Bead feeding device
By designing a bead drop device containing a turntable and feeding mechanism, the problem of glass beads being stuck and burst during the delivery process is solved, and safe and reliable bead dropping is achieved, suitable for spray cans of aerosol products.
Patent Information
- Application Number
- CN202421479478.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-06-26
AI Technical Summary
When using glass beads, existing bead dropping devices can easily cause cracking and bursting, resulting in production safety problems, and steel beads may rust and affect their use.
A bead delivery device is designed, including a turntable mechanism and a feeding mechanism. The beads and containers are rotated simultaneously through the first turntable and the second turntable, and the beads fall into the container from the feeding member of the first turntable.
It realizes the safe placement of glass beads, avoids the situation of jamming machines and bursting, and has a simple and reasonable structure, convenient operation, and a wide range of applications.
Smart Images

Figure CN222876363U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of mechanical equipment, in particular to a bead dropping device. Background Art
[0002] Aerosol refers to a complete pressure packaging container consisting of a valve, a container, and contents (including products, propellants, etc.). When the valve is opened, the contents are released at a predetermined pressure in a controlled manner. In addition to products, propellants, etc., aerosol products generally have small beads in the aerosol can container. The small beads can disperse the liquid evenly, prevent the liquid from settling or stratifying in the bottle, and keep the liquid in a uniform state at all times. The small beads will form droplets in the liquid that adhere to its surface, enhancing atomization; when spraying, shake the spray, the small beads will mix the liquid more fully, and the small beads will separate the droplets one by one, and then atomize them out through the spray hole, making the spray finer and more uniform, and thus easier to absorb.
[0003] In the prior art, the beads in the spray can container are generally steel beads, which may rust or corrode during use, thus affecting the use and the composition of the contents. Using glass beads of the same size and volume will be much cheaper than steel beads, and glass beads are corrosion-resistant and will not affect the composition of the contents. However, glass beads are prone to bursting. If the previous steel ball delivery device is used, the glass beads may be stuck in the machine during delivery and easily be crushed, which poses certain production safety issues.
[0004] Therefore, it is necessary to provide a bead delivery device that can safely deliver glass beads into the aerosol can container. Utility Model Content
[0005] The utility model aims to provide a bead placing device which can safely place glass beads into an aerosol can container.
[0006] To achieve the above-mentioned purpose, the utility model provides a bead delivery device, which is suitable for delivering beads into a container, comprising:
[0007] frame;
[0008] The turntable mechanism is arranged on the frame, and includes a fixed seat and a first turntable and a second turntable. The fixed seat is connected to the frame. The first turntable is rotatably arranged on the fixed seat. The second turntable is arranged below the first turntable and linked with the first turntable. The first turntable is used to drive the beads to rotate. The second turntable is used to drive the container to rotate. The beads rotate with the first turntable to a preset position so that the beads fall into the container below it.
[0009] A feeding mechanism is arranged on the first rotating disk, and is used to place beads and enable the beads to automatically fall into the first rotating disk;
[0010] Among them, a plurality of feeding pieces are arranged in the first turntable, and the plurality of feeding pieces are evenly distributed in the first turntable along the circumference of the first turntable. The plurality of feeding pieces are all used to receive beads. The feeding pieces rotate along the fixed seat with the first turntable to a preset position so that the beads in the feeding pieces fall into the container below.
[0011] After adopting the above technical scheme, the bead delivery device of the utility model has the beads and the container rotating synchronously. When the beads and the container rotate synchronously to the preset position, the beads fall from the feeding piece of the first turntable into the container. The structure is simple and reasonable, and the operation is convenient. Among them, the beads can be glass beads, and the container can be a spray can of an aerosol product. The bead delivery device includes a turntable mechanism and a feeding mechanism arranged on a frame. The turntable mechanism includes a first turntable and a second turntable that are linked, and the first turntable is located above the second turntable. The turntable mechanism also includes a fixed seat. The fixed seat is arranged on the frame, and the first turntable is arranged on the fixed seat and can rotate along the fixed seat. The first turntable is used to drive the beads to rotate, and the second turntable is used to drive the container to rotate. A plurality of feeding pieces are arranged in the first turntable, and the plurality of feeding pieces are equidistantly distributed along the circumference of the first turntable. The feeding piece is used to receive the beads fed into the feeding mechanism. When the feeding piece and the beads therein rotate to the preset position with the first turntable, the beads can fall into the container below it. The bead delivery device of the utility model can deliver the beads into the container safely, has a simple and reasonable structure, is easy to operate and has a wide range of applications.
[0012] Preferably, the first turntable is provided with a plurality of mounting grooves for mounting the feeding piece, the mounting grooves are provided with through holes for the feeding piece to pass through, the feeding piece is mounted in the mounting grooves and passes through the through holes, and one side of the feeding piece abuts against the fixing seat.
[0013] Preferably, a material trough for the beads to enter is provided through the feeding member, and the first turntable is mounted on a fixed seat, which blocks one side of the material trough from the bottom so that the beads can rotate with the first turntable in the material trough.
[0014] Preferably, the fixing seat is provided with an arc groove at the preset position, and the arc groove can be connected to the material trough rotated to the preset position, so that the beads in the material trough at the preset position can fall into the container below along the arc groove.
[0015] Preferably, an arc plate cooperating with the arc groove is protruded from one end of the feeding member, and the arc plate cooperates with the arc groove to form a feeding channel for feeding beads, and the beads slide along the feeding channel and fall into the container below.
[0016] Preferably, a convex portion is provided on one end of the fixed seat close to the second turntable, and the convex portion protrudes out of the side surface of the fixed seat along the circumference of the fixed seat. The convex portion is provided with a discharge hole below the arc groove, and a material guide tube is installed on the discharge hole, so that the beads can fall into the container through the material guide tube.
[0017] Preferably, a material unloading assembly is provided on the frame, and the material unloading assembly is arranged above the first turntable and at a preset position. The material unloading assembly includes a material unloading cylinder and a material unloading piece. The material unloading piece is installed at the output end of the material unloading cylinder. The material unloading cylinder is actuated to make the material unloading piece extend into the material trough to push the beads through the material trough.
[0018] Preferably, the frame is further provided with a first detection component and a second detection component. The first detection component is arranged above the first turntable to detect whether there are beads in the trough; the second detection component is used to detect whether there is a container entering the second turntable.
[0019] Preferably, the feeding mechanism includes a silo and a silo frame, the silo is used to hold beads, the silo is installed on the frame and is located on the first turntable with a gap between the silo and the first turntable; a feeding space is opened through the silo, one end of the silo extends into the feeding space, the first turntable rotates to place the beads in the feeding space into different troughs, and the beads in the silo are automatically replenished to the feeding space.
[0020] Preferably, the material frame is a semi-cylinder, and baffles are provided at both ends of the feeding space to prevent the beads from being stuck, and the baffles can guide the beads into each material trough. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the technical solutions of the embodiments of the utility model, the drawings required for use in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0022] Figure 1 It is a structural diagram of a bead delivery device provided in one embodiment of the utility model.
[0023] Figure 2 yes Figure 1 A structural diagram from another angle.
[0024] Figure 3 yes Figure 1 Structural diagram of the cooperation between the first turntable and the fixed seat.
[0025] Figure 4 yes Figure 3 Structural diagram of the first turntable.
[0026] Figure 5 yes Figure 3 Structural diagram of the middle fixed seat.
[0027] Figure 6 yes Figure 1 Structural diagram of the feeding parts.
[0028] Figure 7 yes Figure 1 Structural diagram of the middle material frame.
[0029] Description of reference numerals:
[0030] 100. bead delivery device; 101. frame;
[0031] 10. turntable mechanism; 11. first turntable; 110. rotating shaft; 111. mounting groove; 112. through hole; 113. first guide groove; 12. second turntable; 13. fixing seat; 131. material blocking portion; 132. arc groove; 133. convex portion; 134. material discharge hole; 14. material feeding member; 140. material discharge channel; 141. mounting portion; 142. arc plate; 143. material trough; 144. second guide groove; 15. material guide pipe;
[0032] 20. Feeding mechanism; 21. Material bin; 22. Material frame; 221. Feeding space; 222. Baffle;
[0033] 30. Install the adjustment mechanism; 31. Adjustment rod; 32. Bin support; 33. Turntable support; 34. Adjustment member;
[0034] 40. First detection assembly; 41. First detection cylinder; 42. First detection member;
[0035] 50. Second detection assembly; 51. Second detection cylinder; 52. Second detection member;
[0036] 60. blanking assembly; 61. blanking cylinder; 62. blanking parts. DETAILED DESCRIPTION
[0037] In order to explain the technical content and structural features of the present invention in detail, further description will be given below in combination with the embodiments and the accompanying drawings.
[0038] See also Figure 1 and Figure 2The utility model provides a bead delivery device 100, which is suitable for delivering beads into a container, especially suitable for delivering glass beads into a spray can container. Of course, it can also be used to deliver beads of other materials into other containers. The bead delivery device 100 includes a frame 101, a turntable mechanism 10 and a feeding mechanism 20. The turntable mechanism 10 is arranged on the frame 101, and the turntable mechanism 10 includes a fixed seat 13 and a first turntable 11 and a second turntable 12. The fixed seat 13 is connected to the frame 101 through an installation adjustment mechanism 30, and the first turntable 11 is rotatably arranged on the fixed seat 13. The second turntable 12 is arranged below the first turntable 11 and is linked with the first turntable 11. A rotating shaft 110 for rotational connection is arranged between the first turntable 11 and the second turntable 12, and the first turntable 11 and the second turntable 12 can be coaxially rotated by the rotating shaft 110. A power component that drives the rotating shaft 110 to rotate can be connected below the rotating shaft 110. Among them, the first turntable 11 is used to drive the beads to rotate, and the second turntable 12 is used to drive the container to rotate. The beads rotate to a preset position with the first turntable 11 so that the beads fall into the container below it. On the other hand, the feeding mechanism 20 is arranged on the first turntable 11, which is used to place the beads and can make the beads automatically fall into the first turntable 11. In this embodiment, a plurality of feeding members 14 are arranged in the first turntable 11, and the plurality of feeding members 14 are evenly distributed in the first turntable 11 along the circumference of the first turntable 11, and the plurality of feeding members 14 can be used to receive the beads. The feeding members 14 rotate to a preset position along the fixed seat 13 with the first turntable 11, so that the beads in the feeding members 14 fall into the container below. It can be understood that the preset position is the position where the arc groove 132 is opened on the fixed seat 13.
[0039] After adopting the above technical scheme, the bead delivery device 100 of the utility model, the beads and the container rotate synchronously, when the beads and the container rotate synchronously to the preset position, the beads fall into the container from the feeding piece 14 of the first turntable 11, the structure is simple and reasonable, and the operation is convenient. The bead delivery device 100 includes a turntable mechanism 10 and a feeding mechanism 20 arranged on a frame 101, the turntable mechanism 10 includes a first turntable 11 and a second turntable 12 that are linked, and the first turntable 11 is located above the second turntable 12, and the turntable mechanism 10 also includes a fixed seat 13. The fixed seat 13 is arranged on the frame 101, and the first turntable 11 is arranged on the fixed seat 13 and can rotate along the fixed seat 13. The first turntable 11 is used to drive the beads to rotate, and the second turntable 12 is used to drive the container to rotate. A plurality of feeding pieces 14 are arranged in the first turntable 11, and the plurality of feeding pieces 14 are equidistantly distributed along the circumference of the first turntable 11. The feeding member 14 is used to receive the beads fed into the feeding mechanism 20. When the feeding member 14 and the beads therein rotate to a preset position along with the first rotating disk 11, the beads can fall into the container below it. The bead delivery device 100 of the utility model can safely deliver beads into the container, has a simple and reasonable structure, is easy to operate, and has a wide range of applications.
[0040] See also Figure 1 and Figure 2 In some optional embodiments, a mounting adjustment mechanism 30 is provided on the frame 101, and the mounting adjustment mechanism 30 includes an adjustment rod 31, a silo support 32, a turntable support 33 and an adjustment member 34. The silo support 32, the turntable support 33 and the adjustment member 34 are all provided on the adjustment rod 31, and the silo support 32 is used to mount and support the silo 21. The turntable support 33 is used to mount and support the fixed seat 13, so that the fixed seat 13 is fixed on the frame 101, so that the first turntable 11 can rotate on the fixed seat 13. The silo support 32 and the turntable support 33 can both adjust the installation position on the adjustment rod 31 to be suitable for containers of different sizes and heights. The adjustment of the silo support 32 and the turntable support 33 can be completed by the adjustment member 34.
[0041] See also Figures 1 to 4 In some optional embodiments, a plurality of mounting grooves 111 for mounting the feeder 14 are provided on the first turntable 11, and the plurality of mounting grooves 111 are equidistantly provided on the first turntable 11 along the circumferential direction. A through hole 112 is also provided in the mounting groove 111 for the feeder 14 to pass through. The feeder 14 is installed in the mounting groove 111, and one end of the feeder 14 passes through the through hole 112. One end of the feeder 14 passing through the through hole 112 can abut against the fixed seat 13 on one side. In this embodiment, the end through which the feeder 14 passes is an arc-shaped plate 142, and one side of the arc-shaped plate 142 abuts against the fixed seat 13. Preferably, there is a certain gap between the arc-shaped plate 142 and the fixed seat 13 to prevent the feeder 14 from wearing the fixed seat 13 when the first turntable 11 rotates. Among them, the feeder 14 can be roughly integrated with the first turntable 11.
[0042] See also Figures 1 to 6In some optional embodiments, the feeder 14 includes a mounting portion 141 and an arc plate 142, wherein the mounting portion 141 is mounted in the mounting groove 111, and the arc plate 142 passes through the through hole 112 in the mounting groove 111 and extends out of the first turntable 11, and one side of the arc plate 142 abuts against the fixed seat 13. Among them, a material groove 143 for beads to enter is provided through the mounting portion 141 of the feeder 14, and each material groove 143 can only accommodate one bead when cooperating with the fixed seat 13, that is, when the feeder 14 rotates with the first turntable 11, there is only one bead in it. The first turntable 11 is mounted on the fixed seat 13, and the fixed seat 13 blocks one side of the material groove 143 from the bottom, so that the beads can remain in the material groove 143 and rotate with the first turntable 11. In other embodiments, a mounting groove 111 is provided through the first rotating disk 11, and the entire mounting portion 141 is installed in the mounting groove 111, and the mounting portion 141 is interference fit with the first rotating disk 11. It can be understood that the thickness of the mounting portion 141 is slightly larger than the diameter of the bead, so that the entire bead can be completely placed in the material groove 143, so as to avoid the interference between the bead in the material groove 143 and the material frame 22 when the first rotating disk 11 rotates, thereby affecting the transmission of the entire mechanism. Specifically, the bead needs to be rotated to a suitable position with the first rotating disk 11 before the bead falls into the container. Before the bead falls into the container, the bead needs to be kept in the feeding member 14. Therefore, through the specific structure between the fixed seat 13 and the feeding member 14, the fixed seat 13 can cover a part of the material groove 143 from the bottom, so that the bead can be kept in the material groove 143 when there is no need to drop the material. The structure is simple and the coordination is ingenious.
[0043] Please participate Figure 5 In some optional embodiments, the fixing seat 13 is provided with an arc groove 132 at a preset position, and the arc groove 132 can be connected to the material groove 143 rotated to the preset position, so that the beads in the material groove 143 at the preset position can fall into the container below along the arc groove 132. On the other hand, if Figure 6As shown, one end of the feed piece 14 is provided with an arc plate 142 that cooperates with the arc groove 132. The arc plate 142 cooperates with the arc groove 132 to form a feeding channel 140 for feeding beads. The beads slide along the feeding channel 140 and fall into the container below. It can be understood that during the rotation of the first turntable 11, the fixed seat 13 below blocks a part of the multiple feeding grooves 143. The arc groove 132 is provided on the fixed seat 13, so that the bottom of the feed piece 14 located there will not be blocked by the fixed seat 13, so that the beads in the feed piece 14 located there can be smoothly dropped into the container below. Among them, the arc plate 142 is semi-cylindrical, so that when the feed piece 14 rotates with the first turntable 11, the feed piece 14 will not interfere with the fixed seat 13. In addition, the arc plate 142 is semi-cylindrical, and can cooperate with the arc groove 132 to form the feeding channel 140. The arc plate 142 is semi-cylindrical, which also facilitates the fixing seat 13 to extend into the feeding member 14 and cover a part of the material groove 143 from the bottom, so that the beads can be stably located in the material groove 143.
[0044] See also Figure 5 In some optional embodiments, one end of the fixed seat 13 close to the first turntable 11 is a stopper 131 that cooperates with the first turntable 11 and the plurality of feeding members 14. One end of the fixed seat 13 close to the second turntable 12 is provided with a convex portion 133, which protrudes out of the side of the fixed seat 13 along the circumference of the fixed seat 13. Among them, the convex portion 133 is provided with a feed hole 134 below the arc groove 132, and a guide pipe 15 is installed on the feed hole 134, so that the beads fall into the container through the guide pipe 15. The arc groove 132 runs through the stopper 131 and the convex portion 133, that is, the arc groove 132 is connected to the feed hole 134. It can be understood that the provision of the convex portion 133 makes it easier to open the feed hole 134 and then install the guide pipe 15. The guide pipe 15 can better guide the beads into the container, and has a simple structure and a reasonable design.
[0045] See also Figure 1 and Figure 2In some optional embodiments, a material unloading assembly 60 is provided on the frame 101, and the material unloading assembly 60 is installed on the silo support 32, and is arranged above the first turntable 11 and at a preset position. Specifically, the material unloading assembly 60 includes a material unloading cylinder 61 and a material unloading member 62, and the material unloading member 62 is installed at the output end of the material unloading cylinder 61, and the material unloading cylinder 61 is operated to make the material unloading member 62 extend into the material trough 143 to push the beads through the material trough 143. It can be understood that when the first turntable 11 rotates to the arc groove 132 on the fixed seat 13, the beads will pass through the material unloading channel 140 and the guide pipe 15 and fall into the container below, but if the rotation speed of the turntable is too fast, the beads will not have time to fall, or the beads will be stuck in the material trough 143, and the material unloading will be stuck. The material unloading assembly 60 is provided, and the beads can be better pushed into the container. The blanking piece 62 may be of a flexible structure to prevent the blanking piece 62 from colliding with the beads rigidly and damaging the beads.
[0046] See also Figure 1 and Figure 2 In some optional embodiments, the frame 101 is further provided with a first detection assembly 40 and a second detection assembly 50. The first detection assembly 40 is arranged above the first turntable 11 to detect whether there are beads in the trough 143. The first detection assembly 40 includes a first detection cylinder 41 and a first detection member 42. The first detection cylinder 41 moves to make the first detection member 42 close to the first turntable 11, so as to detect whether beads are placed in the trough 143 near the preset position. If beads are placed, the first turntable 11 continues to rotate normally. If there are no beads in the trough 143, an alarm is triggered, the machine is stopped, and beads are placed to ensure that beads are placed in each container. On the other hand, the second detection assembly 50 is used to detect whether a container enters the second turntable 12. The second detection assembly 50 includes a second detection cylinder 51 and a second detection member 52. The bead delivery device 100 also includes a conveying mechanism, which is connected to the second turntable 12 and is used to deliver the container into the second turntable 12. The second detection assembly 50 is provided to ensure that each bead corresponds to a container. A conveyor belt for conveying the container containing beads to the next process is connected to the other end of the second turntable 12, and the degree of automation is high.
[0047] See also Figure 1 , Figure 2 and Figure 7In some optional embodiments, the feeding mechanism 20 includes a silo 21 and a frame 22, wherein the silo 21 is used to hold beads, and the frame 22 is used to feed the beads into the trough 143 of the feeding member 14. The frame 22 is mounted on the frame 101 and is located on the first turntable 11, and a gap is provided between the frame 22 and the first turntable 11 to prevent excessive friction between the first turntable 11 and the frame 22. A first guide groove 113 is provided on the first turntable 11, and a second guide groove 144 is provided on each feeding member 14. When multiple feeding members 14 are mounted on the first turntable 11, multiple first guide grooves 113 and multiple second guide grooves 144 are connected to form an annular trough body. A guide portion cooperating with the trough body is provided at the bottom of the frame 22. When the first turntable 11 rotates, the guide portion always rotates in the trough body, so that the beads in the frame 22 fall into the trough 143. On the other hand, a first guide groove 113 and a second guide groove 144 are provided to cooperate with each other, which is more convenient for guiding and installing multiple feeding members 14, so that the arc plate 142 of the feeding member 14 can better cooperate with the fixed seat 13, so that the beads in the material trough 143 can all fall into the container below at the preset position. The structure is simple and the design is reasonable. A feeding space 221 is provided through the material frame 22, that is, the bottom of the material frame 22 is hollow, so that the beads in it can all contact with the first turntable 11, so that the beads in the feeding space 221 can fall into the material trough 143. One end of the silo 21 extends into the feeding space 221, and the first turntable 11 rotates so that the beads in the feeding space 221 are placed in different troughs 143, and the beads in the silo 21 are automatically replenished to the feeding space 221. Specifically, the material frame 22 is a semi-cylindrical body, and the semi-cylindrical material frame 22 can better cooperate with the first turntable 11. Baffles 222 are provided at both ends of the feeding space 221, and the baffles 222 are used to prevent the beads from being stuck by the structures at both ends of the feeding space 221, and the baffles 222 can guide the beads into each trough 143. The baffles 222 can be arranged in the feeding space 221 at a certain angle, so that the beads contacting the baffles 222 can be better guided to fall into the trough 143.
[0048] like Figures 1 to 7As shown, the bead delivery device 100 of the utility model, through the first turntable 11 and the second turntable 12, makes the beads and the container rotate synchronously to the preset position, and the beads fall into the container from the feeding piece 14 of the first turntable 11, which has a simple and reasonable structure and is easy to operate. The beads in the existing spray can container are generally steel beads, which may rust or corrode during use, thereby affecting the use and the composition of the contents. The cost of using glass balls of the same size and volume is much lower than that of steel balls, and glass balls are corrosion-resistant and will not affect the composition of the contents. However, glass beads are easy to burst. If the previous steel ball delivery device is used, the glass beads are easy to be clamped and exploded if they are stuck in the machine during the delivery process, which has certain production safety problems. The use of the bead delivery device 100 of the utility model can make the glass beads better delivered to the spray can of aerosol products, and there will be no stuck beads, burst beads, etc., which is safe and reliable, and has high efficiency and is easy to operate. The bead delivery device 100 includes a turntable mechanism 10 and a feeding mechanism 20 arranged on a frame 101. The turntable mechanism 10 includes a first turntable 11 and a second turntable 12 which are linked. The first turntable 11 is used to drive the beads to rotate, and the second turntable 12 is used to drive the container to rotate. The first turntable 11 is located above the second turntable 12 so that the beads can fall from above into the container below it. The turntable mechanism 10 also includes a fixed seat 13, which is arranged on the frame 101. The first turntable 11 is arranged on the fixed seat 13 and can rotate along the fixed seat 13. A plurality of feeding members 14 are arranged in the first turntable 11, and the plurality of feeding members 14 are equidistantly distributed along the circumference of the first turntable 11. The feeding members 14 are used to receive the beads fed into the feeding mechanism 20, and the feeding members 14 and the beads therein can rotate with the first turntable 11. Specifically, the plurality of feeding members 14 and the fixing seat 13 cooperate with each other in structure, so that the fixing seat 13 can cover a part of the feeding member 14 trough 143 at the bottom, so that the beads can rotate with the first turntable 11 in the trough 143 to the position where the fixing seat 13 is provided with an arc groove 132, so that the beads can fall into the container below it. The structure is cleverly coordinated and easy to operate. The bead delivery device 100 of the utility model can safely deliver beads into a container, has a simple and reasonable structure, is easy to operate, and has a wide range of applications.
[0049] The above disclosure is only a preferred example of the present invention, which cannot be used to limit the scope of the present invention. Therefore, equivalent changes made according to the claims of the present invention are all within the scope of the present invention.
Claims
1. A bead delivery device, suitable for delivering beads into a container, characterized in that: include: frame; A turntable mechanism is arranged on the frame, comprising a fixed seat and a first turntable and a second turntable, wherein the fixed seat is connected to the frame, the first turntable is rotatably arranged on the fixed seat, the second turntable is arranged below the first turntable and is linked with the first turntable, the first turntable is used to drive the beads to rotate, the second turntable is used to drive the container to rotate, and the beads rotate with the first turntable to a preset position so that the beads fall into the container below it; A feeding mechanism, disposed on the first rotating disk, for placing the beads and enabling the beads to automatically fall into the first rotating disk; Among them, a plurality of feeding pieces are arranged in the first turntable, and the plurality of feeding pieces are evenly distributed in the first turntable along the circumference of the first turntable, and the plurality of feeding pieces are all used to receive the beads. The feeding pieces rotate along the fixed seat with the first turntable to the preset position so that the beads in the feeding pieces fall into the container below.
2. The bead delivery device according to claim 1, characterized in that: The first turntable is provided with a plurality of mounting grooves for mounting the feeding piece, the mounting grooves are provided with through holes for the feeding piece to pass through, the feeding piece is mounted in the mounting grooves and passes through the through holes, and one side of the feeding piece abuts against the fixing seat.
3. The bead delivery device according to claim 2, characterized in that: A material trough for the beads to enter is provided through the feeding member, and the first turntable is mounted on the fixing seat, and the fixing seat blocks one side of the material trough from the bottom so that the beads can rotate in the material trough along with the first turntable.
4. The bead delivery device according to claim 3, characterized in that: The fixing seat is provided with an arc groove at the preset position, and the arc groove can be connected to the material trough rotated to the preset position, so that the beads in the material trough at the preset position can fall into the container below along the arc groove.
5. The bead delivery device according to claim 4, characterized in that: An arc plate cooperating with the arc groove is protruded from one end of the feeding piece, and the arc plate cooperates with the arc groove to form a feeding channel for feeding the beads, and the beads slide along the feeding channel and fall into the container below.
6. The bead delivery device according to claim 4, characterized in that: A convex portion is provided on one end of the fixed seat close to the second turntable, and the convex portion protrudes out of the side surface of the fixed seat along the circumference of the fixed seat. The convex portion is provided with a discharge hole below the arc groove, and a material guide tube is installed on the discharge hole, so that the beads can fall into the container through the material guide tube.
7. The bead delivery device according to claim 3, characterized in that: A material unloading component is arranged on the frame, and the material unloading component is arranged above the first turntable and located at the preset position. The material unloading component includes a material unloading cylinder and a material unloading piece, and the material unloading piece is installed at the output end of the material unloading cylinder. The material unloading cylinder is actuated to make the material unloading piece extend into the material trough to push the beads through the material trough.
8. The bead delivery device according to claim 3, characterized in that: The frame is also provided with a first detection component and a second detection component. The first detection component is arranged above the first turntable and is used to detect whether there are beads in the material trough; the second detection component is used to detect whether there is a container entering the second turntable.
9. The bead delivery device according to claim 3, characterized in that: The feeding mechanism includes a hopper and a hopper frame, the hopper is used to hold beads, the hopper is installed on the frame and is located on the first turntable with a gap between the hopper and the first turntable; a feeding space is opened through the hopper frame, one end of the hopper extends into the feeding space, the first turntable rotates to place the beads in the feeding space into different troughs, and the beads in the hopper are automatically replenished to the feeding space.
10. The bead delivery device according to claim 9, characterized in that: The material frame is a semi-cylinder, and baffles are provided at both ends of the feeding space to prevent the beads from being stuck, and the baffles can guide the beads into each of the material troughs.