CN216612009U - Storage rack - Google Patents

Storage rack Download PDF

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Publication number
CN216612009U
CN216612009U CN202123074873.1U CN202123074873U CN216612009U CN 216612009 U CN216612009 U CN 216612009U CN 202123074873 U CN202123074873 U CN 202123074873U CN 216612009 U CN216612009 U CN 216612009U
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CN
China
Prior art keywords
movable frame
frame
transmission
magazine
drive
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Active
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CN202123074873.1U
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Chinese (zh)
Inventor
何海潮
冯怀
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Changzhou Jwell Extrusion Foaming Technology Co ltd
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Changzhou Jwell Extrusion Foaming Technology Co ltd
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Priority to CN202123074873.1U priority Critical patent/CN216612009U/en
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Abstract

The utility model discloses a material storage frame which comprises a frame, a plurality of lower material storage rollers which are arranged in parallel in the transverse direction and are respectively and rotatably supported on the frame, a movable frame which is arranged on the frame in a sliding manner in a lifting manner, a plurality of upper material storage rollers which are arranged in parallel in the transverse direction and are respectively and rotatably supported on the movable frame, and a lifting driving mechanism which is connected with the movable frame to drive the movable frame to lift, wherein a material belt to be wound alternately bypasses each upper material storage roller and each lower material storage roller in sequence to form a plurality of S shapes which are connected end to end. The material belt storage device can well store material belts to be wound, and is simple in structure and strong in controllability.

Description

Storage rack
Technical Field
The utility model relates to a storage rack.
Background
The material belt is cooled, pulled, stored and rolled after being processed and molded by extrusion equipment, products of the whole production line are conveyed forwards all the time, when the air expansion shaft of the rolling machine is fully wound for changing rolls, the products cannot be stacked, namely, a storage rack is required to store a part of the material belt, and the roll changing time is reserved for the rolling machine. The existing storage rack has poor storage effect and low practicability.
Disclosure of Invention
The utility model aims to overcome the defects of the prior art and provides a storage rack which can well store a material belt to be wound and has a simple structure and strong controllability.
In order to solve the technical problem, the technical scheme of the utility model is as follows: a storage rack, comprising:
a frame;
a plurality of lower stock rolls arranged laterally in parallel and rotatably supported on the frame, respectively;
the movable frame is arranged on the frame in a sliding way and can be lifted;
the material belts to be wound sequentially and alternately bypass the upper storage rollers and the lower storage rollers to form a plurality of S-shaped structures connected end to end;
and the lifting driving mechanism is connected with the movable frame to drive the movable frame to lift.
Further, in order to prevent the movable frame from sliding out of the frame, the storage frame further comprises a limiting mechanism which is installed on the frame and is suitable for limiting the moving stroke of the movable frame.
The limiting mechanism comprises an upper buffer and a lower buffer, wherein the upper buffer is suitable for abutting against the upper end of the movable frame to limit the ascending position of the movable frame, and the lower buffer is suitable for abutting against the lower end of the movable frame to limit the descending position of the movable frame.
Further provided is a concrete structure of a lifting drive mechanism, the lifting drive mechanism comprises at least one transmission component, and the transmission component comprises:
a drive sprocket and a driven sprocket rotatably supported on the frame, respectively, the drive sprocket being drivingly rotatable;
the driving belt is meshed with the driving chain wheel and the driven chain wheel respectively, and the movable frame is fixedly connected with the driving belt to drive the driving belt to lift.
Furthermore, the lifting driving mechanism also comprises a power mechanism, and the power mechanism comprises a power assembly and two transmission shafts; wherein the content of the first and second substances,
the four transmission assemblies are arranged in a two-by-two matrix manner, the driving sprockets of the two transmission assemblies are in transmission connection through one transmission shaft, and the driving sprockets of the other two transmission assemblies are in transmission connection through the other transmission shaft;
the power assembly is connected with the transmission shaft to drive the transmission shaft to rotate.
Further provides a concrete structure of the power assembly, the power assembly comprises a servo motor and a bevel gear reduction box; wherein the content of the first and second substances,
the output shaft of the servo motor is connected with the input shaft of the bevel gear reduction box;
the bevel gear reduction box is provided with two output shafts, and each output shaft is connected with a transmission shaft through a spiral bevel gear steering box.
Furthermore, the material storage rack also comprises at least one transition roller which is rotatably supported on the frame, and the material belt bypasses the transition roller and then sequentially and alternately bypasses the upper material storage rollers and the lower material storage rollers.
Further, the upper buffer and the lower buffer respectively include:
a mounting seat fixedly mounted on the frame;
and the cushion pad is arranged on the mounting seat and is suitable for abutting against the movable frame.
Further, in order to enable the movable frame to lift better, a groove body extending in the vertical direction is arranged on the movable frame, a guide wheel is rotatably supported on the movable frame, and the guide wheel is installed in the groove body and can roll along the groove body.
Further, it is equipped with four respectively to go up storage roller and lower storage roller.
After the technical scheme is adopted, after a material belt to be wound enters the frame, the material belt alternately bypasses each upper material storage roller and each lower material storage roller in sequence and is pulled out of the frame, and is wound by the winding machine, when the winding machine changes the coils, the material is stored, the lifting driving mechanism drives the movable frame to ascend, the material storage function is started, when the movable frame ascends to the highest position, the length of the stored material reaches the longest length, the utility model can reserve a certain time for the coil change of the winding machine, after the coils are changed for a short time, the movable frame descends under the action of the lifting driving mechanism, and the stored material belt is wound by the winding machine; the utility model also limits the lifting stroke of the movable frame through the limiting mechanism, thereby preventing the movable frame from sliding out of the frame; the power mechanism adopts a structure that the servo motor, the bevel gear reduction box, the spiral bevel gear steering box component and the transmission shaft are matched to drive the four transmission components to synchronously act, so that the movable frame can stably lift, the lifting speed of the movable frame can be conveniently adjusted in real time according to the production speed of the product, and the material storage speed is matched with the production speed of the product.
Drawings
FIG. 1 is a schematic structural view of a storage rack according to the present invention;
fig. 2 is a schematic structural diagram of the power mechanism of the present invention.
Detailed Description
In order that the present invention may be more readily and clearly understood, a more particular description of the utility model briefly described above will be rendered by reference to specific embodiments that are illustrated in the appended drawings.
As shown in fig. 1 and 2, a storage rack comprises:
a frame 1;
a plurality of lower storing rollers 2 which are arranged in parallel in the transverse direction and are respectively and rotatably supported on the frame 1;
a movable frame 3 which is arranged on the frame 1 in a sliding way and can be lifted;
the material belts to be wound sequentially and alternately bypass the upper storage rollers 10 and the lower storage rollers 2 to form a plurality of S-shaped structures connected end to end;
a lifting driving mechanism connected with the movable frame 3 to drive the movable frame 3 to lift;
and the limiting mechanism 4 is installed on the frame 1 and is suitable for limiting the moving stroke of the movable frame 3.
In the present embodiment, four each of the upper stock roller 10 and the lower stock roller 2 is provided.
Specifically, after a material belt to be wound enters the frame 1, the material belt alternately bypasses each upper material storage roller 2 and each lower material storage roller 3 in sequence and is pulled out of the frame 1, and is wound by the winding machine, when the winding machine changes the coils, the material storage is needed, the lifting driving mechanism drives the movable frame 3 to ascend, the material storage function is started, and when the movable frame 3 ascends to the highest position, the length of the stored material belt reaches the longest length; the utility model also limits the lifting stroke of the movable frame 3 through the limiting mechanism 4, thereby preventing the movable frame 3 from sliding out of the frame 1.
As shown in fig. 1, the limiting mechanism 4 includes an upper buffer adapted to abut against an upper end of the movable frame 3 to limit the ascending position of the movable frame 3, and a lower buffer adapted to abut against a lower end of the movable frame 3 to limit the descending position of the movable frame 3.
As shown in fig. 1, the lifting drive mechanism includes at least one transmission assembly, which includes:
a drive sprocket 51 and a driven sprocket 52 rotatably supported by the frame 1, respectively, the drive sprocket 51 being drivingly rotatable;
and the movable frame 3 is fixedly connected with the transmission belt 53 so as to drive the movable frame to lift through the transmission belt 53.
As shown in fig. 1 and 2, the lifting driving mechanism further comprises a power mechanism, and the power mechanism comprises a power assembly and two transmission shafts 6; wherein the content of the first and second substances,
the four transmission assemblies are arranged in a two-by-two matrix manner, the driving chain wheels 51 of the two transmission assemblies are in transmission connection through one transmission shaft 6, and the driving chain wheels 51 of the other two transmission assemblies are in transmission connection through the other transmission shaft 6;
the power assembly is connected with the transmission shaft 6 to drive the transmission shaft 6 to rotate.
As shown in fig. 2, the power assembly includes a servo motor 71 and a bevel gear reduction box 72; wherein the content of the first and second substances,
an output shaft of the servo motor 71 is connected with an input shaft of the bevel gear reduction box 72;
the bevel gear reduction box 72 has two output shafts, each connected to a drive shaft 6 via a spiral bevel gear steering box.
Specifically, the power mechanism of the utility model adopts a structure that the servo motor 71, the bevel gear reduction box 72, the spiral bevel gear steering box and the transmission shaft 6 are matched to drive the four transmission components to synchronously act, so that the movable frame 3 can stably lift, the lifting speed of the movable frame 3 can be conveniently adjusted in real time according to the production speed of the product, and the material storage speed is matched with the production speed of the product.
As shown in fig. 1, the magazine further comprises at least one transition roller 8 rotatably supported on said frame 1, the strip passing around the transition roller 8 and then alternately passing around the upper magazine rollers 10 and the lower magazine rollers 2 in turn.
As shown in fig. 1, the upper buffer and the lower buffer respectively include:
a mounting seat fixedly mounted on the frame 1;
a cushion pad mounted on said mounting seat and adapted to abut against the mobile frame 3.
As shown in fig. 1, in order to enable the movable frame 3 to be lifted and lowered better, a chute body extending in the vertical direction is provided on the movable frame 3, a guide wheel 9 is rotatably supported on the movable frame 3, and the guide wheel 9 is installed in the chute body and can roll along the chute body.
The above embodiments are described in further detail to solve the technical problems, technical solutions and advantages of the present invention, and it should be understood that the above embodiments are only examples of the present invention and are not intended to limit the present invention, and any modifications, equivalent substitutions, improvements and the like made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (9)

1. A storage rack is characterized in that,
it includes:
a frame (1);
a plurality of lower storage rollers (2) which are arranged in parallel in the transverse direction and are respectively rotatably supported on the frame (1);
a movable frame (3) which is arranged on the frame (1) in a sliding way and can be lifted;
a plurality of upper storage rollers (10) which are arranged in parallel in the transverse direction and are respectively rotatably supported on the movable frame (3), and the material belt to be wound sequentially and alternately bypasses each upper storage roller (10) and each lower storage roller (2) to form a plurality of S shapes which are connected end to end;
the lifting driving mechanism is connected with the movable frame (3) to drive the movable frame (3) to lift;
and the limiting mechanism (4) is installed on the frame (1) and is suitable for limiting the moving stroke of the movable frame (3).
2. The magazine of claim 1,
the limiting mechanism (4) comprises an upper buffer and a lower buffer, wherein the upper buffer is suitable for abutting against the upper end of the movable frame (3) to limit the ascending position of the movable frame (3), and the lower buffer is suitable for abutting against the lower end of the movable frame (3) to limit the descending position of the movable frame (3).
3. The magazine of claim 1,
the lift drive mechanism includes at least one transmission assembly, the transmission assembly including:
a drive sprocket (51) and a driven sprocket (52) rotatably supported on the frame (1), respectively, the drive sprocket (51) being drivingly rotatable;
and the movable frame (3) is fixedly connected with the transmission belt (53) so as to drive the movable frame to lift through the transmission belt (53).
4. The magazine of claim 3,
the lifting driving mechanism also comprises a power mechanism, and the power mechanism comprises a power assembly and two transmission shafts (6); wherein the content of the first and second substances,
the four transmission assemblies are arranged in a two-by-two matrix arrangement, the driving chain wheels (51) of the two transmission assemblies are in transmission connection through one transmission shaft (6), and the driving chain wheels (51) of the other two transmission assemblies are in transmission connection through the other transmission shaft (6);
the power assembly is connected with the transmission shaft (6) to drive the transmission shaft (6) to rotate.
5. The magazine of claim 4,
the power assembly comprises a servo motor (71) and a bevel gear reduction box (72); wherein the content of the first and second substances,
an output shaft of the servo motor (71) is connected with an input shaft of the bevel gear reduction box (72);
the bevel gear reduction box (72) is provided with two output shafts, and each output shaft is connected with a transmission shaft (6) through a spiral bevel gear steering box.
6. The magazine of claim 1,
the material belt is wound around the transition roller (8) and then sequentially and alternately wound around each upper storage roller (10) and each lower storage roller (2).
7. The magazine of claim 2,
the upper buffer and the lower buffer respectively include:
a mounting seat fixedly mounted on the frame (1);
and the buffer cushion is arranged on the mounting seat and is suitable for abutting against the movable frame (3).
8. The magazine of claim 1,
the movable frame (3) is provided with a groove body extending in the vertical direction, the movable frame (3) is rotatably supported with a guide wheel (9), and the guide wheel (9) is arranged in the groove body and can roll along the groove body.
9. The magazine of claim 1,
the upper material storage roller (10) and the lower material storage roller (2) are respectively provided with four.
CN202123074873.1U 2021-12-08 2021-12-08 Storage rack Active CN216612009U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123074873.1U CN216612009U (en) 2021-12-08 2021-12-08 Storage rack

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123074873.1U CN216612009U (en) 2021-12-08 2021-12-08 Storage rack

Publications (1)

Publication Number Publication Date
CN216612009U true CN216612009U (en) 2022-05-27

Family

ID=81700823

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123074873.1U Active CN216612009U (en) 2021-12-08 2021-12-08 Storage rack

Country Status (1)

Country Link
CN (1) CN216612009U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116902383A (en) * 2023-09-12 2023-10-20 常州金纬片板膜科技有限公司 Material roll storage structure

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116902383A (en) * 2023-09-12 2023-10-20 常州金纬片板膜科技有限公司 Material roll storage structure

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