Pedestrian passage mechanism matched with aluminum coil feeding groove

By designing a pedestrian walkway mechanism on the aluminum coil loading chute, and utilizing rigid bridges and guardrails, the problem of excessive walking distance for operators between the control areas of the aluminum coil uncoiler and coil rewinder was solved, achieving a fast and safe transfer path and improving operational efficiency and safety.

CN223779552UActive Publication Date: 2026-01-09CHONGQING HARVEST ALUMINUM CO LTD
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Patent Information

Application Number
CN202423167042.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2026-01-09
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

The excessive walking distances required for operators to frequently move between the control areas of the aluminum coil uncoiler and coil rewinder negatively impact operational efficiency and safety.

Method used

Design a pedestrian access mechanism for an aluminum coil feeding trough, including a movable support for a winding support roller and a rigid bridge. The rigid bridge consists of two connecting beams, a mounting frame, and a bridge plate, which are connected to the movable support. Guardrails and warning signs are provided on both sides for the quick and safe transfer of operators.

Benefits of technology

It simplifies the transfer path for operators in the loading trough, improves traffic efficiency, ensures safety, avoids the risk of falls, and reduces operating costs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223779552U_ABST
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Abstract

A pedestrian path mechanism matched with an aluminum coil feeding groove comprises a movable support of a winding supporting roller, a first cantilever section is arranged at the top of one side of the feeding groove, a second cantilever section is arranged at the top of the other side of the feeding groove, the first cantilever section and the second cantilever section both correspond to the extending end of the winding supporting roller, and the pedestrian path mechanism further comprises a rigid bridge fixedly arranged on the movable support. Guardrails are arranged on the two sides of the rigid bridge respectively, one end of the rigid bridge is attached to the top face of the first cantilever section, and the other end of the rigid bridge is attached to the bottom face of the second cantilever section. The feeding device is simple in structure and low in improvement cost, operators can stretch across the feeding groove conveniently, and passing safety of the operators is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of aluminum processing, especially relates to a manway mechanism matched with aluminum roll feeding groove. BACKGROUND

[0002] The aluminum roll crude product produced by the aluminum processing enterprise needs to be unwound by the unwinding machine, be pressed thin, be edge cut, and then be wound by the winding machine to obtain the aluminum roll product.

[0003] The aluminum roll crude product is moved on the platform track by the platform trolley, is transferred to the aluminum roll unloading area, is transferred to the unwinding machine by the unloading trolley in the unloading groove (vertically distributed with the aluminum roll unloading area), the unwound aluminum belt is pressed thin, is edge cut, and then is wound by the winding machine to obtain the aluminum roll product, the aluminum roll product is transferred to the platform trolley in the feeding area by the feeding trolley in the feeding groove (vertically distributed with the aluminum roll feeding area), and is transferred to the storage area.

[0004] Usually, the unwinding machine is arranged at the terminal end of the unloading groove, the winding machine is arranged at the starting end of the feeding groove, the control area of the unwinding machine is arranged in the area between the unloading groove and the feeding groove, and the control area of the winding machine is arranged in the area on the other side of the feeding groove. The winding machine is matched with a winding support roller, which faces the aluminum roll feeding area, and the extension end of the support roller is supported on a movable support during winding. The movable support is hingedly arranged on the other side of the feeding groove, can rotate around the hinge shaft, and can move along the length direction of the feeding groove. The other side of the feeding groove is provided with a gap groove for the gap movable support, so that the movable support is aligned with the winding support roller during winding, moves towards the winding support roller to form a support, or moves away from the winding support roller to be out of support, and is upwardly turned to provide a gap for the aluminum roll product, so that the feeding trolley in the feeding groove is transferred to the feeding area.

[0005] Since the operator needs to control the unwinding of the aluminum roll crude product and the winding of the crude product, it is necessary to frequently bypass the feeding groove, causing the operator to walk a long distance.

[0006] Therefore, how to design a device for conveniently transferring the operator between the unwinding machine control area and the winding machine control area is a problem to be solved by the operator in the field. SUMMARY

[0007] The utility model discloses a kind of manway mechanism matched with aluminum roll feeding groove, and the structure is simple, and the transformation cost is low, can greatly facilitate operator to cross feeding groove, and ensure the traffic safety of operator.

[0008] The utility model discloses a technical scheme of a kind of aluminum roll feeding groove matched pedestrian passageway mechanism, including the movable support of winding support roller, the first cantilever section is provided at the top of one side of feeding groove, the second cantilever section is provided at the top of other side, the first cantilever section, the second cantilever section correspond the extension end of winding support roller, further including rigid bridge fixedly arranged on movable support, the guardrail is separately provided at the both sides of rigid bridge, and the top surface of first cantilever section is pasted in one end of rigid bridge, the bottom surface of second cantilever section is pasted in other end.

[0009] The rigid bridge includes two connecting beams, a mounting frame and a bridge plate, the two connecting beams are arranged in parallel and spaced apart, and are welded and fixed on the movable support, the mounting frame is a rectangular frame, and is welded and fixed on the two connecting beams, and the bridge plate is fixed on the rectangular frame.

[0010] The top surface of the first cantilever section is a downward inclined slope, the bottom surface of the second cantilever section is an upward inclined slope, the bottom surface of one end of the bridge plate of the rigid bridge is an upward inclined slope, and the top surface of the other end is a downward inclined slope.

[0011] The bridge plate of the rigid bridge is coated yellow.

[0012] The guardrail is a first guardrail and a second guardrail, the two ends of the first guardrail are connected to the top of both sides of the feeding groove, close to the unwinding machine, and the second guardrail is fixedly installed on the rigid bridge, close to the feeding area.

[0013] The two ends of the first guardrail are respectively provided with a no-passing elastic sign facing the feeding area, the two ends of the second guardrail are respectively provided with a passing elastic sign facing away from the feeding area, and the passing elastic sign is located on the outer side of the corresponding no-passing elastic sign.

[0014] The above technical scheme has the following beneficial effects:

[0015] 1. The aluminum coil feeding groove is matched with a pedestrian passage mechanism, which comprises a movable support for supporting the winding support roller, and is a matching equipment of the winding machine. A first cantilever section is arranged at the top of one side of the feeding groove, and a second cantilever section is arranged at the top of the other side. The first cantilever section and the second cantilever section are both corresponding to the extension end of the winding support roller, that is, the extension direction of the first cantilever section and the second cantilever section is perpendicular to the winding support roller and corresponds to the extension end of the support cylinder. A rigid bridge is fixedly arranged on the movable support. Obviously, the rigid bridge can be turned over with the movable support and can move in position along the length direction of the feeding groove. Guardrails are arranged on both sides of the rigid bridge to ensure the safety of the operator when crossing the feeding groove through the rigid bridge. One end of the rigid bridge is attached to the top surface of the first cantilever section, and the other end is attached to the bottom surface of the second cantilever section. The rigid bridge is connected to the two sides of the feeding groove through the first cantilever section and the second cantilever section. When the winding machine is in working condition, the operator can quickly transfer between the unwinding machine control area and the winding machine control area through the first cantilever section, the rigid bridge and the second cantilever section. When the aluminum coil product needs to be transferred to the feeding area (at this time, the operator has been transferred from the unwinding machine control area to the winding machine control area through the rigid bridge), the movable support is first moved towards the feeding area, so that the two ends of the rigid bridge are separated from the first cantilever section and the second cantilever section. The movable support is turned over upwards, driving the rigid bridge to turn over, ensuring the smooth transfer of the aluminum coil product. After the transfer is completed, the operator controls the movable support to reset to support the winding support roller. The operator transfers from the winding machine control area to the unwinding machine control area through the rigid bridge to perform unwinding operation, which is convenient for the operator to cross the feeding groove. In addition, when the operator needs to cross the feeding groove, the rigid bridge is connected between the first cantilever section and the second cantilever section, which can also avoid the risk of falling when the operator steps on the empty space.

[0016] 2. The rigid bridge comprises two connecting beams, a mounting frame and a bridge plate. The two connecting beams are arranged in parallel and spaced apart, and are fixedly welded on the movable support. The mounting frame is a rectangular frame, which is fixedly welded on the two connecting beams. The bridge plate is fixed on the rectangular frame. In this way, the connection stability of the bridge plate on the movable support can be ensured.

[0017] 3. The top surface of the first cantilever section is a downward inclined slope, the bottom surface of the second cantilever section is an upward inclined slope, the bottom surface of one end of the bridge plate of the rigid bridge is an upward inclined slope, and the top surface of the other end is a downward inclined slope. This matching structure can not only ensure the flatness of the bridge plate connected to the two sides of the feeding groove, but also avoid interference between the rigid bridge and the first cantilever section or the second cantilever section during the turning process, ensuring the normal operation of the movable support.

[0018] 4. The bridge plate of the rigid bridge is coated with yellow, which is a warning color to remind the operator to pay attention to safety when passing.

[0019] 5、the guardrail is first guardrail and second guardrail, two ends of the first guardrail are connected at the top of both sides of the feeding groove, close to the unwinding machine, the first guardrail is fixed guardrail, two ends of the first guardrail are respectively provided with forbidden passing elastic signboard towards the feeding area, when the forbidden passing elastic signboard is exposed, the personnel are hindered and reminded to forbid passing, personnel safety is guaranteed, two ends of the second guardrail are respectively provided with passing elastic signboard facing away from the feeding area, and the passing elastic signboard is located at the outer side of the corresponding forbidden passing elastic signboard, when the rigid bridge is connected in place, the passing elastic signboard shields the corresponding forbidden passing elastic signboard, personnel can normally pass, the safety of the area is further guaranteed, and the risk of falling is avoided.

[0020] Further description is made below in combination with the drawings and specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is the layout structure schematic diagram of the utility model;

[0022] Figure 2 It is Figure 1 the sectional view.

[0023] In the drawings, 1 is first cantilever section, 2 is second cantilever section, 3 is movable support, 4 is rigid bridge, 41 is connecting crossbeam, 42 is mounting frame, 43 is bridge plate, 5 is guardrail, 51 is first guardrail, 52 is second guardrail, 53 is forbidden passing elastic signboard, 54 is passing elastic signboard. DETAILED DESCRIPTION

[0024] Referring to Figure 1 and Figure 2The embodiment of the application is a human passage mechanism matched with an aluminum coil feeding groove. The human passage mechanism matched with the aluminum coil feeding groove comprises a movable support 3 supporting a winding support roller, the movable support being a support structure matched with a winding machine, an arm segment of the movable support being rotatable about a hinge end and movable along a length direction of the feeding groove, an extended end of the arm segment being provided with a sleeve ring for sleeving an extended end of the winding support roller to form a support. A first cantilever segment 1 is arranged at a top of one side of the feeding groove, and a second cantilever segment 2 is arranged at a top of the other side of the feeding groove, the first cantilever segment 1 and the second cantilever segment 2 both corresponding to the extended end of the winding support roller, specifically, a top surface of the first cantilever segment 1 is a downwardly inclined inclined surface, and a bottom surface of the second cantilever segment 2 is an upwardly inclined inclined surface. The human passage mechanism further comprises a rigid bridge 4 fixedly arranged on the movable support 3, in the embodiment, the rigid bridge 4 comprises two connecting beams 41, a mounting frame 42 and a bridge plate 43, the two connecting beams 41 are arranged in parallel and spaced apart and are fixedly welded on the movable support 3, the mounting frame 42 is a rectangular frame and is fixedly welded on the two connecting beams 41, and the bridge plate 43 is fixed on the rectangular frame, and a bottom surface of one end of the bridge plate 43 of the rigid bridge is an upwardly inclined inclined surface, and a top surface of the other end of the bridge plate 43 is a downwardly inclined inclined surface. Guardrails 5 are arranged at two sides of the rigid bridge 4, one end of the rigid bridge 4 is attached to the top surface of the first cantilever segment 1, and the other end of the rigid bridge 4 is attached to the bottom surface of the second cantilever segment 2, specifically, the guardrails 5 are a first guardrail 51 and a second guardrail 52, the two ends of the first guardrail 51 are connected to the top of the two sides of the feeding groove, close to the winding machine, the second guardrail 52 is fixedly arranged on the rigid bridge 4, close to the feeding area, in order to avoid falling accidents, the two ends of the first guardrail 51 are respectively provided with no-pass elastic signboards 53 facing the feeding area, for example, plastic sheets, the two ends of the second guardrail 52 are respectively provided with pass elastic signboards 54 facing away from the feeding area, for example, plastic sheets, and the pass elastic signboards 54 are located on the outer sides of the no-pass elastic signboards 53, and in addition, the bridge plate 43 of the rigid bridge is coated yellow as a warning color.

[0025] The working principle of the human passage mechanism is as follows: under normal circumstances, the movable support is sleeved on the winding support roller, in this state, the rigid bridge is connected with the first cantilever segment and the second cantilever segment and spans on the feeding groove to provide a passage for the operator, thereby greatly improving the passage efficiency; when the winding machine finishes winding and the obtained aluminum coil product needs to be transferred to the feeding area, the operator is located in the winding machine control area on the other side of the feeding groove, controls the movable support to move a distance towards the feeding area, separates from the winding support roller, and turns up by a certain angle to allow the aluminum coil product to pass through, after feeding is completed, the movable support is reset, and the operator can return to the control area of the winding machine through the human passage mechanism.

Claims

1. A mechanism for the passage of people alongside a loading chute for aluminium coils, comprising a mobile support (3) of the winding support roller, characterised in that: The first cantilever section (1) is arranged on one side of the top of the feeding groove, and the second cantilever section (2) is arranged on the other side of the top of the feeding groove, and the first cantilever section (1) and the second cantilever section (2) are arranged corresponding to the extension end of the winding support roller, The rigid bridge (4) is arranged on the movable support (3), and the guardrails (5) are arranged on the two sides of the rigid bridge (4), and one end of the rigid bridge (4) is attached to the top surface of the first cantilever section (1), and the other end is attached to the bottom surface of the second cantilever section (2).

2. The aluminum coil loading chute matched with the pedestrian walkway mechanism according to claim 1, characterized in that: The rigid bridge (4) includes two connecting beams (41), a mounting frame (42) and a bridge plate (43), the two connecting beams (41) are arranged in parallel and are fixedly welded on the movable support (3), the mounting frame (42) is a rectangular frame fixedly welded on the two connecting beams (41), and the bridge plate (43) is fixed on the rectangular frame.

3. The aluminum coil loading chute matched with the pedestrian walkway mechanism according to claim 1, characterized in that: The top surface of the first cantilever section (1) is a downward inclined surface, the bottom surface of the second cantilever section (2) is an upward inclined surface, the bottom surface of one end of the bridge plate (43) of the rigid bridge is an upward inclined surface, and the top surface of the other end is a downward inclined surface.

4. The aluminum coil loading chute matched with the pedestrian walkway mechanism according to claim 1, characterized in that: The bridge plate (43) of the rigid bridge is coated in yellow.

5. The aluminum coil loading chute matched with the pedestrian walkway mechanism according to claim 1, characterized in that: The guardrails (5) are first guardrails (51) and second guardrails (52), the two ends of the first guardrails (51) are connected to the two sides of the top of the feeding groove, and are close to the unwinding machine, and the second guardrails (52) are fixedly installed on the rigid bridge (4) and are close to the feeding area.

6. The aluminum coil loading slot matching pedestrian walkway mechanism according to claim 5, characterized in that: The two ends of the first guardrails (51) are respectively provided with no-pass elastic signboards (53) facing the feeding area, the two ends of the second guardrails (52) are respectively provided with pass elastic signboards (54) facing away from the feeding area, and the pass elastic signboards (54) are located on the outer side of the no-pass elastic signboards (53). The two ends of the first guardrails (51) are respectively provided with no-pass elastic signboards (53) facing the feeding area, the two ends of the second guardrails (52) are respectively provided with pass elastic signboards (54) facing away from the feeding area, and the pass elastic signboards (54) are located on the outer side of the no-pass elastic signboards (53).