Material collecting mechanism for cold drink machine and cold drink machine
By designing a material collection mechanism on the cold drink machine, including a support seat and water connection parts, the problem of materials flowing into the chassis when the cold drink machine is disassembled is solved, and the effective collection and cleaning process of materials is reduced, and the user's comfort and equipment safety are improved.
Patent Information
- Application Number
- CN202422199158.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-08-29
- Filing Date
- 2024-09-06
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-06
AI Technical Summary
When disassembling the cold drink machine, the residual material in the barrel is likely to flow directly into the chassis, causing pollution, increasing cleaning processes, reducing user comfort, and may flow into electrical control devices and lines, posing safety hazards.
A material collection mechanism is designed, including a support seat and a water connection piece. The support seat is installed on the box of the cold drink machine to separate the agitation area and the refrigeration area. The water connection piece is located on one side of the agitation area and is slidably connected to the support seat. The water connection tank is located below the cold drink agitation tank. An external water connection channel is formed between the cold drink agitation tank and the support seat. The channel is connected to the water connection tank to ensure that the material is collected into the water connection tank.
Effectively collect materials flowing out of the cold drink mixing bin, reduce cleaning processes, improve user comfort, avoid material contamination of the chassis, reduce safety hazards of electronic control devices and lines, and facilitate the disassembly and installation of water-connected parts, and improve user experience.
Smart Images

Figure CN223025371U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cold drink machines, in particular to a material collecting mechanism for a cold drink machine and the cold drink machine. Background Art
[0002] In the hot summer, people like to drink cold drinks, such as smoothie machines or ice cream machines, which can better meet people's needs for cold drinks. At present, cold drink machines generally include a machine body, in which a cooling circulation device is installed, and a material barrel, i.e., a cold drink stirring chamber, is provided on the machine body; the evaporator of the cooling circulation device is arranged in the material barrel through the opening of the material barrel, and a stirring device is also arranged in the material barrel, and a discharge tap is arranged on the front side wall of the material barrel. A water receiving part is arranged on the front side wall of the machine body, just below the discharge tap, and the water receiving part can be used to catch excess material flowing out of the discharge tap.
[0003] However, when the above-mentioned cold drink machine is disassembled, the residual material in the barrel is likely to flow directly onto the chassis and cause pollution, resulting in an increase in the cleaning process, reducing the user's comfort, and may even flow into the chassis, causing safety hazards to the electronic control components and circuits in the chassis. Utility Model Content
[0004] The technical problem to be solved by the utility model is to provide a material collecting mechanism for a cold drink machine and a cold drink machine, which can collect materials flowing out of a cold drink mixing bin, reduce cleaning procedures, and improve user comfort.
[0005] In order to solve the above technical problems, the utility model provides a material collecting mechanism for a cold drink machine, including a supporting seat and a water receiving piece, wherein the supporting seat is installed on the box body of the cold drink machine, and the supporting seat is used to separate the cold drink machine into a stirring zone and a refrigeration zone arranged up and down, and the refrigeration zone is arranged in the box body; the stirring zone is provided with a motor seat and a horizontally placed cold drink stirring bin, and the cold drink stirring bin is installed on the motor seat; the supporting seat is provided with a water receiving piece on one side of the stirring zone, and the water receiving piece is slidably connected to the supporting seat, and a water receiving groove is provided in the water receiving piece, and the water receiving groove is located below the cold drink stirring bin; the orthographic projection of the connection between the cold drink stirring machine and the motor seat is located in the water receiving groove.
[0006] As an improvement of the above solution, a driving motor is provided in the motor seat, and the driving motor is drivingly connected to the stirring assembly;
[0007] One end of the cold drink mixing chamber is mounted on the motor seat, and the motor seat and the cold drink mixing chamber are detachably connected.
[0008] As an improvement to the above solution, the width of the notch of the water receiving tank is greater than or equal to the width of the cold drink mixing bin, or the width of the notch of the water receiving tank is greater than or equal to the width of the bottom of the cold drink mixing bin.
[0009] As an improvement to the above solution, an external water receiving channel is formed by enclosing between the cold drink mixing bin and the supporting seat. The external water receiving channel is respectively located within the side edges of the supporting seat, and the external water receiving channel is communicated with the water receiving tank.
[0010] As an improvement to the above solution, at least the lower part of the cold drink mixing bin has a first guiding part, which is formed by extending from the two side walls in the horizontal direction of the cold drink mixing bin towards the middle and obliquely downwards. The orthographic projection of the lowest point of the first guiding part is located in the water receiving tank.
[0011] As an improvement to the above solution, the upper part of the water receiving member is adapted to the shape of the first guiding part, and both the upper part of the water receiving member and the first guiding part are arc-shaped surfaces.
[0012] As an improvement to the above solution, a chute part is provided inside one end of the supporting seat away from the motor seat. One end of the chute part is provided with a through port, and the water receiving member slides into the chute part through the through port.
[0013] As an improvement to the above solution, sliding rail flanges are respectively provided on both side edges of the water receiving member, and the sliding rail flanges are respectively abutted against the inner walls on both sides of the chute part.
[0014] As an improvement to the above solution, first abutting parts are respectively provided on both sides of one end of the water receiving member away from the motor seat. Second abutting parts adapted to the first abutting parts are respectively provided on both sides of the upper part of the through port, and the first abutting parts are abutted against the second abutting parts.
[0015] As an improvement to the above solution, horizontal limiting parts are respectively provided on the inner walls on both sides of one end of the chute part close to the through port, and the horizontal limiting parts are respectively in mating abutment with the tops on both sides of the water receiving member below them.
[0016] As an improvement to the above solution, the water receiving member and the chute part are fixedly connected by a snap-fastening method.
[0017] As an improvement to the above solution, elastic snap-fastening parts are respectively provided on the inner walls on both sides of the through port, snap-fastening grooves adapted to the elastic snap-fastening parts are respectively provided at both ends of the water receiving member, and the elastic snap-fastening parts are snap-fastened with the snap-fastening grooves.
[0018] As an improvement to the above solution, there is a mixing component in the cold drink mixing bin, and the mixing component includes an evaporator and a stirring member.
[0019] As an improvement of the above solution, the refrigeration area includes a compressor, a condenser and a heat dissipation component.
[0020] The present utility model also provides an ice drink machine, which includes the above-mentioned material collection mechanism, and the ice drink machine is a smoothie machine or an ice cream machine.
[0021] The beneficial effects of implementing the present utility model are as follows:
[0022] The present utility model is provided with a water receiving component below the ice drink mixing bin. An external water receiving channel is formed by enclosing between the ice drink mixing bin and the supporting seat. The external water receiving channel is respectively located inside the side edge of the supporting seat, and the external water receiving channel is communicated with the water receiving tank. When the ice drink mixing bin needs to be disassembled after work, the smoothie or liquid flowing out of the ice drink mixing bin will first flow from the connection between the ice drink mixing bin and the supporting seat to the water receiving tank below. During the subsequent process of pulling out the ice drink mixing bin, the materials flowing out of the ice drink mixing bin will stably fall into the water receiving tank below, so as to ensure that all the materials flowing out during disassembly fall into the water receiving tank, realizing the function of collecting smoothie or liquid.
[0023] Secondly, when the collection capacity of the water receiving component is too much, the water receiving component is disassembled from the chute part for discharging materials, and the water receiving component can be reinstalled into the chute part to continue to be used. The overall disassembly and installation are convenient, the practicability is high, and the user experience can be improved.
[0024] In addition, the present utility model uses the supporting seat as the middle support structure of the ice drink machine. Through this supporting seat, the ice drink machine is divided into two functional areas, such as a mixing area and a refrigeration area, so that the overall structure is optimized and arranged with the upper and lower two functional areas. The structure is compact, the overall occupied space and volume are small, and the cost is low. Description of the Drawings
[0025] Figure 1 is a schematic structural diagram of the material collection mechanism of the present utility model for an ice drink machine Figure 1 ;
[0026] Figure 2 is a schematic structural diagram of the material collection mechanism of the present utility model for an ice drink machine Figure 2 ;
[0027] Figure 3 is a schematic structural diagram of the supporting seat of the present utility model;
[0028] Figure 4 is a schematic structural diagram of the water receiving component of the present utility model;
[0029] Figure 5 is a schematic side view structural diagram of the supporting seat, the water receiving component and the ice drink mixing bin of the present utility model;
[0030] Figure 6 yes Figure 5 Schematic diagram of the cross-sectional structure in the AA direction. DETAILED DESCRIPTION
[0031] In order to make the purpose, technical solutions and advantages of the utility model clearer, the utility model will be further described in detail below with reference to the accompanying drawings.
[0032] like Figures 1 to 6 As shown, a specific embodiment of the utility model provides a material collecting mechanism for a cold drink machine, including a supporting seat 1 and a water receiving member 2, wherein the supporting seat 1 is installed on a box body 3 of the cold drink machine, and the supporting seat 1 is used to separate the cold drink machine into a stirring zone 7 and a refrigeration zone 8 arranged up and down, and the refrigeration zone 8 is arranged in the box body; that is, the refrigeration zone 8 is located below the supporting seat 1, and the stirring zone 7 is located above the supporting seat 1.
[0033] The support seat 1 is provided with a water receiving member 2 on one side of the stirring area 7, and the water receiving member 2 is slidably connected to the support seat 1. The water receiving member 2 has a water receiving groove 21 therein, and the water receiving groove 21 is located below the cold drink stirring bin 5 to collect the materials dropped from the upper cold drink stirring bin 5. At the same time, an external water receiving channel 6 is formed between the cold drink stirring bin 5 and the support seat 1, and the external water receiving channel 6 is respectively located in the side edge of the support seat 1, and the external water receiving channel 6 is connected to the water receiving groove 21 to collect the condensed water on the outer walls of the cold drink stirring bin 5 on both sides.
[0034] Among them, the motor assembly includes a motor base 4 and a driving motor 41 arranged in the motor base, and the driving motor 41 is transmission-connected to the stirring assembly; one end of the cold drink stirring chamber 5 is installed on the motor base 4, and the orthographic projection of the connection between the cold drink stirring chamber 5 and the motor base 4 is located in the water receiving trough 21, so as to ensure that when the cold drink stirring chamber 5 is just detached, the residual liquid in the cold drink stirring chamber 5 can accurately fall from the connection to the water receiving trough 21 below.
[0035] The beneficial effects of implementing the embodiments of the utility model are as follows:
[0036] The utility model is provided with a water receiving member 2 below the cold drink mixing bin 5. The orthographic projection of the connection between the cold drink mixing bin 5 and the motor base 4 is located in the water receiving groove 21. An external water receiving channel 6 is formed by enclosing between the cold drink mixing bin 5 and the supporting seat 1. The external water receiving channel 6 is respectively located on both sides of the supporting seat 1, and the external water receiving channel 6 is communicated with the water receiving groove 21. When the cold drink mixing bin 5 needs to be disassembled after work, the ice sand or liquid flowing out of the cold drink mixing bin 5 will first flow from the connection between the cold drink mixing bin 5 and the supporting seat 1 to the lower water receiving groove 21. During the subsequent process of pulling out the cold drink mixing bin 5, the materials flowing out from one end port of the cold drink mixing bin 5 will stably fall along the pulling direction to the lower water receiving groove 21 gradually, so as to ensure that all the materials flowing out during disassembly fall into the water receiving groove 21, realizing the function of collecting ice sand or liquid.
[0037] When the cold drink mixing bin 5 is in the working state, due to the lower internal temperature of the cold drink mixing bin 5, condensed water is formed on its outer wall. The condensed water located in the upper part will flow to the bottom of the cold drink mixing bin 5 through the external water receiving channel 6, and the condensed water located at the bottom of the cold drink mixing bin 5 will fall into the lower water receiving groove 21, so as to further realize the function of liquid collection; in the above way, it can effectively avoid the materials flowing out from polluting other positions of the box body 3, reduce the cleaning process, and improve the use comfort of users and the use safety of the electric control devices and circuits.
[0038] Secondly, when the collection capacity of the water receiving member 2 is too much, the water receiving member 2 is disassembled from the chute part 11 to carry out the discharging work, and the water receiving member 2 can be used continuously by reinstalling it into the chute part 11. The overall disassembly and installation are convenient, the practicability is high, and the use experience of users can be improved.
[0039] In addition, the utility model uses the supporting seat 1 as the middle supporting structure of the cold drink machine. The cold drink machine is divided into two functional areas, such as a mixing area 7 and a refrigeration area 8, by the supporting seat 1. Thus, the overall structure is optimized and arranged with the upper and lower two functional areas, the structure is compact, the overall occupied space and volume are small, and the cost is low.
[0040] Specifically, as Figures 1 to 2 shown, the utility model arranges the supporting seat 1 in the middle of the cold drink machine, arranges the motor assembly in the mixing area 7 above the supporting seat 1, and the motor assembly and the cold drink mixing bin 5 are respectively arranged at the opposite ends in the length direction of the supporting seat 1; the motor base 4 in the motor assembly is installed on the side of the supporting seat 1 far away from the water receiving member 2, while the cold drink mixing bin 5 is located on one side of the supporting seat 1, specifically directly above the water receiving member 2 of the supporting seat 1, so as to ensure the collection effect of the materials.
[0041] Among them, the stirring component in the cold drink stirring bin 5 includes an evaporator 51 and a stirring member 52. One end of the evaporator 51 is installed on the motor base 4, the stirring member 52 is sleeved on the evaporator 51, a stirring drive shaft (not shown in the figure) is provided in the evaporator 51, one end of the stirring drive shaft passes through the evaporator 51 and is in transmission connection with the drive motor 41 in the motor assembly, and the other end of the stirring drive shaft is in transmission connection with the stirring member 52. The liquid raw material in the cold drink stirring bin 5 is made into ice by the provided evaporator 51 to form ice materials; the formed ice materials are scraped by the provided drive motor 41 and the stirring member 52 to form the required ice sand. Preferably, the stirring member 52 is a scraper, but it is not limited thereto.
[0042] The refrigeration area 8 located below the support base 1 includes a compressor 31, a condenser 32 and a heat dissipation member provided in the box body. The compressor 31 is connected to the input end of the condenser 32 through a pipeline, the output end of the condenser 32 passes through the motor base 4 through a pipeline and is connected to the input end of the evaporator 51 located above to provide refrigerant liquid for the evaporator 51 so that the evaporator 51 realizes the refrigeration function; the output end of the evaporator 51 passes through the motor base 4 through a pipeline and is connected to the compressor 31 below to return the high-temperature gas after heat exchange to the compressor 31, thereby realizing the circulating cooling work and ensuring the stable operation of the refrigeration work of the evaporator 51. Among them, the heat dissipation member is a heat dissipation fan (not shown in the figure), and the heat dissipation fan is used to discharge the heat in the refrigeration area 8 to the outside to realize the heat exchange work of the refrigeration area 8.
[0043] The utility model uses the support base 1 as the middle support structure of the cold drink machine, which can optimize the layout of the overall structure of the assembled cold drink machine into two upper and lower functional areas, making the structure of the cold drink machine more compact, with a small overall occupied space and volume, and low cost.
[0044] Preferably, the motor base 4 and the cold drink stirring bin 5 are detachably connected, so as to facilitate the quick disassembly and installation of the cold drink stirring bin 5 and improve the disassembly and installation efficiency.
[0045] Furthermore, in order to prevent the condensed water formed on the outer walls on both sides of the cold drink stirring bin 5 from possibly falling from the bottom of the cold drink stirring bin 5 to outside the area of the water receiving tank 21, that is, falling to other positions of the box body 3, which will lead to an increase in unnecessary cleaning procedures. Such as Figures 5 to 6As shown, the cold drink mixing bin 5 is cylindrical, and the width of the notch of the water receiving tank 21 is greater than or equal to the width of the bottom of the cold drink mixing bin 5, so that when the condensed water drops from any side bottom of the cold drink mixing bin 5, it can stably drop into the water receiving tank 21, thus facilitating the collection function of the required condensed water, eliminating unnecessary cleaning processes, and improving the user's comfort. In other embodiments, the width of the notch of the water receiving tank 21 can also be greater than or equal to the width of the cold drink mixing bin 5 to ensure that the materials dropped from different regularly shaped cold drink mixing bins 5 can stably drop into the water receiving tank 21, thus also realizing the collection function of the materials.
[0046] Preferably, as Figure 1 and Figure 6 shown, at least the lower part of the cold drink mixing bin 5 has a first diversion part 55, and the first diversion part 55 is formed by extending from the two side walls of the cold drink mixing bin 5 in the horizontal direction to the middle and obliquely downward, and the orthographic projection of the lowest part of the first diversion part 55 is located in the water receiving tank. When condensed water forms on the outer walls on both sides of the cold drink mixing bin 5, the formed condensed water can be diverted to the bottom through its own first diversion part 55 and then drop into the lower water receiving tank 21, improving the diversion and collection effect of the condensed water.
[0047] Among them, the upper part of the water receiving member 2 is adapted to the shape of the first diversion part 55, and both the upper part of the water receiving member 2 and the first diversion part 55 are arc-shaped surfaces to facilitate a better diversion effect on the condensed water. The shapes of the upper part of the water receiving member 2 and the first diversion part 55 are not limited to this, and can be specifically adjusted according to actual needs as long as they can achieve the diversion effect.
[0048] Preferably, as Figure 4 and Figure 6 shown, slide rail flanges 22 are respectively provided at both side edges of the water receiving member 2, and the slide rail flanges 22 are respectively in contact with the inner walls on both sides of the chute part 11. By providing the slide rail flanges 22, the contact area with the chute part 11 can be reduced, thereby reducing the contact friction force, improving the sliding installation and sliding disassembly effect of the water receiving member 2, and further facilitating the user to disassemble, install and use.
[0049] In order to limit the water receiving member 2. As Figures 3 to 4As shown, on both sides of one end of the water receiving member 2 away from the motor base 4, there are respectively provided first abutting portions 23, and on both sides of the upper part of the through port 12, there are respectively provided second abutting portions 13 adapted to the first abutting portions 23. When the water receiving member 2 slides into the chute portion 11, the first abutting portions 23 abut against the second abutting portions 13, which can play a limiting role in horizontally inward and vertically upward directions for the water receiving member 2. When the first abutting portions 23 abut against the second abutting portions 13, it means that the assembly of the water receiving member 2 is completed, and the material receiving and collecting work can be carried out. Among them, the first abutting portion 23 is a first inclined portion, and the second abutting portion 13 is a second inclined portion, but it is not limited thereto. In other embodiments, as long as the adapted abutting of the first abutting portion 23 and the second abutting portion 13 can achieve the above-mentioned limiting effect, such as mutually adapted stepped portions or semi-circular portions, etc., there is no excessive limitation here.
[0050] Preferably, in order to play a guiding and installing role for the water receiving member 2. As Figures 3 to 4 shown, on both sides of the inner walls of one end of the chute portion 11 close to the through port 12, there are respectively provided horizontal limiting portions 14, and the horizontal limiting portions 14 respectively cooperate with and abut against the tops of both sides of the water receiving member 2 below them. When the water receiving member 2 is inserted from the through port 12, the lower end surface of the water receiving member 2 abuts against the bottom inner wall of the chute portion 11, the slide rail flanges on both sides of the water receiving member 2 abut against the inner walls on both sides of the chute portion 11, and the tops of the left and right side plates of the water receiving member 2 will abut against the horizontal limiting portions 14. Since the space in the vertical direction is restricted by the horizontal limiting portions 14, the water receiving member 2 can only slide into the chute portion 11 along the slide rail direction of the chute portion 11, thereby realizing the guiding and installing role of the water receiving member 2 and effectively improving the disassembly and installation efficiency of the water receiving member 2.
[0051] In order to realize the quick disassembly and installation function between the water receiving member 2 and the chute portion 11, as Figures 3 to 4 shown, the water receiving member 2 and the chute portion 11 are fixedly connected by a snap-fastening method. Realizing the fixed installation and disassembly between the two by the snap-fastening method can improve the disassembly and installation efficiency of the water receiving member 2, facilitate the user to use, and improve the user's experience.
[0052] Among them, on both sides of the inner walls of the through port 12, there are respectively provided elastic snap portions 15, and at both ends of the water receiving member 2, there are respectively provided snap grooves 24 adapted to the elastic snap portions 15. When the water receiving member 2 is installed, by sliding the water receiving member 2 along the slide rail direction of the chute portion 11 into the chute portion 11 until the first abutting portions 23 of the water receiving member 2 abut against the second abutting portions 13, at this time, the elastic snap portions 15 of the chute portion 11 will be snap-fitted with the snap grooves 24 of the water receiving member 2, thereby realizing the quick fixed connection between the two; when the water receiving member 2 is disassembled, only by pulling the water receiving member 2 to separate the snap grooves 24 from the elastic snap portions 15, the quick disassembly of the water receiving member 2 can be realized, meeting the user's convenient use requirements.
[0053] Preferably, as Figure 1 , Figure 3 and 5 shown, an installation groove 16 is provided inside one end of the supporting base 1, a sliding groove portion 11 is provided inside the installation groove 16, and limiting abutting blocks 17 are respectively provided at the top parts on both sides of one end of the installation groove 16 close to the motor base 4; clamping blocks 53 are respectively provided on both sides of the cold drink stirring bin 5, and the clamping blocks 53 are abutted against one end of the limiting abutting blocks 17 away from the motor base 4 and are abutted against the top part on one side of the installation groove 16. When the cold drink stirring bin 5 is installed on the motor base 4, the clamping blocks 53 on both sides of the cold drink stirring bin 5 will be abutted against the top parts on both sides of the installation groove 16 and slide along the direction of the motor base; when the clamping blocks 53 on both sides of the cold drink stirring bin 5 are respectively abutted against the corresponding limiting abutting blocks 17 on the supporting base 1, a limiting effect in the horizontal inward direction can be achieved. At this time, one end of the cold drink stirring bin 5 has been installed on the motor base 4, and through the above-mentioned horizontal inward limiting structure, the problem that one end of the cold drink stirring bin 5 is excessively pressed on the motor base 4 during installation and causes equipment damage can be avoided. At the same time, the clamping blocks 53 on both sides of the cold drink stirring bin 5 are also abutted against the top parts on both sides of the installation groove 16 to support the cold drink stirring bin 5, thereby facilitating the disassembly and installation of the cold drink stirring bin 5.
[0054] Among them, convex guiding slide rail portions 161 are respectively provided at the top parts on both sides of the installation groove 16, and the guiding slide rail portions 161 are abutted against the clamping blocks 53. When the cold drink stirring bin 5 slides into and is installed on the motor base 4 along the sliding direction of the installation groove 16, the lower end surface of the clamping block 53 will be abutted against the upper end surface of the guiding slide rail portion 161 to reduce the contact friction between the two, thereby improving the sliding effect and facilitating the user to disassemble and install. When the clamping block 53 is abutted against the limiting abutting block 17, the condensation stirring bin 5 has slid in place. At this time, the clamping block 53 is directly abutted against the guiding slide rail portion 161 to support the cold drink stirring bin 5.
[0055] Furthermore, on both inner walls at one end of the installation groove 16 away from the motor base, second diversion parts 9 are respectively provided. An introduction limiting groove 18 is provided in the second diversion part 9. The diversion direction of the second diversion part 9 extends to the water receiving tank 21 to divert the condensed water flowing onto the second diversion part 9 into the lower water receiving tank 21 below, so as to achieve the function of collecting condensed water. The introduction limiting groove 18 is located above the water receiving member 2. A limiting part 19 is provided at one end of the introduction limiting groove 18 close to the motor base 4. On both sides of the bottom of the cold drink stirring bin 5, sliding blocks 54 adapted to the introduction limiting groove are respectively provided. The sliding blocks 54 slide into the introduction limiting groove 18 and abut against the limiting part 19. When the cold drink stirring bin 5 is installed, the two sliding blocks 54 on the cold drink stirring bin 5 will respectively slide into the introduction limiting groove 18, causing the cold drink stirring bin 5 to move along the introduction limiting groove 18 towards the motor base 4. When moving to the required position, the sliding blocks 54 all slide into the introduction limiting groove 18 and abut against the limiting part 19, so as to further play a role in horizontally inward limiting of the cold drink stirring bin 5 and avoid the problem that one end of the cold drink stirring bin 5 is overly pressed on the motor base 4 during installation, resulting in equipment damage.
[0056] Meanwhile, when condensed water forms on the side wall of the cold drink stirring bin 5, a small part of the condensed water will flow along the diversion direction of the second diversion part 9 to the sliding block 51 and the introduction limiting groove 18, and the condensed water located at the sliding block 51 and the introduction limiting groove 18 will flow along the diversion surface of the second diversion part 9 into the lower water receiving tank 21, realizing the all-round function of collecting condensed water and improving the effect of collecting condensed water.
[0057] Among them, the width of the chute part 11 is greater than the widths of the cold drink stirring bin 5 and the water receiving tank 21. At least part of the structure of the cold drink stirring bin 5 (such as the lower part or the bottom of the cold drink stirring bin 5) is located in the chute part 11, so that the liquid dropping from the cold drink stirring bin 5 can drop more stably into the water receiving tank 21, improving the effect of collecting materials. When the bottom of the cold drink stirring bin 5 is located in the installation groove 16, the distance from the water receiving member 2 can be shortened, reducing the sputtering height when the materials drop, and preventing the materials from splashing out of the water receiving tank 21. Therefore, it is beneficial for the ice sand or liquid flowing out of the cold drink stirring bin 5 to all quickly drop from the bottom position into the water receiving member 2 during disassembly, and for the condensed water formed by the cold drink stirring bin 5 during operation to all quickly drop into the water receiving member 2, improving the access and collection effect of the water receiving member 2. Furthermore, it can effectively prevent the flowing materials from dropping to other positions of the box body 3, reducing the cleaning process, and improving the user's comfort and the use safety of the electric control devices and circuits.
[0058] Such as Figures 1 to 2As shown in the figure, the present utility model also provides a cold drink machine, which includes the above-mentioned material collection mechanism. The material collection mechanism is arranged in the middle of the cold drink machine. Above the supporting seat 1 in the material collection mechanism, there is a stirring area 7, which includes a motor seat 4 and a cold drink stirring bin 5. A driving motor 41 is fixed in the motor seat 4. An evaporator 51 and a stirring member 52 are arranged in the cold drink stirring bin 5. The evaporator 51 is installed at one end of the motor seat 4. Below the supporting seat 1, there is a refrigeration area 8, which includes a compressor, a condenser, a heat dissipation member, etc. The cold drink machine of the present utility model uses the supporting seat 1 as the middle support structure of the cold drink machine, and optimizes the layout of the upper and lower two functional areas of the supporting seat 1, so that the overall structure is more compact, occupies less space and volume, and has a low cost.
[0059] At the same time, as Figures 4 to 6 described, the present utility model arranges the water receiving member 2 in the chute portion 11 of the supporting seat 1, so that the water receiving groove 21 in the water receiving member 2 is located directly below the cold drink stirring bin 5. The orthographic projection of the connection between the cold drink stirring bin 5 and the motor seat 4 is located in the water receiving groove 21. An external water receiving channel 6 is formed by enclosing between the cold drink stirring bin 5 and the supporting seat 1. The external water receiving channel 6 is located on both sides of the supporting seat 1 respectively, and the external water receiving channel 6 is communicated with the water receiving groove 21.
[0060] When the cold drink stirring bin 5 needs to be disassembled after work, the ice sand or liquid flowing out of the cold drink stirring bin 5 will first flow from the connection between the cold drink stirring bin 5 and the supporting seat 1 to the lower water receiving member 2. During the subsequent process of pulling out the cold drink stirring bin 5, the materials flowing out of the cold drink stirring bin 5 will stably fall into the lower water receiving groove 21, so as to ensure that all the materials flowing out during disassembly fall into the water receiving groove 21, realizing the function of collecting ice sand or liquid. When the cold drink stirring bin 5 is in the working state, the outer wall of the cold drink stirring bin 5 forms condensed water due to the lower internal temperature. The condensed water will flow along the external water receiving channel 6 to the bottom of the cold drink stirring bin 5, and the condensed water located at the bottom of the cold drink stirring bin 5 will fall into the lower water receiving groove 21, so as to further realize the function of liquid collection; through the above method, it can effectively avoid the materials flowing out from polluting other positions of the box body 3, reduce the cleaning process, and improve the user's use comfort and the use safety of the electric control devices and circuits.
[0061] Secondly, when the collection capacity of the water receiving member 2 is too much, the water receiving member 2 is disassembled from the chute portion 11 for discharging materials. The water receiving member 2 can be reinstalled into the chute portion 11 to continue using. The overall disassembly and installation are convenient, and the practicability is high, which can improve the user's use experience.
[0062] Preferably, the cold drink machine is preferably a smoothie machine or an ice cream machine, but is not limited thereto.
[0063] 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 material collecting mechanism for a cold drink machine, characterized in that: It includes a supporting seat and a water receiving member, wherein the supporting seat is installed on the box body of the cold drink machine, and the supporting seat is used to separate the cold drink machine into a stirring area and a refrigeration area arranged up and down, and the refrigeration area is arranged in the box body; The stirring area is provided with a motor seat and a horizontally placed cold drink stirring chamber, and the cold drink stirring chamber is installed on the motor seat; The support seat is provided with a water receiving member on one side of the mixing area, the water receiving member is slidably connected to the support seat, and the water receiving member has a water receiving groove inside, and the water receiving groove is located below the cold drink mixing bin; The orthographic projection of the connection between the cold drink blender and the motor seat is located in the water receiving trough.
2. The material collecting mechanism according to claim 1, characterized in that: A driving motor is arranged in the motor seat, and the driving motor is drivingly connected to the stirring assembly; One end of the cold drink mixing chamber is mounted on the motor seat, and the motor seat and the cold drink mixing chamber are detachably connected.
3. The material collecting mechanism according to claim 1, characterized in that: The width of the notch of the water receiving trough is greater than or equal to the width of the cold drink mixing bin, or the width of the notch of the water receiving trough is greater than or equal to the width of the bottom of the cold drink mixing bin.
4. The material collecting mechanism according to claim 1, characterized in that: An external water receiving channel is formed between the cold drink mixing chamber and the supporting seat. The external water receiving channels are respectively located in the side edges of the supporting seat, and the external water receiving channels are communicated with the water receiving trough.
5. The material collecting mechanism according to claim 3, characterized in that: The cold drink mixing chamber has a first guide portion at least at the lower part, which is formed by the two side walls of the cold drink mixing chamber in the horizontal direction extending toward the middle and obliquely downward, and the lowest part of the first guide portion is projected in the water receiving trough.
6. The material collecting mechanism according to claim 5, characterized in that: The upper portion of the water receiving member matches the shape of the first flow guide portion, and both the upper portion of the water receiving member and the first flow guide portion are arc-shaped surfaces.
7. The material collecting mechanism according to claim 1, characterized in that: A slide groove is provided in one end of the supporting seat away from the motor seat, and a through opening is provided at one end of the slide groove, and the water receiving member slides into the slide groove through the through opening.
8. The material collecting mechanism according to claim 7, characterized in that: The edges of both sides of the water receiving part are respectively provided with slide rail flanges, and the slide rail flanges are respectively abutted against the inner walls of both sides of the slide groove part.
9. The material collecting mechanism according to claim 7, characterized in that: The water receiving member has first abutment portions on both sides of one end away from the motor seat, and second abutment portions matching the first abutment portions are provided on both sides of the upper part of the through hole, and the first abutment portions abut against the second abutment portions.
10. The material collecting mechanism according to claim 9, characterized in that: Horizontal limiting parts are respectively provided on the inner walls of both sides of one end of the slide groove portion close to the through opening, and the horizontal limiting parts are respectively in abutment with the tops of both sides of the water receiving member therebelow.
11. The material collecting mechanism according to claim 7, characterized in that: The water receiving member is fixedly connected to the chute portion by means of a snap fastener.
12. The material collecting mechanism as claimed in claim 11, characterized in that: The inner walls on both sides of the through hole are respectively provided with elastic buckle parts, and the two ends of the water receiving piece are respectively provided with buckle grooves matched with the elastic buckle parts, and the elastic buckle parts are snap-connected with the buckle grooves.
13. The material collecting mechanism according to any one of claims 1 to 12, characterized in that: The cold drink stirring chamber has a stirring component, which includes an evaporator and a stirring element.
14. The material collecting mechanism according to any one of claims 1 to 12, characterized in that: The refrigeration zone includes a compressor, a condenser and a heat sink.
15. A cold drink machine, characterized in that: It comprises the material collecting mechanism as claimed in any one of claims 1 to 14, wherein the cold drink machine is a smoothie machine or an ice cream machine.