CN216745930U - High-precision intelligent online detection device for part machining - Google Patents

High-precision intelligent online detection device for part machining Download PDF

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Publication number
CN216745930U
CN216745930U CN202122995110.4U CN202122995110U CN216745930U CN 216745930 U CN216745930 U CN 216745930U CN 202122995110 U CN202122995110 U CN 202122995110U CN 216745930 U CN216745930 U CN 216745930U
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plate
sliding
motor
slider
detection frame
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CN202122995110.4U
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陶太锁
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Nanjing Yanze Intelligent Technology Co ltd
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Nanjing Yanze Intelligent Technology Co ltd
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Abstract

The utility model discloses a high-accuracy parts machining intelligence on-line measuring device relates to parts machining technical field, is difficult to detect high-accuracy part wholly for solving detection mechanism, has the local dead angle that detects, and high-accuracy part detects not thoroughly, the not good problem of detection effect. The improved multifunctional detection device is characterized in that a detection frame and a vertical plate are arranged above the base, a fixing base is arranged on one side of the detection frame, a first sliding groove is formed in the detection frame, a sliding block is arranged inside the first sliding groove, a vision probe is arranged below the sliding block, a first electric telescopic rod is arranged between the vision probe and the sliding block, a second sliding groove is formed in the vertical plate, the number of the second sliding groove is two, a sliding plate is arranged on one side of the vertical plate, a lifting plate is arranged on one side of the sliding plate and is in sliding connection with the sliding plate, a lower ruler plate and an upper ruler plate are arranged on one side of the lifting plate and are in sliding connection with the lifting plate, and the lower ruler plate and the lifting plate are connected through screws.

Description

High-precision intelligent online detection device for part machining
Technical Field
The utility model relates to a parts machining technical field specifically is a high-accuracy parts machining intelligence on-line measuring device.
Background
The high-precision part is a fitting widely applied to industries such as automobiles, communication, medical treatment, clocks, mobile phones, computers and the like, and is different from common parts, more precise and more suitable for industries with high requirements on precision. The high-precision part is measured by a detection device during processing of the high-precision part, and the online detection is realized by directly installing equipment on a production line and utilizing a soft measurement technology for real-time detection and real-time feedback so as to better guide production and reduce unnecessary waste.
At present, when the online detection device detects high-precision parts during machining, a detection mechanism is difficult to detect the whole high-precision parts, local detection dead angles exist, the high-precision parts are not detected thoroughly, the detection effect is not good, and the use requirement cannot be met, so that the intelligent online detection device for high-precision parts is urgently needed in the market to solve the problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a high-accuracy parts machining intelligence on-line measuring device to it is difficult to detect high-accuracy part wholly to provide detection mechanism in solving above-mentioned background, has the local dead angle that detects, and high-accuracy part detects not thorough, the not good problem of detection effect.
In order to achieve the above object, the utility model provides a following technical scheme: a high-precision intelligent online detection device for part processing comprises a base and parts, wherein a detection frame and a vertical plate are arranged above the base, a fixed seat is arranged on one side of the detection frame, the fixed seat is rotationally connected with the detection frame, the detection frame is provided with a first chute, a slide block is arranged inside the first chute, the slide block is connected with the detection frame in a sliding way, a vision probe is arranged below the slide block, a first electric telescopic rod is arranged between the vision probe and the slide block, the vertical plate is provided with two second sliding grooves, one side of the vertical plate is provided with a sliding plate, one side of the sliding plate is provided with a lifting plate, and the lifting plate is connected with the sliding plate in a sliding manner, one side of the lifting plate is provided with a lower ruler plate and an upper ruler plate, the upper ruler plate is connected with the lifting plate in a sliding manner, and the lower ruler plate is connected with the lifting plate through a screw.
Preferably, the fixing base is provided with four locking bolts, the four locking bolts are arranged on the fixing base at equal intervals, and the locking bolts are in threaded connection with the fixing base.
Preferably, one side of detection frame is provided with first motor, and first motor passes through the screw connection with the detection frame, the output of first motor is connected structure as an organic whole with the one end of fixing base, the top and bottom of fixing base all is provided with the stopper, and the stopper passes through the screw connection with the detection frame, the stopper rotates with the fixing base to be connected.
Preferably, one side of the detection frame is provided with a second motor, the second motor is connected with the detection frame through screws, a second threaded rod is arranged inside the first sliding groove and is in threaded connection with the sliding block, and one end of the second threaded rod is connected with the output end of the second motor to form an integral structure.
Preferably, a second electric telescopic rod is arranged below the lower ruler plate, and two ends of the second electric telescopic rod are respectively connected with the lower ruler plate and the sliding plate through screws.
Preferably, one side of slide is provided with the slider, and the slider is provided with two, and slider and slide pass through screw connection, the one end of slider extends to the inside of second spout, and slider and riser sliding connection, one side of riser is provided with the third motor, and the third motor passes through screw connection with the riser, the inside of second spout is provided with first threaded rod, and first threaded rod and slider threaded connection, the one end of first threaded rod is connected as an organic whole structure with the output of third motor.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses a device passes through second motor and first electric telescopic handle's setting, drives the slider and slides in first spout under the effect of second motor to make vision probe horizontal migration, carry out visual detection along the part, drive the vision probe and go up and down under first electric telescopic handle's effect, adjust the interval between vision probe and the part, thereby satisfy not unidimensional part detection demand. The problem of when detecting the part of different sizes, detection error increases is solved.
2. The utility model discloses a device passes through the third motor, second electric telescopic handle and third electric telescopic handle's setting, chi board goes up and down under the drive of second electric telescopic handle's effect, with the lower terminal surface contact of chi board and part down, it goes up and down to drive the chi board under third electric telescopic handle's effect, make the up end contact of chi board and part, thereby can carry out size detection to the part, it slides along the second spout to drive the slide under the effect of third motor, thereby remove detection mechanism, can detect the part different positions. The problem of difficult a plurality of positions to different parts carry out size detection is solved.
3. The utility model discloses a device drives the fixing base through the setting of first motor under the effect of first motor and rotates, and along with the rotation of fixing base makes the part rotation that the centre gripping was fixed on the fixing base to can carry out visual detection along the axial of part, ensure detection efficiency. The problem of the part can not rotate, detect the face comparatively single is solved.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a connection diagram of the slide plate, the vertical plate and the lifting plate;
FIG. 3 is a connection diagram of the vision probe and the inspection frame of the present invention;
fig. 4 is a partially enlarged view of the area a of fig. 1 according to the present invention.
In the figure: 1. a base; 2. a detection frame; 3. a first motor; 4. a second motor; 5. a part; 6. a vertical plate; 7. a third motor; 8. a slider; 9. a first chute; 10. a vision probe; 11. a first electric telescopic rod; 12. a slide plate; 13. a second chute; 14. a first threaded rod; 15. a second electric telescopic rod; 16. a fixed seat; 17. a slider; 18. a third chute; 19. a lifting plate; 20. a fourth chute; 21. a lower ruler plate; 22. an upper ruler plate; 23. a third electric telescopic rod; 24. a second threaded rod; 25. a locking bolt; 26. a fixed cavity; 27. a rotating groove; 28. and a limiting block.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-4, the present invention provides an embodiment: a high-precision intelligent online detection device for part processing comprises a base 1 and a part 5, wherein a detection frame 2 and a vertical plate 6 are arranged above the base 1, the detection frame 2 and the vertical plate 6 are both connected with the base 1 through screws, a rotating groove 27 is arranged on the detection frame 2, a fixed seat 16 is arranged on one side of the detection frame 2, one end of the fixed seat 16 extends into the rotating groove 27, the fixed seat 16 is rotatably connected with the detection frame 2, a first sliding groove 9 is arranged on the detection frame 2, a sliding block 8 is arranged in the first sliding groove 9, the sliding block 8 is slidably connected with the detection frame 2, a vision probe 10 is arranged below the sliding block 8, the vision probe 10 can take a visual shot of the outer surface of the part 5, so as to detect the appearance of the part 5, a first electric telescopic rod 11 is arranged between the vision probe 10 and the sliding block 8, and two ends of the first electric telescopic rod 11 are respectively connected with the vision probe 10 and the sliding block 8 through screws, the visual probe 10 is driven to ascend and descend under the action of the first electric telescopic rod 11, the distance between the visual probe 10 and the parts 5 is adjusted, so that the parts 5 with different sizes are detected, the vertical plate 6 is provided with two second sliding grooves 13, one side of the vertical plate 6 is provided with a sliding plate 12, the sliding plate 12 is provided with a third sliding groove 18, one side of the sliding plate 12 is provided with a lifting plate 19, one end of the lifting plate 19 extends into the third sliding groove 18, the lifting plate 19 is in sliding connection with the sliding plate 12, the lifting plate 19 is provided with a fourth sliding groove 20, one side of the lifting plate 19 is provided with a lower ruler plate 21 and an upper ruler plate 22, one end of the upper ruler plate 22 extends into the fourth sliding groove 20, the upper ruler plate 22 is in sliding connection with the lifting plate 19, the lower ruler plate 21 is connected with the lifting plate 19 through screws, the lower ruler plate 21 and the upper ruler plate 22 are attached to the lower end and the upper end of the parts 5, the dimensions of the part 5 can be measured.
Further, a fixed cavity 26 is formed in the fixed seat 16, four locking bolts 25 are arranged on the fixed seat 16, the four locking bolts 25 are equidistantly arranged on the fixed seat 16, and the locking bolts 25 are in threaded connection with the fixed seat 16. The part 5 can be held and fixed on the fixing base 16 by the locking bolt 25 and the fixing cavity 26.
Further, one side of detection frame 2 is provided with first motor 3, and first motor 3 passes through the screw connection with detection frame 2, and the output of first motor 3 is connected as an organic whole structure with the one end of fixing base 16, and the upper and lower side of fixing base 16 all is provided with stopper 28, and stopper 28 passes through the screw connection with detection frame 2, and stopper 28 rotates with fixing base 16 to be connected. Drive fixing base 16 through first motor 3 rotatory, drive part 5 synchronous revolution along with fixing base 16's rotation to detect along the axial of part 5, stopper 28 can play the spacing effect of direction to the fixing base 16 of pairing rotation, has ensured the rotatory stability of fixing base 16.
Further, one side of the detection frame 2 is provided with a second motor 4, the second motor 4 is connected with the detection frame 2 through screws, a second threaded rod 24 is arranged inside the first sliding groove 9, the second threaded rod 24 is in threaded connection with the sliding block 8, and one end of the second threaded rod 24 is connected with the output end of the second motor 4 to form an integral structure. The second motor 4 drives the second threaded rod 24 to rotate, and the sliding block 8 is driven to slide in the first sliding groove 9 along with the rotation of the second threaded rod 24, so that the visual probe 10 moves along the part 5, and the part 5 is fully detected.
Further, a second electric telescopic rod 15 is arranged below the lower ruler plate 21, two ends of the second electric telescopic rod 15 are respectively connected with the lower ruler plate 21 and the sliding plate 12 through screws, a third electric telescopic rod 23 is arranged inside the fourth sliding chute 20, and two ends of the third electric telescopic rod 23 are respectively connected with the upper ruler plate 22 and the lifting plate 19 through screws. Drive lifter plate 19 through second electric telescopic handle 15 and go up and down to can be so that lower ruler board 21 and the lower terminal surface contact of part 5, drive ruler board 22 and go up and down under the effect of third electric telescopic handle 23, make ruler board 22 and the up end contact of part 5, thereby can measure the size of part 5.
Further, one side of slide 12 is provided with slider 17, slider 17 is provided with two, and slider 17 passes through screw connection with slide 12, the one end of slider 17 extends to the inside of second spout 13, and slider 17 and riser 6 sliding connection, one side of riser 6 is provided with third motor 7, and third motor 7 passes through screw connection with riser 6, the inside of second spout 13 is provided with first threaded rod 14, and first threaded rod 14 and slider 17 threaded connection, the one end of first threaded rod 14 is connected as an organic whole structure with the output of third motor 7. The third motor 7 drives the first threaded rod 14 to rotate, and the sliding plate 12 is driven to slide along the second sliding groove 13 along with the rotation of the first threaded rod 14, so that the detection mechanism is moved to different positions of the part 5, and the size of multiple positions of the part 5 is detected.
The working principle is as follows: when the visual inspection device is used, the part 5 is clamped and fixed on the fixing seat 16 by using the locking bolt 25, the first electric telescopic rod 11 is driven to drive the visual probe 10 to ascend and descend, the distance between the visual probe 10 and the part 5 is adjusted, the first motor 3 and the second motor 4 are started, the part 5 is driven to rotate under the action of the first motor 3, the visual probe 10 is driven to horizontally move under the action of the second motor 4, and therefore visual inspection is conducted on the outer surface of the part 5; the second electric telescopic rod 15 is driven to lift the lower ruler plate 21, the lower ruler plate 21 is in contact with the lower end face of the part 5, the third electric telescopic rod 23 is driven to make the upper ruler plate 22 in contact with the upper end face of the part 5, therefore, the size of the part 5 is detected, the third motor 7 is started to drive the sliding plate 12 to slide along the second sliding groove 13, and the lower ruler plate 21 and the upper ruler plate 22 are moved to different positions of the part 5 to be detected.
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 attributes 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 (6)

1. The utility model provides a high-accuracy parts machining intelligence on-line measuring device, includes base (1) and part (5), its characterized in that: the detection device is characterized in that a detection frame (2) and a vertical plate (6) are arranged above the base (1), a fixed seat (16) is arranged on one side of the detection frame (2), the fixed seat (16) is rotatably connected with the detection frame (2), a first sliding chute (9) is arranged on the detection frame (2), a sliding block (8) is arranged inside the first sliding chute (9), the sliding block (8) is slidably connected with the detection frame (2), a vision probe (10) is arranged below the sliding block (8), a first electric telescopic rod (11) is arranged between the vision probe (10) and the sliding block (8), a second sliding chute (13) is arranged on the vertical plate (6), two second sliding chutes (13) are arranged, a sliding plate (12) is arranged on one side of the vertical plate (6), a lifting plate (19) is arranged on one side of the sliding plate (12), and the lifting plate (19) is slidably connected with the sliding plate (12), one side of the lifting plate (19) is provided with a lower ruler plate (21) and an upper ruler plate (22), the upper ruler plate (22) is in sliding connection with the lifting plate (19), and the lower ruler plate (21) is connected with the lifting plate (19) through screws.
2. The intelligent online detection device for high-precision part machining according to claim 1, characterized in that: be provided with locking bolt (25) on fixing base (16), locking bolt (25) are provided with four, and four locking bolts (25) equidistance setting on fixing base (16), locking bolt (25) and fixing base (16) threaded connection.
3. The intelligent online detection device for high-precision part machining according to claim 1, characterized in that: one side of detecting frame (2) is provided with first motor (3), and first motor (3) pass through screw connection with detecting frame (2), the output of first motor (3) is connected as an organic whole structure with the one end of fixing base (16), the top and bottom of fixing base (16) all is provided with stopper (28), and stopper (28) pass through screw connection with detecting frame (2), stopper (28) rotate with fixing base (16) and are connected.
4. The intelligent online detection device for high-precision part machining according to claim 1, characterized in that: one side of detection frame (2) is provided with second motor (4), and second motor (4) passes through screw connection with detection frame (2), the inside of first spout (9) is provided with second threaded rod (24), and second threaded rod (24) and slider (8) threaded connection, the one end of second threaded rod (24) is connected as an organic whole structure with the output of second motor (4).
5. The intelligent online detection device for high-precision part machining according to claim 1, characterized in that: and a second electric telescopic rod (15) is arranged below the lower ruler plate (21), and two ends of the second electric telescopic rod (15) are respectively connected with the lower ruler plate (21) and the sliding plate (12) through screws.
6. The intelligent online detection device for high-precision part machining according to claim 1, characterized in that: one side of slide (12) is provided with the slider, and the slider is provided with two, and slider and slide (12) pass through screw connection, the one end of slider extends to the inside of second spout (13), and slider and riser (6) sliding connection, one side of riser (6) is provided with third motor (7), and third motor (7) and riser (6) pass through screw connection, the inside of second spout (13) is provided with first threaded rod (14), and first threaded rod (14) and slider threaded connection, the one end of first threaded rod (14) is connected as an organic whole structure with the output of third motor (7).
CN202122995110.4U 2021-12-01 2021-12-01 High-precision intelligent online detection device for part machining Active CN216745930U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122995110.4U CN216745930U (en) 2021-12-01 2021-12-01 High-precision intelligent online detection device for part machining

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122995110.4U CN216745930U (en) 2021-12-01 2021-12-01 High-precision intelligent online detection device for part machining

Publications (1)

Publication Number Publication Date
CN216745930U true CN216745930U (en) 2022-06-14

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Application Number Title Priority Date Filing Date
CN202122995110.4U Active CN216745930U (en) 2021-12-01 2021-12-01 High-precision intelligent online detection device for part machining

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115308217A (en) * 2022-08-05 2022-11-08 安徽省亚邦工程科技有限公司 Visual detection device for conveying equipment and detection method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115308217A (en) * 2022-08-05 2022-11-08 安徽省亚邦工程科技有限公司 Visual detection device for conveying equipment and detection method thereof

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