Receiving device and glass bead coating equipment
By designing a rotatable supporting part and a silo receiving port structure, the problems of long distance and high risk in the storage and transfer of multiple culture dishes are solved, the receiving device is miniaturized and the cost is reduced, and the receiving efficiency and safety are improved.
Patent Information
- Application Number
- CN202422988325.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-12-04
AI Technical Summary
In the prior art, the storage and transfer of multiple culture dishes involves long transfer distances, high risks, and a large equipment operating space, which is not conducive to equipment miniaturization and cost control.
A material receiving device is designed, including a silo and a supporting member. The supporting member can be rotatably set at the receiving port of the silo. By covering and opening the receiving port, stable stacking of the materials to be received is achieved, the mechanical structure is simplified, and the transfer distance and risk are reduced.
It effectively reduces the material transfer distance and risk, simplifies the mechanical structure, realizes the miniaturization and cost reduction of the material receiving device, and improves the material receiving efficiency and safety.
Smart Images

Figure CN223421415U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of biological sample sampling, in particular to a material receiving device and glass bead coating equipment. Background Art
[0002] After the strains are cultured in the culture dishes, the multiple culture dishes containing the strains need to be stacked in sequence in a silo for storage and subsequent experimental operations.
[0003] When storing culture dishes, multiple culture dishes need to be stacked in the silo from the top in sequence. However, the above storage method will cause the culture dishes to be transported over a long distance, resulting in greater transfer risks. In addition, the transfer equipment requires a large operating space, which is not conducive to the miniaturization of the equipment and cost control. Utility Model Content
[0004] In order to at least partially solve the problems existing in the prior art, according to one aspect of the present invention, a material receiving device is provided. The material receiving device includes a silo and a supporting member. The lower end of the silo is provided with a material receiving opening, and the material receiving opening is used for the material to be received to pass through and be stacked in the silo. The supporting member is rotatably arranged at the material receiving opening of the silo and can change the degree of blocking the material receiving opening by rotating relative to the silo. Wherein, when the lower surface of the supporting member is subjected to an upward force from the material to be received, the material to be received opens the material receiving opening; after the material to be received is fed from the material receiving opening and moves upward to the first preset position, it falls to the second preset position by gravity, and the supporting member blocks at least part of the material receiving opening and supports the material to be received to confine the material to be received to the second preset position.
[0005] The material receiving device of the present invention can abut against the lower surface of the supporting member and push the supporting member to rotate toward the inside of the silo, so that the material to be received can move from the material receiving port at the lower end of the silo into the silo. After the material to be received moves to the first preset position in the silo, the material to be received can move to the second preset position under the action of gravity and abut against the upper surface of the supporting member, thereby ensuring that the supporting member can support the material to be received and avoiding the material to be received from falling from the lower end of the silo, effectively reducing the moving distance and transfer risk of the material to be received to the silo, and simplifying the mechanical structure of the material receiving device, realizing the miniaturization of the material receiving device, and reducing the manufacturing cost and space required for the material receiving device.
[0006] Exemplarily, the supporting member is rotatably connected to the silo via a connecting shaft, and is rotatable relative to the silo between a first angular position that blocks at least a portion of the material receiving opening and a second angular position that opens the material receiving opening.
[0007] Exemplarily, the supporting member has a first part and a second part, the first part is configured in an arc shape, a first end of the first part is rotatably connected to the connecting shaft, and a second end of the first part is connected to the second part.
[0008] Exemplarily, there are multiple supporting members, and the multiple supporting members are arranged at intervals along the outer circumference of the material receiving port.
[0009] Exemplarily, an arcuate portion is formed at one end of the second portion away from the first portion, and the outer contour of the arcuate portion is adapted to the outer contour of the material to be collected.
[0010] Exemplarily, a guide surface is formed on the lower surface of the arc-shaped portion, and the materials to be collected enter the silo along the guide surface.
[0011] Exemplarily, the hopper includes a fixed seat and a limiting rod magnetically attracted to the fixed seat. The material receiving port is formed on the fixed seat. There are multiple limiting rods, and the multiple limiting rods are arranged at intervals along the circumference of the material receiving port.
[0012] Exemplarily, the material receiving device also includes a first conveying member and a second conveying member arranged at one end of the first conveying member, a plurality of materials to be received are placed on the first conveying member, and the second conveying member is used to drive the materials to be received on the first conveying member to move into the silo.
[0013] Exemplarily, the second conveying member includes a lifting part and a first driving member connected to the lifting part, the lifting part is used to support the material to be collected, and the first driving member is used to drive the lifting part to move along the first direction to drive the material to be collected into the silo through the lifting part.
[0014] Exemplarily, the second conveying member also includes a second driving member, which is connected to the lifting part through the first driving member, and the second driving member is used to drive the first driving member to move along the second direction and the third direction, and the first direction, the second direction and the third direction are perpendicular to each other.
[0015] According to one aspect of the present invention, a glass bead coating device is provided, comprising a switch cover assembly, a coating assembly and the material receiving device as described above, wherein the switch cover assembly and the coating assembly are sequentially arranged upstream of the material receiving device.
[0016] The above description is only an overview of the technical solution of the present invention. In order to more clearly understand the technical means of the present invention, it can be implemented in accordance with the contents of the specification. In order to make the above and other purposes, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are listed below. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The above and other purposes, features, and advantages of the present invention will become more apparent through a more detailed description of the embodiments of the present invention in conjunction with the accompanying drawings. The accompanying drawings are intended to provide a further understanding of the embodiments of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and are not intended to limit the present invention. In the drawings, the same reference numerals generally represent the same components or steps.
[0018] Figure 1 A perspective view of a material receiving device according to an exemplary embodiment of the present invention is shown (excluding the second conveying member);
[0019] Figure 2 A perspective view of a supporting member according to an exemplary embodiment of the present invention is shown when the supporting member is in a first angular position;
[0020] Figure 3 shows a perspective view of a supporting member in a second angular position according to an exemplary embodiment of the present invention;
[0021] Figure 4 A perspective view of a material receiving device (including a second conveying member) according to an exemplary embodiment of the present invention is shown.
[0022] Among them, the components represented by the reference numerals in the figures are:
[0023] 1. Material silo; 11. Material receiving port; 12. Fixed seat; 13. Limit rod; 2. Material to be collected; 3. Supporting member; 31. First part; 32. Second part; 321. Guide surface; 4. Connecting shaft; 5. Second conveying member; 51. Lifting part; 52. First driving member; 53. Second driving member. DETAILED DESCRIPTION
[0024] In order to make the purpose, technical solutions and advantages of the present invention more apparent, the following exemplary embodiments of the present invention will be described in detail with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments of the present invention. It should be understood that the present invention is not limited to the exemplary embodiments described herein. Based on the embodiments of the present invention described in this utility model, all other embodiments obtained by those skilled in the art without creative work should fall within the scope of protection of the present utility model.
[0025] In the following description, numerous details are provided to facilitate a thorough understanding of the present invention. However, those skilled in the art will appreciate that the following description merely illustrates preferred embodiments of the present invention, and that the present invention may be practiced without one or more of these details. Furthermore, to avoid confusion with the present invention, some technical features well known in the art have not been described in detail.
[0026] To thoroughly understand the embodiments of the present invention, a detailed structure will be provided in the following description. Obviously, the implementation of the embodiments of the present invention is not limited to the specific details familiar to those skilled in the art. Preferred embodiments of the present invention are described in detail below, but in addition to these detailed descriptions, the present invention may also have other embodiments.
[0027] In one embodiment of the present invention, a material receiving device is provided. The material receiving device can effectively reduce the travel distance and transfer risk of the material 2 to be received to the silo 1, and simplifies the mechanical structure of the material receiving device, thereby achieving miniaturization of the material receiving device. The following is a detailed description of a material receiving device according to an embodiment of the present invention, with reference to the accompanying drawings.
[0028] like Figures 1 to 3 As shown, the material receiving device includes a silo 1 and a supporting member 3. The lower end of the silo 1 has a material receiving opening 11, and the material receiving opening 11 is for the material to be received 2 to pass through and be stacked in the silo 1. The supporting member 3 is rotatably arranged at the material receiving opening 11 of the silo 1 and can change the degree of blocking the material receiving opening 11 by rotating relative to the silo 1. Specifically, when the lower surface of the supporting member 3 is subjected to an upward force from the material to be received 2, the material to be received 2 opens the material receiving opening 11; after the material to be received 2 is fed from the material receiving opening 11 and moves upward to the first preset position, it falls to the second preset position by gravity, and the supporting member 3 blocks at least part of the material receiving opening 11 and supports the material to be received 2 to confine the material to be received 2 to the second preset position.
[0029] The silo 1 may have a receiving cavity formed in a vertical direction, and the materials 2 to be received may be stacked in sequence in the receiving cavity through a receiving port 11 below the silo 1 .
[0030] The supporting member 3 can be rotatably disposed at the material receiving opening 11 of the silo 1 , and when the supporting member 3 is in a horizontal position, it can cover at least a portion of the material receiving opening 11 .
[0031] The first preset position and the second preset position can respectively represent different positions of the material to be received 2 within the receiving chamber of the silo 1. Specifically, the first preset position can be specifically represented as the position when the material to be received 2 moves vertically upward along the receiving port 11 and separates from the lower surface of the supporting member 3, and the second preset position can be specifically represented as the position when the upper surface of the supporting member 3 supports the material to be received 2.
[0032] The material receiving device, the to-be-received material 2 can abut against the lower surface of the supporting piece 3 and push the supporting piece 3 to rotate in the direction of the bin 1, so that the to-be-received material 2 can move to the bin 1 from the material receiving opening 11 at the lower end of the bin 1, and when the to-be-received material 2 moves to the first preset position in the bin 1, the to-be-received material 2 can move to the second preset position under the action of gravity and abut against the upper surface of the supporting piece 3, so that the supporting piece 3 can support the to-be-received material 2, and the situation that the to-be-received material 2 falls from the lower end of the bin 1 is avoided, the moving distance and the moving risk of the to-be-received material 2 moving to the bin 1 are effectively reduced, the mechanical mechanism of the material receiving device is simplified, the miniaturization of the material receiving device is realized, and the manufacturing cost and the space required by the material receiving device are reduced.
[0033] In some embodiments, as shown in Figures 1 to 3 The supporting piece 3 is rotationally connected to the bin 1 through the connecting shaft 4 and can rotate between a first angle position of shielding at least part of the material receiving opening 11 and a second angle position of opening the material receiving opening 11 relative to the bin 1.
[0034] The supporting piece 3 can be connected with the connecting shaft 4 and reciprocally rotate between the first angle position and the second angle position under the driving of the connecting shaft 4.
[0035] When the supporting piece 3 is in the first angle position, the supporting part can be in a horizontal position and shield at least part of the material receiving opening 11 to support the to-be-received material 2. When the supporting piece 3 is in the second angle position, the supporting part can rotate into the accommodating cavity of the bin 1 and open the material receiving opening 11, so that the to-be-received material 2 can enter the bin 1 from the material receiving opening 11.
[0036] In the above embodiment, the supporting piece 3 can rotate between the first angle position and the second angle position through the connecting shaft 4, thereby realizing the closing or opening of the material receiving opening 11 of the bin 1, effectively improving the flexibility of the rotation of the supporting piece 3, and ensuring the convenience and practicality of the material receiving of the material receiving device.
[0037] In some embodiments, as shown in Figure 2 and Figure 3 The supporting piece 3 has a first part 31 and a second part 32, the first part 31 is configured as an arc shape, the first end of the first part 31 is rotationally connected to the connecting shaft 4, and the second end of the first part 31 is connected with the second part 32.
[0038] The first end of the first part 31 can be curved away from the accommodating cavity of the bin 1 and connected with the connecting shaft 4, and the second end of the first part 31 can be connected with the second part 32 and in a horizontal direction.
[0039] In the above embodiment, the height position of the supporting member 3 can be higher than the height position of the connecting shaft 4, and the supporting member 3 can be driven by the connecting shaft 4 to rotate back and forth between the first angle position and the second angle position. In this way, while ensuring the flexible rotation of the supporting member 3, the length of the supporting member 3 in the horizontal direction can be reduced, thereby reducing the volume of the silo 1 and effectively improving the practicality of the material receiving device.
[0040] In some embodiments, there are multiple supporting members 3 , and the multiple supporting members 3 are arranged at intervals along the outer circumference of the material receiving port 11 .
[0041] Exemplarily, there can be two supporting members 3, which are respectively arranged on opposite sides of the receiving port 11, so that a balanced supporting force can be applied to the material to be received 2, ensuring that the force on both sides of the material to be received 2 at the receiving port 11 is uniform, avoiding the tilting of the material to be received 2 due to uneven force, and thus causing the silo 1 to overturn.
[0042] In the above embodiment, when the multiple supporting members 3 are in the first angular position, the material 2 to be received can simultaneously abut against the upper surfaces of the multiple supporting members 3, thereby distributing the weight of the material 2 to be received. This allows the material 2 to be stably confined within the silo 1 by the multiple supporting members 3, effectively improving the safety and reliability of the material receiving device. Furthermore, the multiple supporting members 3 arranged at intervals can significantly reduce local stress concentration, preventing damage to the supporting members 3 due to excessive local force.
[0043] In some embodiments, as Figure 2 and Figure 3 As shown, an arcuate portion is formed at one end of the second portion 32 away from the first portion 31 , and the outer contour of the arcuate portion is adapted to the outer contour of the material 2 to be collected.
[0044] The end of the second portion 32 away from the first portion 31 is recessed inward to form the aforementioned arcuate portion. When the material 2 to be received enters the silo 1 through the material opening, the material 2 pushes the supporting member 3 to rotate from the first angular position to the second angular position. The second portion 32 with its arcuate portion allows the material 2 to be quickly separated from the second portion 32 of the supporting member 3, thereby facilitating the rapid rotation of the supporting member 3 from the second angular position to the first angular position, thereby supporting the material 2.
[0045] In the above embodiment, the second portion 32 with the arc-shaped portion can not only ensure that the collected material is quickly separated from the second portion 32 of the supporting member 3, effectively improving the material collection efficiency of the collecting device, but also effectively reduce the weight of the supporting member 3 and improve the rotation flexibility of the supporting member 3.
[0046] In some embodiments, as Figure 2and Figure 3 As shown, a guide surface 321 is formed on the lower surface of the arc-shaped portion, and the material 2 to be collected enters the silo 1 along the guide surface 321 .
[0047] In the above embodiment, when the material to be received 2 enters the silo 1 through the receiving port 11, the material to be received 2 can be against the lower surface of the arc portion and quickly enter the silo 1 along the guide surface 321 formed on the lower surface of the arc portion, further improving the material receiving efficiency of the receiving device.
[0048] In some embodiments, as Figure 1 As shown, the silo 1 includes a fixed seat 12 and a limiting rod 13 magnetically attracted to the fixed seat 12 , a receiving port 11 is formed on the fixed seat 12 , and there are multiple limiting rods 13 , which are arranged at intervals along the circumference of the receiving port 11 .
[0049] The plurality of limiting rods 13 can be magnetically attracted to the fixing seat 12 , thereby enabling the silo 1 to be quickly installed and disassembled, thereby improving the convenience of using the silo 1 .
[0050] The material of the limit rod 13 can be plastic or stainless steel, preferably stainless steel. The limit rod 13 made of stainless steel has excellent corrosion resistance, which not only ensures the lightness and strength of the silo 1, but also reduces the requirements of the silo 1 on the use environment. This application does not make any specific restrictions on the material of the limit rod 13.
[0051] In the above embodiment, the limit rod 13 can be magnetically attracted to the fixed seat 12, which greatly facilitates the disassembly and assembly of the silo 1, and the multiple limit rods 13 arranged at circumferential intervals along the receiving port 11 can provide more uniform support and restriction, which not only effectively improves the stability and safety of the silo 1 structure, but also allows the operator to intuitively observe the amount of materials to be collected 2 in the silo 1, so that the silo 1 can be replaced in time after the silo 1 is full of materials to be collected 2.
[0052] In some embodiments, as Figure 4 As shown, the material receiving device also includes a first conveying member (not shown in the figure) and a second conveying member 5 arranged at one end of the first conveying member. A plurality of materials to be received 2 are placed on the first conveying member, and the second conveying member 5 is used to drive the materials to be received 2 on the first conveying member to move into the silo 1.
[0053] The first conveying member may specifically be a conveyor belt, which may drive a plurality of materials to be received 2 to move in sequence along the length direction of the conveyor belt, so as to convey the materials to be received 2 to the second conveying member 5 .
[0054] In the above embodiment, the first conveyor continuously conveys the incoming material 2 to the second conveyor 5. The second conveyor 5 precisely controls the movement speed and position of the incoming material 2, ensuring that the incoming material 2 enters the silo 1 accurately and reliably, thereby effectively improving the receiving efficiency of the receiving device. Furthermore, the automated coordination of the first and second conveyor 5 effectively reduces the need for manual handling of the incoming material 2 and the labor intensity of operators.
[0055] In some embodiments, as Figure 4 As shown, the second conveying member 5 includes a lifting portion 51 and a first driving member 52 connected to the lifting portion 51. The lifting portion 51 is used to support the material to be collected 2, and the first driving member 52 is used to drive the lifting portion 51 to move along the first direction to drive the material to be collected 2 into the silo 1 through the lifting portion 51.
[0056] The first direction can be represented as the direction of the Y axis in the Cartesian coordinate system. The lifting portion 51 can support the material 2 to be received on the first conveying member and lift the material 2 to be received into the silo 1 along the first direction under the drive of the first driving member 52 .
[0057] The lifting portion 51 can be adjusted according to the size and weight of different materials 2 to be collected, so as to meet different transportation requirements of the materials 2 to be collected.
[0058] The first driving member 52 may specifically be a cylinder or other device capable of driving the lifting portion 51 to move. The present application does not specifically limit the type of the first driving member 52 .
[0059] In the above embodiment, through the cooperation of the lifting part 51 and the first driving member 52, the material 2 to be collected can be quickly conveyed, which reduces the time and labor intensity of manual handling and effectively improves the conveying efficiency of the material collecting device.
[0060] In some embodiments, as Figure 4 As shown, the second conveying member 5 also includes a second driving member 53, which is connected to the lifting part 51 through the first driving member 52. The second driving member 53 is used to drive the first driving member 52 to move along the second direction and the third direction. The first direction, the second direction and the third direction are perpendicular to each other.
[0061] The second direction and the third direction may be expressed as directions of an X-axis and a Z-axis in a Cartesian coordinate system, respectively.
[0062] The second driving member 53 can drive the first driving member 52 to move in the second direction and the third direction respectively, thereby driving the lifting portion 51 connected to the first driving member 52 to move synchronously. Figure 4As shown, there can be multiple silos 1, and multiple silos 1 are arranged in parallel. When one of the silos 1 is full of materials 2 to be collected, the second driving member 53 can drive the lifting part 51 to move to the corresponding position of other silos 1, thereby facilitating the collection of materials in the silo 1.
[0063] In the above embodiment, the second driving member 53 can drive the first driving member 52 and the lifting portion 51 to move in the second direction and the third direction, thereby achieving more precise spatial positioning and transportation of the material to be received 2, so that the material to be received 2 can be accurately delivered to the silo 1. In addition, the material receiving device can have a larger conveying range, further improving the conveying efficiency and practicality of the material receiving device.
[0064] According to one aspect of the present invention, a glass bead coating device is provided, comprising a switch cover assembly, a coating assembly, and the aforementioned material receiving device, wherein the switch cover assembly and the coating assembly are sequentially disposed upstream of the material receiving device. The glass bead coating device is used to inoculate bacterial strains by moving glass beads coated with bacterial strains on a culture medium during bacterial culture. The trajectory of the glass beads moving on the culture medium can be understood as coating.
[0065] When using the glass bead coating equipment to add beads into the culture dish, the switch cover assembly can open the cover of the culture dish so that the coating assembly can add beads into the culture dish, and the material collecting device can collect and store the culture dish with added beads to ensure the safety of the storage of the culture dish.
[0066] The glass bead coating device of the present invention includes the material receiving device as described above. Since the material receiving device has the beneficial effects as described above, the glass bead coating device including the material receiving device must also have the beneficial effects as described above.
[0067] Although example embodiments have been described herein with reference to the accompanying drawings, it should be understood that the above example embodiments are merely illustrative and are not intended to limit the scope of the present invention. Various changes and modifications may be made therein by those skilled in the art without departing from the scope and spirit of the present invention. All such changes and modifications are intended to be included within the scope of the present invention as claimed in the appended claims.
[0068] For ease of description, the term "connected" may be used herein to describe the relationship between one or more elements or features shown in the figures and other elements or features. It should be understood that "connected" may include direct connection or indirect connection via other elements or features, and this document is intended to include all of these situations.
[0069] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments in accordance with the present application. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms "comprises" and / or "comprising," when used in this specification, specify the presence of stated features, steps, operations, components, elements, and / or groups thereof, but do not preclude the presence or addition of one or more other features, steps, operations, components, elements, and / or groups thereof.
[0070] It should be noted that the terms "first", "second", and the like, as used in the description and the claims herein are intended to modify a particular disclosed embodiment unless otherwise indicated, are used for purposes of description and are not intended to limit the claimed embodiments. It should be understood that the use of the terms "first", "second", and / or the like, herein is merely intended to differentiate one particular embodiment from another particular embodiment, unless otherwise indicated, and is not intended to signify that any or all embodiments were either the first or second embodiments described herein.
[0071] The utility model has carried on the explanation through the above embodiment, but should understand, the above embodiment is only for example and the purpose of explanation, but not the intention of the utility model is limited in the range of described embodiment. In addition, the skilled in the art can understand that the utility model is not limited to the above embodiment, according to the teaching of the utility model, more kinds of variations and modifications can also be made, and these variations and modifications all fall within the scope of the utility model claimed. The protection scope of the utility model is defined by the attached claims and its equivalent scope.
Claims
1. A material receiving device, characterized in that: include: A silo, wherein the lower end of the silo has a material receiving opening for allowing the material to be received to pass through the material receiving opening and be stacked in the silo; as well as A supporting member, the supporting member being rotatably disposed at the receiving opening of the silo and capable of varying the degree to which the receiving opening is blocked by rotating relative to the silo; In which, when the lower surface of the supporting member is subjected to the upward force of the material to be received, the supporting member opens the receiving port; after the material to be received is fed from the receiving port and moves upward to the first preset position, it falls to the second preset position by gravity, and the supporting member blocks at least part of the receiving port and supports the material to be received to confine the material to be received to the second preset position.
2. The material receiving device according to claim 1, characterized in that: The supporting member is rotatably connected to the material bin via a connecting shaft, and is rotatable relative to the material bin between a first angular position that blocks at least a portion of the material receiving opening and a second angular position that opens the material receiving opening.
3. The material receiving device according to claim 2, characterized in that: The supporting member comprises a first portion and a second portion, the first portion is configured in an arc shape, a first end of the first portion is rotatably connected to the connecting shaft, and a second end of the first portion is connected to the second portion.
4. The material receiving device according to claim 1, characterized in that: There are multiple supporting members, and the multiple supporting members are arranged at intervals along the outer circumference of the material receiving port.
5. The material receiving device according to claim 3, characterized in that: An arcuate portion is formed at one end of the second portion away from the first portion, and an outer contour of the arcuate portion is adapted to an outer contour of the material to be collected.
6. The material receiving device according to claim 5, characterized in that: A guide surface is formed on the lower surface of the arc-shaped portion, and the material to be collected enters the silo along the guide surface.
7. The material receiving device according to claim 1, characterized in that: The material bin includes a fixed seat and a limiting rod magnetically attracted to the fixed seat. The material receiving port is formed on the fixed seat. There are multiple limiting rods, and the multiple limiting rods are arranged at intervals along the circumference of the material receiving port.
8. The material receiving device according to claim 1, characterized in that: The material receiving device also includes a first conveying member and a second conveying member arranged at one end of the first conveying member, a plurality of the materials to be received are placed on the first conveying member, and the second conveying member is used to drive the materials to be received on the first conveying member to move into the silo.
9. The material receiving device according to claim 8, characterized in that: The second conveying member includes a lifting part and a first driving member connected to the lifting part, the lifting part is used to support the material to be collected, and the first driving member is used to drive the lifting part to move along the first direction to drive the material to be collected into the silo through the lifting part.
10. The material receiving device according to claim 9, characterized in that: The second conveying member also includes a second driving member, which is connected to the lifting part through the first driving member. The second driving member is used to drive the first driving member to move along the second direction and the third direction. The first direction, the second direction and the third direction are perpendicular to each other.
11. A glass bead coating device, characterized in that: It comprises a switch cover assembly, a coating assembly and a material receiving device according to any one of claims 1 to 10, wherein the switch cover assembly and the coating assembly are sequentially arranged upstream of the material receiving device.