A roll support device

CN118684026BActive Publication Date: 2026-09-15JIANGDONG ELECTRONIC MATERIALS CO LTD
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Patent Information

Application Number
CN202410971489.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2026-09-15
Estimated Expiration
2044-07-18

AI Technical Summary

Technical Problem

[0005]本申请实施例提供了一种卷材支撑装置,用以解决现有技术中铜箔卷材的安装效果较差的问题

Benefits of technology

[0017] This application provides a roll material support device, which includes a mounting base, a support member, and a locking member. The mounting base has a mounting groove, and the support member and the locking member are rotatably mounted on the mounting base. The support member is used to be positioned below the roller in the roll material and to support the roller as it falls into the mounting groove or to push the roller out of the mounting groove. The locking member is used to press against the roller. The mounting base is provided with a control member and a transmission assembly. The transmission assembly transmits power between the support member and the locking member, and the control member is used to control the rotation of the support member or the locking member. Therefore, when installing copper foil rolls, the support is rotated to the opening of the mounting groove. Then, the end of the roller in the copper foil roll is placed on the support. The support or locking component is then rotated by the control component. Under the transmission action of the transmission assembly, the support roller slowly falls into the mounting groove, and the locking component simultaneously presses the roller into place, thus locking the roller in the mounting groove and realizing the installation of the copper foil roll. This reduces the possibility of the roller hitting the mounting seat during the installation process, making it less likely to damage the copper foil roll or adversely affect the subsequently processed products, thus solving the problem of poor installation effect of copper foil rolls in the prior art.

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Abstract

The embodiment of the present application provides a kind of coiled material support device, belong to the technical field of coiled material processing, coiled material support device, including mounting seat, support piece and locking piece;Mounting seat has installation slot, support piece and locking piece are rotationally arranged on mounting seat, support piece is used to be arranged in the lower of coiled material roll shaft, and it is used to support roll shaft to fall in installation slot or push roll shaft out from installation slot, locking piece is used to be compressed in the upper of roll shaft;Mounting seat is provided with control element and transmission assembly, transmission assembly is driven between support piece and locking piece, to when support piece supports roll shaft to fall, synchronous drive locking piece and roll shaft are compressed;Or when support piece pushes roll shaft out, synchronous drive locking piece and roll shaft are released from compression;Control element is used to control the rotation of support piece or locking piece.The coiled material support device provided in the embodiment of the present application solves the problem of poor installation effect of copper foil coiled material in the prior art.
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Description

Technical Field

[0001] This application relates to the field of roll material processing technology, and in particular to a roll material support device. Background Technology

[0002] In the production or processing of some products, steps such as installation or disassembly of roll materials are often involved. Roll materials include: copper foil rolls, fabric rolls, waterproof rolls, etc.

[0003] Taking copper foil rolls as an example, during the processing of copper foil rolls, when unwinding or rewinding them, the copper foil rolls are typically mounted on a pair of spaced-apart support devices, so that both ends of the rollers in the copper foil rolls are respectively supported on the two support devices. The support devices in related technologies include mounting seats and pressure caps. The mounting seats are provided with mounting grooves. During the installation of the copper foil rolls, the copper foil rolls are manually moved onto the mounting seats, and the ends of the rollers are gradually placed into the mounting grooves. Finally, the pressure caps are fastened to the mounting seats with bolts, covering the rollers and sealing the opening of the mounting grooves.

[0004] However, during the process of installing the roller into the mounting slot, improper operation or the free fall of the copper foil roll can easily cause the end of the roller to hit the mounting base, which can easily damage the copper foil roll or have an adverse effect on the products processed subsequently. Summary of the Invention

[0005] This application provides a roll support device to solve the problem of poor installation effect of copper foil rolls in the prior art.

[0006] To achieve the above objectives, the embodiments of this application provide the following technical solutions:

[0007] This application provides a roll material support device, including a mounting base, a support member, and a locking member. The mounting base has a mounting groove, and the support member and the locking member are rotatably mounted on the mounting base. The support member is positioned below a roller in the roll material and is used to support the roller as it falls into the mounting groove or to push the roller out of the mounting groove. The locking member is used to press against the roller. The mounting base is provided with a control member and a transmission assembly. The transmission assembly drives the support member and the locking member to simultaneously press the roller against the locking member when the support member supports the roller as it falls, or simultaneously release the locking member from pressing against the roller when the support member pushes the roller out. The control member is used to control the rotation of the support member or the locking member.

[0008] In one possible implementation, the transmission assembly includes a first transmission member, a second transmission member, and a transmission gear. The first transmission member is disposed on the support member, and the second transmission member is disposed on the locking member. The transmission gear is rotatably disposed on the mounting base and meshes with the first transmission member and the second transmission member.

[0009] In one possible implementation, the first transmission member includes a plurality of first transmission teeth, which are evenly spaced around a portion of the circumference of the support member, and the first transmission teeth are used to mesh with the transmission gear.

[0010] In one possible implementation, the second transmission member includes a plurality of second transmission teeth, which are evenly spaced around a portion of the circumference of the locking member, and the second transmission teeth are used to mesh with the transmission gear.

[0011] In one possible implementation, the mounting base is provided with a locking assembly, which is configured to lock the movable end of the locking member when the locking member is pressed against the roller.

[0012] In one possible implementation, the locking assembly includes a locking block rotatably disposed on the mounting base, the locking block having a locking groove, and the movable end of the locking member having a locking portion; the locking block is configured such that when the locking member is pressed against the roller, the locking block is rotated to engage the locking groove with the locking portion, thereby locking the movable end of the locking member.

[0013] In one possible implementation, the latch assembly further includes an actuating element and a reset elastic element, the reset elastic element being used to control the lock block to automatically rotate toward the latch portion; the actuating element is disposed on the mounting base to control the lock block to rotate away from the latch portion.

[0014] In one possible implementation, the actuating element is located on the side of the locking block facing the locking member. The actuating element includes a control arm and a transmission cam. The control arm is rotatably mounted on the mounting base, and the transmission cam is mounted on the control arm. When the control arm rotates, the transmission cam pushes the locking block away from the locking member.

[0015] In one possible implementation, the support member is provided with a connecting lug, and the control member is configured as a hydraulic stabilizer, with both ends of the hydraulic stabilizer rotatably connected to the mounting base and the connecting lug, respectively.

[0016] In one possible implementation, the support member has an arc-shaped support surface on the side facing the locking member. When the support member supports the roller shaft, the support member is positioned on the roller shaft through the arc-shaped support surface.

[0017] This application provides a roll material support device, which includes a mounting base, a support member, and a locking member. The mounting base has a mounting groove, and the support member and the locking member are rotatably mounted on the mounting base. The support member is used to be positioned below the roller in the roll material and to support the roller as it falls into the mounting groove or to push the roller out of the mounting groove. The locking member is used to press against the roller. The mounting base is provided with a control member and a transmission assembly. The transmission assembly transmits power between the support member and the locking member, and the control member is used to control the rotation of the support member or the locking member. Therefore, when installing copper foil rolls, the support is rotated to the opening of the mounting groove. Then, the end of the roller in the copper foil roll is placed on the support. The support or locking component is then rotated by the control component. Under the transmission action of the transmission assembly, the support roller slowly falls into the mounting groove, and the locking component simultaneously presses the roller into place, thus locking the roller in the mounting groove and realizing the installation of the copper foil roll. This reduces the possibility of the roller hitting the mounting seat during the installation process, making it less likely to damage the copper foil roll or adversely affect the subsequently processed products, thus solving the problem of poor installation effect of copper foil rolls in the prior art. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. The drawings included herein are incorporated in and constitute a part of this specification, illustrating embodiments consistent with this application, and together with the description are used to explain the principles of this application.

[0019] Figure 1 This is a schematic diagram of the structure of the roll material support device provided in the embodiments of this application;

[0020] Figure 2 A schematic diagram of the first state of the roll material support device;

[0021] Figure 3 This is a schematic diagram of the second state of the roll material support device;

[0022] Figure 4 for Figure 2 A partial structural diagram of the transmission component.

[0023] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments.

[0024] Explanation of reference numerals in the attached figures:

[0025] 10-roller shaft;

[0026] 100 - Mounting base; 110 - Mounting slot;

[0027] 200 - Support component; 210 - Arc-shaped support surface; 220 - Connecting lug;

[0028] 300 - Locking element; 310 - Locking latch;

[0029] 400 - Control components;

[0030] 500 - Transmission assembly; 510 - First transmission component; 511 - First transmission gear; 520 - Second transmission component; 521 - Second transmission gear; 530 - Transmission gear;

[0031] 600-Lock assembly; 610-Lock block; 611-Lock groove; 620-Actuating element; 621-Control arm; 622-Transmission cam; 630-Reset elastic element. Detailed Implementation

[0032] To make the objectives, technical solutions, and advantages of this application clearer, the technical solutions of this application and how they solve the aforementioned technical problems will be clearly and completely described below with reference to specific embodiments and accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, not all of them. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0033] The terms "first," "second," "third," "fourth," etc. (if present) in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a particular order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented, for example, in orders other than those illustrated or described herein.

[0034] In this application, the terms "exemplary" or "for example" are used to indicate examples, illustrations, or descriptions. Any embodiment or design described as "exemplary" or "for example" in this application should not be construed as being more preferred or advantageous than other embodiments or designs. Specifically, the use of terms such as "exemplary" or "for example" is intended to present the relevant concepts in a specific manner.

[0035] In related technologies, the production or processing of some products often involves steps such as installing or disassembling coiled materials. Taking copper foil coils as an example, during the processing of copper foil coils, when unwinding or rewinding the copper foil coils, the copper foil coils are usually placed on a pair of spaced-apart support devices, so that the two ends of the rollers in the copper foil coils are respectively placed on the two support devices.

[0036] The support device includes a mounting base and a pressure cap. The mounting base is provided with an upper-opening mounting groove. When installing the copper foil roll, the copper foil roll is usually manually carried to the mounting base and the end of the roller is gradually placed into the mounting groove. Finally, the pressure cap is fastened to the mounting base with bolts, covering the roller and closing the opening of the mounting groove.

[0037] However, during the installation of the roller into the mounting slot, improper operation or the free fall of the copper foil roll can cause the end of the roller to violently impact the mounting base, which can easily damage the copper foil roll or adversely affect the products processed subsequently.

[0038] Therefore, this application provides a coil support device, which rotatably arranges a support member, a locking member, a control member, and a transmission assembly on a mounting base. The support member is positioned below the roller in the coil, the locking member is pressed against the roller, the transmission assembly transmits power between the support member and the locking member, and the control member controls the rotation of the support member or the locking member. When installing copper foil coil, the support member is rotated to the opening of the mounting groove. Then, the end of the roller in the copper foil coil is placed on the support member, and the control member controls the rotation of the support member or the locking member. Under the transmission action of the transmission assembly, the support member supports the roller and slowly falls into the mounting groove. The locking member simultaneously presses the roller, thereby locking the roller in the mounting groove and realizing the installation of copper foil coil. Thus, during the installation of copper foil coil, the possibility of the roller hitting the mounting base can be reduced, which is less likely to damage the copper foil coil and less likely to have an adverse effect on the subsequently processed products, solving the problem of poor installation effect of copper foil coil in the prior art.

[0039] The technical solution of the present invention will now be described in detail with reference to the accompanying drawings and specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments.

[0040] like Figure 1 , Figure 2 and Figure 3 As shown in the figure, this application provides a roll material support device, including a mounting base 100, a support member 200, and a locking member 300. The mounting base 100 has a mounting groove 110. The support member 200 and the locking member 300 are both rotatably mounted on the mounting base 100. The support member 200 is used to be positioned below the roller 10 in the roll material and is used to support the roller 10 as it falls into the mounting groove 110 or to push the roller 10 out of the mounting groove 110. The locking member 300 is used to press against the roller. Above the support member 200; the mounting base 100 is provided with a control component 400 and a transmission component 500. The transmission component 500 transmits power between the support member 200 and the locking member 300 so that when the support member 200 supports the roller shaft 10 and falls, it simultaneously drives the locking member 300 to press the roller shaft 10; or when the support member 200 pushes out the roller shaft 10, it simultaneously drives the locking member 300 to release the pressing of the roller shaft 10. The control component 400 is used to control the rotation of the support member 200 or the locking member 300.

[0041] In this embodiment, the mounting groove 110 on the mounting base 100 has an upwardly open structure. The support member 200 can be a block, plate, or strip structure, and there is no limitation thereto. One end of the support member 200 is rotatably connected to the mounting base 100, and the other end extends toward the mounting groove 110, so that the movable end of the support member 200 can swing back and forth between the bottom and the opening of the mounting groove 110, thereby supporting the roller 10 to slowly fall into the mounting groove 110 or pushing the roller 10 out of the mounting groove 110.

[0042] Preferably, after the roller 10 is pushed out of the mounting groove 110, the support member 200 will rotate to the groove opening position of the mounting groove 110, and the upper surface of the support member 200 will be flush with the upper surface of the mounting base 100; after the roller 10 falls into the mounting groove 110, the movable end of the support member 200 is located below the mounting groove 110, so that the roller 10 is stably attached to the bottom wall of the mounting groove 110.

[0043] The locking element 300 can be a block, plate, or strip structure, and there is no limitation thereto. One end of the locking element 300 is rotatably connected to the mounting base 100, and the other end extends toward the mounting groove 110, so that the locking element 300 can swing back and forth in the area above the opening of the mounting groove 110. In addition, when the locking element 300 presses or releases the roller shaft 10, it can also close or open the opening of the mounting groove 110.

[0044] Specifically, the mounting groove 110 has a semi-circular profile, and the locking member 300 has a semi-circular clearance groove corresponding to the mounting groove 110 at one end facing the mounting groove 110, so that the mounting groove 110 and the clearance groove together form a circular cavity that fits the roller 10. When the locking member 300 presses the roller 10 together, the roller 10 is exactly located in the circular cavity.

[0045] In this embodiment, the control member 400 is connected to the support member 200, enabling the control member 400 to control the rotation of the support member 200. In other embodiments, the control member 400 may also be connected to the locking member 300, enabling the control member 400 to control the rotation of the locking member 300.

[0046] When installing copper foil rolls, the support member 200 is rotated to the opening of the mounting groove 110. Then, the end of the roller 10 in the copper foil roll is placed on the support member 200. The support member 200 is rotated by the control member 400. Then, under the transmission action of the transmission component 500, the support member 200 supports the roller 10 to slowly fall into the mounting groove 110. The locking member 300 simultaneously presses the roller 10 together, thereby locking the roller 10 in the mounting groove, thus realizing the installation of the copper foil roll. In this way, the possibility of the roller 10 hitting the mounting base 100 can be reduced during the installation of the copper foil roll, which is less likely to damage the copper foil roll and less likely to have an adverse effect on the subsequently processed products. This solves the problem of poor installation effect of copper foil rolls in the prior art.

[0047] It should be noted that when removing the copper foil roll from the mounting slot 110, the control component 400 simply controls the support component 200 to push the roller 10 out of the mounting slot 110 to a position flush with the upper surface of the mounting base 100. Simultaneously, the locking component 300 releases the pressure on the roller 10, allowing the roller 10 to move out along the upper surface of the mounting base 100. This makes the disassembly process of the copper foil roll relatively convenient. It also facilitates the automation of the entire replacement process of the copper foil roll (i.e., disassembling the old copper foil roll and installing the new one), reducing labor costs and improving production efficiency.

[0048] In addition, this roll material support device can also be used to support fabric rolls, waterproof rolls, and other roll materials, so as to improve the efficiency of roll material replacement during production and processing.

[0049] like Figure 3 As shown, the support member 200 is further provided with an arc-shaped support surface 210 on the side facing the locking member 300. When the support member 200 supports the roller shaft 10, the support member 200 positions the roller shaft 10 through the arc-shaped support surface 210.

[0050] Specifically, the support member 200 has an arc-shaped positioning groove recessed at one end facing the roller shaft 10, and the groove wall is the arc-shaped support surface 210. In use, when the support member 200 contacts the roller shaft 10, the lower end of the roller shaft 10 is located in the positioning groove, so that the arc-shaped support surface 210 of the support member 200 has a better positioning effect on the roller shaft 10 when supporting the roller shaft 10 to rise or fall, reducing the possibility of the roller shaft 10 sliding along the upper surface of the support member 200, and further reducing the possibility of the roller shaft 10 colliding with the mounting base 100.

[0051] like Figure 2 and Figure 4 As shown, in some embodiments, the transmission assembly 500 includes a first transmission member 510, a second transmission member 520, and a transmission gear 530. The first transmission member 510 is disposed on the support member 200, and the second transmission member 520 is disposed on the locking member 300. The transmission gear 530 is rotatably disposed on the mounting base 100 and meshes with the first transmission member 510 and the second transmission member 520.

[0052] Specifically, the first transmission member 510 is disposed on the support member 200, and the first transmission member 510 is located at the end where the rotating part of the support member 200 is located; the second transmission member 520 is disposed on the locking member 300, and the second transmission member 520 is located at the end where the rotating part of the locking member 300 is located. The end of the support member 200 with the first transmission member 510 and the end of the locking member 300 with the second transmission member 520 are close to each other, so that the transmission gear 530 can simultaneously mesh with the first transmission member 510 and the second transmission member 520.

[0053] When the control component 400 controls the support component 200 to rotate, the support component 200 will drive the transmission gear 530 to rotate through the first transmission component 510. Subsequently, the transmission gear 530 will drive the locking component 300 to rotate through the second transmission component 520, thereby realizing the synchronous rotation of the support component 200 and the locking component 300, improving the efficiency of the copper foil roll installation or disassembly process.

[0054] like Figure 4 As shown, the first transmission member 510 includes a plurality of first transmission teeth 511, which are evenly spaced around a portion of the periphery of the support member 200. The first transmission teeth 511 are used to mesh with the transmission gear 530.

[0055] Multiple first transmission teeth 511 are evenly spaced around the rotation axis of the support member 200, enabling mutual transmission between the multiple first transmission teeth 511 and the transmission gear 530. In actual implementation, the first transmission teeth 511 can be integrally formed by the support member 200, or they can be welded and fixed to the periphery of the support member 200; there are no restrictions on this.

[0056] like Figure 4As shown, the second transmission member 520 includes a plurality of second transmission teeth 521, which are evenly spaced around a portion of the circumference of the locking member 300. The second transmission teeth 521 are used to mesh with the transmission gear 530.

[0057] Multiple second transmission teeth 521 are evenly spaced around the rotation axis of the locking member 300, enabling mutual transmission between the multiple second transmission teeth 521 and the transmission gear 530. In actual implementation, the second transmission teeth 521 can be integrally formed by the locking member 300, or they can be welded and fixed to the periphery of the locking member 300; there are no restrictions on this.

[0058] In other embodiments, both the first transmission member 510 and the second transmission member 520 can be configured as gears, which are fixed on the support member 200 or the locking member 300, and the rotation axis of the gear coincides with the rotation axis of the support member 200 or the locking member 300.

[0059] like Figure 3 As shown, in some embodiments, the support member 200 is provided with a connecting ear plate 220, and the control member 400 is configured as a hydraulic stabilizer, with both ends of the hydraulic stabilizer rotatably connected to the mounting base 100 and the connecting ear plate 220, respectively.

[0060] Among them, the hydraulic stabilizer is a hydraulic cylinder that can control the support 200 to rotate slowly. The control component 400 can also be a cylinder, an electric lead screw or an electric actuator, and the model is not limited, as long as it can control the rotation of the support 200.

[0061] The connecting lug 220 can be integrally formed from the support member 200, or it can be fixed to the support member 200 by welding, screwing, or other means. One end of the hydraulic stabilizer is rotatably connected to the mounting base 100, and the other end is rotatably connected to the connecting lug 220. This allows the hydraulic stabilizer to push and pull the connecting lug 220, thereby achieving the purpose of controlling the rotation of the support member 200.

[0062] like Figure 2 and Figure 3 As shown, in some embodiments, a locking assembly 600 is provided on the mounting base 100. The locking assembly 600 is configured to lock the movable end of the locking member 300 after the locking member 300 is pressed against the roller 10.

[0063] In this embodiment, the locking assembly 600 is located on one side of the groove opening of the mounting groove 110, and the locking assembly 600 is disposed opposite to the rotating part of the locking member 300. When the locking member 300 closes the groove opening of the mounting groove 110, the movable end of the locking member 300 will approach the locking assembly 600, and then the movable end of the locking member 300 can be locked by the locking assembly 600, thereby improving the stability of the locking member 300 in restricting the roller shaft 10.

[0064] Specifically, the locking assembly 600 includes a locking block 610 rotatably disposed on the mounting base 100. The locking block 610 is provided with a locking groove 611, and the movable end of the locking member 300 is provided with a locking part 310. The locking block 610 is configured such that when the locking member 300 is pressed against the roller shaft 10, the locking block 610 is rotated to engage the locking groove 611 with the locking part 310, thereby locking the movable end of the locking member 300.

[0065] The locking block 610 is vertically positioned, and its lower end is rotatably mounted on the mounting base 100. When the locking block 610 is rotated, its movable end can move closer to or further away from the locking member 300. A locking groove 611 is formed at the movable end of the locking block 610, and the opening of the locking groove 611 faces the side where the locking member 300 is located.

[0066] The locking part 310 can be integrally formed from the locking member 300, or it can be fixed to the movable end of the locking member 300 by welding, screwing or other means. This allows the locking part 310 to be located on the side of the locking member 300 facing the locking block 610 after the locking member 300 closes the mounting groove 110.

[0067] In use, after the copper foil roll has been installed and the locking member 300 has closed the mounting groove 110, the locking block 610 is rotated toward the locking member 300 so that the locking part 310 engages with the locking groove 611 on the locking block 610. This further tightens the movable end of the locking member 300 through the locking block 610, improving the stability of the locking member 300 in subsequent working processes.

[0068] like Figure 2 and Figure 3 As shown, the latch assembly 600 further includes a toggle member 620 and a reset elastic member 630. The reset elastic member 630 is disposed on the rotating part of the locking block 610 to control the locking block 610 to automatically rotate toward the latch part 310. The toggle member 620 is disposed on the mounting base 100 to control the locking block 610 to rotate away from the latch part 310.

[0069] The reset elastic element 630 is a torsion spring, which is coaxially sleeved on the rotating part of the locking block 610. The two ends of the torsion spring are connected to the locking block 610 and the mounting base 100, respectively. The reset elastic element 630 keeps the locking block 610 inclined to rotate toward the locking member 300 so that the locking block 610 automatically engages with the locking member 300.

[0070] The actuating element 620 is disposed on the mounting base 100, and the actuating element 620 can control the movable end of the locking block 610 to rotate away from the locking element 300 so as to release the restriction on the locking element 300.

[0071] To further improve the performance of the locking block 610, for example, the movable end of the locking block 610 can be provided with a guide slope, so that when the locking member 300 closes the mounting groove 110, the locking part 310 will abut against the guide slope, thereby automatically pushing the locking block 610 to avoid the locking member 300. Then, under the action of the reset elastic member 630, the locking block 610 reverses again to fasten the locking member 300.

[0072] When it is necessary to disassemble the copper foil roll, simply drive the locking block 610 away from the locking member 300 by using the actuating member 620 to rotate, thereby releasing the restriction on the locking member 300. Then, control the support member 200 and the locking member 300 to rotate by using the control member 400.

[0073] In other embodiments, the reset elastic element 630 may also be configured as a spring for pushing the locking block 610 to rotate toward the locking member 300, with the two ends of the spring connected to the locking block 610 and the mounting base 100, respectively.

[0074] like Figure 2 and Figure 3 As shown, in some embodiments, the actuating member 620 is located on the side of the locking block 610 facing the locking member 300. The actuating member 620 includes a control arm 621 and a transmission cam 622. The control arm 621 is rotatably mounted on the mounting base 100, and the transmission cam 622 is mounted on the control arm 621. When the control arm 621 rotates, it pushes the locking block 610 away from the locking member 300 through the transmission cam 622.

[0075] Specifically, the control arm 621 is located on the side of the locking block 610 facing the locking member 300. The control arm 621 is vertically positioned and its upper end is rotatably connected to the mounting base 100. The transmission cam 622 is fixed to the control arm 621, and the central axis of the transmission cam 622 coincides with the rotation axis of the locking member 300. The protrusion of the transmission cam 622 abuts against the side wall of the locking block 610. The transmission cam 622 can be integrally formed from the control arm 621, or it can be fixed to the control arm 621 by welding, screwing, or other means; there are no restrictions on this.

[0076] In use, rotating the control arm 621 controls the transmission cam 622 to swing, causing the protrusion of the transmission cam 622 to push the locking block 610 away from the locking member 300, thereby releasing the locking effect of the locking block 610 on the locking member 300. Reversing the control arm 621 releases the pushing action of the transmission cam 622 on the locking block 610, allowing the locking block 610 to automatically reset under the action of the reset elastic member 630, so that the locking member 300 can be locked again in the future.

[0077] In other embodiments, the actuator 620 may also be configured as a cylinder, hydraulic cylinder or motor capable of rotating the locking block 610.

[0078] In actual implementation, the control arm 621 can also be linked with other equipment on site, so that the equipment on site can control the rotation of the transmission cam 622 by colliding with the control arm 621, thereby achieving the purpose of controlling the locking block 610 to unlock or lock the locking member 300.

[0079] In summary, this application provides a coil support device. When installing copper foil coils, the support member 200 is rotated to the opening of the mounting groove 110. Then, the end of the roller 10 in the copper foil coil is placed on the support member 200. The control member 400 controls the rotation of the support member 200. Under the transmission action of the transmission component 500, the support member 200 supports the roller 10 to slowly fall in the mounting groove 110. The locking member 300 simultaneously presses the roller 10 together, thereby locking the roller 10 in the mounting groove and realizing the installation of the copper foil coil. Thus, during the installation of the copper foil coil, the possibility of the roller 10 hitting the mounting base 100 can be reduced, which is less likely to damage the copper foil coil and less likely to have an adverse effect on the subsequently processed products. This solves the problem of poor installation effect of copper foil coils in the prior art.

[0080] The technical solutions of this application have been described above with reference to the preferred embodiments shown in the accompanying drawings. However, it is readily understood by those skilled in the art that the scope of protection of this application is obviously not limited to these specific embodiments. The above embodiments are only used to illustrate the technical solutions of this application and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

[0081] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the disclosure herein. This application is not limited to the precise structures described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The specification and embodiments are to be considered exemplary only, and the scope of this application is limited only by the appended claims.

Claims

1. A roll material support device, characterized in that, Includes a mounting base (100), a support (200), and a locking element (300); The mounting base (100) has a mounting groove (110). The support member (200) and the locking member (300) are both rotatably mounted on the mounting base (100). The support member (200) is used to be positioned below the roller (10) in the roll material and to support the roller (10) as it falls into the mounting groove (110) or to push the roller (10) out of the mounting groove (110). The locking member (300) is used to press against the roller (10) above it. The mounting base (100) is provided with a control component (400) and a transmission component (500). The transmission component (500) transmits power between the support component (200) and the locking component (300) so that when the support component (200) supports the roller (10) to fall, it simultaneously drives the locking component (300) to press the roller (10) together; or when the support component (200) pushes out the roller (10), it simultaneously drives the locking component (300) to release the pressure on the roller (10). The control element (400) is used to control the rotation of the support element (200) or the locking element (300); The transmission assembly (500) includes a first transmission member (510), a second transmission member (520), and a transmission gear (530). The first transmission member (510) is disposed on the support member (200), and the second transmission member (520) is disposed on the locking member (300). The transmission gear (530) is rotatably disposed on the mounting base (100) and meshes with the first transmission member (510) and the second transmission member (520). The first transmission member (510) includes a plurality of first transmission teeth (511), which are evenly spaced around a portion of the circumference of the support member (200). The first transmission teeth (511) are used to mesh with the transmission gear (530). The second transmission member (520) includes a plurality of second transmission teeth (521), which are evenly spaced around a portion of the circumference of the locking member (300), and the second transmission teeth (521) are used to mesh with the transmission gear (530); The mounting base (100) is provided with a locking assembly (600), which is configured to lock the movable end of the locking member (300) by means of the locking assembly (600) after the locking member (300) is pressed against the roller (10). The support member (200) is provided with a connecting ear plate (220), and the control member (400) is configured as a hydraulic stabilizer. The two ends of the hydraulic stabilizer are respectively rotatably connected to the mounting base (100) and the connecting ear plate (220).

2. The roll material support device according to claim 1, characterized in that, The locking assembly (600) includes a locking block (610) rotatably disposed on the mounting base (100), the locking block (610) being provided with a locking groove (611), and the movable end of the locking member (300) being provided with a locking part (310); the locking block (610) is configured such that when the locking member (300) is pressed against the roller (10), the locking block (610) is rotated so that the locking groove (611) engages with the locking part (310) to lock the movable end of the locking member (300).

3. The roll material support device according to claim 2, characterized in that, The latch assembly (600) further includes an actuating element (620) and a reset elastic element (630). The reset elastic element (630) is used to control the locking block (610) to automatically rotate toward the latch portion (310). The actuating element (620) is disposed on the mounting base (100) to control the locking block (610) to rotate away from the latch portion (310).

4. The roll material support device according to claim 3, characterized in that, The actuating element (620) is located on the side of the locking block (610) facing the locking member (300). The actuating element (620) includes a control arm (621) and a transmission cam (622). The control arm (621) is rotatably mounted on the mounting base (100), and the transmission cam (622) is mounted on the control arm (621). When the control arm (621) rotates, the transmission cam (622) pushes the locking block (610) away from the locking member (300) to rotate.

5. The roll material support device according to claim 1, characterized in that, The support member (200) has an arc-shaped support surface (210) on the side facing the locking member (300). When the support member (200) supports the roller (10), the support member (200) positions the roller (10) through the arc-shaped support surface (210).

Citation Information

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