Snow melting machine
By setting up feed partitions and narrow feed holes in the discharge assembly of the snow melt machine, the problem of backflow of traditional snow melt machine smoothies is solved, and the user experience and smoothie quality are improved.
Patent Information
- Application Number
- CN202422225395.7
- 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
- 2025-06-20
- Estimated Expiration
- 2034-09-10
AI Technical Summary
Traditional snow melting machines are prone to smoothing backflow during the freezing and stirring process, which affects the use effect.
A snow melting machine including a mixing assembly, a refrigeration assembly and a discharge assembly are designed. The discharge assembly is equipped with a feed partition and a strip of feed holes. The shape of the feed holes is a narrow structure to prevent smoothies from pouring back.
It effectively prevents smoothies from being refueled, and improves the user experience and the quality of smoothies.
Smart Images

Figure CN222997354U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of snow melting machines, in particular to a snow melting machine. Background Art
[0002] A snow melting machine (also called a smoothie maker) is a device capable of making smoothies. As an important part of modern kitchen appliances, its design and performance are directly related to the user experience and the quality of the drink. Traditional snow melting machines usually use a storage cover as a container for holding liquid. The liquid forms smoothies in the storage cover. The feeding port of the storage cover usually has a circular or square structure. Although this design is convenient for adding liquid, during the freezing and stirring processes, since the density of the smoothie is smaller than that of water, the overall volume of the smoothie will increase after freezing. At the same time, due to the high-speed rotation of the stirrer and the complexity of the smoothie flow, the produced smoothies are easily poured back from the feeding port, especially when the stirring intensity is large or the solution is more, the backflow phenomenon is particularly obvious, seriously affecting the use effect of the snow melting machine. Content of the Utility Model
[0003] The technical problem to be solved by the utility model is to provide a snow melting machine that can prevent the produced smoothies from flowing back and improve the user experience.
[0004] To solve the above technical problem, the utility model provides a snow melting machine, which includes a stirring assembly, a refrigeration assembly, and a discharging assembly. The stirring assembly includes a support frame and a stirring mechanism arranged on the support frame. The stirring mechanism includes a protective cover, a driving motor, and a scraper. The refrigeration assembly 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, and the protective cover surrounds the outside of the driving motor.
[0005] The discharging assembly includes a storage cover and a discharging cylinder. The storage cover is horizontally arranged, and a storage cavity is arranged inside the storage cover. The discharging cylinder is vertically arranged and communicated with the storage cavity. The storage cover is fixed on the support frame. The evaporator and the scraper are located inside the storage cavity. The storage cover is provided with a feeding port, and a feeding partition is arranged below the feeding port. The feeding partition is provided with long strip-shaped feeding holes.
[0006] As an improvement of the above solution, the protective cover is connected to the storage cover. A fixing part is arranged at the connection of the protective cover and the storage cover. The fixing part is vertically arranged. The feeding partition is inclined. The feeding holes are arranged at the lower part of the feeding partition. The feeding holes are arranged along the length direction of the evaporator; the longitudinal cross-sectional size of the feeding holes gradually expands from the fixing part towards the direction away from the protective cover.
[0007] As an improvement of the above solution, the snow melting machine further includes a fixing component and a surrounding plate component. The fixing component includes a chassis, a first fixing frame and a second fixing frame provided on the chassis. The surrounding 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 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.
[0008] As an improvement of the above solution, the refrigeration component further includes a condenser. The fixing component further includes a fixing frame. The fixing frame is provided on the side of the second fixing frame. The fixing frame is provided with an air duct hole. The two sides of the first fixing frame are provided with first vertical rods. The two sides of the second fixing frame are provided with second vertical rods. The condenser includes end plates. The end plates are arranged on the upper and lower sides of the condenser and are fixed to the fixing frame. The fixing frame is fixed to the second fixing frame.
[0009] As an improvement of the above solution, the two sides of the fixing frame are provided with fixing vertical plates. The front side of the fixing vertical plate is provided with a fixing convex plate. The fixing convex plate protrudes towards the side close to the second fixing frame. The fixing convex plate is provided with a frame fixing hole and a frame limiting buckle. The second vertical rod is provided with a column hole and a frame limiting hole. The position of the column hole corresponds to the position of the frame fixing hole. The frame limiting buckle can be buckled into the frame limiting hole.
[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. Condensation fixing plates are provided on the upper and lower sides of the frame plate. The end plates are fixed to the condensation fixing plates. Fan fixing holes and fan limiting columns are provided on the side of the frame plate away from the condenser. The refrigeration component further includes a heat dissipation fan. The heat dissipation fan can be inserted into the fan limiting column and fixed to the fan fixing hole.
[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 bottom 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. The chassis can be fixed in the bottom fixing holes.
[0012] As an improvement to the above solution, a first vertical plate supporting portion is provided inside the first vertical plate. The first vertical plate supporting portion protrudes towards the second vertical plate. A vertically arranged first connection hole is provided on the first vertical plate supporting portion. A second vertical plate supporting portion is provided inside the second vertical plate. The second vertical plate supporting portion protrudes towards the first vertical plate. A vertically arranged second connection hole is provided on the second vertical plate supporting portion. The positions of the first connection hole and the second connection hole correspond to each other.
[0013] As an improvement to the above solution, a horizontally arranged side limiting hole and a vertically arranged first side fixing hole are further provided in the first vertical plate supporting portion. A horizontally arranged side limiting protrusion is further provided in the second vertical plate supporting portion. A vertically penetrating second side fixing hole is provided on the side limiting protrusion. The side limiting protrusion 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 to 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] A heat dissipation hole is provided at the bottom of the support frame. The heat dissipation hole is located below the drive motor. Both the return air pipe and the throttle tube pass downward through the heat dissipation hole from one end of the evaporator.
[0016] As an improvement to the above solution, a bracket is further provided below the discharge 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 portion and the second vertical plate supporting portion. The front connection hook can be inserted into the front connection groove. The bracket is used to support a container for holding smoothies. Hanging part connection holes are further provided on the side parts of the first vertical plate and / or the second vertical plate. The enclosure assembly further includes a hanging part. One side of the hanging part is provided with a hanging plate, and the other side is provided with a connection convex block. The connection convex block protrudes from the hanging plate and can be inserted into the hanging part connection hole. A slot is provided at the bottom of the bracket. The opening of the slot faces downward. The connection convex block can be inserted into the slot.
[0017] Implementing the present utility model has the following beneficial effects:
[0018] The snow melter of the present utility model is provided with a stirring assembly, a refrigeration assembly and a discharging assembly. The stirring assembly includes a stirring mechanism, and the stirring mechanism includes a protective cover, a driving motor and a scraper. The refrigeration assembly includes an evaporator, and the discharging assembly includes a storage cover and a discharging cylinder. A storage cavity is provided in the storage cover. The evaporator and the scraper are located in the storage cavity. Liquid is poured into the storage cavity and is frozen into an ice crystal mixture under the action of the evaporator. The driving motor drives the scraper to stir the ice crystal mixture to make it into ice sand. An inlet is provided on the storage cover, and a feed partition is provided below the inlet. Long strip-shaped feed holes are provided on the feed partition. After the liquid enters the inlet, it first falls into the feed partition and then enters the storage cavity through the feed holes on the feed partition. When freezing and when the ice sand flows in the storage cover, since the feed holes are long strip-shaped and the length is much larger than the width, forming a narrow shape, it is difficult for the ice sand to be discharged from the narrow holes. Therefore, it can prevent the generated ice sand from flowing back, improving the user experience. Description of the Drawings
[0019] Figure 1 is the first split structural schematic diagram of the snow melter of the present utility model;
[0020] Figure 2 is the structural schematic diagram of the discharging assembly of the present utility model;
[0021] Figure 3 is the cross-sectional structural schematic diagram of the discharging assembly of the present utility model;
[0022] Figure 4 is the second split structural schematic diagram of the snow melter of the present utility model;
[0023] Figure 5 is the third split structural schematic diagram of the snow melter of the present utility model;
[0024] Figure 6 is the split structural schematic diagram of the first side plate and the second side plate of the present utility model;
[0025] Figure 7 is the installation structural schematic diagram of the throttle pipe, the return air pipe and the support frame of the present utility model;
[0026] Figure 8 is the fourth split structural schematic diagram of the snow melter of the present utility model;
[0027] Figure 9 is Figure 8 the partial enlarged view of A in Detailed Description of the Invention
[0028] 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 accompanying drawings. It is hereby declared that the orientation terms such as up, down, left, right, front, back, inside and outside that appear or will appear in the text of the present utility model are only based on the accompanying drawings of the present utility model and do not specifically limit the present utility model.
[0029] See Figure 1 and Figure 2 As shown in and, an embodiment of the present utility model discloses a snow melting machine, which includes a fixing component 1, a surrounding plate component 2, a stirring component 3, a refrigeration component 4 and a discharging component 5. The fixing component 1 includes a chassis 11, a first fixing frame 12 and a second fixing frame 13 provided on the chassis 11. The first fixing frame 12 and the second fixing frame 13 are respectively provided at the front and rear ends of the chassis 11. The surrounding plate component 2 includes a front vertical plate (not shown in the figure), 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 provided 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 surround 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 provided 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 protective cover 323, a driving motor 321 and a scraper 322. The refrigeration component 4 includes an evaporator 41. The protective cover 323 surrounds the outside of the driving motor 321 to protect the driving motor 321. The evaporator 41 is provided 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 on the side wall of the evaporator 41 to form ice sand.
[0030] To facilitate the pouring of liquid and the discharging of smoothies, the discharging assembly 5 includes a material storage cover 51 and a discharging cylinder 52. The material storage cover 51 is horizontally arranged and has a material storage cavity 511 inside. The evaporator 41 and the scraper 322 are located inside the material storage cavity 511. Liquid is poured from the material storage cover 51 into the material storage cavity 511 and is frozen under the action of the evaporator 41. The driving motor 321 drives the scraper 322 to stir the formed ice crystal mixture to form smoothies. The discharging barrel is vertically arranged and communicated with the material storage cavity 511. After the smoothies are formed, the discharging cylinder 52 is opened, and under the stirring and pushing of the scraper 322, the smoothies are discharged from the discharging cylinder 52. The material storage cover 51 is fixed on the support frame, and the material storage cover 51 is provided with a feed inlet 512. In traditional snow melting machines, liquid is directly poured from the feed inlet 512. To facilitate the entry of liquid, the opening of the feed inlet 512 is usually set to be relatively large. However, with such a structure, when freezing and when the smoothies flow inside the material storage cover 51, the smoothies are likely to be discharged from the feed inlet 512 to form backflow. To avoid this problem, in the embodiment of the present utility model, a feed partition 54 is provided below the feed inlet 512, and the feed partition 54 is provided with long strip-shaped feed holes 541. The feed holes 541 are in a narrow and long structure, and their length is much greater than their width. In this way, when pouring liquid through the feed inlet 512, the liquid does not directly enter the material storage cavity 511 but first contacts the feed partition 54 and then enters the material storage cavity 511 through the feed holes 541. Under the action of the feed partition 54, when freezing and when the smoothies flow inside the material storage cover 51, the feed partition 54 can block the smoothies and prevent them from being directly discharged from the feed inlet 512. Moreover, since the feed holes 541 are in a narrow and long structure, it is difficult for the smoothies to pass through the feed holes 541. Therefore, a good anti-backflow effect can be formed, greatly improving the user experience.
[0031] The beneficial effects of the embodiment of the present utility model are as follows:
[0032] In the snow melting machine according to the embodiment of the present utility model, there are provided a stirring assembly 3, a refrigeration assembly 4 and a discharging assembly 5. Among them, the stirring assembly 3 includes a stirring mechanism 32, the stirring mechanism 32 includes a protective cover 323, a driving motor 321 and a scraper 322. The refrigeration assembly 4 includes an evaporator 41. The discharging assembly 5 includes a storage cover 51 and a discharging cylinder 52. A storage cavity 511 is provided in the storage cover 51. The evaporator 41 and the scraper 322 are located in the storage cavity 511. Liquid is poured into the storage cavity 511 and is frozen to form an ice crystal mixture under the action of the evaporator 41. The driving motor 321 drives the scraper 322 to stir the ice crystal mixture to make it into ice sand. An inlet 512 is provided on the storage cover 51. Below the inlet 512, there is an inlet partition 54. The inlet partition 54 is provided with long strip-shaped inlet holes 541. After the liquid enters the inlet 512, it first falls into the inlet partition 54 and then enters the storage cavity 511 through the inlet holes 541 of the inlet partition 54. When freezing and when the ice sand flows in the storage cover 51, since the inlet holes 541 are long strip-shaped, with the length much larger than the width, forming a narrow and long shape, it is difficult for the ice sand to be discharged from the narrow holes. Therefore, it can prevent the generated ice sand from flowing back, improving the user experience.
[0033] See Figure 2 and Figure 3 The protective cover 323 is connected to the storage cover 51. A fixing part 324 is provided at the connection between the protective cover 323 and the storage cover 51 to isolate the storage cavity 511 and prevent liquid and ice sand from entering the protective cover 323 and affecting the operation of the driving motor 321. The fixing part 324 is vertically arranged. In order to facilitate the liquid to enter the interior of the storage cavity 511 from the inlet partition 54, the inlet partition 54 is inclined. The inlet holes 541 are provided at the lower part of the inlet partition 54. In this way, after the liquid is poured into the inlet partition 54, it can flow downward along the inlet partition 54 into the inlet holes 541. The inlet holes 541 are arranged along the length direction of the evaporator 41, forming a narrow and long shape, and enabling the liquid to flow along the direction of the evaporator 41 to the surface of the evaporator 41, and being able to be evenly immersed in the surface of the evaporator 41 as much as possible before falling onto the evaporator 41. Further, the longitudinal cross-sectional size of the inlet holes 541 gradually expands from the fixing part 324 towards the direction away from the protective cover 323. In this way, it can guide more liquid to flow to the side of the evaporator 41 away from the protective cover 323, which can, to a certain extent, avoid a large amount of liquid impacting the fixing part 324 and causing liquid leakage, and can also promote the liquid to be concentrated on the middle surface of the evaporator 41 as soon as possible. The fixing part is preferably in the shape of a convex ring.
[0034] In addition, referring to Figure 4 and Figure 5 , 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. First vertical rods 121 are provided on both sides of the first fixing bracket 12, and second vertical rods 131 are provided on both sides of the second fixing bracket 13. The condenser 42 includes end plates 421. The end plates 421 are arranged on the upper and lower sides of the condenser 42 and fixed to the fixing frame 14. The fixing frame 14 is fixed to the second fixing bracket 13.
[0035] To fix the fixing frame 14, fixing vertical plates 142 are provided on both sides of the fixing frame 14. A fixing convex plate 143 is provided on the front side of the fixing vertical plate 142. The fixing convex plate 143 protrudes toward the side close to the second fixing bracket 13. A frame fixing hole 1431 and a frame limiting buckle 1432 are provided on the fixing convex plate 143. A column hole 132 and a frame limiting hole 133 are provided on the second vertical rod 131. The position of the column hole 132 corresponds to the position of the frame fixing hole 1431. When installing the fixing frame 14, fasteners such as screws can be used to fix the frame fixing hole 1431 to 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.
[0036] Referring to Figure 5, the fixed frame 14 further includes a frame plate 144 and side baffles 146. The side baffles 146 are disposed 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 disposed on the frame plate 144 and are located within 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 provided on both 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 easier to connect and install. For the convenience of heat dissipation, a fan fixing hole 1441 and a fan limiting post 1442 are provided 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.
[0037] See Figure 6 , to fix the first side vertical plate 23 and the second side vertical plate 24, a supporting flange 113 is provided at the edge of the chassis 11. The supporting flange 113 protrudes from the outer side wall of the chassis 11. Supporting platforms 26 are provided at the inner bottom of both 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 provided on the supporting platform 26, and 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.
[0038] In order to integrate the first vertical plate 23 and the second vertical plate 24 into an integral structure, a first plate supporting portion 231 is provided on the inner side of the first vertical plate 23. The first plate supporting portion 231 protrudes towards the second vertical plate 24 and forms a "J" shape. A vertically arranged first connection hole 232 is provided on the first plate supporting portion 231. A second plate supporting portion 241 is provided on the inner side of the second vertical plate 24. The second plate supporting portion 241 protrudes towards the first vertical plate 23 and forms an inverted "J" shape. The first plate supporting portion 231 and the second plate supporting portion 241 extend towards each other. A vertically arranged second connection hole 242 is provided on the second 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.
[0039] 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 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 protrusion 243 is further provided in the second plate supporting portion 241. A vertically penetrating second side fixing hole 244 is provided on the side limiting protrusion 243. When connecting the first vertical plate 23 and the second vertical plate 24, the side limiting protrusion 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. Cooperating with the first connection hole 232 and the second connection hole 242, the first plate supporting portion 231 and the second 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 of inserting the side limiting protrusion 243 into the side limiting hole 233, the side limiting protrusion 243 can also be hidden, improving the integrity.
[0040] Further, refer to Figure 7, the refrigeration assembly 4 further includes a throttle pipe 44 and a suction 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. Among them, 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 suction 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 suction pipe 45. In this way, due to the smaller diameter of the throttle pipe 44, the throttle pipe 44 and the suction pipe 45 can share the pipe laying space, and the middle section of the throttle pipe 44 is wound and fixed to the middle section of the suction 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.
[0041] Among them, referring to Figure 7 , a heat dissipation hole 311 is provided at the bottom of the support frame 31. The heat dissipation hole 311 is located below the drive motor 321. The heat dissipation hole 311 can be used for the heat dissipation of the drive motor 321. Moreover, by using the heat dissipation hole 311, both the suction pipe 45 and the throttle pipe 44 pass downward through the heat dissipation hole 311 from one end of the evaporator 41. The heat dissipation hole 311 can not only be used for heat dissipation but also provide a pipe routing space for the suction pipe 45 and the throttle pipe 44.
[0042] Referring to Figure 4 , Figure 8 and Figure 9 , a bracket 53 is further provided below the discharge cylinder 52. A front connection hook 531 is provided on one side of the bracket 53. Front connection 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 connection hook 531 can be inserted into the front connection groove 245. The bracket 53 is used to support the container for holding ice sand. Further, in order to improve the overall aesthetics and further reduce the length of the snow melting machine, the bracket 53 can be received on the first side vertical plate 23 or the second side vertical plate 24. Specifically, hanging part connection holes 235 are further provided on the sides of the first side vertical plate 23 and / or the second side vertical plate 24. The enclosure assembly 2 further includes a hanging part 25. A hanging plate 251 is provided on one side of the hanging part 25, and a connection convex block 252 is provided on the other side. The connection convex block 252 protrudes from the hanging plate 251 and can be inserted into the hanging part connection hole 235 to form a fixed connection. A slot 532 is provided at the bottom of the bracket 53, and the notch of the slot 532 faces downward. The connection convex block 252 can be inserted into the slot 532, so that the bracket 53 can be hung on the side of the first side vertical plate 23 and / or the second side vertical plate 24 to reduce the length of the snow melting machine and further reduce the floor space.
[0043] The above are the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications are also regarded as the protection scope of the present utility model.
Claims
1. A snow melting machine, characterized in that: It comprises a stirring assembly, a refrigeration assembly and a discharging assembly, wherein the stirring assembly comprises a support frame and a stirring mechanism arranged on the support frame, the stirring mechanism comprises a protective cover, a driving motor and a scraper, the refrigeration assembly comprises an evaporator, the evaporator is arranged on the support frame, the driving motor passes through the evaporator and is connected to the scraper, and the protective cover surrounds the outside of the driving motor; The material discharging assembly includes a material storage cover and a material discharging barrel. The material storage cover is horizontally arranged, and a material storage cavity is arranged in the material storage cover. The material discharging barrel is vertically arranged and communicated with the material storage cavity. The material storage cover is fixed on the support frame, and the evaporator and the scraper are located in the material storage cavity. A feed port is provided on the material storage cover, and a feed baffle is provided below the feed port, and a long strip-shaped feed hole is provided on the feed baffle.
2. The snow melting machine according to claim 1, characterized in that: The protective cover is connected to the material storage cover, and a fixing portion is provided at the connection between the protective cover and the material storage cover, the fixing portion is vertically arranged, the feed baffle is inclined, the feed hole is arranged at the lower part of the feed baffle, and the feed hole is arranged along the length direction of the evaporator; the longitudinal cross-sectional size of the feed hole gradually increases from the fixing portion toward the direction away from the protective cover.
3. The snow melting machine according to claim 2, characterized in that: The snow melting machine also includes a fixing assembly and a panel assembly, the fixing assembly includes a chassis and a first fixing frame and a second fixing frame arranged on the chassis, the panel assembly includes a front vertical plate, a rear vertical plate and a first side vertical plate and a second side vertical plate surrounding the chassis, 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.
4. The snow melting machine according to claim 3, characterized in that: The refrigeration component also includes a condenser, and the fixed component also includes a fixed frame, which is arranged on the side of the second fixed frame, and an air duct hole is arranged in the fixed frame, first vertical rods are arranged on both sides of the first fixed frame, and second vertical rods are arranged on both sides of the second fixed frame, and the condenser includes end plates, which are arranged on the upper and lower sides of the condenser and fixed on the fixed frame, and the fixed frame is fixed on the second fixed frame.
5. The snow melting machine according to claim 4, characterized in that: Fixed vertical plates are provided on both sides of the fixed frame, and fixed convex plates are provided on the front sides of the fixed vertical plates. The fixed convex plates protrude toward the side close to the second fixed frame, and frame fixing holes and frame limiting buckles are provided on the fixed convex plates. The second vertical pole is 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.
6. The snow melting machine according to claim 5, 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 forms a 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, and 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, and the heat dissipation fan can be inserted into the fan limiting column and fixed on the fan fixing hole.
7. The snow melting machine according to claim 3, 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.
8. The snow melting machine according to claim 3, 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 positions of the first connecting hole and the second connecting hole correspond to each other.
9. The snow melting machine according to claim 8, characterized in that: 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.
10. The snow melting machine according to claim 1, 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.
11. The snow melting machine according to claim 8, characterized in that: A bracket is also provided below the discharge barrel, and a front connecting hook is provided on one side of the bracket, and a front connecting groove is provided on the front side of the first vertical plate supporting portion and the second vertical plate supporting portion, and the front connecting hook can be inserted into the front connecting groove. The bracket is used to support a container for smoothies, and the side of the first side vertical plate and / or the second side vertical plate is also provided with a hanger connecting hole. The enclosure assembly also includes a hanging member, and a hanging plate is provided on one side of the hanging member, and a connecting protrusion is provided on the other side. The connecting protrusion protrudes from the hanging plate and can be inserted into the hanger connecting hole. A slot is provided at the bottom of the bracket, and the notch of the slot is arranged downward, and the connecting protrusion can be inserted into the slot.