Transfer device for double-shaft doffing machine
By designing a transfer device for a dual-axis cylinder drop machine, using the combination of the installation box and rotating components, the problem of rolling cylindrical materials during the conveying process is solved, stable material transportation and continuous diversion are achieved, and the operation efficiency and safety of the production line are improved.
Patent Information
- Application Number
- CN202422035737.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-08-22
AI Technical Summary
The cylindrical material is prone to roll by itself during the transportation process, especially on smooth belts or rollers, which leads to unstable material position and affects the conveying efficiency and safety.
A transfer device for a double-axis cylinder drop machine is designed. By providing a first and second mounting boxes on the mounting plate and opening a slide chute on its side, combining the first and second rotating components, the vertical flow direction of the material is ensured and the inclination or rolling is avoided.
It effectively avoids the material tilting or rolling during the transportation process, ensures that the material flows as expected, improves the conveying efficiency and safety, and realizes continuous diversion of the material through the diverting device, reducing pause time.
Smart Images

Figure CN223032187U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of transfer devices, and particularly relates to a transfer device for a double-shaft bobbin winder. Background Technique
[0002] The "bobbin winder" usually refers to a mechanical device used in automated production. Its main function is to automatically place various cylindrical items (such as paper tubes, plastic tubes, etc.) at designated positions. Bobbin winders are widely used in industries such as packaging, printing, and logistics to improve production efficiency and reduce manual operations. Through transfer devices, the layout of the production line can be reasonably arranged, the distances between different workstations and equipment can be shortened, the use of factory space can be optimized, and the density of the production line can be increased. The use of transfer devices can reduce the labor intensity of workers, reduce the risk of manual handling, and improve the work safety of workers. Transfer devices can be customized according to the characteristics of materials such as type, shape, and weight to ensure the smooth transfer of various materials and avoid damage and waste of materials during transfer. Transfer devices are usually used in conjunction with other automated equipment and are intelligently managed through control systems such as PLCs, enhancing the automation level of the entire production line and improving production flexibility.
[0003] Currently, cylindrical materials are prone to rolling on their own during transportation, especially on smooth belts or rollers. This rolling may cause the position of the materials to be unstable during transportation, affecting transportation efficiency and safety; therefore, it does not meet the existing requirements, and for this reason, we have proposed a transfer device for a double-shaft bobbin winder. Content of the Utility Model
[0004] The utility model provides a transfer device for a double-shaft bobbin winder, which has the beneficial effect of avoiding the inclination or rolling of materials during transportation and ensuring the materials flow as expected, and solves the problem that the cylindrical materials are prone to rolling on their own during transportation, especially on smooth belts or rollers as mentioned in the above background technique. This rolling may cause the position of the materials to be unstable during transportation, affecting transportation efficiency and safety.
[0005] The utility model provides the following technical solution: A transfer device for a double-shaft bobbin winder, including a mounting plate, a first mounting box and a second mounting box are arranged on the surface of the mounting plate, the second mounting box is arranged on the side of the first mounting box, a first chute is opened on the side of the first mounting box, a second chute is opened on the side of the second mounting box, and the first chute is communicated with the second chute.
[0006] As an optional solution of the transfer device for a double-shaft bobbin winder described in the utility model, wherein: the first mounting box and the second mounting box are respectively arranged as inclined rectangular boxes.
[0007] As an alternative solution for the transfer device of a double-shaft bobbin dropping machine according to the present utility model, wherein: a notch is formed on the surface of the first mounting box, the notch is communicated with the first chute, and a first rotating assembly is arranged inside the notch.
[0008] As an alternative solution for the transfer device of a double-shaft bobbin dropping machine according to the present utility model, wherein: a plurality of the first rotating assemblies are provided, and the plurality of first rotating assemblies are distributed inside the notch. The first rotating assembly includes a first rotating shaft and a roller. The first rotating shaft is inserted into the inner wall of the notch, and the roller is sleeved outside the first rotating shaft.
[0009] As an alternative solution for the transfer device of a double-shaft bobbin dropping machine according to the present utility model, wherein: the first chute and the second chute are respectively arranged as special-shaped chutes, and a flow dividing assembly is connected inside the first chute.
[0010] As an alternative solution for the transfer device of a double-shaft bobbin dropping machine according to the present utility model, wherein: the flow dividing assembly includes a second rotating shaft and a collar. The second rotating shaft is connected to the side of the first chute, and the collar is sleeved outside the second rotating shaft.
[0011] As an alternative solution for the transfer device of a double-shaft bobbin dropping machine according to the present utility model, wherein: one end of the collar is connected with a triangular block, and the other end of the collar is connected with a contact ring.
[0012] As an alternative solution for the transfer device of a double-shaft bobbin dropping machine according to the present utility model, wherein: second transfer assemblies are respectively arranged on the first chute and the side of the triangular block. The second transfer assembly includes a third rotating shaft and a rotating bead. The third rotating shaft is respectively connected to the side of the first chute and the triangular block, and the rotating bead is sleeved outside the third rotating shaft.
[0013] The present utility model has the following beneficial effects:
[0014] 1. For the transfer device of the double-shaft bobbin dropping machine, through the arrangement of the first rotating assembly and the second rotating assembly, the transfer device of the double-shaft bobbin dropping machine is docked on the side of the winding machine. The cylindrical material vertically flows to the notch on the side of the first mounting box, cooperates with the roller, flows to the first chute and slides cooperatively with the rotating bead, and then flows to the second chute. The vertical flow direction can maintain the stability of the material, avoid the inclination or rolling of the material during the conveying process, ensure that the material flows as expected, and solve the problem that the cylindrical material is prone to self-rolling during the conveying process, especially on a smooth belt or roller. This kind of rolling may cause the unstable position of the material during the conveying process, affecting the conveying efficiency and safety.
[0015] 2. The transfer device for the double-shaft bobbin winder, through the setting of the shunt device, the collar cooperates with the second rotating shaft, and the cylindrical material slides through the rotating beads on the side of the triangular block. During the sliding process, the contact ring is extruded, so that the collar drives the triangular block to abut to the right, causing the material passing through next time to flow to another second chute. Through the cooperation of the triangular block and the collar, continuous shunting of the material can be achieved, reducing the pause time and improving the overall operation efficiency of the production line. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a three-dimensional structural schematic diagram of the present utility model.
[0017] Figure 2 For the present utility model Figure 1 is an enlarged structural schematic diagram of part A.
[0018] Figure 3 is a top view structural schematic diagram of the present utility model.
[0019] Figure 4 is a structural schematic diagram of the first mounting box of the present utility model.
[0020] In the figure: 110, mounting plate; 120, first mounting box; 121, first chute; 122, notch; 130, second mounting box; 131, second chute; 140, first rotating assembly; 141, first rotating shaft; 142, roller; 150, shunt assembly; 151, second rotating shaft; 152, collar; 153, triangular block; 154, contact ring; 160, second transfer assembly; 161, third rotating shaft; 162, rotating bead. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.
[0022] In Embodiment 1, this embodiment aims to facilitate the solution of the problem that cylindrical materials are prone to roll by themselves during transportation, especially on smooth belts or rollers. This rolling may cause the materials to be unstable in position during transportation, affecting the transportation efficiency and safety. Please refer to Figures 1-4, A transfer device for a double-axis bobbin winder, comprising a mounting plate 110. On the surface of the mounting plate 110, a first mounting box 120 and a second mounting box 130 are provided. The second mounting box 130 is arranged on the side of the first mounting box 120. A first chute 121 is formed on the side of the first mounting box 120, and a second chute 131 is formed on the side of the second mounting box 130. The first chute 121 and the second chute 131 are communicated with each other.
[0023] The first mounting box 120 and the second mounting box 130 are respectively arranged as inclined rectangular boxes. A notch 122 is formed on the surface of the first mounting box 120. The notch 122 is communicated with the first chute 121. A first rotating assembly 140 is arranged inside the notch 122. There are several first rotating assemblies 140, and several first rotating assemblies 140 are distributed inside the notch 122. The first rotating assembly 140 includes a first rotating shaft 141 and a roller 142. The first rotating shaft 141 is inserted into the inner wall of the notch 122, and the roller 142 is sleeved on the outside of the first rotating shaft 141.
[0024] The first chute 121 and the second chute 131 are respectively arranged as special-shaped chutes. The second chute 131 is arranged as two arc-shaped chutes. The end of the second chute 131 corresponds to the next processing facility. A diversion assembly 150 is connected inside the first chute 121. The depths and widths of the notch 122, the first chute 121 and the second chute 131 are set to just engage with the cylindrical material. Second transfer assemblies 160 are respectively arranged on the sides of the first chute 121 and the triangular block 153. The second transfer assembly 160 includes a third rotating shaft 161 and a rotating bead 162. The third rotating shafts 161 are respectively connected to the sides of the first chute 121 and the triangular block 153, and the rotating beads 162 are sleeved on the outside of the third rotating shafts 161.
[0025] In this embodiment: Through the setting of the first rotating assembly 140 and the second rotating assembly, the transfer device for the double-axis bobbin winder is docked on the side of the winding machine. The cylindrical material vertically flows to the notch 122 on the side of the first mounting box 120, cooperates with the roller 142, flows to the first chute 121 and slides in cooperation with the rotating bead 162, and then flows to the second chute 131. The vertical flow direction can maintain the stability of the material, avoid the inclination or rolling of the material during the conveying process, ensure that the material flows as expected, and solve the problem that the cylindrical material is prone to self-rolling during the conveying process, especially on a smooth belt or roller. This kind of rolling may cause the unstable position of the material during the conveying process, affecting the conveying efficiency and safety.
[0026] Embodiment 2. The purpose of this embodiment is to facilitate the solution of the problem of inability to divert. This embodiment is an improvement made on the basis of Embodiment 1. Specifically, please refer to Figures 1-4The flow diversion component 150 includes a second rotating shaft 151 and a ring 152. The second rotating shaft 151 is connected to the side of the first sliding groove 121. The ring 152 is sleeved on the outer side of the second rotating shaft 151. One end of the ring 152 is connected to a triangular block 153, and the other end of the ring 152 is connected to a resistance ring 154.
[0027] In this embodiment: through the setting of the diversion device, the ring 152 cooperates with the second rotating shaft 151, and the cylindrical material slides through the rotating bead 162 on the side of the triangular block 153. During the sliding process, the abutment ring 154 is squeezed, so that the ring 152 drives the triangular block 153 to the right to abut, so that the next passing material flows to the other second chute 131. Through the cooperation of the triangular block 153 and the ring 152, continuous diversion of materials can be achieved, the pause time can be reduced, and the overall operation efficiency of the production line can be improved.
[0028] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0029] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principle of the present invention. These improvements and modifications should also be regarded as the protection scope of the present invention.
Claims
1. A transfer device for a double-axis doffer, comprising a mounting plate (110), characterized in that: A first installation box (120) and a second installation box (130) are arranged on the surface of the installation plate (110); the second installation box (130) is arranged on the side of the first installation box (120); a first slide groove (121) is opened on the side of the first installation box (120); a second slide groove (131) is opened on the side of the second installation box (130); the first slide groove (121) and the second slide groove (131) are connected.
2. A transfer device for a double-axis doffing machine according to claim 1, characterized in that: The first installation box (120) and the second installation box (130) are respectively configured as inclined rectangular boxes.
3. A transfer device for a double-axis doffing machine according to claim 2, characterized in that: A notch (122) is provided on the surface of the first installation box (120), the notch (122) is communicated with the first sliding groove (121), and a first rotating assembly (140) is arranged inside the notch (122).
4. A transfer device for a double-axis doffing machine according to claim 3, characterized in that: A plurality of the first rotating components (140) are provided, and the plurality of the first rotating components (140) are distributed inside the slot (122). The first rotating component (140) comprises a first rotating shaft (141) and a roller (142). The first rotating shaft (141) is inserted into the inner wall of the slot (122), and the roller (142) is sleeved on the outer side of the first rotating shaft (141).
5. A transfer device for a double-axis doffing machine according to claim 4, characterized in that: The first slide groove (121) and the second slide groove (131) are respectively configured as special-shaped grooves, and a flow diversion component (150) is connected inside the first slide groove (121).
6. A transfer device for a double-axis doffing machine according to claim 5, characterized in that: The flow diversion component (150) comprises a second rotating shaft (151) and a collar (152), wherein the second rotating shaft (151) is connected to the side of the first sliding groove (121), and the collar (152) is sleeved on the outer side of the second rotating shaft (151).
7. A transfer device for a double-axis doffing machine according to claim 6, characterized in that: One end of the sleeve ring (152) is connected to a triangular block (153), and the other end of the sleeve ring (152) is connected to a resisting ring (154).
8. A transfer device for a double-axis doffing machine according to claim 7, characterized in that: The first slide groove (121) and the side of the triangular block (153) are respectively provided with a second transfer component (160), and the second transfer component (160) includes a third rotating shaft (161) and a rotating ball (162), and the third rotating shaft (161) is respectively connected to the side of the first slide groove (121) and the triangular block (153), and the rotating ball (162) is sleeved on the outer side of the third rotating shaft (161).