A bin tilting device
Patent Information
- Application Number
- CN202522068327.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-25
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-09-25
AI Technical Summary
而现有技术中的料箱是垂直式储料以及垂直式取料,而对于需要物料倾斜放料的应用场景,往往是垂直式取料后再翻转使物料倾斜,而对于大量堆叠式的物料先夹后斜,斜倒时容易使物料之间存在滑动动能,叠码的物料容易散掉,若用较大夹持力度来夹持堆叠式的物料,又容易对物料本身造成损伤
[0012]本实用新型与现有技术相比,通过对移料箱进行翻转,使物料先倾斜后取料。移料箱翻转可提前释放物料之间的滑动动能,物料之间处于相对静止状态,如此无需使用较大夹持力度来夹持物料,保护了物料包装。同时料箱翻转机构设置可翻转的翻转辊架,既保障了移料箱的滑动位移,同时可带动移料箱进行45度翻转,由此使移料箱内的叠包处于倾斜状态,倾斜状态的多排叠包被整体取走,整体结构紧凑高效。
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Figure CN224704010U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of material transfer, and specifically relates to a bin flipping device. Background Technology
[0002] In existing technologies, materials are transferred to cartons for quantitative transportation and storage. The container used to hold the materials before loading them into the cartons is typically a hopper, which stores a certain amount of material before transferring it into the cartons. However, existing hoppers are designed for vertical storage and retrieval. For applications requiring tilted material loading, the material is often retrieved vertically and then flipped to tilt. For large stacks of material, clamping before tilting can cause sliding kinetic energy between the materials, making the stacked material prone to scattering. Using excessive clamping force to hold the stacked material can also damage it. All of these issues require improvement. Utility Model Content
[0003] To address the shortcomings of the prior art, this utility model provides a hopper tilting device that tilts the hopper so that the material is tilted before being picked up.
[0004] To achieve the above objectives, the present invention adopts the following technical solution.
[0005] A material bin flipping device includes a material bin flipping mechanism and a material transfer bin. The material bin flipping mechanism includes a material transfer base frame, a flipping roller frame that can be flipped on the material transfer base frame, and a material transfer drive component that drives the flipping roller frame to flip. The flipping roller frame includes a front roller track side plate and a rear roller track side plate. Multiple flipping roller tracks are laid between the front roller track side plate and the rear roller track side plate. The material transfer bin slides on the flipping roller tracks.
[0006] Furthermore, front support feet are provided on both the left and right sides of the bottom of the front roller conveyor side plate, and rear support feet are provided on both the left and right sides of the bottom of the rear roller conveyor side plate. A left connecting block is provided between the front and rear support feet on the left side, and a right connecting block is provided between the front and rear support feet on the right side. A material transfer shaft passes through the left and right connecting blocks.
[0007] Furthermore, the transfer box includes a transfer base plate and a transfer box body. The transfer box body is frame-shaped with an opening at the top and a lower frame fixed to the transfer base plate. The size of the transfer base plate is larger than the area enclosed by the frame of the transfer box body, and the transfer base plate has empty base plate edges.
[0008] Furthermore, several anti-tipping blocks are provided at the upper end of the front roller conveyor side plate and the rear roller conveyor side plate, and the anti-tipping blocks protrude from the front roller conveyor side plate and the rear roller conveyor side plate in the direction of the center of the front roller conveyor side plate and the rear roller conveyor side plate; the transfer box is on the turning roller conveyor, and the bottom plate edge can be placed below the anti-tipping blocks.
[0009] Furthermore, the material transfer drive includes a motor, a drive wheel, a driven wheel, and a shaft bearing seat. The motor is installed inside the material transfer base frame, the drive wheel is fixed to the end of the motor shaft, the drive wheel and the driven wheel mesh with each other, and the driven wheel is fixed to the right connecting block. When the driven wheel rotates, the right connecting block, the material transfer shaft, and the tilting roller frame rotate synchronously.
[0010] Furthermore, the material transfer base includes a support shaft and a support roller frame. A rotating shaft bearing seat is installed on the upper part of the support shaft, and the support roller frame is located on the front inner side of the support shaft. When the flipping roller frame is laid flat, the support roller frame contacts and supports the left and right connecting blocks.
[0011] Furthermore, anti-collision blocks can be installed at the bottom of the left and right connecting blocks.
[0012] Compared with existing technologies, this invention tilts the transfer box before removing the material. The tilting releases the sliding kinetic energy between the materials, leaving them relatively stationary. This eliminates the need for strong clamping force, protecting the packaging. Furthermore, the tilting mechanism features a rotatable roller frame, ensuring proper sliding displacement of the transfer box while simultaneously tilting it 45 degrees. This tilts the stacked packages inside, allowing for the complete removal of the tilted stacks. The overall structure is compact and efficient. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of the bin flipping device in an embodiment of this utility model.
[0014] Figure 2 This is a schematic diagram of the structure of the transfer box after it is flipped in the material box flipping device of this utility model embodiment.
[0015] In the diagram, 1. Material box tilting mechanism; 11. Material transfer base frame; 111. Support shaft rod; 112. Support roller frame rod; 113. Anti-collision block; 12. Tilting roller frame; 121. Front roller conveyor side plate; 122. Rear roller conveyor side plate; 123. Front support foot; 124. Rear support foot; 125. Left connecting block; 126. Right connecting block; 127. Material transfer shaft; 128. Connecting rod; 129. Anti-tipping block; 13. Material transfer drive component; 131. Motor; 132. Drive wheel; 133. Driven wheel; 134. Shaft bearing seat; 2. Transfer box; 21. Transfer base plate; 22. Transfer box body; 23. Base plate edge. Detailed Implementation
[0016] To better understand the above technical solutions, the following will provide a detailed explanation of the technical solutions in conjunction with the accompanying drawings and specific implementation methods.
[0017] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. The components of the embodiments of the present invention described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0018] Therefore, the following detailed description of the embodiments of the invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the invention without inventive effort are within the scope of protection of the invention.
[0019] like Figure 1 , 2 As shown, this embodiment provides a bin flipping device, including a bin flipping mechanism 1 and a transfer bin 2.
[0020] The material box flipping mechanism 1 includes a material transfer base frame 11, a flipping roller frame 12 that can flip on the material transfer base frame 11, and a material transfer drive component 13 that drives the flipping roller frame 12 to flip. The flipping roller frame 12 includes a front roller side plate 121 and a rear roller side plate 122. Multiple flipping rollers (not shown in the figure) are laid between the front roller side plate 121 and the rear roller side plate 122. The material box 2 slides on the flipping rollers. Front support feet 123 are provided on the left and right sides of the bottom of the front roller side plate 121, and rear support feet 124 are provided on the left and right sides of the bottom of the rear roller side plate 122. A left connecting block 125 is provided between the left front support foot 123 and the rear support foot 124, and a right connecting block 126 is provided between the right front support foot 123 and the rear support foot 124. A material transfer shaft 127 passes through the left connecting block 125 and the right connecting block 126. The material transfer shaft 127 provides support for the entire flipping roller frame 12. A connecting rod 128 is also fixed between the left connecting block 125 and the right connecting block 126 to strengthen the connection support on the left and right sides of the tilting roller frame 12. Several anti-tipping blocks 129 are provided on the upper ends of the front roller side plate 121 and the rear roller side plate 122. The anti-tipping blocks 129 protrude from the center direction of the front roller side plate 121 and the rear roller side plate 122. When the transfer box 2 is on the tilting roller, the bottom plate edge 23 will be placed below the anti-tipping blocks 129. The transfer box 2 is limited above and below the ground by the anti-tipping blocks 129 and the tilting roller. Thus, when the tilting roller frame 12 is tilted, it can drive the transfer box 2 to tilt. At the same time, the presence of the anti-tipping blocks 129 can prevent the transfer box 2 from tipping over.
[0021] The material transfer drive unit 13 includes a motor 131, a drive wheel 132, a driven wheel 133, and a shaft bearing seat 134. The motor 131 is installed inside the material transfer base frame 11. The drive wheel 132 is fixed to the shaft end of the motor 131. The driven wheel 133 is fixed to the right connecting block 126. When the driven wheel 133 rotates, the right connecting block 126, the material transfer shaft 127, and the tilting roller frame 12 rotate synchronously. The center of the driven wheel 133 is through which the material transfer shaft 127 passes, allowing the driven wheel 133 to rotate with the material transfer shaft 127 as its axis of support. The shaft bearing seat 134 is fixed on the material transfer base frame 11. The material transfer shaft 127 passes through the shaft bearing seat 134, allowing the material transfer shaft 127 to rotate within it. Simultaneously, the shaft bearing seat 134 provides overall support for the material transfer shaft 127 and the tilting roller frame 12. The driving wheel 132 and the driven wheel 133 are engaged. In this way, the motor 131 drives the driving wheel 132 to rotate, which in turn drives the driven wheel 133 to rotate, thereby causing the entire tilting roller frame 12 to tilt, ultimately causing the transfer box 2 to tilt.
[0022] The transfer base frame 11 includes a support shaft 111 and a support roller frame 112. A rotating shaft bearing seat 134 is installed on the upper part of the support shaft 111. The support roller frame 112 is located on the front inner side of the support shaft 111. When the tilting roller frame 12 is laid flat, the support roller frame 112 contacts and supports the left connecting block 125 and the right connecting block 126, thus balancing and supporting the tilting roller frame 12 as a whole, which is conducive to the horizontal transport of the transfer box 2. Anti-collision blocks 113 can also be set at the bottom of the left connecting block 125 and the right connecting block 126 to reduce the impact force between the tilting roller frame 12 and the support roller frame 112 when it is tilted back.
[0023] In this embodiment, the transfer box 2 includes a transfer base plate 21 and a transfer box body 22. The transfer box body 22 is generally frame-shaped with an opening at the top and a lower frame fixed to the transfer base plate 21. The size of the transfer base plate 21 is larger than the area enclosed by the frame of the transfer box body 22, thus the transfer base plate 21 has an empty base plate edge 23. The transfer base plate 21 is placed on the conveyor roller conveyor, so the entire transfer box 2 can move on the conveyor roller conveyor, while the base plate edge 23 provides space for a snap-fit fixation position.
[0024] The material box flipping device 1 is equipped with a flipping roller frame 12, which not only ensures the sliding displacement of the material box 2, but also drives the material box 2 to flip 45 degrees, thereby making the stacked packages in the material box 2 in an inclined state. The multiple rows of stacked packages in the inclined state are taken away as a whole. The overall structure is compact and efficient.
Claims
1. A bin tilting device, characterized in that, The material box includes a material box flipping mechanism (1) and a material transfer box (2). The material box flipping mechanism (1) includes a material transfer base frame (11), a flipping roller frame (12) that can flip on the material transfer base frame (11), and a material transfer drive component (13) that drives the flipping roller frame (12) to flip. The flipping roller frame (12) includes a front roller side plate (121) and a rear roller side plate (122). Multiple flipping rollers are laid between the front roller side plate (121) and the rear roller side plate (122). The material transfer box (2) slides on the flipping rollers.
2. The bin tilting device as described in claim 1, characterized in that, Front support feet (123) are provided on the bottom left and right sides of the front roller conveyor side plate (121), and rear support feet (124) are provided on the bottom left and right sides of the rear roller conveyor side plate (122). A left connecting block (125) is provided between the left front support foot (123) and the rear support foot (124), and a right connecting block (126) is provided between the right front support foot (123) and the rear support foot (124). A material transfer shaft (127) is passed between the left connecting block (125) and the right connecting block (126).
3. The bin-tilting device as described in claim 1, characterized in that, The transfer box (2) includes a transfer base plate (21) and a transfer box body (22). The transfer box body (22) is frame-shaped with an opening at the top and a lower frame fixed to the transfer base plate (21). The size of the transfer base plate (121) is larger than the area enclosed by the frame of the transfer box body (122). The transfer base plate (121) has an empty base plate edge (123).
4. The bin tilting device as described in claim 3, characterized in that, Several anti-tipping blocks (129) are provided on the upper end of the front roller conveyor side plate (121) and the rear roller conveyor side plate (122). The anti-tipping blocks (129) protrude from the front roller conveyor side plate (121) and the rear roller conveyor side plate (122) in the direction of the center of the front roller conveyor side plate (121) and the rear roller conveyor side plate (122). The transfer box (2) is on the turning roller conveyor, and the bottom plate edge (123) can be placed below the anti-tipping blocks (129).
5. The bin-tilting device as described in claim 1, characterized in that, The material transfer drive unit (13) includes a motor (131), a drive wheel (132), a driven wheel (133), and a shaft bearing seat (134). The motor (131) is installed inside the material transfer base frame (11). The drive wheel (132) is fixed to the shaft end of the motor (131). The drive wheel (132) and the driven wheel (133) mesh together. The driven wheel (133) is fixed to the right connecting block (126). When the driven wheel (133) rotates, the right connecting block (126), the material transfer shaft (127), and the flipping roller frame (12) rotate synchronously.
6. The bin-tilting device as described in claim 1, characterized in that, The material transfer base frame (11) includes a support shaft rod (111) and a support roller frame rod (112). A rotating shaft bearing seat (134) is installed on the upper part of the support shaft rod (111). The support roller frame rod (112) is located on the front inner side of the support shaft rod (111). When the flipping roller frame (12) is laid flat, the support roller frame rod (112) contacts and supports the left connecting block (125) and the right connecting block (126).
7. The bin-tilting device as described in claim 1, characterized in that, Anti-collision blocks (113) can also be set at the bottom of the left connecting block (125) and the right connecting block (126).