Automatic cloth beam store capable of adjusting different specifications of loom cloth rolls and use method
By designing an automatic fabric roll holder that can adjust to different specifications of loom fabric rolls, and utilizing a multi-layer fabric roll frame component driven by hydraulics and motors, the problem of existing fabric roll holders being unable to adapt to different specifications of loom fabric rolls has been solved. This achieves efficient storage and handling, avoids fabric roll tilting and falling, and improves fabric inspection efficiency.
Patent Information
- Application Number
- CN202510328021.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2045-03-19
AI Technical Summary
The existing fabric roll storage cannot accommodate fabric rolls of different specifications, resulting in low fabric inspection efficiency and problems such as fabric roll tilting, falling, and damage.
An automatic fabric roll holder with adjustable fabric rolls of different specifications was designed. Through a multi-layer fabric roll frame component driven by hydraulics and motors, it can support, limit and correct fabric rolls of different lengths, prevent tilting and falling, and provide automated handling function.
It enables efficient storage and handling of fabric rolls of various specifications, avoids fabric roll tilting and falling, improves fabric inspection efficiency, and protects the integrity of fabric rolls.
Smart Images

Figure CN120135656B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cloth shaft library, in particular to an automatic cloth shaft library capable of adjusting different specifications of loom cloth rolls and a use method thereof. BACKGROUND
[0002] Cloth rolls woven in the weaving workshop need to be transported to the cloth inspection machine table in the grey cloth workshop for inspection. Generally, a weaving mill will have multiple models and multiple specifications of looms. Different cloth rolls need to be sent to different cloth inspection machines for inspection. When distributing the cloth rolls to the cloth shaft library in front of the cloth inspection machine, both the loom model and the loom quantity need to be considered. The cloth rolls are generally placed on the cloth shaft racks in the cloth shaft library. The current cloth shaft library can only place the cloth rolls of one loom, which leads to the fact that the cloth rolls on the cloth shaft library in front of some cloth inspection machines are close to full load, while some may not have cloth rolls to be inspected, affecting the cloth inspection efficiency of the cloth inspection workshop.
[0003] The defects of the existing cloth shaft library are:
[0004] 1. The existing technology KR2020170002635U discloses a shelf for a bathroom. This technology does not have a structure for supporting and placing cloth rolls of different lengths. When placing cloth rolls of multiple lengths, multiple specifications of shelves need to be set. Therefore, an automatic cloth shaft library capable of adjusting different specifications of loom cloth rolls and placing cloth rolls of multiple different lengths is needed to solve this problem.
[0005] 2. The existing technology JPH0823493A discloses a placing shelf. This technology does not have a structure for limiting the cloth rolls placed on the shelf to prevent the cloth rolls from tilting when moving. When the cloth rolls roll, the cloth rolls are prone to tilt and fall off the cloth roll rack component. Therefore, an automatic cloth shaft library capable of adjusting different specifications of loom cloth rolls and limiting the cloth rolls to prevent tilting and rolling off the cloth roll rack component is needed to solve this problem.
[0006] 3. The existing technology JP2010154316A discloses a placing shelf. This technology does not have a structure for supporting and preventing the cloth rolls from falling off the shelf accidentally. When the cloth rolls accidentally fall off the shelf, the cloth rolls are prone to directly fall on the ground, causing damage or contamination. Therefore, an automatic cloth shaft library capable of adjusting different specifications of loom cloth rolls and avoiding the cloth rolls from directly falling on the ground after falling off the cloth roll rack component is needed to solve this problem.
[0007] 4. The existing technology CN208631724U discloses a cloth roll shaft rack. This technology does not have a structure for correcting and homing the cloth rolls that have fallen off the cloth roll rack component. Therefore, an automatic cloth shaft library capable of adjusting different specifications of loom cloth rolls and correcting and homing the cloth rolls that have fallen off the cloth roll rack component is needed to solve this problem. SUMMARY
[0008] The application aims to provide an automatic cloth shaft library capable of adjusting cloth rolls of different specifications and a use method, which can solve the technical problems in the prior art.
[0009] To achieve the above object, the application provides the following technical scheme: an automatic cloth shaft library capable of adjusting cloth rolls of different specifications, comprising a ring-shaped plate, a support and a plate body one, the bottom of the ring-shaped plate is symmetrically provided with a plurality of supports, the bottom of the support is provided with a moving seat, the inner side of the support is provided with a cloth roll frame component one, the inner side of the support is provided with a cloth roll frame component two, which is located above the cloth roll frame component one, the inner side of the support is provided with a cloth roll frame component three, which is located above the cloth roll frame component two, and one side of the support is provided with a control component.
[0010] The back of the ring-shaped plate is provided with the plate body one, the top of the plate body one is symmetrically provided with a hydraulic telescopic component one, which is electrically connected with the control component, the output end of the hydraulic telescopic component one is provided with a lifting frame, the top of the lifting frame is symmetrically provided with a motor component one, which is electrically connected with the control component, the output end of the motor component one is provided with a lead screw component one, the inner wall of the bottom of the lifting frame is symmetrically provided with a right-angle steering gear component, one end of the lead screw component one penetrates through the top input end of the right-angle steering gear component, one side output end of the right-angle steering gear component is provided with a lead screw component two, the outer side of the lead screw component two is provided with a moving plate one, and the top of the moving plate one is provided with a carrying mechanism.
[0011] Preferably, the inner wall of the bottom of the lifting frame is symmetrically provided with a support block, which is located outside the lead screw component two.
[0012] Preferably, the carrying mechanism comprises a hydraulic telescopic component two, a connecting rod and a transfer frame, the hydraulic telescopic component two is installed at the top of the moving plate one and a support frame one is located outside the moving plate one, the hydraulic telescopic component two is electrically connected with the control component, the output end of the hydraulic telescopic component two is provided with the connecting rod, and one end of the connecting rod is provided with the transfer frame.
[0013] Preferably, the top of the moving plate one is provided with the support frame one, which is located below the transfer frame.
[0014] Preferably, the two sides of the support are symmetrically provided with a plurality of frame bodies one, the front of the frame body one is provided with a motor component two, which is electrically connected with the control component, the output end of the motor component two is provided with a lead screw component three, the outer side of the lead screw component three is provided with a moving plate two, the top of the moving plate two is provided with a hydraulic telescopic component three, which is electrically connected with the control component, and the output end of the hydraulic telescopic component three is provided with a baffle.
[0015] Preferably, the back of the baffle is symmetrically provided with a rod body, and a plurality of rotating rods are provided in the inner side of the rod body.
[0016] Preferably, the second moving plate is provided with a second plate body, the bottom of the second plate body is provided with a first electric telescopic component, the first electric telescopic component is electrically connected with the control component, the output end of the first electric telescopic component is provided with a second supporting frame, and the second supporting frame is located in the second plate body; the back of the second moving plate is provided with a third plate body, one side of the third plate body is provided with a second electric telescopic component, the second electric telescopic component is electrically connected with the control component, and the output end of the second electric telescopic component is provided with a pressing plate.
[0017] Preferably, the top of the annular plate is provided with a passing groove, the bottom of the annular plate is provided with a second frame body, the front of the second frame body is provided with a third motor component, the output end of the third motor component is provided with a fourth screw component, the outer side of the fourth screw component is provided with a moving block, one side of the moving block is provided with a third moving plate, the top of the third moving plate is provided with a fourth hydraulic telescopic component, the output end of the fourth hydraulic telescopic component is provided with a carrying frame, the top of the carrying frame is provided with a third electric telescopic component, the output end of the third electric telescopic component is provided with a clamping plate, and the clamping plate is located in the inside of the carrying frame.
[0018] Preferably, the use method of the automatic cloth shaft warehouse capable of adjusting different specifications of loom cloth rolls is as follows:
[0019] S1, the transport vehicle transports the cloth roll to the rear of the two rear supports, then the lifting frame is lowered to lower the transfer frame below the cloth roll, then the transfer frame is moved backward to the position directly below the cloth roll and is raised to hold the cloth roll;
[0020] S2, then the transfer frame is moved forward to be transferred above the cloth roll support component one, the cloth roll support component two or the cloth roll support component three according to the length of the cloth roll;
[0021] S3, the motor component two drives the baffle and the rotating rod to move backward to contact the cloth roll, so as to avoid the cloth roll from tilting and falling down during the forward movement, and then moves forward with the cloth roll;
[0022] S4, when the cloth roll on the cloth roll support component one, the cloth roll support component two or the cloth roll support component three needs to be sent forward to the cloth inspection machine or the transfer equipment of the cloth inspection machine, the carrying frame is lowered to the front of the cloth roll, then the carrying frame is moved backward to the outside of the cloth roll, then the clamping plate is lowered to clamp the cloth roll inside the carrying frame, then the carrying frame is raised and moved forward to drive the cloth roll to move forward and out of the cloth shaft warehouse to the cloth inspection machine or the transfer equipment of the cloth inspection machine.
[0023] Preferably, the S3 further includes the following steps:
[0024] S31, when the cloth roll is accidentally dropped from the cloth roll frame part one, the supporting frame two is moved up to hold the cloth roll, and then the left and right pressing plates are moved inward to press the cloth roll inward to align, so that the cloth roll is re-hung on the cloth roll frame part one.
[0025] Compared with the prior art, the present application has the following advantages:
[0026] 1. The cloth roll frame part one, cloth roll frame part two or cloth roll frame part three can store three lengths of cloth rolls respectively, and the upper and lower movement and forward and backward movement of the transfer frame can transfer cloth rolls of different lengths to the cloth roll frame part one, cloth roll frame part two and cloth roll frame part three respectively.
[0027] 2. The motor part two drives the baffle and the rotating rod to move backward to contact the cloth roll, avoiding the cloth roll from tilting and falling down during forward movement, and the rotating rod rotates with the cloth roll when contacting the cloth roll, reducing the friction damage to the cloth roll.
[0028] 3. When the cloth roll is accidentally dropped from the cloth roll frame part one, the supporting frame two is moved upward by the electric telescopic part one, so that the supporting frame two holds the cloth roll, avoiding the cloth roll from directly falling on the ground to cause component damage or contamination.
[0029] 4. The two electric telescopic parts two drive the pressing plates to move inward, so that the pressing plates move inward to press the cloth roll inward to align, so that the cloth roll is re-hung on the cloth roll frame part one, facilitating the re-correction of the cloth roll separated from the cloth roll frame part one, cloth roll frame part two or cloth roll frame part three to the original position. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 is a perspective view of the present application;
[0031] Figure 2 is a schematic view of the ring plate, plate body one and support structure of the present application;
[0032] Figure 3 is a schematic view of the support structure of the present application;
[0033] Figure 4 is a schematic view of the lifting frame structure of the present application;
[0034] Figure 5 is a schematic view of the structure at A of the present application;
[0035] Figure 6 is a schematic view of the frame body one structure of the present application;
[0036] Figure 7 is a schematic view of the moving plate two structure of the present application;
[0037] Figure 8 Fig. 1 is a schematic diagram of the baffle structure of the present application;
[0038] Figure 9 Fig. 2 is a schematic diagram of the frame structure of the present application;
[0039] Figure 10 Fig. 3 is a flow chart of the use method of the present application.
[0040] In the figure: 1, annular plate; 2, support; 3, cloth roll frame part one; 4, cloth roll frame part two; 5, cloth roll frame part three; 6, plate body one; 7, hydraulic telescopic part one; 8, lifting frame; 9, motor part one; 10, screw part one; 11, right angle steering gear part; 12, screw part two; 13, support block; 14, moving plate one; 15, hydraulic telescopic part two; 16, support frame one; 17, connecting rod; 18, transfer frame; 19, frame one; 20, motor part two; 21, screw part three; 22, moving plate two; 23, hydraulic telescopic part three; 24, baffle; 25, rod body; 26, rotating rod; 27, plate body two; 28, electric telescopic part one; 29, support frame two; 30, plate body three; 31, electric telescopic part two; 32, pressing plate; 33, control part; 34, passing groove; 35, frame two; 36, motor part three; 37, screw part four; 38, moving block; 39, moving plate three; 40, hydraulic telescopic part four; 41, carrying frame; 42, electric telescopic part three; 43, clamping plate; 44, moving seat. DETAILED DESCRIPTION
[0041] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0042] In the description of the present application, it should be noted that the terms "upper", "lower", "inner", "outer", "front end", "rear end", "two ends", "one end", "the other end" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0043] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "provided with", "connected", etc. should be understood in a broad sense, for example, "connected" can be fixedly connected, or detachably connected, or integrally connected; can be mechanically connected, or electrically connected; can be directly connected, or indirectly connected through an intermediate medium; can be internal communication of two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0044] Please refer to Figure 1 , Figure 2 and Figure 3 , the present application provides an embodiment: an automatic cloth shaft library capable of adjusting different specifications of cloth rolls of weaving machines;
[0045] It comprises a ring plate 1 and a support 2, a plurality of supports 2 are symmetrically mounted at the bottom of the ring plate 1, a moving seat 44 is mounted at the bottom of the support 2, a cloth roll holder component one 3 is mounted at the inner side of the support 2, a cloth roll holder component two 4 is mounted at the inner side of the support 2 and is located above the cloth roll holder component one 3, a cloth roll holder component three 5 is mounted at the inner side of the support 2 and is located above the cloth roll holder component two 4, a control component 33 is mounted at one side of the support 2, the ring plate 1 can provide a mounting position for a plate body one 6, the support 2 serves to support the ring plate 1, the cloth roll holder component two 4 can provide a placement position for a cloth roll with a relatively short length, the cloth roll holder component two 4 can provide a placement position for a cloth roll with a medium length, the cloth roll holder component three 5 can provide a placement position for a cloth roll with a relatively long length, the control component 33 is a controller capable of controlling a hydraulic telescopic component one 7, a motor component one 9, a hydraulic telescopic component two 15, a motor component two 20, a hydraulic telescopic component two 15, a motor component two 20, a hydraulic telescopic component three 23, an electric telescopic component one 28 and an electric telescopic component two 31, and universal wheels are mounted at the bottom of the moving seat 44 to facilitate moving and transferring the cloth shaft three-dimensional library.
[0046] Please refer to Figure 1 , Figure 2 , Figure 4 and Figure 5 , the present application provides an embodiment: an automatic cloth shaft library capable of adjusting different specifications of cloth rolls of weaving machines;
[0047] The back of the annular plate 1 is provided with a plate body 6, the top of the plate body 6 is symmetrically provided with a hydraulic telescopic component 7, the hydraulic telescopic component 7 is electrically connected with a control component 33, the output end of the hydraulic telescopic component 7 is provided with a lifting frame 8, the top of the lifting frame 8 is symmetrically provided with a motor component 9, the motor component 9 is electrically connected with the control component 33, the output end of the motor component 9 is provided with a lead screw component 10, the bottom inner wall of the lifting frame 8 is symmetrically provided with a right-angle steering component 11, one end of the lead screw component 10 penetrates through the top input end of the right-angle steering component 11, one side output end of the right-angle steering component 11 is provided with a lead screw component 12, the bottom inner wall of the lifting frame 8 is symmetrically provided with a supporting block 13, the outer side of the lead screw component 12 is provided with a moving plate 14, the top of the moving plate 14 is provided with a carrying mechanism, the carrying mechanism comprises a hydraulic telescopic component 15, a connecting rod 17 and a transfer frame 18, the hydraulic telescopic component 15 is arranged on the top of the moving plate 14 and a supporting frame 16 is arranged on the outer side of the moving plate 14, the hydraulic telescopic component 15 is electrically connected with the control component 33, the output end of the hydraulic telescopic component 15 is provided with the connecting rod 17, one end of the connecting rod 17 is provided with the transfer frame 18, the top of the moving plate 14 is provided with the supporting frame 16, and the supporting frame 16 is arranged below the transfer frame 18, the plate body 6 can provide a mounting position for the hydraulic telescopic component 7, the hydraulic telescopic component 7 is a hydraulic cylinder which can convert hydraulic energy into kinetic energy to drive the lifting frame 8 to move up and down, the lifting frame 8 can drive the motor component 9 and the transfer frame 18 to move up and down through up and down movement, the motor component 9 can convert electric energy into kinetic energy to drive the lead screw component 10 to rotate, the lead screw component 10 can drive the lead screw component 12 to rotate through rotation, the right-angle steering component 11 can transmit the rotation of the lead screw component 10 to the lead screw component 12 to drive the lead screw component 12 to rotate, the supporting block 13 can provide support for one end of the lead screw component 12, the lead screw component 12 can drive the moving plate 14 to move left and right through rotation, the moving plate 14 can drive the transfer frame 18 to move left and right through left and right movement, the hydraulic telescopic component 15 is a hydraulic cylinder which can convert hydraulic energy into kinetic energy to drive the connecting rod 17 to move forward and backward, the connecting rod 17 can drive the transfer frame 18 to move forward and backward through forward and backward movement, the supporting frame 16 can provide support for the transfer frame 18, and the transfer frame 18 can drive the cloth roll placed above itself to move forward and backward through forward and backward movement, and the transfer frame 18 can drive the cloth roll placed above itself to move up and down through up and down movement of the lifting frame 8.
[0048] Please refer to Figure 1 、 Figure 2 、 Figure 6 and Figure 8The application provides an embodiment of an automatic cloth shaft warehouse capable of adjusting cloth rolls of different specifications of looms;
[0049] The support 2 is symmetrically provided with a plurality of frame bodies 19 on two sides, the front of the frame body 19 is provided with a motor component 20, the motor component 20 is electrically connected with a control component 33, the output end of the motor component 20 is provided with a screw component 21, the outer side of the screw component 21 is provided with a moving plate 22, the top of the moving plate 22 is provided with a hydraulic telescopic component 23, the hydraulic telescopic component 23 is electrically connected with the control component 33, the output end of the hydraulic telescopic component 23 is provided with a baffle 24, the back of the baffle 24 is symmetrically provided with a rod body 25, a plurality of rotating rods 26 are penetrated and arranged in the inner side of the rod body 25, the frame body 19 can provide a mounting position for the motor component 20, the motor component 20 can convert electric energy into kinetic energy, so as to drive the screw component 21 to rotate, the screw component 21 can drive the moving plate 22 to move forward and backward through rotation, one end of the screw component 21 penetrates the inner wall of the back of the frame body 19, the moving plate 22 can drive the baffle 24, a support frame 29 and a pressing plate 32 to move forward and backward through forward and backward movement, the hydraulic telescopic component 23 is a hydraulic cylinder, can convert hydraulic energy into kinetic energy, so as to drive the baffle 24 to move left and right, the baffle 24 can drive the rotating rod 26 to move left and right through left and right movement, the rod body 25 can provide a mounting position for the rotating rod 26, the rotating rod 26 can limit the components placed on the cloth roll support component 3, the cloth roll support component 4 and the cloth roll support component 5, so as to avoid the cloth roll on the cloth roll support component 3, the cloth roll support component 4 and the cloth roll support component 5 from tilting and moving forward, thereby avoiding the cloth roll from falling off when moving forward, at the same time, the rotating rod 26 can rotate in contact with the cloth roll, so as to reduce the friction damage to the cloth roll.
[0050] Please refer to Figure 1 , Figure 2 , Figure 6 and Figure 7 An embodiment of the application provides an automatic cloth shaft warehouse capable of adjusting cloth rolls of different specifications of looms.
[0051] The plate body two 27 is installed on the moving plate two 22, the bottom of the plate body two 27 is installed with the electric telescopic component one 28, the electric telescopic component one 28 is electrically connected with the control component 33, the output end of the electric telescopic component one 28 is installed with the support frame two 29, and the support frame two 29 is located on the plate body two 27; the plate body two 27 can provide an installation position for the electric telescopic component one 28; the electric telescopic component one 28 is an electric telescopic rod, which can convert electric energy into kinetic energy to drive the support frame two 29 to move up and down; the support frame two 29 can provide support for the cloth roll falling from the cloth roll support component one 3, the cloth roll support component two 4 or the cloth roll support component three 5, so as to avoid the cloth roll from directly falling to the ground.
[0052] Please refer to Figure 1 、 Figure 2 、 Figure 6 and Figure 7 , the present application provides an embodiment: an automatic cloth shaft library capable of adjusting cloth rolls of different specifications of looms;
[0053] The plate body three 30 is installed on the back of the moving plate two 22, one side of the plate body three 30 is installed with the electric telescopic component two 31, and the electric telescopic component two 31 is electrically connected with the control component 33; the output end of the electric telescopic component two 31 is installed with the pressing plate 32; the plate body three 30 can provide an installation position for the electric telescopic component two 31; the electric telescopic component two 31 is an electric telescopic rod, which can convert electric energy into kinetic energy to drive the pressing plate 32 to move left and right; the pressing plate 32 can push the cloth roll supported by the support frame two 29 inward to make the cloth roll be corrected on the cloth roll support component one 3, the cloth roll support component two 4 or the cloth roll support component three 5.
[0054] Please refer to Figure 1 、 Figure 2 、 Figure 3 and Figure 9 , the present application provides an embodiment: an automatic cloth shaft library capable of adjusting cloth rolls of different specifications of looms;
[0055] The top of the annular plate 1 is provided with a passing groove 34, and the bottom of the annular plate 1 is provided with a frame 35, the front of the frame 35 is provided with a motor component 36, the output end of the motor component 36 is provided with a screw component 37, the outer side of the screw component 37 is provided with a moving block 38, one side of the moving block 38 is provided with a moving plate 39, the top of the moving plate 39 is provided with a hydraulic telescopic component 40, the output end of the hydraulic telescopic component 40 is provided with a carrying frame 41, the top of the carrying frame 41 is provided with an electric telescopic component 42, the output end of the electric telescopic component 42 is provided with a clamping plate 43, and the clamping plate 43 is located in the inside of the carrying frame 41, the passing groove 34 can provide a moving space for the hydraulic telescopic component 40, the frame 35 can provide an installation position for the motor component 36 and the screw component 37, the motor component 36 can convert electrical energy into kinetic energy, so as to drive the screw component 37 to rotate, the screw component 37 can drive the moving block 38 to move forward and backward through rotation, the moving block 38 can drive the moving plate 39 to move forward and backward through forward and backward movement, the moving plate 39 can drive the carrying frame 41 to move forward and backward through forward and backward movement, the hydraulic telescopic component 40 is a hydraulic cylinder, which can convert hydraulic energy into kinetic energy, so as to drive the carrying frame 41 to move up and down, the carrying frame 41 can drive the cloth roll clamped in the inside of the carrying frame 41 to move forward and backward through forward and backward movement, the electric telescopic component 42 is an electric telescopic rod, which can convert electrical energy into kinetic energy, so as to drive the clamping plate 43 to move up and down, and the clamping plate 43 can clamp the cloth roll in the inside of the carrying frame 41 through downward movement.
[0056] The use method of the automatic cloth shaft warehouse capable of adjusting cloth rolls of different specifications is as follows:
[0057] S1, the transport vehicle transports the cloth roll to the rear of the two rear supports 2, then the lifting frame 8 moves downward to move the transfer frame 18 downward below the cloth roll, then the transfer frame 18 moves rearward to the position directly below the cloth roll and moves upward to lift the cloth roll;
[0058] S2, then the transfer frame 18 moves forward to transfer to the above of the cloth roll mounting component one 3, the cloth roll mounting component two 4 or the cloth roll mounting component three 5 according to the length of the cloth roll;
[0059] S3, the motor component two 20 drives the baffle 24 and the rotating rod 26 to move rearward to contact the cloth roll, so as to avoid the cloth roll from tilting and falling down during forward movement, and then move forward together with the cloth roll;
[0060] S4, when it is needed to send the cloth roll on the cloth roll frame part one 3, cloth roll frame part two 4 or cloth roll frame part three 5 to the cloth inspection machine or the transfer equipment of the cloth inspection machine, the carrying frame 41 is lowered to the front of the cloth roll, then the carrying frame 41 is moved backward to the outside of the cloth roll, then the clamping plate 43 is lowered to clamp the cloth roll inside the carrying frame 41, then the carrying frame 41 is raised and moved forward to move the cloth roll forward out of the cloth beam library to the cloth inspection machine or the transfer equipment of the cloth inspection machine.
[0061] In S3, the following steps are also included:
[0062] S31, when the cloth roll falls off the cloth roll frame part one 3 by accident, the supporting frame two 29 is raised to lift the cloth roll, then the left and right pressing plates 32 are moved inward to press the cloth roll inward to align, so that the cloth roll is lifted by the cloth roll frame part one 3 again.
[0063] Working principle: before using the automatic cloth beam library of adjustable different specifications of loom cloth roll, it is necessary to check whether there is a problem affecting the use of the automatic cloth beam library of adjustable different specifications of loom cloth roll, the transport vehicle transports the cloth roll to the rear of the two rear supports 2, then the lifting frame 8 is lowered to make the transfer frame 18 move down to the lower side of the cloth roll, then the transfer frame 18 is moved backward to the lower side of the cloth roll and is raised to lift the cloth roll, then the transfer frame 18 is moved forward to transfer to the upper side of the cloth roll frame part one 3, cloth roll frame part two 4 or cloth roll frame part three 5 according to the length of the cloth roll, the motor part two 20 drives the baffle 24 and the rotating rod 26 to move backward to contact the cloth roll, to avoid the cloth roll from tilting and falling down during the forward movement, and then move forward with the cloth roll, when the cloth roll falls off the cloth roll frame part one 3 by accident, the supporting frame two 29 is raised to lift the cloth roll, then the left and right pressing plates 32 are moved inward to press the cloth roll inward to align, so that the cloth roll is lifted by the cloth roll frame part one 3 again, when it is needed to send the cloth roll on the cloth roll frame part one 3, cloth roll frame part two 4 or cloth roll frame part three 5 to the cloth inspection machine or the transfer equipment of the cloth inspection machine, the carrying frame 41 is lowered to the front of the cloth roll, then the carrying frame 41 is moved backward to the outside of the cloth roll, then the clamping plate 43 is lowered to clamp the cloth roll inside the carrying frame 41, then the carrying frame 41 is raised and moved forward to move the cloth roll forward out of the cloth beam library to the cloth inspection machine or the transfer equipment of the cloth inspection machine.
[0064] It is apparent for a person skilled in the art that the present application is not limited to the details of the above described exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or essential characteristics of the application. Therefore, the embodiments should be considered in all respects as illustrative and not restrictive, the scope of the application being defined by the appended claims rather than the above description, and all changes coming within the meaning and equivalency range of the claims are intended to be embraced therein, no figure reference in the claims being considered limiting as to the scope of the claim concerned.
Claims
1. An automatic fabric beam magazine that can adjust fabric rolls of different specifications for looms, characterized in that: Includes an annular plate (1), a bracket (2) and a plate body (6). Multiple brackets (2) are symmetrically installed at the bottom of the annular plate (1). A movable seat (44) is installed at the bottom of the bracket (2). A fabric roll frame component (3) is installed on the inner side of the bracket (2). A fabric roll frame component (4) is installed on the inner side of the bracket (2) and is located above the fabric roll frame component (3). A fabric roll frame component (5) is installed on the inner side of the bracket (2) and is located above the fabric roll frame component (4). A control component (33) is installed on one side of the bracket (2). A plate body (6) is installed on the back of the annular plate (1). A hydraulic telescopic component (7) is symmetrically installed on the top of the plate body (6). The hydraulic telescopic component (7) is electrically connected to the control component (33). A lifting frame (8) is installed at the output end of the hydraulic telescopic component (7). A motor component (9) is symmetrically installed on the top of the lifting frame (8). The motor component (9) is electrically connected to the control component (33). A lead screw component (10) is installed at the output end of the motor component (9). A right-angle steering component (11) is symmetrically installed on the bottom inner wall of the lifting frame (8). One end of the lead screw component (10) passes through the top input end of the right-angle steering component (11). A lead screw component (2) is installed at one output end of the right-angle steering component (11). A moving plate (14) is installed on the outside of the lead screw component (2). A conveying mechanism is provided on the top of the moving plate (14). Multiple frames (19) are symmetrically installed on both sides of the bracket (2). A motor component (20) is installed on the front of the frame (19), and the motor component (20) is electrically connected to the control component (33). A lead screw component (21) is installed at the output end of the motor component (20). A movable plate (22) is installed on the outside of the lead screw component (21). A hydraulic telescopic component (23) is installed on the top of the movable plate (22), and the hydraulic telescopic component (23) is electrically connected to the control component (33). A baffle (24) is installed at the output end of the hydraulic telescopic component (23). A rod (25) is symmetrically installed on the back of the baffle (24), and multiple rotating rods (26) are installed through the inner side of the rod (25). A plate body two (27) is installed on one side of the movable plate two (22). An electric telescopic component one (28) is installed at the bottom of the plate body two (27). The electric telescopic component one (28) is electrically connected to the control component (33). A support frame two (29) is installed at the output end of the electric telescopic component one (28). The support frame two (29) is located on the plate body two (27). A plate body three (30) is installed on the back of the movable plate two (22). An electric telescopic component two (31) is installed on one side of the plate body three (30). The electric telescopic component two (31) is electrically connected to the control component (33). A pressure plate (32) is installed at the output end of the electric telescopic component two (31). Motor component two (20) drives baffle (24) and rotating rod (26) to move backward to contact the fabric roll, preventing the fabric roll from tilting, rolling and falling down during forward movement. Then, it moves forward together with the fabric roll. When the fabric roll accidentally falls off the fabric roll frame component, support frame two (29) moves up to lift the fabric roll. Then, the left and right pressure plates (32) move inward to squeeze the fabric roll inward and align it, so that the fabric roll is supported by the fabric roll frame component again.
2. The automatic fabric beam magazine for adjusting fabric rolls of different specifications as described in claim 1, characterized in that: The bottom inner wall of the lifting frame (8) is symmetrically equipped with support blocks (13), and the support blocks (13) are located outside the lead screw component (12).
3. The automatic fabric beam magazine for adjusting fabric rolls of different specifications as described in claim 1, characterized in that: The conveying mechanism includes a second hydraulic telescopic component (15), a connecting rod (17), and a transfer frame (18). The second hydraulic telescopic component (15) is installed on the top of the first moving plate (14), and the first support frame (16) is located outside the first moving plate (14). The second hydraulic telescopic component (15) is electrically connected to the control component (33). The output end of the second hydraulic telescopic component (15) is equipped with the connecting rod (17), and one end of the connecting rod (17) is equipped with the transfer frame (18).
4. An automatic fabric beam magazine for adjusting fabric rolls of different specifications as described in claim 3, characterized in that: The top of the movable plate (14) is equipped with a support frame (16), and the support frame (16) is located below the transfer frame (18).
5. An automatic fabric beam magazine for adjusting fabric rolls of different specifications as described in claim 1, characterized in that: The top of the annular plate (1) is provided with a passage groove (34). The bottom of the annular plate (1) is provided with a frame (35). The front of the frame (35) is provided with a motor component (36). The output end of the motor component (36) is provided with a lead screw component (37). The outside of the lead screw component (37) is provided with a moving block (38). The side of the moving block (38) is provided with a moving plate (39). The top of the moving plate (39) is provided with a hydraulic telescopic component (40). The output end of the hydraulic telescopic component (40) is provided with a transport frame (41). The top of the transport frame (41) is provided with an electric telescopic component (42). The output end of the electric telescopic component (42) is provided with a clamp (43), and the clamp (43) is located inside the transport frame (41).
6. A method for using an automatic fabric beam magazine for adjusting fabric rolls of different specifications as described in any one of claims 1-5, characterized in that: The method of using the automatic fabric beam magazine that can adjust fabric rolls of different specifications is as follows: S1. The transport vehicle transports the fabric roll to the back of the two supports (2). Then the lifting frame (8) moves down to make the transfer frame (18) move down to the bottom of the fabric roll. Then the transfer frame (18) moves back to the bottom of the fabric roll and moves up to lift the fabric roll. S2, then the transfer box (18) moves forward and will be transferred to the top of the fabric roll frame component one (3), fabric roll frame component two (4) or fabric roll frame component three (5) according to the length of the fabric roll; S3, Motor component two (20) drives the baffle (24) and rotating rod (26) to move backward to contact the fabric roll, preventing the fabric roll from tilting, rolling down and falling during forward movement, and then moving forward together with the fabric roll; S4. When it is necessary to send the fabric roll on the fabric roll holder component 1 (3), fabric roll holder component 2 (4) or fabric roll holder component 3 (5) forward to the fabric inspection machine or the transfer equipment of the fabric inspection machine, the transport frame (41) moves down to the front of the fabric roll, and then the transport frame (41) moves backward to the outside of the fabric roll. Then the clamp (43) moves down to clamp the fabric roll inside the transport frame (41). Then the transport frame (41) moves up and forward to move the fabric roll forward and move it out of the fabric roll storage to the fabric inspection machine or the transfer equipment of the fabric inspection machine.
7. The method of using an automatic fabric beam magazine for adjusting fabric rolls of different specifications as described in claim 6, characterized in that: The S3 process also includes the following steps: S31. When the fabric roll accidentally falls off the fabric roll holder component 1 (3), the support frame 2 (29) moves up to lift the fabric roll, and then the left and right pressure plates (32) move inward to squeeze the fabric roll inward and align it, so that the fabric roll is supported again by the fabric roll holder component 1 (3).
Citation Information
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