Energy-saving slice ice machine
By designing the ice skate installation components in the ice sheet machine, and using the linkage of the thread groove and the linkage rod, the problem of inconvenience in replacement of the ice skate is solved, and the replacement efficiency is improved and energy consumption is reduced.
Patent Information
- Application Number
- CN202422297192.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-09-20
AI Technical Summary
The existing ice flake machine is inconvenient to replace the ice skate when in use, resulting in increased energy consumption of the machine.
A skate installation assembly is designed, including through holes, threaded grooves and linkage rods. Through the linkage between the threaded rod and the linkage rod, the quick installation and disassembly of the skate and the connecting plate is realized, simplifying the replacement process of the skate.
It improves the efficiency of replacing ice skates, reduces cumbersome operations of parts, and reduces the energy consumption of the machine.
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Figure CN223307134U_ABST
Abstract
Description
Technical Field
[0001] The embodiment of the utility model relates to the technical field of flake ice machines, and in particular to an energy-saving flake ice machine. Background Art
[0002] Flake ice machine is a type of ice making machine, generally industrial ice making machine. The flat shape of flake ice makes it have a larger surface area than other shapes of ice of the same weight. The larger the contact surface area, the better the refrigeration effect. At the same time, it is convenient to store and transport, and is not prone to adhesion during low-temperature storage and spiral transportation.
[0003] Existing Chinese patent authorization publication number: CN110108069A, discloses a variable frequency, high-efficiency, energy-saving flake ice machine, comprising a drive motor, a reducer, and an outer cylinder. The drive motor and reducer are both fixed to the outer cylinder, and the output shaft of the drive motor is drivingly connected to the reducer. An inner cylinder is fixed within the outer cylinder, and a sealed cooling chamber is defined between the outer and inner cylinders. A first cooling pipe is wound around the outer wall of the inner cylinder and abuts against the outer wall of the inner cylinder. The first cooling pipe is located within the cooling chamber, and the cooling chamber has a cooling channel formed by the inner wall of the outer cylinder, the outer wall of the inner cylinder, and the outer wall of the first cooling pipe. The first cooling pipe is connected to the cooling channel, and the first cooling pipe is connected to the coolant outlet of the compressor, and the cooling channel is connected to the coolant inlet of the compressor. This invention transmits cooling energy through a spiral pipe, which has the advantages of high efficiency and easy maintenance.
[0004] The existing flake ice machines still have the following problems when in use: the ice blades of the existing flake ice machines may need maintenance and replacement after being used for a long time. Most of the above-mentioned ice blades have many trivial parts when replaced, which makes the replacement of the ice blades more inconvenient. The blunt ice blades may not be able to scrape off the ice flakes on the inner wall of the machine body in time, which may increase the energy consumption of the machine body.
[0005] Therefore, it is necessary to invent an energy-saving flake ice machine to solve the above problems. Utility Model Content
[0006] To this end, an embodiment of the present invention provides an energy-saving flake ice machine to solve the problem in the prior art that the ice blades of the existing flake ice machines may need maintenance and replacement after a long period of use, and the above-mentioned ice blades mostly have many trivial parts when replaced, which makes the replacement of the ice blades more inconvenient and leads to increased energy consumption of the machine body.
[0007] In order to achieve the above-mentioned purpose, the embodiment of the present invention provides the following technical solutions: an energy-saving flake ice machine, comprising a machine body, an end cover is provided on the top of the machine body, and a discharge port is provided at the bottom of the machine body, a water pumping device is fixedly installed on the outer wall of the machine body, and the water pumping device is connected to the water pumping pipe, and the water pumping pipe is connected to the water distribution plate, the water distribution plate and the end cover are fixedly connected, the top wall of the end cover is fixedly connected to the motor, and the output shaft of the motor is transmission-connected to the drive shaft, and the drive shaft is rotatably connected to the water distribution plate through a bearing, the outer wall of the drive shaft is fixedly connected to a connecting plate, and an ice blade is movably installed between the two connecting plates to ensure that the drive shaft drives the rotation of the movably arranged ice blade, thereby allowing the ice blade to process the ice flakes on the inner wall of the machine body, and further comprising:
[0008] The installation component is that a through hole 1 is provided inside the ice skate, and a threaded groove is provided on the inner wall of the through hole 1, and a threaded rod is connected to the inner thread of the threaded groove, a through hole 2 is provided inside the threaded rod, and a linkage rod is movably connected to the inner part of the through hole 2, and the end of the threaded rod matches the installation port provided inside the connecting plate. By twisting the threaded rod so that the end of the threaded rod provided with a smooth surface matches the inside of the installation port, the movable installation of the ice skate and the connecting plate is completed, ensuring that the subsequent operation of the ice skate can be carried out smoothly.
[0009] Furthermore, in the above technical solution, there are two connecting plates, and the two connecting plates are symmetrically fixedly connected to the outer wall of the drive shaft in the upper and lower directions, and the outer walls of the two connecting plates are in contact with the upper and lower ends of the ice skates to realize rotational connection, and the two connecting plates can realize the movable installation of the ice skates.
[0010] Furthermore, in the above technical solution, the through hole 1 is columnar, and the upper and lower ends of the through hole 1 are both through-shaped, and the inner walls of the upper and lower ends of the through hole 1 are provided with thread grooves of equal height to ensure smooth movement of the two sets of threaded rods.
[0011] Furthermore, in the above technical solution, the number of the threaded rods is two, and the two threaded rods are symmetrically arranged in the upper and lower parts, the thread directions of the outer rings of the two threaded rods are different, and the two threaded rods are threadedly connected in the two thread grooves;
[0012] The height of the threaded rod is smaller than the height of the thread groove in threaded connection therewith, so that when the upper threaded rod is moved, the two groups of threaded rods move synchronously in the corresponding thread grooves under the linkage action of the linkage rod.
[0013] Furthermore, in the above technical solution, the outer ring of the threaded rod is provided with a smooth surface, the upper end of the threaded rod at the upper position is provided with a smooth surface with the same height as the connecting plate, and the lower end of the threaded rod at the lower position is provided with a smooth surface with the same height as the connecting plate. This facilitates the matching of the smooth ends of the upper and lower threaded rods with the mounting port, thereby completing the installation operation of the connecting plate and the ice skates.
[0014] Furthermore, in the above technical solution, the linkage rod is composed of a columnar rod body and square protrusions fixedly connected to the two side walls of the columnar rod body, and the outer wall of the linkage rod is in contact with the inner wall of the second through hole to achieve a sliding connection, and the second through hole is set through the inside of the threaded rod;
[0015] The outer ring of the middle section of the linkage rod is rotatably connected to the inner wall of the through hole 1 through a bearing, so that when the threaded rod on one side is rotated, the two threaded rods can rotate synchronously under the action of the linkage rod.
[0016] Furthermore, in the above technical solution, the inner diameter of the mounting opening is larger than the outer diameter of the threaded rod, and the inner diameter of the mounting opening is smaller than the outer diameter of the ice skates, thereby ensuring that the size of the mounting opening will not affect the installation operation of the ice skates.
[0017] Furthermore, in the above technical solution, ten sets of auxiliary movable wheels are fixedly connected to the inner wall of the mounting port, and the ten sets of auxiliary movable wheels are distributed in a circular shape with equal angles, and the outer walls of the auxiliary movable wheels are in contact with the smooth outer surface of the threaded rod that is movably sleeved inside the mounting port and are in sliding connection, which can ensure that after the ice skates and the connecting plate are movably mounted through the threaded rod, the rotation of the ice skates is not affected.
[0018] The embodiment of the utility model has the following advantages:
[0019] The utility model uses a plug-in with the same shape as the linkage rod, inserts the plug-in into the second through hole provided inside the upper threaded rod, and drives the rotation of the threaded rod. At this time, the two groups of threaded rods rotate synchronously, but the thread directions of the outer rings of the two groups of threaded rods are different, which causes the two groups of threaded rods to move towards each other or away from each other, making it convenient for the ends of the threaded rods to match the mounting openings provided inside the connecting plate at the corresponding positions, thereby completing the movable installation of the ice blade and the connecting plate, and subsequently facilitating the ice blade to cut ice flakes on the inner wall of the machine body, making the use of the machine body more energy-saving and convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for the embodiments or the description of the prior art. Obviously, the drawings described below are merely illustrative, and those skilled in the art can, without inventive effort, derive other implementation drawings based on the provided drawings.
[0021] The structures, proportions, sizes, etc. illustrated in this specification are intended solely to complement the contents disclosed herein and to facilitate understanding and reading by persons familiar with the art. They are not intended to limit the conditions under which the present invention may be implemented and therefore have no substantive technical significance. Any structural modifications, changes in proportions, or adjustments in size, without affecting the efficacy and objectives of the present invention, shall remain within the scope of the technical contents disclosed herein.
[0022] Figure 1 This is a three-dimensional diagram of the overall structure of the utility model;
[0023] Figure 2 This is a three-dimensional diagram of the internal structure of the machine body of the utility model (partially cut away);
[0024] Figure 3 For this utility model Figure 2 Schematic diagram of the structure magnification effect at point A in the middle;
[0025] Figure 4 This is an exploded view of the connection structure between the ice skate and the connecting plate of the utility model;
[0026] Figure 5 This is a three-dimensional diagram of the internal structure of the ice skate of the present invention (partially cut away);
[0027] Figure 6 For this utility model Figure 5 Schematic diagram of the magnified effect of the structure at point B in the middle.
[0028] In the figure: 1. Machine body; 2. End cover; 3. Discharge port; 4. Pumping device; 5. Pumping pipe; 6. Water distribution plate; 7. Motor; 8. Drive shaft; 9. Connecting plate; 10. Ice skate; 11. Mounting assembly; 111. Through hole 1; 112. Threaded groove; 113. Threaded rod; 114. Through hole 2; 115. Linkage rod; 116. Mounting port; 12. Auxiliary movable wheel. DETAILED DESCRIPTION
[0029] The following describes the implementation of the present invention through specific embodiments. Those skilled in the art can readily understand the other advantages and benefits of the present invention from the contents disclosed in this specification. Obviously, the embodiments described are only a portion of the embodiments of the present invention, not all of them. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without inventive effort are also within the scope of protection of the present invention.
[0030] The utility model provides Figure 1-6 The energy-saving flake ice machine shown includes a machine body 1, an end cover 2 is provided on the top of the machine body 1, and a discharge port 3 is provided at the bottom of the machine body 1. A water pumping device 4 is fixedly installed on the outer wall of the machine body 1, and the water pumping device 4 is connected to the water pumping pipe 5, and the water pumping pipe 5 is connected to the water distribution plate 6, and the water distribution plate 6 is fixedly connected to the end cover 2. The top wall of the end cover 2 is fixedly connected to a motor 7, and the output shaft of the motor 7 is transmission-connected to a drive shaft 8, and the drive shaft 8 is rotatably connected to the water distribution plate 6 through a bearing. The outer wall of the drive shaft 8 is fixedly connected to a connecting plate 9, and an ice blade 10 is movably installed between the two connecting plates 9 to ensure that the drive shaft 8 drives the movably arranged ice blade 10 to rotate, thereby allowing the ice blade 10 to process the ice flakes on the inner wall of the machine body 1. The machine also includes:
[0031] The installation component 11, the interior of the ice skate 10 is provided with a through hole 111, and the inner wall of the through hole 111 is provided with a threaded groove 112, and the internal thread of the threaded groove 112 is connected to a threaded rod 113, and the interior of the threaded rod 113 is provided with a through hole 2 114, and the interior of the through hole 2 114 is movably connected to a linkage rod 115, so that the rotation of the threaded rod 113 on one side can drive the two threaded rods 113 symmetrically above and below to rotate synchronously, and the end of the threaded rod 113 matches the installation port 116 provided inside the connecting plate 9. By twisting the threaded rod 113, the smooth end of the threaded rod 113 matches the inside of the installation port 116, thereby completing the movable installation of the ice skate 10 and the connecting plate 9, ensuring that the subsequent operation of the ice skate 10 is carried out smoothly.
[0032] In order to ensure that the upper and lower ends of the ice blade 10 are stably connected to the connecting plate 9, two connecting plates 9 are provided, and the two connecting plates 9 are symmetrically fixedly connected to the outer wall of the drive shaft 8. The outer walls of the two connecting plates 9 are in contact with the upper and lower ends of the ice blade 10 to achieve a rotational connection. The two connecting plates 9 are installed in a limited position for the two ends of the ice blade 10, which ensures the stability of the installation of the ice blade 10 without affecting the subsequent operation of the ice blade 10.
[0033] In order to ensure the stable movement of the threaded rod 113, the through hole 111 is columnar, and the upper and lower ends of the through hole 111 are through-shaped, and the inner walls of the upper and lower ends of the through hole 111 are provided with thread grooves 112 of equal height to ensure the smooth movement of the two groups of threaded rods 113. There are two threaded rods 113, and the two threaded rods 113 are symmetrically arranged up and down. The thread directions of the outer circles of the two threaded rods 113 are different, and the two threaded rods 113 are threadedly connected in the two thread grooves 112. In this way, when one threaded rod 113 is turned to rotate, the other threaded rod 113 rotates synchronously, and the two groups of threaded rods 113 can move toward or away from each other.
[0034] In order to ensure that the threaded rod 113 has sufficient space to move, the height of the threaded rod 113 is less than the height of the threaded groove 112 to which it is threadedly connected. In this way, when the upper threaded rod 113 is moved, the two groups of threaded rods 113 have sufficient space to move synchronously in the corresponding threaded groove 112 under the linkage action of the linkage rod 115.
[0035] In order to ensure the synchronous rotation of the two groups of symmetrically arranged threaded rods 113, the linkage rod 115 consists of a columnar rod body and square protrusions fixedly connected to the two side walls of the columnar rod body, and the outer wall of the linkage rod 115 is in contact with the inner wall of the second through hole 114 to achieve a sliding connection, and the second through hole 114 is set to pass through the inside of the threaded rod 113. The outer ring of the rod in the middle section of the linkage rod 115 is rotationally connected to the inner wall of the through hole 1 111 through a bearing. In this way, when the threaded rod 113 on one side is rotated, the two threaded rods 113 can rotate synchronously under the action of the linkage rod 115.
[0036] By using a plug-in with the same shape as the linkage rod 115, the plug-in is inserted into the second through hole 114 set inside the upper threaded rod 113 through the installation port 116, and the threaded rod 113 is rotated. Under the linkage action of the linkage rod 115, the two groups of threaded rods 113 rotate synchronously. Since the thread directions of the outer circles of the two groups of threaded rods 113 are different, the two groups of threaded rods 113 can move toward or away from each other, making it convenient for the ends of the threaded rods 113 to match with the installation ports 116 set inside the connecting plate 9 at the corresponding positions.
[0037] In order to ensure that the threaded rod 113 does not affect the rotation of the ice skate 10 after being flexibly connected to the connecting plate 9, the outer ring of the threaded rod 113 is provided with a smooth surface, the upper end of the threaded rod 113 at the upper position is provided with a smooth surface with the same height as the connecting plate 9, and the lower end of the threaded rod 113 at the lower position is provided with a smooth surface with the same height as the connecting plate 9. This makes it convenient for the smooth ends of the upper and lower threaded rods 113 to match with the mounting port 116, completing the installation operation of the connecting plate 9 and the ice skate 10 without affecting the subsequent rotation operation of the ice skate 10.
[0038] The inner diameter of the mounting opening 116 is larger than the outer diameter of the threaded rod 113, and the inner diameter of the mounting opening 116 is smaller than the outer diameter of the ice skate 10, so as to ensure that the size of the mounting opening 116 will not affect the installation operation of the ice skate 10. The inner wall of the mounting opening 116 is fixedly connected with ten groups of auxiliary movable wheels 12, and the ten groups of auxiliary movable wheels 12 are distributed in a circular shape with equal angles, and the outer wall of the movable wheel of the auxiliary movable wheel 12 is in contact with the smooth outer surface of the threaded rod 113 that is movably sleeved inside the mounting opening 116 and presents a sliding connection. It can ensure that after the ice skate 10 and the connecting plate 9 are movably installed, the rotation of the ice skate 10 synchronously drives the threaded rod 113 threadedly connected thereto to move inside the mounting opening 116, so that the rotation of the ice skate 10 is not affected.
[0039] Although the present invention has been described in detail above using general descriptions and specific embodiments, it will be apparent to those skilled in the art that modifications or improvements may be made to the present invention. Therefore, such modifications or improvements, without departing from the spirit of the present invention, are within the scope of protection claimed herein.
Claims
1. An energy-saving flake ice machine, comprising a machine body (1), characterized in that: The top of the machine body (1) is provided with an end cover (2), and the bottom of the machine body (1) is provided with a discharge port (3), the outer wall of the machine body (1) is fixedly installed with a pumping device (4), and the pumping device (4) is connected to the pumping pipe (5), and the pumping pipe (5) is connected to the water distribution plate (6), the water distribution plate (6) and the end cover (2) are fixedly connected, the top wall of the end cover (2) is fixedly connected with a motor (7), and the output shaft of the motor (7) is transmission-connected with a drive shaft (8), and the drive shaft (8) is rotatably connected to the water distribution plate (6) through a bearing, the outer wall of the drive shaft (8) is fixedly connected with a connecting plate (9), and an ice blade (10) is movably installed between the two connecting plates (9), and further comprising: The installation component (11) is provided with a through hole (111) inside the ice skate (10), and the inner wall of the through hole (111) is provided with a threaded groove (112), and the internal thread of the threaded groove (112) is connected to a threaded rod (113), the interior of the threaded rod (113) is provided with a through hole (114), and the interior of the through hole (114) is movably connected to a linkage rod (115), and the end of the threaded rod (113) matches the installation port (116) provided inside the connecting plate (9).
2. The energy-saving flake ice machine according to claim 1, characterized in that: The connecting plates (9) are provided in two pieces in number, and the two connecting plates (9) are fixedly connected to the outer wall of the driving shaft (8) in a symmetrical manner up and down, and the outer walls of the two connecting plates (9) are in contact with the upper and lower ends of the ice skate (10) to realize rotational connection.
3. The energy-saving flake ice machine according to claim 1, characterized in that: The through hole (111) is columnar, and the upper end and the lower end of the through hole (111) are both through-shaped, and the inner walls of the upper and lower ends of the through hole (111) are both provided with thread grooves (112) of equal height.
4. The energy-saving flake ice machine according to claim 1, characterized in that: There are two threaded rods (113) in number, and the two threaded rods (113) are symmetrically arranged in the upper and lower parts, the thread directions of the outer circles of the two threaded rods (113) are different, and the two threaded rods (113) are threadedly connected in the two thread grooves (112); The height of the threaded rod (113) is smaller than the height of the threaded groove (112) threadedly connected thereto.
5. The energy-saving flake ice machine according to claim 1, characterized in that: The outer ring of the threaded rod (113) is provided with a smooth surface, the upper end of the threaded rod (113) at the upper position is provided with a smooth surface having the same height as the connecting plate (9), and the lower end of the threaded rod (113) at the lower position is provided with a smooth surface having the same height as the connecting plate (9).
6. The energy-saving flake ice machine according to claim 1, characterized in that: The linkage rod (115) is composed of a columnar rod body and square protrusions fixedly connected to the two side walls of the columnar rod body, and the outer wall of the linkage rod (115) is in contact with the inner wall of the second through hole (114) to achieve sliding connection, and the second through hole (114) is set through the inside of the threaded rod (113); The outer ring of the middle section of the linkage rod (115) is rotatably connected to the inner wall of the first through hole (111) via a bearing.
7. The energy-saving flake ice machine according to claim 1, characterized in that: The inner diameter of the mounting opening (116) is larger than the outer diameter of the threaded rod (113), and the inner diameter of the mounting opening (116) is smaller than the outer diameter of the ice skate (10).
8. The energy-saving flake ice machine according to claim 1, characterized in that: Ten sets of auxiliary movable wheels (12) are fixedly connected to the inner wall of the installation opening (116), and the ten sets of auxiliary movable wheels (12) are distributed in a circular shape with equal angles, and the outer walls of the movable wheels of the auxiliary movable wheels (12) are in contact with the smooth outer surface of the threaded rod (113) movably sleeved inside the installation opening (116) and are in sliding connection.
Citation Information
Patent Citations
Variable-frequency efficient energy-saving slice ice machine
CN110108069A