CN210982505U - OBC area carries ageing platform of repayment water-cooling with loading storehouse - Google Patents

OBC area carries ageing platform of repayment water-cooling with loading storehouse Download PDF

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CN210982505U
CN210982505U CN201921592706.6U CN201921592706U CN210982505U CN 210982505 U CN210982505 U CN 210982505U CN 201921592706 U CN201921592706 U CN 201921592706U CN 210982505 U CN210982505 U CN 210982505U
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loading
ageing
spout
fixture block
obc
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CN201921592706.6U
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谭志豪
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Shenzhen E Agilent Technology Co ltd
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Shenzhen E Agilent Technology Co ltd
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Abstract

The utility model discloses an OBC area carries repayment water-cooling ageing platform with loading storehouse, including ageing room, automatically controlled cabinet, hydrologic cycle cabinet, ageing room has been seted up to ageing room inside, the baffle is separated into a plurality of No. two loading storehouses with ageing room, the baffle is close to ageing room door mouth one side integrated into one piece and has a spout, one side integrated into one piece that ageing room door mouth was kept away from to the baffle has No. two spouts, equal shaping has No. two spouts and a spout one on every baffle, a plurality of spacing holes have all been seted up on the inner wall of a spout and No. two spouts, be provided with the polylith between two adjacent baffles and load the board, load the board and load the storehouse with No. two and separate into a plurality of loading storehouses. This application is through loading the setting of board for ageing room both can separate into a plurality of storehouses that load side by side No. two, also can separate into a plurality of spaces and load the storehouse relatively less one number, and then make the space size that loads the storehouse adjust according to actual need, improved the practicality in ageing room greatly.

Description

OBC area carries ageing platform of repayment water-cooling with loading storehouse
Technical Field
The utility model relates to an aging testing technical field, in particular to OBC area carries repayment water-cooling ageing platform with loading storehouse.
Background
At present, before an electronic product leaves a factory, an aging test is required, that is, the electronic product to be tested is placed in an aging room and runs for a period of time at a certain temperature, so that the environmental influence possibly suffered by the electronic product to be tested in the use process is simulated, and the stability of the product is tested. One or more loading bins are usually provided in the existing aging rooms to place the electronic products to be tested.
At present, in the technical field of electronic product aging, an OBC loaded feedback water-cooling aging platform is generally adopted to perform aging test on electronic products, but the conventional OBC loaded feedback water-cooling aging platform is generally only provided with one or more loading bins with fixed space sizes, and is difficult to adapt to the aging test of electronic products with different specifications.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an OBC area carries ageing platform of repayment water-cooling and uses loading storehouse, can effectively solve the problem in the background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an OBC area carries ageing platform of repayment water-cooling and is used loading storehouse, includes ageing room, automatically controlled cabinet, hydrologic cycle cabinet, ageing room has inside to have seted up ageing room, the inside of ageing room is vertical to be fixed with the polylith baffle, the baffle is separated into a plurality of No. two loading storehouses with ageing room, the baffle is close to ageing room door one side integrated into one piece and has a spout, one side integrated into one piece that ageing room door was kept away from to the baffle has No. two spouts, every equal shaping has No. two spouts and a spout one on the baffle, all seted up a plurality of spacing holes on the inner wall of a spout and No. two spouts, adjacent two be provided with the polylith between the baffle and load the board, load the board and load the storehouse with No. two and separate into a plurality of loading storehouses.
Preferably, the loading plate is provided with an extension block at one end close to the first sliding groove, the extension block is provided with a first sliding block at one end, and the loading plate is provided with a second sliding block at one end close to the second sliding groove.
Preferably, the first sliding block is matched with the first sliding groove, the second sliding block is matched with the second sliding groove, the tail ends of the first sliding block and the second sliding block are respectively fixed with a limiting cylinder, the limiting cylinders are matched with the limiting holes, and the limiting cylinders are connected with the first sliding block or the second sliding block in an integrated forming or welding mode.
Preferably, the groove body depth of the first sliding groove is greater than or equal to the thickness of the first sliding block plus the length of the limiting cylinder, and the groove body depth of the second sliding groove is greater than or equal to the thickness of the second sliding block plus the length of the limiting cylinder.
Preferably, the bottom of each second loading bin of the aging chamber is provided with a clamping block, the lower end of each clamping block is located inside a clamping block groove, the clamping block groove is formed in the inner wall of the bottom of the aging chamber, a spring is arranged inside each clamping block groove, the upper end of each spring is welded to the bottom of each clamping block, and the lower end of each spring is welded to the bottom of each clamping block groove.
Preferably, when the spring is in a natural extension state, the fixture block protrudes out of the second loading bin of the aging chamber, and when the spring is in a contraction state, the fixture block is completely accommodated in the fixture block groove.
Preferably, a pressing plate is fixed to the bottom of the clamping block in an integrally formed or welded mode, one end of the pressing plate extends to the outside of the pressing plate groove, and the pressing plate groove is formed below the door opening of the aging chamber.
Compared with the prior art, the utility model discloses following beneficial effect has:
1) this kind of ageing platform of OBC area load repayment water-cooling is with loading storehouse, through loading the setting of board for ageing room both can separate into a plurality of No. two loading storehouses that parallel, also can separate into a plurality of spaces and load the storehouse No. one less relatively, and then make the space size of loading the storehouse adjust according to actual need, can adapt to the ageing of the electronic product of multiple specification, improved the practicality in ageing room greatly.
2) Through the setting in spacing cylinder and spacing hole, utilize spacing cylinder card in spacing downthehole, can realize loading the fixed of board to made things convenient for loading the regulation of board, and then can change the space size that loads the storehouse No. one, simple structure is ingenious moreover, loads the regulation convenient and fast of board.
3) Through the setting of fixture block, when the relatively great No. two loading storehouses in usage space age, can be directly with the ageing rack propulsion No. two loading storehouses of placing electronic product, at this moment, the fixture block can carry on spacingly to the ageing rack, avoids placing the in-process of ageing rack, and the ageing rack is because of receiving the gate roll-off of ageing chamber, and then causes the landing or the personnel's of electronic product bruise because of the influence of external force factors such as collision.
Drawings
Fig. 1 is a front view of a loading bin for an OBC on-board feedback water-cooling aging platform according to the present invention;
fig. 2 is a schematic perspective view of a loading bin for an OBC on-board feedback water-cooled aging platform according to the present invention;
fig. 3 is a schematic view of the installation of a loading plate of a loading bin for an OBC on-board feedback water-cooled aging platform according to the present invention;
fig. 4 is a sectional view of a first chute of a loading bin for an OBC on-board feedback water-cooled aging platform according to the present invention;
fig. 5 is a schematic view of a loading plate of a loading bin for an OBC on-board feedback water-cooled aging platform according to the present invention;
fig. 6 is the utility model relates to an OBC area carries ageing platform of repayment water-cooling and is with fixture block installation schematic diagram who loads the storehouse.
In the figure: 1. an aging room; 2. a first loading bin; 3. an electric control cabinet; 4. a water circulation cabinet; 5. an aging chamber; 6. a second loading bin; 7. a partition plate; 8. a loading plate; 9. a first chute; 10. a second chute; 11. a first sliding block; 12. a limiting cylinder; 13. a limiting hole; 14. an extension block; 15. a second sliding block; 16. a clamping block; 17. pressing a plate; 18. a platen slot; 19. a block slot; 20. a spring.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
Referring to fig. 1-3, an OBC area carries repayment water-cooling ageing platform with loading storehouse, including ageing room 1, automatically controlled cabinet 3, hydrologic cycle cabinet 4, ageing room 5 has been seted up to ageing room 1 inside, ageing room 5's inside is vertical to be fixed with polylith baffle 7, baffle 7 separates ageing room 5 into a plurality of No. two and loads storehouse 6, baffle 7 is close to ageing room 5 gate one side integrated into one piece and has a spout 9, one side integrated into one piece that ageing room 5 gate was kept away from to baffle 7 has No. two spouts 10, equal shaping has No. two spouts 10 and a spout 9 on every baffle 7, all seted up a plurality of spacing holes 13 on the inner wall of a spout 9 and No. two spouts 10, be provided with polylith between two adjacent baffles 7 and load board 8, load board 8 with No. two load storehouse 6 and separate into a plurality of loading storehouse 2.
Through adopting above-mentioned technical scheme, through the setting of loading board 8 for ageing room 5 both can separate into a plurality of No. two side by side and load storehouse 6, also can separate into a relatively less No. one in a plurality of spaces and load storehouse 2, and then makes the space size that loads the storehouse adjust according to actual need, can adapt to the ageing of the electronic product of multiple specification, has improved ageing room 1's practicality greatly.
Specifically, when the electronic product specification is relatively large or the aging rack needs to be used for placing the electronic product, all the loading plates 8 are moved upwards to the top of the second loading bin 6, and then the aging rack placed with the electronic product is pushed into the second loading bin 6; when the specification of electronic products is relatively small and the electronic products do not need to be placed on the aging rack, the height of the loading plate 8 can be adjusted, so that the second loading bin 6 is divided into a plurality of first loading bins 2 with relatively small spaces, and the electronic products can be placed in the first loading bins 2 for aging test.
Referring to fig. 5, an extension block 14 is integrally formed at one end of the loading plate 8 close to the first sliding groove 9, a first sliding block 11 is integrally formed on the extension block 14, and a second sliding block 15 is integrally formed at one end of the loading plate 8 close to the second sliding groove 10.
Referring to fig. 3, a first sliding block 11 is matched with a first sliding groove 9, a second sliding block 15 is matched with a second sliding groove 10, the tail ends of the first sliding block 11 and the second sliding block 15 are respectively fixed with a limiting cylinder 12, the limiting cylinders 12 are matched with limiting holes 13, and the limiting cylinders 12 are connected with the first sliding block 11 or the second sliding block 15 in an integrated forming or welding mode.
Referring to fig. 4, the groove depth of the first sliding groove 9 is greater than or equal to the thickness of the first sliding block 11 plus the length of the limiting cylinder 12, and the groove depth of the second sliding groove 10 is greater than or equal to the thickness of the second sliding block 15 plus the length of the limiting cylinder 12.
Through adopting above-mentioned technical scheme, through the setting of spacing cylinder 12 and spacing hole 13, utilize spacing cylinder 12 card in spacing hole 13, can realize loading plate 8 fixed to made things convenient for loading plate 8's regulation, and then can change the space size of loading storehouse 2 No. one, simple structure is ingenious moreover, loading plate 8's regulation convenient and fast.
Specifically, when the height of the loading plate 8 needs to be adjusted to change the space size of the loading bin, the loading plate 8 is pulled outwards, so that the limiting cylinder 12 is separated from the limiting hole 13, at the moment, the loading plate 8 can move up and down along the first sliding groove 9 and the second sliding groove 10, when the loading plate 8 moves to a proper position, the transferring plate is pushed inwards, so that the limiting cylinder 12 is clamped in the limiting hole 13, and the loading plate 8 is fixed.
Referring to fig. 2 and 6, a fixture block 16 is arranged at the bottom of each second loading bin 6 of the aging chamber 5, the lower end of the fixture block 16 is located inside a fixture block groove 19, the fixture block groove 19 is formed in the inner wall of the bottom of the aging chamber 5, a spring 20 is arranged inside the fixture block groove 19, the upper end of the spring 20 is welded at the bottom of the fixture block 16, and the lower end of the spring 20 is welded at the bottom of the fixture block groove 19.
Referring to fig. 2 and 6, when the spring 20 is in a natural extension state, the latch 16 protrudes from the second loading chamber 6 of the aging chamber 5, and when the spring 20 is in a contraction state, the latch 16 is completely received in the latch groove 19.
Referring to fig. 2 and 6, a pressing plate 17 is fixed to the bottom of the latch 16 by integral molding or welding, one end of the pressing plate 17 extends to the outside of a pressing plate groove 18, and the pressing plate groove 18 is opened below the doorway of the aging chamber 5.
Through adopting above-mentioned technical scheme, through fixture block 16's setting, when loading storehouse 6 and ageing in the relatively great No. two in usage space, can directly advance No. two and load storehouse 6 with the ageing rack that places electronic product, at this moment, fixture block 16 can carry on spacingly to the ageing rack, avoids placing the in-process of ageing rack, and the ageing rack is because of receiving the gate roll-off of ageing chamber 5 of influence of external force factors such as collision, and then causes the landing of electronic product or personnel's bruise.
Specifically, when the aging rack is required to be used for placing electronic products, the loading plate 8 is moved to the top of the second loading bin 6, then the aging rack with the pulleys is pushed into the second loading bin 6, the bottom of the aging rack extrudes the fixture block 16 at the moment, the fixture block 16 is extruded and shrinks towards the inside of the fixture block groove 19, when the aging rack is completely pushed into the second loading bin 6, the fixture block 16 is not extruded any more, at the moment, the fixture block 16 protrudes upwards under the action of the spring 20, so that the aging rack can be limited, and the aging rack is prevented from slipping out of a door of the aging chamber 5 due to the influence of external factors such as collision and the like; after the aging test of the electronic product is finished, the pressing plate 17 is pressed down, so that the fixture block 16 is contracted in the fixture block groove 19 and is separated from the limitation of the aging rack, and the aging rack can be pulled out from the second loading bin 6 at the moment.
Finally, it should be noted that: it should be understood that the above examples are only for clearly illustrating the present invention and are not intended to limit the embodiments. Other variations and modifications will be apparent to persons skilled in the art in light of the above description. And are neither required nor exhaustive of all embodiments. And obvious changes and modifications may be made without departing from the scope of the present invention.

Claims (7)

1. The utility model provides an OBC area carries ageing platform of repayment water-cooling and uses loading storehouse, includes ageing room (1), automatically controlled cabinet (3), hydrologic cycle cabinet (4), ageing room (5) have been seted up to ageing room (1) inside, the inside vertical polylith baffle (7) that is fixed with of ageing room (5), baffle (7) separate into a plurality of No. two loading storehouses (6) with ageing room (5), its characterized in that: baffle (7) are close to ageing chamber (5) gate one side integrated into one piece and have spout (9) No. one, one side integrated into one piece that ageing chamber (5) gate was kept away from in baffle (7) has spout (10) No. two, every equal shaping has spout (10) No. two and spout (9) one on baffle (7), all seted up a plurality of spacing holes (13) on the inner wall of spout (9) and No. two spout (10), adjacent two be provided with polylith loading plate (8) between baffle (7), loading plate (8) will load No. two storehouse (6) and separate into a plurality of loading storehouse (2) No. one.
2. The loading bin for the OBC on-board feedback water-cooled aging platform of claim 1, wherein: load board (8) and be close to one end integrated into one piece of a spout (9) and have extension piece (14), integrated into one piece has slider (11) No. one on extension piece (14), load board (8) and be close to the one end integrated into one piece of No. two spouts (10) and have slider (15) No. two.
3. The loading bin for the OBC on-board feedback water-cooled aging platform of claim 2, wherein: a slider (11) and a spout (9) looks adaptation, No. two slider (15) and No. two spout (10) looks adaptations, a slider (11) and No. two slider (15) end all are fixed with spacing cylinder (12), spacing cylinder (12) and spacing hole (13) looks adaptation, spacing cylinder (12) are connected with a slider (11) or No. two slider (15) through integrated into one piece or welded mode.
4. The loading bin for the OBC on-board feedback water-cooled aging platform of claim 3, wherein: the groove body depth of the first sliding groove (9) is larger than or equal to the thickness of the first sliding block (11) plus the length of the limiting cylinder (12), and the groove body depth of the second sliding groove (10) is larger than or equal to the thickness of the second sliding block (15) plus the length of the limiting cylinder (12).
5. The loading bin for the OBC on-board feedback water-cooled aging platform of claim 1, wherein: the bottom of every second loading bin (6) of ageing chamber (5) all is provided with fixture block (16), fixture block (16) lower extreme is located the inside of fixture block groove (19), fixture block groove (19) are seted up on ageing chamber (5) bottom inner wall, the inside of fixture block groove (19) is provided with spring (20), the upper end welding of spring (20) is in fixture block (16) bottom, the lower extreme welding of spring (20) is in the bottom of fixture block groove (19).
6. The loading bin for the OBC on-board feedback water-cooled aging platform of claim 5, wherein: when the spring (20) is in a natural extension state, the fixture block (16) protrudes out of the second loading bin (6) of the aging chamber (5), and when the spring (20) is in a contraction state, the fixture block (16) is completely accommodated in the fixture block groove (19).
7. The loading bin for the OBC on-board feedback water-cooled aging platform of claim 6, wherein: the bottom of the clamping block (16) is fixedly provided with a pressing plate (17) in an integrated forming or welding mode, one end of the pressing plate (17) extends to the outside of a pressing plate groove (18), and the pressing plate groove (18) is formed below a door opening of the aging chamber (5).
CN201921592706.6U 2019-09-20 2019-09-20 OBC area carries ageing platform of repayment water-cooling with loading storehouse Active CN210982505U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921592706.6U CN210982505U (en) 2019-09-20 2019-09-20 OBC area carries ageing platform of repayment water-cooling with loading storehouse

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921592706.6U CN210982505U (en) 2019-09-20 2019-09-20 OBC area carries ageing platform of repayment water-cooling with loading storehouse

Publications (1)

Publication Number Publication Date
CN210982505U true CN210982505U (en) 2020-07-10

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