Storing and discharging device with quick-release pipeline
By adopting a quick disassembly and assembly feed pipe connection structure and an integrated hose design in the fluid storage and discharge equipment, the problem of cumbersome cleaning of feed pipes is solved, efficient cleaning and disassembly and assembly are achieved, and workers' efficiency is improved.
Patent Information
- Application Number
- CN202422599813.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-28
AI Technical Summary
The cleaning of the feed pipes of existing fluid storage and discharge equipment is cumbersome and takes a long time, which affects the efficiency of workers.
A material storage and discharge device with quick-disassembly pipeline is designed. The connection between the feed pipe and the container and the body adopts a quick disassembly structure, the clamping block and the pump wheel can be quickly disassembly and assembled, and the feed pipe is an integrated hose, which simplifies the cleaning process.
It improves the cleaning efficiency of the feed pipe and the working efficiency of workers, has a simple structure and is easy to disassemble and assemble.
Smart Images

Figure CN223254904U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fluid storage and discharging equipment, in particular to a storage and discharging device with a quick-detachable pipeline. Background Art
[0002] Currently, when using fluid storage and discharging equipment on the market for storing fluid ingredients such as ice cream, yogurt, milk tea, and sauces, the feed pipe must be cleaned every day to prevent the residual ingredients in the feed pipe from staying for too long and deteriorating.
[0003] The peristaltic pump in the existing fluid storage and discharge equipment is modular in design. The pump wheel and clamping block of the peristaltic pump are both installed in a shell. A hose is clamped between the pump wheel and the clamping block in the peristaltic pump. One end of the hose of the peristaltic pump is connected to the discharge port of the container through a first delivery pipe, and the other end of the hose is connected to the material outlet of the body through a second delivery pipe. When cleaning the pipe fittings with such a structure, it is necessary to first use tools to remove the shell of the peristaltic pump before taking out the hose. After that, after disassembling the first delivery pipe from the container and the second delivery pipe from the body, the first delivery pipe, the second delivery pipe and the hose must be disassembled and cleaned thoroughly. This makes cleaning the delivery pipe time-consuming and assembling it is also cumbersome, reducing the work efficiency of workers. Utility Model Content
[0004] The purpose of the utility model is to provide a storage and discharging device with a quick-detachable pipeline. The storage and discharging device with a quick-detachable pipeline has the advantages of simple structure, reasonable design, easy disassembly and assembly of the conveying pipe, convenience for cleaning the conveying pipe, and benefit for improving the work efficiency of workers.
[0005] The technical solution of the utility model is implemented as follows: a storage and discharging device with a quick-release pipeline includes a body and at least one storage and discharging mechanism; the storage and discharging mechanism includes a container, a delivery pipe and a peristaltic pump; the container and the peristaltic pump are respectively installed on the body, the container is above the peristaltic pump, the container is used to store fluid, and a discharge port is provided at the lower part of the container; in particular,
[0006] The peristaltic pump includes a pump wheel and a clamping block; the pump wheel is rotatable relative to the clamping block; the clamping block is quickly mounted on the side of the pump wheel, and after the clamping block is mounted, a hose extrusion space is formed between the clamping block and the pump wheel;
[0007] The feed pipe is an integral hose; one end of the feed pipe is quickly detachably connected to the discharge port of the container, and the feed pipe is communicated with the discharge port of the container; the other end of the feed pipe is quickly detachably connected to the material outlet provided on the machine body, and the feed pipe is communicated with the material outlet of the machine body; the middle section of the feed pipe is located in the hose extrusion space of the peristaltic pump, so that the rotation of the pump wheel can push the fluid in the hose extrusion space of the feed pipe.
[0008] This solution is designed in such a way that the clamping block is quickly disassembled and installed on the side of the pump wheel, the material delivery pipe is an integral hose, and one end of the material delivery pipe is quickly disassembled and connected to the discharge port of the container, and the other end of the material delivery pipe is quickly disassembled and connected to the material outlet provided on the machine body. When in use, if the material delivery pipe needs to be cleaned, the clamping block can be quickly disassembled, so that the clamping block and the pump wheel release the clamping pressure on the material delivery pipe, and then one end of the material delivery pipe is quickly disassembled from the container, and the other end of the material delivery pipe is quickly disassembled from the material outlet of the machine body. In this way, the material delivery pipe can be removed. Combined with the design that the material delivery pipe is a hose and is integrally constructed, there is no need to disassemble the material delivery pipe in sections for cleaning, which greatly improves the cleaning efficiency of the material delivery pipe. After cleaning, the material delivery pipe can be quickly installed again, which greatly improves the work efficiency of workers.
[0009] Furthermore, a docking joint is installed on the discharge port of the container; the docking joint is formed with a downwardly arranged sleeve portion; the outer diameter of the sleeve portion is larger than the inner diameter of the feed pipe; one end of the feed pipe is sleeved on the sleeve portion of the docking joint to achieve quick disassembly and connection with the discharge port of the container.
[0010] Furthermore, the material storage and discharging mechanism also includes a mounting plate; the mounting plate is installed on the machine body, and a folded plate portion is bent on the mounting plate; the folded plate portion is located between the discharge port of the container and the pump wheel, and a front-opening clamping port is formed on the folded plate portion; the sleeve portion of the docking joint is inserted into the clamping port, and the clamping port cooperates with the sleeve portion of the docking joint to clamp the delivery pipe sleeved on the sleeve portion.
[0011] Furthermore, two supporting parts are formed on the folding plate part of the mounting plate; the two supporting parts are located above the folding plate part, and a supporting part is provided on each of the left and right sides of the clamping port, and the supporting parts are used to support the outer bottom surface of the container.
[0012] Furthermore, the discharge port of the container is connected to its inner cavity and outer bottom surface or front outer surface; when the discharge port of the container is connected to its inner cavity and outer bottom surface, a plurality of supporting feet are installed on the outer bottom surface of the container, and the distance between the bottom surface of each supporting foot and the outer bottom surface of the container is greater than the distance between the bottom surface of the docking joint and the outer bottom surface of the container.
[0013] Furthermore, the material outlet of the machine body is covered with a soft board, and a through hole is formed on the soft board; a discharge joint is inserted into the through hole of the soft board; the discharge joint is provided with a connecting part; the outer diameter of the connecting part is larger than the inner diameter of the material delivery pipe, and one end of the material delivery pipe is sleeved on the connecting part of the discharge joint to realize quick disassembly and connection with the material outlet of the machine body.
[0014] Furthermore, the pump wheel includes two clamping plates and a roller group; each clamping plate is a circular plate, the two clamping plates are arranged opposite to each other, and the two clamping plates are connected at the center by a cylindrical member, and the central axis of the cylindrical member is collinear with the rotation axis of the pump wheel relative to the clamping block; the roller group includes at least two rollers, each roller is rotatably installed between the two clamping plates, the rotation axis of each roller is parallel to the central axis of the cylindrical member, and all rollers are evenly arranged around the cylindrical member; the outer periphery of the roller group is combined with the two clamping plates to form a hose accommodating annular groove.
[0015] Furthermore, the pump wheel is rotatably mounted on the mounting plate, and the clamping block is quickly disassembled and connected to the mounting plate; the structure of the quick disassembly and connection between the clamping block and the mounting plate is as follows: the clamping block is located below the pump wheel, one end of the clamping block is rotatably mounted on the mounting plate through a rotating shaft, and a movable hole is formed on the other end of the clamping block; the hole axis of the movable hole and the rotation axis of the clamping block relative to the mounting plate are parallel to the rotation axis of the pump wheel; the movable hole is formed with a first section and a second section along its hole axis; one end of the first section is connected to a side of the clamping block facing the mounting plate; one end of the second section is connected to a side of the clamping block facing the mounting plate; The end is connected with the other end of the first section, and the other end of the second section is connected with the side of the clamping block facing away from the mounting plate, and the aperture of the second section is smaller than the aperture of the first section; the peristaltic pump also includes a pin and a spring; the pin is inserted into the movable hole, one end of the pin is provided with a large head located in the first section, and the other end of the pin passes through the second section and is protruding from the surface of the clamping block; the spring is in the first section of the movable hole, the spring is sleeved on the pin, and the spring is compressed between the side of the first section connected with the second section and the large head of the pin; a pin hole is provided on the mounting plate for inserting the end of the pin facing the mounting plate. In addition, the structure for the quick disassembly and connection between the clamping block and the mounting plate can also be as follows: it also includes two U-shaped plug-in parts; two plug-in columns are formed on the mounting plate, and each plug-in column has a through hole formed at the end away from the mounting plate; two sleeve holes are formed on the clamping block; during installation, the feed pipe can be bent around the outer periphery of the roller group of the pump wheel first, so that the lower part of the feed pipe is flattened, and then the two sleeve holes of the clamping block are fitted one by one with the two plug-in columns of the mounting plate, and finally the two plug-ins are inverted, the two plug-ins are matched one by one with the two plug-in columns, and one end of the plug-in is inserted into the through hole of the plug-in column from top to bottom, so that the two plug-ins cooperate with the mounting plate to clamp the clamping block, so that the clamping block and the mounting plate can be quickly disassembled and connected.
[0016] Furthermore, a cold storage chamber is provided in the machine body; the container of the storage and discharging mechanism, the feed pipe, the pump wheel of the peristaltic pump and the clamping block are all located in the cold storage chamber; a door communicating with the cold storage chamber is formed on the front side of the machine body; a door panel for closing the door is installed on the machine body; a discharge port communicating with the cold storage chamber is formed on the top surface of the machine body; the front side of the discharge port is connected to the upper side of the door, the container is an upper opening structure, and a cover plate for closing the discharge port is installed on the machine body.
[0017] Furthermore, the peristaltic pump also includes a drive motor; the drive motor is installed on the rear side of the mounting plate, and the rotating shaft of the drive motor passes through the mounting plate and protrudes from the front side of the mounting plate; the pump wheel and the clamping block of the peristaltic pump are both on the front side of the mounting plate; the pump wheel is installed on the rotating shaft of the drive motor, and the rotation axis of the pump wheel is collinear with the axis of the rotating shaft of the drive motor; a main control module is installed on the body; the main control module is electrically connected to the drive motor.
[0018] Furthermore, an electrical appliance placement space is provided in the machine body; the electrical appliance placement space is located behind the mounting plate; and the driving motor of the peristaltic pump extends into the electrical appliance placement space.
[0019] Furthermore, a cup placement space is provided on the front side of the body, the material outlet of the body is connected to the top surface of the cup placement space, and a weighing device is provided in the cup placement space; the weighing device is located below the material outlet of the body, and the weighing device is electrically connected to the main control module.
[0020] The utility model has the advantages of simple structure, reasonable design, convenient disassembly and assembly of the material conveying pipe, convenience for cleaning the material conveying pipe, and benefit for improving the work efficiency of workers. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a schematic diagram of the three-dimensional structure of Example 1.
[0022] Figure 2 This is a schematic diagram of the structure of Example 1 after the door panel is removed.
[0023] Figure 3 This is a schematic diagram of the structure of Example 1 after the door panel and the material delivery pipe are removed.
[0024] Figure 4 This is a structural diagram of the material storage and discharging mechanism of Example 1.
[0025] Figure 5 This is a schematic structural diagram of the pump wheel of the peristaltic pump of Example 1.
[0026] Figure 6 This is a schematic structural diagram of the clamping block of the peristaltic pump of Example 1.
[0027] Figure 7This is a schematic structural diagram of the peristaltic pump of Example 1 after the spring is sleeved on the latch.
[0028] Figure 8 This is a schematic diagram of the main structure of Example 1 (after removing the container and the feed pipe).
[0029] Figure 9 for Figure 8 Schematic diagram of the cross-sectional structure in the AA direction.
[0030] Figure 10 This is a schematic structural diagram of Example 2.
[0031] Figure 11 This is a schematic diagram of the structure of Example 2 when the door panel is open.
[0032] Figure 12 for Figure 11 Schematic diagram of the enlarged structure of part B.
[0033] Figure 13 This is a structural diagram of Example 2 with the cover plate removed and the door panel in the open state.
[0034] Explanation of reference numerals: 1-body; 11-material outlet; 12-refrigerating chamber; 13-door panel; 14-cold air generating space; 15-electrical appliance placement space; 16-cup placement space; 17-cover plate; 18-soft board; 19-discharge connector; 110-discharge port; 120-door; 2-storage and discharge mechanism; 3-container; 31-support leg; 32-stirring paddle; 4-feeding pipe; 5-peristaltic pump; 51-pump wheel; 511-clamping plate; 512-roller group; 513-roller; 514-cylinder; 52- Clamping block; 521-movable hole; 522-first section; 523-second section; 53-drive motor; 54-rotating shaft; 55-latch; 551-large head; 56-spring; 6-mounting plate; 61-folding plate; 62-clamping port; 63-supporting part; 7-main control module; 8-switching valve; 81-connector; 82-convex ring; 9-refrigeration system; 91-evaporator; 92-fan; 93-compressor; 10-shielding mechanism; 101-shielding plate; 102-shielding motor; 20-metal plate. DETAILED DESCRIPTION
[0035] Example 1
[0036] like Figure 1 、 Figure 2 、 Figure 3 、 Figure 4As shown, this embodiment is a storage and discharge device with a quick-release pipeline, comprising a body 1 and three storage and discharge mechanisms 2; the three storage and discharge mechanisms 2 are arranged horizontally side by side; the storage and discharge mechanisms 2 include a container 3, a material delivery pipe 4 and a peristaltic pump 5; the container 3 and the peristaltic pump 5 are each mounted on the body 1, with the container 3 being above the peristaltic pump 5. The container 3 is used to hold fluid, and a discharge port is provided at the lower portion of the container 3;
[0037] The peristaltic pump 5 includes a pump wheel 51 and a clamping block 52; the pump wheel 51 is rotatable relative to the clamping block 52; the clamping block 52 is quickly mounted on the side of the pump wheel 51, and after the clamping block 52 is mounted, a hose extrusion space is formed between the clamping block 52 and the pump wheel 51;
[0038] The feed pipe 4 is a hose made of silicone material; one end of the feed pipe 4 is quickly disassembled and connected to the discharge port of the container 3, and the feed pipe 4 is communicated with the discharge port of the container 3; the other end of the feed pipe 4 is quickly disassembled and connected to the material outlet 11 provided on the machine body 1, and the feed pipe 4 is communicated with the material outlet 11 of the machine body 1; the middle section of the feed pipe 4 is in the hose extrusion space of the peristaltic pump 5, so that the rotation of the pump wheel 51 can push the fluid in the hose extrusion space of the feed pipe 4. With this design, when in use, if the material delivery pipe 4 needs to be cleaned, the clamping block 52 can be quickly disassembled, so that the clamping block 52 and the pump wheel 51 release the clamping pressure on the material delivery pipe 4, and then one end of the material delivery pipe 4 is quickly disassembled from the container 3, and the other end of the material delivery pipe 4 is quickly disassembled from the material outlet 11 of the machine body 1, so that the material delivery pipe 4 can be removed. Combined with the design that the material delivery pipe 4 is a hose and is integrally constructed, there is no need to disassemble the material delivery pipe 4 in sections for cleaning, which greatly improves the cleaning efficiency of the material delivery pipe 4. After cleaning, the material delivery pipe 4 can be quickly installed again, which greatly improves the work efficiency of the workers.
[0039] In order to realize quick disassembly and connection between the feeding pipe 4 and the discharge port of the container 3, Figure 2 、 Figure 3 、 Figure 4 As shown, the discharge port of container 3 in this embodiment connects its inner cavity with its front outer surface. An on-off valve 8 is mounted on the discharge port of container 3, and a docking head 81 is mounted on the discharge end of on-off valve 8. The docking head 81 has a downwardly directed sleeve portion with a pagoda-shaped structure, the outer diameter of which is larger than the inner diameter of the feed pipe 4. One end of the feed pipe 4 is sleeved onto the sleeve portion of the docking head 81, achieving a quick-release connection with the discharge port of container 3. Because the feed pipe 4 is a flexible silicone hose, the deformation of the feed pipe 4 after being sleeved onto the docking head 81 ensures a secure connection between the pipe and the docking head 81, preventing the pipe 4 from easily separating from the docking head 81 during use.
[0040] In order to facilitate the installation of the container 3 on the body 1, as shown in FIG. Figure 4 As shown, the storage and discharging mechanism 2 also includes a mounting plate 6; the mounting plate 6 is mounted on the machine body 1, and a folding plate portion 61 is bent on the mounting plate 6; the folding plate portion 61 is located between the discharge port of the container 3 and the pump wheel 51, and a front-opening clamping port 62 is formed on the folding plate portion 61; a convex ring portion 82 is formed on the docking joint 81, and after the sleeve portion of the docking joint 81 is passed through the clamping port 62 from top to bottom, the convex ring portion 82 of the docking joint 81 is abutted against the top surface of the folding plate portion 61. There are two clamping ports 62 in this embodiment. When in use, the user can select the clamping port 62 for the docking joint 81 to pass through according to the installation position of the container 3, so that the mounting plate 6 can support the container 3 and enable the mounting plate 6 to position the container 3, making it more convenient to install the container 3.
[0041] In order to realize quick disassembly and connection between the material delivery pipe 4 and the material outlet 11 of the machine body 1, as shown in FIG. Figure 2 、 Figure 3 、 Figure 4 As shown, the aperture of the material outlet 11 of the housing 1 is larger than the inner diameter of the material delivery tube 4 but smaller than the outer diameter of the material delivery tube 4. One end of the material delivery tube 4 is squeezed into the material outlet 11 of the housing 1, achieving a quick-disconnect connection with the material outlet 11 of the housing 1. Because the material delivery tube 4 is a flexible silicone hose, after the material delivery tube 4 is inserted into the material outlet 11 of the housing 1, the outer circumferential surface of the portion of the material delivery tube 4 that penetrates the material outlet 11 of the housing 1 will tighten the material outlet 11 of the housing 1, preventing the material delivery tube 4 from easily separating from the material outlet 11 of the housing 1 during use.
[0042] In order to prevent the feeding pipe 4 from being separated from the hose squeezing space during use, Figure 5 As shown, the pump wheel 51 includes two clamping plates 511 and a roller group 512; each clamping plate 511 is a circular plate, and the two clamping plates 511 are arranged opposite to each other, and the two clamping plates 511 are connected at the center through a cylindrical member 514, and the central axis of the cylindrical member 514 is collinear with the rotation axis of the pump wheel 51 relative to the clamping block 52; the roller group 512 includes three rollers 513, each roller 513 is rotatably installed between the two clamping plates 511, and the rotation axis of each roller 513 is parallel to the central axis of the cylindrical member 514, and all rollers 513 are evenly arranged around the cylindrical member 514; the outer periphery of the roller group 512 is combined with the two clamping plates 511 to form a hose accommodating annular groove. Such a structure ensures that when the feed pipe 4 is clamped by the pump wheel 51 and the clamping block 52 to transport the fluid, the circumferential surface of the flattened portion of the feed pipe 4 is wrapped by the hose extrusion space formed by the hose accommodating ring groove and the clamping block 52, thereby preventing the feed pipe 4 from separating from the peristaltic pump 5 during operation, thereby greatly improving the stability of the storage and discharge device with quick-detachable pipeline during use.
[0043] In order to achieve quick disassembly and connection between the clamping block 52 and the mounting plate 6, as shown in FIG. Figure 2 、 Figure 3 、 Figure 4 、 Figure 6 、 Figure 7 As shown, the pump wheel 51 is rotatably mounted on the mounting plate 6, and the clamping block 52 is quickly disassembled and connected to the mounting plate 6; the structure of the quick disassembly and connection between the clamping block 52 and the mounting plate 6 is as follows: the clamping block 52 is located below the pump wheel 51, and one end of the clamping block 52 is rotatably mounted on the mounting plate 6 through a rotating shaft 54, and a movable hole 521 is formed on the other end of the clamping block 52; the hole axis of the movable hole 521 and the rotation axis of the clamping block 52 relative to the mounting plate 6 are parallel to the rotation axis of the pump wheel 51; the movable hole 521 is formed with a first section 522 and a second section 523 along its hole axis; one end of the first section 522 is connected to the side of the clamping block 52 facing the mounting plate 6; one end of the second section 523 is connected to the other end of the first section 522, and the second section 523 is connected The other end of the segment 523 is connected to the side of the clamping block 52 facing away from the mounting plate 6, and the aperture of the second segment 523 is smaller than the aperture of the first segment 522; the peristaltic pump 5 also includes a pin 55 and a spring 56; the pin 55 is inserted into the movable hole 521, and one end of the pin 55 is provided with a large head 551 located in the first segment 522, and the other end of the pin 55 passes through the second segment 523 and protrudes from the surface of the clamping block 52; the spring 56 is located in the first segment 522 of the movable hole 521, and the spring 56 is sleeved on the pin 55. The spring 56 is compressed between the side of the first segment 522 connected to the second segment 523 and the large head 551 of the pin 55; a pin hole is provided on the mounting plate 6 for inserting the end of the pin 55 facing the mounting plate 6 (the pin hole is not shown in the accompanying drawings). During use, the latch 55 is pulled up to overcome the force of the spring 56 and disengage from the pin hole, so that the clamping block 52 can be rotated downward relative to the pump wheel 51 to achieve disassembly. When installation is required, it is only necessary to push the clamping block 52 to rotate upward so that the latch 55 is aligned with the pin hole, so that the latch 55 will automatically be inserted into the pin hole under the action of the spring 56, so that the clamping block 52 is fixed relative to the pump wheel 51 for installation.
[0044] In order to make the storage and discharging device with quick-release pipes more convenient to use, Figure 1 、 Figure 4 As shown, the peristaltic pump 5 also includes a drive motor 53; the drive motor 53 is mounted on the rear side of the mounting plate 6, with the rotating shaft of the drive motor 53 passing through the mounting plate 6 and protruding from the front side of the mounting plate 6. The pump wheel 51 and the clamping block 52 of the peristaltic pump 5 are both located on the front side of the mounting plate 6. The pump wheel 51 is mounted on the rotating shaft of the drive motor 53, with the rotation axis of the pump wheel 51 and the axis of the rotating shaft of the drive motor 53 being collinear. A main control module 7 is mounted on the body 1 and is electrically connected to the drive motor 53. The main control module 7 controls the drive motor 53 to drive the pump wheel 51 to rotate, thereby achieving automated control.
[0045] In order to prevent food from spoiling easily, Figure 1 、 Figure 2 、 Figure 3 、 Figure 8 、 Figure 9 As shown, a cold storage chamber 12 is provided in the machine body 1, and a material outlet 11 of the machine body 1 connects the cold storage chamber 12 with the outside world. The container 3 of the material storage and discharging mechanism 2, the material delivery pipe 4, the pump impeller 51 of the peristaltic pump 5, and the clamping block 52 are all located in the cold storage chamber 12. A doorway connected to the cold storage chamber 12 is formed on the front side of the machine body 1. A door panel 13 for closing the doorway is installed on the machine body 1. The door panel 13 is hingedly mounted on the machine body 1, and the main control module 7 is mounted on the door panel 13. A discharge port connected to the cold storage chamber 12 is formed on the top surface of the machine body 1. The container has an upper opening structure, and a cover plate 17 for closing the discharge port is mounted on the machine body 1. The cover plate 17 is placed directly on the top surface of the machine body 1. When in use, after opening the door panel 13, the container 3 and the material delivery pipe 4 can be removed for cleaning. After opening the cover plate 17, food can be added to the container 3 through the discharge port. To allow the fluid in container 3 to flow out quickly, the surface of the refrigerator compartment 12 supporting container 3 is formed as an inclined surface that gradually slopes downward from the back to the front. A cold air generating space 14 is also formed in the body 1. A refrigeration system 9 is also installed in the body 1. The refrigeration system 9 is similar to the refrigeration system of existing refrigerators. The evaporator 91 and fan 92 of the refrigeration system 9 are installed in the cold air generating space 14. The cold air generating space 14 is connected to the refrigerator compartment 12. When in use, the evaporator 91 reduces the temperature of the air in the cold air generating space 14, while the fan 92 guides the cold air in the cold air generating space 14 to the refrigerator compartment 12, so that the food in the refrigerator compartment 12 is kept in a low temperature environment, so that the food can be preserved for a long time.
[0046] In order to make the structure of the storage and discharging device with quick-release pipeline more reasonable, Figure 8 、 Figure 9 As shown, an electrical appliance placement space 15 is provided in the body 1; the electrical appliance placement space 15 is located behind the mounting plate 6; the drive motor 53 of the peristaltic pump 5 extends into the electrical appliance placement space 15, and the electrical appliance placement space 15 is also used to install components such as the compressor 93 and condenser of the refrigeration system 9.
[0047] In order to make the storage and discharging device with quick-release pipes more convenient to use, Figure 1 、 Figure 2 、 Figure 3 、 Figure 8 、 Figure 9As shown, a cup placement space 16 is provided on the front side of the body 1, and the material outlet 11 of the body 1 is connected to the top surface of the cup placement space 16. A weighing device is provided in the cup placement space 16 (the load-bearing device of this embodiment is not shown in the drawings); the weighing device is located below the material outlet 11 of the body 1 and is electrically connected to the main control module 7. When in use, this design keeps the switch valve 8 of the container 3 in a normally open state, and the main control module 7 controls the drive motor 53 of the peristaltic pump 5 of the storage and discharge mechanism 2 to operate, causing the food in the container 3 to flow into the cup on the weighing device. When the weight detected by the weighing device reaches a preset value, the weighing device sends a signal to the main control module 7, causing the main control module 7 to control the drive motor 53 of the peristaltic pump 5 to shut down. This makes the storage and discharge device with a quick-release pipe more convenient to use.
[0048] In order to prevent the discharge end of the delivery pipe 4 from being exposed outside the machine body 1, Figure 8 、 Figure 9 As shown, the material storage and discharging device with a quick-detachable pipeline also includes a shielding mechanism 10; the shielding mechanism 10 includes a shielding plate 101 and a shielding motor 102; the shielding motor 102 is installed in the electrical appliance placement space 15 of the body 1, and the shielding motor 102 is electrically connected to the main control module 7. The rotating shaft of the shielding motor 102 passes through the electrical appliance placement space 15 and extends into the cup placement space 16, and the axis of the rotating shaft of the shielding motor 102 is parallel to the hole axis of the material outlet 11 of the body 1; the shielding plate 101 is in the cup placement space 16 and is located below the material outlet 11 of the body 1. The shielding plate 101 is connected to the rotating shaft of the shielding motor 102. The rotation of the shielding motor 102 can drive the shielding plate 101 to block the material outlet 11 of the body 1 or cause the material outlet 11 of the body 1 to be exposed. Such a structure ensures that when the storage and discharging device with a quick-detachable pipeline is not outputting fluid, the port on the delivery pipe 4 connected to the material outlet 11 of the body 1 is isolated from the outside world, making the food in the storage and discharging device with a quick-detachable pipeline cleaner and more hygienic.
[0049] Example 2
[0050] The difference between this embodiment and embodiment 1 is that: Figure 10 、 Figure 11 、 Figure 12As shown, the discharge port of the container 3 is connected to its inner cavity and the outer bottom surface (the shielding mechanism of this embodiment is not shown in the drawings), and the docking head 81 is directly installed on the discharge port of the container 3, which makes the container 3 easier to clean. Four supporting legs 31 are installed on the outer bottom surface of the container 3, and the four supporting legs 31 are respectively located at the four corners of the bottom surface of the container 3. The distance between the bottom surface of each supporting leg 31 and the outer bottom surface of the container 3 is greater than the distance between the bottom surface of the docking head 81 and the outer bottom surface of the container 3. This structure allows the container 3 to be stably placed on a flat surface through the supporting legs 31 after being removed from the machine body 1. This also protects the docking head 81 and prevents it from being damaged by collision. When using this embodiment, the material delivery pipe 4 is first sleeved on the sleeve portion of the docking joint 81, and then the container 3 is pushed into the refrigerating chamber 12 from the front to the back. The surface of the refrigerating chamber 12 used to support the container 3 in this embodiment is a plane. When the container 3 is pushed into place, the sleeve portion of the docking joint 81 of the container 3 is inserted into the clamping port 62, so that the clamping port 62 and the sleeve portion of the docking joint 81 cooperate to clamp the material delivery pipe 4 sleeved on the sleeve portion; this makes the connection structure between the material delivery pipe 4 and the docking joint 81 more secure, so as to prevent the pump wheel 51 from pulling the material delivery pipe 4 during rotation and causing the material delivery pipe 4 to separate from the docking joint 81.
[0051] In addition, if Figure 11 、 Figure 12 As shown, in this embodiment, two supporting portions 63 are formed on the folded plate portion 61 of the mounting plate 6; the two supporting portions 63 are located above the folded plate portion 61, and a supporting portion 63 is provided on each of the left and right sides of the clamping opening 62. The supporting portions 63 are used to support the outer bottom surface of the container 3. This structure allows the container 3 to be installed in the machine body 1, and the front legs 31 of the container 3 are suspended. This eliminates the need for a wide surface within the refrigeration chamber 12 of the machine body 1 to support the legs 31 of the container 3. This reduces the size of the machine body 1, which helps reduce weight. This makes the material storage and discharging device with quick-release pipes of this embodiment easier to handle and transport, and more convenient to use.
[0052] In addition, the quick-release structure between the material delivery pipe 4 and the material outlet 11 of the machine body 1 in this embodiment is also different from that in embodiment 1. Figure 11 、 Figure 12As shown, in this embodiment, a soft board 18 is mounted over the material outlet 11 of the machine body 1. The soft board 18 is made of silicone material and is located within the refrigeration chamber 12. A through hole is formed in the soft board 18. A discharge connector 19 is inserted into the through hole of the soft board 18. The discharge connector 19 has a connecting portion. The connecting portion is a pagoda head structure, and the outer diameter of the connecting portion is larger than the inner diameter of the feed pipe 4. One end of the feed pipe 4 is sleeved on the connecting portion of the discharge connector 19 to achieve a quick disassembly connection with the material outlet 11 of the machine body 1. This structure makes the connection between the feed pipe 4 and the material outlet 11 more secure. During use, the discharge connector 19 can also be quickly removed from the soft board 18 for cleaning, making it very convenient to use. In order to increase the service life of the soft board 18, a metal plate 20 is provided on the top surface of the soft board 18, and the screws for fixing the soft board 18 also pass through the metal plate 20 and are locked on the body 1. After using the metal plate 20, when the discharge connector 19 is pulled out for cleaning, the soft board 18 will not undergo significant deformation, so that repeated disassembly and assembly of the discharge connector 19 will not reduce the service life of the soft board 18.
[0053] like Figure 13 As shown, the front side of the discharge port 110 of this embodiment is connected to the upper side of the door 120. This structure eliminates the need for a crossbeam between the discharge port 110 and the door 120, making it more convenient to place the container 3 in the refrigerator compartment 12. In order to stir the ingredients in the container 3, this embodiment further includes a stirring paddle 32 in the container 3. A stirring motor for driving the stirring paddle 32 is mounted on the machine body 1. The stirring motor is electrically connected to the main control module 7. This structure of the stirring paddle 32 in the container 3 makes this embodiment very suitable for storing viscous ingredients such as yogurt and sauces.
Claims
1. A material storage and discharge device with a quick-release pipeline, comprising a body and at least one material storage and discharge mechanism; the material storage and discharge mechanism comprises a container, a material delivery pipe, and a peristaltic pump; the container and the peristaltic pump are each mounted on the body, with the container positioned above the peristaltic pump, the container being used to hold fluid, and a discharge port being provided at the bottom of the container; characterized in that: The peristaltic pump includes a pump wheel and a clamping block; the pump wheel is rotatable relative to the clamping block; the clamping block is quickly mounted on the side of the pump wheel, and after the clamping block is mounted, a hose extrusion space is formed between the clamping block and the pump wheel; The feed pipe is an integral hose; one end of the feed pipe is quickly detachably connected to the discharge port of the container, and the feed pipe is communicated with the discharge port of the container; the other end of the feed pipe is quickly detachably connected to the material outlet provided on the machine body, and the feed pipe is communicated with the material outlet of the machine body; the middle section of the feed pipe is located in the hose extrusion space of the peristaltic pump, so that the rotation of the pump wheel can push the fluid in the hose extrusion space of the feed pipe.
2. The material storage and discharging device with a quick-release pipe according to claim 1, characterized in that: A docking joint is installed on the discharge port of the container; the docking joint is formed with a downwardly arranged sleeve portion; the outer diameter of the sleeve portion is larger than the inner diameter of the feed pipe; one end of the feed pipe is sleeved on the sleeve portion of the docking joint to achieve quick disassembly and connection with the discharge port of the container.
3. The material storage and discharging device with a quick-release pipe according to claim 2, characterized in that: The material storage and discharging mechanism also includes a mounting plate; the mounting plate is installed on the machine body, and a folded plate portion is bent on the mounting plate; the folded plate portion is located between the discharge port of the container and the pump wheel, and a front-opening clamping port is formed on the folded plate portion; the sleeve portion of the docking joint is inserted into the clamping port, and the clamping port cooperates with the sleeve portion of the docking joint to clamp the material delivery pipe sleeved on the sleeve portion.
4. The material storage and discharging device with a quick-release pipe according to claim 3, characterized in that: Two supporting parts are formed on the folding plate part of the mounting plate; the two supporting parts are located above the folding plate part, and a supporting part is provided on each of the left and right sides of the clamping port, and the supporting parts are used to support the outer bottom surface of the container.
5. A material storage and discharging device with a quick-release pipeline according to claim 2, 3 or 4, characterized in that: The discharge port of the container is connected to its inner cavity and the outer bottom surface or the front outer surface; when the discharge port of the container is connected to its inner cavity and the outer bottom surface, a plurality of supporting feet are installed on the outer bottom surface of the container, and the distance between the bottom surface of each supporting foot and the outer bottom surface of the container is greater than the distance between the bottom surface of the docking joint and the outer bottom surface of the container.
6. A material storage and discharging device with a quick-release pipeline according to claim 1, 2, 3 or 4, characterized in that: The aperture of the material outlet of the machine body is larger than the inner diameter of the material delivery pipe and smaller than the outer diameter of the material delivery pipe. One end of the material delivery pipe is squeezed into the material outlet of the machine body to achieve quick disassembly and connection with the material outlet of the machine body.
7. A material storage and discharging device with a quick-release pipeline according to claim 1, 2, 3 or 4, characterized in that: The material outlet of the machine body is covered with a soft board with a through hole formed on the soft board; a discharge joint is inserted into the through hole of the soft board; the discharge joint is provided with a connecting portion; the outer diameter of the connecting portion is larger than the inner diameter of the feed pipe, and one end of the feed pipe is sleeved on the connecting portion of the discharge joint to realize quick disassembly and connection with the material outlet of the machine body.
8. The material storage and discharging device with a quick-release pipe according to claim 1, characterized in that: The pump wheel includes two clamping plates and a roller group; each clamping plate is a circular plate, the two clamping plates are arranged opposite to each other, and the two clamping plates are connected at the center by a cylindrical member, the central axis of the cylindrical member is collinear with the rotation axis of the pump wheel relative to the clamping block; the roller group includes at least two rollers, each roller is rotatably installed between the two clamping plates, the rotation axis of each roller is parallel to the central axis of the cylindrical member, and all rollers are evenly arranged around the cylindrical member; the outer periphery of the roller group is combined with the two clamping plates to form a hose accommodating annular groove.
9. The material storage and discharging device with a quick-release pipe according to claim 3, characterized in that: The pump impeller is rotatably mounted on the mounting plate, and the clamping block is quickly detachably connected to the mounting plate. The structure of the quick detachable connection between the clamping block and the mounting plate is as follows: the clamping block is located below the pump impeller, one end of the clamping block is rotatably mounted on the mounting plate via a rotating shaft, and a movable hole is formed on the other end of the clamping block; the hole axis of the movable hole and the rotation axis of the clamping block relative to the mounting plate are both parallel to the rotation axis of the pump impeller; The movable hole is formed with a first section and a second section along its hole axis; One end of the first section is connected to the side of the clamping block facing the mounting plate; one end of the second section is connected to the other end of the first section, and the other end of the second section is connected to the side of the clamping block facing away from the mounting plate, and the aperture of the second section is smaller than the aperture of the first section; the peristaltic pump also includes a pin and a spring; the pin is inserted into the movable hole, one end of the pin is provided with a large head located in the first section, and the other end of the pin passes through the second section and is arranged on the surface of the clamping block; the spring is in the first section of the movable hole, the spring is sleeved on the pin, and the spring is compressed between the side of the first section connected to the second section and the large head of the pin; a pin hole is provided on the mounting plate for inserting the end of the pin facing the mounting plate.
10. The material storage and discharging device with a quick-release pipe according to claim 1, characterized in that: A refrigerating chamber is provided in the machine body; the container of the material storage and discharging mechanism, the material delivery pipe, the pump wheel of the peristaltic pump and the clamping block are all located in the refrigerating chamber; a door communicating with the refrigerating chamber is formed on the front side of the machine body; a door panel for closing the door is installed on the machine body; a discharge port communicating with the refrigerating chamber is formed on the top surface of the machine body; the front side of the discharge port is connected to the upper side of the door, the container is an upper opening structure, and a cover plate for closing the discharge port is installed on the machine body.