Shell structure of compact snow melting machine
By placing the condenser copper tube elbow and end plate vertically on the upper and lower sides of the condenser in the snow melt machine, and combining fixed components and enclosure components to form an overall structure, the problem of traditional snow melt machine occupying a lot of land and poor structural integrity in the family scene is solved, and compact design and aesthetics are achieved.
Patent Information
- Application Number
- CN202422225410.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-05-07
- Filing Date
- 2024-09-10
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-09-10
AI Technical Summary
The huge size and industrial appearance of traditional commercial snow melt machines have caused them to occupy a large area in the home scene, are difficult to move, and have poor structural integrity, which cannot meet the needs of home users.
The housing structure of a compact snow melt machine is adopted, including fixing components, enclosure components and refrigeration components. The condenser copper tube elbow and end plate are vertically placed on the upper and lower sides of the condenser. The fixing components include a fixing frame and a chassis. The enclosure components surround the vertical plates around the chassis to form an overall structure, reducing the space occupied and improving aesthetics.
The width of the snow melt machine is reduced, the space occupied is reduced, the integrity of the structure and appearance is improved, and the needs of the family use are met.
Smart Images

Figure CN223050267U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of smoothie machines, in particular to a housing structure of a compact snow melting machine. Background Art
[0002] In the current household appliance market, with the increasing demand of consumers for space optimization and aesthetics, the design of traditional commercial snow melting machines gradually shows the problem of incomplete fit with the home application scenario. Especially, its large volume and industrial appearance limit its popularization in the home scenario. Commercial snow melting machines (also called smoothie machines) usually are provided with condensers for discharging the heat released by liquid freezing. The condensers usually are provided with copper pipe elbows and end plates. The copper pipe elbows are connected between two copper pipes, and the end plates are used to fix the copper pipe elbows and the condensers themselves. Most commercial devices such as refrigerators usually fix the condensers in a horizontal arrangement, that is, the copper pipe elbows and the end plates are arranged on the left and right sides of the condenser. Commercial snow melting machines also adopt this structural layout to fix the condensers. However, when the copper pipe elbows and the end plates are placed on the left and right sides of the condenser, it is necessary to reserve space for accommodating the copper pipe elbows on the left and right sides of the box body. In order to facilitate the installation of the end plates, a certain installation distance also needs to be reserved. Therefore, such a structural layout will make the width of the left and right sides of the snow melting machine wider, occupying more horizontal space. If a commercial snow melting machine is directly used in the home scenario, problems such as more floor space occupation and difficult handling and use will inevitably occur. Moreover, the box body structure of the existing commercial smoothie machines is relatively industrialized, with strong fragmentation, and cannot meet the requirements of household users for the integrity of the structure. Summary of the Utility Model
[0003] The technical problem to be solved by the utility model is to provide a housing structure of a compact snow melting machine, which can reduce the width, reduce the floor space, and has strong integrity of the structure, and can meet the needs of the home scenario.
[0004] To solve the above technical problem, the utility model provides a housing structure of a compact snow melting machine, including a fixing component, an enclosing plate component, a stirring component, and a refrigeration component. The fixing component includes a chassis and a first fixing frame and a second fixing frame arranged on the chassis. The enclosing plate component includes a front vertical plate, a rear vertical plate, a first side vertical plate, and a second side vertical plate surrounding the chassis. The stirring component includes a support frame and a stirring mechanism arranged on the support frame. The first fixing frame and the second fixing frame are respectively located at the front and rear ends of the bottom of the support frame and are fixedly connected to the support frame. The stirring mechanism includes a driving motor and a scraper. The refrigeration component includes an evaporator, and the evaporator is arranged on the support frame. The driving motor passes through the evaporator and is connected to the scraper.
[0005] The refrigeration assembly further includes a condenser, and the fixing assembly further includes a fixing frame. An air duct hole is provided in the fixing frame. The condenser includes a copper tube elbow and end plates. The copper tube elbow and the end plates are both arranged on the upper and lower sides of the condenser. The end plates are fixed to the fixing frame, and the fixing frame is fixed to the second fixing bracket.
[0006] As an improvement of the above solution, the side portions of the first side vertical plate and the second side vertical plate are connected to each other and are respectively fixed to both sides of the chassis. The front ends of the first side vertical plate and the second side vertical plate jointly support the front vertical plate, and the rear ends of the first side vertical plate and the second side vertical plate jointly support the rear vertical plate.
[0007] As an improvement of the above solution, the chassis includes a front mounting portion and a rear mounting portion. A front mounting groove is provided in the front mounting portion, and a front mounting hole is provided in the front mounting groove. A rear mounting groove is provided in the rear mounting portion, and a rear mounting hole is provided in the rear mounting groove. First vertical rods are provided on both sides of the first fixing bracket, and second vertical rods are provided on both sides of the second fixing bracket. The bottom of the first vertical rod can be inserted into the front mounting groove and fixed in the front mounting hole, and the bottom of the second vertical rod can be inserted into the rear mounting groove and fixed in the rear mounting hole.
[0008] As an improvement of the above solution, fixing vertical plates are provided on both sides of the fixing frame. A fixing convex plate is provided on the front side of the fixing vertical plate. The fixing convex plate protrudes towards the side close to the second fixing bracket. A frame fixing hole and a frame limit buckle are provided on the fixing convex plate. A column hole and a frame limit hole are provided on the second column. The position of the column hole corresponds to the position of the frame fixing hole, and the frame limit buckle can be buckled into the frame limit hole.
[0009] A supporting convex plate is further provided on the second vertical rod. The supporting convex plate protrudes from the surface of the second vertical rod, and the supporting convex plate can abut against the bottom of the fixing convex plate.
[0010] As an improvement of the above solution, the fixing frame further includes a frame plate and side baffles. The side baffles are arranged on the left and right sides of the frame plate and extend away from the fixing convex plate. The side baffles enclose a heat dissipation channel. The air duct hole is provided on the frame plate and is located in the heat dissipation channel. Condensation fixing plates are provided on both the upper and lower sides of the frame plate. The end plates are fixed to the condensation fixing plates. Fan fixing holes and fan limit posts are provided on the side of the frame plate away from the condenser. The refrigeration assembly further includes a heat dissipation fan. The heat dissipation fan can be inserted into the fan limit posts and fixed to the fan fixing holes.
[0011] As an improvement of the above solution, a supporting flange is provided at the edge of the chassis. The supporting flange protrudes from the outer side wall of the chassis. Supporting platforms are provided at the inner bottoms of the first side vertical plate and the second side vertical plate. Bottom fixing holes are provided on the supporting platforms. The bottom of the supporting flange can abut against the supporting platforms, and the chassis can be fixed in the bottom fixing holes.
[0012] As an improvement of the above solution, a first vertical plate supporting part is provided on the inner side of the first side vertical plate. The first vertical plate supporting part protrudes towards the second side vertical plate. A vertically arranged first connection hole is provided on the first vertical plate supporting part. A second vertical plate supporting part is provided on the inner side of the second side vertical plate. The second vertical plate supporting part protrudes towards the first side vertical plate. A vertically arranged second connection hole is provided on the second vertical plate supporting part. The positions of the first connection hole and the second connection hole correspond to each other.
[0013] A horizontally arranged side limiting hole and a vertically arranged first side fixing hole are further provided in the first vertical plate supporting part. A horizontally arranged side limiting convex block is further provided in the second vertical plate supporting part. A vertically penetrating second side fixing hole is provided on the side limiting convex block. The side limiting convex block can be inserted into the side limiting hole. The positions of the first side fixing hole and the second side fixing hole correspond to each other.
[0014] As an improvement of the above solution, the refrigeration assembly further includes a throttle tube and a return air pipe. The compressor is communicated with the inlet of the condenser. The condenser is communicated with the evaporator through the throttle tube. The evaporator is communicated with the compressor through the return air pipe. The throttle tube is distributed along the return air pipe. The middle section of the throttle tube is wound and fixed to the middle section of the return air pipe.
[0015] Heat dissipation holes are provided at the bottom of the support frame. The heat dissipation holes are located below the drive motor. Both the return air pipe and the throttle tube pass downward through the heat dissipation holes from one end of the evaporator.
[0016] As an improvement of the above solution, the housing structure of the compact snow melter further includes a discharging assembly. The discharging assembly includes a material storage cover and a discharging cylinder. The material storage cover can be inserted into the support frame and surround the evaporator and the scraper. The material storage cover is communicated with the discharging cylinder. The discharging cylinder is vertically arranged. A bracket is further provided below the discharging cylinder. A front connection hook is provided on one side of the bracket. Front connection grooves are provided on the front sides of the first vertical plate supporting part and the second vertical plate supporting part. The front connection hook can be inserted into the front connection groove. The bracket is used to support a container for loading ice sand.
[0017] As an improvement to the above solution, hanging part connection holes are further provided on the sides of the first side vertical plate and / or the second side vertical plate. The enclosure assembly further includes a suspension part. One side of the suspension part is provided with a hanging plate, and the other side is provided with a connecting convex block. The connecting convex block protrudes from the hanging plate and can be inserted into the hanging part connection hole. The bottom of the bracket is provided with a slot, and the notch of the slot faces downward. The connecting convex block can be inserted into the slot.
[0018] As an improvement to the above solution, the width range of the condenser is A, where 130 ≤ A ≤ 180 mm.
[0019] The present utility model also discloses a snow melter, which includes the housing structure of the compact snow melter as described above.
[0020] Implementing the present utility model has the following beneficial effects:
[0021] The housing structure of the compact snow melter of the present utility model is provided with a fixing assembly and an enclosure assembly. The refrigeration assembly in the snow melter includes a condenser. The fixing assembly includes a fixing frame, and heat dissipation holes are provided in the fixing frame. The condenser includes a copper tube elbow and an end plate. The copper tube elbow and the end plate are both arranged on the upper and lower sides of the condenser. The end plate is fixed to the fixing frame. Therefore, the condenser adopts a vertical arrangement. Placing the copper tube elbow and the end plate on the upper and lower sides of the condenser can save the space on the left and right sides of the condenser, and there is no need to increase the space for accommodating the copper tube elbow and the space for fixing the end plate on the left and right sides. Therefore, the overall width can be reduced, and the floor space can be reduced. Moreover, the fixing assembly includes a chassis, and the enclosure assembly includes a front vertical plate, a rear vertical plate, a first side vertical plate, and a second side vertical plate surrounding the chassis. The sides of the first side vertical plate and the second side vertical plate are connected to form a whole and are connected to the chassis. The first side vertical plate and the second side vertical plate can form an overall appearance with the front vertical plate and the rear vertical plate, thereby improving the integrity and aesthetics of the box body in terms of structure and appearance, and meeting the user's requirements for usability and aesthetics. Description of the Drawings
[0022] Figure 1 is the first split structural schematic diagram of the housing structure of the compact snow melter of the present utility model;
[0023] Figure 2 is the second split structural schematic diagram of the housing structure of the compact snow melter of the present utility model;
[0024] Figure 3 is the third split structural schematic diagram of the housing structure of the compact snow melter of the present utility model;
[0025] Figure 4It is a schematic diagram of the split structure of the first side vertical plate and the second side vertical plate of the present utility model;
[0026] Figure 5 It is a schematic diagram of the installation structure of the throttle pipe, the return air pipe and the support frame of the present utility model;
[0027] Figure 6 It is a schematic diagram of the fourth split structure of the housing structure of the compact snow melting machine of the present utility model;
[0028] Figure 7 is Figure 6 The partial enlarged view of A in Specific embodiments
[0029] To make the objectives, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the drawings. It is hereby declared that the upper, lower, left, right, front, rear, inner, outer and other orientation terms that appear or will appear in the text of the present utility model are only based on the drawings of the present utility model, and they do not specifically limit the present utility model.
[0030] See Figure 1 and Figure 2, an embodiment of the present utility model discloses a housing structure of a compact snow melter, including a fixing component 1, a surrounding plate component 2, a stirring component 3 and a refrigeration component 4. The fixing component 1 includes a chassis 11 and a first fixing frame 12 and a second fixing frame 13 arranged on the chassis 11. The first fixing frame 12 and the second fixing frame 13 are respectively arranged at the front and rear ends of the chassis 11. The surrounding plate component 2 includes a front vertical plate (not shown in the drawing), a rear vertical plate 22, a first side vertical plate 23 and a second side vertical plate 24 surrounding the chassis 11. The first side vertical plate 23 and the second side vertical plate 24 are respectively arranged on the left and right sides of the chassis 11. The front vertical plate, the rear vertical plate 22, the first side vertical plate 23 and the second side vertical plate 24 can enclose the first fixing frame 12 and the second fixing frame 13. The stirring component 3 includes a support frame 31 and a stirring mechanism 32 arranged on the support frame 31. The support frame 31 can fix the stirring mechanism 32. The first fixing frame 12 and the second fixing frame 13 are respectively located at the bottoms of the front and rear ends of the support frame 31 and are fixedly connected to the support frame 31. The first fixing frame 12 and the second fixing frame 13 form a support for the support frame 31. The stirring mechanism 32 includes a driving motor 321 and a scraper 322. The refrigeration component 4 includes an evaporator 41. The evaporator 41 is arranged on the support frame 31. The driving motor 321 passes through the evaporator 41 and is connected to the scraper 322. The driving motor 321 can drive the scraper 322 to rotate and stir on the side wall of the evaporator 41, and can stir the ice crystal mixture formed in the side wall of the evaporator 41 to form ice sand.
[0031] In order to improve the integrity of the structure and appearance, the side parts of the first side vertical plate 23 and the second side vertical plate 24 can be connected to each other, so that the first side vertical plate 23 and the second side vertical plate 24 can form an integral body. The first side vertical plate 23 and the second side vertical plate 24 are respectively fixed on both sides of the chassis 11. After the side parts of the first side vertical plate 23 and the second side vertical plate 24 are connected to each other, the front ends of the first side vertical plate 23 and the second side vertical plate 24 can jointly support the front vertical plate, and the rear ends of the first side vertical plate 23 and the second side vertical plate 24 can jointly support the rear vertical plate 22. Thus, in terms of structure, the front vertical plate and the rear vertical plate 22 can respectively form an integral body with the first side vertical plate 23 and the second side vertical plate 24 from the front and rear ends, thereby improving the integrity of the structure and appearance.
[0032] The refrigeration component 4 further includes a condenser 42 for discharging the heat dissipated after the liquid freezes. The fixing component 1 further includes a fixing frame 14. An air duct hole 141 is provided in the fixing frame 14. The fixing frame 14 is used to fix the condenser 42. Specifically, in order to reduce the width, the condenser 42 includes a copper pipe elbow 422 and an end plate 421. The copper pipe elbow 422 and the end plate 421 are both arranged on the upper and lower sides of the condenser 42, thereby forming a vertical structure compared with the traditional condenser 42. There is no need to leave space on the left and right sides of the fixing frame 14 to accommodate the copper pipe elbow 422 and install the end plate 421. Therefore, the width of the left and right sides can be shortened. The end plate 421 is fixed to the fixing frame 14, and the fixing frame 14 is fixed to the second fixing bracket 13.
[0033] The beneficial effects of the embodiments of the present invention are as follows:
[0034] In the housing structure of the snow melting machine of the compact snow melting machine according to the embodiment of the present invention, there are a fixing component 1 and a surrounding plate component 2. The refrigeration component 4 includes a condenser 42. The fixing component 1 includes a fixing frame 14. An air duct hole 141 is provided in the fixing frame 14. The condenser 42 includes a copper pipe elbow 422 and an end plate 421. The copper pipe elbow 422 and the end plate 421 are both arranged on the upper and lower sides of the condenser 42. The end plate 421 is fixed to the fixing frame 14. Therefore, the condenser 42 adopts a vertical scheme. Placing the copper pipe elbow 422 and the end plate 421 on the upper and lower sides of the condenser 42 can save the space on the left and right sides of the condenser 42, and there is no need to increase the space for accommodating the copper pipe elbow 422 and the space for fixing the end plate 421 on the left and right sides. Therefore, the overall width can be reduced and the occupied space can be reduced. Moreover, the fixing component 1 includes a chassis 11. The surrounding plate component 2 includes a front vertical plate, a rear vertical plate 22, a first side vertical plate 23 and a second side vertical plate 24 surrounding the chassis 11. The sides of the first side vertical plate 23 and the second side vertical plate 24 are connected to form a whole and are connected to the chassis 11. The first side vertical plate 23 and the second side vertical plate 24 can form an overall appearance with the front vertical plate and the rear vertical plate 22, thereby improving the integrity and aesthetics of the box body in terms of structure and appearance, and meeting the user's requirements for usability and aesthetics.
[0035] Specifically, refer to Figure 2, the chassis 11 includes a front mounting portion 111 and a rear mounting portion 112. The front mounting portion 111 is provided with a front mounting groove 1111. The front mounting groove 1111 is provided at the edge of the front mounting portion 111. The front mounting groove 1111 is provided with a front mounting hole 1112. The rear mounting portion 112 is provided with a rear mounting groove 1121. The rear mounting groove 1121 is provided at the edge of the rear mounting portion 112. The rear mounting groove 1121 is provided with a rear mounting hole 1122. Both sides of the first fixing frame 12 are provided with first vertical rods 121. Both sides of the second fixing frame 13 are provided with second vertical rods 131. The bottom of the first vertical rod 121 can be inserted into the front mounting groove 1111 and fixed in the front mounting hole 1112. The bottom of the second vertical rod 131 can be inserted into the rear mounting groove 1121 and fixed in the rear mounting hole 1122, so as to fix the first fixing frame 12 and the second fixing frame 13.
[0036] See Figure 3 , in order to fix the fixing frame 14, both sides of the fixing frame 14 are provided with fixing vertical plates 142. The front side of the fixing vertical plate 142 is provided with a fixing convex plate 143. The fixing convex plate 143 protrudes towards the side close to the second fixing frame 13. The fixing convex plate 143 is provided with a frame fixing hole 1431 and a frame limiting buckle 1432. The second vertical column is provided with a column hole 132 and a frame limiting hole 133. The position of the column hole 132 corresponds to the position of the frame fixing hole 1431. When installing the fixing frame 14, using fasteners such as screws, the frame fixing hole 1431 can be fixed on the column hole 132, and at the same time, the frame limiting buckle 1432 can be buckled into the frame limiting hole 133 to form a limit, which can further ensure the connection stability.
[0037] See Figure 3, the fixed frame 14 further includes a frame plate 144 and side baffles 146. The side baffles 146 are arranged on the left and right sides of the frame plate 144 and extend away from the fixed convex plate 143. The side baffles 146 can closely adhere to the left and right sides of the condenser 42, so that the side baffles 146 enclose a heat dissipation channel. The air duct holes 141 are arranged on the frame plate 144 and are located inside the heat dissipation channel. By using the heat dissipation channel, the heat dissipated by the condenser 42 can be smoothly discharged. Condensation fixing plates 145 are arranged on the upper and lower sides of the frame plate 144, and the end plate 421 is fixed to the condensation fixing plates 145. The up-and-down fixing method is more stable than the left-and-right fixing method. Therefore, the gravity of the condenser 42 will be applied to the condensation fixing plates 145 through the end plate 421, and the condensation fixing plates 145 can apply reaction forces in opposite directions. Even without using fasteners such as screws, the condenser 42 can be hung on the condensation fixing plates 145. Although the left-and-right fixing method has a reaction force provided by friction, the friction force is much different from the gravity of the condenser 42, and the locking force provided by fasteners such as screws must be relied on. Therefore, the connection of the condenser 42 after being vertically placed is more stable and it is easier to perform connection and installation. For the convenience of heat dissipation, a fan fixing hole 1441 and a fan limiting post 1442 are arranged on the side of the frame plate 144 away from the condenser 42. The refrigeration assembly 4 further includes a heat dissipation fan 43, and the heat dissipation fan 43 can be inserted into the fan limiting post 1442 and fixed to the fan fixing hole 1441.
[0038] See Figure 4 , in order to fix the first side vertical plate 23 and the second side vertical plate 24, a supporting flange 113 is arranged on the edge of the chassis 11. The supporting flange 113 protrudes from the outer side wall of the chassis 11. Supporting platforms 26 are arranged at the inner bottoms of the first side vertical plate 23 and the second side vertical plate 24. After installing the first side vertical plate 23 and the second side vertical plate 24, the first side vertical plate 23 and the second side vertical plate 24 can cover the left and right sides of the chassis 11 and hide the chassis 11. A bottom fixing hole 261 is arranged on the supporting platform 26, the bottom of the supporting flange 113 can abut against the supporting platform 26, the supporting platform 26 forms a support for the supporting flange 113, and the chassis 11 can be fixed in the bottom fixing hole 261.
[0039] In order to integrate the first side vertical plate 23 and the second side vertical plate 24 into an integral structure, a first vertical plate supporting portion 231 is provided on the inner side of the first side vertical plate 23. The first vertical plate supporting portion 231 protrudes towards the second side vertical plate 24 and forms a "J" shape. A vertically arranged first connection hole 232 is provided on the first vertical plate supporting portion 231. A second vertical plate supporting portion 241 is provided on the inner side of the second side vertical plate 24. The second vertical plate supporting portion 241 protrudes towards the first side vertical plate 23 and forms an inverted "J" shape. The first vertical plate supporting portion 231 and the second vertical plate supporting portion 241 extend towards each other. A vertically arranged second connection hole 242 is provided on the second vertical plate supporting portion 241. The positions of the first connection hole 232 and the second connection hole 242 correspond to each other. By using fasteners such as screws, the first connection hole 232 and the second connection hole 242 can be connected simultaneously.
[0040] Further, in order to improve the connection strength, a horizontally arranged side limiting hole 233 and a vertically arranged first side fixing hole 234 are further provided in the first vertical plate supporting portion 231. The side limiting hole 233 and the first side fixing hole 234 communicate with each other. A horizontally arranged side limiting convex block 243 is further provided in the second vertical plate supporting portion 241. A vertically penetrating second side fixing hole 244 is provided on the side limiting convex block 243. When connecting the first side vertical plate 23 and the second side vertical plate 24, the side limiting convex block 243 can be inserted into the side limiting hole 233. The positions of the first side fixing hole 234 and the second side fixing hole 244 correspond to each other. After insertion, by using fasteners such as screws, the first side fixing hole 234 and the second side fixing hole 244 are connected. In cooperation with the first connection hole 232 and the second connection hole 242, the first vertical plate supporting portion 231 and the second vertical plate supporting portion 241 can be limited simultaneously from both the horizontal direction and the vertical direction, thereby improving the connection strength. By adopting the plug-in design with the side limiting convex block 243 inserted into the side limiting hole 233, the side limiting convex block 243 can also be hidden, improving the integrity.
[0041] Further, referring to Figure 5, the refrigeration assembly 4 further includes a throttle pipe 44 and a return air pipe 45. The throttle pipe 44 throttles and reduces the pressure of the condensed refrigerant, facilitating the evaporation of the refrigerant in the evaporator 41. The compressor is communicated with the inlet of the condenser 42, the condenser 42 is communicated with the evaporator 41 through the throttle pipe 44, and the evaporator 41 is communicated with the compressor through the return air pipe 45. In order to facilitate pipe laying and save the occupied space of the copper pipe to adapt to a small volume space, the throttle pipe 44 is distributed along the return air pipe 45. Since the diameter of the throttle pipe 44 is small, the throttle pipe 44 and the return air pipe 45 can share the pipe laying space. Moreover, the middle section of the throttle pipe 44 is wound and fixed to the middle section of the return air pipe 45, which can play a role in fixing the throttle pipe 44 and can save the fixing parts and additional fixing space of the throttle pipe 44.
[0042] Wherein, the bottom of the support frame 31 is provided with heat dissipation holes 311, the heat dissipation holes 311 are located below the drive motor 321, and the heat dissipation holes 311 can be used for the heat dissipation of the drive motor 321. Moreover, by using the heat dissipation holes 311, both the return air pipe 45 and the throttle pipe 44 pass downward through the heat dissipation holes 311 from one end of the evaporator 41. The heat dissipation holes 311 can be used for heat dissipation and also provide a pipe routing space for the return air pipe 45 and the throttle pipe 44.
[0043] See Figure 1 , the housing structure of the compact snow melter further includes a discharge assembly 5. The discharge assembly 5 includes a storage cover 51 and a discharge cylinder 52. The storage cover 51 can be inserted into the support frame 31 and surround the evaporator 41 and the scraper 322. The storage cover 51 is used for storing the poured liquid and the made smoothies. The storage cover 51 is communicated with the discharge cylinder 52. The discharge cylinder 52 is vertically arranged for discharging the smoothies. A bracket 53 is further provided below the discharge cylinder 52. A front connecting hook 531 is provided on one side of the bracket 53. Front connecting grooves 245 are provided on the front sides of the first vertical plate supporting portion 231 and the second vertical plate supporting portion 241. The front connecting hook 531 can be inserted into the front connecting grooves 245. The bracket 53 is used for supporting the container for loading smoothies.
[0044] Further, see Figure 6 and Figure 7, in order to improve the overall aesthetics and further reduce the length of the snow melter, the bracket 53 can be received on the first side vertical plate 23 or the second side vertical plate 24. Specifically, hanging member connection holes 235 are further provided on the side portions of the first side vertical plate 23 and / or the second side vertical plate 24. The enclosure assembly 2 further includes a hanging member 25. One side of the hanging member 25 is provided with a hanging plate 251, and the other side is provided with a connecting convex block 252. The connecting convex block 252 protrudes from the hanging plate 251 and can be inserted into the hanging member connection hole 235 to form a fixed connection. The bottom of the bracket 53 is provided with a slot 532, and the notch of the slot 532 is arranged downward. The connecting convex block 252 can be inserted into the slot 532, so that the bracket 53 can be hung on the side portions of the first side vertical plate 23 and / or the second side vertical plate 24, so as to reduce the length of the snow melter, and further reduce the floor space. Preferably, the width range of the condenser is A, where 130 ≤ A ≤ 180 mm, and the overall width of the equipment is between 160 mm and 200 mm. The width of the condenser 42 refers to the distance between the left and right sides after removing the copper pipe elbow 422. The width of the traditional condenser 42 plus the width of the copper pipe elbow 422 can reach 250 mm, and the overall width of the equipment will be widened to 270 mm. It can be seen that the overall width of the embodiment of the present invention can be greatly reduced.
[0045] An embodiment of the present invention also discloses a snow melter (not shown in the drawings), which can also be called an ice crusher. The snow melter includes a stirring assembly 3 and a refrigeration assembly 4, and further includes the housing structure of the compact snow melter as described above. The refrigeration assembly 4 includes a condenser 42. The fixing assembly 1 includes a fixing frame 14. An air duct hole 141 is provided in the fixing frame 14. The condenser 42 includes a copper pipe elbow 422 and end plates 421. The copper pipe elbow 422 and the end plates 421 are both arranged on the upper and lower sides of the condenser 42. The end plates 421 are fixed to the fixing frame 14. Therefore, the condenser 42 adopts a vertical arrangement. Placing the copper pipe elbow 422 and the end plates 421 on the upper and lower sides of the condenser 42 can save the space on the left and right sides of the condenser 42, and there is no need to increase the space for accommodating the copper pipe elbow 422 and the space for fixing the end plates 421 on the left and right sides. Therefore, the overall width can be reduced and the floor space can be reduced.
[0046] The above are the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements are also regarded as the protection scope of the present invention.
Claims
1. A shell structure of a compact snow melter, the snow melter comprising a stirring assembly and a refrigeration assembly, characterized in that: The invention comprises a fixing assembly and a panel assembly, wherein the fixing assembly comprises a chassis and a first fixing frame and a second fixing frame arranged on the chassis, the panel assembly comprises a front vertical plate, a rear vertical plate, a first side vertical plate and a second side vertical plate surrounding the chassis, the stirring assembly comprises a support frame and a stirring mechanism arranged on the support frame, the first fixing frame and the second fixing frame are respectively located at the bottom of the front and rear ends of the support frame and are fixedly connected to the support frame, the stirring mechanism comprises a driving motor and a scraper, the refrigeration assembly comprises an evaporator, the evaporator is arranged on the support frame, and the driving motor passes through the evaporator and is connected to the scraper; The refrigeration component also includes a condenser, and the fixed component also includes a fixed frame, in which an air duct hole is provided. The condenser includes a copper tube elbow and an end plate, and the copper tube elbow and the end plate are both arranged on the upper and lower sides of the condenser. The end plate is fixed on the fixed frame, and the fixed frame is fixed on the second fixed frame.
2. The housing structure of the compact snow melter according to claim 1, characterized in that: The side parts of the first side upright plate and the second side upright plate are connected to each other and are respectively fixed to the two sides of the chassis, the front ends of the first side upright plate and the second side upright plate jointly support the front upright plate, and the rear ends of the first side upright plate and the second side upright plate jointly support the rear upright plate.
3. The housing structure of the compact snow melter according to claim 1 or 2, characterized in that: The chassis includes a front mounting part and a rear mounting part, the front mounting part is provided with a front mounting groove, the front mounting groove is provided with a front mounting hole, the rear mounting part is provided with a rear mounting groove, the rear mounting groove is provided with a rear mounting hole, first vertical poles are provided on both sides of the first fixing frame, second vertical poles are provided on both sides of the second fixing frame, the bottom of the first vertical pole can be inserted into the front mounting groove and fixed in the front mounting hole, and the bottom of the second vertical pole can be inserted into the rear mounting groove and fixed in the rear mounting hole.
4. The housing structure of the compact snow melter according to claim 3, characterized in that: The fixing frame is provided with fixing upright plates on both sides, and the front side of the fixing upright plates is provided with fixing convex plates, the fixing convex plates protrude toward the side close to the second fixing frame, the fixing convex plates are provided with frame fixing holes and frame limiting buckles, the second upright poles are provided with column holes and frame limiting holes, the positions of the column holes correspond to the positions of the frame fixing holes, and the frame limiting buckles can be buckled into the frame limiting holes; The second vertical pole is also provided with a supporting convex plate, which protrudes from the surface of the second vertical pole and can abut against the bottom of the fixing convex plate.
5. The housing structure of the compact snow melter according to claim 4, characterized in that: The fixed frame also includes a frame plate and a side baffle plate, the side baffle plate is arranged on the left and right sides of the frame plate and extends in a direction away from the fixed protrusion, the side baffle plate encloses a heat dissipation channel, the air duct hole is arranged on the frame plate and is located in the heat dissipation channel, the upper and lower sides of the frame plate are provided with condensation fixing plates, the end plate is fixed to the condensation fixing plate, a fan fixing hole and a fan limiting column are provided on the side of the frame plate away from the condenser, the refrigeration assembly also includes a heat dissipation fan, the heat dissipation fan can be inserted into the fan limiting column and fixed on the fan fixing hole.
6. The housing structure of the compact snow melter according to claim 1 or 2, characterized in that: The edge of the chassis is provided with a supporting flange, and the supporting flange protrudes from the outer side wall of the chassis. The inner bottoms of the first side upright plate and the second side upright plate are both provided with supporting platforms, and the supporting platforms are provided with bottom fixing holes. The bottom of the supporting flange can abut against the supporting platform, and the chassis can be fixed in the bottom fixing hole.
7. The housing structure of the compact snow melter according to claim 1 or 2, characterized in that: A first vertical plate supporting portion is provided on the inner side of the first side vertical plate, the first vertical plate supporting portion protrudes toward the direction of the second side vertical plate, a vertically arranged first connecting hole is provided on the first vertical plate supporting portion, a second vertical plate supporting portion is provided on the inner side of the second side vertical plate, the second vertical plate supporting portion protrudes toward the direction of the first side vertical plate, a vertically arranged second connecting hole is provided on the second vertical plate supporting portion, and the positions of the first connecting hole and the second connecting hole correspond to each other; The first vertical plate supporting portion is also provided with a horizontally arranged side limiting hole and a vertically arranged first side fixing hole, and the second vertical plate supporting portion is also provided with a horizontally arranged side limiting protrusion, and the side limiting protrusion is provided with a vertically penetrating second side fixing hole, and the side limiting protrusion can be inserted into the side limiting hole, and the positions of the first side fixing hole and the second side fixing hole correspond to each other.
8. The housing structure of the compact snow melter according to claim 1 or 2, characterized in that: The refrigeration assembly further includes a throttling tube and a return air pipe, the compressor is connected to the inlet of the condenser, the condenser is connected to the evaporator through the throttling tube, the evaporator is connected to the compressor through the return air pipe, the throttling tube is distributed along the return air pipe, and the middle section of the throttling tube is wound and fixed to the middle section of the return air pipe; A heat dissipation hole is provided at the bottom of the support frame, and the heat dissipation hole is located below the drive motor. The return air pipe and the throttling pipe both pass through the heat dissipation hole downward from one end of the evaporator.
9. The housing structure of the compact snow melter according to claim 7, characterized in that: The shell structure of the compact snow melter also includes a discharging assembly, which includes a material storage cover and a discharging barrel. The material storage cover can be inserted into the support frame and surround the evaporator and the scraper. The material storage cover is connected to the discharging barrel. The discharging barrel is vertically arranged. A bracket is also provided under the discharging barrel. A front connecting hook is provided on one side of the bracket. A front connecting groove is provided on the front side of the first vertical plate supporting part and the second vertical plate supporting part. The front connecting hook can be inserted into the front connecting groove. The bracket is used to support a container for smoothies.
10. The housing structure of the compact snow melter according to claim 9, characterized in that: The side of the first side upright plate and / or the second side upright plate is also provided with a hanger connecting hole, and the enclosure assembly also includes a hanging member, one side of the hanging member is provided with a hanging plate, and the other side is provided with a connecting protrusion, the connecting protrusion protrudes from the hanging plate and can be inserted into the hanger connecting hole, and the bottom of the bracket is provided with a slot, the notch of the slot is set downward, and the connecting protrusion can be inserted into the slot.
11. The housing structure of the compact snow melter according to claim 1, characterized in that: The width range of the condenser is A, 130≤A≤180mm.
12. A snow melting machine, characterized in that: A shell structure comprising the compact snow melting machine according to any one of claims 1-11.
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