Transverse extrusion type ice cream machine

By designing a transverse extrusion structure in the ice cream machine, the problems of large heights and incomplete extrusion of ice cream are solved, and convenient feeding and efficient extrusion of ice cream are achieved.

CN222982398UActive Publication Date: 2025-06-17NINGBO TT SMART TECH CO LTD
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Patent Information

Application Number
CN202421591592.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-05
Publication Date
2025-06-17
Estimated Expiration
2034-07-05

AI Technical Summary

Technical Problem

It is difficult for existing ice cream machines to take into account both the feeding port and the discharge port at a suitable height, resulting in a large height size of the equipment and is not conducive to completely extruding the ice cream in the inner liner, causing waste.

Method used

A transverse extrusion ice cream machine is designed, the inner liner is fixed laterally in the fuselage, and the front end is equipped with an open port, the feeding channel and the discharge channel are arranged on the front side of the fuselage and are connected to the open upper and lower parts of the inner liner, so that the stirring and extrusion members can be rotated simultaneously through the gear pair transmission.

Benefits of technology

The distance between the feed channel and the discharge channel is shortened, the equipment height size is reduced, and both feeding and feeding are taken into account, and the ice cream in the inner liner can be completely extruded, reducing waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a transverse extrusion type ice cream machine, belongs to an ice cream manufacturing technology, and aims to solve the problems that an existing ice cream machine is difficult to consider that a feeding port and a discharging port are at proper heights so as to feed and receive materials, and the whole equipment is large in height and size and is not beneficial to completely extruding ice cream in an inner container. The inner container is transversely fixed in the machine body, the opening is formed in the front end of the inner container, the feeding channel is arranged on the front side of the machine body and connected with the upper portion of the opening of the inner container, and the discharging channel is arranged on the front side of the machine body and connected with the lower portion of the opening of the inner container, so that the distance between the feeding channel and the discharging channel is shortened, and the height of equipment is reduced; material feeding and material receiving are both considered. The stirring component is transversely arranged in the inner container, the extruding component is transversely arranged at the bottom of the inner container, and the extruding component and the stirring component are in transmission through the gear pair, so that ice cream in the inner container, particularly ice cream adhered to the inner wall of the inner container, is gathered to the bottom of the inner container by the stirring component during working, and is completely extruded by the extruding component.
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Description

Technical Field

[0001] The utility model belongs to the ice cream manufacturing technology, and particularly relates to a horizontal extrusion type ice cream machine. Background Art

[0002] Existing ice cream machines have the following structural forms:

[0003] 1. The inner container is vertically arranged, and the extrusion member stirs in the inner container and pushes the made ice cream out of the device.

[0004] 2. The inner container is vertically arranged, and the extrusion member rotates coaxially and in the opposite direction to the stirring member through a gearbox at the center of the inner container, and the extrusion member pushes the finished ice cream out of the device.

[0005] 3. The inner container is horizontally arranged, there is a storage bucket above the inner container, the stock solution is supplemented into the inner container by the self-weight of the slurry and atmospheric pressure, and the extrusion member in the middle of the inner container pushes the finished ice cream out of the device.

[0006] For the ice cream machines with the above structures, the distance between the feeding port and the discharging port is large, it is difficult to take into account that both the feeding port and the discharging port are at appropriate heights for feeding and receiving materials, and the overall height dimension of the device is large. Moreover, it is not conducive to completely extruding the ice cream in the inner container, resulting in waste. Summary of the Utility Model

[0007] The technical problem to be solved and the technical task proposed by the utility model are to overcome the defects existing in the prior art, such as it is difficult to take into account that both the feeding port and the discharging port are at appropriate heights for feeding and receiving materials, the overall height dimension of the device is large, and it is not conducive to completely extruding the ice cream in the inner container. A horizontal extrusion type ice cream machine is provided, aiming to shorten the distance between the feeding channel and the discharging channel, reduce the height dimension of the device, take into account feeding and receiving materials, and completely extrude the ice cream in the inner container during use.

[0008] To achieve the above purpose, the horizontal extrusion type ice cream machine of the utility model is characterized by including:

[0009] A fuselage;

[0010] An inner container, which is horizontally fixed in the fuselage, is cylindrical, has an open front end and is closed at the rear end by a rear wall;

[0011] A stirring member, which is horizontally placed in the inner container;

[0012] An extrusion member, which is horizontally placed at the bottom of the inner container and is driven by a gear pair with the stirring member;

[0013] A feeding channel, which is arranged on the front side of the fuselage and is connected to the upper part of the open end of the inner container;

[0014] A discharging channel, which is arranged on the front side of the fuselage and is connected to the lower part of the open end of the inner container;

[0015] The discharge valve assembly includes an interlocked valve plug and a handle. The valve plug is located in the discharge channel. Operating the handle moves the valve plug in the discharge channel to open or close the discharge channel.

[0016] In the present utility model, the inner tank is horizontally fixed in the fuselage. The front end of the inner tank is provided with an open mouth. The feeding channel is arranged on the front side of the fuselage and connected to the upper part of the open mouth of the inner tank. The discharge channel is arranged on the front side of the fuselage and connected to the lower part of the open mouth of the inner tank, thereby shortening the distance between the feeding channel and the discharge channel, reducing the height dimension of the equipment, and taking into account feeding and receiving materials.

[0017] In the present utility model, the stirring member is horizontally placed in the inner tank, and the extrusion member is horizontally placed at the bottom of the inner tank and driven by a gear pair with the stirring member. During operation, the stirring member gathers the ice cream in the inner tank, especially the ice cream adhering to the inner wall of the inner tank, to the bottom of the inner tank, and the extrusion member extrudes it all.

[0018] Preferably, the stirring member includes an inner end support ring, an outer end support ring, and stirring blades. The stirring blades are connected between the inner end support ring and the outer end support ring to rotate along the cylindrical inner wall of the inner tank with the inner end support ring and the outer end support ring. The gear pair includes an inner gear provided on the inner end support ring and an outer gear provided on the extrusion member. The outer gear meshes with the inner gear. Accordingly, the slow rotation of the stirring member and the fast rotation of the extrusion member are realized. The fast-rotating extrusion member is conducive to quickly extruding the ice cream in the inner tank, while the slow-rotating stirring member can keep the ice cream in the inner tank in contact with the inner wall of the inner tank to maintain its appropriate temperature and shape.

[0019] Preferably, the inner end support ring includes two axially spaced retaining edges. The inner gear is located between the two retaining edges. The outer gear is axially limited by the two retaining edges to keep meshing with the inner gear. Accordingly, it can ensure that the inner gear and the outer gear remain meshed, and the stirring member and the extrusion member rotate synchronously during operation.

[0020] Preferably, a guide wheel is provided on the rear wall of the inner tank, and the guide wheel supports on the circumferential surface of at least one retaining edge. Accordingly, the stirring member rotates flexibly, especially maintaining the positional relationship between the stirring member and the inner tank, which is conducive to gathering the ice cream in the inner tank to the bottom of the inner tank.

[0021] Preferably, a front cover member is assembled on the front side of the fuselage. The front ends of the stirring member and the extrusion member are both radially supported by the front cover member and rotatably cooperate with the front cover member. The stirring member and the extrusion member are both axially limited between the front cover member and the rear wall of the inner tank. Accordingly, it ensures that the stirring member and the extrusion member rotate synchronously and flexibly and maintain precise cooperation with the inner tank.

[0022] Preferably, the front cover member is detachably assembled to the front side of the fuselage. When the front cover member is detached from the front side of the fuselage, the opening of the inner container is exposed. This facilitates the removal of the stirring member and the extrusion member from the inner container for cleaning, and also facilitates the cleaning of the inner container.

[0023] Preferably, a through hole is provided in the rear wall of the inner container. The rear end of the extrusion member extends backward through the through hole to receive power. Accordingly, it is convenient to remove the extrusion member from the inner container and reinstall the extrusion member into the inner container.

[0024] Preferably, the space between the rear wall of the inner container and the extrusion member is sealed by a sealant squeezed between them. This prevents the ice cream in the inner container from leaking out from here.

[0025] Preferably, a front cover member is assembled to the front side of the fuselage. The discharge channel is provided in the discharge member, and the feeding channel is provided in the feeding member. Both the discharge member and the feeding member are detachably arranged on the front cover member. Accordingly, it is convenient to remove the feeding member and the discharge member from the front cover assembly, remove the front cover member from the fuselage for cleaning, and also convenient to remove the stirring member and the extrusion member from the inner container for cleaning and to clean the inner container.

[0026] Preferably, the handle is rotatably arranged and is provided with a cam. The cam is connected to the valve plug through a connecting rod so that when the handle is flipped, the cam and the connecting rod drive the valve plug to move.

[0027] In the present utility model, the inner container is horizontally fixed in the fuselage. The front end of the inner container is provided with an opening. The feeding channel is arranged on the front side of the fuselage and is connected to the upper part of the opening of the inner container. The discharge channel is arranged on the front side of the fuselage and is connected to the lower part of the opening of the inner container. Thereby, the distance between the feeding channel and the discharge channel is shortened, the height dimension of the equipment is reduced, and both feeding and discharging are taken into account.

[0028] In the present utility model, the stirring member is horizontally placed in the inner container, and the extrusion member is horizontally placed at the bottom of the inner container and is driven by a gear pair with the stirring member. During operation, the stirring member gathers the ice cream in the inner container, especially the ice cream adhering to the inner wall of the inner container, to the bottom of the inner container, and the extrusion member extrudes it all.

[0029] The inner end support ring of the present utility model includes two axially spaced baffles. The internal gear is located between the two baffles. The external gear is axially limited by the two baffles to maintain meshing with the internal gear. This can ensure that the internal gear and the external gear remain meshed, and the stirring member and the extrusion member rotate synchronously during operation. In particular, it is convenient to remove the stirring member and the extrusion member together from the inner container or install them into the inner container together while maintaining the gear transmission relationship between the stirring member and the extrusion member. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 is an axonometric view of the horizontal extrusion type ice cream machine of the present utility model;

[0031] Figure 2 is Figure 1 Schematic diagram of the horizontal extrusion ice cream machine shown by turning the handle to open the discharge channel;

[0032] Figure 3 is Figure 1 Schematic cross-sectional view of the state shown;

[0033] Figure 4 is Figure 2 Schematic cross-sectional view of the state shown;

[0034] Figure 5 is Figure 4 Partial enlarged schematic view of the A-A cross-section of;

[0035] Figure 6 Schematic diagram of the positional relationship between the stirring member and the extrusion member of the present utility model;

[0036] Figure 7 is Figure 1 Exploded schematic view of the structure of the ice cream machine shown;

[0037] Figure 8 Schematic cross-sectional view of the stirring member and the extrusion member of the present utility model driven by a gear pair;

[0038] Figure 9 Schematic cross-sectional view of the discharge valve assembly and the discharge channel of the present utility model in cooperation;

[0039] Explanation of the reference numerals in the figure:

[0040] 100 body, 101 heat insulation cover, 102 opening;

[0041] 200 inner container, 201 open end, 202 rear wall, 203 guide wheel;

[0042] 300 stirring member, 301 inner end support ring, 302 outer end support ring, 303 stirring blade, 304 edge stop, 305 internal gear, 306 circumferential surface, 307 axis of the stirring member;

[0043] 400 extrusion member, 401 shaft, 402 helical wing plate, 403 external gear, 404 seal, 405 axis of the extrusion member;

[0044] 500 front cover member, 501 elastic piece, 502 rod-shaped latch, 503 hook, 504 first sealing ring, 505 bayonet;

[0045] 510 feeding member, 511 feeding channel, 512 feeding port, 513 second sealing ring;

[0046] 520 discharging member, 521 discharging channel, 522 discharging port, 523 third sealing ring, 524 pin;

[0047] The 530 discharge valve assembly, 531 valve plug, 532 connecting rod, 533 handle, 534 cam, 535 sealing sleeve, 536 end cover;

[0048] The 540 decorative cover;

[0049] The 600 motor. Specific embodiments

[0050] In order to make the objectives, technical solutions and advantages of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are some but not all of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts shall fall within the protection scope of the present utility model.

[0051] The terms "comprising" and "having" in the description and claims of the present utility model and any variations thereof are intended to cover non-exclusive inclusion. For example, a method or product including a series of technical features does not necessarily limit to those clearly listed technical features, but may also include other technical features not clearly listed that can be included in the method or product.

[0052] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "front", "rear", "upper", "lower", "left", "right", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation of the present utility model. Among them, the directions of "upper" and "lower", "left" and "right", "front" and "rear" are opposite.

[0053] In the description of the present utility model, it should be understood that the technical features defined by the terms "first", "second", "third", etc. with a sequential concept are only for clearly describing the defined technical features, so that the defined technical features can be clearly distinguished from other technical features, rather than representing such naming in actual implementation, and thus should not be construed as a limitation of the present utility model.

[0054] The present utility model will be introduced in detail below with reference to specific embodiments and the accompanying drawings.

[0055] Such as Figures 1 to 5 、 Figure 7As shown in the figure, the horizontal extrusion type ice cream machine includes a machine body 100, an inner container 200, a stirring member 300, an extrusion member 400, a front cover member 500, a feeding member 510, a discharging member 520, a discharging valve assembly 530, a motor 600, a refrigeration device, and a heat preservation cover 101.

[0056] The machine body 100 is the basis of the entire ice cream machine and is used to install and carry other structures of the ice cream machine. Generally, the machine body is an assembled structure for facilitating the assembly of other structures of the ice cream machine.

[0057] The inner container 200 is preferably made of aluminum to meet food hygiene requirements and has good heat conduction performance. The inner container 200 is horizontally fixed inside the machine body. The inner container 200 is cylindrical, with an open end 201 at its front end and its rear end closed by a rear wall 202. The open end 201 corresponds to the opening 102 on the front side of the machine body. Guide wheels 203 are provided on the rear wall 202 of the inner container on the same circumference. The rear wall 202 of the inner container is provided with through holes.

[0058] The refrigeration device is used to provide cold energy to the inner container, keeping the inner container at a lower temperature to cool the ice cream slurry added to the inner container into ice cream that can be output from the discharging port. The refrigeration device can be a compressor type refrigeration device, an electronic refrigeration device, or a refrigeration device with other structural forms, which is not limited in the present utility model. The cold energy output end of the refrigeration device contacts the inner container to provide cold energy to the inner container. For heat preservation and to avoid heat loss, a heat preservation cover 101 is provided inside the machine body 100. The inner container 200 is located inside the heat preservation cover 101, and heat preservation materials are filled in the space between the heat preservation cover and the inner container.

[0059] The stirring member 300 is horizontally placed inside the inner container 200. The stirring member 300 includes an inner end support ring 301, an outer end support ring 302, and stirring blades 303. The stirring blades are connected between the inner end support ring and the outer end support ring to rotate along the cylindrical inner wall of the inner container as the inner end support ring and the outer end support ring rotate. The stirring blades 303 are circumferentially spaced apart between the inner end support ring and the outer end support ring. Figure 6 There are two stirring blades in the structure. As Figure 6 、 Figure 8 shown, the inner end support ring 301 includes two axially spaced flanges 304, and an internal gear 305 is provided between the two flanges. Moreover, the guide wheels 203 are supported on the circumferential surfaces 306 of the two flanges to ensure the rotation of the stirring member and its assembly relationship with the inner container. The outer end support ring at the front end of the stirring member 300 extends into the blind hole part of the front cover member 500, enabling the stirring member to be radially supported by the front cover member and rotatably cooperate with the front cover member. Moreover, the stirring member 300 is axially limited between the front cover member 500 and the rear wall 202 of the inner container to restrict the axial movement of the stirring member during rotation.

[0060] The extrusion member 400 is horizontally disposed at the bottom of the inner tank 200, and the axis 405 of the extrusion member is parallel to the axis 307 of the stirring member. Figure 6 The extrusion member in Figure 6 is composed of continuous spiral vanes 402 distributed on the shaft 401. Therefore, when the extrusion member rotates around its axis in one direction, the spiral vanes can squeeze and push the ice cream in the inner tank towards the discharge channel. To transmit power, an external gear 403 is provided at the rear end of the extrusion member 400. The external gear 403 and the internal gear 305 form a pair of gear pairs. Accordingly, the external gear meshes with the internal gear to realize the transmission between the extrusion member and the stirring member. Moreover, the number of teeth of the internal gear is more than that of the external gear. When the extrusion member and the stirring member are driven by the gear pair, the angular velocity of the extrusion member is greater than that of the stirring member. Thus, when the extrusion member quickly extrudes the ice cream, the stirring member slowly stirs the ice cream to stir the ice cream in the inner tank evenly. The rear end of the extrusion member 400 extends backward out of the inner tank through the through hole of the rear wall 202 of the inner tank to be connected to the motor 600 to receive power. Preferably, for the convenience of connection and disassembly, it is advisable that the rear end of the extrusion member is in spline fit with the motor. Moreover, the rear wall 202 of the inner tank and the extrusion member 400 are sealed by a seal 404 squeezed between the two.

[0061] The front end of the extrusion member 400 is inserted into the hole of the front cover member 500 like a shaft, so that the extrusion member is radially supported by the front cover member and is in rotational fit with the front cover member. The extrusion member 400 is axially limited between the front cover member 400 and the rear wall 202 of the inner tank to restrict the axial movement of the extrusion member when it rotates.

[0062] The contour of the open end 201 is larger than both the contour of the extrusion member 400 and the contour of the stirring member 300. This is reflected in that the axial projection contour of the open end 201 is larger than both the axial projection contour of the extrusion member 400 and the axial projection contour of the stirring member 300, enabling the stirring member 300 and the extrusion member 400 to be taken out of the inner tank and inserted into the inner tank through the open end 201.

[0063] The front cover member 500, the feeding member 510, the discharging member 520, and the discharge valve assembly 530 are assembled into one body.

[0064] In the illustrated structure, the front cover member 500 is in a cylindrical shape and is detachably assembled to the front side of the fuselage 100 through a clamping structure. As Figures 4 - 5 and Figure 7As shown, on each of the left and right sides of the inner cavity of the front cover member 500, a rod-shaped latch 502 extending in the front-rear direction is assembled through a spring piece 501. The rear end of the rod-shaped latch has an outward-facing hook 503, and the hook protrudes from the outer wall of the front cover member through the through hole. When the front cover member 500 is pushed backward corresponding to the inner container, the hooks 503 of the two rod-shaped latches can hook the fuselage 100, whereby the front cover member is assembled to the fuselage, and a first sealing ring 504 seals between the rear end of the front cover member 500 and the edge of the open mouth 201 of the inner container. When it is desired to remove the front cover member, as Figure 5 shown by the arrow in, press the front end of the rod-shaped member in the indicated direction to disengage the hook 503 from the fuselage, then the front cover member can be removed from the fuselage. As Figure 7 shown, when the front cover member is detached from the front side of the fuselage, the open mouth 201 of the inner container is exposed, so as to take out the stirring member and the extrusion member for cleaning and to clean the inner container.

[0065] The feeding member 510 is provided with a feeding channel 511, and the feeding channel 511 has an upward-facing feeding port 512. The feeding member is assembled to the front cover member by a sliding insertion method. The feeding member can be first assembled to the front cover member and then assembled to the fuselage together with the front cover member, or the front cover member can be first assembled to the fuselage and then the feeding member can be assembled to the front cover member. During disassembly, the feeding member can be first detached from the fuselage together with the front cover member, and then the feeding member can be detached from the front cover member, or the feeding member can be first detached from the front cover member and then the front cover member can be detached from the fuselage. In the assembled state, the feeding channel 511 is located at the front side of the fuselage and is connected to the upper part of the open mouth 202 of the inner container, and a second sealing ring 513 seals between the rear end of the feeding member and the front cover.

[0066] The discharging member 520 is provided with a discharging channel 521, and the discharging channel has a downwardly deflected discharging port 522. The discharging member is assembled to the front cover member by a sliding insertion method. In the illustrated structure, the discharging member can be first assembled to the front cover member and then assembled to the fuselage together with the front cover member, or the front cover member can be first assembled to the fuselage and then the discharging member can be assembled to the front cover member. During disassembly, due to the obstruction of the discharging member, it is not convenient to press the rod-shaped latch, so it is advisable to first detach the discharging member from the front cover member and then detach the front cover member from the fuselage. In the assembled state, the discharging channel 521 is located at the front side of the fuselage and is connected to the lower part of the open mouth of the inner container, and a third sealing ring 523 seals between the rear end of the discharging member and the front cover.

[0067] The discharge valve assembly 530 includes a linked valve plug 531, a connecting rod 532 and a handle 533. The valve plug is located in the discharging channel 521 like a piston and can move back and forth. As Figure 3 shown, when the valve plug moves to the rear end of the discharging channel, the discharging channel is closed. As Figure 4When the shown valve plug moves to the front end of the discharge channel, the discharge channel is opened, and the ice cream from the inner container is discharged through the discharge channel and the discharge port in the direction shown by the arrow in the figure. The handle 533 is provided with a cam 534. The rear end of the connecting rod 532 is connected to the valve plug, and the front end of the connecting rod is rotatably connected to the cam 534. By flipping the handle, the cam and the connecting rod drive the valve plug to move in the discharge channel to open or close the discharge channel. As Figure 9 shown, for sealing, the valve plug 531 integrally extends a sealing sleeve 535 towards the handle direction, and the front end of the sealing sleeve is pressed by the end cover 536 at the front end of the discharge channel 521 to achieve sealing. Preferably, the valve plug and the sealing sleeve are made of silica gel. In view of the above-mentioned assembly relationship between the discharge valve assembly and the discharge channel, the discharge valve assembly and the discharge member are integrally assembled on the front cover member or disassembled from the front cover member.

[0068] To ensure the assembly relationship between the feeding member 510 and the discharging member 520 and the front cover member 500, the discharging member is provided with a pin 524, and the front cover member is provided with a bayonet 505. When the discharging member is assembled on the front cover member, the pin and the bayonet are clamped together. The feeding member 510 is held in the assembled position by being pressed by a decorative cover 540 clamped to the discharging member 520. The clamping between the decorative cover and the discharging member can adopt the same clamping structure as that between the discharging member and the front cover member. In other embodiments, the feeding member can also be directly clamped on the front cover member.

[0069] For cleaning the inner container, the extrusion member, and the stirring member, the front cover member, the feeding member, and the discharging member do not need to be disassembled. At this time, water is added to the inner container through the feeding port, the extrusion member and the stirring member are rotated, and the discharge channel is opened to release the water in the inner container. Repeating this way can achieve cleaning.

[0070] For this ice cream machine, the prepared ice cream slurry is added to the inner container through the feeding port, and the refrigeration device cools the ice cream inner container to a low temperature to make ice cream. After making the ice cream, the discharge channel is opened, and the extrusion member slowly pushes the ice cream out of the machine to complete the production. Since both the feeding port and the discharging port are located on the front side of the fuselage and are kept at a relatively close distance, it is convenient to add materials and receive materials during use, and the height dimension of the equipment is reduced.

[0071] When cleaning is required, the front cover member is disassembled from the fuselage, and the extrusion member and the stirring member can be taken out from the open mouth of the inner container. Similarly, the extrusion member and the stirring member are installed back into the inner container from the open mouth of the inner container, and then the front cover assembly, the feeding member, and the discharging member are installed.

[0072] The inner container, the stirring member, and the extrusion member of the present utility model are horizontally arranged, which means that their axes are horizontally arranged during use.

Claims

1. Horizontal extrusion ice cream machine, characterized by include: fuselage(100); An inner liner (200) is transversely fixed in the fuselage, is cylindrical in shape, has an opening (201) at its front end, and is closed by a rear wall (202) at its rear end; A stirring member (300) is disposed transversely in the inner container; An extrusion member (400) is disposed transversely at the bottom of the inner container and is driven by the stirring member (300) via a gear pair; A feeding channel (511), which is arranged at the front side of the fuselage and connected to the open upper part of the inner container; A discharge channel (521), which is arranged at the front side of the body and connected to the open lower part of the inner container; The discharge valve assembly (530) comprises a linked valve plug (531) and a handle (533), wherein the valve plug is located in the discharge channel, and the operating handle moves the valve plug in the discharge channel to open or close the discharge channel.

2. The horizontal extrusion ice cream machine according to claim 1, characterized in that: The stirring member (300) comprises an inner end support ring (301), an outer end support ring (302) and a stirring blade (303), wherein the stirring blade is connected between the inner end support ring and the outer end support ring so as to rotate along the cylindrical inner wall of the inner container along with the inner end support ring and the outer end support ring; the gear pair comprises an internal gear (305) provided on the inner end support ring and an external gear (403) provided on the extrusion member, and the external gear meshes with the internal gear.

3. The horizontal extrusion ice cream machine according to claim 2, characterized in that: The inner end support ring (301) comprises two axially spaced ribs (304), the inner gear (305) is located between the two ribs, and the outer gear (403) is blocked by the two ribs and axially limited to maintain meshing with the inner gear.

4. The horizontal extrusion ice cream machine according to claim 3, characterized in that: The rear wall (202) of the inner container is provided with a guide wheel (203), and the guide wheel is supported on the circumferential surface (306) of at least one retaining edge.

5. The horizontal extrusion ice cream machine according to any one of claims 1 to 4, characterized in that: A front cover component (500) is mounted on the front side of the body (100); the front ends of the stirring component (300) and the extrusion component (400) are radially supported by the front cover component (500) and are rotationally matched with the front cover component; the stirring component (300) and the extrusion component (400) are axially limited between the front cover component (500) and the rear wall (202) of the inner container.

6. The horizontal extrusion ice cream machine according to claim 5, characterized in that: The front cover component (500) is detachably mounted on the front side of the fuselage (100); when the front cover component (500) is detached from the front side of the fuselage, the opening (201) of the inner tank is exposed.

7. The horizontal extrusion ice cream machine according to claim 6, characterized in that: A through hole is provided on the rear wall (202) of the inner container, and the rear end of the extrusion component (400) extends backwards out of the inner container through the through hole to receive power.

8. The horizontal extrusion ice cream machine according to claim 7, characterized in that: The rear wall (202) of the liner and the extruded member (400) are sealed by a sealing member (404) squeezed between the two.

9. The horizontal extrusion ice cream machine according to claim 1, characterized in that: A front cover component (500) is mounted on the front side of the body (100); a discharge channel (521) is arranged on the discharge component (520); a feeding channel (511) is arranged on the feeding component (510); and both the discharge component and the feeding component are detachably arranged on the front cover component.

10. The horizontal extrusion ice cream machine according to claim 1 or 9, characterized in that: The handle (533) is rotatably configured and is provided with a cam (534), and the cam (534) is connected to the valve plug (531) via a connecting rod (532) so that when the handle is turned over, the valve plug is moved by the cam and the connecting rod.