CN220252449U - High-precision quantitative testing device of industrial control equipment - Google Patents

High-precision quantitative testing device of industrial control equipment Download PDF

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Publication number
CN220252449U
CN220252449U CN202322099421.1U CN202322099421U CN220252449U CN 220252449 U CN220252449 U CN 220252449U CN 202322099421 U CN202322099421 U CN 202322099421U CN 220252449 U CN220252449 U CN 220252449U
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China
Prior art keywords
control equipment
industrial control
temperature controller
sleeve
precision quantitative
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CN202322099421.1U
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Chinese (zh)
Inventor
程凯
陈艳
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Taisheng Electric Jiangsu Co ltd
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Taisheng Electric Jiangsu Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

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  • Testing Electric Properties And Detecting Electric Faults (AREA)

Abstract

The utility model relates to the technical field of industrial control equipment testing, and discloses a high-precision quantitative testing device of industrial control equipment, which comprises a workbench. Through the setting of cylinder, the sleeve, pressure sensor, the retainer plate, the ejector pin, the temperature controller, the frame, the heater strip, baffle and louvre, be connected with the roof through ejector pin one end, it stretches out and draws back to drive the ejector pin at the cylinder during operation, it slides at the slide rail upper surface to drive the roof during the ejector pin stretches out and draws back, press from both sides the industrial control equipment of workstation upper surface tightly, utilize pressure sensor to monitor the output pressure of cylinder, can prevent that the cylinder is not hard up through the retainer plate, distribute the hot air current through the heater strip, with the hot air current leading-in industrial control equipment surface of louvre, heat it, utilize the temperature controller to adjust the temperature data of heater strip, be convenient for long-time during production monitor its industrial control equipment's heat resistance and resistance to compression, avoid causing the production line trouble when putting into operation, improve production efficiency.

Description

High-precision quantitative testing device of industrial control equipment
Technical Field
The utility model relates to the technical field of industrial control equipment testing, in particular to a high-precision quantitative testing device of industrial control equipment.
Background
Industrial control equipment may be applied in production line control, which typically includes controlling various machines and equipment in the production process of conveyor belts, robots, conveyor belts, packaging and loading/unloading equipment, etc., to automate the production process and optimize production efficiency and cost;
however, the existing high-precision quantitative testing device for the industrial control equipment is inconvenient to monitor the heat resistance and the pressure resistance of the industrial control equipment for a long time during production, and is easy to cause production line faults and reduce production efficiency during operation.
Disclosure of Invention
In order to achieve the above purpose, the utility model is realized by the following technical scheme: the utility model provides an industrial control equipment's high accuracy ration testing arrangement, includes the workstation, surface mounting has the slide rail on the workstation, and slide rail upper surface slidable mounting has the roof, workstation top one side fixed mounting has the positioning seat, and the positioning seat lateral wall installs resistance to compression monitoring component, the corresponding heat-resisting monitoring component that installs of roof, and heat-resisting monitoring component installs the block terminal in one side, block terminal lateral wall electric connection has display panel, and display panel bottom electric connection has the control button, block terminal top electric connection has the wire, and wire one end electric connection has the monitoring probe.
Further, resistance to compression monitoring component includes the cylinder, cylinder one end cover is equipped with the sleeve, and the sleeve outer wall installs pressure sensor, sleeve lateral wall laminating has the spacing collar, and sleeve one end outer wall wears to be equipped with the ejector pin.
Furthermore, sleeve and cylinder swing joint are worn to establish to ejector pin one end, and the ejector pin other end wears to establish the positioning seat and is connected with the roof.
Further, the pressure sensor is matched with the air cylinder, and the specific model of the pressure sensor is MCS20-A3.
Further, heat-resisting monitoring subassembly includes the temperature controller, the frame is installed to the temperature controller bottom, and the heater strip is installed to the frame inner wall, the baffle is installed to the frame lateral wall, and the louvre has been seted up to the baffle lateral wall.
Further, the temperature controller is electrically connected with the heating wire, and the specific model of the temperature controller is TA-4W.
Furthermore, the outer wall of the display panel is attached with a toughened film, and the display panel specifically adopts a multipoint capacitive touch screen component.
Advantageous effects
The utility model provides a high-precision quantitative testing device of industrial control equipment, which comprises the following components
The beneficial effects are that:
through the setting of cylinder, the sleeve, pressure sensor, the retainer plate, the ejector pin, the temperature controller, the frame, the heater strip, baffle and louvre, be connected with the roof through ejector pin one end, it stretches out and draws back to drive the ejector pin at the cylinder during operation, it slides at the slide rail upper surface to drive the roof during the ejector pin stretches out and draws back, press from both sides the industrial control equipment of workstation upper surface tightly, utilize pressure sensor to monitor the output pressure of cylinder, can prevent that the cylinder is not hard up through the retainer plate, distribute the hot air current through the heater strip, with the hot air current leading-in industrial control equipment surface of louvre, heat it, utilize the temperature controller to adjust the temperature data of heater strip, be convenient for long-time during production monitor its industrial control equipment's heat resistance and resistance to compression, avoid causing the production line trouble when putting into operation, improve production efficiency.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of a compressive monitoring assembly according to the present utility model;
fig. 3 is a schematic structural diagram of a heat-resistant monitoring assembly in the present utility model.
In the figure: 1. a work table; 2. a slide rail; 3. a top plate; 4. a positioning seat; 5. a pressure-resistant monitoring assembly; 51. a cylinder; 52. a sleeve; 53. a pressure sensor; 54. a limit ring; 55. a push rod; 6. a heat resistant monitoring assembly; 61. a temperature controller; 62. a frame; 63. a heating wire; 64. a baffle; 65. a heat radiation hole; 7. a distribution box; 8. a display panel; 9. controlling the keys; 10. a wire; 11. and monitoring the probe.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. 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.
Referring to fig. 1 to 3, the present utility model provides a technical solution: the utility model provides a high accuracy ration testing arrangement of industrial control equipment, the on-line screen storage device comprises a workbench 1, be convenient for put industrial control equipment through workstation 1, surface mounting has slide rail 2 on the workstation 1, utilize slide rail 2 to be convenient for roof 3 to carry out the position slip, and surface sliding mounting has roof 3 on slide rail 2, workstation 1 top one side fixed mounting has positioning seat 4, and the resistance to compression monitoring subassembly 5 is installed to positioning seat 4 lateral wall, roof 3 is corresponding installs heat-resisting monitoring subassembly 6, and install block terminal 7 on one side of heat-resisting monitoring subassembly 6, through block terminal 7 connecting circuit, distribute the electric current for electrical equipment, block terminal 7 lateral wall electric connection has display panel 8, utilize display panel 8 to carry out the operational data when showing electrical equipment, and display panel 8 bottom electric connection has control button 9, be convenient for control electrical equipment operation through controlling button 9, block terminal 7 top electric connection has wire 10, the data of monitoring probe 11 is imported in display panel 8 through wire 10 and is looked over, and wire 10 one end electric connection has monitoring probe 11, utilize monitoring probe 11 and industrial control equipment electric connection, carry out long-time monitoring operation, display panel 8 outer wall laminating, and display panel 8 has the touch-down touch-type structural member, can prevent the cost from damaging with the touch-sensitive member, touch-down.
The compression-resistant monitoring assembly 5 comprises an air cylinder 51, a sleeve 52 is sleeved at one end of the air cylinder 51, a pressure sensor 53 is mounted on the outer wall of the sleeve 52, a limit ring 54 is attached to the outer side wall of the sleeve 52, a push rod 55 is arranged on the outer wall of one end of the sleeve 52 in a penetrating mode, one end of the push rod 55 is connected with a top plate 3, the push rod 55 is driven to stretch out and draw back when the air cylinder 51 works, the top plate 3 is driven to slide on the upper surface of a sliding rail 2 when the push rod 55 stretches out and draws back, industrial control equipment on the upper surface of the workbench 1 is clamped, the output pressure of the air cylinder 51 is monitored by the pressure sensor 53, the air cylinder 51 can be prevented from loosening by the limit ring 54, the sleeve 52 is arranged at one end of the push rod 55 in a penetrating mode and movably connected with the air cylinder 51, the positioning seat 4 is arranged at the other end of the push rod 55 in a penetrating mode, the pressure sensor 53 is matched with the air cylinder 51, and the specific model of the pressure sensor 53 is MCS20-A3, and is firm and durable, and achieves the best use effect.
The heat-resistant monitoring assembly 6 comprises a temperature controller 61, a frame 62 is arranged at the bottom end of the temperature controller 61, a heating wire 63 is arranged on the inner wall of the frame 62, a baffle plate 64 is arranged on the outer side wall of the frame 62, a heat dissipation hole 65 is formed in the outer side wall of the baffle plate 64, hot air is emitted through the heating wire 63, the hot air is led into the surface of industrial control equipment through the heat dissipation hole 65 and is heated, temperature data of the heating wire 63 are regulated by the temperature controller 61, the temperature controller 61 is electrically connected with the heating wire 63, the specific model of the temperature controller 61 is TA-4W, voltage output is stable, and working efficiency is improved.
In summary, the operation steps of the high-precision quantitative test device of the industrial control equipment are as follows; during the use, be convenient for put industry control equipment through workstation 1, be convenient for roof 3 to slide in the position through slide rail 2, be connected with roof 3 through ejector pin 55 one end, drive ejector pin 55 and stretch out and draw back at cylinder 51 during operation, drive roof 3 and slide at slide rail 2 upper surface during ejector pin 55 stretches out and draws back, press from both sides the industry control equipment of workstation 1 upper surface, utilize pressure sensor 53 to monitor the output pressure of cylinder 51, can prevent that cylinder 51 is not hard up, distribute the hot air through heater strip 63, with the hot air leading-in industry control equipment surface of heat dissipation hole 65, heat it, utilize temperature controller 61 to adjust the temperature data of heater strip 63, connect the circuit through block terminal 7, allocate the electric current for electrical equipment, utilize display panel 8 to carry out the operational data of display electrical equipment during operation, be convenient for control electrical equipment operation through controlling button 9, utilize monitor 11 and industry control equipment electric connection, monitor the situation of operation for a long time, monitor the situation of operation, monitor 11 is imported into display panel 8 through wire 10 and is looked over.

Claims (7)

1. The utility model provides a high accuracy ration testing arrangement of industrial control equipment, includes workstation (1), its characterized in that: the utility model discloses a high-voltage power supply device, including workstation (1), roof, wire (10) and wire (10) one end electric connection, workstation (1) upper surface mounting has slide rail (2), and slide rail (2) upper surface slidable mounting has roof (3), workstation (1) top one side fixed mounting has positioning seat (4), and positioning seat (4) lateral wall installs resistance to compression monitoring component (5), roof (3) are corresponding to install heat-resisting monitoring component (6), and heat-resisting monitoring component (6) one side installs block terminal (7), block terminal (7) lateral wall electric connection has display panel (8), and display panel (8) bottom electric connection has control button (9), block terminal (7) top electric connection has wire (10), and wire (10) one end electric connection has monitoring probe (11).
2. The high-precision quantitative test device for industrial control equipment according to claim 1, wherein: the anti-compression monitoring assembly (5) comprises an air cylinder (51), a sleeve (52) is sleeved at one end of the air cylinder (51), a pressure sensor (53) is installed on the outer wall of the sleeve (52), a limit ring (54) is attached to the outer side wall of the sleeve (52), and a push rod (55) is arranged on the outer wall of one end of the sleeve (52) in a penetrating mode.
3. The high-precision quantitative test device for industrial control equipment according to claim 2, wherein: one end of the ejector rod (55) is penetrated with the sleeve (52) and is movably connected with the air cylinder (51), and the other end of the ejector rod (55) is penetrated with the positioning seat (4) and is connected with the top plate (3).
4. The high-precision quantitative test device for industrial control equipment according to claim 2, wherein: the pressure sensor (53) is matched with the air cylinder (51), and the specific model of the pressure sensor (53) is MCS20-A3.
5. The high-precision quantitative test device for industrial control equipment according to claim 1, wherein: the heat-resistant monitoring assembly (6) comprises a temperature controller (61), a frame (62) is installed at the bottom end of the temperature controller (61), a heating wire (63) is installed on the inner wall of the frame (62), a baffle (64) is installed on the outer side wall of the frame (62), and a heat dissipation hole (65) is formed in the outer side wall of the baffle (64).
6. The high-precision quantitative test device for industrial control equipment according to claim 5, wherein: the temperature controller (61) is electrically connected with the heating wire (63), and the specific model of the temperature controller (61) is TA-4W.
7. The high-precision quantitative test device for industrial control equipment according to claim 1, wherein: the toughened film is attached to the outer wall of the display panel (8), and the display panel (8) is a multipoint capacitive touch screen component.
CN202322099421.1U 2023-08-07 2023-08-07 High-precision quantitative testing device of industrial control equipment Active CN220252449U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322099421.1U CN220252449U (en) 2023-08-07 2023-08-07 High-precision quantitative testing device of industrial control equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322099421.1U CN220252449U (en) 2023-08-07 2023-08-07 High-precision quantitative testing device of industrial control equipment

Publications (1)

Publication Number Publication Date
CN220252449U true CN220252449U (en) 2023-12-26

Family

ID=89226802

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322099421.1U Active CN220252449U (en) 2023-08-07 2023-08-07 High-precision quantitative testing device of industrial control equipment

Country Status (1)

Country Link
CN (1) CN220252449U (en)

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