CN220805766U - Tapping machine convenient for detecting automobile parts - Google Patents

Tapping machine convenient for detecting automobile parts Download PDF

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Publication number
CN220805766U
CN220805766U CN202322508194.3U CN202322508194U CN220805766U CN 220805766 U CN220805766 U CN 220805766U CN 202322508194 U CN202322508194 U CN 202322508194U CN 220805766 U CN220805766 U CN 220805766U
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rotary
pair
pairs
circular
detection
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CN202322508194.3U
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Chinese (zh)
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王博龙
郭溪
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Shenyang Xinbo Automotive Parts Manufacturing Co ltd
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Shenyang Xinbo Automotive Parts Manufacturing Co ltd
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Abstract

The utility model discloses a tapping machine convenient for detecting automobile parts, which comprises: the device comprises a pair of conveyers, a processing table and a processing bracket, wherein the conveyers are respectively arranged on two sides of the processing table, a carrying limiting structure is arranged on the processing table, and a processing structure is arranged on the processing bracket; the utility model relates to the technical field of automobile part detection, which is characterized in that parts in different shapes of an automobile are automatically carried and fed through a carrying limiting structure, and the parts are subjected to expansion extrusion, horizontal rotation and rotation adjustment in the vertical direction through the expansion extrusion, horizontal rotation and rotation adjustment of different parts, so that the parts are subjected to adjustment on two sides of the parts according to different rotation and rotation extrusion feeding in the horizontal direction, and the parts are subjected to tapping processing detection automatically.

Description

Tapping machine convenient for detecting automobile parts
Technical Field
The utility model relates to the technical field of automobile part detection, in particular to a tapping machine convenient for automobile part detection.
Background
At present, some products formed by bending and stamping metal plates are required to be tapped at set positions on the plate surfaces, and whether tapping is missed or not and whether tapping positions are correct or not are required to be detected after tapping is completed. In the prior art, the product is manually placed into tapping equipment for tapping, the product is manually taken out after tapping is completed, the product after tapping is transferred to the position of detecting equipment, and the product is manually placed on a detecting jig if the product can be placed in the detecting jig, so that the product is qualified, and if the product cannot be placed in the detecting jig, the product is NG. Above-mentioned tapping detection efficiency is lower, and the product can't guarantee to place when the manual work puts into the product in place, influences the fixed of follow-up product and tapping position's assurance, and artificial detection has certain risk of missing to examine, to above-mentioned problem, probably has had the technical means who solves in the prior art, but the present case is wanting to provide a technical scheme of alternative or replacement.
Disclosure of utility model
In order to achieve the above purpose, the utility model is realized by the following technical scheme: tapping machine for automobile parts detects of being convenient for includes: the device comprises a pair of conveyers, a processing table and a processing bracket, wherein the conveyers are respectively arranged on two sides of the processing table, a carrying limiting structure is arranged on the processing table, and a processing structure is arranged on the processing bracket;
the carrying limiting structure comprises: the device comprises a pair of rotary concave circular barrels, a pair of convex lifting cylindrical blocks, a pair of lifting hydraulic pushing rods, a pair of rotary cross-shaped brackets, four pairs of rotary concave circular slides, four pairs of overturning driving machines, a plurality of rotary convex circular arc sliding blocks, a pair of horizontal rotary driving machines, four pairs of rotary circular sleeves, four pairs of rotary inner circular sleeves, a plurality of rotary inclined magnets, eight pairs of rotary electromagnets and a plurality of expansion air bags;
The pair of rotary concave circular ring barrels are inserted and mounted on the inner side of the processing table, the pair of convex lifting cylindrical blocks are movably inserted and mounted on the inner side of the pair of rotary concave circular ring barrels respectively, the pair of lifting and conveying hydraulic push rods are mounted on the inner side of the pair of rotary concave circular ring barrels respectively, the pair of rotary cross-shaped brackets are mounted on the pair of convex lifting cylindrical blocks respectively, the pair of rotary circular rings are mounted on the pair of rotary cross-shaped brackets respectively, the pair of rotary concave circular ring slides are mounted on the pair of rotary circular rings respectively, the pair of rotary convex circular arc sliding blocks are mounted on the inner sides of the pair of rotary circular ring sleeves respectively, the pair of rotary convex circular arc sliding blocks are movably inserted and mounted on the inner sides of the pair of rotary concave circular ring slides respectively, the pair of rotary inner circular ring sleeves are inserted and mounted on the inner sides of the pair of rotary circular ring sleeves through bearings respectively, the pair of rotary cross-shaped brackets are mounted on the pair of rotary cross-shaped brackets respectively, the pair of rotary cross-shaped brackets are connected with the pair of rotary air bags respectively, the pair of rotary air bags are mounted on the pair of rotary cross-shaped brackets respectively, the pair of rotary air bags are mounted on the pair of rotary air bags respectively, the pair of rotary air bags are mounted on the pair of rotary cross-shaped sleeves respectively, the rotary air bags are mounted on the pair of rotary circular sleeves respectively, the rotary air bags are mounted on the pair of rotary air bags respectively, and the rotary air bags are respectively, the rotary air bags are mounted on the pair of rotary air bags are respectively, and the rotary air bags are connected to the two horizontal driving machine;
In the above description, the lifting hydraulic push rod on the inner side of the rotary concave circular barrel stretches to drive the convex lifting cylindrical block on the pushing end of the lifting hydraulic push rod to vertically lift along the inner side of the rotary concave circular barrel, the horizontal flat rotary driver and the rotary cross bracket on the convex lifting cylindrical block are driven to rotate by the horizontal rotary driver, the rotary cross bracket on the driving end of the horizontal rotary driver is driven to rotate by the horizontal rotary driver, the rotary cross bracket is rotated by 45 degrees by the operation of the horizontal rotary driver (step motor), the turnover driver on the rotary cross bracket is driven to operate by the turnover driver, the rotary ring on the turnover driver is driven by the turnover driver, the rotary ring sleeve on the turnover driver is driven by the rotary ring and the rotary inner ring sleeve on the inner side of the turnover driver, through the lifting of the rotary inner circular sleeve, the box is sleeved with the rotary inner circular sleeve, then the rotary inner circular sleeve is expanded by an expansion air bag, the parts are extruded and limited through gas expansion, meanwhile, a plurality of rotary inclined magnets are magnetically repelled by a rotary electromagnet on the inner side of the rotary circular sleeve, so that the rotary inner circular sleeve is driven by a bearing and magnetic repulsion, the rotary inner circular sleeve horizontally rotates along the inner side of the rotary circular sleeve, meanwhile, the rotary circular ring is driven to rotate through a turnover driving machine, a plurality of rotary convex circular arcs on the rotary circular ring are well clamped to rotate along the inner side of a rotary concave circular slideway, the rotary circular sleeve on the rotary circular ring is driven to vertically rotate through the rotary circular ring, therefore, the parts are horizontally rotated and turned over in the vertical direction, the parts on the conveyor are rotated and fed, and the parts are rotated, fed, automatically carried, drilled and detected.
Preferably, the processing structure comprises: the device comprises a pair of detection hydraulic push rods, a tapping machine, a plurality of conveying rollers, tapping detection pins, a pair of toothed telescopic blocks, a longitudinal and transverse guide rail group, two pairs of horizontal and longitudinal electric push rods, two pairs of horizontal and transverse electric push rods and a plurality of extrusion clamps;
The processing bench is provided with a conveying groove, a plurality of conveying rollers are uniformly inserted into the inner side of the conveying groove, two pairs of tooth-mounted telescopic grooves are formed in the conveying groove, two pairs of longitudinal and transverse guide rails are respectively arranged on the inner sides of the two pairs of tooth-mounted telescopic grooves, one pair of tooth-mounted telescopic blocks are respectively arranged on the two pairs of longitudinal and transverse guide rail groups, two pairs of horizontal and longitudinal electric push rods are respectively arranged on the two pairs of horizontal and transverse electric push rods and are respectively arranged on the inner sides of the two pairs of tooth-mounted telescopic grooves, a plurality of extrusion clamps are respectively arranged on the pair of tooth-mounted telescopic blocks, and a tapping machine and a tapping detection pin are respectively arranged on the pushing ends of a pair of detection hydraulic push rods;
It should be noted that, in the above, drive a pair of tooth dress telescopic block on it respectively through two pairs of horizontal electric putter, carry out relative flexible with a pair of tooth dress telescopic block through the horizontal guide rail group, a plurality of extrusion anchor clamps on a pair of tooth dress telescopic block extrude the fixed with spare part, afterwards stretch out and draw back through horizontal vertical electric putter, carry out horizontal push-pull with a pair of tooth dress telescopic block, thereby carry out automatic transportation with the spare part, stretch out and draw back through a pair of detection hydraulic putter, drive its tapping machine and tapping detection contact pin respectively, thereby reach processing and detection.
Preferably, a scanning camera is arranged on the processing table.
Preferably, the processing bracket is provided with a scanning camera.
Preferably, eight pairs of rotary electromagnets are combined into four pairs of crossed arrangement.
Preferably, eight pairs of rotary electromagnets are respectively provided with a resistance regulator.
Advantageous effects
The utility model provides a tapping machine convenient for detecting automobile parts. Possess following beneficial effect, this tapping machine for automobile parts detects of being convenient for compares with prior art: the parts with different shapes of the automobile are automatically carried and fed through the carrying limiting structure, and the parts are automatically subjected to tapping processing detection by means of expansion extrusion, horizontal rotation and rotation adjustment in the vertical direction of different parts, so that the parts are adjusted according to different rotations on two sides of the parts and are subjected to rotation extrusion feeding in the horizontal direction.
Drawings
Fig. 1 is a schematic front view in cross section of a tapping machine for facilitating detection of automobile parts according to the present utility model.
Fig. 2 is a schematic top cross-sectional view of the tapping machine for detecting automobile parts according to the present utility model.
In the figure: 1. a conveyor; 2. a processing table; 3. processing a bracket; 4. rotating the concave circular barrel; 5. a convex lifting cylindrical block; 6. lifting and carrying a hydraulic push rod; 7. a rotary cross-shaped bracket; 8. rotating the circular ring; 9. rotating the concave circular ring slideway; 10. turning over the driving machine; 11. rotating the convex arc sliding block; 12. rotating the annular sleeve; 13. rotating the inner annular sleeve; 14. rotating the tilting magnet; 15. rotating the electromagnet; 16. inflating the balloon; 17. detecting a hydraulic push rod; 18. a tapping machine; 19. a transport roller; 20. tapping detection pins; 21. tooth-mounted telescopic blocks; 22. a longitudinal and transverse guide rail group; 23. a horizontal and longitudinal electric push rod; 24. horizontal transverse electric push rod.
Detailed Description
All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
All electric parts and the adaptive power supply are connected through wires by the person skilled in the art, and a proper controller and encoder should be selected according to actual conditions so as to meet control requirements, specific connection and control sequence, and the electric connection is completed by referring to the following working principles in the working sequence among the electric parts, and the detailed connection means are known in the art, and mainly introduce the working principles and processes as follows, and do not describe the electric control.
Examples
The present invention will be described in detail with reference to the accompanying drawings, as shown in fig. 1-2, a pair of conveyers 1 are respectively installed on two sides of the processing table 2, a carrying limiting structure is installed on the processing table 2, and a processing structure is installed on the processing bracket 3; the carrying limiting structure comprises: a pair of rotary concave circular barrels 4, a pair of convex lifting cylindrical blocks 5, a pair of lifting hydraulic pushing rods 6, a pair of rotary cross-shaped brackets 7, four pairs of rotary circular rings 8, four pairs of rotary concave circular ring slide ways 9, four pairs of overturning driving machines 10, a plurality of rotary convex circular arc sliding blocks 11, a pair of horizontal rotary driving machines, four pairs of rotary circular ring 8 sleeves, four pairs of rotary inner circular ring sleeves 13, a plurality of rotary inclined magnets 14, eight pairs of rotary electromagnets 15 and a plurality of expansion air bags 16; the pair of rotary concave circular barrels 4 are inserted and mounted on the inner side of the processing table 2, the pair of convex lifting cylindrical blocks are movably inserted and mounted on the inner side of the pair of rotary concave circular barrels 4 respectively, the pair of lifting and conveying hydraulic push rods 6 are mounted on the inner side of the pair of rotary concave circular barrels 4 respectively, the pair of rotary cross-shaped brackets 7 are mounted on the pair of convex lifting cylindrical blocks respectively, the pair of rotary circular rings 8 are mounted on the pair of rotary cross-shaped brackets 7 respectively, the pair of rotary concave circular slides 9 are mounted on the pair of rotary circular rings 8 respectively, the pair of rotary convex circular arc slide blocks 11 are mounted on the inner sides of the pair of rotary circular rings 8 respectively, the pair of rotary circular arc slide blocks 11 are movably inserted and mounted on the inner sides of the pair of rotary concave circular ring slides 9 respectively, the pair of rotary circular rings 13 are mounted on the inner sides of the pair of rotary circular rings 8 respectively through bearings, the pair of rotary cross-shaped brackets 10 are mounted on the pair of rotary cross-shaped brackets 7 respectively, the pair of rotary cross-shaped rotary circular rings 10 are mounted on the pair of rotary circular rings 8 respectively, the pair of rotary cross-shaped driving sleeves 13 are mounted on the pair of rotary circular rings 7 respectively, the pair of rotary circular rings 13 are mounted on the rotary cross-shaped driving sleeves respectively, the pair of rotary circular rings 13 are mounted on the pair of rotary circular rings 5 respectively, and the rotary driving sleeves are mounted on the pair of rotary circular rings 13 respectively, and the rotary driving sleeves are respectively, the pair of rotary circular rings are mounted on the two circular rings are respectively, and the rotary driving end and are respectively connected; the processing structure comprises: the device comprises a pair of detection hydraulic push rods 17, a tapping machine 18, a plurality of conveying rollers 19, tapping detection pins 20, a pair of toothed telescopic blocks 21, a longitudinal and transverse guide rail group 22, two pairs of horizontal and longitudinal electric push rods 23, two pairs of horizontal and transverse electric push rods 24 and a plurality of extrusion clamps; the processing table 2 is provided with a transport groove, a plurality of transport rollers 19 are uniformly inserted into the inner side of the transport groove, two pairs of tooth-mounted telescopic grooves are formed in the transport groove, two pairs of longitudinal and transverse guide rail groups 22 are respectively arranged on the inner sides of the two pairs of tooth-mounted telescopic grooves, one pair of tooth-mounted telescopic blocks 21 are respectively arranged on the two pairs of longitudinal and transverse guide rail groups 22, two pairs of horizontal and transverse electric push rods 23 are respectively arranged on the inner sides of the two pairs of tooth-mounted telescopic grooves, a plurality of extrusion clamps are respectively arranged on the pair of tooth-mounted telescopic blocks 21, and the tapping machine 18 and the tapping detection pin 20 are respectively provided with a pair of pushing ends of the detection hydraulic push rods 17, and the pair of detection hydraulic push rods 17 can be respectively arranged on the processing bracket 3; a scanning camera is arranged on the processing table 2; a scanning camera is arranged on the processing bracket 3; eight pairs of rotary electromagnets 15 are combined into four pairs of crossed arrangement; the eight pairs of rotary electromagnets 15 are respectively provided with resistance adjusters.
According to the attached figures 1-2, the lifting hydraulic push rod 6 on the inner side of the rotary concave circular barrel 4 stretches and contracts to drive the convex lifting cylindrical block 5 on the pushing end of the lifting hydraulic push rod 6, so that the convex lifting cylindrical block 5 vertically lifts along the inner side of the rotary concave circular barrel 4, the horizontal flat rotary driver and the rotary cross bracket 7 thereon are driven by the convex lifting cylindrical block 5, the rotary cross bracket 7 on the driving end of the horizontal rotary driver is driven to rotate by the operation of the horizontal rotary driver (step motor), the rotary cross bracket 7 is driven to rotate by 45 degrees by the operation of the horizontal rotary driver (step motor), the overturning driver 10 thereon is driven to operate by the overturning driver 10, the rotary circular ring 8 thereon is driven by the overturning driver 10, the rotary ring 8 sleeve and the rotary inner ring sleeve 13 on the rotary ring 8 are driven by the rotary ring 8, the rotary ring 8 is driven to rotate horizontally along the inner side of the rotary ring 8 sleeve by lifting the rotary inner ring sleeve 13, the rotary ring 8 is driven to rotate by the turning driving machine 10, a plurality of rotary convex arcs on the rotary ring 8 are well clamped along the inner side of the rotary concave ring slideway 9 to rotate by expanding the expansion air bag 16 in which the rotary inner ring sleeve 13 is arranged, the parts are limited by the extrusion of the gas, and simultaneously the rotary inclined magnets 14 are magnetically repelled by the rotary electromagnet 15 on the inner side of the rotary ring 8 sleeve, so that the rotary inner ring sleeve 13 is driven to rotate horizontally along the inner side of the rotary ring 8 sleeve, the rotary ring 8 drives the rotary ring 8 sleeve on the rotary ring 8 to vertically rotate, so that the parts are horizontally rotated and turned over in the vertical direction, the parts on the conveyor 1 are rotated and fed, the parts are automatically conveyed by rotation, drilled and detected; the pair of toothed telescopic blocks 21 are driven by the two pairs of horizontal transverse electric push rods 24 respectively, the pair of toothed telescopic blocks 21 are correspondingly telescopic by the longitudinal and transverse guide rail groups 22, the parts are extruded and fixed by the plurality of extrusion clamps on the pair of toothed telescopic blocks 21, and then the pair of toothed telescopic blocks 21 are horizontally pushed and pulled by the horizontal longitudinal electric push rods 23, so that the parts are automatically transported, and the tapping machine 18 and the tapping detection pins 20 are driven by the pair of detection hydraulic push rods 17 to achieve processing and detection.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. Tapping machine for automobile parts detects of being convenient for includes: the device is characterized in that the pair of the conveyers are respectively arranged on two sides of the processing table, the processing table is provided with a carrying limiting structure, and the processing support is provided with a processing structure;
the carrying limiting structure comprises: the device comprises a pair of rotary concave circular barrels, a pair of convex lifting cylindrical blocks, a pair of lifting hydraulic pushing rods, a pair of rotary cross-shaped brackets, four pairs of rotary concave circular slides, four pairs of overturning driving machines, a plurality of rotary convex circular arc sliding blocks, a pair of horizontal rotary driving machines, four pairs of rotary circular sleeves, four pairs of rotary inner circular sleeves, a plurality of rotary inclined magnets, eight pairs of rotary electromagnets and a plurality of expansion air bags;
the pair of rotary concave circular ring barrels are inserted and mounted on the inner side of the processing table, the pair of convex lifting cylindrical blocks are movably inserted and mounted on the inner side of the pair of rotary concave circular ring barrels respectively, the pair of lifting and conveying hydraulic push rods are mounted on the inner side of the pair of rotary concave circular ring barrels respectively, the pair of rotary cross-shaped brackets are mounted on the pair of convex lifting cylindrical blocks respectively, the pair of rotary circular rings are mounted on the pair of rotary cross-shaped brackets respectively, the pair of rotary concave circular ring slides are mounted on the pair of rotary circular rings respectively, the pair of rotary convex circular arc sliding blocks are mounted on the inner sides of the pair of rotary circular ring sleeves respectively, the pair of rotary convex circular arc sliding blocks are movably inserted and mounted on the inner sides of the pair of rotary concave circular ring slides respectively, the pair of rotary inner circular ring sleeves are inserted and mounted on the inner sides of the pair of rotary circular ring sleeves through bearings respectively, the pair of rotary cross-shaped brackets are mounted on the pair of rotary cross-shaped brackets respectively, the pair of rotary cross-shaped brackets are connected with the pair of rotary air bags respectively, the pair of rotary air bags are mounted on the pair of rotary cross-shaped brackets respectively, the pair of rotary air bags are mounted on the pair of rotary air bags respectively, and the pair of rotary air bags are mounted on the pair of rotary circular sleeves are mounted on the rotary cross-shaped sleeves respectively, and the rotary air bags are mounted on the pair of rotary circular sleeves respectively.
2. The tapping machine for facilitating the detection of automobile parts according to claim 1, wherein the processing structure comprises: the device comprises a pair of detection hydraulic push rods, a tapping machine, a plurality of conveying rollers, tapping detection pins, a pair of toothed telescopic blocks, a longitudinal and transverse guide rail group, two pairs of horizontal and longitudinal electric push rods, two pairs of horizontal and transverse electric push rods and a plurality of extrusion clamps;
The processing bench is provided with a transport groove, a plurality of transport rollers are evenly inserted into the inner side of the transport groove, two pairs of tooth-mounted telescopic grooves are formed in the transport groove, two pairs of longitudinal and transverse guide rails are respectively arranged on the inner sides of the two pairs of tooth-mounted telescopic grooves, one pair of tooth-mounted telescopic blocks are respectively arranged on the two pairs of longitudinal and transverse guide rail groups, two pairs of horizontal and longitudinal electric push rods are respectively arranged on the two pairs of horizontal and transverse electric push rods and are respectively arranged on the inner sides of the two pairs of tooth-mounted telescopic grooves, a plurality of extrusion clamps are respectively arranged on the pair of tooth-mounted telescopic blocks, and tapping machines and tapping detection pins are respectively arranged on pushing ends of a pair of detection hydraulic push rods.
3. The tapping machine for facilitating detection of automobile parts according to claim 2, wherein a scanning camera is arranged on the processing table.
4. A tapping machine for facilitating the detection of automobile parts according to claim 3, wherein the processing bracket is provided with a scanning camera.
5. The tapping machine for facilitating the detection of automobile parts according to claim 4, wherein eight pairs of the rotary electromagnets are combined into four pairs of the cross arrangement.
6. The tapping machine for facilitating detection of automobile parts according to claim 5, wherein eight pairs of the rotary electromagnets are respectively provided with a resistance regulator.
CN202322508194.3U 2023-09-14 2023-09-14 Tapping machine convenient for detecting automobile parts Active CN220805766U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322508194.3U CN220805766U (en) 2023-09-14 2023-09-14 Tapping machine convenient for detecting automobile parts

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322508194.3U CN220805766U (en) 2023-09-14 2023-09-14 Tapping machine convenient for detecting automobile parts

Publications (1)

Publication Number Publication Date
CN220805766U true CN220805766U (en) 2024-04-19

Family

ID=90677936

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322508194.3U Active CN220805766U (en) 2023-09-14 2023-09-14 Tapping machine convenient for detecting automobile parts

Country Status (1)

Country Link
CN (1) CN220805766U (en)

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