Material receiving and carrying frame of stirrer

By designing a rotatable support plate structure, the problem of inconvenient material unloading in small or medium-sized mixers is solved, an efficient and stable material receiving process is achieved, and material splashing and space occupied are reduced.

CN223439708UActive Publication Date: 2025-10-17ZUMING BEAN PROD
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Patent Information

Application Number
CN202422939929.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-10-17
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

The existing small or medium-sized mixers are inconvenient to operate during the pouring process, which easily causes the slurry to spill, and the existing material receiving device is not suitable for semi-automatic mixers.

Method used

A material receiving rack for a mixer is designed, comprising a rotatable first support plate and a second support plate to form a support structure for placing a material receiving tray, raising the height of the mixer to facilitate dumping and discharging of materials, and fixing the position of the material receiving tray through a limiting structure to reduce material splashing.

Benefits of technology

It improves the material pouring efficiency, reduces material splashing, has a simple structure, is easy to use and store, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a material receiving carrier of a stirring machine, which belongs to the technical field of material receiving of stirring equipment and comprises a carrier, a first support plate and a second support plate, the first support plate rotates along the horizontal direction, and the second support plate rotates along the vertical direction and can rotate to the upper side of the first support plate are arranged on the outer side of the carrier. The rotating shaft of the second supporting plate corresponds to the top of the first supporting plate in position. According to the scheme, the second supporting plate is a direct supporting part of the material receiving disc, the first supporting plate serves as a limiting and supporting part of the second supporting plate, the first supporting plate and the second supporting plate can be unfolded and stored in a rotating connection mode, and the material receiving disc is simple in structure, convenient to use and store and small in occupied space. After the stirring work of the stirring machine is completed, the stirring machine can directly pour slurry onto the material receiving discs on the first supporting plate and the second supporting plate, meanwhile, the height of the stirring machine is increased through the object carrying frame, and operation of workers is more convenient.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a carrier, more specifically, it relates to a blender receiving carrier. BACKGROUND

[0002] For some small or medium-sized bean product blender, the slurry after stirring needs to be transferred through the receiving tray, and when the blender pours out the slurry, the stirring barrel on the blender is manually rotated to tilt the barrel mouth until the slurry is poured out and accepted by the receiving tray. During this process, the stirring barrel needs to be manually rotated, and the receiving tray also needs to be manually held or fixed to the barrel mouth of the stirring barrel, which is very inconvenient to operate and can easily cause the slurry to spill out.

[0003] For example: Chinese patent No. CN117774129A, published on March 29, 2024, with the title of a new type of blender discharge device, the application discloses a receiving device of a blender, which includes a support frame, the support frame is composed of two rectangular frames in the horizontal direction and a plurality of support columns in the vertical direction, and the plurality of support columns are fixedly arranged between the two rectangular frames, a double-barreled stirring barrel is fixedly arranged on the upper rectangular frame, a plurality of object carrying plates are fixedly arranged on the upper surface of the upper rectangular frame, a stirring shaft is rotatably arranged in the stirring barrel, and after stirring, the baffle is opened. The processed material can fall onto the discharge hopper through the screening net after the material meets the specification after stirring, and the material that is not dispersed by stirring cannot pass through the screening net, and the material is continuously stirred by the stirring rod until the material can pass through the screening net, and the worker can continue to add material through the feeding port during the stirring process. The receiving trolley can receive the stirred material at the bottom discharge port, which is simple and convenient. This scheme cannot be applied to the receiving of the pouring type discharge of small or medium-sized blenders, nor to the semi-automatic blender operated by humans, and the scheme can also cause the slurry to spill out. UTILITY MODEL CONTENTS

[0004] The utility model overcomes the inconvenience of the existing pouring type blender during the pouring process, provides a blender receiving carrier, which can raise the overall working height of the blender, and has a carrier table for placing the receiving tray, which is beneficial to the receiving of the pouring of the blender.

[0005] In order to solve the above technical problems, the utility model discloses the following technical scheme: a stirring machine material receiving carrier, including the carrier, the first support plate that is rotated along the horizontal direction and the second support plate that is rotated along the vertical direction and can be rotated to the first support plate top is equipped with outside the carrier, the rotation axis of the second support plate corresponds with the top position of the first support plate, in the scheme, the first support plate and the second support plate on the carrier are used to form a whole support component, can be used as the structure of placing the material receiving tray, and the support frame is used as the structure of placing the stirring machine, when the stirring machine stirring work is completed, the stirring machine can directly pour the slurry to the material receiving tray on the first support plate and the second support plate, simultaneously, the carrier lifts the height of the stirring machine, and the staff operation is more convenient, in the scheme, the second support plate is the direct support component of the material receiving tray, and the first support plate is used as the limiting and support component of the second support plate, through the mode of rotation connection, the first support plate and the second support plate can be unfolded and stored, and the structure is simple, convenient to use, convenient to store and occupies small space.

[0006] As preferred, the carrier is provided with a mounting seat, the mounting seat is L-shaped, and the first support plate and the second support plate are rotationally connected to the mounting seat. The mounting seat is used for mounting the first support plate and the second support plate, and the mounting seat is designed in an L shape, so that the first support plate and the second support plate can be mounted on two mutually perpendicular planes, and it is also beneficial to be mounted at the corner vertical position of the carrier.

[0007] As preferred, the top of the first support plate is provided with a first positioning part, and the lower surface of the second support plate is provided with a second positioning part matched with the first positioning part. The first positioning part and the second positioning part are used for limiting and fixing the first support plate and the second support plate, so that the material receiving tray can be stably placed when the carrier is used to receive materials.

[0008] As preferred, the top of the carrier is formed into a carrier platform by a plurality of supports arranged in a horizontal annular shape, and the supports are provided with limiting parts for limiting the periphery of the carrier platform. The carrier platform at the top of the carrier is used for placing and mounting the stirring machine, and the supports form the limiting structure while forming the carrier platform, which is used for limiting and fixing the stirring machine.

[0009] As preferred, the rotation axis position of the second support plate is higher than the position above the limiting part. The rotation axis of the second support plate can determine the height of the second support plate in the horizontal position, and here, the rotation axis of the second support plate is designed to be higher than the position of the limiting part, so as to lift the position of the second support plate, thereby reducing the distance between the material receiving tray and the discharge port of the stirring machine, so as to reduce the splashing of materials when pouring the discharge.

[0010] As preferred, the support is an angle steel. The support can adopt an angle steel structure, which is simple in structure, easy to produce and process, and easy to obtain materials.

[0011] As preferred, the mounting seat is connected to the carrier in a sliding manner along the vertical direction. The mounting seat can also be designed to be arranged on the carrier in a sliding manner along the vertical direction, so that the height position of the mounting seat on the carrier can be changed. When the material needs to be received, the height of the mounting seat can be raised. When the receiving of the material is completed, the mounting seat can be lowered to a position below the top of the carrier, so that the mounting seat does not protrude from the top of the carrier.

[0012] As preferred, the mounting seat and the carrier are provided with adjusting positioning holes. The adjusting positioning holes can be used to position and fix the positions of the mounting seat and the carrier.

[0013] As preferred, the upper surface of the second support plate is provided with a positioning groove. The positioning groove can be used to position and fix the receiving tray, so that the position of the receiving tray is relatively stable when the blender pours out the material.

[0014] Compared with the prior art, the present application has the following advantages: (1) the present application can raise the overall working height of the blender, and has a carrier on which the receiving tray can be placed, which is beneficial to the receiving of the material poured out by the blender; (2) the receiving efficiency can be improved, and the splashing of the material during the receiving process can be reduced; (3) the present application has a storage function, and the floor space occupied by the carrier can be reduced; (4) the structure is simple, the production cost is low, the present application is easy to use and not easy to be damaged. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is a perspective view of the present application.

[0016] Figure 2 is a side view of the present application.

[0017] Figure 3 is a top view of the present application.

[0018] Figure 4 is a structural schematic view of the second support plate of the present application.

[0019] Figure 5 is a schematic view of another embodiment of the present application.

[0020] In the drawings: 1. carrier, 2. first support plate, 3. second support plate, 4. mounting seat, 5. first positioning part, 6. second positioning part, 7. support, 8. carrier platform, 9. limiting part, 10. positioning groove, 11. sliding groove, 12. adjusting positioning hole. DETAILED DESCRIPTION

[0021] The technical scheme of the present application will be further described in detail below with specific embodiments and in combination with the drawings.

[0022] Embodiment 1: a blender receiving rack as shown in Figures 1 to 4 The embodiment shows a blender receiving rack, which comprises a rack 1, and the top of the rack 1 is provided with support components for supporting a blender and a receiving device respectively, and neither the blender nor the receiving device is shown. Specifically, the position directly above the rack 1 can be used to place the blender, and the position outside the rack 1 is provided with a support structure for supporting the receiving device. Specifically, an installation seat 4 is arranged outwardly at the side of the rack 1, and the installation seat 4 is arranged at the corner position of the rack 1. A first support plate 2 and a second support plate 3 are arranged on the installation seat 4, and both the first support plate 2 and the second support plate 3 are rotationally connected to the installation seat 4. In the embodiment, both the first support plate 2 and the second support plate 3 are rectangular plate structures. The first support plate 2 is arranged along a vertical plane, and one end of the first support plate 2 is rotationally connected to the installation seat 4. The rotation axis of the first support plate 2 is arranged along a vertical direction, so that the first support plate 2 can only rotate in a horizontal direction. The other end of the first support plate 2 is in a suspended state. One end of the second support plate 3 is also rotationally connected to the installation seat 4. The rotation axis of the second support plate 3 is arranged in a horizontal direction, and the position of the rotation axis of the second support plate 3 is higher than that of the first support plate 2. The second support plate 3 can rotate along a vertical direction. The other end of the second support plate 3 is also in a suspended state. It needs to be noted that the rotation axis of the first support plate 2 and the rotation axis of the second support plate 3 are perpendicular to each other but do not intersect, and the rotation axis of the first support plate 2 and the rotation axis of the second support plate 3 are located in the same vertical plane on the installation seat 4.

[0023] It also needs to be noted that the highest position of the first support plate 2 in the vertical direction is level with the position of the rotation axis of the second support plate 3. Since the position of the rotation axis of the second support plate 3 is higher than that of the first support plate 2, the second support plate 3 can be rotated to a position higher than the first support plate 2 when the second support plate 3 rotates along the vertical direction. And the number of the first support plate 2 can be two, and only one is shown in the embodiment.

[0024] When the first support plate 2 and the second support plate 3 need to be used, first, the second support plate 3 is rotated upward to a position higher than the first support plate 2, and then the first support plate 2 is horizontally rotated to a position below the second support plate 3, and then the second support plate 3 is loosened, so that the second support plate 3 rotates downward and abuts against the upper position of the first support plate 2. At this time, the second support plate 3 is in a horizontal position, and the first support plate 2 serves as a support component to support and limit the bottom of the second support plate 3, so as to prevent the second support plate 3 from continuing to rotate downward. The receiving tray can be placed on the second support plate 3, and the receiving tray is in a horizontal position. The blender can be installed on the top of the rack 1, and the pouring outlet position of the blender is higher than the position of the second support plate 3 when the second support plate 3 is in a horizontal position. In this way, when the blender pours out materials, the slurry can be poured into the receiving tray which is relatively low in position.

[0025] When the first support plate 2 and the second support plate 3 are not needed to be used, that is, after the blender pours out the material operation is completed, the first support plate 2 and the second support plate 3 are stored. Specifically, first, the second support plate 3 is slightly lifted up to release the limiting between the first support plate 2 and the second support plate 3, then the first support plate 2 is horizontally rotated to the outside below the second support plate 3, so that the first support plate 2 is not in the position below the second support plate 3, then the second support plate 3 is rotated downward to the lowest position, so that the second support plate 3 and the side of the carrier 1 are flush, and finally the first support plate 2 is rotated along the horizontal direction and close to the second support plate 3, so that the first support plate 2 is flush on the second support plate 3. In this way, the first support plate 2 and the second support plate 3 can be stored in the side position of the carrier 1 to reduce the overall volume of the carrier 1 and reduce the floor space. In addition to the above first storage mode, the following second storage mode can also be used. Specifically, first, the second support plate 3 is slightly lifted up to release the limiting between the first support plate 2 and the second support plate 3, and the first support plate 2 is in a free state. The first support plate 2 is horizontally rotated to the side position of the carrier 1 so that the first support plate 2 and the side of the carrier 1 are flush, and then the second support plate 3 is lowered. The second support plate 3 is rotated downward to the lowest position under the action of gravity and is flush with the surface of the first support plate 2. In this way, the first support plate 2 and the second support plate 3 can also be stored in the side position of the carrier 1 to reduce the overall volume of the carrier 1.

[0026] It should be noted that for the first storage mode, the limiting and fixing between the first support plate 2 and the second support plate 3 are needed. The limiting structure is located on the lower surface of the second support plate 3 and the top of the first support plate 2, so that the limiting structure on the lower surface of the second support plate 3 occupies a certain space (thickness). At this time, if the second storage mode is used, the second support plate 3 cannot be flush with the surface of the first support plate 2, but forms a certain angle (caused by the limiting structure between the first support plate 2 and the second support plate 3). For the second storage mode, it can only be used when the limiting structure between the first support plate 2 and the second support plate 3 has a small volume. In this way, the angle between the first support plate 2 and the second support plate 3 in the storage state can be reduced to the maximum extent to reduce the overall volume of the first support plate 2 and the second support plate 3 after storage. In addition, compared with the first storage mode, the second storage mode can rely on the gravity of the second support plate 3 to store and fix the first support plate 2 and the second support plate 5 to prevent the first support plate 2 and the second support plate 3 from being unfolded. In the first storage mode, the first support plate 2 can store and fix the second support plate 3, but the first support plate 2 is not fixed after storage. Therefore, an additional structure is needed to fix the first support plate 2 after storage.

[0027] Therefore, in this solution, the best situation is to design the limiting structures of the first support plate 2 and the second support plate 3 brackets to be as small as possible, and then adopt the second storage method.

[0028] In this embodiment, the object carrier 1 is a rectangular frame formed by connecting a number of vertically and horizontally arranged rods. Specifically, the object carrier 1 can be composed of four vertical rods and eight horizontal rods. The four vertical rods are connected at the bottom by four horizontal rods, and similarly, four horizontal rods are used above the four vertical rods to fix the connection. The four horizontal rods above the object carrier 1 are brackets 7, and the mounting base 4 is fixed to the brackets 7. Specifically, the bracket 7 is an angle steel structure. The four angle steel rods are connected end to end to form a rectangular closed loop structure. The inner corners of the four angle steel rods are all facing the inside of the closed loop structure, that is, one side of the angle steel is in a horizontal state, and the other side is in a vertical state, with the right angle of the angle steel facing upward. In this way, the vertical side of the four angle steel rods forms an annular limit portion 9, and the horizontal side of the four angle steel rods forms a loading platform 8. The loading platform 8 can support the mixer, and the limit portion 9 can limit and fix the mixer. If necessary, support rods (not shown in the figure) can be provided inside the four angle steels so that the loading platform 8 is in the shape of a Chinese character "田" (field) to improve the support stability of the mixer.

[0029] The mounting base 4 is an L-shaped mounting plate. The mounting base 4 is arranged at the connection position of the two angle steels, that is, at a right angle to the top of the material carrier 1. One side of the mounting base 4 is fixed to the angle steel on one side of the material carrier 1, and the other side of the mounting base 4 is fixed to the angle steel on the adjacent side of the material carrier 1. The first support plate 2 is hinged to one side of the mounting base 4 by a hinge, and the second support plate 3 is hinged to the other side of the mounting base 4 by a hinge, and the rotation axis of the second support plate 3 is located at the top of the mounting base 4. It should be noted that the top position of the mounting base 4 is higher than the top position of the limit portion 9 formed by the angle steel. In this way, when the second support plate 3 is in a horizontal state, it can be ensured that the height position of the second support plate 3 is higher than the position of the limit portion 9. Raising the second support plate 3 can also reduce the distance between the receiving tray and the mixer discharge port, thereby reducing the splashing of materials when pouring and discharging.

[0030] The first support plate 2 and the second support plate 3 are provided with a limiting structure, specifically, the first support plate 2 is provided with a first positioning part 5 on the top, and the second support plate 3 is provided with a second positioning part 6 on the bottom, the first positioning part 5 and the second positioning part 6 can cooperate with each other to realize the limiting and fixing of the first support plate 2 and the second support plate 3. In the embodiment, the first positioning part 5 is a part protruding on the top of the first support plate 2, and the position of the first positioning part 5 is away from the position of the rotating shaft of the first support plate 2; similarly, the second positioning part 6 is a groove structure, specifically, the groove is formed by two limiting blocks arranged at intervals, the first positioning part 5 can be placed into the second positioning part 6, when the second positioning part 6 on the second support plate 3 is pressed into the first positioning part 5 of the first support plate 2, the second support plate 3 can be limited on the first support plate 2, preventing the second support plate 3 from rotating in the vertical direction during use.

[0031] The upper surface of the second support plate 3 is also provided with a positioning groove 10, the positioning groove 10 is a recess structure recessed on the surface of the second support plate 3, the groove depth only needs to be set at 3mm to 6mm, which can preliminarily limit and fix the receiving tray placed on the second support plate 3.

[0032] Embodiment 2: a blender receiving and carrying rack as shown in Figures 2 to 5 The top of the carrying rack 1 is provided with support components for supporting a blender and a receiving device respectively, and the blender and the receiving device are not shown. Specifically, the position directly above the carrying rack 1 can be used to place the blender, and the position outside the carrying rack 1 is provided with a support structure for supporting the receiving device, specifically, an installation seat 4 is provided outwardly on the side of the carrying rack 1, the installation seat 4 is arranged at the corner position of the carrying rack 1, a first support plate 2 and a second support plate 3 are arranged on the installation seat 4, and the first support plate 2 and the second support plate 3 are both rotationally connected to the installation seat 4. In the embodiment, the first support plate 2 and the second support plate 3 are both rectangular plate structures, the first support plate 2 is arranged along a vertical plane, one end of the first support plate 2 is rotationally connected to the installation seat 4, the rotating shaft of the first support plate 2 is arranged in a vertical direction, so that the first support plate 2 can only rotate in a horizontal direction, and the other end of the first support plate 2 is in a suspended state; one end of the second support plate 3 is also rotationally connected to the installation seat 4, the rotating shaft of the second support plate 3 is arranged in a horizontal direction, and the position of the rotating shaft of the second support plate 3 is higher than that of the first support plate 2, the second support plate 3 can rotate in a vertical direction, and the other end of the second support plate 3 is also in a suspended state. It should be noted that the rotating shaft of the first support plate 2 and the rotating shaft of the second support plate 3 are perpendicular to each other but do not intersect, and the rotating shaft of the first support plate 2 and the rotating shaft of the second support plate 3 are located in the same vertical plane on the installation seat 4.

[0033] It is also needed to be mentioned that the highest position of the first support plate 2 in the vertical direction is level with the rotating shaft position of the second support plate 3, and since the rotating shaft position of the second support plate 3 is higher than that of the first support plate 2, the second support plate 3 can be rotated to a position higher than the first support plate 2 when rotated in the vertical direction.

[0034] When the first support plate 2 and the second support plate 3 need to be used, first rotate the second support plate 3 upward to a position higher than the first support plate 2, then horizontally rotate the first support plate 2 so that it is rotated to a position below the second support plate 3, then release the second support plate 3 so that it is rotated downward and abuts against the upper position of the first support plate 2, and at this time the second support plate 3 is in a horizontal position, the first support plate 2 functions as a support part to support and limit the bottom of the second support plate 3, preventing the second support plate 3 from continuing to rotate downward. The second support plate 3 can place a receiving tray thereon, and the receiving tray is in a horizontal position. A blender can be installed on the top of the object carrier 1, and the pouring outlet position of the blender is higher than the position of the second support plate 3 when it is in a horizontal position. In this way, when the blender pours out materials, the slurry can be poured into the receiving tray which is relatively low in position.

[0035] When the first support plate 2 and the second support plate 3 do not need to be used, i.e. after the blender finishes pouring out materials, the first support plate 2 and the second support plate 3 can be stored. Specifically, first slightly lift the second support plate 3 to release the limitation between the first support plate 2 and the second support plate 3, then horizontally rotate the first support plate 2 to the outside of the second support plate 3 below, so that the first support plate 2 is not in the position below the second support plate 3, then rotate the second support plate 3 downward to the lowest position so that the second support plate 3 is flush with the side of the object carrier 1, and finally rotate the first support plate 2 along the horizontal direction and close to the second support plate 3, so that the first support plate 2 is flush with the second support plate 3. In this way, the first support plate 2 and the second support plate 3 can be stored in the side position of the object carrier 1, so as to reduce the overall volume of the object carrier 1 and the occupied space. In addition to the above first storage mode, the second storage mode can also be used. Specifically, first slightly lift the second support plate 3 to release the limitation between the first support plate 2 and the second support plate 3, so that the first support plate 2 is in a free state, then horizontally rotate the first support plate 2 to the side position of the object carrier 1 so that the first support plate 2 is flush with the side of the object carrier 1, then put down the second support plate 3, which is rotated downward to the lowest position under the action of gravity and is flush with the surface of the first support plate 2. In this way, the first support plate 2 and the second support plate 3 can also be stored in the side position of the object carrier 1, so as to reduce the overall volume of the object carrier 1.

[0036] It should be noted that with the first storage method, since the first support plate 2 and the second support plate 3 need to be limited and fixed, the limiting structure is located on the lower surface of the second support plate 3 and the top of the first support plate 2. As a result, the limiting structure on the lower surface of the second support plate 3 will occupy a certain amount of space (thickness). In this case, if the second storage method is adopted, the second support plate 3 will not be able to be flush with the surface of the first support plate 2, but will form a certain angle (caused by the limiting structure located between the first support plate 2 and the second support plate 3). The second storage method can only be used when the volume of the limiting structure between the first support plate 2 and the second support plate 3 is small. This can reduce the angle between the first support plate 2 and the second support plate 3 in the stored state, thereby minimizing the overall volume of the first support plate 2 and the second support plate 3 after storage. In addition, compared with the first storage method, the second storage method is that after storage, the second support plate 3 can rely on its own gravity to store and fix the first support plate 2 and the second support plate 5 to prevent the first support plate 2 and the second support plate 3 from unfolding; in the first storage method, the first support plate 2 can fix the second support plate 3 when it is stored, but the first support plate 2 has no fixed effect after storage, so an additional structure needs to be set up to fix the first support plate 2 after storage.

[0037] Therefore, in this solution, the best situation is to design the limiting structures of the first support plate 2 and the second support plate 3 brackets to be as small as possible, and then adopt the second storage method.

[0038] In this embodiment, the object carrier 1 is a rectangular frame formed by connecting a number of vertically and horizontally arranged rods. Specifically, the object carrier 1 can be composed of four vertical rods and eight horizontal rods. The four vertical rods are connected at the bottom by four horizontal rods, and similarly, four horizontal rods are used above the four vertical rods for fixed connection. The four horizontal rods above the object carrier 1 are brackets 7, and the mounting base 4 is installed and slidably connected to the brackets 7. Specifically, the bracket 7 is an angle steel structure. The four angle steel rods are connected end to end to form a rectangular closed loop structure. The inner corners of the four angle steel rods are all facing the inside of the closed loop structure, that is, one side of the angle steel is in a horizontal state, and the other side is in a vertical state, with the right angle of the angle steel facing upward. In this way, the vertical side of the four angle steel rods forms an annular limit portion 9, and the horizontal side of the four angle steel rods forms a loading platform 8. The loading platform 8 can support the mixer, and the limit portion 9 can limit and fix the mixer. If necessary, support rods (not shown in the figure) can be provided inside the four angle steels so that the loading platform 8 is in the shape of a Chinese character "田" (field) to improve the support stability of the mixer.

[0039] The mounting seat 4 is an L-shaped mounting plate arranged at the connecting position of the two angle steels, i.e. at the top right-angle position of the object carrier 1, one side of the mounting seat 4 is fixed to the angle steel of one side surface of the object carrier 1, and the other side of the mounting seat 4 is fixed to the angle steel of the adjacent side surface of the object carrier 1. The first support plate 2 is hingedly connected to one side of the mounting seat 4, and the second support plate 3 is hingedly connected to the other side of the mounting seat 4, and the rotation axis of the second support plate 3 is located at the uppermost side of the mounting seat 4. It should be noted that the uppermost position of the mounting seat 4 is higher than the uppermost position of the limiting portion 9 formed by the angle steels, so that when the second support plate 3 is in a horizontal state, the height position of the second support plate 3 is ensured to be higher than the position of the limiting portion 9, and lifting the second support plate 3 can also reduce the distance between the receiving tray and the discharge port of the mixer, thereby reducing the splashing of materials when pouring out the materials.

[0040] A limiting structure is arranged between the first support plate 2 and the second support plate 3, specifically, a first positioning portion 5 is arranged at the top of the first support plate 2, and a second positioning portion 6 is arranged at the bottom of the second support plate 3, and the first positioning portion 5 and the second positioning portion 6 can cooperate with each other to limit and fix the first support plate 2 and the second support plate 3. In this embodiment, the first positioning portion 5 is a part protruding from the top of the first support plate 2, and the position of the first positioning portion 5 is located away from the position of the rotation axis of the first support plate 2. Similarly, the second positioning portion 6 is a groove structure, specifically, the groove is formed by two limiting blocks arranged at intervals, and the first positioning portion 5 can be placed into the second positioning portion 6, and when the second positioning portion 6 on the second support plate 3 is pressed into the first positioning portion 5 of the first support plate 2, the second support plate 3 can be limited on the first support plate 2 to prevent the second support plate 3 from rotating in the vertical direction during use.

[0041] A positioning groove 10 is further arranged on the upper surface of the second support plate 3, and the positioning groove 10 is a recess structure recessed from the surface of the second support plate 3, and the groove depth only needs to be set to 3mm to 6mm, which can preliminarily limit and fix the receiving tray placed on the second support plate 3.

[0042] The support 7 is fixed with the carrier 1 as a whole, and a sliding groove 11 structure is arranged on the support 7 and the carrier 1 of the mounting seat 4, and a corresponding sliding block structure (not shown in the figure) is arranged on the mounting seat 4. The mounting seat 4 can slide along the vertical direction of the carrier 1, and an adjusting positioning hole 12 is arranged on the sliding groove 11 and the mounting seat 4. When the mounting seat 4 is moved to the corresponding position on the sliding groove 11, the positioning member can be inserted into the adjusting positioning hole 12 to fix the relative position of the mounting seat 4 and the carrier 1, so as to change the height position of the mounting seat 4. When the material needs to be received, the height of the mounting seat 4 can be raised. After the receiving of the material is completed, the mounting seat 4 can be lowered to a position below the top of the carrier 1, so as to avoid that the mounting seat 4 protrudes from the top of the carrier 1.

Claims

1. A material receiving rack for a mixer, characterized in that: It includes a carrier, on the outside of which are provided a first support plate that rotates horizontally and a second support plate that rotates vertically and can be rotated above the first support plate, wherein the rotation axis of the second support plate corresponds to the top position of the first support plate.

2. A mixer material receiving rack according to claim 1, characterized in that: The carrier is provided with a mounting seat, which is L-shaped, and the first supporting plate and the second supporting plate are rotatably connected to the mounting seat.

3. A material receiving and loading rack for a mixer according to claim 2, characterized in that: A first positioning portion is provided on the top of the first support plate, and a second positioning portion cooperating with the positioning portion is provided on the lower surface of the second support plate.

4. A mixer material receiving and loading rack according to claim 1, characterized in that: The top of the loading rack is composed of a number of brackets arranged in a horizontal ring to form a loading platform, and the brackets are provided with limiting parts for limiting the periphery of the loading platform.

5. A material receiving and loading rack for a mixer according to claim 4, characterized in that: The rotation axis of the second supporting plate is located above the limiting portion.

6. A material receiving and loading rack for a mixer according to claim 4 or 5, characterized in that: The bracket is an angle steel.

7. A material receiving and loading rack for a mixer according to claim 2 or 3, characterized in that: The mounting seat is slidably connected to the carrier along a vertical direction.

8. A material receiving and loading rack for a mixer according to claim 7, characterized in that: Adjustment positioning holes are provided on the mounting seat and the carrier.

9. A material receiving and loading rack for a mixer according to any one of claims 1 to 5, characterized in that: A positioning groove is provided on the upper surface of the second supporting plate.

Citation Information

Patent Citations

  • Novel discharging device of stirrer

    CN117774129A