CN219288594U - Oil draining and cooling device - Google Patents

Oil draining and cooling device Download PDF

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Publication number
CN219288594U
CN219288594U CN202223040379.8U CN202223040379U CN219288594U CN 219288594 U CN219288594 U CN 219288594U CN 202223040379 U CN202223040379 U CN 202223040379U CN 219288594 U CN219288594 U CN 219288594U
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China
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tray
oil draining
layer
oil
cooling device
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CN202223040379.8U
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Chinese (zh)
Inventor
方福德
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Hubei Zhongwang Industry & Trade Co ltd
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Hubei Zhongwang Industry & Trade Co ltd
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Abstract

The utility model discloses an oil draining and cooling device, and belongs to the technical field of food processing. Comprises a discharging conveyer belt arranged along the left-right direction, a plurality of trays capable of being stacked up and down and N oil draining units arranged side by side left and right; the oil draining unit is arranged along the front-back direction, the rear part of the oil draining unit is arranged below the discharging conveyor belt, and the rear end of the oil draining unit extends backwards for L1 distance relative to the discharging conveyor belt; the oil draining unit comprises a rack, a tray layer, a filter screen layer and an oil receiving groove, wherein the tray layer, the filter screen layer and the oil receiving groove are arranged up and down in parallel, the front part of the tray layer is inclined upwards to form an inclined section, a plurality of tray stacks are arranged on the tray layer in parallel front and back, the tray stacks can slide on the tray layer in front and back and are formed by a plurality of layers of trays which are stacked up and down, a plurality of filter screens are arranged on the filter screen layer in parallel front and back, the filter screens can slide on the filter screen layer in front and back, and the length of the inclined section is L2; the length of the tray is L3, and both L1 and L2 are larger than L3; the tray at the rear end of the tray layer is manually taken out and is arranged on the discharging conveyor belt in a single layer.

Description

Oil draining and cooling device
Technical Field
The utility model belongs to the technical field of food processing, and particularly relates to an oil draining and cooling device.
Background
The fried dough twist is a special fried wheaten food snack in China, which can be prepared by frying in a fryer. Cooling and draining oil after frying, and finally packaging to obtain the product. The twist is typically placed side-by-side in a plurality of rectangular cells of a tray when frying. The patent with the application number of CN200720083709.8 discloses a fried food hanging basket, which is divided into two sides by taking a hanging rod as a center, each side consists of a chassis and a plurality of tray covers, a space for placing fried food trays is arranged below the tray covers, one side of each tray cover is provided with a supporting rod for supporting the tray covers to rotate and lift, the upper end of each supporting rod is connected with each layer of tray cover through a rotating connecting piece, and the lower end of each supporting rod is sleeved with a sliding rod arranged at one side of the chassis through a rotating sleeve; each rotating sleeve is also connected with the pull rod respectively. One end of the lifting slide bar is connected with the main vertical rod, and the other end is lapped on the top end of the auxiliary vertical rod and is connected with a hinge of a cylinder piston on the auxiliary vertical rod. The front edge of the uppermost tray cover is pressed with two buckling pieces, the buckling pieces are arranged on the rotating handle, and the rotating handle is fixed on the chassis. The fried food trays correspond to the trays of CN 02228873.2.
After fried, the fried dough twist is required to be cooled and drained, and then the fried dough twist is sent to packaging equipment for packaging. In the prior art, the fried trays are stacked up and down, and are taken out by an operator and placed on an oil draining rack for oil draining and cooling, and are manually sent to a conveying belt for outputting after a period of time. The oil drain rack is typically a multi-layered structure, with at least one tray being placed on each layer and an oil pan being positioned directly below it. The patent of application number CN202022699072.3 discloses a food frying processing cooling oil draining device, including support and storage bucket, the lower bolster is installed to the support lower extreme inboard, the slide is installed to support upper end one side, the carriage is installed to storage bucket upside, the carriage both sides slip card is established in the slide, install the oil collecting bucket on the support of storage bucket downside, the cooling frame of blowing is installed to support one side.
The foregoing structure has the following problems:
(1) The oil draining rack is positioned near the frying pan, which may cause inconvenient frying operation, and also cause higher nearby temperature and severe production environment;
(2) The fried dough twists of only a few trays can be fried in each time, and under the normal condition, after the fried dough twists are collected for a plurality of times by the oil draining rack, the fried dough twists are transported outwards, so that the working efficiency is lower.
Disclosure of Invention
In order to solve the problems, the embodiment of the utility model provides an oil draining and cooling device which can drain oil from tray stacks output by a plurality of frying pans at the same time and uniformly output the oil after the oil is drained; the oil draining unit is far away from the frying pan and continuously outputs the tray after oil draining. The technical scheme is as follows:
the embodiment of the utility model provides an oil draining and cooling device, which comprises a discharging conveyor belt 1, a plurality of trays 2 and N oil draining units 3, wherein the discharging conveyor belt 1 is arranged along the left-right direction, the trays 2 can be vertically stacked, and the N oil draining units 3 are arranged side by side left and right; the oil draining unit 3 is arranged along the front-back direction, the rear part of the oil draining unit is arranged below the discharging conveyor belt 1, and the rear end of the oil draining unit extends backwards by a distance L1 relative to the discharging conveyor belt 1; the oil draining unit 3 comprises a rack 4, a tray layer 5, a filter screen layer 6 and an oil receiving groove 7, wherein the tray layer 5, the filter screen layer 6 and the oil receiving groove 7 are arranged side by side up and down, the front part of the tray layer 5 is inclined upwards to form an inclined section 8, a plurality of tray stacks are arranged side by side on the tray layer, the tray stacks can slide front and back on the tray layer 5 and are formed by a plurality of layers of trays 2 stacked up and down, a plurality of filter screens 9 are arranged side by side on the filter screen layer 6 front and back, the filter screens 9 can slide front and back on the filter screen layer 6, the length of the inclined section 8 is L2, and oil drained from the tray 2 can fall into the filter screens 9 downwards; the length of the tray 2 is L3, and both L1 and L2 are larger than L3; the tray 2 at the rear end of the tray layer 5 is manually taken out and is arranged on the discharging conveyor belt 1 in a single layer.
The tray layer 5 in the embodiment of the utility model comprises two upper channel steels which are oppositely arranged left and right, the upper channel steels are arranged on the frame 4 along the front and rear directions, the left and right sides of the tray stack are respectively positioned on the adjacent inner sides of the vertical arms of the upper channel steels on the corresponding sides, and the left and right ends of the bottom of the tray stack are respectively arranged on the horizontal arms of the upper channel steels on the corresponding sides in a sliding manner.
Preferably, the rear end of the tray layer 5 in the embodiment of the present utility model is provided with a blocking structure, the blocking structure includes two upright posts 10, a rotating rod 11 arranged between the two upright posts 10 and along the left-right direction, a blocking frame 13 on the blocking rod 12 and the rotating rod 11, the two upright posts 10 are arranged side by side left and right and are respectively arranged on the two upper channel steels, the left-right ends of the rotating rod 11 are respectively rotatably arranged at the upper ends of the two upright posts 10, and the blocking rod 12 is positioned below the rotating rod 11 and above the tray stack; the blocking frame 13 is disposed in the left-right direction, and has its upper end fixed to the rotating lever 11 and its lower end located right behind the pallet stack to block rearward movement of the pallet stack, and its rear side abutting against the front side of the bar 12, and is rotatable forward about the rotating lever 11.
Specifically, the tray stack in the embodiment of the utility model is composed of two layers of trays 2, and the length of the tray layer 5 is more than or equal to 5m.
The tray 2 in the embodiment of the utility model includes a tray body 21 disposed in a front-back direction, a plurality of storage grids in the tray body 21 and arranged in a rectangular array, and a round bar 22 at the rear end of the top of the tray body 21, wherein the round bar 22 is disposed in a left-right direction, the front ends of the trays 2 on adjacent upper layers are propped against the round bar 22, a plurality of through holes are uniformly distributed at the bottom of the tray body 21, and a plurality of notches 23 are disposed at the front end of the bottom of the tray body.
Specifically, in the embodiment of the present utility model, the number of the notches 23 is three, and the three notches 23 are respectively located at the left and right ends and the middle of the front end of the disc-shaped body 21.
The filter screen layer 6 in the embodiment of the utility model comprises two lower channel steels which are oppositely arranged left and right, the lower channel steels are arranged on the frame 4 along the front and rear directions, the left and right sides of the filter screen 9 are respectively positioned on the adjacent inner sides of the vertical arms of the lower channel steels on the corresponding sides, and the left and right ends of the bottom of the filter screen layer are respectively arranged on the horizontal arms of the lower channel steels on the corresponding sides in a sliding manner.
Specifically, the filter screen 9 in the embodiment of the utility model comprises a rectangular frame and a steel wire mesh thereon, wherein the length of the filter screen 9 is 0.6-1.2m, the steel wire mesh is a square-hole steel wire mesh, and the side length of the hole is smaller than 1cm.
The oil receiving groove 7 in the embodiment of the utility model is a rectangular groove arranged along the front-back direction.
Preferably, N limit rods 14 are arranged side by side above and left and right of the discharging conveyor belt 1 in the embodiment of the utility model, and each oil draining unit 3 is correspondingly provided with one limit rod 14; the limiting rod 14 is positioned at one side of the discharging end, close to the discharging conveyor belt 1, of the corresponding oil draining unit 3, and is arranged along the front-back direction, and a gap between the limiting rod and the discharging conveyor belt 1 can only allow a single-layer tray 2 to pass through.
The technical scheme provided by the embodiment of the utility model has the beneficial effects that: the embodiment of the utility model provides an oil draining and cooling device, which can drain oil from tray stacks output by a plurality of fryers at the same time (air cooling is adopted at the same time), and uniformly output the oil after the oil draining is finished; the oil is collected in one oil receiving groove by adopting tiled oil draining units, so that the treatment is easy; the oil draining unit is far away from the frying pan, and continuously outputs the trays after oil draining (sequentially outputs according to the order of discharging the oil from the frying pan, so that the oil draining time after each time of discharging the oil from the frying pan is guaranteed to be almost the same, and the working efficiency is higher).
Drawings
FIG. 1 is a schematic diagram of a draining and cooling device according to an embodiment of the utility model;
FIG. 2 is a schematic structural view of a pallet;
fig. 3 is a schematic structural view of a blocking structure.
In the figure: a discharging conveying belt 1, a tray 2, an oil draining unit 3, a frame 4, a tray 5 layer, a filter screen layer 6, an oil receiving groove 7, an inclined section 8, a filter screen 9, a vertical rod 10, a rotating rod 11, a blocking rod 12, a blocking frame 13 and a limiting rod 14;
21 a disc-shaped body, 22 a round rod and 23 a notch.
Detailed Description
The present utility model will be described in further detail with reference to the accompanying drawings, for the purpose of making the objects, technical solutions and advantages of the present utility model more apparent.
Example 1
Referring to fig. 1-3, an embodiment of the present utility model provides an oil draining and cooling device, which includes an outfeed conveyor belt 1, N oil draining units 3, and a plurality of trays 2, etc. Wherein, the discharging conveyer belt 1 is arranged along the left-right direction and used for a single-layer output tray 2. The tray 2 is used to hold the twist and to fry in a fryer. The N oil draining units 3 are used for draining and cooling the fried trays and the fried dough twists, and each frying pot is provided with one or two oil draining units 3. The tray 2 is generally rectangular in shape, and can be stacked up and down. The N oil draining units 3 are arranged side by side left and right, and an operator is correspondingly arranged at the rear part of each oil draining unit 3 to transfer the tray 2 from the oil draining unit 3 to the discharging conveying belt 1.
Wherein the oil draining unit 3 is arranged in the front-rear direction, the rear part of the oil draining unit is arranged below the discharging conveyor belt 1, and the rear end of the oil draining unit extends backwards by L1 distance relative to the discharging conveyor belt 1 so as to facilitate the operator to take out the tray 2. The oil draining unit 3 comprises a frame 4, a tray layer 5, a filter screen layer 6, an oil receiving groove 7 and the like which are arranged side by side up and down, wherein the oil receiving groove 7 is positioned right below the filter screen layer 6, and the filter screen layer 6 is positioned on the tray layer 5. The front part of the pallet layer 5 is inclined upwards to form an inclined section 8 on which a plurality of pallet stacks are arranged side by side in front of and behind. The inclined section 8 can be used for placing a pallet stack, and the pallet stack on the inclined section is pushed backwards by an operator, so that a plurality of pallet stacks are pushed to integrally move backwards, and the final pallet stack is guaranteed to be behind the discharging conveyor belt 1. The stack of trays can slide back and forth on the tray layer 5, which is made up of multiple layers (specifically, 2-4 layers) of trays 2 stacked one above the other. The rear end of the pallet layer 5 is provided with a blocking structure for blocking the rearward movement of the pallet stack. The filter screen layer 6 is provided with a plurality of filter screens 9 in parallel, and the filter screens 9 are used for blocking sundries (such as fragments) falling from the tray layer 5 from downwards passing through. The filter screen 9 can slide back and forth on the filter screen layer 6, and the filter screen 9 can be taken down on the filter screen layer 6; the filter screen 9 is replaced or cleaned, a clean filter screen 9 is added at one end, the filter screen 9 is pushed integrally, and the dirty filter screen 9 is taken out from the other end. The inclined section 8 has a length L2 and the oil drained from the tray 2 can fall down to the screen 9 and the oil receiving groove 7 can receive the oil drained from the tray layer 5. The length of the pallet 2 is L3, and both L1 and L2 are greater than L3. The tray stack is manually pushed backwards by the tray stack at the forefront end, and the tray 2 at the rear end of the tray layer 5 is manually taken out and placed on the discharging conveying belt 1 in a single layer.
The tray layer 5 in the embodiment of the utility model comprises two upper channel steels which are oppositely arranged left and right, wherein the upper channel steels comprise vertical arms which are vertically arranged and horizontal arms which are arranged at the inner side of the lower end of the vertical arms. The front part of the upper channel steel is bent upwards to form an inclined section 8. The upper channel steel is arranged on the frame 4 along the front and back directions, the left and right sides of the tray stack are respectively positioned on the adjacent inner sides of the vertical arms of the upper channel steel on the corresponding side, and the left and right ends of the bottom of the tray stack are respectively arranged on the horizontal arms of the upper channel steel on the corresponding side in a sliding manner.
Referring to fig. 3, the blocking structure in the embodiment of the present utility model includes two upright rods 10, a rotating rod 11, a blocking rod 12, a blocking frame 13, and the like. The two vertical rods 10 are arranged side by side left and right and are respectively arranged on the two upper channel steel and are respectively positioned at the left side and the right side of the tray stack. The upright 10 is vertically arranged. The rotating rod 11, the stop rod 12 and the blocking frame 13 are all arranged along the left-right direction, and the rotating rod 11 is arranged between the two vertical rods 10 and is rotationally connected with the vertical rods 10. The two ends of the bar 12 are fixed in the middle of the corresponding side uprights 10, respectively, which are located below the bar 11 and above the stack. The blocking frame 13 is a rectangular frame disposed in the left-right direction, and has its upper end fixed to the rotating lever 11, its lower end (located adjacent above the tray layer 5) located right behind the tray stack to block rearward movement of the tray stack, and its rear side abutting against the front side of the bar 12, and capable of rotating forward about the rotating lever 11 (rotating forward to above the tray stack to allow rearward passage of the tray stack).
Specifically, the tray stack in the embodiment of the utility model is composed of two layers of trays 2, and the length of the tray layer 5 is more than or equal to 5m so as to ensure the oil draining effect.
Referring to fig. 2, the tray 2 in the embodiment of the present utility model includes a disc-shaped body 21, a plurality of storage compartments arranged in a rectangular array in the disc-shaped body 21, a round bar 22 at the rear end of the top of the disc-shaped body 21, and the like. The disc-shaped body 21 is a disc-shaped structure arranged along the front-back direction, and can be specifically a stainless steel disc, a plurality of through holes (specifically strip-shaped holes) are uniformly distributed at the bottom of the disc-shaped body, and a plurality of notches 23 (which are convenient for hooks to pull the tray stack backwards) are arranged at the front end of the bottom of the disc-shaped body. The storage grid can be used for placing a plurality of twist pieces side by side. The round bars 22 are arranged in the left-right direction, and can block the backward movement of the upper trays 2 to ensure the overall backward movement of the tray stack. When stacking the trays 2, the front ends of the trays 2 of the adjacent upper layer are abutted against the round bars 22. The number of the notches 23 is three, and the three notches 23 are respectively positioned at the left end, the right end and the middle part of the front end of the disc-shaped body 21. Specifically, the notch 23 is a rectangular notch.
The filter screen layer 6 in the embodiment of the utility model comprises two lower channel steels which are oppositely arranged left and right, and the upper channel steel comprises a vertical arm which is vertically arranged and a horizontal arm which is arranged at the inner side of the lower end of the vertical arm and is horizontally arranged. The lower channel steel is arranged on the frame 4 along the front and back directions, the left and right sides of the filter screen 9 are respectively positioned on the adjacent inner sides of the vertical arms of the lower channel steel on the corresponding side, and the left and right ends of the bottom of the lower channel steel are respectively arranged on the horizontal arms of the lower channel steel on the corresponding side in a sliding manner.
Specifically, the filter screen 9 in the embodiment of the present utility model includes a rectangular frame and a steel wire mesh thereon, four sides of which are respectively fixed on four frame edges of the rectangular frame. A supporting beam can be arranged on the rectangular frame and positioned at the lower side of the steel wire mesh. The length of the filter screen 9 is 0.6-1.2m so as to be convenient to take out, the steel wire mesh is square-hole steel wire mesh, and the side length of the hole is smaller than 1cm.
The oil receiving groove 7 in the embodiment of the utility model is a rectangular groove arranged along the front-back direction.
Preferably, referring to fig. 1, N limit rods 14 are arranged side by side above and right and left the discharging conveyor belt 1 in the embodiment of the present utility model, and each oil draining unit 3 is correspondingly provided with one limit rod 14. The limiting rod 14 is positioned on one side of the discharging end, close to the discharging conveyor belt 1, of the corresponding oil draining unit 3, and is arranged along the front-back direction, and a gap between the limiting rod and the discharging conveyor belt 1 can only allow a single-layer tray 2 to pass through.
Example 2
Example 2 provides a draining and cooling device with a length of 1m for trays 2, 4 draining units 3 and a length of 6m for each of L1 and L2, the stack of trays consisting of two layers of trays 2.
The foregoing description of the preferred embodiments of the utility model is not intended to limit the utility model to the precise form disclosed, and any such modifications, equivalents, and alternatives falling within the spirit and scope of the utility model are intended to be included within the scope of the utility model.

Claims (10)

1. The oil draining and cooling device comprises a discharging conveyer belt (1) and a plurality of trays (2) which can be vertically stacked, wherein the discharging conveyer belt is arranged along the left-right direction; the novel oil draining device is characterized by also comprising N oil draining units (3) which are arranged side by side left and right; the oil draining unit (3) is arranged along the front-back direction, the rear part of the oil draining unit is arranged below the discharging conveyor belt (1), and the rear end of the oil draining unit extends backwards for L1 distance relative to the discharging conveyor belt (1); the oil draining unit (3) comprises a rack (4) and a tray layer (5), a filter screen layer (6) and an oil receiving groove (7) which are arranged up and down in parallel, wherein the front part of the tray layer (5) is inclined upwards to form an inclined section (8) and a plurality of tray stacks are arranged on the tray layer in parallel front and back, the tray stacks can slide on the tray layer (5) front and back and are formed by a plurality of layers of trays (2) which are stacked up and down, a plurality of filter screens (9) are arranged on the filter screen layer (6) in parallel front and back, the filter screens (9) can slide on the filter screen layer (6) front and back, the length of the inclined section (8) is L2, and oil drained by the trays (2) can fall into the filter screens (9) downwards; the length of the tray (2) is L3, and both L1 and L2 are larger than L3; the tray (2) at the rear end of the tray layer (5) is manually taken out and is arranged on the discharging conveyor belt (1) in a single layer.
2. The oil draining and cooling device according to claim 1, wherein the tray layer (5) comprises two upper channel steels which are oppositely arranged left and right, the upper channel steels are arranged on the rack (4) along the front and back directions, the left and right sides of the tray stack are respectively positioned on the adjacent inner sides of the vertical arms of the upper channel steels on the corresponding sides, and the left and right ends of the bottom of the tray stack are respectively arranged on the horizontal arms of the upper channel steels on the corresponding sides in a sliding manner.
3. The oil draining and cooling device according to claim 2, wherein the rear end of the tray layer (5) is provided with a blocking structure, the blocking structure comprises two upright posts (10), a rotating rod (11) arranged between the two upright posts (10) and along the left-right direction, a blocking frame (13) arranged on the blocking rod (12) and the rotating rod (11), the two upright posts (10) are arranged side by side left and right and are respectively arranged on two upper channel steel, the left end and the right end of the rotating rod (11) are respectively rotatably arranged at the upper ends of the two upright posts (10), and the blocking rod (12) is positioned below the rotating rod (11) and above the tray stack; the blocking frame (13) is arranged along the left and right directions, the upper end of the blocking frame is fixed on the rotating rod (11), the lower end of the blocking frame is positioned right behind the tray stack to block the tray stack from moving backwards, the rear side of the blocking frame abuts against the front side of the stop rod (12), and the blocking frame can rotate forwards around the rotating rod (11).
4. The oil draining and cooling device according to claim 1, characterized in that the stack of trays consists of two layers of trays (2), the length of the tray layers (5) being equal to or greater than 5m.
5. The oil draining and cooling device according to claim 1, wherein the tray (2) comprises a tray-shaped body (21) arranged along the front and back directions, a plurality of storage grids arranged in the tray-shaped body (21) in a rectangular array, and round rods (22) at the rear end of the top of the tray-shaped body (21), the round rods (22) are arranged along the left and right directions, the front ends of the trays (2) adjacent to the upper layer are propped against the round rods (22), a plurality of through holes are uniformly distributed at the bottom of the tray-shaped body (21), and a plurality of gaps (23) are formed at the front end of the bottom of the tray-shaped body.
6. The oil draining and cooling device according to claim 5, wherein the number of the notches (23) is three, and the three notches (23) are respectively positioned at the left end, the right end and the middle of the front end of the disc-shaped body (21).
7. The oil draining and cooling device according to claim 1, wherein the filter screen layer (6) comprises two lower channel steels which are oppositely arranged left and right, the lower channel steels are arranged on the frame (4) along the front and back directions, the left and right sides of the filter screen (9) are respectively positioned on the adjacent inner sides of the vertical arms of the lower channel steels on the corresponding sides, and the left and right ends of the bottom of the filter screen layer are respectively arranged on the horizontal arms of the lower channel steels on the corresponding sides in a sliding manner.
8. The oil draining and cooling device according to claim 1, characterized in that the screen (9) comprises a rectangular frame and a steel wire mesh thereon, the length of the screen (9) is 0.6-1.2m, the steel wire mesh is a square-hole steel wire mesh and the side length of the hole is less than 1cm.
9. The oil draining and cooling device according to claim 1, characterized in that the oil receiving groove (7) is a rectangular groove arranged in the front-rear direction.
10. The oil draining and cooling device according to claim 1, wherein N limiting rods (14) are arranged above the discharging conveyor belt (1) side by side left and right, and each oil draining unit (3) is correspondingly provided with one limiting rod (14); the limiting rod (14) is positioned on one side of the discharging end, close to the discharging conveying belt (1), of the corresponding oil draining unit (3), and is arranged along the front-back direction, and a gap between the limiting rod and the discharging conveying belt (1) can only allow a single-layer tray (2) to pass through.
CN202223040379.8U 2022-11-16 2022-11-16 Oil draining and cooling device Active CN219288594U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223040379.8U CN219288594U (en) 2022-11-16 2022-11-16 Oil draining and cooling device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223040379.8U CN219288594U (en) 2022-11-16 2022-11-16 Oil draining and cooling device

Publications (1)

Publication Number Publication Date
CN219288594U true CN219288594U (en) 2023-07-04

Family

ID=86985851

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223040379.8U Active CN219288594U (en) 2022-11-16 2022-11-16 Oil draining and cooling device

Country Status (1)

Country Link
CN (1) CN219288594U (en)

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