CN202614449U - Torque-force detection machine - Google Patents
Torque-force detection machine Download PDFInfo
- Publication number
- CN202614449U CN202614449U CN 201220145148 CN201220145148U CN202614449U CN 202614449 U CN202614449 U CN 202614449U CN 201220145148 CN201220145148 CN 201220145148 CN 201220145148 U CN201220145148 U CN 201220145148U CN 202614449 U CN202614449 U CN 202614449U
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- CN
- China
- Prior art keywords
- rotating disk
- torque
- screw
- anchor clamps
- torsion
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn - After Issue
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- Force Measurement Appropriate To Specific Purposes (AREA)
- Investigating Strength Of Materials By Application Of Mechanical Stress (AREA)
- Testing Of Devices, Machine Parts, Or Other Structures Thereof (AREA)
Abstract
The utility model discloses a torque-force detection machine, comprising a frame, a rotary disc, a positioning device, a clamp, a torque-force detection apparatus, a display and first and second power apparatuses. The rotary disc can be rotatably fixed on the frame and is provided with at least one clamp capable of clamping a to-be-detected screw. The positioning device can stop and position the rotary disc. The torque-force detection apparatus can be fixed on the frame vertically and slidably. The torque-force detection apparatus can be opposite to a clamp on the rotary disc and transmit information to the display. The first and second power apparatuses respectively drive rotary disc rotation and vertical sliding of the torque-force detection apparatus. According to the torque-force detection machine provided by the utility model, the screw is carried to a detection position by the rotary disc and the torque-force detection apparatus automatically descends and carries out torque-force detection to the screw. The display displays. The detection machine has the advantages of high detection efficiency, high accuracy and low worker labor intensity.
Description
Technical field
The utility model relates to a kind of Workpiece detecting device, particularly a kind of torsion machines.
Background technology
The screw processing industry need detect the torsion of screw and screen, and to the detection of screw torsion, mainly holds torque spanner by manual work screw is detected at present, and accuracy in detection is low, and speed is slow, and labor strength is big.
The utility model content
In order to remedy above deficiency, the utility model provides a kind of torsion machines, and the torsion that this torsion machines can be accomplished screw fast detects, and detection efficiency is high, labor strength is low.
The utility model for the technical scheme that solves its technical matters and adopt is: a kind of torsion machines, comprise frame, rotating disk, locating device, anchor clamps, torque tester, display and first and second propulsion system, rotating disk can rotational positioning on frame; Rotating disk is provided with at least one can be with the anchor clamps of screw-clamped to be measured, and locating device can be with rotating disk stop location, and torque tester vertically can slide and be positioned on the frame; Torque tester can with chucking position on the rotating disk over against, torque tester can be messaging in display, said first and second propulsion system drive rotating disk rotation and torque tester longitudinal sliding motion respectively; When the torsion of screw was detected, the workman only needed screw to be detected is inserted on the anchor clamps on the rotating disk, rotate then rotating disk make screw and torque tester position over against; This moment, locating device fixedly made it not rotate rotating disk again, and then with screw-clamped, the vertical decline of pick-up unit detects the torsion of screw; Testing result shows from display; Also be provided with the interval numerical value of qualified torsion on the display, then be certified products when detection architecture is positioned at interval of acceptance, otherwise be unacceptable product; The workman after rotating disk is resetted unclamps anchor clamps; Qualified screw with underproof screw is placed apart gets final product, detection speed is fast, and accuracy rate is high; The workman only need operate this machines and get final product, and labour intensity is low.
As the further improvement of the utility model, said anchor clamps comprise that a fixed block, can hold out against cylinder along the slide block and that rotating disk radially slides, and are respectively equipped with the clamping recess with screw coupling to be checked on the relative sidewall of fixed block and slide block; Hold out against cylinder and be fixedly arranged on the rotating disk, the piston rod that holds out against cylinder can press closer a slide block sidewall of fixed block dorsad, during operation; Screw to be checked is inserted in the clamping recess of fixed block and ram travel of anchor clamps under torque tester not, first propulsion system drive rotating disk and rotate set angle then, and this screw to be checked just forwards under the torque tester; The slide block that cylinder piston rod stretches out these anchor clamps that holds out against of these anchor clamps holds out against, and this moment, these anchor clamps were fixed screw-clamped, when this screw detecting to be checked is accomplished; Withstanding tight block descends, and screw to be checked is released, and rotating disk resetted and can this screw be taken off this moment; Except this kind structure clamps screw to be checked, can also be other structure, as anchor clamps this as three head-clamp pawl structures; Also or withstanding tight block through vertically going up and down; Piece holds out against the upper end chamfering structure is set, and withstanding tight block rises and can the slide block of anchor clamps be held out against, and withstanding tight block descends can unclamp slide block.
Further improvement as the utility model; Said anchor clamps are symmetrically distributed in the rotating disk two opposite sides along disk axes; Such screw to be checked is when detecting; The workman can pack another screw to be checked in another anchor clamps into, and screw detecting is accomplished the back rotating disk and rotated 180 degree and get final product the detection efficiency height.
As the further improvement of the utility model, said first propulsion system are servomotor, or rotary cylinder.
As the further improvement of the utility model, said locating device can be with the structure of rotating disk stop location: the rotating disk sidewall is provided with at least one breach, and frame is provided with the pushing block that can radially slide along rotating disk; This pushing block is corresponding with breach quantity and position; Pushing block be able to enough stretch into and be placed in the breach of rotating disk, and in the time of when screw to be detected forwards torque tester under rotating disk drives below, pushing block stretches out the stuck location of rotating disk; Except this kind structure; Can also be to lean on huge friction force location, also or through the gearing mesh holding locate that this class formation all is that those skilled in the art are easy to expect according to this patent through the mode that compresses rotating disk.
As the further improvement of the utility model, also be provided with the promotion cylinder on the said frame, the piston rod and the pushing block that promote cylinder are connected.
As the further improvement of the utility model, said second propulsion system are cylinder.
As the further improvement of the utility model, said torque tester is made up of Torque sleeve and torsion torque sensor.
The useful technique effect of the utility model is: the utility model screw through the rotating disk band and is arrived the detection position; Torque tester descends automatically screw is carried out the torsion detection, and on display, shows, and detection efficiency is high; Accuracy rate is high, and labor strength is low.
Description of drawings
Fig. 1 is the front view of the utility model;
Fig. 2 is the vertical view of the utility model.
Embodiment
Embodiment: a kind of torsion machines, comprise frame 1, rotating disk 2, locating device, anchor clamps 4, torque tester 5, display 6 and first and second propulsion system, rotating disk 2 can rotational positioning on frame 1; Rotating disk 2 is provided with at least one can be with the anchor clamps 4 of screw-clamped to be measured, and locating device can be with rotating disk 2 stop location, and torque tester 5 vertically can slide and be positioned on the frame 1; Torque tester 5 can with anchor clamps 4 position on the rotating disk 2 over against, torque tester 5 can be messaging in display 6, said first and second propulsion system drive rotating disk 2 rotation and torque tester 5 longitudinal sliding motions respectively; When the torsion of screw was detected, the workman only needed screw to be detected is inserted on the anchor clamps 4 on the rotating disk 2, rotate then rotating disk 2 make screw and torque tester 5 positions over against; This moment, locating device fixedly made it not rotate rotating disk 2 again, and then with screw-clamped, the vertical decline of pick-up unit detects the torsion of screw; Testing result shows from display 6; Also be provided with the interval numerical value of qualified torsion on the display 6, then be certified products when detection architecture is positioned at interval of acceptance, otherwise be unacceptable product; The workman after rotating disk 2 is resetted unclamps anchor clamps 4; Qualified screw with underproof screw is placed apart gets final product, detection speed is fast, and accuracy rate is high; The workman only need operate this machines and get final product, and labour intensity is low.
Said anchor clamps 4 comprise that a fixed block 41, can hold out against cylinder 43 along the slide block 42 and that rotating disk 2 radially slides, and are respectively equipped with the clamping recess with screw coupling to be checked on the relative sidewall of fixed block and slide block, hold out against cylinder and are fixedly arranged on the rotating disk 2; The piston rod that holds out against cylinder can press closer a slide block sidewall of fixed block dorsad, during operation, screw to be checked is inserted in the clamping recess of fixed block and ram travel of anchor clamps 4 under torque tester 5 not; First propulsion system drive rotating disk 2 rotation set angles then, and this screw to be checked just forwards under the torque tester 5, and the slide block that cylinder piston rod stretches out these anchor clamps 4 that holds out against of these anchor clamps 4 holds out against; This moment, this anchor clamps 4 were fixed screw-clamped, accomplished when this screw detecting to be checked, and withstanding tight block descends; Screw to be checked is released, and rotating disk 2 resetted and can this screw be taken off this moment, except this kind structure clamps screw to be checked; It can also be other structure; As three head-clamp pawl structures, also or the withstanding tight block through vertically going up and down, piece holds out against the upper end chamfering structure is set like 4 of anchor clamps; Withstanding tight block rises and can the slide block of anchor clamps 4 be held out against, and withstanding tight block descends can unclamp slide block.
Said anchor clamps 4 are symmetrically distributed in rotating disk 2 two opposite sides along rotating disk 2 axle center; Such screw to be checked is when detecting; The workman can pack another screw to be checked in another anchor clamps 4 into, and screw detecting is accomplished back rotating disk 2 rotations 180 degree and got final product the detection efficiency height.
Said first propulsion system are servomotor, or rotary cylinder.
Said locating device can be with the structure of rotating disk 2 stop location: rotating disk 2 sidewalls are provided with at least one breach 21; Frame 1 is provided with the pushing block 3 that can radially slide along rotating disk 2, and this pushing block 3 is corresponding with breach 21 quantity and position, and pushing block 3 be able to enough stretch into and be placed in the breach 21 of rotating disk 2; In the time of when screw to be detected forwards torque tester 5 under rotating disk 2 drives below; Pushing block 3 stretches out rotating disk 2 stuck location, except this kind structure, can also be to lean on huge friction force location through the mode that compresses rotating disk 2; Also or through the gearing mesh holding locate, this class formation all is that those skilled in the art are easy to expect according to this patent.
Also be provided with the promotion cylinder on the said frame 1, the piston rod and the pushing block 3 that promote cylinder are connected.
Said second propulsion system are cylinder.
Said torque tester 5 is made up of Torque sleeve and torsion torque sensor.
Claims (8)
1. torsion machines; It is characterized by: comprise frame (1), rotating disk (2), locating device, anchor clamps (4), torque tester (5), display (6) and first and second propulsion system; Rotating disk (2) can rotational positioning on frame (1); Rotating disk (2) is provided with at least one can be with the anchor clamps (4) of screw-clamped to be measured; Locating device can be with rotating disk (2) stop location, and torque tester (5) vertically can slide and be positioned on the frame (1), torque tester (5) can with the last anchor clamps of rotating disk (2) (4) position over against; Torque tester (5) can be messaging in display (6), and said first and second propulsion system drive rotating disk (2) rotation and torque tester (5) longitudinal sliding motion respectively.
2. torsion machines according to claim 1; It is characterized by: said anchor clamps (4) comprise that a fixed block (41), can hold out against cylinder (43) along the slide block (42) and that rotating disk (2) radially slide; Be respectively equipped with clamping recess on the relative sidewall of fixed block and slide block with screw coupling to be checked; Hold out against cylinder and be fixedly arranged on the rotating disk (2), the piston rod that holds out against cylinder can press closer a slide block sidewall of fixed block dorsad.
3. torsion machines according to claim 1 and 2 is characterized by: said anchor clamps (4) are symmetrically distributed in rotating disk (2) two opposite sides along rotating disk (2) axle center.
4. torsion machines according to claim 1 is characterized by: said first propulsion system are servomotor.
5. torsion machines according to claim 1; It is characterized by: said locating device can be with the structure of rotating disk (2) stop location: rotating disk (2) sidewall is provided with at least one breach (21); Frame (1) is provided with the pushing block (3) that can radially slide along rotating disk (2); This pushing block (3) is corresponding with breach (21) quantity and position, and pushing block (3) be able to enough stretch into and be placed in the breach (21) of rotating disk (2).
6. torsion machines according to claim 5 is characterized by: said frame also is provided with the promotion cylinder on (1), and the piston rod and the pushing block (3) that promote cylinder are connected.
7. torsion machines according to claim 1 is characterized by: said second propulsion system are cylinder.
8. torsion machines according to claim 1 is characterized by: said torque tester (5) is made up of Torque sleeve and torsion torque sensor.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201220145148 CN202614449U (en) | 2012-04-09 | 2012-04-09 | Torque-force detection machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201220145148 CN202614449U (en) | 2012-04-09 | 2012-04-09 | Torque-force detection machine |
Publications (1)
Publication Number | Publication Date |
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CN202614449U true CN202614449U (en) | 2012-12-19 |
Family
ID=47348138
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN 201220145148 Withdrawn - After Issue CN202614449U (en) | 2012-04-09 | 2012-04-09 | Torque-force detection machine |
Country Status (1)
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CN (1) | CN202614449U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103364128A (en) * | 2012-04-09 | 2013-10-23 | 大进合紧固件(昆山)有限公司 | Twisting force detection machine |
-
2012
- 2012-04-09 CN CN 201220145148 patent/CN202614449U/en not_active Withdrawn - After Issue
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103364128A (en) * | 2012-04-09 | 2013-10-23 | 大进合紧固件(昆山)有限公司 | Twisting force detection machine |
CN103364128B (en) * | 2012-04-09 | 2016-02-17 | 大进合紧固件(昆山)有限公司 | Torsion detects machine |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20121219 Effective date of abandoning: 20160217 |
|
C25 | Abandonment of patent right or utility model to avoid double patenting |