clamping groove 20 and drives the synchronous rotation of grip slipper 9 of opposite side, prevents the not hard up condition of temperature sensor shell 13.
Two clamping rods 21 are fixedly arranged on the outer surface of the clamping seat 9 connected with the first linear motor 6, two clamping grooves 20 are formed in the outer surface of the clamping seat 9 connected with the fixed connecting rod 7, and the clamping rods 21 are movably clamped into the clamping grooves 20.
Wherein, the center position on the surface of the processing table 1 is provided with a discharge hole 11, and four support columns are fixedly arranged at the bottom end of the processing table 1.
A processing method of a processing device of a multilayer anti-corrosion temperature sensor comprises the following steps:
s1, when the temperature sensor housing 13 needs to be subjected to punching processing, the clamping seat 9 is driven to move through the first linear motor 6 to enable the two clamping seats 9 to be separated, then the temperature sensor housing 13 is placed in the clamping seat 9 to enable the temperature sensor housing 13 to be placed at the top end surface position of the sensor supporting plate 15, at the moment, the second linear motor 17 is controlled to drive the sensor supporting plate 15 to lift, and the temperature sensor housing 13 is enabled to lift along with the sensor supporting plate 15 to enable the bottom end of the temperature sensor housing 13 to enter the inside of the clamping seat 9;
s2, the clamping plate 16 is then ejected outwards due to the elastic potential energy of the compression spring 19 to be attached to the surface of the temperature sensor shell 13, the clamping seat 9 is driven by the first linear motor 6 to move backwards to attach the two clamping seats 9, so that the temperature sensor shell 13 is clamped through the clamping plate 16, at the moment, the processing table is driven by the hydraulic cylinder to move, the temperature sensor shell 13 is subjected to punching processing through the punching rod 10, and residual materials left in the punching processing can fall through the clamping groove 12 and the discharge hole 11 to be collected;
s3, when the outer surface of the temperature sensor shell 13 is required to be stamped, the motor support table 3 and the sliding blocks at the bottom end of the supporting plate 8 can be driven to move through the electric telescopic cylinder, so that the motor support table 3 and the supporting plate 8 are pushed by the electric telescopic cylinder on the surface of the processing table 1, and at the moment, the servo motor 4 is controlled to drive the fixed disc 5 to rotate so as to drive the first linear motor 6 and the clamping seat 9 to rotate;
s4, the clamping seat 9 drives the clamping seat 9 on the other side to synchronously rotate through the clamping rod 21 when rotating, at the moment, the fixed connecting rod 7 drives the fixed disc 5 to rotate on the surface of the supporting plate 8, the servo motor 4 is stopped after the clamping seat 9 rotates by a designated angle, then the sensor supporting plate 15 is pushed by the second linear motor 17 to move so that the sensor supporting plate 15 pushes the temperature sensor shell 13 outwards along the direction of the clamping groove 12, the outer surface of the temperature sensor shell 13 leaks out of the clamping seat 9, and at the moment, the processing table, the stamping rod 10 and the temperature sensor shell 13 are in a linear position, at the moment, the hydraulic cylinder drives the processing table to move so as to punch the outer surface of the temperature sensor shell 13 through the stamping rod 10, and the residual materials left in the stamping process can fall down through the clamping groove 12 and the discharge hole 11 and be collected.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (10)

1. The utility model provides a multilayer anticorrosive temperature sensor processingequipment, includes processing platform (1), its characterized in that: one side of the top end of the processing table (1) is movably provided with a motor supporting table (3), the other side of the top end of the processing table (1) is movably provided with a supporting plate (8), the top end of the motor supporting table (3) is provided with a driving mechanism, one side of the supporting plate (8) close to the motor supporting table (3) is connected with a fixed connecting rod (7) through a shaft, the surfaces of the driving mechanism and the fixed connecting rod (7) are fixedly provided with clamping seats (9), and the inside of the clamping seats (9) are respectively provided with a clamping mechanism;
the clamping mechanism comprises a sensor supporting plate (15), clamping plates (16) and compression springs (19), wherein one sensor supporting plate (15) is movably installed in the clamping seat (9), two clamping plates (16) are movably installed in the clamping seat (9), one ends of the clamping plates (16) are movably clamped into the clamping seat (9), and the compression springs (19) are movably installed on the surface of one end of the clamping plate (16) clamped into the clamping seat (9).
2. The multi-layer corrosion-resistant temperature sensor processing apparatus of claim 1, wherein: the driving mechanism comprises a servo motor (4), a fixed disc (5) and a first linear motor (6), wherein the servo motor (4) is movably mounted on the top surface of a motor supporting table (3), the output end of the servo motor (4) is connected with the fixed disc (5) through a coupling, the first linear motor (6) is movably mounted on the outer side of the fixed disc (5), the output end of the first linear motor (6) is fixedly connected with a clamping seat (9), and a fixed connecting rod (7) is fixedly connected with a supporting plate (8) through the fixed disc (5).
3. The multi-layer corrosion-resistant temperature sensor processing apparatus of claim 1, wherein: the inside of grip slipper (9) all is equipped with movable groove (14), the inside of activity card income movable groove (14) is all gone into to the one end of sensor layer board (15), the inside position that is close to the top of movable groove (14) all is equipped with second linear electric motor (17), the output of second linear electric motor (17) all with the top fixed connection of sensor layer board (15).
4. The multi-layer corrosion-resistant temperature sensor processing apparatus of claim 1, wherein: the inside of grip slipper (9) all is equipped with centre gripping groove (12), the position that the surface of centre gripping groove (12) is close to grip block (16) all is equipped with spring groove (18), the inside of spring groove (18) is all gone into in the activity card of the one end of grip block (16), the inside at spring groove (18) is all movable mounting to compression spring (19).
5. The multi-layer corrosion-resistant temperature sensor processing apparatus of claim 1, wherein: the inside of grip slipper (9) is equipped with temperature sensor shell (13), the bottom of temperature sensor shell (13) is laminated with the top surface of sensor layer board (15), the surface of grip block (16) all is laminated with the surface of temperature sensor shell (13).
6. The multi-layer corrosion-resistant temperature sensor processing apparatus of claim 1, wherein: the machining bench is characterized in that the positions, close to the motor supporting table (3) and the supporting plate (8), of the top surface of the machining bench (1) are respectively provided with a track groove (2), sliding blocks are fixedly installed at the bottoms of the motor supporting table (3) and the supporting plate (8) respectively, the sliding blocks are movably clamped into the track grooves (2), electric telescopic cylinders are arranged in the track grooves (2), and the output ends of the electric telescopic cylinders are fixedly connected with the sliding blocks.
7. The multi-layer corrosion-resistant temperature sensor processing apparatus of claim 1, wherein: the top fixed mounting of processing platform (1) has the support frame, the bottom fixed mounting of support frame has processing agency, processing agency includes pneumatic cylinder, processing platform and ram rod (10), pneumatic cylinder fixed mounting is at the bottom surface of support frame, the output fixedly connected with processing platform of pneumatic cylinder, the bottom movable mounting of processing platform has ram rod (10).
8. The multi-layer corrosion-resistant temperature sensor processing apparatus of claim 1, wherein: two clamping rods (21) are fixedly arranged on the outer surface of the clamping seat (9) connected with the first linear motor (6), two clamping grooves (20) are formed in the outer surface of the clamping seat (9) connected with the fixed connecting rod (7), and the clamping rods (21) are movably clamped into the clamping grooves (20).
9. The multi-layer corrosion-resistant temperature sensor processing apparatus of claim 1, wherein: the center position on the surface of the processing table (1) is provided with a discharge hole (11), and four support columns are fixedly arranged at the bottom end of the processing table (1).
10. A processing method of a multilayer corrosion-resistant temperature sensor processing apparatus according to any one of claims 1 to 9, characterized in that: the processing method comprises the following steps:
s1, when a temperature sensor shell (13) needs to be subjected to punching processing, a first linear motor (6) drives a clamping seat (9) to move so as to separate the two clamping seats (9), then the temperature sensor shell (13) is placed in the clamping seat (9) so as to be placed in the top end surface position of a sensor supporting plate (15), and at the moment, a second linear motor (17) is controlled to drive the sensor supporting plate (15) to lift so as to enable the temperature sensor shell (13) to lift along with the sensor supporting plate (15) and enable the bottom end of the temperature sensor shell (13) to enter the inside of the clamping seat (9);
s2, the clamping plate (16) can be outwards ejected to be attached to the surface of the temperature sensor shell (13) due to elastic potential energy of the compression spring (19), then the clamping seat (9) is driven by the first linear motor (6) to move back to attach the two clamping seats (9), so that the temperature sensor shell (13) is clamped through the clamping plate (16), at the moment, the temperature sensor shell (13) is punched through the punching rod (10) through the hydraulic cylinder driving processing table to move, and residual materials left in punching can fall through the clamping groove (12) and the discharge hole (11) to be collected;
s3, when the outer surface of the temperature sensor shell (13) needs to be stamped, the motor support table (3) and the sliding blocks at the bottom ends of the supporting plate (8) can be driven by the electric telescopic cylinder to move, so that the motor support table (3) and the supporting plate (8) are pushed by the electric telescopic cylinder on the surface of the processing table (1), and at the moment, the servo motor (4) is controlled to drive the fixed disc (5) to rotate so as to drive the first linear motor (6) and the clamping seat (9) to rotate;
s4, clamping seat (9) can drive clamping seat (9) of opposite side through clamping pole (21) synchronous rotation when rotating, fixed connecting rod (7) can drive fixed disc (5) at the surface rotation of backup pad (8) this moment, stop servo motor (4) after clamping seat (9) rotate appointed angle, afterwards promote sensor layer board (15) through second linear electric motor (17) and remove and make sensor layer board (15) outwards release temperature sensor shell (13) along the direction of grip slot (12), thereby make the surface of temperature sensor shell (13) spill in the outside of clamping seat (9), and processing platform, stamping rod (10) and temperature sensor shell (13) are a straight line position this moment, accessible pneumatic cylinder drive processing platform removes and carries out punching press processing to the surface of temperature sensor shell (13) through stamping rod (10), the residual material of punching press processing can drop and be collected through grip slot (12) and discharge gate (11).
CN202311312943.3A 2023-10-11 2023-10-11 A multi-layer anti-corrosion temperature sensor processing device and its processing method Pending CN117299980A (en)

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