CN212483399U - Automatic suspension conveying type fluorescence penetration detection equipment - Google Patents

Automatic suspension conveying type fluorescence penetration detection equipment Download PDF

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Publication number
CN212483399U
CN212483399U CN201821666750.2U CN201821666750U CN212483399U CN 212483399 U CN212483399 U CN 212483399U CN 201821666750 U CN201821666750 U CN 201821666750U CN 212483399 U CN212483399 U CN 212483399U
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China
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station
automated
detection apparatus
fluorescence
degreasing
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CN201821666750.2U
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Chinese (zh)
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李晶晶
杨春雨
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Suzhou Yuanshen Coating & Purification Equipment Co ltd
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Suzhou Yuanshen Coating & Purification Equipment Co ltd
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Abstract

The utility model relates to an automatic hang transport formula fluorescence infiltration check out test set, annular catenary conveying system has, be provided with the material frame under annular catenary conveying system, the degrease station, first washing station, blow the water station, it permeates the station to water, first drip station, rinse the station in advance, the second washs the station, the second drips the station, the stoving station, observation station and automatic control system, be provided with the degrease bucket between degrease station and observation station, the material frame, light curtain and guardrail, side at the station of blowing is provided with the infiltration cistern, side at the drip station is provided with exhaust dust collector, be provided with the collecting vessel in the drip station. Compared with the prior art, the beneficial effects of the utility model are that: firstly, the automatic production improves the production capacity; secondly, the requirement on the capability of the operator is reduced; and thirdly, the automatic control system controls the loss of penetrating fluid and cleaning wastewater, improves lubricating oil and reduces production cost.

Description

Automatic suspension conveying type fluorescence penetration detection equipment
Technical Field
The utility model relates to an automatic hang transport formula fluorescence infiltration check out test set.
Background
In the existing fluorescence penetration industry, manual detection in an electric hoist auxiliary mode is mostly adopted. The requirement of the manual fluorescence permeation detection line on relative production capacity is not high, and the requirement on the operation capability of an operator is high due to the simple process configuration. The manual fluorescence permeation test line is manually operated by an operator at each step, so that the loss of the permeation fluid and the washing wastewater cannot be controlled.
Disclosure of Invention
In order to solve the technical problem, the utility model discloses a realize through following technical scheme: the utility model provides an automatic hang transport formula fluorescence infiltration check out test set, annular catenary conveying system has, the material frame has set gradually under annular catenary conveying system, the degrease station, first washing station, blow the water station, water and drench the infiltration station, first drip station, wash the station in advance, the second washs the station, the second drips the station, the oven, observation station and automatic control system, be provided with the degrease liquid bucket between degrease station and observation station, the material frame, light curtain and guardrail, be provided with the infiltration cistern at the side of blowing the water station, be provided with exhaust dust collector at the side of first drip station, be provided with the collecting vessel in the first drip station.
In order to facilitate control of the conveying speed, further: the annular catenary conveying system comprises a driving device, a tensioning device, a traction chain, a conveying track, a track connector, a stand column, an auxiliary support, a five-point microcomputer oiling machine and the like, and the running speed is controlled through an automatic control system.
In order to facilitate the hanging of the group of the multiple workpieces, further: the material rack adopts a multilayer structure.
In order to improve the production quality of the coating production line, further: degreasing station, first washing station, blow the water station, water and drench the infiltration station, wash station, second washing station in advance all by spraying system, the canopy body, cell body, two divisions move the door and constitute, blow the water station by the canopy body and fan blow the water system and constitute.
In order to improve the drying effect, further: the oven comprises a heat preservation chamber body, a circulating fan, a heat exchange device and the like.
In order to facilitate the detection of the production quality of the product, further: the observation station comprises a chamber body, a belt conveyor, a black light lamp and the like, and the black light lamp is used for detecting the coating effect of the surface of the product.
In order to facilitate the control of the operation of the whole production line, further: the automatic control system comprises a human-computer interface touch screen, a control button, an indicator light, a control center and a digital display temperature controller.
To facilitate servicing of the machine, further: crawling ladders are arranged at the degreasing station and the first dropping station.
Compared with the prior art, the beneficial effects of the utility model are that: firstly, the automatic production improves the production capacity; secondly, the requirement on the capability of the operator is reduced; and thirdly, the automatic control system controls the loss of penetrating fluid and cleaning wastewater, improves lubricating oil and reduces production cost.
Description of the drawings:
the present invention will be further explained with reference to the accompanying drawings:
fig. 1 is a schematic plan view of the present invention;
FIG. 2 is a schematic view of the endless catenary conveyor system of the present invention;
FIG. 3 is a sectional view of the water blowing station of the present invention;
fig. 4 is a schematic view of the automatic control system of the present invention.
In the figure: 1. the system comprises a guardrail 2, a material frame 3, a light curtain 4, an annular catenary conveying system 5, a degreasing liquid barrel 6, a double-opening sliding door 7, a degreasing station 8, a first cleaning station 9, a spraying system 10, a water blowing station 11, a permeating liquid tank 12, a pouring permeating station 13, an exhaust dust removal device 14, a collecting barrel 15, a first dropping station 16, a pre-cleaning station 17, a second cleaning station 18, a second dropping station 19, a material frame 20, a heat preservation chamber body 21, a circulating fan 22, a heat exchange device 23, a 24, an observation station 25, an air conditioner 26, a belt conveyor 27, a black light lamp 28, an automatic control system 29, a tensioning device 30, a rail connecting body 31, an auxiliary support 32, a conveying rail 33, a traction chain 34, a five-point microcomputer oiling machine 35, a stand column 36, a driving device 37, a groove body 38, a shed body 39, a fan blowing water 40, a backing plate 41, an oven ladder 42 and a control button 43. A human-computer interface touch screen 44, a digital display temperature controller 45, an indicator lamp 46 and a control center.
The specific implementation mode is as follows:
the present invention will be described in detail with reference to the accompanying drawings and specific embodiments:
as shown in fig. 1, 2, 3 and 4, the automatic suspension conveying type fluorescence penetration detection device comprises an annular catenary conveying system 4, a material rack 19, a degreasing station 7, a first cleaning station 8, a water blowing station 10, a pouring penetration station 12, a first dropping station 15, a pre-cleaning station 16, a second cleaning station 17, a second dropping station 18, an oven 40, an observation station 24 and an automatic control system 28 are arranged below the annular catenary conveying system 4, a degreasing liquid barrel 5, a material frame 2, a light curtain 3 and a guardrail 1 are arranged between the degreasing station 7 and the observation station 24, a penetration liquid tank 11 is arranged beside the water blowing station 10, an exhaust device 13 is arranged beside the first dropping station 15, and a collection barrel 14 is arranged inside the first dropping station 15. The endless catenary conveying system 4 is composed of a driving device 36, a tensioning device 29, a traction chain 33, a conveying track 32, a track connecting body 30, a stand column 35, an auxiliary support 31, a five-point microcomputer oiling machine 34 and the like, and the running speed is controlled by the automatic control system 28. The material rack 19 adopts a multilayer structure, and can realize the assembly and hanging of multiple workpieces. The degreasing station 7, the first cleaning station 8, the water blowing station 10, the pouring infiltration station 12, the pre-cleaning station 16 and the second cleaning station 17 are all composed of a spraying system 9, a shed body 38, a trough body 37 and a double-opening sliding door 6. The water blowing station 10 is composed of a shed body 38 and a fan water blowing system 39. The oven comprises a heat preservation chamber body 20, a circulating fan 21, a heat exchange device 22 and the like. The observation station 24 is composed of a chamber body 25, a belt conveyor 26, a black light lamp 27, and the like. The automatic control system 28 comprises a human-computer interface touch screen 43, a control button 42, an indicator lamp 45, a control center 46, a digital display temperature controller 44 and the like. Crawling ladders 41 are arranged at the degreasing station 7 and the first dropping station 15, so that the equipment can be maintained conveniently.
When the whole production line starts to operate, an operator loads workpieces on the material shelf 19, and the automatic control system 28 controls the starting and stopping of each station by detecting whether workpieces exist in each station, so that the energy consumption is reduced. Then, the production line starts by pressing a control button 42 on the automatic control system 28, and the process transfer among degreasing, first cleaning, water blowing, infiltration, dripping, pre-washing, second cleaning, dripping, drying and natural cooling is carried out by the annular catenary conveying system 4 through each station under the control of the programmed program of the automatic control system 28, so that the participation of operators is avoided, and the labor cost is reduced. Each station does not need to be operated by an operator, so that the working yield is greatly improved, and the cost is saved. And finally, manually taking down the workpieces from the material rack 19 below the annular catenary conveying system 4 in the observation station 24, placing the workpieces on a belt conveyor 26 for observation, selecting qualified workpieces, and finally finishing the production and inspection of the products.
It is to be emphasized that: the above embodiments are only preferred embodiments of the present invention, and are not intended to limit the present invention in any form, and any simple modifications, equivalent changes and modifications made by the technical spirit of the present invention to the above embodiments are all within the scope of the technical solution of the present invention.

Claims (9)

1. The utility model provides an automatic hang transport formula fluorescence infiltration check out test set which characterized in that: the device is provided with an annular catenary chain conveying system (4), a material rack (19), a degreasing station (7), a first cleaning station (8), a water blowing station (10), a pouring infiltration station (12), a first dropping station (15), a pre-cleaning station (16), a second cleaning station (17), a second dropping station (18), an oven (40), an observation station (24) and an automatic control system (28) are arranged below the annular catenary chain conveying system (4), a degreasing liquid barrel (5), a material frame (2), a light curtain (3) and a guardrail (1) are arranged between the degreasing station (7) and the observation station (24), an infiltration liquid tank (11) is arranged beside the water blowing station (10), an exhaust dust removal device (13) is arranged beside the first dropping station (15), and a collection barrel (14) is arranged inside the first dropping station (15).
2. The automated suspended transport fluorescence infiltration detection apparatus of claim 1, wherein: the annular catenary conveying system (4) consists of a driving device (36), a tensioning device (29), a traction chain (33), a conveying track (32), a track connecting body (30), a stand column (35), an auxiliary support (31) and a five-point microcomputer oiling machine (34), and the running speed is controlled by an automatic control system (28).
3. The automated suspended transport fluorescence infiltration detection apparatus of claim 1, wherein: the material rack (19) adopts a multilayer structure, and can realize the assembly and hanging of multiple workpieces.
4. The automated suspended transport fluorescence infiltration detection apparatus of claim 1, wherein: the degreasing station (7), the first cleaning station (8), the water blowing station (10), the pouring and permeating station (12), the pre-cleaning station (16) and the second cleaning station (17) are all composed of a spraying system (9), a shed body (38), a trough body (37) and a double-opening sliding door (6).
5. The automated suspended transport fluorescence infiltration detection apparatus of claim 1, wherein: the water blowing station (10) consists of a shed body (38) and a fan water blowing system (39).
6. The automated suspended transport fluorescence infiltration detection apparatus of claim 1, wherein: the oven (40) is composed of a heat preservation chamber body (20), a circulating fan (21) and a heat exchange device (22).
7. The automated suspended transport fluorescence infiltration detection apparatus of claim 1, wherein: the observation station (24) consists of a chamber body (25), a belt conveyor (26) and a black light lamp (27).
8. The automated suspended transport fluorescence infiltration detection apparatus of claim 1, wherein: the automatic control system (28) comprises a human-computer interface touch screen (43), a control button (42), an indicator lamp (45), a control center (46) and a digital display temperature controller (44).
9. The automated suspended transport fluorescence infiltration detection apparatus of claim 1, wherein: the degreasing station (7) and the first dropping station (15) are provided with crawling ladders (41).
CN201821666750.2U 2018-10-15 2018-10-15 Automatic suspension conveying type fluorescence penetration detection equipment Active CN212483399U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821666750.2U CN212483399U (en) 2018-10-15 2018-10-15 Automatic suspension conveying type fluorescence penetration detection equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821666750.2U CN212483399U (en) 2018-10-15 2018-10-15 Automatic suspension conveying type fluorescence penetration detection equipment

Publications (1)

Publication Number Publication Date
CN212483399U true CN212483399U (en) 2021-02-05

Family

ID=74414145

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821666750.2U Active CN212483399U (en) 2018-10-15 2018-10-15 Automatic suspension conveying type fluorescence penetration detection equipment

Country Status (1)

Country Link
CN (1) CN212483399U (en)

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