Creatine feeding bin tank
By designing a docking device in the creatine stirring device, the problem of difficulty in replacing the stirring rod after wear is solved, and the efficiency of the stirring liquid is improved and the operation is simplified.
Patent Information
- Application Number
- CN202421911085.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-08-08
AI Technical Summary
The stirring rods of the existing creatine stirring device are prone to wear after long-term use, and the structure is relatively fixed, which leads to difficulty in replacement and affects the stirring efficiency.
A creatine feeding tank is designed, and a butt device is adopted, including connecting rings, threaded rings, connection rings, slip rings, rotating frames and rotating rods, which facilitates the disassembly and assembly and replacement of the mixing rod.
Through the design of the docking device, personnel can easily repair or replace the mixing rod, which improves the efficiency of the mixing liquid, saves time and simplifies operation.
Smart Images

Figure CN222833377U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of creatine feeding silo tanks, in particular to a creatine feeding silo tank. Background Art
[0002] The main raw materials of creatine are cyanoacetic acid and guanidine hydrochloride, which are mixed together in a certain proportion under controlled temperature and pressure conditions.
[0003] In the prior art, during the production process, the main raw materials cyanoacetic acid and guanidine hydrochloride need to be poured into a tank body, and then stirred using a stirring device to improve the mixing degree of the creatine raw materials. However, the stirring rod will wear out after long-term use and needs to be replaced in time. However, the structure of the stirring rod is relatively fixed, which makes it difficult to replace the stirring rod after it is worn out, which in turn affects the normal use of the stirring device and reduces the stirring efficiency of the creatine raw materials. Utility Model Content
[0004] The utility model aims to solve the defect in the prior art that a stirring rod is difficult to replace after being worn out, and proposes a creatine feeding silo tank.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a creatine feeding silo tank, comprising a tank body and a stirring rod, the upper surface of the tank body is abutted with a tank cover, the upper surface of the tank cover is provided with a control panel, the side of the control panel is fixedly connected with a motor, the control panel is electrically connected to the motor, the upper surface of the tank cover is connected with a feed port, the output end of the motor is fixedly connected with a rotating column, the inner wall of the tank cover is rotatably connected to the rotating column, the bottom surface of the tank body is connected with a discharge port, the other end of the rotating column is provided with a docking device, the docking device comprises a connecting ring, the connecting ring is fixedly connected to the rotating column, the arc surface of the connecting ring is threadedly connected with a threaded ring, and the thread A connecting ring is fixedly connected to the side of the ring away from the tank cover, and a slip ring is slidably connected to the circular arc surface of the connecting ring, a connecting groove is provided at a position corresponding to the connecting ring on the side of the slip ring close to the threaded ring, the circular arc surface of the connecting ring is rotatably connected to the inner wall of the connecting groove, the circular arc surface of the connecting ring is fixedly connected to a rotating frame, and a rotating rod is rotatably connected to the inner wall of the rotating frame, and the rotating rod and the connecting ring are fixedly connected to the same spring on the side where the rotating rod and the connecting ring are close to each other, a sliding groove is provided at the other end of the slip ring at the position corresponding to the rotating rod, the cross-section of the sliding groove is a right-angled triangle, the sliding groove is slidably connected to the rotating rod, a clamping groove is provided on the circular arc surface of the stirring rod at the position corresponding to the rotating rod, and the end of the rotating rod away from the slip ring is clamped in the clamping groove.
[0006] The effect achieved by the above components is that by providing the docking device, personnel can conveniently disassemble and assemble the stirring rod, thereby being able to repair or replace the stirring rod, thereby improving the efficiency of the device in stirring the liquid.
[0007] Preferably, one end of the rotating rod away from the slip ring is fixedly connected with an extrusion ring, and the extrusion ring is an elastic rubber ring.
[0008] The effects achieved by the above components are: increasing the friction between the rotating rod and the card slot, and improving the stability.
[0009] Preferably, the arc surface of the connecting ring is fixedly connected to the limiting plate, the inner wall of the sliding ring is provided with a limiting groove corresponding to the position of the limiting plate, and the inner wall of the limiting groove is slidably connected to the surface of the limiting rod plate.
[0010] The effects achieved by the above components are: the limit plate limits the rotation direction of the slip ring, making it convenient for the slide groove to align with the rotating rod.
[0011] Preferably, the arc surface of the stirring rod is fixedly connected to a limiting rod, a positioning groove is provided on the inner wall of the connecting ring corresponding to the position of the limiting rod, and the inner wall of the positioning groove is slidably connected to the surface of the limiting rod.
[0012] The effects achieved by the above components are: the limit rod limits the rotation direction of the stirring rod, making it convenient for the slot to align with the rotating rod.
[0013] Preferably, the connecting ring is made of stainless steel, and the threaded ring is made of stainless steel.
[0014] The effects achieved by the above components are: the threaded ring and the connecting ring are made of stainless steel, which can effectively reduce the oxidation efficiency of the threaded ring and the connecting ring.
[0015] Preferably, a fixing device is provided on the side of the tank body close to the tank cover, the fixing device comprises a fixing plate, one side of the fixing plate is fixedly connected to the arc surface of the tank cover, the cross-section of the fixing plate is "T"-shaped, the arc surface of the tank body is fixedly connected to a positioning plate, the inner wall of the positioning plate is threadedly connected to a screw, one side of the screw is rotatably connected to a clamping block, the cross-section of the clamping block is "U"-shaped, and an auxiliary groove is opened on the surface of the fixing plate at the position corresponding to the clamping block, and the size of the auxiliary groove is adapted to the size of the clamping block.
[0016] The effect achieved by the above components is that by setting the fixing device, personnel can conveniently open and close the tank body and the tank cover.
[0017] Preferably, the inner wall of the positioning plate is slidably connected to a limiting column, and one end of the limiting column is fixedly connected to the clamping block.
[0018] The effects achieved by the above components are: limiting the rotation direction of the card block and facilitating the card block to align with the auxiliary groove.
[0019] Preferably, a plurality of anti-slip grooves are provided at one end of the screw rod away from the clamping block, and the plurality of anti-slip grooves are evenly distributed on the arc surface of the screw rod.
[0020] The effects achieved by the above components are: enhancing the friction between the hand and the screw, making it easier to rotate the screw.
[0021] In summary, the beneficial effects of the utility model are:
[0022] In the utility model, by providing a docking device, personnel can conveniently disassemble and assemble the stirring rod, thereby being able to repair or replace the stirring rod, saving time and improving the efficiency of the device in stirring liquid.
[0023] In the utility model, by setting the fixing device, the personnel only need to operate the screw rod, so that the opening and closing of the tank body and the tank cover are faster and more efficient, which saves time, improves production efficiency and realizes easy operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 A schematic diagram of the three-dimensional structure of a creatine loading silo tank provided by the utility model;
[0025] Figure 2 for Figure 1 Schematic diagram of the internal structure shown;
[0026] Figure 3 for Figure 2 A schematic structural diagram of the docking device shown;
[0027] Figure 4 for Figure 2 A partial structural schematic diagram of the docking device shown;
[0028] Figure 5 for Figure 2 A schematic diagram of a partial structure of the docking device shown;
[0029] Figure 6 for Figure 1 Schematic diagram of the structure of the fixing device shown.
[0030] Legend: 1. Tank body; 2. Tank cover; 3. Control panel; 4. Motor; 5. Feed inlet; 6. Discharge outlet; 7. Docking device; 701. Connecting ring; 702. Threaded ring; 703. Connecting ring; 704. Slip ring; 705. Connecting groove; 706. Rotating frame; 707. Rotating rod; 708. Slide groove; 709. Limiting plate; 710. Limiting groove; 711. Limiting rod; 712. Positioning groove; 713. Extrusion ring; 714. Card slot; 715. Spring; 8. Fixing device; 81. Fixing plate; 82. Auxiliary groove; 83. Positioning plate; 84. Screw; 85. Card block; 86. Limiting column; 87. Anti-slip pattern; 9. Rotating column; 10. Stirring rod. DETAILED DESCRIPTION
[0031] Reference Figures 1 to 6 As shown, the utility model provides a technical solution: a creatine feeding silo tank, comprising a tank body 1 and a stirring rod 10, the upper surface of the tank body 1 is abutted against a tank cover 2, the upper surface of the tank cover 2 is provided with a control panel 3, the side of the control panel 3 is fixedly connected with a motor 4, the control panel 3 is electrically connected to the motor 4, the upper surface of the tank cover 2 is connected with a feed port 5, the output end of the motor 4 is fixedly connected with a rotating column 9, the inner wall of the tank cover 2 is rotatably connected to the rotating column 9, the bottom surface of the tank body 1 is connected with a discharge port 6, the other end of the rotating column 9 is provided with a docking device 7, and a fixing device 8 is provided on the side of the tank body 1 close to the tank cover 2.
[0032] The specific arrangement and function of the docking device 7 and the fixing device 8 will be described in detail below.
[0033] Reference Figure 2 , Figure 3 , Figure 4 and Figure 5As shown, in this embodiment: the docking device 7 includes a connecting ring 701, the connecting ring 701 is fixedly connected to the rotating column 9, the arc surface of the connecting ring 701 is threadedly connected with a threaded ring 702, the side of the threaded ring 702 away from the tank cover 2 is fixedly connected with a connecting ring 703, the arc surface of the connecting ring 701 is slidably connected with a slip ring 704, the side of the slip ring 704 close to the threaded ring 702 is provided with a connecting groove 705 at a position corresponding to the connecting ring 703, the arc surface of the connecting ring 703 is rotatably connected to the inner wall of the connecting groove 705, the arc surface of the connecting ring 701 is fixedly connected with a rotating frame 706, and the rotating frame The inner wall of 706 is rotatably connected with a rotating rod 707, and the rotating rod 707 and the connecting ring 701 are fixedly connected with the same spring 715 on one side close to each other. The other end of the slip ring 704 is provided with a slide groove 708 corresponding to the position of the rotating rod 707. The cross section of the slide groove 708 is a right triangle. The slide groove 708 is slidably connected with the rotating rod 707. The arc surface of the stirring rod 10 is provided with a clamping groove 714 corresponding to the position of the rotating rod 707. The end of the rotating rod 707 away from the slip ring 704 is clamped with the clamping groove 714. By providing the docking device 7, personnel can easily disassemble and assemble the stirring rod 10, thereby The stirring rod 10 can be repaired or replaced, which improves the efficiency of the device in stirring the liquid. The end of the rotating rod 707 away from the slip ring 704 is fixedly connected with an extrusion ring 713. The extrusion ring 713 is an elastic rubber ring, which increases the friction between the rotating rod 707 and the card slot 714 and improves stability. The arc surface of the connecting ring 701 is fixedly connected to the limiting plate 709. The inner wall of the slip ring 704 corresponds to the position of the limiting plate 709 to open a limiting groove 710. The inner wall of the limiting groove 710 is slidably connected to the surface of the limiting plate 709. The limiting plate 709 limits the rotation direction of the slip ring 704, which is convenient for sliding. The groove 708 is aligned with the rotating rod 707, and the arc surface of the stirring rod 10 is fixedly connected to the limiting rod 711. A positioning groove 712 is provided on the inner wall of the connecting ring 701 corresponding to the position of the limiting rod 711. The inner wall of the positioning groove 712 is slidably connected to the surface of the limiting rod 711. The limiting rod 711 limits the rotation direction of the stirring rod 10, so that the slot 714 is conveniently aligned with the rotating rod 707. The connecting ring 701 is made of stainless steel, and the threaded ring 702 is made of stainless steel. The threaded ring 702 and the connecting ring 701 are set to be made of stainless steel, which can effectively reduce the oxidation efficiency of the threaded ring 702 and the connecting ring 701.
[0034] Reference Figure 6As shown, in this embodiment: the fixing device 8 includes a fixing plate 81, one side of the fixing plate 81 is fixedly connected to the arc surface of the tank cover 2, the cross section of the fixing plate 81 is "T"-shaped, the arc surface of the tank body 1 is fixedly connected with a positioning plate 83, the inner wall of the positioning plate 83 is threadedly connected with a screw 84, one side of the screw 84 is rotatably connected with a block 85, the cross section of the block 85 is "U"-shaped, and the surface of the fixing plate 81 is provided with an auxiliary groove 82 at a position corresponding to the block 85, and the size of the auxiliary groove 82 is adapted to the size of the block 85. By setting the fixing device 8, personnel can conveniently open and close the tank body 1 and the tank cover 2. The inner wall of the positioning plate 83 is slidably connected to the limiting column 86. One end of the limiting column 86 is fixedly connected to the block 85 to limit the rotation direction of the block 85, so that the block 85 is convenient to align the auxiliary groove 82. A plurality of anti-slip grooves 87 are provided on the end of the screw rod 84 away from the block 85. The plurality of anti-slip grooves 87 are evenly distributed on the arc surface of the screw rod 84, so as to enhance the friction between the hand and the screw rod 84 and facilitate the rotation of the screw rod 84.
[0035] The working principle of a creatine loading silo tank provided by the utility model is as follows. When it is necessary to replace the stirring rod 10, first open the tank cover 2 upwards, take the stirring rod 10 out of the tank body 1, and then rotate the threaded ring 702 upwards. The threaded ring 702 drives the connecting ring 703 to rotate upwards. Since the limiting plate 709 limits the rotation direction of the sliding ring 704, the connecting ring 703 can only drive the sliding ring 704 to slide upwards. When the sliding groove 708 on the sliding ring 704 completely slides out from the surface of the rotating rod 707, at this time, the rotating rod 707, under the extension force of the spring 715, pops up one end of the rotating rod 707 from the card slot 714, and releases the connection relationship between the stirring rod 10 and the connecting ring 701. When it is necessary to install a new stirring rod 10, first align the limiting rod 711 on the stirring rod 10 with the positioning groove 712 on the connecting ring 701, and then slide it in. When the card slot 714 is aligned with When one end of the rotating rod 707 is rotated, the threaded ring 702 is rotated downward, and the threaded ring 702 drives the connecting ring 703 to rotate downward. Since the limiting plate 709 limits the rotation direction of the sliding ring 704, the connecting ring 703 can only drive the sliding ring 704 to slide downward. When the sliding groove 708 on the sliding ring 704 contacts the surface of one end of the rotating rod 707, it continues to slide downward until the other end of the rotating rod 707 rotates into the slot 714, and a connection relationship is established between the stirring rod 10 and the connecting ring 701. At this time, the spring 715 is in a compressed state, and then the tank cover 2 and the tank body 1 are closed, and then various creatine raw materials are poured into the tank body 1 through the feed port 5, and the control panel 3 is operated to start the motor 4. The output end of the motor 4 drives the rotating column 9 to rotate, and the rotating column 9 drives the stirring rod 10 to rotate with the help of the connecting ring 701 and the rotating rod 707, so as to achieve stirring and mixing of various creatine raw materials.
[0036] In the present invention, when it is necessary to open the tank body 1, the screw rod 84 is first rotated, and the rotation direction of the block 85 is limited under the action of the limit column 86, so that the screw rod 84 can only drive the block 85 to slide out from the auxiliary grooves 82 on both sides of the fixing plate 81. When the block 85 completely slides out of the auxiliary grooves 82, the fixing effect between the tank body 1 and the tank cover 2 is released.
[0037] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be an indirect connection through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood by specific circumstances.
Claims
1. A creatine loading tank, comprising a tank body (1) and a stirring rod (10), characterized in that: The upper surface of the tank body (1) is in contact with a tank cover (2), a control panel (3) is provided on the upper surface of the tank cover (2), a motor (4) is fixedly connected to the side of the control panel (3), the control panel (3) is electrically connected to the motor (4), the upper surface of the tank cover (2) is connected to a feed port (5), the output end of the motor (4) is fixedly connected to a rotating column (9), the inner wall of the tank cover (2) is rotatably connected to the rotating column (9), and the bottom surface of the tank body (1) is The rotating column (9) is connected to a discharge port (6), and a docking device (7) is provided at the other end of the rotating column (9). The docking device (7) comprises a connecting ring (701), and the connecting ring (701) is fixedly connected to the rotating column (9). The arc surface of the connecting ring (701) is threadedly connected to a threaded ring (702), and the side of the threaded ring (702) away from the tank cover (2) is fixedly connected to a connecting ring (703), and the arc surface of the connecting ring (701) is slidably connected to a slip ring (704). ), a connecting groove (705) is provided on a side of the slip ring (704) close to the threaded ring (702) at a position corresponding to the connecting ring (703), the arc surface of the connecting ring (703) is rotatably connected to the inner wall of the connecting groove (705), the arc surface of the connecting ring (701) is fixedly connected to a rotating frame (706), the inner wall of the rotating frame (706) is rotatably connected to a rotating rod (707), and the rotating rod (707) and the connecting ring (701) are fixedly connected on one side close to each other. The same spring (715) is fixedly connected, the other end of the slip ring (704) is provided with a slide groove (708) corresponding to the position of the rotating rod (707), the cross section of the slide groove (708) is a right triangle, the slide groove (708) is slidably connected to the rotating rod (707), the arc surface of the stirring rod (10) is provided with a clamping groove (714) corresponding to the position of the rotating rod (707), and the end of the rotating rod (707) away from the slip ring (704) is clamped with the clamping groove (714).
2. A creatine loading silo tank according to claim 1, characterized in that: One end of the rotating rod (707) away from the slip ring (704) is fixedly connected to an extrusion ring (713), and the extrusion ring (713) is an elastic rubber ring.
3. A creatine loading tank according to claim 1, characterized in that: The arc surface of the connecting ring (701) is fixedly connected to the limiting plate (709), and a limiting groove (710) is provided on the inner wall of the slip ring (704) at a position corresponding to the limiting plate (709), and the inner wall of the limiting groove (710) is slidably connected to the surface of the limiting plate (709).
4. The creatine loading tank according to claim 1, characterized in that: The arc surface of the stirring rod (10) is fixedly connected to a limiting rod (711), and a positioning groove (712) is provided on the inner wall of the connecting ring (701) at a position corresponding to the limiting rod (711), and the inner wall of the positioning groove (712) is slidably connected to the surface of the limiting rod (711).
5. The creatine loading tank according to claim 1, characterized in that: The connecting ring (701) is made of stainless steel, and the threaded ring (702) is made of stainless steel.
6. The creatine loading tank according to claim 1, characterized in that: A fixing device (8) is provided on one side of the tank body (1) close to the tank cover (2), and the fixing device (8) comprises a fixing plate (81), one side of the fixing plate (81) is fixedly connected to the arc surface of the tank cover (2), and the cross section of the fixing plate (81) is in a "T" shape. A positioning plate (83) is fixedly connected to the arc surface of the tank body (1), and a screw rod (84) is threadedly connected to the inner wall of the positioning plate (83). A clamping block (85) is rotatably connected to one side of the screw rod (84), and the cross section of the clamping block (85) is in a "U" shape. An auxiliary groove (82) is provided on the surface of the fixing plate (81) at a position corresponding to the clamping block (85), and the size of the auxiliary groove (82) is matched with the size of the clamping block (85).
7. A creatine loading tank according to claim 6, characterized in that: The inner wall of the positioning plate (83) is slidably connected to a limiting column (86), and one end of the limiting column (86) is fixedly connected to a clamping block (85).
8. The creatine loading tank according to claim 6, characterized in that: A plurality of anti-slip grooves (87) are formed at one end of the screw rod (84) away from the clamping block (85), and the plurality of anti-slip grooves (87) are evenly distributed on the arc surface of the screw rod (84).