Fruit paste ice cream machine
By designing the power component of the fruit puree ice cream machine, fruit can be directly made into fruit puree ice cream, solving the problem of traditional ice cream machines requiring the addition of chemical additives and enabling healthy and diverse ice cream making.
Patent Information
- Application Number
- CN202520485298.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-03-19
AI Technical Summary
Traditional ice cream machines require the addition of large amounts of chemical additives and stabilizers during the production process, which affects health benefits and flavor diversity.
A fruit puree ice cream machine was designed. Utilizing power components including motor one, motor two, a lifting platform, and a lifting rotor, the machine directly produces fruit puree ice cream through the rotation of the main shaft and the coordination of the lifting platform, without the need for any chemical additives or stabilizers.
It enables healthy, natural, and diverse ice cream making. The equipment is compact and suitable for home and commercial use.
Smart Images

Figure CN223745683U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to cooking machine technical field especially is related to a fruit puree ice cream machine. BACKGROUND
[0002] With the improvement of people's living standards, the taste and quality of food are also increasingly improved. Ice cream, as a popular frozen dessert, its types and production methods are constantly innovating. However, the traditional ice cream machine often needs to add a large amount of additives and stabilizers in the production process to ensure the taste and stability of ice cream, which not only affects the health properties of ice cream, but also limits the diversity of its taste to some extent. SUMMARY
[0003] In order to meet the needs of consumers for healthy, natural and diversified ice cream, we have developed a fruit puree ice cream machine. The machine can directly use fresh fruits to make fruit puree ice cream without adding any chemical additives and stabilizers.
[0004] The utility model provides a fruit puree ice cream machine, include: casing, container for holding frozen material, it is directly or indirectly with the detachable connection of casing, main shaft, it is connected on the casing, is used for executing rotation to the direction of the container and stretches out, power assembly, all or part is located in the casing, is used for driving the main shaft executes stretch out and rotation simultaneously, cutter, it is used for connecting on the main shaft, follows the main shaft stretch out and rotation, gradually shavings the frozen material in the container and breaks;
[0005] The power assembly includes motor one, motor two, lifting platform and lifting rotor; the motor one is used for driving the main shaft to rotate; the motor two is used for driving the lifting platform to execute lifting; the lifting rotor is rotatably connected on the lifting platform and is coaxially connected with the main shaft.
[0006] The utility model has the advantages that: only need to put fruits, milk and the like into the container and put into the refrigerator to cool, after the cooling is completed, the container is mounted on the fruit puree ice cream machine, when running, the cutter breaks the frozen material layer by layer, its taste is similar to ice cream, without adding any chemical additives and stabilizers; and the equipment is small, suitable for family use and commercial site production.
[0007] Further, the power assembly further includes a shaft sleeve, the shaft sleeve is coaxially arranged on the main shaft; the shaft sleeve is rotatably connected with the casing;
[0008] The motor one drives the sleeve to rotate through a transmission mechanism; the sleeve is provided with at least one axial guide rail which penetrates the sleeve; the lifting rotor is axially slidably connected to the sleeve; and the lifting rotor is provided with a sliding block which is connected to the main shaft through the guide rail.
[0009] The sleeve drives the sliding block to rotate in the rotating process, the sliding block drives the main shaft to rotate, and the sliding block can be lifted along the sleeve under the driving of the lifting platform, so that the main shaft can be lifted and rotated, and the overall structure is simple and reasonable.
[0010] Further, the motor one drives the main shaft to rotate through a transmission mechanism; the transmission mechanism one comprises a pulley one, a pulley two and a transmission belt; the pulley one is arranged on the output shaft of the motor one, the pulley two is arranged on the sleeve, and the transmission belt is used for transmission between the pulley one and the pulley two.
[0011] The motor one drives the pulley one to rotate, the pulley one drives the pulley two to rotate through the transmission belt, the pulley two drives the sleeve to rotate, and the sleeve drives the lifting rotor and the main shaft to rotate through the sliding block. The overall structure is simple and reasonable.
[0012] Further, the motor two drives the lifting platform two to lift through a transmission mechanism two; the transmission mechanism two comprises a threaded rod and a nut; the nut is arranged on the lifting platform; the threaded rod is rotatably connected in the shell and is parallel to the main shaft; the motor two drives the threaded rod to rotate; and the threaded rod is threadedly connected with the nut.
[0013] The motor two is used for driving the threaded rod to rotate, the threaded rod drives the nut to lift, the nut drives the lifting platform to lift, the lifting platform drives the lifting rotor to lift, the lifting rotor drives the main shaft to lift through the sliding block, and the lifting rotor and the main shaft rotate synchronously. The overall structure is simple and reasonable.
[0014] Further, the shell is further provided with a guide rod, the guide rod, the threaded rod and the main shaft are parallel; the lifting platform is slidably connected to the guide rod and the sleeve on both sides respectively; and the middle position is threadedly connected to the threaded rod through the nut.
[0015] The sleeve plays the role of the guide rod, which is equivalent to two guide rods on both sides and a threaded rod in the middle, so that the lifting platform runs more stably. However, the sleeve is in rotary motion, and the lifting rotor rotates synchronously with the sleeve, so as to avoid abrasion of the sleeve. The running is stable, and the structure is simple and reasonable.
[0016] Further, the casing is internally provided with an inner cavity two, the inner cavity two is internally provided with an upper supporting piece and a lower supporting piece; the lower supporting piece is fixed with the bottom of the inner cavity two;
[0017] The lower end of the guide rod is fixed with the lower supporting piece, and the upper supporting piece is fixed at the top of the guide rod; the upper and lower ends of the threaded rod and the shaft sleeve are respectively rotatably connected with the upper supporting piece and the lower supporting piece.
[0018] The beneficial effect of the above further scheme is that the upper supporting piece and the lower supporting piece are used to connect the guide rod, the threaded rod and the shaft sleeve, so that the overall structure is more stable, and the assembly, casing disassembly and other work are more convenient.
[0019] Further, the lower supporting piece is fixed at the bottom of the inner cavity two and a transmission cavity is formed between the two; the transmission mechanism one is located in the transmission cavity.
[0020] The beneficial effect of the above further scheme is that the closed transmission cavity avoids the leakage of the lubricating oil of the transmission mechanism one. The lower supporting piece serves as a cover of the transmission cavity while serving as a supporting piece, and the overall structure is simple and reasonable, and the assembly is convenient.
[0021] Further, the casing comprises a base, a supporting part and a machine box; the supporting part and the container are arranged side by side on the base, the machine box is fixed on the supporting part, and the container is arranged below the machine box.
[0022] The inside of the supporting part is provided with an inner cavity one, the inside of the machine box is provided with an inner cavity two, and the inner cavity one and the inner cavity two are communicated; at least a part of the motor one is arranged in the inner cavity one.
[0023] The beneficial effect of the above further scheme is that the motor one is used to drive the main shaft to rotate, and the main shaft usually needs to rotate at high speed and has a large torque in work, so the motor one is usually heavy. Because the inner cavity one is inside the supporting part, its position is lower, and the motor one is arranged in the inner cavity one, so that the center of gravity of the equipment is lowered, and the possibility of tipping is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 It is a schematic view of the overall structure of the fruit puree ice cream machine of the embodiment.
[0025] Figure 2 It is a sectional view of the fruit puree ice cream machine of the embodiment.
[0026] Figure 3 It is a schematic view of the structure of the fruit puree ice cream machine of the embodiment after removing part of the casing.
[0027] Figure 4 It is a schematic view of the structure of the fruit puree ice cream machine of the embodiment after removing part of the casing. Figure 3 It is a schematic view of the structure of the fruit puree ice cream machine of the embodiment after removing part of the casing.
[0028] Figure 5 To be Figure 3 A schematic diagram of the structure after the upper and lower support components are removed.
[0029] Figure 6 for Figure 5 Enlarged view of point A in the middle.
[0030] Figure 7 This is a schematic diagram of the bushing and pulley 2 in this embodiment.
[0031] Figure 8 for Figure 4 A diagram showing the view from behind. Detailed Implementation
[0032] The present invention will be further described below with reference to the embodiments.
[0033] like Figures 1 to 8 As shown, this embodiment discloses a fruit puree ice cream machine, including: a housing 1; a container 2 for holding frozen substances, which is directly or indirectly detachably connected to the housing 1; a main shaft 3 connected to the housing 1 for rotating and extending towards the container 2; a power assembly 4, which is wholly or partially located inside the housing 1 for driving the main shaft 3 to simultaneously extend and rotate; and a blade 5 connected to the main shaft 3, which follows the extension and rotation of the main shaft 3 to gradually scrape and break up the frozen substances in the container 2.
[0034] The power assembly 4 includes a first motor 41, a second motor 42, a lifting platform 43, and a lifting rotor 44; the first motor 41 is used to drive the main shaft 3 to rotate; the second motor 42 is used to drive the lifting platform 43 to perform lifting; the lifting rotor 44 is rotatably connected to the lifting platform 43 and coaxially connected to the main shaft 3.
[0035] Simply put the fruit, milk, etc. into container 2 and put it in the refrigerator to chill. After chilling, put container 2 into the fruit puree ice cream machine. When running, the blades break up the frozen material layer by layer. Its taste is similar to ice cream. No chemical additives or stabilizers are needed. The equipment is also small and suitable for home use and commercial on-site production.
[0036] The power assembly 4 further comprises a shaft sleeve 45 coaxially arranged on the main shaft 3; the shaft sleeve 45 is rotationally connected with the casing 1; the motor one 41 drives the shaft sleeve 45 to rotate through a transmission mechanism one 46; the shaft sleeve 45 is provided with at least one axial guide rail 451 penetrating the shaft sleeve 45; the lifting rotor 44 is axially slidably connected on the shaft sleeve 45; and the lifting rotor 44 is provided with a sliding block 441 connected with the main shaft 3 through the guide rail 451. The shaft sleeve 45 drives the sliding block 441 to rotate in the rotating process, and the sliding block 441 drives the main shaft to rotate; and the sliding block 441 can be lifted along the shaft sleeve 45 under the driving of the lifting platform 43, thereby driving the main shaft 3 to work in a self-lifting and rotating mode, and the overall structure is simple and reasonable.
[0037] The motor one 41 drives the main shaft 3 to rotate through a transmission mechanism one 46; the transmission mechanism one 46 comprises a pulley one 461, a pulley two 462 and a transmission belt 463; the pulley one 461 is arranged on the output shaft of the motor one 41, the pulley two 462 is arranged on the shaft sleeve 45, and the transmission belt 463 is used for transmission between the pulley one 461 and the pulley two 462. The motor one 41 drives the pulley one 461 to rotate, the pulley one 461 drives the pulley two 462 to rotate through the transmission belt 463, the pulley two 462 drives the shaft sleeve 45 to rotate, and the shaft sleeve 45 drives the lifting rotor 44 and the main shaft 3 to rotate through the sliding block 441. The overall structure is simple and reasonable.
[0038] The motor two 42 drives the lifting platform 43 to perform lifting through a transmission mechanism two 47; the transmission mechanism two 47 comprises a threaded rod 471 and a nut 472; the nut 472 is arranged on the lifting platform 43, the threaded rod 471 is rotationally connected in the casing 1 and parallel to the main shaft 3, the motor two 42 drives the threaded rod 471 to rotate, and the threaded rod 471 is threadedly connected with the nut 472. The motor two 42 is used for driving the threaded rod 471 to rotate, the threaded rod 471 drives the nut 472 to perform lifting movement, the nut 472 drives the lifting platform 43 to perform lifting movement, the lifting platform 43 drives the lifting rotor 44 to perform lifting movement, the lifting rotor 44 drives the main shaft 3 to perform lifting movement through the sliding block 441, and the lifting rotor 44 rotates synchronously with the main shaft 3. The overall structure is simple and reasonable.
[0039] The guide rod 48, the threaded rod 471 and the main shaft 3 are parallel; the lifting platform 43 is slidably connected to the guide rod 48 and the shaft sleeve 45 on both sides and is threadedly connected to the threaded rod 471 at the middle position through the nut 472. The shaft sleeve 45 functions as a guide rod, equivalent to two guide rods on both sides and a threaded rod 471 in the middle, so that the lifting platform 43 runs more smoothly. However, the shaft sleeve 45 rotates, and the lifting rotor 44 rotates synchronously with it, avoiding wear of the shaft sleeve 45. The operation is stable, and the structure is simple and reasonable,
[0040] The inner cavity two 132 is arranged in the casing 1, and the upper support 15 and the lower support 16 are arranged in the inner cavity two 132; the lower support 16 is fixed to the bottom of the inner cavity two 132;
[0041] The lower end of the guide rod 48 is fixed to the lower support 16, and the upper support 15 is fixed to the top of the guide rod 48; the upper and lower ends of the threaded rod 471 and the shaft sleeve 45 are respectively rotatably connected to the upper support 15 and the lower support 16. The upper support 15 and the lower support 16 are used to connect the guide rod 48, the threaded rod 471 and the shaft sleeve 45, so that the overall structure is more stable, and assembly, disassembly of the casing 1 and other work are more convenient.
[0042] The lower support 16 is fixed to the bottom of the inner cavity two 132 and forms a transmission cavity 161 therebetween; the transmission mechanism one 46 is located in the transmission cavity 161. The closed transmission cavity 161 avoids leakage of lubricating oil of the transmission mechanism one 46. The lower support 16 serves as a support and a cover of the transmission cavity at the same time, the overall structure is simple and reasonable, and assembly is convenient.
[0043] The casing 1 comprises a base 11, a support part 12 and a machine box 13; the support part 12 and the container 2 are arranged side by side on the base 11, the machine box 13 is fixed to the support part 12, and the container 2 is arranged below the machine box 13;
[0044] The inner cavity one 121 is arranged in the support part 12, the inner cavity two 132 is arranged in the machine box 13, and the inner cavity one 121 and the inner cavity two 132 are communicated; at least a part of the motor one 41 is arranged in the inner cavity one 121.
[0045] The motor one 41 is used to drive the main shaft 3 to rotate. In work, the main shaft 3 usually needs to rotate at high speed and has large torque, so the motor one 41 is usually heavy. Because the inner cavity one 121 is the inside of the support part 12 and is located lower, the motor one 41 arranged in the inner cavity one 121 lowers the center of gravity of the equipment and reduces the possibility of tilting.
[0046] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A fruit puree ice cream machine characterized by, It includes: The shell (1); container (2) for holding frozen substances, which is directly or indirectly with the shell (1) detachable connection; The main shaft (3) is connected to the shell (1), for performing rotation, and to the direction of the container (2) stretch out; power components (4) are all or part of the shell (1) within, for driving the main shaft (3) while performing stretch out and rotation; cutter (5) for connecting to the main shaft (3), follow the main shaft (3) stretch out and rotation, gradually cut the frozen material in the container (2) broken; The power components (4) include motor one (41), motor two (42), lifting platform (43) and lifting rotor (44); the motor one (41) for driving the main shaft (3) rotation; the motor two (42) for driving lifting platform (43) to perform lifting; the lifting rotor (44) is rotatably connected to the lifting platform (43), and is coaxially connected with the main shaft (3).
2. A fruit puree ice cream machine according to claim 1, characterized in that The power components (4) further include shaft sleeve (45), the shaft sleeve (45) is coaxially arranged on the main shaft (3); the shaft sleeve (45) is rotatably connected with the shell (1); The motor one (41) drives the shaft sleeve (45) to rotate through the transmission mechanism one (46); the shaft sleeve (45) is provided with at least one axial guide rail (451), the guide rail (451) penetrates the shaft sleeve (45) inside and outside; the lifting rotor (44) is axially slidably connected to the shaft sleeve (45); and the lifting rotor (44) is provided with a sliding block (441) penetrating the guide rail (451) and connected with the main shaft (3).
3. A fruit puree ice cream machine according to claim 2, wherein The motor one (41) drives the main shaft (3) to rotate through the transmission mechanism one (46); the transmission mechanism one (46) includes pulley one (461), pulley two (462) and transmission belt (463); the pulley one (461) is arranged on the output shaft of the motor one (41), the pulley two (462) is arranged on the shaft sleeve (45), and the transmission belt (463) is used for transmission between the pulley one (461) and the pulley two (462).
4. A fruit puree ice cream machine according to claim 2, wherein The motor two (42) drives the lifting platform (43) to perform lifting through the transmission mechanism two (47); the transmission mechanism two (47) includes threaded rod (471) and nut (472), the nut (472) is arranged on the lifting platform (43), the threaded rod (471) is rotatably connected in the shell (1), and is parallel to the main shaft (3), the motor two (42) drives the threaded rod (471) to rotate, and the threaded rod (471) is threadedly connected with the nut (472).
5. A fruit puree ice cream machine according to claim 4, wherein The shell (1) is further provided with a guide rod (48), the guide rod (48), the threaded rod (471) and the main shaft (3) are parallel; the lifting platform (43) is slidably connected on the guide rod (48) and the shaft sleeve (45) on both sides, and is threadedly connected on the threaded rod (471) through the nut (472) at the middle position.
6. A fruit puree ice cream machine according to claim 5, wherein The machine shell (1) is internally provided with an inner cavity two (132), the inner cavity two (132) is internally provided with an upper support (15) and a lower support (16); the lower support (16) is fixed with the bottom of the inner cavity two (132); The lower end of the guide rod (48) is fixed with the lower support (16), and the upper support (15) is fixed on the top of the guide rod (48); the upper and lower ends of the threaded rod (471) and the shaft sleeve (45) are respectively rotatably connected with the upper support (15) and the lower support (16).
7. A fruit puree ice cream machine according to claim 6, wherein The lower support (16) is fixed on the bottom of the inner cavity two (132) and forms a transmission cavity (161) therebetween; the transmission mechanism one (46) is located in the transmission cavity (161).
8. A fruit puree ice cream machine as claimed in claim 1, wherein, The machine shell (1) comprises a base (11), a support part (12) and a machine box (13); the support part (12) and the container (2) are arranged side by side on the base (11), and the machine box (13) is fixed on the support part (12), and the container (2) is arranged below the machine box (13); The inner cavity one (121) is arranged in the support part (12), the inner cavity two (132) is arranged in the machine box (13), and the inner cavity one (121) and the inner cavity two (132) are communicated; at least a part of the motor one (41) is arranged in the inner cavity one (121).