CN209862209U - Novel instant freezer for food processing - Google Patents

Novel instant freezer for food processing Download PDF

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Publication number
CN209862209U
CN209862209U CN201821857502.6U CN201821857502U CN209862209U CN 209862209 U CN209862209 U CN 209862209U CN 201821857502 U CN201821857502 U CN 201821857502U CN 209862209 U CN209862209 U CN 209862209U
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China
Prior art keywords
box
welded
conveying
hopper
sealing
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CN201821857502.6U
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Chinese (zh)
Inventor
姚彦斌
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Jiangxi Guobao Special Attack Food Co Ltd
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Jiangxi Guobao Special Attack Food Co Ltd
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Priority to CN201821857502.6U priority Critical patent/CN209862209U/en
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Abstract

The utility model provides a novel instant freezer for food processing, which comprises a cooling box, an anti-skid edge, a working shell, a shell cavity, an observation window, a conveying hopper, a hopper cavity, a refrigerator, a push handle, a buffering conveying wiping plate structure, a buffering conveying connecting cylinder structure, a movable sealing connecting plate structure, a working plate door, a grasping handle and a fixing bolt, wherein the anti-skid edge is respectively glued on the left side and the right side of the lower surface of the cooling box; the working shell is welded on the upper surface of the cooling box and is internally provided with a shell cavity; the observation window is embedded in the left side of the interior of the working shell; the conveying hopper is welded at the upper end of the working shell and is internally provided with a hopper cavity. The utility model has the advantages that: through the setting of buffering transport dry plate structure, the convenient moisture of collecting the food outer wall upper portion through the foam-rubber cushion that passes through, also convenient messenger's food is carried simultaneously, and then convenient messenger's moisture whereabouts is collected in collecting the box.

Description

Novel instant freezer for food processing
Technical Field
The utility model belongs to the technical field of food processing, especially, relate to a novel food processing use frozen machine.
Background
The quick-frozen food is processed by quick low temperature (below minus 18 ℃), water and juice in food tissues can not be lost, and microorganisms basically can not breed at the low temperature, so that the safety of the food is ensured, and the prior art adopts the technical scheme that the food quick-freezing device disclosed as Chinese patent publication No. 201720820759.3: the device comprises a pre-cooling box and a quick-freezing box, wherein openings are symmetrically arranged on two sides of the pre-cooling box, supporting seats are arranged on two sides of the pre-cooling box, rolling wheels are movably mounted at the tops of the supporting seats, conveying belts are sleeved on the two rolling wheels and penetrate through the openings, a supporting frame is mounted at the upper inner part of the pre-cooling box, a heat dissipation fan is mounted at one side of the supporting frame, a lifting device is mounted in the middle of the supporting frame, a mounting plate is fixed at the lower end of the lifting device, a baffle is hinged to one side of the bottom of the mounting plate, a spring is fixed at the top of the baffle, the upper end of the spring is fixed at the bottom of the mounting plate, a cooling fan is mounted at one side of the supporting frame, which is far away from the heat dissipation fan, a supporting rod, a refrigerator is fixed on the inner wall of the heat preservation box, a box door is hinged to one side, close to the inclined plate, of the heat preservation box, a push rod motor is fixed on the inner side of the box door, and the other end of the push rod motor is hinged to the inner top of the heat preservation box.
However, the conventional instant freezer has problems in that it does not have a function of collecting a large amount of moisture on the outer wall of the food, is too fast in lowering speed and is easily damaged, and does not have a function of sealing.
Therefore, it is necessary to invent a novel instant freezer for food processing.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a novel instant freezer for food processing to solve current instant freezer and do not possess the function of collecting a large amount of moisture on the food outer wall, the decline speed is too fast and receive easily and damage and do not possess the problem of playing sealed function. A novel instant freezer for food processing comprises a cooling box, anti-skid edges, a working shell, a shell cavity, an observation window, a conveying hopper, a bucket cavity, a refrigerator, a push handle, a buffer conveying wiping plate structure, a buffer conveying connecting cylinder structure, a movable sealing connecting plate structure, a working plate door, a grasping handle and a fixing bolt, wherein the anti-skid edges are respectively glued on the left side and the right side of the lower surface of the cooling box; the working shell is welded on the upper surface of the cooling box and is internally provided with a shell cavity; the observation window is embedded in the left side of the interior of the working shell; the conveying hopper is welded at the upper end of the working shell, and a hopper cavity is formed in the conveying hopper; the refrigerator bolt is arranged at the right upper part of the inner wall of the cooling box; the pushing handle is welded at the left upper part of the cooling box; the buffer conveying wiping-dry plate structures are respectively arranged on the left side and the right side of the inner wall of the hopper cavity; the buffer conveying connecting cylinder structure is arranged at the lower end of the conveying hopper; the movable sealing connecting plate structures are respectively arranged on the left side and the right side of the hopper cavity; the working plate door hinge is arranged at the left lower part of the cooling box; the gripping handle is welded at the left upper part of the working plate door; the fixing bolt is respectively in threaded connection with the working plate door and the cooling box; the buffer conveying wiping-drying plate structure comprises an inclined box, a sponge pad, a clamping edge, a collecting box, a pulling rod and a grasping column, wherein the inclined box is welded on the left side and the right side of the inner wall of the bucket cavity respectively; the spongy cushion is placed in the inclined box; the clamping edge is welded at the left end of the inclined box; the collecting box penetrates through the working shell and is arranged at the lower end of the inclined box; the pulling rod is welded at the right end of the collecting box, and meanwhile, a gripping column is welded at the right end of the pulling rod.
Preferably, the structure of the buffer conveying connecting cylinder comprises a communicating ring, a buffer cylinder, a lower connecting ring, an upper connecting edge, an upper elastic rope, a lower connecting edge and a lower elastic rope, wherein the communicating ring is welded on the lower surface of the conveying hopper; the buffer cylinder is glued to the lower surface of the communicating ring; the lower connecting ring is glued at the lower end of the buffer cylinder; the upper connecting edge and the lower connecting edge are respectively sewn on the upper side and the lower side of the outer wall of the buffer cylinder; the upper elastic rope and the lower elastic rope are respectively sleeved on the upper side and the lower side of the outer wall of the buffering cylinder.
Preferably, the movable sealing connecting plate structure comprises a sealing plate, a sealing gasket, a connecting spring, a supporting edge, a conveying edge and a connecting shaft, and the sealing plate is respectively fixed on the left side and the right side of the hopper cavity; the sealing pad is glued on the lower surface of the sealing plate; the supporting edges are respectively welded on the left side and the right side of the upper part of the inner wall of the hopper cavity; the conveying edge is welded on the upper surface of the sealing plate; the connecting shafts are respectively welded on the right sides of the front surface and the rear surface of the sealing plate and are respectively inserted in the left side and the right side of the upper part of the inner wall of the hopper cavity.
Preferably, the lower part of the inner wall of the inclined box is provided with a through hole and is communicated with the collecting box, and the sponge cushion in the inclined box inclines towards the inner side of the hopper cavity.
Preferably, the clamping edge is L-shaped, and the inner side of the clamping edge corresponds to the collecting box.
Preferably, the upper end of the collecting box is communicated with the inclined box, and the collecting box is a stainless steel box.
Preferably, the upper elastic rope and the lower elastic rope on the outer wall of the buffer cylinder are elastic ropes respectively.
Preferably, the upper end and the lower end of the communicating ring are respectively communicated with the hopper cavity and the buffer barrel.
Preferably, the upper connecting edge and the lower connecting edge respectively adopt canvas edges, and the inner sides of the upper connecting edge and the lower connecting edge are spliced with an upper elastic rope and a lower elastic rope.
Preferably, the number of the sealing plates is two, and the sealing gasket at the lower part of the sealing plate adopts a rubber gasket to conveniently seal the upper part of the inner wall of the hopper cavity.
Preferably, the lower end of the connecting spring is welded on the upper surface of the supporting edge; the upper end of the connecting spring penetrates through the sealing gasket and is welded with the right side of the lower surface of the sealing plate.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses in, the lower part of slope box inner wall seted up the through-hole, and with collect the box intercommunication, the inside foam-rubber cushion of slope box to the inboard slope in fill chamber, the convenient moisture of collecting the food outer wall upper portion through the foam-rubber cushion, the messenger food that also convenient simultaneously is carried, and then the convenient messenger moisture whereabouts is collected in collecting the box.
2. The utility model discloses in, the card limit set up to the L type, the card limit inboard correspond with the collection box, be favorable to more reasonable supplementary collection box to support, and convenient use.
3. The utility model discloses in, collection box upper end and slope box intercommunication, the collection box adopt the stainless steel box, the convenient moisture on collecting the food through collecting the box, and the moisture that convenient processing was collected.
4. The utility model discloses in, the buffer cylinder outer wall on last bungee and the bungee adopts the bungee respectively down, when food process bungee and bungee down, can play the effect of buffering, and avoid article falling speed too fast to cause the problem of damage.
5. The utility model discloses in, the intercommunication ring about both ends communicate with fill chamber and buffer cylinder respectively, be favorable to more reasonable transport food, also convenient use simultaneously.
6. The utility model discloses in, last connection limit and lower connection limit adopt canvas limit respectively, last connection limit and lower connection limit inboard peg graft and have bungee cord and bungee cord down, be favorable to convenient playing the effect of protection to last bungee cord and bungee cord down, can also play fixed effect simultaneously.
7. The utility model discloses in, the closing plate be provided with two, the sealed pad of closing plate lower part adopt the rubber pad, the upper portion of convenient sealed fighting intracavity wall is favorable to having avoided making a large amount of air conditioning distribute out easily, and has reduced the power consumption of this frozen machine, and then has played sealed effect.
8. In the utility model, the lower end of the connecting spring is welded on the upper surface of the supporting edge; the upper end of the connecting spring penetrates through the sealing gasket and is welded with the right side of the lower surface of the sealing plate, so that the sealing plate can conveniently reset, and the sealing plate is convenient to use.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of the structure of the buffer conveying wiping plate of the present invention.
Fig. 3 is a schematic structural view of the buffer conveying connecting cylinder structure of the present invention.
Fig. 4 is a schematic structural diagram of the movable sealing connection plate structure of the present invention.
In the figure:
1. a cooling tank; 2. anti-skid edges; 3. a working shell; 4. a shell cavity; 5. an observation window; 6. a conveying hopper; 7. a hopper cavity; 8. a refrigerator; 9. pushing the handle; 10. a buffer conveying wiping plate structure; 101. a tilt box; 102. a sponge cushion; 103. edge clamping; 104. a collection box; 105. pulling a rod; 106. a gripping post; 11. a buffer delivery connecting cylinder structure; 111. a communication ring; 112. a buffer cylinder; 113. a lower connecting ring; 114. an upper connecting edge; 115. an elastic rope is arranged; 116. a lower connecting edge; 117. a lower elastic rope; 12. a movable sealing connecting plate structure; 121. a sealing plate; 122. a gasket; 123. a connecting spring; 124. a support edge; 125. conveying edges; 126. a connecting shaft; 13. a work plate door; 14. a grip handle; 15. and (5) fixing the bolt.
Detailed Description
The invention is further described below with reference to the accompanying drawings:
example (b):
as shown in the attached drawings 1 and 2, a novel instant freezer for food processing comprises a cooling box 1, an anti-skid edge 2, a working shell 3, a shell cavity 4, an observation window 5, a conveying hopper 6, a hopper cavity 7, a refrigerator 8, a pushing handle 9, a buffering conveying wiping plate structure 10, a buffering conveying connecting cylinder structure 11, a movable sealing connecting plate structure 12, a working plate door 13, a grasping handle 14 and a fixing bolt 15, wherein the anti-skid edge 2 is respectively glued on the left side and the right side of the lower surface of the cooling box 1; the working shell 3 is welded on the upper surface of the cooling box 1, and a shell cavity 4 is formed in the working shell; the observation window 5 is embedded in the left side of the interior of the working shell 3; the conveying hopper 6 is welded at the upper end of the working shell 3, and a hopper cavity 7 is formed in the conveying hopper; the refrigerator 8 is mounted on the right upper part of the inner wall of the cooling box 1 through a bolt; the push handle 9 is welded at the left upper part of the cooling box 1; the buffer conveying wiping-dry plate structures 10 are respectively arranged on the left side and the right side of the inner wall of the hopper cavity 7; the buffer conveying connecting cylinder structure 11 is arranged at the lower end of the conveying hopper 6; the movable sealing connecting plate structures 12 are respectively arranged at the left side and the right side of the hopper cavity 7; the working plate door 13 is hinged and arranged at the left lower part of the cooling box 1; the gripping handle 14 is welded at the upper left part of the working plate door 13; the working plate door 13 is conveniently driven to open and close; the fixing bolt 15 is respectively in threaded connection with the working plate door 13 and the cooling box 1; the buffer conveying and drying plate structure 10 comprises an inclined box 101, a sponge pad 102, a clamping edge 103, a collecting box 104, a pulling rod 105 and a grasping column 106, wherein the inclined box 101 is respectively welded on the left side and the right side of the inner wall of the hopper cavity 7; the sponge cushion 102 is placed inside the inclined box 101; the clamping edge 103 is welded at the left end of the inclined box 101; the clamping edge 103 is L-shaped, the inner side of the clamping edge 103 corresponds to the collecting box 104, so that the more reasonable auxiliary collecting box 104 is supported, and the use is convenient; the collecting box 104 penetrates through the working shell 3 and is arranged at the lower end of the inclined box 101; the pulling rod 105 is welded at the right end of the collecting box 104, and meanwhile, the gripping column 106 is welded at the right end of the pulling rod 105; convenient to grasp and easy to pull and disassemble the collecting box 104.
As shown in fig. 3, in the above embodiment, specifically, the buffer conveying connecting cylinder structure 11 includes a communicating ring 111, a buffer cylinder 112, a lower connecting ring 113, an upper connecting edge 114, an upper elastic cord 115, a lower connecting edge 116 and a lower elastic cord 117, the communicating ring 111 is welded on the lower surface of the conveying bucket 6; the upper end and the lower end of the communicating ring 111 are respectively communicated with the hopper cavity 7 and the buffer cylinder 112, so that more reasonable food conveying is facilitated, and the communicating ring is convenient to use; the buffer cylinder 112 is glued on the lower surface of the communication ring 111; the lower connecting ring 113 is glued to the lower end of the buffer cylinder 112; the upper connecting edge 114 and the lower connecting edge 116 are respectively sewn on the upper side and the lower side of the outer wall of the buffer cylinder 112; the upper elastic rope 115 and the lower elastic rope 117 are respectively sleeved on the upper side and the lower side of the outer wall of the buffer cylinder 112.
As shown in fig. 4, in the above embodiment, specifically, the movable sealing connecting plate structure 12 includes sealing plates 121, sealing gaskets 122, connecting springs 123, supporting edges 124, conveying edges 125 and connecting shafts 126, where the sealing plates 121 are respectively fixed on the left and right sides of the hopper cavity 7; the sealing gasket 122 is adhered to the lower surface of the sealing plate 121. The sealing effect can be increased; the supporting edges 124 are respectively welded at the left side and the right side of the upper part of the inner wall of the hopper cavity 7; the conveying edge 125 is welded on the upper surface of the sealing plate 121; the conveying edge 125 is arranged in a right triangle, so that the food can conveniently slide and can be prevented from sliding off the sealing plate 121; the connecting shafts 126 are respectively welded to the right sides of the front and rear surfaces of the sealing plate 121 and are respectively inserted into the left and right sides of the upper portion of the inner wall of the hopper chamber 7.
In the above embodiment, specifically, the lower part of the inner wall of the inclined box 101 is provided with a through hole and is communicated with the collection box 104, the sponge pad 102 inside the inclined box 101 inclines towards the inner side of the hopper cavity 7, moisture on the upper part of the outer wall of the food is conveniently collected through the sponge pad 102, meanwhile, the food is conveniently conveyed, and then the moisture falls into the collection box 104 for collection.
In the above embodiment, specifically, the upper end of the collecting box 104 is communicated with the inclined box 101, and the collecting box 104 is a stainless steel box, so that moisture on food can be conveniently collected by the collecting box 104, and the collected moisture can be conveniently processed.
In the above embodiment, specifically, the upper elastic cord 115 and the lower elastic cord 117 on the outer wall of the buffer cylinder 112 are elastic cords respectively, so that when food passes through the upper elastic cord 115 and the lower elastic cord 117, a buffering effect can be achieved, and the problem that the food is too fast in descending speed and damaged is avoided.
In the above embodiment, specifically, the upper connecting edge 114 and the lower connecting edge 116 are canvas edges, and the inner sides of the upper connecting edge 114 and the lower connecting edge 116 are plugged with the upper elastic rope 115 and the lower elastic rope 117, so that the upper elastic rope 115 and the lower elastic rope 117 can be protected conveniently, and meanwhile, a fixing effect can be achieved.
In the above embodiment, specifically, the two sealing plates 121 are arranged, and the sealing gasket 122 at the lower part of the sealing plate 121 adopts a rubber gasket to conveniently seal the upper part of the inner wall of the hopper cavity 7, so that the phenomenon that a large amount of cold air is easily emitted is avoided, the energy consumption of the instant freezer is reduced, and a sealing effect is achieved.
In the above embodiment, specifically, the lower end of the connecting spring 123 is welded on the upper surface of the supporting edge 124; the upper end of the connecting spring 123 penetrates through the sealing gasket 122 and is welded with the right side of the lower surface of the sealing plate 121, so that the sealing plate 121 can conveniently reset and can be conveniently used.
Principle of operation
The utility model discloses a theory of operation: when the food cooling device is used, food falls from the upper end of the hopper cavity 7, when the food reaches the conveying edge 125, the food slides to the inner side, the sealing plate 121 inclines and rotates towards the inside of the hopper cavity 7, then the food enters the upper part of the hopper cavity 7, then the food falls onto the sponge mat 102 of the inclined box 101, when the food reaches the sponge mat 102, most of moisture on the outer wall of the food is absorbed along with the food, when water is absorbed, the moisture in the sponge mat 102 falls into the collecting box 104 along with the moisture, the food subjected to preliminary dehydration slides down along with the food through the inclined angle of the sponge mat 102, then the food passes through the communicating ring 111 and enters the buffer cylinder 112, the falling speed can be buffered, and finally the food enters the cooling box 1 from the buffer cylinder 112 and simultaneously is cooled by the refrigerator 8.
Utilize technical scheme, or technical personnel in the field are in the utility model discloses under technical scheme's the inspiration, design similar technical scheme, and reach above-mentioned technological effect, all fall into the utility model discloses a protection scope.

Claims (10)

1. The novel quick freezer for food processing is characterized by comprising a cooling box (1), an anti-slip edge (2), a working shell (3), a shell cavity (4), an observation window (5), a conveying hopper (6), a hopper cavity (7), a refrigerator (8), a pushing handle (9), a buffering conveying wiping plate structure (10), a buffering conveying connecting cylinder structure (11), a movable sealing connecting plate structure (12), a working plate door (13), a grasping handle (14) and a fixing bolt (15), wherein the anti-slip edge (2) is respectively glued on the left side and the right side of the lower surface of the cooling box (1); the working shell (3) is welded on the upper surface of the cooling box (1) and is internally provided with a shell cavity (4); the observation window (5) is embedded in the left side of the interior of the working shell (3); the conveying hopper (6) is welded at the upper end of the working shell (3) and is internally provided with a hopper cavity (7); the refrigerator (8) is arranged at the right upper part of the inner wall of the cooling box (1) through a bolt; the push handle (9) is welded at the left upper part of the cooling box (1); the buffer conveying wiping-dry plate structures (10) are respectively arranged at the left side and the right side of the inner wall of the hopper cavity (7); the buffer conveying connecting cylinder structure (11) is arranged at the lower end of the conveying hopper (6); the movable sealing connecting plate structures (12) are respectively arranged at the left side and the right side of the hopper cavity (7); the working plate door (13) is hinged at the left lower part of the cooling box (1); the gripping handle (14) is welded at the left upper part of the working plate door (13); the fixing bolt (15) is respectively in threaded connection with the working plate door (13) and the cooling box (1); the buffer conveying and drying plate structure (10) comprises an inclined box (101), a sponge pad (102), a clamping edge (103), a collecting box (104), a pulling rod (105) and a gripping column (106), wherein the inclined box (101) is welded on the left side and the right side of the inner wall of the hopper cavity (7) respectively; the sponge cushion (102) is placed inside the inclined box (101); the clamping edge (103) is welded at the left end of the inclined box (101); the collecting box (104) penetrates through the working shell (3) and is arranged at the lower end of the inclined box (101); the pulling rod (105) is welded at the right end of the collecting box (104), and meanwhile, the right end of the pulling rod (105) is welded with the gripping column (106).
2. A novel instant freezer for food processing as claimed in claim 1 wherein said buffer transfer connecting cylinder structure (11) comprises a communicating ring (111), a buffer cylinder (112), a lower connecting ring (113), an upper connecting edge (114), an upper elastic cord (115), a lower connecting edge (116) and a lower elastic cord (117), said communicating ring (111) being welded to the lower surface of the transfer bucket (6); the buffer cylinder (112) is glued to the lower surface of the communication ring (111); the lower connecting ring (113) is glued at the lower end of the buffer cylinder (112); the upper connecting edge (114) and the lower connecting edge (116) are respectively sewn on the upper side and the lower side of the outer wall of the buffer cylinder (112); the upper elastic rope (115) and the lower elastic rope (117) are respectively sleeved on the upper side and the lower side of the outer wall of the buffer cylinder (112).
3. The novel instant freezer for food processing as claimed in claim 1, characterized in that the movable sealing connecting plate structure (12) comprises sealing plates (121), sealing gaskets (122), connecting springs (123), supporting edges (124), conveying edges (125) and connecting shafts (126), wherein the sealing plates (121) are respectively fixed at the left and right sides of the hopper cavity (7); the sealing gasket (122) is glued on the lower surface of the sealing plate (121); the supporting edges (124) are respectively welded at the left side and the right side of the upper part of the inner wall of the hopper cavity (7); the conveying edge (125) is welded on the upper surface of the sealing plate (121); the connecting shafts (126) are respectively welded on the right sides of the front surface and the rear surface of the sealing plate (121) and are respectively inserted into the left side and the right side of the upper part of the inner wall of the hopper cavity (7).
4. A novel freezer as claimed in claim 1, characterised in that the lower part of the inner wall of the inclined box (101) is provided with a through hole and is connected to the collecting box (104), and the sponge mat (102) inside the inclined box (101) is inclined towards the inner side of the chamber (7).
5. A novel freezer for food processing as claimed in claim 1 characterised in that the said snap (103) is L-shaped and the inside of the said snap (103) corresponds to the said collection box (104).
6. A novel instant freezer for food processing as claimed in claim 1, characterised in that the upper end of the collecting box (104) is connected to the inclined box (101), and the collecting box (104) is a stainless steel box.
7. A novel instant freezer for food processing as claimed in claim 2 wherein the upper elastic cord (115) and the lower elastic cord (117) on the outer wall of the buffer tube (112) are elastic cords, respectively.
8. A novel instant freezer for food processing as claimed in claim 2 wherein the upper and lower ends of the communicating ring (111) are connected to the hopper chamber (7) and the buffer tube (112) respectively.
9. A novel instant freezer for food processing as claimed in claim 3, characterized in that there are two sealing plates (121), and the lower sealing gasket (122) of the sealing plate (121) is rubber gasket to seal the upper part of the inner wall of the bucket cavity (7).
10. A novel instant freezer for food processing as claimed in claim 3 wherein the lower end of the connecting spring (123) is welded to the upper surface of the support rim (124); the upper end of the connecting spring (123) penetrates through the sealing gasket (122) and is welded with the right side of the lower surface of the sealing plate (121).
CN201821857502.6U 2018-11-13 2018-11-13 Novel instant freezer for food processing Active CN209862209U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821857502.6U CN209862209U (en) 2018-11-13 2018-11-13 Novel instant freezer for food processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821857502.6U CN209862209U (en) 2018-11-13 2018-11-13 Novel instant freezer for food processing

Publications (1)

Publication Number Publication Date
CN209862209U true CN209862209U (en) 2019-12-31

Family

ID=68944802

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821857502.6U Active CN209862209U (en) 2018-11-13 2018-11-13 Novel instant freezer for food processing

Country Status (1)

Country Link
CN (1) CN209862209U (en)

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