Film roll material guiding and transporting frame and transporting system

By designing a film roll material guiding and transport frame, the problem of skewing of film roll materials during the transport process was solved by utilizing the rotation of the guiding components and the effect of gravity, thus achieving stable transmission and efficient production.

CN223659150UActive Publication Date: 2025-12-12BOZHON PRECISION IND TECH CO LTD
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Patent Information

Application Number
CN202520157266.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-12-12
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

During the conveying process, the film roll material is prone to skew in the direction of movement, which can lead to unstable conveying, conveyor failure, and affect production efficiency and quality control.

Method used

Design a film roll material guiding and transport frame, including a guiding component and a transport channel. The guiding component consists of a guiding block and a stop pin. The stable transport of the film roll material is achieved by the rotation of the guiding block and the action of gravity. The load part and the stop part of the guiding block are used to guide the film roll material.

Benefits of technology

It achieves stability of film roll material during transportation, improves production efficiency and quality control, reduces conveyor failures, expands the scope of application, and simplifies the operation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a film roll material guiding and transporting frame and transporting system, which comprises a transporting frame, a film roll material guiding and transporting device, a film roll material guiding and transporting device and a film roll material guiding and transporting device, the guide assembly is connected into the conveying channel and comprises a guide block and a stop pin, the guide block can rotate around a rotating center line, the stop pin is arranged on a rotating path of the guide block, the guide block comprises a body, a load part and a stop part, the body is rotationally connected to the conveying frame, and the load part and the stop part are arranged at the two ends of the body respectively; the mass of the load part is larger than that of the stop part, the load part can abut against the stop pin, and the stop part can protrude out of the conveying channel. According to the film roll material guiding device, when the film roll material needs to be guided, only the film roll material and the stopping part of the guiding assembly need to abut against and extrude each other. Compared with conventional film roll material conveying equipment, the film roll material conveying device has the advantages of being wide in application range, high in controllability, simple in structure, convenient to operate, good in guiding effect and the like.
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Description

Technical Field

[0001] This utility model relates to the field of transportation equipment technology, specifically to a film roll material guiding and transporting frame and transportation system. Background Technology

[0002] In modern logistics and production lines, conveyors play a crucial role, especially in handling various types of materials. Film rolls, as a common form of goods, are widely used in packaging, printing, and plastics industries. However, in existing conveyor systems, the stability of film roll supports during transport has always been a technical challenge. Specifically, due to the inertia of the load transfer, film rolls are prone to skewing in the direction of movement during transport.

[0003] Existing conveyor designs typically use a single conveyor belt or chain to transport film rolls, which has limitations in terms of material transport stability. When the film roll is placed on the conveyor and begins to move, the inertia from starting and stopping can easily cause it to skew in the forward and backward directions on the conveyor belt. This skew not only leads to instability during transport but can also cause conveyor malfunctions, such as conveyor belt misalignment, material blockage, or damage.

[0004] Furthermore, skewing of the film roll material during transport can affect production efficiency and quality control. Skewed film roll material may not be properly aligned in subsequent processing stages, leading to decreased processing accuracy and potentially requiring machine downtime for adjustments, thereby increasing production costs and reducing production efficiency.

[0005] Currently, most methods in the industry control material skew by controlling the conveyor belt speed, but this severely restricts conveying efficiency and limits its application scenarios. Summary of the Invention

[0006] Therefore, the technical problem to be solved by this utility model is to overcome the problem that the film roll material is prone to skew in the direction of movement during transportation in the prior art, and to provide a film roll material guiding and transporting frame and transporting system.

[0007] To solve the above-mentioned technical problems, this utility model provides a film roll material guiding and transporting frame, comprising: a transport frame with a transport channel inside, on which the film roll material to be transported is supported and moves along the transport channel; at least one guiding component connected to the transport frame and located in the transport channel, each guiding component including a guiding block and a stop pin, the guiding block being rotatable about a rotation center line, the stop pin being disposed on the rotation path of the guiding block, the guiding block including a body, a load portion, and a stop portion, wherein the body is rotatably connected to the transport frame, the load portion and the stop portion are respectively disposed at both ends of the body, wherein the mass of the load portion is greater than the mass of the stop portion, and it can abut against the stop pin to restrict the rotation of the guiding block, and the stop portion can protrude from the transport channel along the height direction of the transport frame to push the film roll material to be transported.

[0008] In one embodiment of the present invention, the film roll material guiding and transporting frame includes two guiding components, which are symmetrically arranged on opposite sides of the transport channel width direction.

[0009] In one embodiment of the present invention, the guiding component further includes a mounting plate and a connecting shaft. The mounting plate is detachably connected to the transport frame. One end of the connecting shaft passes through the mounting plate, and the other end extends toward the transport channel and passes through the center of the body. The rotation center line coincides with the central axis of the connecting shaft.

[0010] In one embodiment of the present invention, the stop pin is disposed on the side of the guide block facing the direction of transport of the film roll material, and can abut against the load portion.

[0011] In one embodiment of the present invention, the guide block is inclined from bottom to top toward the transport direction of the film roll material in a static state so as to rotate in the forward direction during the transport of the film roll material.

[0012] In one embodiment of the present invention, the stop portion is provided with an abutting surface on the side facing the transport direction of the film roll material. In a static state, the abutting surface extends along the height direction of the transport frame to abut against the film roll material during the retraction process.

[0013] In one embodiment of the present invention, the transport frame further includes a frame body and two mounting beams, the two mounting beams being respectively disposed at both ends in the width direction of the frame body, the transport channel being located between the two mounting beams, and the guide assembly being connected to the mounting beams.

[0014] In one embodiment of the present invention, the transport frame further includes a conveyor chain and a rotary driver. The rotary driver is connected to the frame body and located below the transport channel. The two conveyor chains are respectively disposed on the two mounting beams and are respectively connected to the working end of the rotary driver.

[0015] In one embodiment of the present invention, the transport frame further includes a connecting rod. The middle part of the connecting rod is connected to the working end of the rotary driver, and its two ends are respectively connected to the two conveyor chains to drive the two conveyor chains to move synchronously.

[0016] This utility model also provides a transportation system, which includes the above-mentioned film roll material guiding and transport frame.

[0017] The above-mentioned technical solution of this utility model has the following advantages compared with the prior art:

[0018] The membrane roll material guiding and transporting frame and system described in this utility model transfers membrane roll materials via the transport frame. During transport, the guiding component rotates forward under the pushing action of the membrane roll material to avoid obstructing its movement. After passing the guiding component, the membrane roll material automatically reverses to its initial state under the gravity of the load. When it is necessary to guide the membrane roll material, it is only necessary to reverse the transport channel to make the membrane roll material and the stop part of the guiding component come into contact and compress each other. Compared with conventional membrane roll material transport equipment, this application has the advantages of wide application range, high controllability, simple structure, easy operation, and good guiding effect, providing a new idea for the structural design of transport equipment. Attached Figure Description

[0019] To make the content of this utility model easier to understand, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings.

[0020] Figure 1 This is a three-dimensional structural diagram of the film roll material guiding and transporting frame in a preferred embodiment of the present invention;

[0021] Figure 2 yes Figure 1 The diagram shows the structure of the guiding component in the film roll material guiding and transport frame during the rotation process;

[0022] Figure 3 yes Figure 1 Enlarged structural diagram at point A in the middle.

[0023] Explanation of reference numerals in the accompanying drawings: 100, transport frame; 110, frame body; 111, transport channel; 120, conveyor chain; 130, rotary drive; 140, mounting beam; 150, connecting rod; 200, guide assembly; 210, mounting plate; 220, connecting shaft; 230, stop pin; 240, guide block; 241, body; 242, load section; 243, stop section; 300, film roll material; 1001, rotation center line. Detailed Implementation

[0024] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, so that those skilled in the art can better understand and implement the present invention. However, the embodiments described are not intended to limit the present invention. Example 1

[0025] This embodiment provides a film roll material guiding and transporting frame 100, which includes: a transport frame 100, the transport frame 100 having a transport channel 111 inside, the film roll material 300 to be transported being supported on the transport frame 100 and moving along the transport channel 111; at least one guiding component 200, the at least one guiding component 200 being connected to the transport frame 100 and located in the transport channel 111, one of the guiding components 200 including a guiding block 240 and a stop pin 230, the guiding block 240 being rotatable about a rotation center line 1001, and the stop pin 230 being disposed on the guiding block. On the rotation path of 240, the guide block 240 includes a body 241, a load part 242, and a stop part 243. The body 241 is rotatably connected to the transport frame 100. The load part 242 and the stop part 243 are respectively disposed at both ends of the body 241. The mass of the load part 242 is greater than the mass of the stop part 243, and it can abut against the stop pin 230 to restrict the rotation of the guide block 240. The stop part 243 can protrude from the transport channel 111 along the height direction of the transport frame 100 to push the film roll material 300 to be transported.

[0026] The film roll material guiding and transporting frame 100 of this utility model transports film roll material 300. During the transport process, the guiding component 200 rotates forward under the pushing action of the film roll material 300 to avoid the movement of the film roll material 300. After the film roll material 300 passes the guiding component 200, it can automatically reverse to its initial state under the gravity of the load part 242. When it is necessary to guide the film roll material 300, it is only necessary to reverse the drive of the transport channel 111 so that the film roll material and the stop part 243 of the guiding component 200 abut and squeeze against each other. Compared with conventional film roll material 300 transport equipment, this application has the advantages of wide application range, high controllability, simple structure, easy operation and good guiding effect, providing a new idea for the structural design of transport equipment.

[0027] by Figure 1 The film roll material guiding and transporting frame 100 shown is for reference only. It should be noted that the transport direction in this embodiment is from left to right. The film roll material to be transported moves from the feed end of the transport frame 100 through the guiding component 200 towards the discharge end. During this process, the film roll material 300 to be transported will first squeeze the guiding component 200 to rotate forward. After passing the guiding component 200, the guiding component 200 will automatically rotate counterclockwise to reset. Furthermore, for ease of description, this embodiment... Figure 1 In the structure, clockwise rotation is defined as forward rotation, and counterclockwise rotation is defined as reverse rotation.

[0028] See Figure 1 As shown, the frame 110 in this embodiment provides a support and connection platform for other structures, and it is equipped with multiple height-adjustable legs. Further, the transport frame 100 in this embodiment also includes the frame 110 and two mounting beams 140. The two mounting beams 140 are respectively disposed at both ends of the frame 110 in the width direction, the transport channel 111 is located between the two mounting beams 140, and the guide assembly 200 is connected to the mounting beams 140. Specifically, the transport frame 100 in this embodiment also includes a conveyor chain 120 and a rotary driver 130. The rotary driver 130 is connected to the frame 110 and located below the transport channel 111. The two conveyor chains 120 are respectively disposed on the two mounting beams 140 and are respectively connected to the working ends of the rotary driver 130. The rotary driver 130 is preferably a dual-axis rotary motor, thereby enabling it to simultaneously drive the rotation of both conveyor chains 120. Based on this, the transport frame 100 in this embodiment also includes a connecting rod 150. The middle part of the connecting rod 150 is connected to the working end of the rotary driver 130, and its two ends are respectively connected to the two conveyor chains 120 to drive the two conveyor chains 120 to move synchronously.

[0029] Furthermore, this embodiment also includes a control system. The rotary driver 130 is connected to the control system to control the moving speed and direction of the film roll material 300. In actual production and processing, operators can adjust the rotary driver 130 in real time through the control system, thereby improving the flexibility of the transport frame 100. Parameters can also be preset through the control system, thereby improving the automation level of the transport frame 100.

[0030] To improve the guiding effect on the film roll material 300, the film roll material guiding and transporting frame 100 in this embodiment includes two guiding components 200. The two guiding components 200 are symmetrically arranged on opposite sides of the transport channel 111 in the width direction, thereby enabling simultaneous guiding of both sides of the film roll material 300 in the width direction. Furthermore, the two guiding components 200 in this embodiment have the same structure; only one is described here as an example:

[0031] See Figure 2 and Figure 3 As shown, the guiding assembly 200 further includes a mounting plate 210 and a connecting shaft 220. The mounting plate 210 is detachably connected to the transport frame 100. One end of the connecting shaft 220 passes through the mounting plate 210, and the other end extends toward the transport channel 111 and passes through the center of the body 241. The rotation center line 1001 coincides with the central axis of the connecting shaft 220. The stop pin 230 is disposed on the side of the guiding block 240 facing the transport direction of the film roll material 300. Based on the above structural configuration, the guiding block 240 is inclined from bottom to top toward the transport direction of the film roll material 300 in a static state, so as to rotate forward during the transport of the film roll material 300. Correspondingly, the stop portion 243 has an abutment surface on the side facing the transport direction of the film roll material 300. In a stationary state, the abutment surface extends along the height direction of the transport frame 100 to abut against the film roll material 300 during the retraction process.

[0032] The following describes the specific operation process of the film roll material guiding and transport frame 100 based on the above structure:

[0033] When the film roll material 300 passes the guide assembly 200, the guide block 240 rotates clockwise until its top is below the film roll material 300, thereby avoiding the film roll material 300 during transportation. After the film roll material 300 passes the guide assembly 200, the load part 242 in the guide block 240 can drive the body 241 and the stop part 243 to rotate counterclockwise under the action of gravity. This causes the stop part 243 to protrude from the transport channel 111 along the height direction of the transport frame 100. Based on this, when the film roll material rack 300 needs to be guided, it is only necessary to move the film roll material rack in the opposite direction until it is pressed against the guide block 240. At this time, the load part 242 remains stationary under the stopping action of the stop pin 230, and the stop part 243 can provide a stable pushing and guiding action for the film roll material 300. Example 2

[0034] This embodiment provides a transportation system, which includes the film roll material guiding and transport frame 100 described in Embodiment 1.

[0035] In summary, the film roll material guiding and transporting frame 100 and transporting system described in this utility model transports the film roll material 300 via the transporting frame 100. During transport, the guiding component 200 rotates forward under the pushing action of the film roll material 300 to avoid obstructing the movement of the film roll material 300. After the film roll material 300 passes the guiding component 200, it automatically reverses to its initial state under the gravity of the load part 242. When it is necessary to guide the film roll material 300, it is only necessary to reverse the drive of the transport channel 111 so that the film roll material and the stop part 243 of the guiding component 200 come into contact and squeeze each other. Compared with conventional film roll material 300 transporting equipment, this application has the advantages of wide application range, high controllability, simple structure, easy operation, and good guiding effect, providing a new idea for the structural design of transporting equipment.

[0036] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.

Claims

1. A film roll material guiding and transporting frame, characterized by: include: A transport frame, wherein the transport frame has a transport channel inside, and the film roll material to be transported is supported on the transport frame and moves along the transport channel; At least one guiding component is connected to the transport frame and located in the transport channel. One of the guiding components includes a guiding block and a stop pin. The guiding block is rotatable about a rotation center line. The stop pin is disposed on the rotation path of the guiding block. The guiding block includes a body, a load portion, and a stop portion. The body is rotatably connected to the transport frame. The load portion and the stop portion are respectively disposed at both ends of the body. The mass of the load portion is greater than the mass of the stop portion, and it can abut against the stop pin to restrict the rotation of the guiding block. The stop portion can protrude from the transport channel along the height direction of the transport frame to push the film roll material to be transported.

2. The film roll material guide and transport carriage of claim 1, wherein: The film roll material guiding and transport frame includes two guiding components, which are symmetrically arranged on opposite sides of the transport channel width direction.

3. The film roll material guide and transport carriage of claim 1, wherein: The guiding assembly also includes a mounting plate and a connecting shaft. The mounting plate is detachably connected to the transport frame. One end of the connecting shaft passes through the mounting plate, and the other end extends toward the transport channel and passes through the center of the main body. The rotation center line coincides with the central axis of the connecting shaft.

4. The film roll material guide and transport carriage of claim 1, wherein: The stop pin is located on the side of the guide block facing the direction of transport of the film roll material, and can abut against the load part.

5. The film roll material guide and transport carriage of claim 1, wherein: The guide block is tilted from bottom to top in the direction of transport of the film roll material when stationary, so as to rotate in the forward direction during the transport of the film roll material.

6. The film roll material guide and transport carriage of claim 1, wherein: The stop portion has an abutment surface on the side facing the direction of film roll material transportation. In a stationary state, the abutment surface extends along the height direction of the transport frame to abut against the film roll material during the retraction process.

7. The film roll material guide and transport carriage of claim 1, wherein: The transport frame also includes a frame body and two mounting beams. The two mounting beams are respectively disposed at both ends of the frame body in the width direction. The transport channel is located between the two mounting beams. The guide assembly is connected to the mounting beams.

8. The film roll material guide and transport carriage of claim 7, wherein: The transport frame also includes a conveyor chain and a rotary driver. The rotary driver is connected to the frame body and located below the transport channel. The two conveyor chains are respectively set on the two mounting beams and are respectively connected to the working end of the rotary driver.

9. The film roll material guide and transport carriage of claim 8, wherein: The transport frame also includes a linkage rod, the middle of which is connected to the working end of the rotary driver, and its two ends are respectively connected to the two conveyor chains to drive the two conveyor chains to move synchronously.

10. A transport system characterized by: Includes the film roll material guiding and transport frame as described in any one of claims 1 to 9.