Snow melting machine convenient to use

By setting a fixed platform and a collection chamber on the top of the snow melting machine, the problems of large space and inconvenient cleaning of the snow melting machine are solved, realizing a compact and easy-to-clean design for home use.

CN223759150UActive Publication Date: 2026-01-06HANGZHOU YULAI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520279348.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2026-01-06
Estimated Expiration
2035-02-21

AI Technical Summary

Technical Problem

Existing snow melting machines are bulky, inconvenient to clean, and difficult to meet the needs of small family spaces, and their structure is also complex.

Method used

A fixed platform is set on the top of the main unit, and a collection cavity is formed by the fixed wall, limiting wall and supporting wall to fix the processing components. Wastewater and residual water are collected and discharged through the drain hole and drain pipe to avoid the addition of additional structures.

Benefits of technology

This technology has resulted in a smaller overall size of the snow melting machine, making it easy to clean, reliable in wastewater collection, and simple in structure, making it suitable for home use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The snow melting machine convenient to use comprises a main machine, a refrigeration assembly and a machining assembly, a fixing table is arranged at the top of the main machine, the refrigeration assembly comprises an evaporator, and the fixing table comprises a fixing wall located on the rear side, a left limiting wall, a right limiting wall and a supporting wall located on the front side, the rear end of the evaporator is fixed to the fixing wall and extends forwards in the transverse direction, the rear end of the machining assembly is fixedly connected with the fixing table and sleeves the evaporator, the machining assembly is in limiting connection with the left limiting wall and the right limiting wall, and the supporting wall supports the machining assembly at the front end. The fixing wall, the left limiting wall, the right limiting wall, the supporting wall and a shell of the main machine define a collecting cavity located at the bottom of the machining assembly, a drainage hole is formed in the bottom of the collecting cavity, and the main machine further comprises a drainage pipe communicating with the collecting cavity and the external space. The fixed table is directly utilized to form the collecting cavity, waste water collection is achieved, a whole machine structure and accessories do not need to be additionally arranged, and the whole machine is compact in structure and convenient to use.
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Description

Technical Field

[0001] This utility model relates to the field of food processing, and in particular to a snow melting machine for making snow melting products. Background Technology

[0002] Slush machines, a common food processing equipment, can produce semi-solid smoothies, somewhere between liquid drinks and solid ice, and are widely used in commercial settings such as beverage shops and restaurants. A typical slush machine structure includes a refrigeration system, a stirring system, and a base. The refrigeration system usually consists of a condenser, compressor, and evaporator. Due to the limited size and processing capacity of slush machines, these devices are generally only suitable for commercial environments. Furthermore, to meet the demands of large-capacity processing, the stirring system of a slush machine must be sufficiently powerful, and the base structure is correspondingly designed to be spacious enough to fully accommodate the condenser and compressor, as well as support the large-capacity stirring system. Therefore, slush machines suitable for commercial environments typically occupy a large space, which to some extent limits their transport and storage, and also makes cleaning them inconvenient for users.

[0003] For the aforementioned snow melting machine, the stirring system can usually be easily disassembled for cleaning, but the evaporator is typically fixed to the base and cannot be removed. Cleaning the evaporator generates a significant amount of cleaning wastewater within the base. Furthermore, during operation, the stirring system generates condensation due to temperature drops, which collects at the bottom of the system on the base. To address the technical issues of wastewater and residual water, existing commercial snow melting machines have sufficient installation space, thus typically incorporating an open collection space on the base for direct collection of wastewater and residual water. However, as mentioned earlier, this approach results in a larger snow melting machine, making it inconvenient for home use. Existing smaller snow melting machines usually feature a separate wastewater box for collecting wastewater and residual water. On the one hand, this convenience increases the machine's structural complexity and cost; furthermore, the additional wastewater box also increases the machine's volume. Moreover, the extra wastewater box structure adds to the cleaning components, making cleaning the snow melting machine inconvenient. Summary of the Invention

[0004] In view of the defects and shortcomings of the existing technology, the purpose of this utility model is to provide a snow melting machine that is easy to use, so as to solve the technical problems of existing snow melting machines having large space volume, inconvenient cleaning, and inconvenient product storage.

[0005] To solve the above-mentioned technical problems, this utility model provides a convenient snow melting machine, including a main unit, a refrigeration component and a processing component disposed in the main unit, wherein the main unit has an installation cavity formed inside, and a fixed platform is provided on the top of the main unit. The refrigeration component includes a condenser, a compressor and an evaporator connected by pipes. The condenser and compressor are disposed in the installation cavity. The fixed platform includes a fixed wall located on the rear side, a left limiting wall and a right limiting wall extending forward from both sides of the fixed wall, and a support wall located on the front side and connected to the left limiting wall and the right limiting wall. The rear end of the evaporator is fixed to the fixed wall and extends forward laterally. The rear end of the processing component is fixedly connected to the fixed platform and sleeved on the outside of the evaporator. The processing component is respectively limited and connected to the left limiting wall and the right limiting wall. The support wall supports the processing component at the front end. The fixed wall, the left limiting wall, the right limiting wall, the support wall and the outer shell of the main unit together form a collection cavity located at the bottom of the processing component. The bottom of the collection cavity is provided with a drain hole. The main unit also includes a drain pipe disposed in the installation cavity and connecting the collection cavity and the external space.

[0006] As mentioned earlier, existing snow melting machines typically have a collection space or an additional wastewater box to collect wastewater and residual water. These solutions rely on additional structures, making the snow melting machine complex and difficult to clean. In this application, a fixing platform for securing the processing components is provided on the top of the main unit. The fixing platform includes a fixing wall, a left limiting wall, a right limiting wall, and a support wall. The processing components are secured or limited using the fixing wall, left limiting wall, right limiting wall, and support wall, respectively. This allows for convenient securing of the processing components to the top of the main unit without requiring additional fixing structures, effectively reducing the size of the snow melting machine. Furthermore, this application utilizes the fixed wall, left limiting wall, right limiting wall, and support wall to form a collection cavity. Correspondingly, the collection cavity is located at the bottom of the processing component. This arrangement fully utilizes the fixed platform of the main unit to form a collection cavity for wastewater and residual water, eliminating the need for additional collection structures. The spatial structure of the snow melting machine is simple, facilitating a reduction in its overall size and making it more suitable for use in small home spaces. The collection cavity at the bottom of the processing component can conveniently and reliably collect residual water generated by the processing component, as well as wastewater generated from cleaning the evaporator. The residual water and wastewater are then discharged using the drain hole and drain pipe, preventing them from remaining inside the main unit and facilitating cleaning of the processing component and evaporator. Therefore, without increasing the overall structure and volume of the snow melting machine, this application solution can simultaneously achieve the fixing of the processing components and the collection and discharge of wastewater and residual water using only the existing structure of the main unit. The structure is lightweight and simple, reducing the overall volume of the snow melting machine, and can also achieve reliable wastewater collection. The snow melting machine using this application solution is lighter and more convenient for users.

[0007] As an optional solution, the bottom surface of the collection chamber gradually decreases from back to front, and the drain hole is located on the front side of the collection chamber.

[0008] The bottom surface of the collection chamber gradually slopes down from back to front, and the drain hole is located on the front side of the collection chamber. This facilitates the collection of wastewater in the collection chamber to the front of the main unit for discharge, and also allows the user to perform final cleaning of the drain hole area on the front side. Additionally, an external device connected to the drain pipe can be installed on the front side of the main unit, allowing the user to collect and treat the wastewater and residual water discharged from the drain pipe.

[0009] As an optional solution, the left limiting wall and the right limiting wall extend upward and overlap with the processing component in the vertical direction, and the left limiting wall, the right limiting wall and the processing component are provided with a mutually interlocking limiting structure.

[0010] The left and right limiting walls overlap with the processing component in the height direction and are provided with interlocking limiting structures between them. These limiting structures effectively and reliably fix the processing component, and the limiting on the side walls ensures effective support for the processing component. Simultaneously, the left and right limiting walls extend to the outside of the processing component, allowing residual water generated by the processing component to be fully collected and guided by the left and right limiting walls, converging into the collection cavity, thus ensuring a more complete collection effect and preventing residual water leakage.

[0011] As an optional solution, the left and right limiting walls overlap at least partially with the evaporator in vertical height.

[0012] The left and right limiting walls are set at a vertical height that partially overlaps with the evaporator. When the user cleans the evaporator, the left and right limiting walls can reliably collect the wastewater from the cleaning process and also block the splashed wastewater, preventing it from splashing onto the worktable when cleaning the evaporator, thus ensuring the cleanliness of the snow melting machine.

[0013] As an optional solution, the bottom of the processing component is also provided with a support seat that cooperates with the support wall, and the support seat abuts against the support wall.

[0014] By adding the support base, the processing component and the support wall can be better secured, ensuring that the processing component can be more firmly fixed to the top of the main unit. Additionally, the processing component typically has a processing chamber for the user to hold food. To allow for better flow of the food and its exit from the front of the processing component, the bottom of the component is usually designed as a sloping surface rather than a flat surface, making it inconvenient to place the processing component directly on the worktable. By providing the support base, when the processing component is removed for operation, it can be easily placed on the worktable, improving user convenience.

[0015] As an optional solution, a locking assembly for locking the processing component is also provided between the support wall and the support base.

[0016] A locking assembly is further provided between the support wall and the support base to lock the processing component at the front end of the main unit and fix it to the fixed wall; the left and right limiting walls limit the locking of the processing component, ensuring reliable locking of the processing component by the fixed platform. Preferably, when it is necessary to remove the processing component, it is usually only necessary to operate the locking assembly at the front end to unlock the processing component, which allows for convenient removal of the processing component, facilitating user operation.

[0017] As an optional solution, a first sleeve connected to the drain pipe is also provided on the bottom side of the drain hole.

[0018] A first sleeve is provided on the bottom side of the drain hole to communicate with the drain pipe, which facilitates the arrangement of the drain pipe. The bottom end of the drain pipe can be directly set in a preset position, avoiding limiting the position of the drain pipe and affecting the arrangement of other components inside the host.

[0019] As an optional solution, the bottom of the main unit is provided with a water outlet connected to the drain pipe, and the snow melting machine also includes a wastewater box located at the water outlet, the wastewater box having a wastewater chamber connected to the water outlet.

[0020] A wastewater box is installed directly at the bottom of the main unit to collect the wastewater and condensate discharged from the collection chamber. After processing, the user can easily remove the wastewater box and pour out the wastewater.

[0021] As an optional solution, the bottom of the outlet is also provided with a second sleeve extending outward.

[0022] When users need to clean the evaporator, a large amount of cleaning water is usually required. However, the wastewater box typically only collects residual water such as condensate and does not have a large space for collecting cleaning wastewater. A second sleeve extending outwards is installed at the bottom of the outlet. When users need to clean the evaporator, they can connect to an external water pipe through this second sleeve to directly connect the wastewater from cleaning the evaporator to an external channel, thus meeting the need for large-capacity drainage.

[0023] As an optional solution, the main unit includes a bottom cover, side plates, a support frame, and a motor mounting frame. The support frame is disposed above the bottom cover and fixedly connected to the bottom cover. The motor mounting frame is disposed on the rear side of the top of the support frame. The support frame and the motor mounting frame together form the collection cavity.

[0024] The system includes a bottom cover and a support frame, which together form a structure to support the main unit and create an internal installation space for assembling the main unit. Furthermore, the support frame and motor mounting bracket form a mounting platform, which serves to install the processing components and also creates the collection chamber. The structure is simple and compact, achieving wastewater collection while keeping the snow melting machine small and suitable for home use. Attached Figure Description

[0025] Figure 1 This is an exploded view of the structure of a convenient snow melting machine according to the present invention.

[0026] Figure 2This is an exploded view of the main body and processing components of a snow melting machine that is easy to use, as described in this utility model.

[0027] Figure 3 This is a cross-sectional view of the structure of a convenient snow melting machine according to the present invention.

[0028] Figure 4 for Figure 3 A magnified view of part A in the diagram.

[0029] Figure 5 This is a cross-sectional view of the water outlet structure of a snow melting machine that is easy to use according to this utility model.

[0030] Figure 6 This is a schematic diagram of the support frame structure of a snow melting machine that is easy to use, as described in this utility model.

[0031] Figure 7 This is a cross-sectional view of the support frame of the snow melting machine that is easy to use according to this utility model.

[0032] Figure 8 This is a cross-sectional view of the overall structure of the snow melting machine described in this utility model.

[0033] The labels in the diagram correspond to the following names:

[0034] 1. Bottom cover; 2. Support bracket; 21. Fixed wall; 22. Right limiting wall; 221. Right limiting groove; 23. Left limiting wall; 231. Left limiting groove; 24. Support wall; 241. Locking hole; 25. Locking assembly; 251. Locking button; 252. Lock; 3. Motor mounting bracket; 41. Condenser; 42. Compressor; 43. Evaporator; 5. Processing assembly; 51. Mixing chamber; 511. Limiting rib; 52. 53. Silo cover; 54. Agitator; 55. Support base; 56. Locking groove; 67. Collection chamber; 68. Drain hole; 69. First sleeve; 60. Drain pipe; 61. Outlet; 62. Second sleeve; 63. Third sleeve; 64. Wastewater installation tank; 75. Front side plate; 76. Right side plate; 77. Left side plate; 78. Rear side plate; 89. Wastewater box; 80. Wastewater chamber; 81. Wastewater outlet; 92. Main unit; 93. Power assembly. Detailed Implementation

[0035] To more clearly illustrate the overall concept of this application, a detailed description is provided below with reference to the accompanying drawings. It is to be understood that the specific embodiments described herein are merely illustrative of the relevant application and not intended to limit the application. Furthermore, it should be noted that, for ease of description, only the parts relevant to the application are shown in the accompanying drawings.

[0036] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present application will now be described in detail with reference to the accompanying drawings and embodiments. The terminology used in this application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. The singular forms “a,” “the,” and “the” used in this application and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise. It should also be understood that the term “and / or” as used herein refers to and includes any or all possible combinations of one or more associated listed items.

[0037] like Figures 1-8 As shown, this utility model discloses a convenient snow melting machine. The snow melting machine includes a main unit 91, a refrigeration component and a processing component 5 disposed on the main unit 91. The refrigeration component includes a condenser 41, a compressor 42 and an evaporator 43. The condenser 41, compressor 42 and evaporator 43 are connected by pipes. The refrigerant is transferred between the condenser 41, compressor 42 and evaporator 43 through the pipes, so that the evaporator 43 can complete the cooling and processing of food.

[0038] The main unit 91 has an internal mounting cavity, within which the condenser 41 and compressor 42 are housed. A fixed platform is located on the top of the main unit 91, and the rear end of the evaporator 43 is fixed to this platform. The evaporator 43 extends laterally forward with its front end suspended. The processing component 5 is detachably fixed to the platform and is fitted over the evaporator 43. When the slush machine is operating, the evaporator 43 cools the food within the processing component 5. This causes condensation to form on the exterior of the processing component 5 due to the low temperature. Since the slush machine processes primarily sugary drinks, the non-removable evaporator 43 must be thoroughly cleaned after processing to prevent food spoilage. Both residual condensate and cleaning water must be collected promptly to prevent leakage to the outside of the slush machine and disruption to normal use.

[0039] Preferably, the fixed platform includes a fixed wall 21, a right limiting wall 22, a left limiting wall 23, and a support wall 24. The fixed wall 21 is located at the rear of the main unit 91, and the evaporator 43 is disposed on the fixed wall 21. Preferably, the processing component 5 is also detachably mounted on the fixed wall 21 to enclose the evaporator 43. The right limiting wall 22 and the left limiting wall 23 extend forward from both sides of the fixed wall 21. The support wall 24 is located at the front of the main unit 91 and is connected to the front end of the right limiting wall 22 and the left limiting wall 23. The rear end of the processing component 5 is detachably connected to the fixed wall 21, and its two sides are respectively limited by the right limiting wall 22 and the left limiting wall 23. The bottom of the front end of the processing component 5 abuts against the support wall 24. Meanwhile, the fixed wall 21, right limiting wall 22, left limiting wall 23, and support wall 24, together with the top wall of the main unit 91, define a collection chamber 6 at the top of the main unit 91. When the processing component 5 is installed on the fixed platform, the collection chamber 6 is located below the processing component 5; when the processing component 5 is removed from the evaporator 43, the collection chamber 6 is located below the evaporator 43. In this way, both residual water on the outside of the processing component 5 and wastewater from cleaning the evaporator 43 can be collected by the collection chamber 6, thereby preventing leakage of residual water or wastewater. Furthermore, a drain hole 61 is provided at the bottom of the collection chamber 6, and a drain pipe 63 is also provided inside the main unit 91. The liquid in the collection chamber 6 flows out through the drain hole 61 and is discharged from the main unit 91 through the drain pipe 63.

[0040] A fixing platform is provided on the top of the main unit to fix the evaporator and processing components. The rear side wall, right limiting wall, left limiting wall and support wall of the fixing platform form an enclosing collection chamber, which realizes the collection and discharge of residual water of the processing components and wastewater from cleaning the evaporator without the need for a special collection structure. While ensuring the function of the snow melting machine, the overall size of the snow melting machine can be reduced, making the snow melting machine lightweight and compact.

[0041] Furthermore, the main unit 91 includes a bottom cover 1, a support frame 2, a motor mounting bracket 3, a front side plate 71, a right side plate 72, a left side plate 73, and a rear side plate 74. The support frame 2 is disposed above the bottom cover 1, forming a mounting cavity for the main unit 91 between the support frame 2 and the bottom cover 1. The front side plate 71, right side plate 72, left side plate 73, and rear side plate 74 are disposed around the main unit 91 to cover and shield the bottom cover 1, the support frame 2, and components such as the condenser 41 and the compressor 42 located between the bottom cover 1 and the support frame 2. The motor mounting bracket 3 is disposed on top of the support frame 2, and the motor mounting bracket 3 and the support frame 2 together constitute the mounting platform of the main unit 91. A power assembly 93 is disposed inside the motor mounting bracket 3.

[0042] The processing assembly 5 includes a mixing chamber 51, a chamber cover 52, and a stirring paddle 53. The stirring paddle 53 is fitted outside the evaporator 43 and is driven by the power assembly 93. The mixing chamber 51 is fitted outside the stirring paddle 53 and is sealed to the fixed platform, so that the mixing chamber 51 forms a processing cavity for containing and processing food ingredients. The food ingredients are cooled and processed by the evaporator 43 in the mixing chamber 51 and are tumbled and mixed under the push of the stirring paddle 53 to achieve uniform processing. The top of the mixing chamber 51 has an opening for feeding materials, and the chamber cover 52 covers and closes the opening of the mixing chamber 51.

[0043] like Figures 3-6 As shown, the rear end of the support frame 2 forms the fixed wall 21, the right limiting wall 22 and the left limiting wall 23 are formed on both sides of the support frame 2, and the front end of the support frame 2 forms a supporting wall 24, which together with the bottom wall of the support frame 2 forms the collecting cavity 6. Preferably, the bottom surface of the collecting cavity 6 gradually decreases from the rear end to the front end, so that the liquid in the collecting cavity 6 can flow freely from the rear end to the front end. A drain hole 61 is provided at the front end of the collecting cavity 6, and a first sleeve 62 is provided on the bottom side of the drain hole 61. Preferably, the drain pipe 63 is made of a soft material to facilitate the connection of the drain pipe 63 to the outside of the first sleeve 62, and also to facilitate the arrangement of the drain pipe 63 in the main unit 91, avoiding the restriction of other components from affecting the arrangement of the drain hole 61, thereby affecting the discharge of liquid in the collecting cavity 6.

[0044] like Figure 5As shown, the bottom of the main unit 91 is provided with a water outlet 64. Above the water outlet 64, a third sleeve 66 is provided, which communicates with the drain pipe 63. Liquid in the collection chamber 6 is discharged from the main unit 91 through the drain hole 61, drain pipe 63, and water outlet 64. Preferably, a second sleeve 65 is also provided at the bottom of the water outlet 64. The main unit 91 is also provided with a wastewater installation groove 67 at the water outlet 64. The snow melting machine also includes a wastewater box 8 detachably installed in the wastewater installation groove 67. The wastewater box 8 has a wastewater chamber 81 and a wastewater outlet 82. When the wastewater box 8 is installed in place, the wastewater outlet 82 corresponds to the water outlet 64, allowing the wastewater box 8 to receive wastewater discharged from the water outlet 64. By setting a third sleeve, the drain pipe can be easily connected to the outlet at the bottom, allowing the outlet to be arranged according to the structure inside the mounting cavity of the main unit, rather than having to correspond to the drain hole. A wastewater box is installed at the bottom of the outlet to collect wastewater discharged from the collection cavity, preventing wastewater from being directly discharged onto the operating table. Furthermore, the wastewater box can be easily disassembled for cleaning. Furthermore, a second sleeve is installed at the bottom outer side of the outlet. This second sleeve extends towards the wastewater outlet to prevent wastewater flowing into the wastewater box from splashing out. Additionally, the main unit can be connected to an external guide water pipe via the second sleeve. Thus, when the user needs to clean the evaporator, a significant amount of water is usually required. The cleaned wastewater collects in the collection chamber and is eventually discharged from the main unit through the outlet. However, the volume of the wastewater box is often insufficient to collect the cleaned wastewater. By directly installing a guide water pipe at the second sleeve to connect with an external drainage space—for example, directly guiding it into the user's home drainage system—or using a large-capacity bucket or other container, the discharged wastewater can be fully collected. This method is convenient and results in a cleaner product.

[0045] like Figures 3-7 As shown, the bottom of the mixing chamber 51 is also provided with a support base 54, preferably, the support base 54 is provided with a locking groove 55. When the processing component 5 is installed on the fixed platform, the support base 54 abuts against the support wall 24. The main unit 91 also includes a locking component 25 disposed on the support wall 24. Figure 4As shown, the support wall 24 is provided with a locking hole 241. The locking assembly 25 includes a locking button 251 and a latch 252 disposed at the locking hole 241. The latch 252 can be inserted into the locking groove 55 to lock the processing assembly 5. The user can press the locking button 251, which will cause the latch 252 to disengage from the locking groove 55, thereby unlocking the processing assembly 5. The support base can reliably abut against the processing assembly to better support it. Correspondingly, the processing assembly is usually provided with a support base that abuts against the support wall. The support base can also abut against the operating table when the mixing chamber is placed on the operating table to ensure that the mixing chamber can be stably placed on the operating table.

[0046] like Figure 6 , Figure 7 , Figure 8 As shown, the right limiting wall 22 and the left limiting wall 23 extend upwards on both sides of the main unit 91, so that the right limiting wall 22 and the left limiting wall 23 overlap with the mixing chamber 51 in the vertical direction. The inner side of the right limiting wall 22 is provided with a right limiting groove 221, and the inner side of the left limiting wall 23 is provided with a left limiting groove 231. Limiting ribs 511 are provided on the outer surfaces of both sides of the mixing chamber 51. When the mixing chamber 51 is fixedly engaged with the right limiting wall 22 and the left limiting wall 23, the limiting ribs 511 are inserted into the right limiting groove 221 and the left limiting groove 231 respectively. At the same time, the support base 54 is locked into the locking structure 251 to achieve a locking connection of the processing component 5, so that the processing component 5 is reliably fixed on the fixing platform of the main unit 91. Because the right and left limiting walls overlap with the mixing chamber on both sides, they wrap around both sides of the mixing chamber, ensuring reliable fixation of the mixing chamber and completely collecting residual water formed outside the mixing chamber. This prevents residual water from condensing and dripping onto the operating table, improving the cleanliness and hygiene of the snow melting machine.

[0047] like Figure 8 As shown, the right limiting wall 22 at least partially overlaps with the evaporator 43 in vertical height. Preferably, the right limiting wall 22 and the left limiting wall 23 are close to the center height of the evaporator 43. This arrangement ensures that when the processing assembly 5 is removed, the right and left limiting walls can effectively wrap around the evaporator, preventing cleaning water from splashing out from both sides during cleaning and effectively blocking the cleaning water, allowing wastewater to be completely collected by the collection chamber.

[0048] In this application, a fixing platform is typically installed on the top of the main unit to secure the processing component. Furthermore, the fixing platform utilizes a fixing wall, a right limiting wall, a left limiting wall, and a supporting wall to surround, fix, and limit the processing component, ensuring a more reliable and compact fixation on the top of the main unit. This reduces the overall size of the snow melting machine and facilitates direct operation and loading / unloading of the processing component by the user. Moreover, the fixing wall, right limiting wall, left limiting wall, and supporting wall define a collection cavity at the bottom of the processing component. Even after the processing component is removed, the collection cavity remains at the bottom of the evaporator, enabling the collection of both residual water from the processing component and wastewater from cleaning the evaporator. Ultimately, this allows the snow melting machine to reliably and effectively collect both wastewater and residual water without adding additional functional components. Therefore, this application provides a snow melting machine product with a compact structure, minimal functional integration, reliable and easy installation and disassembly of the processing component, and reliable wastewater collection.

[0049] Understandably, the drain hole can be set in different positions depending on the arrangement of the processing components and the arrangement of other components in the host. For example, the drain hole can also be set in the middle of the bottom of the collection cavity, and correspondingly, the bottom wall of the collection cavity is inclined from both ends to the middle.

[0050] Understandably, the main unit can also extend upwards from the left and right side panels and shield both sides of the processing assembly to shield residual water on the outside of the processing assembly and guide it to the collection chamber. Furthermore, the left and right side panels overlap the evaporator in vertical height to effectively shield and guide cleaning wastewater during the cleaning of the evaporator.

[0051] Understandably, the main unit is equipped with a drain pipe integrated with the bottom cover or support, and connected to the support or bottom cover, so as to drain the wastewater in the collection chamber.

[0052] Understandably, the bottom or side of the host is provided with a through hole, and the drain pipe extends directly from the through hole to discharge wastewater.

[0053] Understandably, the front panel is provided with an embedded, integrally formed drain pipe. When the front panel is fixedly connected to the bottom cover and the support frame, the drain pipe is connected to the drain hole and water outlet of the support frame and the bottom cover, respectively, to discharge the wastewater in the collection chamber.

[0054] In the description of this application, it should be understood that directional terms such as "front," "back," "up," "down," "left," "right," "horizontal," "vertical," "horizontal," and "top," "bottom," etc., indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings. They are used only for the convenience of describing this application and simplifying the description. Unless otherwise stated, these directional terms do not indicate or imply that the device or component referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as limiting the scope of protection of this application. The directional terms "inner" and "outer" refer to the inner and outer contours of each component itself. For example, in this application, "front" and "back" are usually determined by the position of the user when operating the snow melting machine product. The side where the user directly operates the snow melting machine is the front side of the snow melting machine, while the side of the snow melting machine away from the user when placed is the rear side of the snow melting machine.

[0055] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if a device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures, but this does not imply that the actual device is inverted. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other orientations, rotated 90 degrees, or in other orientations, and the spatial relative descriptions used herein will be interpreted accordingly.

[0056] Furthermore, it should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special definition and therefore should not be construed as limiting the scope of protection of this application.

[0057] The above description is merely a preferred embodiment of this application and an explanation of the technical principles employed. Those skilled in the art should understand that the scope of this application is not limited to technical solutions formed by specific combinations of the above-described technical features, but should also cover other technical solutions formed by arbitrary combinations of the above-described technical features or equivalent features without departing from the application's concept. For example, technical solutions formed by substituting the above features with (but not limited to) technical features with similar functions disclosed in this application will not be listed here.

Claims

1. A snow melting machine which is convenient to use, comprising a main machine, a refrigeration assembly and a processing assembly arranged on the main machine, characterized in that, The host is internally formed with a mounting cavity, and the top of the host is provided with a fixing table, the refrigeration assembly comprises a condenser, a compressor and an evaporator which are communicated by pipelines, the condenser and the compressor are arranged in the mounting cavity, the fixing table comprises a fixing wall located at the rear side, left and right limiting walls which extend forward from both sides of the fixing wall, and a support wall located at the front side and connected with the left and right limiting walls, the evaporator is fixed at the rear end of the fixing wall and extends forward in the transverse direction, the processing assembly is fixedly connected with the fixing wall at the rear end and is sleeved outside the evaporator, the processing assembly is limitedly connected with the left and right limiting walls respectively, the support wall supports the processing assembly at the front end, the fixing wall, the left and right limiting walls, the support wall and the shell of the host enclose to form a collecting cavity located at the bottom of the processing assembly, the bottom of the collecting cavity is provided with a drain hole, and the host further comprises a drain pipe arranged in the mounting cavity and communicating the collecting cavity with an external space.

2. The portable snow melter of claim 1, wherein The bottom surface of the collecting cavity gradually decreases from the rear to the front, and the drain hole is located at the front part of the collecting cavity.

3. The portable snow melter of claim 1, wherein The left and right limiting walls extend upward and overlap with the processing assembly in the vertical direction, and the left and right limiting walls and the processing assembly are provided with limiting structures which are mutually buckled.

4. The portable snow melter of claim 3, wherein The left and right limiting walls at least partially overlap with the evaporator in the vertical height.

5. The portable snow melter of claim 1, wherein The bottom of the processing assembly is further provided with a support seat which cooperates with the support wall, and the support seat abuts against the support wall.

6. The easy-to-use snow melting machine as described in claim 5, characterized in that, The support wall and the support seat are further provided with a lock assembly which locks the processing assembly.

7. The portable snow melter of claim 1, wherein, The bottom side of the drain hole is further provided with a first sleeve pipe which is connected with the drain pipe.

8. The portable snow melter of claim 1, wherein, The bottom of the host is provided with a water outlet which communicates with the drain pipe, and the snow melting machine further comprises a wastewater box arranged at the water outlet, and the wastewater box is provided with a wastewater cavity which communicates with the water outlet.

9. The portable snow melter of claim 8, wherein the snow melter is configured to be placed on the ground and the snow melter is configured to melt snow and ice on the ground. The bottom of the water outlet is further provided with a second sleeve pipe which extends outward.

10. The portable snow melter of claim 1, wherein, The host comprises a bottom cover, a side plate, a supporting frame and a motor fixing frame, the supporting frame is arranged above the bottom cover and is fixedly connected with the bottom cover, the motor fixing frame is arranged at the top rear side of the supporting frame, and the supporting frame and the motor fixing frame enclose to form the collecting cavity.