Unpowered roller clamping device

CN224753374UActive Publication Date: 2026-09-15陈志宏
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Patent Information

Application Number
CN202521944330.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-10
Publication Date
2026-09-15
Estimated Expiration
2035-09-10

AI Technical Summary

Technical Problem

[0001]由于过去的技术,在摊开金属线材的前置步骤中,必须要人工操作,将缠绕于线架的金属线材取出、摊开及输送至校直机校直等前置作业步骤,而这些金属线材之特性为高抗拉、高冲击强度、高弯曲性及高重量,人工操作相当费时费力,并且需要先期训练,才可以执行此项作业,除了耗费人力及时间外,也容易造成危安事件

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Abstract

The utility model relates to a kind of unpowered roller clamping devices, it includes: a bottom unpowered roller, transversely set in the base of the unpowered roller clamping device, to be set in parallel with the base;Multiple unpowered rollers, wherein, the multiple unpowered rollers are set in the both sides of the bottom unpowered roller, to be set in perpendicular with the base;A top unpowered roller is set in the top of the unpowered roller clamping device;A rotating shaft is set in the top of the unpowered roller clamping device, and one end of the top unpowered roller is connected, to drive a top unpowered roller axis, to rotate to parallel with the base at an angle perpendicular with the base, wherein, a transmission path of a metal wire is perpendicular with the top unpowered roller axis, a bottom unpowered roller axis and the multiple unpowered roller axes;A fixing piece is set in the side of the rotating shaft, for strengthening fastening the rotating shaft.
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Description

Technical fields: This utility model relates to a non-powered roller clamping device, and more particularly to a roller clamping device that does not require power and can assist in conveying metal wires. Background technology: In the past, after metal wire was transported from upstream manufacturers to processing plants, it had to go through a series of processing steps such as spreading, straightening, and diameter reduction before it could be delivered to customers as finished products. Only then could the metal wire be reduced in diameter and become the finished metal wire product required by the customer.

[0001] Due to past technology, the initial step of spreading out metal wire required manual operation. This involved removing the wire wound on the wire frame, spreading it out, and conveying it to a straightening machine for straightening. These metal wires are characterized by high tensile strength, high impact strength, high flexibility, and high weight, making manual operation extremely time-consuming and labor-intensive. Furthermore, prior training was required to perform this task, which not only wasted manpower and time but also posed a risk of safety incidents. Therefore, there is an urgent need for an auxiliary conveying device in the initial step of spreading out metal wire that can not only replace manual operation but also increase the efficiency of wire conveying and reduce safety risks. Utility Model Content: In view of the shortcomings of the prior art, this application proposes a non-powered roller clamping device, characterized in that it comprises: a bottom non-powered roller, laterally disposed on a base of the non-powered roller clamping device, arranged parallel to the base; a plurality of non-powered rollers, wherein the plurality of non-powered rollers are disposed on both sides of the bottom non-powered roller, arranged perpendicular to the base; a top non-powered roller, disposed on the top of the non-powered roller clamping device; a rotating shaft, disposed on the top of the non-powered roller clamping device and connected to one end of the top non-powered roller, for driving the axis of the top non-powered roller to rotate at an angle perpendicular to the base until it is parallel to the base, wherein a transmission path of a metal wire is perpendicular to the axis of the top non-powered roller, the axis of the bottom non-powered roller, and the axes of the plurality of non-powered rollers; and a fixing member, disposed on one side of the rotating shaft, for reinforcing and fastening the rotating shaft.

[0002] In one embodiment, the unpowered roller clamping device is characterized in that each side of the base includes a plurality of linear slide rails for connecting to a connecting end and allowing the base to slide at the connecting end.

[0003] In one embodiment, the unpowered roller clamping device is characterized by further comprising at least one compression spring disposed at the lower part of one of the bases.

[0004] In one embodiment, the unpowered roller clamping device is characterized in that one end of the compression spring is fixed to the base, and the other end is fixed to one side of the connecting end.

[0005] In one embodiment, the unpowered roller clamping device is characterized in that, when the unpowered roller clamping device is subjected to a tensile force, the compression spring is used to generate a thrust and moves on the coupling end through the plurality of linear slide rails.

[0006] In one embodiment, the unpowered roller clamping device is characterized by further comprising a sensing component and a driving component electrically connected to the rotating shaft. When the sensing component detects the metal wire, the driving component drives the rotating shaft to rotate.

[0007] In one embodiment, the unpowered roller clamping device is characterized in that the connecting end can be one end of a robotic arm, a lever arm, or a mechanical machine. Attached image description: Figure 1 This is the intended meaning of the unpowered roller clamping device in this case; Figure 2 This is the intended meaning of the closed-loop conveying wire conveying device of the non-powered roller clamping device in this case; Figure 3 This is a schematic diagram of the bottom component of the unpowered roller clamping device in this case.

[0008] Figure label: 100 Non-powered roller clamping device 10 Bottom Unpowered Rollers 20 bases 21 Sensing Components 30 Unpowered rollers 40 Top Unpowered Roller 50 Rotating shaft 51 Fastener 60 linear guide rail 70 Joint end 80 Compression Spring 90 Driver Components L1 Top Unpowered Roller Axis L2 Bottom Unpowered Roller Axis L3 Unpowered roller axis W metal wire Detailed implementation method: To more clearly describe the non-powered roller clamping device proposed in this utility model, the preferred embodiments of this utility model will be described in detail below with reference to the accompanying drawings.

[0009] Please also refer to Figure 1 , Figure 2 and Figure 3 As shown in the figure, this invention relates to a non-powered roller clamping device 100, which includes a bottom non-powered roller 10, horizontally disposed on a base 20 of the non-powered roller clamping device 100, arranged horizontally parallel to the base 20. A plurality of non-powered rollers 30 are disposed on both sides of the bottom non-powered roller 10 and vertically disposed on the base 20. A top non-powered roller 40 is disposed at the top of the non-powered roller clamping device 100. A rotating shaft 50 is disposed at the top of the non-powered roller clamping device 100 and connected to one end of the top non-powered roller 40, for driving the top non-powered roller 40 from an open state (perpendicular to or greater than 90 degrees relative to the base 20) to an angle parallel to the base 20, which is the closed state. The transmission path of the metal wire W is perpendicular to the axis L1 of a top unpowered roller, the axis L2 of a bottom unpowered roller, and the axes L3 of multiple unpowered rollers. A fixing member 51 is disposed on one side of the rotating shaft 50, and its function is to strengthen and fasten the rotating shaft 50, thereby strengthening and fixing the top unpowered roller 40 and preventing it from opening due to the pulling of the metal wire W when in the closed state.

[0010] Please continue reading. Figure 3 The base 20 of the non-powered roller clamping device 100 includes multiple linear slide rails 60 on both sides. The multiple linear slide rails 60 are connected to a connecting end 70, so that the base 20 can slide on the connecting end 70.

[0011] Please continue reading. Figure 3 The non-powered roller clamping device 100 also includes at least one compression spring 80, which is disposed below the base 20.

[0012] Please continue reading. Figure 3 As shown in the figure, one end of the compression spring 80 of the non-powered roller clamping device 100 is fixed to the base 20, while the other end is fixed to one side of the connecting end 70.

[0013] It is worth mentioning that when the unpowered roller clamping device 100 guides the metal wire W and bears a tension, the compression spring 80 can generate a thrust and, through the plurality of linear slide rails 60, allow the unpowered roller clamping device 100 to move on the connecting end 70, thereby pulling apart the guided metal wire W.

[0014] The plurality of unpowered rollers 30 of the unpowered roller clamping device 100 are arranged on both sides of the bottom unpowered roller 10 in a corresponding manner.

[0015] The non-powered roller clamping device 100 further includes a sensing component 21 and a driving component 90, which are electrically connected to the rotating shaft 50 respectively. When the sensing component 21 detects that the metal wire W enters the non-powered roller clamping device 100, the driving component 21 immediately drives the rotating shaft 50 to rotate, and the rotating shaft 50 simultaneously drives the top non-powered roller 40 to rotate to the closed state.

[0016] In this non-powered roller clamping device 100, the connecting end 70 can be one end of a robotic arm, a lever arm, or a mechanical machine.

[0017] Thus, the foregoing has fully and clearly described a non-powered roller clamping device of the present invention. However, it must be emphasized that the above detailed description is a specific description of feasible embodiments of the present invention, and the embodiments are not intended to limit the scope of the claims of the present invention. All equivalent implementations or modifications that do not depart from the spirit of the present invention should be included in the scope of the claims of this application.

Claims

1. A non-powered roller clamping device, characterized in that, include: A bottom-mounted unpowered roller is horizontally disposed on one of the bases of the unpowered roller clamping device, and is arranged in a parallel manner relative to the base. Multiple unpowered rollers are arranged on both sides of the bottom unpowered roller in a vertical manner relative to the base. A top-mounted unpowered roller is disposed at the top of the unpowered roller clamping device; A rotating shaft is disposed at the top of the unpowered roller clamping device and connected to one end of the top unpowered roller. It is used to drive the axis of the top unpowered roller to rotate at an angle perpendicular to the base until it is parallel to the base. A transmission path of a metal wire is perpendicular to the axis of the top unpowered roller, the axis of the bottom unpowered roller, and the axes of multiple unpowered rollers. A fixing component is provided on one side of the rotating shaft to strengthen and fasten the rotating shaft.

2. The unpowered roller clamping device according to claim 1, characterized in that, The base has multiple linear slide rails on both sides for connecting to a connecting end and allowing the base to slide on the connecting end.

3. The unpowered roller clamping device according to claim 2, characterized in that, It also includes at least one compression spring disposed at the lower part of one of the bases.

4. The unpowered roller clamping device according to claim 3, characterized in that, One end of the compression spring is fixed to the base, and the other end is fixed to one side of the connecting end.

5. The unpowered roller clamping device according to claim 4, characterized in that, When the unpowered roller clamping device is subjected to a tensile force, the compression spring generates a thrust and moves on the joint end via the plurality of linear slide rails.

6. The unpowered roller clamping device according to claim 1, characterized in that, The plurality of unpowered rollers are arranged on both sides of the bottom unpowered roller in a corresponding manner.

7. The unpowered roller clamping device according to claim 1, characterized in that, It also includes a sensing component and a driving component, which are electrically connected to the rotating shaft. When the sensing component detects the metal wire, the driving component drives the rotating shaft to rotate.

8. The unpowered roller clamping device according to claim 2, characterized in that, The connecting end can be one end of a robotic arm, a lever arm, or a mechanical machine.