CN210339707U - Take tension control's multilayer blowing frame - Google Patents
Take tension control's multilayer blowing frame Download PDFInfo
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- CN210339707U CN210339707U CN201920570688.5U CN201920570688U CN210339707U CN 210339707 U CN210339707 U CN 210339707U CN 201920570688 U CN201920570688 U CN 201920570688U CN 210339707 U CN210339707 U CN 210339707U
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Abstract
The utility model discloses a take tension control's multilayer blowing frame, include: the bracket comprises a first bracket and a second bracket which are arranged in parallel in the vertical direction; one end of the material placing frame is connected with the first support, and the other end of the material placing frame is connected with the second support; the inflatable shaft placing seat comprises a first placing seat positioned on the first support and a second placing seat positioned on the second support, and the first placing seat and the second placing seat are fixed on the corresponding first support and the corresponding second support through U-shaped fixing pieces or L-shaped fixing pieces and are provided with U-shaped grooves with upward openings; one end of the inflatable shaft is lapped in the semicircle of the first placing seat, and the other end of the inflatable shaft is lapped in the semicircle of the second placing seat; the magnetic powder tension controller is axially, slidably and radially and fixedly arranged on the fixed seat, and an axis of the magnetic powder tension controller is connected with the inflatable shaft.
Description
Technical Field
The utility model relates to a cutting machine unreels technical field, concretely relates to take tension control's multilayer blowing frame.
Background
The existing splitting machine discharging frame has the technical defects of large size deviation of products with different lengths and low production efficiency caused by unstable tension control due to the adoption of a damping control structure, and a method for improving the efficiency and the product quality is urgently needed.
SUMMERY OF THE UTILITY MODEL
To the technical problem, the utility model provides a take tension control's multilayer blowing frame uses magnetic tension controller to replace original damping control structure, has effectively improved tension control unstability, and the unsatisfactory problem of control effect can effectively steady obtain tension control. Reform transform the upgrading into the multilayer with original individual layer blowing frame, not only reduced the trouble of repeated blowing, still improved work efficiency greatly, promoted output by a wide margin.
In order to solve the technical problem, the utility model discloses a technical scheme be: a multi-layer blowing frame with tension control, comprising:
the bracket comprises a first bracket and a second bracket which are arranged in parallel in the vertical direction;
one end of the material placing frame is connected with the first support, and the other end of the material placing frame is connected with the second support;
the inflatable shaft placing seat comprises a first placing seat positioned on the first support and a second placing seat positioned on the second support, the first placing seat and the second placing seat are fixed on the corresponding first support and the second support through U-shaped fixing pieces or L-shaped fixing pieces, and parts with U-shaped grooves are formed in the first support and the second support, the openings of the parts are upward, the bottoms of the U-shaped grooves are semicircular, the number of the first placing seats is at least two, and the number of the second placing seats is the same as that of the first placing seats;
the number of the inflatable shafts is the same as that of the first placing seats, one end of each inflatable shaft is lapped in a semicircle of the first placing seat, and the other end of each inflatable shaft is lapped in a semicircle of the second placing seat;
the fixed seats are fixed on the first bracket, the number of the fixed seats is the same as that of the first placing seats, each first placing seat corresponds to one fixed seat,
the magnetic powder tension controllers are arranged on the first placing seats in the same number, the magnetic powder tension controllers axially slide and are radially and fixedly arranged on the fixing seats, and axes of the magnetic powder tension controllers are connected with the inflatable shafts.
Preferably, the first bracket and the second bracket are both vertical columns.
Preferably, the material placing frame comprises a first rod, a second rod, a third rod and a fourth rod, the first rod is vertically arranged on the side surface of the upright column, the second rod is vertically arranged on the side surface of the upright column, one end of the third rod is connected with the first rod, the other end of the third rod is connected with the first support to form a triangular area, one end of the fourth rod is connected with the second rod, and the other end of the fourth rod is connected with the second support to form a triangular area.
The magnetic powder tension controller is fixedly mounted on the translation sliding block, a groove is formed in the translation sliding block, and the translation sliding block is clamped on the bar-shaped guide rail through the groove and is in sliding fit with the bar-shaped guide rail.
Preferably, in the axial direction of the inflator shaft, the U-shaped groove includes an inner U-shaped groove located on the opposite side of the first placing seat and the second placing seat and an outer U-shaped groove located on the opposite side of the first placing seat and the second placing seat, and the width of the inner U-shaped groove is larger than the width of the outer U-shaped groove.
Compared with the prior art, the beneficial effects of the utility model are that:
the magnetic powder tension controller is used for replacing the original damping control structure, so that the problems of unstable tension control and unsatisfactory control effect are effectively solved, and the tension control can be effectively and stably obtained. Reform transform the upgrading into the multilayer with original individual layer blowing frame, not only reduced the trouble of repeated blowing, still improved work efficiency greatly, promoted output by a wide margin.
Drawings
Fig. 1 is a perspective view of the present invention;
fig. 2 is a schematic structural view of the second placing seat.
In the figure: 1. the first support, 2, the second support, 3, first seat of placing, 4, the seat is placed to the second, 5, physiosis axle, 6, fixing base, 7, magnetic tension controller, 8, first pole, 9, the second pole, 10, the third pole, 11, the fourth pole, 12, triangle region, 13, bar guide rail, 14, translation slider, 15, interior U-shaped groove, 16, outer U-shaped groove, 17, arch.
Detailed Description
The present invention will be further described with reference to the following specific embodiments.
As shown in fig. 1-2, a multi-layer feeding frame with tension control comprises:
the support comprises a first support 1 and a second support 2 which are arranged in parallel in the vertical direction;
one end of the material placing frame is connected with the first support, and the other end of the material placing frame is connected with the second support;
the inflatable shaft placing seat comprises a first placing seat 3 positioned on the first support and a second placing seat 4 positioned on the second support, the first placing seat and the second placing seat are fixed on the corresponding first support and the second support through U-shaped fixing pieces or L-shaped fixing pieces, and parts with U-shaped grooves are formed in the first support and the second support, the openings of the parts are upward, the bottoms of the U-shaped grooves are semicircular, the number of the first placing seats is at least two, and the number of the second placing seats is the same as that of the first placing seats;
the number of the inflatable shafts is the same as that of the first placing seats, one end of each inflatable shaft is lapped in a semicircle of the first placing seat, and the other end of each inflatable shaft is lapped in a semicircle of the second placing seat;
the magnetic powder tension controllers 7 are the same in number as the first placing seats, are axially, slidably and radially and fixedly installed on the fixing seats, and are connected with the inflatable shaft through axes.
In the above-mentioned embodiment, during the use, arrange product material (coil stock) respectively in the physiosis epaxially, place the physiosis axle in first place the seat and the second place the U-shaped inslot on the seat, slip magnetic powder tension controller makes magnetic powder tension controller and physiosis hub connection, and the adjustment controls magnetic powder tension controller's magnetic powder tension regulator for unreel tension and reach ideal state.
In foretell scheme, support one side sets up the blowing frame and is used for placing the material, and the opposite side sets up a plurality of physiosis axles, based on under the simple prerequisite of overall structure, can improve the balance performance of support for the product is more steady at the in-process that unreels, is more convenient for control tension.
The first support and the second support are both upright columns.
The blowing frame is used for being connected with the cutting machine, and it specifically includes first pole 8, second pole 9, third pole 10, fourth pole 11, and first pole vertical mount is in the side of first support, and the second pole vertical mount is in the side of second support, and first pole is connected to third pole one end, and the first support of other end connection forms triangle-shaped region, and second pole is connected to fourth pole one end, and the second support is connected to the other end forms triangle-shaped region 12.
The fixing seat is provided with a raised strip-shaped guide rail 13, the magnetic powder tension controller is fixedly installed on the translation sliding block 14, a groove is formed in the translation sliding block, and the translation sliding block is clamped on the strip-shaped guide rail through the groove and is in sliding fit with the strip-shaped guide rail.
In the axial of physiosis axle, the U-shaped groove is including being located first place the seat and the second place the interior U-shaped groove 15 of seat opposite side and being located first place the seat and the second place the seat dorsal outer U-shaped groove 16 mutually, and the width in interior U-shaped groove is greater than the width in outer U-shaped groove, and physiosis axle both ends have the arch 17 that matches with the semi-circular diameter in interior U-shaped groove, and the arch is installed in this interior U-shaped inslot for the physiosis axle unreels the in-process and rotates more steadily.
It will be apparent to those skilled in the art that modifications and variations can be made in the above-described embodiments, or some features of the invention may be substituted by equivalents, without departing from the spirit or scope of the invention.
Claims (5)
1. The utility model provides a take tension control's multilayer blowing frame which characterized in that includes:
the bracket comprises a first bracket and a second bracket which are arranged in parallel in the vertical direction;
one end of the material placing frame is connected with the first support, and the other end of the material placing frame is connected with the second support;
the inflatable shaft placing seat comprises a first placing seat positioned on the first support and a second placing seat positioned on the second support, the first placing seat and the second placing seat are fixed on the corresponding first support and the second support through U-shaped fixing pieces or L-shaped fixing pieces, and parts with U-shaped grooves are formed in the first support and the second support, the openings of the parts are upward, the bottoms of the U-shaped grooves are semicircular, the number of the first placing seats is at least two, and the number of the second placing seats is the same as that of the first placing seats;
the number of the inflatable shafts is the same as that of the first placing seats, one end of each inflatable shaft is lapped in a semicircle of the first placing seat, and the other end of each inflatable shaft is lapped in a semicircle of the second placing seat;
the fixed seats are fixed on the first bracket, the number of the fixed seats is the same as that of the first placing seats, each first placing seat corresponds to one fixed seat,
the magnetic powder tension controllers are arranged on the first placing seats in the same number, the magnetic powder tension controllers axially slide and are radially and fixedly arranged on the fixing seats, and axes of the magnetic powder tension controllers are connected with the inflatable shafts.
2. The tension-controlled multi-layer stack of claim 1, wherein the first support and the second support are both vertical posts.
3. The tension-controlled multi-layer blowing frame according to claim 2, wherein the blowing frame comprises a first rod, a second rod, a third rod and a fourth rod, the first rod is vertically arranged on the side surface of the upright, the second rod is vertically arranged on the side surface of the upright, one end of the third rod is connected with the first rod, the other end of the third rod is connected with the first bracket to form a triangular area for placing materials, one end of the fourth rod is connected with the second rod, and the other end of the fourth rod is connected with the second bracket to form a triangular area for placing materials.
4. The multi-layer feeding rack with tension control as claimed in claim 1, wherein the fixing base has a raised strip-shaped guide rail, the magnetic powder tension controller is fixedly mounted on the translation slider, the translation slider has a groove, and the translation slider is clamped on the strip-shaped guide rail through the groove and is in sliding fit with the strip-shaped guide rail.
5. The tension-controlled multi-layer stack as claimed in claim 1, wherein the U-shaped grooves include inner U-shaped grooves at opposite sides of the first and second placing seats and outer U-shaped grooves at opposite sides of the first and second placing seats in an axial direction of the inflator shaft, and a width of the inner U-shaped grooves is greater than a width of the outer U-shaped grooves.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920570688.5U CN210339707U (en) | 2019-04-24 | 2019-04-24 | Take tension control's multilayer blowing frame |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920570688.5U CN210339707U (en) | 2019-04-24 | 2019-04-24 | Take tension control's multilayer blowing frame |
Publications (1)
Publication Number | Publication Date |
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CN210339707U true CN210339707U (en) | 2020-04-17 |
Family
ID=70180719
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920570688.5U Active CN210339707U (en) | 2019-04-24 | 2019-04-24 | Take tension control's multilayer blowing frame |
Country Status (1)
Country | Link |
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CN (1) | CN210339707U (en) |
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2019
- 2019-04-24 CN CN201920570688.5U patent/CN210339707U/en active Active
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Address after: 314011 floor 7, building 1, Wangdian integrated decoration entrepreneurship and Innovation Park, No. 567, Yongle Road, Wangdian Town, Xiuzhou District, Jiaxing City, Zhejiang Province Patentee after: Jiaxing Shaohua plastic new material Co.,Ltd. Address before: 314000 Jianzhong station, Wangdian Town, Xiuzhou District, Jiaxing City, Zhejiang Province Patentee before: Jiaxing Shaohua plastic new material Co.,Ltd. |