CN218098657U - Resistance to compression detection device is used in valve body processing - Google Patents

Resistance to compression detection device is used in valve body processing Download PDF

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Publication number
CN218098657U
CN218098657U CN202221093969.4U CN202221093969U CN218098657U CN 218098657 U CN218098657 U CN 218098657U CN 202221093969 U CN202221093969 U CN 202221093969U CN 218098657 U CN218098657 U CN 218098657U
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bolted connection
slider
base
valve body
pneumatic
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CN202221093969.4U
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Chinese (zh)
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刘福志
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Individual
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Abstract

The utility model discloses a resistance to compression detection device is used in valve body processing, including base, resistance to compression detection mechanism, clamping mechanism, dress feeding agencies, clamping mechanism is installed on base upper portion, and clamping mechanism's rear side is provided with dress feeding agencies, and clamping mechanism top is provided with resistance to compression detection mechanism, and the third stopper is installed at the rear portion of base, and the support is installed to the both sides of base, and resistance to compression detection mechanism includes the pneumatic cylinder, and resistance to compression detection mechanism installs the pneumatic cylinder in the lower part, and hydraulic lifter is installed to the pneumatic cylinder lower part, and the detection dish is installed to hydraulic lifter lower part, detects the dish lower part and installs clamping mechanism. Has the advantages that: this device can provide one kind and can press from both sides tight structure to the valve body that is detected in the course of the work to this kind of clamping mechanism can be suitable for most of valve bodies, can promote stability when providing the clamping function, has strengthened the result of use, has further promoted the security of equipment use.

Description

Resistance to compression detection device is used in valve body processing
Technical Field
The utility model relates to a valve check out test set field specifically is resistance to compression detection device is used in valve body processing.
Background
The valve is a control part in a fluid conveying system, has the functions of stopping, adjusting, guiding, preventing counter flow, stabilizing pressure, shunting or overflowing and relieving pressure and the like, is used for valves of a fluid control system, and has various varieties and specifications from the simplest stop valve to various valves used in an extremely complex automatic control system, and a pressure test detection device of the valve is also a great hot valve at present along with the vigorous development of the valve in various industries. When current detection device is installed and is used, firstly, partial detection device lacks a structure of going on fixing to being detected the valve, is unfavorable for people to use, and secondly partial detection device can receive vibrations influence in actual work owing to need use for a long time, influences the testing result.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a valve body processing is with resistance to compression detection device just in order to solve above-mentioned problem.
The utility model discloses a following technical scheme realizes above-mentioned purpose:
resistance to compression detection device is used in valve body processing, including base, resistance to compression detection mechanism, clamping machine structure, dress feeding agencies, clamping machine constructs on base upper portion, and clamping machine constructs the rear side and is provided with dress feeding agencies, and clamping machine constructs the top and is provided with resistance to compression detection mechanism, and the third stopper is installed at the rear portion of base, and the support is installed to the both sides of base.
Preferably, the pressure-resistant detection mechanism comprises a hydraulic cylinder, the hydraulic cylinder is mounted at the lower part of the support, a hydraulic lifting rod is mounted at the lower part of the hydraulic cylinder, and a detection disc is mounted at the lower part of the hydraulic lifting rod.
Preferably, the clamping mechanism comprises a flange plate, the flange plate is installed in the middle of the upper portion of the base, the supporting column is installed on the upper portion of the flange plate, the workbench is installed on the upper portion of the supporting column, the clamp seat is installed on the upper portion of the workbench, the baffle is installed on one side of the clamp seat, the first limiting blocks are installed on the front side and the rear side of the baffle, the clamp is installed on the other side of the baffle, the first sliding block is installed on the front side and the rear side of the clamp, and the first sliding rail is arranged on the contact portion of the first sliding block and the baffle.
Preferably, dress feed mechanism includes the second slider, the second slider sets up at the clamping machine structure rear side, second slider lower part is provided with the second slide rail, the motor cabinet is installed on second slider upper portion, the motor is installed on motor cabinet upper portion, the lead screw is installed on motor upper portion, install the transmission piece on the lead screw, the second stopper is installed on the lead screw top, the pneumatic cylinder is installed to the transmission piece front side, the atmospheric pressure slide rail is installed to the pneumatic cylinder front side, atmospheric pressure slide rail front side is provided with the atmospheric pressure slider, install the manipulator on the atmospheric pressure slider.
Preferably, the base is connected with the clamping mechanism through bolts.
Preferably, the base is connected with the third limiting block through a bolt, the base is connected with the support through a bolt, the support is connected with the compression-resistant detection mechanism through a bolt, the support is connected with the hydraulic cylinder through a bolt, the hydraulic cylinder is connected with the hydraulic lifting rod in a sliding mode, and the hydraulic lifting rod is connected with the detection disc through a bolt.
Preferably, the base is connected with the flange plate through bolts, the flange plate is connected with the support column through bolts, the support column is connected with the workbench through bolts, the workbench is connected with the clamp seat through bolts, the clamp seat is connected with the baffle plate through bolts, the baffle plate is connected with the first limiting block through bolts, the baffle plate is connected with the clamp through bolts, the clamp is connected with the first sliding block through bolts, and the first sliding block is connected with the first sliding rail in a sliding mode.
Preferably, the second slider is connected with the second slide rail in a sliding mode, the second slider is connected with the motor base through bolts, the motor base is connected with the motor through bolts, the motor is connected with the lead screw key, the lead screw is connected with the transmission block through threads, the lead screw is connected with the second limiting block through bolts, the transmission block is connected with the pneumatic cylinder through bolts, the pneumatic cylinder is connected with the pneumatic slide rail through bolts, the pneumatic slide rail is connected with the pneumatic slider in a sliding mode, and the pneumatic slider is connected with the mechanical arm through bolts.
Has the advantages that: this device can provide one kind and can press from both sides tight structure to the valve body that is detected in the course of the work to this kind of clamping mechanism can be suitable for most of valve bodies, can promote stability when providing the clamping function, has strengthened the result of use, has further promoted the security of equipment use.
Drawings
Fig. 1 is a spatial perspective view of the compression-resistant detection device for processing a valve body of the present invention;
fig. 2 is the utility model discloses a valve body processing is with resistance to compression detection device's partial enlarged view.
Fig. 3 is a rear view of the valve body processing compression-resistant detection device.
Fig. 4 is the utility model discloses a valve body processing is with resistance to compression detection device's right side view.
1. A base; 11. a support; 12. a third limiting block; 2. a compression resistance detection mechanism; 22. a hydraulic cylinder; 23. A hydraulic lifting rod; 24. detecting a disc; 3. a clamping mechanism; 31. a flange plate; 32. a support pillar; 33. a work table; 34. a clamp seat; 35. a first stopper; 36. a first slider; 37. a clamp; 38. a baffle plate; 39. A first slide rail; 4. a loading and taking mechanism; 41. a second slider; 42. a second slide rail; 43. a motor base; 44. A screw rod; 45. a transmission block; 46. a second limiting block; 47. an air pressure slider; 48. a manipulator; 49. a pneumatic cylinder; 410. an air pressure slide rail; 411. an electric motor.
Detailed Description
The present invention will be further explained with reference to the accompanying drawings:
as shown in fig. 1-4, the compression-resistant detection device for valve body processing comprises a base 1, a compression-resistant detection mechanism 2, a clamping mechanism 3 and a loading and taking mechanism 4, wherein the clamping mechanism 3 is installed on the upper portion of the base 1, the base 1 is used for supporting the mechanism, the base 1 is in bolted connection with the clamping mechanism 3, the loading and taking mechanism 4 is arranged on the rear side of the clamping mechanism 3, the loading and taking mechanism 4 is used for automatically clamping a valve body, the clamping mechanism 3 is used for clamping the valve body, the compression-resistant detection mechanism 2 is arranged above the clamping mechanism 3, the compression-resistant detection mechanism 2 is used for detecting the compression resistance of the valve body, a third limiting block 12 is installed on the rear portion of the base 1, the third limiting block 12 is used for limiting a second sliding block 41, the base 1 is in bolted connection with the third limiting block 12, brackets 11 are installed on two sides of the base 1, the brackets 11 are used for supporting the compression-resistant detection mechanism 2, the base 1 is in bolted connection with the brackets 11, and the compression-resistant detection mechanism 2 is in bolted connection with the brackets 11;
in this embodiment: the compression resistance detection mechanism 2 comprises a hydraulic cylinder 22, the hydraulic cylinder 22 is arranged on the lower portion of the support 11, the hydraulic cylinder 22 is used for controlling a hydraulic lifting rod 23, the hydraulic lifting rod 23 is arranged on the lower portion of the hydraulic cylinder 22, a detection disc 24 is arranged on the lower portion of the hydraulic lifting rod 23, the hydraulic lifting rod 23 is used for adjusting the position of the detection disc 24, the support 11 is in bolted connection with the hydraulic cylinder 22, the hydraulic cylinder 22 is in sliding connection with the hydraulic lifting rod 23, and the hydraulic lifting rod 23 is in bolted connection with the detection disc 24;
in this embodiment: the clamping mechanism 3 comprises a flange 31, the flange 31 is arranged in the middle of the upper part of the base 1, a supporting column 32 is arranged on the upper part of the flange 31, the flange 31 is used for fixing the supporting column 32, a workbench 33 is arranged on the upper part of the supporting column 32, the supporting column 32 is used for supporting the workbench 33, the valve body is arranged on the workbench 33, a clamp seat 34 is arranged on the upper part of the workbench 33, a baffle 38 is arranged on one side of the clamp seat 34, the clamp seat 34 is used for connecting the baffle 38, the baffle 38 is used for connecting a clamp 37, a first limiting block 35 is arranged on the front side and the rear side of the baffle 38, the first limiting block 35 is used for limiting the first sliding block 36 to slide, a clamp 37 is arranged on the other side of the baffle 38, and the clamp 37 is used for clamping the valve body, the front side and the rear side of the clamp 37 are provided with first sliding blocks 36, the first sliding blocks 36 are used for driving the clamp 37 to move, a first sliding rail 39 is arranged at the contact part of the first sliding blocks 36 and a baffle 38, the first sliding rail 39 enables the first sliding blocks 36 to slide, the base 1 is in bolted connection with the flange plate 31, the flange plate 31 is in bolted connection with the supporting column 32, the supporting column 32 is in bolted connection with the workbench 33, the workbench 33 is in bolted connection with a clamp seat 34, the clamp seat 34 is in bolted connection with the baffle 38, the baffle 38 is in bolted connection with a first limiting block 35, the baffle 38 is in bolted connection with the clamp 37, the clamp 37 is in bolted connection with the first sliding blocks 36, and the first sliding blocks 36 are in sliding connection with the first sliding rails 39;
in this embodiment: the loading and unloading mechanism 4 comprises a second sliding block 41, the second sliding block 41 is used for driving a motor base 43 to slide, the second sliding block 41 is arranged at the rear side of the clamping mechanism 3, a second sliding rail 42 is arranged at the lower part of the second sliding block 41, the second sliding rail 42 is used for enabling the second sliding block 41 to slide, the motor base 43 is arranged at the upper part of the second sliding block 41, the motor 411 is used for installing a motor 411, the motor 411 is used for driving a screw rod 44 to rotate, the screw rod 44 is arranged at the upper part of the motor 411, the screw rod 44 is used for driving a transmission block 45 to rotate, the transmission block 45 is used for driving a pneumatic cylinder 49 to rotate, a second limiting block 46 is arranged at the top end of the screw rod 44, a pneumatic cylinder 49 is arranged at the front side of the transmission block 45, the pneumatic cylinder 49 is used for controlling the pneumatic sliding rail 410, pneumatic slide rail 410 is installed to pneumatic cylinder 49 front side, pneumatic slide rail 410 is used for making pneumatic slider 47 slide, pneumatic slide rail 410 front side is provided with pneumatic slider 47, install manipulator 48 on the pneumatic slider 47, pneumatic slider 47 is used for driving manipulator 48, manipulator 48 is used for installing and getting the valve body, two slider 41 and second slide rail 42 sliding connection, second slider 41 and motor cabinet 43 bolted connection, motor cabinet 43 and motor 411 bolted connection, motor 411 and lead screw 44 key-type connection, lead screw 44 passes through threaded connection with transmission piece 45, lead screw 44 and second stopper 46 bolted connection, transmission piece 45 and pneumatic cylinder 49 bolted connection, pneumatic cylinder 49 and pneumatic slide rail 410 bolted connection, pneumatic slide rail 410 and pneumatic slide rail 47 sliding connection, pneumatic slider 47 and manipulator 48 bolted connection.
In the structure, the motor 411 operates to control the screw rod 44 to rotate, the screw rod 44 drives the transmission block 45, the transmission block 45 drives the pneumatic cylinder 49, the pneumatic cylinder 49 controls the mechanical arm 48 to place the valve body on the workbench 33, then the first sliding block 36 slides the adjusting clamp 37 to clamp the valve body, the pressure resistance detection mechanism 2 operates, the hydraulic cylinder 22 controls the hydraulic lifting rod 23, the hydraulic lifting rod 23 adjusts the position of the detection disc 24, and the detection disc 24 compresses the valve body to complete pressure resistance detection.
The foregoing illustrates and describes the general principles, features and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (7)

1. Resistance to compression detection device is used in valve body processing, its characterized in that: the clamping mechanism (3) is mounted on the upper portion of the base (1), the loading and taking mechanism (4) is arranged on the rear side of the clamping mechanism (3), the compression-resistant detection mechanism (2) is arranged above the clamping mechanism (3), a third limiting block (12) is mounted on the rear portion of the base (1), and supports (11) are mounted on two sides of the base (1);
clamping mechanism (3) are including ring flange (31), installing flange dish (31) in the middle of base (1) upper portion, support column (32) are installed on ring flange (31) upper portion, workstation (33) are installed on support column (32) upper portion, anchor clamps seat (34) are installed on workstation (33) upper portion, baffle (38) are installed to anchor clamps seat (34) one side, first stopper (35) are installed to baffle (38) front and back side, anchor clamps (37) are installed to baffle (38) opposite side, first slider (36) are installed to anchor clamps (37) front and back side, first slider (36) with baffle (38) contact segment is provided with first slide rail (39).
2. The valve body processing pressure resistance detection device according to claim 1, characterized in that: resistance to compression detection mechanism (2) includes pneumatic cylinder (22), support (11) lower part installation pneumatic cylinder (22), hydraulic lifting rod (23) are installed to pneumatic cylinder (22) lower part, test tray (24) are installed to hydraulic lifting rod (23) lower part.
3. The valve body processing pressure resistance detection device according to claim 1, characterized in that: dress feeding agencies (4) include second slider (41), second slider (41) set up clamping mechanism (3) rear side, second slider (41) lower part is provided with second slide rail (42), motor cabinet (43) are installed on second slider (41) upper portion, motor (411) are installed on motor cabinet (43) upper portion, lead screw (44) are installed on motor (411) upper portion, install transmission piece (45) on lead screw (44), second stopper (46) are installed on lead screw (44) top, pneumatic cylinder (49) are installed to transmission piece (45) front side, pneumatic slide rail (410) are installed to pneumatic cylinder (49) front side, pneumatic slide rail (410) front side is provided with pneumatic slider (47), install manipulator (48) on pneumatic slider (47).
4. The valve body processing pressure resistance detection device according to claim 1, characterized in that: the base (1) is connected with the clamping mechanism (3) through bolts.
5. The valve body processing pressure resistance detection device according to claim 2, characterized in that: base (1) with third stopper (12) bolted connection, base (1) with support (11) bolted connection, support (11) with resistance to compression detection mechanism (2) bolted connection, support (11) with pneumatic cylinder (22) bolted connection, pneumatic cylinder (22) with hydraulic pressure lifter (23) sliding connection, hydraulic pressure lifter (23) with detect dish (24) bolted connection.
6. The valve body processing pressure resistance detection device according to claim 1, characterized in that: base (1) with ring flange (31) bolted connection, ring flange (31) with support column (32) bolted connection, support column (32) with workstation (33) bolted connection, workstation (33) with anchor clamps seat (34) bolted connection, anchor clamps seat (34) with baffle (38) bolted connection, baffle (38) with first stopper (35) bolted connection, baffle (38) with anchor clamps (37) bolted connection, anchor clamps (37) with first slider (36) bolted connection, first slider (36) with first slide rail (39) sliding connection.
7. The valve body processing pressure resistance detection device according to claim 3, characterized in that: second slider (41) with second slide rail (42) sliding connection, second slider (41) with motor cabinet (43) bolted connection, motor cabinet (43) with motor (411) bolted connection, motor (411) with lead screw (44) key-type connection, lead screw (44) with transmission piece (45) pass through threaded connection, lead screw (44) with second stopper (46) bolted connection, transmission piece (45) with pneumatic cylinder (49) bolted connection, pneumatic cylinder (49) with pneumatic slide rail (410) bolted connection, pneumatic slide rail (410) with pneumatic slide block (47) sliding connection, pneumatic slide block (47) and manipulator (48) bolted connection.
CN202221093969.4U 2022-05-09 2022-05-09 Resistance to compression detection device is used in valve body processing Active CN218098657U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221093969.4U CN218098657U (en) 2022-05-09 2022-05-09 Resistance to compression detection device is used in valve body processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221093969.4U CN218098657U (en) 2022-05-09 2022-05-09 Resistance to compression detection device is used in valve body processing

Publications (1)

Publication Number Publication Date
CN218098657U true CN218098657U (en) 2022-12-20

Family

ID=84458584

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221093969.4U Active CN218098657U (en) 2022-05-09 2022-05-09 Resistance to compression detection device is used in valve body processing

Country Status (1)

Country Link
CN (1) CN218098657U (en)

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