Double-layer feeding slide way
By designing a double-layer feeding chute and utilizing gravity drive and rotating roller stop components, the problem of existing feeding devices requiring power drive is solved, achieving low-cost and high-efficiency material conveying.
Patent Information
- Application Number
- CN202423302791.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing feeding devices require power to drive, which increases equipment complexity and energy consumption, resulting in high costs.
Design a double-layer feeding chute that uses gravity to drive materials to move on an inclined chute. Combined with rotating rollers and stop components, it realizes continuous material conveying and transfer, reducing energy consumption.
It achieves low energy consumption, low cost, stable and reliable material transportation, meeting the needs of modern industrial production.
Smart Images

Figure CN223851352U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of feeding device especially is a double -deck feeding slide. BACKGROUND
[0002] In modern industrial production process, raw materials, intermediate products, products, tools and other objects usually need to be transported from one station to another, mainly through the conveying line, such as belt or roller type conveying line. Feeding device is an important part of production line, its performance and efficiency directly affect the smoothness of the whole production process and product quality. With the increasing complexity of production process and the continuous expansion of production scale.
[0003] The existing feeding device usually needs power to drive for conveying, not only increases the complexity and cost of the equipment, but also consumes a large amount of electric energy or other energy sources in the running process, increases the energy cost in the production process. UTILITY MODEL CONTENT
[0004] Therefore, the utility model wants to solve the technical problem in prior art, that is, the feeding device usually needs power to drive for conveying, not only increases the complexity and cost of the equipment, but also consumes a large amount of electric energy or other energy sources in the running process, increases the energy cost in the production process, so as to provide a double -deck feeding slide.
[0005] In order to solve the above technical problems, the utility model provides a double -deck feeding slide, which comprises:
[0006] Frame;
[0007] Slide mechanism, which comprises: first slide and second slide, the first end and the second end of the first slide and the second slide are arranged on both sides of the frame, the height of the first slide gradually decreases from the first end to the second end, the height of the second slide gradually increases from the first end to the second end, the height of the second end of the second slide is greater than the height of the first end of the second slide;
[0008] Transfer mechanism, which is arranged between the second end of the first slide and the second slide, and comprises: rotating roller, rotating frame, and first stop component arranged on both sides of the rotating roller, the rotating roller is rotatably connected to the frame, the rotating frame is rotatably connected to the frame through the rotating roller, the first stop component is used to constrain the rotating frame, so that the rotating frame is connected to the first slide or the second slide at the maximum rotation angle.
[0009] In one embodiment of the utility model, the first slide and the second slide are arranged with a plurality of rollers along the length direction, the center line direction of the roller is perpendicular to the length direction of the first slide and the second slide, the transfer mechanism further comprises an extension support, and the extension support is arranged at the second end of the rack close to the first slide and the second slide.
[0010] In one embodiment of the utility model, the extension support is further provided with a height increasing stand, the height increasing stand is provided with a bearing seat, and the rotating roller is rotatably connected to the extension support through the bearing seat.
[0011] In one embodiment of the utility model, the rack is further provided with a transfer assembly, and the transfer assembly comprises a damping rotating shaft arranged on the rack, a support frame connected to one end of the damping rotating shaft, and a material receiving bin arranged on the support frame.
[0012] In one embodiment of the utility model, the rotating frame is provided with a clamping assembly, and the clamping assembly is used for angle limiting when the rotating frame is docked with the second slide.
[0013] In one embodiment of the utility model, the clamping assembly comprises a limiting rotating shaft, a connecting piece, a limiting rod, a limiting piece, a cam, a limiting groove, and an abutting piece, the limiting rotating shaft is arranged on the extension support, the connecting piece is rotatably connected to the limiting rotating shaft, one end of the limiting rod is connected to the end of the connecting piece, the limiting piece is arranged on the other end of the limiting rod, the cam is arranged on the support frame, the limiting groove is arranged on the limiting piece and is adapted to the cam, and the rotating frame is provided with an abutting hole adapted to the abutting piece.
[0014] In one embodiment of the utility model, a groove is arranged on the middle ring of the cam, the limiting groove comprises a communication groove and a sliding groove, the size of the communication groove is not less than that of the cam, and the width of the sliding groove is greater than the outer diameter of the cam at the groove and is less than the outer diameter of the end of the cam.
[0015] In one embodiment of the utility model, the connecting piece is an elastic piece, and the thickness direction of the connecting piece is the direction from the limiting rod to the cam.
[0016] In one embodiment of the utility model, the first stop assembly comprises first limiting pieces arranged on both sides of the rotating roller respectively.
[0017] In one embodiment of the utility model, the support frame is provided with a second stop assembly for limiting the rotation angle thereof, and the second stop assembly comprises second limiting pieces arranged on both sides of the support frame respectively.
[0018] The above technical scheme of the utility model has the following advantages compared with the prior art:
[0019] The utility model discloses a double -deck feeding slide, the double -deck feeding device of the application is provided with first slide and second slide, and the first slide and the second slide are continuously downwardly inclined, which makes full use of gravity driving, and the first slide and the second slide can also serve as a buffer position, can be connected with the conveying line, optimizes the material conveying and transfer mechanism, effectively solves many problems existing in the prior art feeding device, has the advantages of low energy consumption, low cost, stable and reliable operation, convenient and efficient operation and long service life, and can better meet the needs of modern industrial production. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to make the content of the utility model more easily be clearly understood, the following according to the specific embodiment of the utility model and combining with the drawings, the utility model is further detailed, wherein
[0021] Figure 1 It is the structural schematic diagram of the feeding device of the utility model,
[0022] Figure 2 It is the structural schematic diagram of the transfer mechanism in the utility model,
[0023] Figure 3 It is the position schematic diagram of the first slide and the second slide of the utility model,
[0024] Figure 4 It is the structural schematic diagram of the clamping assembly of the utility model,
[0025] Figure 5 It is the structural schematic diagram of the limiting piece and the cam of the utility model.
[0026] The reference signs in the drawings of the specification are as follows: 1, rack, 2, first slide, 3, second slide, 4, waste bin, 5, rotating frame, 6, support frame, 7, material receiving bin, 8, extension support, 9, bearing seat, 10, rotating roller, 11, first limiting piece, 12, heightening frame, 13, cam, 14, guide plate, 15, limiting rod, 16, limiting piece, 17, connecting piece, 18, limiting pivot, 19, damping pivot, 20, second limiting piece, 21, sliding slot, 22, communication groove. DETAILED DESCRIPTION
[0027] The utility model will be further explained in conjunction with the drawings and specific embodiments, so that the person skilled in the art can better understand the utility model and can be implemented, but the embodiment is not as the limitation of the utility model. EMBODIMENT
[0028] Referring to Figures 1-5 The utility model discloses a double -deck feeding slide, which comprises:
[0029] Rack 1,
[0030] The chute mechanism comprises: a first chute 2 and a second chute 3, the first ends and the second ends of the first chute 2 and the second chute 3 are arranged on both sides of the rack 1, the height of the first chute 2 gradually decreases from the first end to the second end, the height of the second chute 3 gradually increases from the first end to the second end, and the height of the second end of the second chute 3 is greater than the height of the first end of the second chute 3;
[0031] The transfer mechanism is arranged between the second ends of the first chute 2 and the second chute 3, and comprises: a rotating roller 10, a rotating frame 5, and first stop components arranged on both sides of the rotating roller 10, the rotating roller 10 is rotationally connected to the rack 1, the rotating frame 5 is rotationally connected to the rack 1 through the rotating roller 10, and the first stop components are used for restricting the rotating frame 5 so that the rotating frame 5 is butted against the first chute 2 or the second chute 3 at a maximum rotation angle.
[0032] The utility model discloses a double -deck feeding chute, the first side top of rack 1 is configured as the feeding side, the first side of rack 1 and the first side of first chute 2 and second chute 3 are same side, and the second side of rack 1 and the second end of first chute 2 and second chute 3 are same side. When the material enters from the first end of the second chute 3, the height of the second chute 3 gradually decreases from the first end to the second end, and the material slides along the second chute 3 to the second end under the action of its own gravity. The rotating frame 5 is rotated to be butt-jointed with the second end of the second chute 3, so that the material is smoothly transferred from the second chute 3 to the rotating frame 5, and the operator can check, assemble, clean and the like operation on the material on the rotating frame 5, and the material is pushed to the second end of the first chute 2 by rotating the rotating frame 5 to be butt-jointed with the second end of the first chute 2, and under the action of gravity, the material is smoothly transferred to the first end of the first chute 2.
[0033] Referring to Figure 3 As shown in the figure, the first chute 2 and the second chute 3 are arranged with a plurality of rollers along the length direction, the center line direction of the roller is perpendicular to the length direction of the first chute 2 and the second chute 3, and the transfer mechanism further comprises an extension support 8, the extension support 8 is arranged at the position close to the second end of the first chute 2 and the second chute 3 of the rack 1, when the material enters from the first end of the second chute 3, the height of the second chute 3 gradually decreases from the first end to the second end, and the material slides along the second chute 3 to the second end under the action of its own gravity. In this process, the material contacts the rollers arranged on the second chute 3, the rollers rotate with the movement of the material, the friction between the material and the chute is reduced, and the material can more smoothly slide to the second end of the second chute 3. The material is pushed to the second end of the first chute 2, and under the action of gravity, the material contacts the rollers on the first chute 2, the rollers rotate, and the material is smoothly transferred to the first chute 2 and moves along the first chute 2 to the first end.
[0034] Referring to Figure 2 As shown in the figure, the extension support 8 is also provided with a heightening frame 12, which is installed with a bearing seat 9, and the rotating roller 10 is rotatably connected to the extension support 8 through the bearing seat 9. By providing the heightening frame 12, the rotating angle of the rotating frame 5 is increased.
[0035] Referring to Figure 3 As shown in the figure, the rack 1 is also provided with a transfer assembly, which comprises a damping rotating shaft 19 arranged on the rack 1, a support frame 6 connected to one end of the damping rotating shaft 19, and a receiving bin 7 arranged on the support frame 6. The receiving bin 7 is used for temporarily placing materials. During the rotation of the support frame 6, the damping rotating shaft 19 will generate a certain damping force, which will prevent the support frame 6 from rotating due to the weight of the materials and the self-weight, so as to avoid the support frame 6 from rotating too fast and causing the receiving bin 7 to be inaccurate in position or to shake. When the receiving bin 7 is in the appropriate position, the operator can place the materials from the rotating frame 5 into the receiving bin 7, and the receiving bin 7 temporarily receives the materials.
[0036] Referring to Figures 4-5 As shown in the figure, the rotating frame 5 is provided with a clamping assembly, which is used for angle limiting when the rotating frame 5 is docked with the second sliding way. The clamping assembly comprises a limiting rotating shaft 18, a connecting piece 17, a limiting rod 15, a limiting piece 16, a cam 13, a limiting groove, and an abutting piece. The limiting rotating shaft 18 is arranged on the extension support 8, the connecting piece 17 is rotatably connected to the limiting rotating shaft 18, one end of the limiting rod 15 is connected to the end of the connecting piece 17, the limiting piece 16 is arranged on the other end of the limiting rod 15, the cam 13 is arranged on the support frame 6, the limiting groove is arranged on the limiting piece 16 and is adapted to the cam 13, and the rotating frame 5 is provided with an abutting hole adapted to the abutting piece. When the rotating frame 5 starts to rotate towards the direction of the second sliding way 3, the connecting piece 17 rotates around the limiting rotating shaft 18, and simultaneously rotates synchronously through the limiting rod 15 and the limiting piece 16. When the weight of the materials is large, the limiting rod 15 is pushed, the connecting piece 17 is deformed, the cam 13 is clamped in the limiting groove, the rotating frame 5 is pushed to dock with the second end of the second sliding way 3, and the abutting piece is clamped in the abutting hole, so as to bear the weight, and the materials are convenient to observe, assemble or clean.
[0037] Referring to Figure 5As shown, the middle ring of the cam 13 is provided with a groove, the limiting groove includes a communication groove 22 and a sliding groove 21, in this embodiment, the limiting piece 16 is a piece-shaped structure with a gap to the frame 1, the groove is adapted to the limiting piece 16 and is limited by the wall of the limiting piece 16 itself to prevent disengagement, the size of the communication groove 22 is not less than the cam 13, the width of the sliding groove 21 is greater than the outer diameter of the cam 13 at the groove and less than the outer diameter of the end of the cam 13, the cam 13 is clamped into the limiting groove through the communication groove 22, the limiting rod 15 is prevented from disengaging through the sliding groove 21, and the limiting rod 15 slides in the sliding groove 21 through the groove, the elastic force of the connecting piece 17 can provide the pre-tightening force of the groove of the cam 13 and the wall of the sliding groove 21.
[0038] The connecting piece 17 is a elastic piece such as spring steel, the thickness direction of the connecting piece 17 is the direction from the limiting rod 15 to the cam 13, so that the connecting piece 17 can be elastically deformed, so that the limiting piece 16 on the limiting rod 15 is in contact with the cam 13. Generally, the greater the thickness, the greater the rigidity of the connecting piece 17, and the greater the force it can withstand, but the corresponding elastic deformation ability will be weakened; the smaller the thickness, the greater the elastic deformation ability of the connecting piece 17, but the ability to withstand force may be reduced. Therefore, various factors need to be considered when designing, and the appropriate thickness value needs to be selected.
[0039] The first stop component includes first limiting members 11 arranged on both sides of the rotating roller 10, before the rotating frame 5 reaches the maximum rotation angle, the rotating frame 5 and the first limiting members 11 maintain a certain safety distance, and the rotating frame 5 can rotate freely. When the rotating frame 5 rotates to the maximum rotation angle close to the abutment of the first sliding groove 2 or the second sliding groove 3, the edge of the rotating frame 5 or the component connected thereto will abut against the first limiting member 11.
[0040] Referring to Figure 3 As shown, the second end of the first sliding groove 2 is provided with a guide plate 14, so that the material is more easily entered into the first sliding groove 2, the rotating frame 5 is provided with a handle, and the frame 1 is further provided with a waste bin 4, which is arranged below the first sliding groove 2 for preventing unqualified or to-be-rechecked materials.
[0041] Referring to Figure 3As shown, the support frame 6 is provided with a second stop component for limiting the rotation angle thereof, which comprises second limiters 20 arranged on both sides of the support frame 6 respectively. When the support frame 6 rotates around the damping rotation shaft 19, the rotation angle thereof gradually changes. Before the support frame 6 reaches the maximum rotation angle, the support frame 6 keeps a safe distance from the second limiters 20, and can rotate freely within the allowed range. When the support frame 6 rotates close to the maximum rotation angle, the edge of the support frame 6 or the specific part connected thereto gradually approaches the second limiters 20. When the support frame 6 reaches the maximum rotation angle, the corresponding part of the support frame 6 contacts the second limiters 20, and the second limiters 20 apply a reverse resistance to the support frame 6 to prevent the support frame 6 from continuing to rotate. The first limiters 11 and the second limiters 20 both have rubber heads.
[0042] Obviously, the above embodiments are only examples for clearly illustrating the present application, and are not intended to limit the embodiments. Based on the above description, those skilled in the art can make other different forms of changes or variations. Here, it is not necessary and impossible to enumerate all the embodiments. The obvious changes or variations derived therefrom are still within the protection scope of the present application.
Claims
1. A double-layered feeding slide, characterized by, The utility model relates to a kind of rack, slide mechanism, transfer mechanism and the like. The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like. The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like. The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like.
2. A dual feed chute according to claim 1, wherein: The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like.
3. A dual feed chute according to claim 2, wherein: The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like.
4. A dual feed chute according to claim 1, wherein: The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like.
5. A dual feed chute according to claim 1, wherein: The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like.
6. A dual feed chute according to claim 5, wherein: The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like.
7. A dual feed chute according to claim 6, wherein: The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like.
8. A dual feed chute according to claim 6, wherein: The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like.
9. A dual feed chute according to claim 1, wherein: The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like.
10. A dual feed chute according to claim 4, wherein: The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like. The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like. The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like. The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like. The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like. The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like. The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like. The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like. The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like. The utility model discloses a rack, a slide mechanism, a transfer mechanism and the like. 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