CN217973349U - Copper foil annealing material rack convenient for C-shaped hook loading - Google Patents

Copper foil annealing material rack convenient for C-shaped hook loading Download PDF

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Publication number
CN217973349U
CN217973349U CN202222495307.6U CN202222495307U CN217973349U CN 217973349 U CN217973349 U CN 217973349U CN 202222495307 U CN202222495307 U CN 202222495307U CN 217973349 U CN217973349 U CN 217973349U
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China
Prior art keywords
copper foil
bracket
hook
charging tray
chassis
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CN202222495307.6U
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Chinese (zh)
Inventor
刘炜
常保平
韩超群
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Heze Guangyuan Copper Co ltd
Shandong Tianhe Rolled Copper Foil Co ltd
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Shandong Tianhe Rolled Copper Foil Co ltd
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Abstract

The utility model discloses a copper foil annealing work or material rest convenient to C shape hook is loaded relates to calendering copper foil annealing technical field, including the charging tray, the charging tray is used for placing in annealing stove, and the charging tray includes the chassis, reference column and bracket, and the reference column is vertical to be installed on the chassis, and bracket horizontal installation is on the reference column, and the bracket is used for wearing to establish in the core section of thick bamboo of calendering copper foil, and the one end of keeping away from the reference column on the bracket is provided with the fluting, and the C shape hook that is used for the core section of thick bamboo of hoist and mount calendering copper foil can follow fluting business turn over bracket, makes charging process convenient and fast, does not need the hoist of frequent dismouting loading, and charging efficiency is high.

Description

Copper foil annealing material rack convenient for C-shaped hook loading
Technical Field
The utility model relates to a calendering copper foil annealing technical field especially relates to a copper foil annealing work or material rest convenient to C shape hook is loaded.
Background
In the annealing process of the rolled copper foil, the rolled copper foil mainly adopts a small roll form, the rolled copper foil is rolled on a core cylinder, the weight of a single piece is about 200kg, the length of the core cylinder is 680mm, and the inner diameter of the core cylinder is 78mm, so that the process of loading the rolled copper foil into an annealing furnace is complex. As shown in fig. 1, the conventional rolled copper foil is loaded mainly by the following method: a sling or a sling chain penetrates through a core cylinder of a roll of rolled copper foil, the rolled copper foil is hoisted to an annealing material rack, and then the sling or the sling chain is taken off to hoist another rolled copper foil; when a plurality of rolls of rolled copper foils are hoisted, the problem that the hanging strip or the hanging chain is frequently disassembled and assembled exists, time and labor are wasted, and the charging efficiency is low.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a copper foil annealing work or material rest convenient to C shape hook is loaded to solve the problem that above-mentioned prior art exists, can cooperate C shape hook to load, make the process of loading convenient and fast, the hoist that does not need frequent dismouting to load, charging efficiency is high.
In order to achieve the above purpose, the utility model provides a following scheme:
the utility model provides a copper foil annealing work or material rest convenient to C shape hook is loaded, including the charging tray, the charging tray is used for placing in annealing stove, the charging tray includes chassis, reference column and bracket, the reference column vertical install in on the chassis, bracket horizontal installation in on the reference column, the bracket is used for wearing to establish in the core section of thick bamboo of calendering copper foil, keep away from on the bracket the one end of reference column is provided with the fluting, is used for hoist and mount the C shape hook of the core section of thick bamboo of calendering copper foil can be followed fluting business turn over the bracket.
Preferably, the bracket includes the grooved tube, the one end of grooved tube with the lateral wall of reference column is connected, the other end top of grooved tube is followed the bar groove has been seted up to the axial of grooved tube, the bar groove is followed the radial run-through of grooved tube the top pipe wall of grooved tube, C shape hook can be followed bar groove business turn over the grooved tube.
Preferably, the groove pipes are provided with a plurality of groups, each group of groove pipes comprises three groove pipes which are located at the same height and are uniformly distributed along the circumferential direction of the positioning column, and the groove pipes of different heights are uniformly distributed along the axial direction of the positioning column.
Preferably, the material trays are provided with a plurality of material trays, each material tray can be sequentially stacked in the annealing furnace from bottom to top, and each adjacent material tray is detachably connected with each other.
Preferably, the bottom of the positioning column is provided with a positioning hole, and the top of the positioning column is provided with a positioning boss, so that the positioning hole of the upper layer material tray can be buckled and connected with the positioning boss of the adjacent lower layer material tray.
Preferably, the copper foil annealing material rack convenient for loading of the C-shaped hook further comprises a plurality of material rods, a plurality of through holes are uniformly distributed in the chassis of each material tray, and each material rod can penetrate through the corresponding through hole in the vertical direction.
Preferably, the chassis is a circular chassis which is of a hollow structure and comprises an annular plate, a plurality of main rib plates and auxiliary rib plates, the bottom of the positioning column is located at the center of the annular plate, all the main rib plates are radially connected between the annular plate and the bottom of the positioning column, and the auxiliary rib plates are arranged between every two adjacent main rib plates; and a connecting plate is arranged between the annular plate and the adjacent auxiliary rib plate, and the connecting plate is provided with the through hole.
Preferably, a plurality of hoisting holes are uniformly distributed on the annular plate, movable pins penetrate through the hoisting holes respectively, the movable pins are connected with the corresponding hoisting holes in a sliding manner, and the movable pins are used for connecting a lifting appliance.
Preferably, the groove pipe is a circular pipe with the wall thickness larger than 10mm, and the width of the strip-shaped groove is 5mm larger than the thickness of the C-shaped hook; the positioning column is a circular tube with the wall thickness of 20 mm.
Preferably, the material of the material tray and the material of the movable pin are both 310S stainless steel.
The utility model discloses for prior art gain following technological effect:
the utility model provides a copper foil annealing work or material rest convenient to C shape hook is loaded includes the charging tray, wherein, the charging tray includes the chassis, reference column and bracket, one end through keeping away from the reference column on the bracket sets up the fluting, when cooperation C shape hook is loaded, the C shape hook lifts the core section of thick bamboo that the pressure prolongs the copper foil, with the core section of thick bamboo when on the bracket, the C shape hook can follow the fluting and get into the bracket, when accomplishing hoist and mount, the core section of thick bamboo falls on the bracket, the C shape hook can be followed the fluting and withdrawn from the bracket, move back to idle station, make charging process convenient and fast, the hoist that does not need frequent dismouting to load, the charging efficiency is high.
When the utility model is matched with the C-shaped hook for charging, the movement track of the C-shaped hook passing in and out the bracket along the slot is more stable, so that the phenomenon of material collision is not easy to occur, and the operation difficulty of charging is reduced for workers; the utility model discloses simple structure, low cost, convenient to popularize and use.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a cross-sectional view of a conventional sling-mounted rolled copper foil;
FIG. 2 is a cross-sectional view of a conventional C-hook hoist rolled copper foil;
fig. 3 is a front view of the tray provided by the present invention;
fig. 4 is a top view of the tray provided by the present invention;
fig. 5 is a schematic view of a cross section of a grooved tube provided by the present invention;
fig. 6 is a schematic view of a longitudinal section of a slot tube provided by the present invention;
fig. 7 is a schematic view of a positioning post provided by the present invention;
fig. 8 is a schematic view of a movable pin provided by the present invention;
fig. 9 is a schematic view of stacking two trays according to the present invention;
in the figure: 01-rolled copper foil, 02-core cylinder, 03-sling, 04-C-shaped hook, 1-chassis, 11-annular plate, 12-main rib plate, 13-auxiliary rib plate, 14-connecting plate, 141-through hole, 2-positioning column, 21-positioning boss, 211-conical surface, 22-positioning hole, 23-groove pipe welding position hole, 3-groove pipe, 31-strip groove, 4-movable pin, 41-circular pipe and 42-steel plate.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The utility model aims at providing a copper foil annealing work or material rest convenient to C shape hook is loaded to solve the problem that prior art exists, can cooperate C shape hook to load, make the process of loading convenient and fast, the hoist that does not need frequent dismouting to load, charging efficiency is high.
In order to make the aforementioned objects, features and advantages of the present invention more comprehensible, the present invention is described in detail with reference to the accompanying drawings and the following detailed description.
As shown in fig. 3-9, the utility model provides a copper foil annealing work or material rest convenient to C shape hook is loaded, including the charging tray, the charging tray is used for placing in the annealing stove, the charging tray includes chassis 1, reference column 2 and bracket, 2 vertical installations on chassis 1 of reference column, bracket horizontal installation is on reference column 2, the bracket is used for wearing to establish in the core section of thick bamboo 02 of calendering copper foil, the one end of keeping away from reference column 2 on the bracket is provided with the fluting, a C shape hook 04 for hoisting the core section of thick bamboo 02 of calendering copper foil can be followed fluting business turn over bracket, make charging process convenient and fast, the hoist that does not need frequent dismouting to load, the charging efficiency is high.
Further, the bracket comprises a groove pipe 3, one end of the groove pipe 3 is connected with the side wall of the positioning column 2, as shown in fig. 8, the positioning column 2 of this embodiment is preferably a circular pipe with a wall thickness of 20mm, a groove pipe welding position opening 23 is formed in the side wall of the circular pipe, and one end of the groove pipe 3 is welded in the groove pipe welding position opening 23; as shown in fig. 5-6, a strip-shaped groove 31 is formed in the top of the other end of the grooved tube 3 along the axial direction of the grooved tube 3, the strip-shaped groove 31 penetrates through the top tube wall of the grooved tube 3 along the radial direction of the grooved tube 3, the grooved tube 3 of this embodiment is preferably a circular tube with a wall thickness greater than 10mm, the preferred width of the strip-shaped groove 31 is 5mm greater than the thickness of the C-shaped hook 04, the preferred length of the strip-shaped groove 31 is 520mm, and the C-shaped hook 04 can enter and exit the grooved tube 3 along the strip-shaped groove 31.
In this embodiment, the slot tube 3 is provided with the multiunit, and every group slot tube 3 all includes the three slot tube 3 that is located same height and evenly lays along the circumference of reference column 2, and each group slot tube 3 of co-altitude is evenly laid along the axial of reference column 2.
In this embodiment, the charging tray is provided with a plurality ofly, and each charging tray can be followed supreme stack in proper order in the annealing stove, detachably connects between each adjacent charging tray.
Further, as shown in fig. 8-9, the bottom of the positioning post 2 is provided with a positioning hole 22, and the positioning hole 22 of the present embodiment is formed by expanding the bottom of a circular tube; the top of the positioning column 2 is provided with a positioning boss 21, so that a positioning hole 22 of an upper layer material tray can be buckled and connected with the positioning boss 21 of an adjacent lower layer material tray, and the positioning boss 21 of the lower layer material tray can support the upper layer material tray; in the embodiment, a gap is left between the positioning boss 21 and the corresponding positioning hole 22, and the upper part of the positioning boss 21 is processed into a cone shape, so that the upper part of the positioning boss 21 forms a cone surface 211 along the circumferential direction, and when the material trays are stacked into the annealing furnace, the positioning boss 21 of the material tray at the lower layer can be conveniently inserted into the positioning hole 22 of the material tray at the upper layer.
In this embodiment, the copper foil annealing work or material rest that the C shape hook of being convenient for loaded still includes the charge bar, and the charge bar is provided with a plurality ofly, and the equipartition is equipped with a plurality of through-holes 141 on the chassis 1 of each charging tray, and each charge bar homoenergetic is worn to locate corresponding through-hole 141 along vertical direction, and the charge bar can support the chassis 1 cluster of each charging tray together, makes each charging tray form a stable whole in the annealing stove.
Further, as shown in fig. 4, the chassis 1 is a circular chassis, the circular chassis is a hollow structure, and no shielding object exists, so that the wind resistance is low, and the annealing structure uniformity of the rolled copper foil 01 is facilitated; the circular chassis comprises an annular plate 11, main rib plates 12 and auxiliary rib plates 13, the annular plate 11 of the embodiment is preferably an annular steel plate, the main rib plates 12 and the auxiliary rib plates 13 are preferably strip-shaped steel plates, the bottom of the positioning column 2 is positioned at the center of a circle defined by the annular plate 11, the main rib plates 12 are provided with a plurality of main rib plates 12, all the main rib plates 12 are radially connected between the annular plate 11 and the bottom of the positioning column 2, the auxiliary rib plates 13 are arranged between every two adjacent main rib plates 12, in the embodiment, the six main rib plates 12 are radially welded between the annular plate 11 and the bottom of the positioning column 2, and two auxiliary rib plates 13 are welded between every two adjacent main rib plates 12 to form a plate shearing frame structure, so that the strength of the circular chassis can be improved; a connecting plate 14 is arranged between the annular plate 11 and the adjacent auxiliary rib plate 13, a through hole 141 is formed in the connecting plate 14, and a material rod can be inserted into the through hole 141.
In this embodiment, a plurality of hoisting holes are uniformly distributed on the annular plate 11, a movable pin 4 is respectively penetrated in each hoisting hole, the movable pin 4 is slidably connected with the corresponding hoisting hole, the movable pin 4 is used for connecting a lifting appliance, and the lifting appliance is used for lifting a charging tray into the annealing furnace; as shown in fig. 7, the movable pin 4 of this embodiment is made of a circular tube 41 with two ends respectively welded with a steel plate 42, the sub-rib 13 adjacent to the annular plate 11 is also provided with a lifting hole, two ends of the circular tube 41 respectively penetrate through the lifting hole of the annular plate 11 and the lifting hole of the sub-rib 13 adjacent to the annular plate, the steel plates 42 at two ends of the circular tube 41 can play a role in limiting, when the material tray is lifted to the annealing furnace, the movable pin 4 is pulled out from the chassis 1 for connecting a lifting appliance, and when the lifting is completed, the movable pin 4 is returned to the chassis 1 so as not to hinder the lifting of other components in the annealing furnace.
In this embodiment, the material of the tray and the movable pin 4 are both 310S stainless steel.
The principle and the implementation mode of the utility model are explained by applying a specific embodiment, and the explanation of the embodiment is only used for helping to understand the method and the core idea of the utility model; meanwhile, for the general technical personnel in the field, according to the idea of the present invention, there are changes in the concrete implementation and the application scope. In summary, the content of the present specification should not be construed as a limitation of the present invention.

Claims (10)

1. The utility model provides a copper foil annealing work or material rest convenient to C shape hook is loaded which characterized in that: including the charging tray, the charging tray is used for placing in the annealing furnace, the charging tray includes chassis, reference column and bracket, the reference column vertical install in on the chassis, bracket horizontal installation in on the reference column, the bracket is used for wearing to establish in the core section of thick bamboo of calendering copper foil, keep away from on the bracket the one end of reference column is provided with the fluting, is used for hoist and mount the C shape hook of the core section of thick bamboo of calendering copper foil can be followed fluting business turn over the bracket.
2. The copper foil annealing stack facilitating C-hook loading of claim 1, wherein: the bracket includes the grooved tube, the one end of grooved tube with the lateral wall of reference column is connected, the other end top of grooved tube is followed the bar groove has been seted up to the axial of grooved tube, the bar groove is followed the radial of grooved tube runs through the top pipe wall of grooved tube, C shape hook can be followed bar groove business turn over the grooved tube.
3. The copper foil annealing stack facilitating C-hook loading of claim 2, wherein: the groove pipes are provided with a plurality of groups, each group of groove pipes comprises three groove pipes which are located at the same height and are uniformly distributed along the circumferential direction of the positioning column, and the groove pipes of different heights are uniformly distributed along the axial direction of the positioning column.
4. The copper foil annealing stack facilitating C-hook loading of claim 1, wherein: the charging tray is provided with a plurality ofly, each the charging tray can be from supreme stack in proper order down in the annealing stove, each is adjacent detachably connects between the charging tray.
5. The copper foil annealing stack facilitating C-hook loading of claim 4, wherein: the bottom of the positioning column is provided with a positioning hole, and the top of the positioning column is provided with a positioning boss, so that the positioning hole of the upper layer material tray can be buckled and connected with the positioning boss of the adjacent lower layer material tray.
6. The copper foil annealing stack for facilitating C-hook loading of claim 5, wherein: the copper foil annealing material rack convenient for the C-shaped hook to load materials further comprises a plurality of material rods, a plurality of through holes are uniformly distributed in the chassis of each material tray, and each material rod can penetrate through the corresponding through hole in the vertical direction.
7. The copper foil annealing stack for facilitating C-hook loading of claim 6, wherein: the circular chassis is a circular chassis which is of a hollow structure and comprises annular plates, a plurality of main rib plates and auxiliary rib plates, the bottom of the positioning column is located at the center of the annular plates, all the main rib plates are radially connected between the annular plates and the bottom of the positioning column, and the auxiliary rib plates are arranged between every two adjacent main rib plates; and a connecting plate is arranged between the annular plate and the adjacent auxiliary rib plate, and the connecting plate is provided with the through hole.
8. The copper foil annealing stack for facilitating C-hook loading of claim 7, wherein: a plurality of hoisting holes are uniformly distributed on the annular plate, movable pins penetrate through the hoisting holes respectively, the movable pins are connected with the corresponding hoisting holes in a sliding mode, and the movable pins are used for being connected with a lifting appliance.
9. The copper foil annealing stack facilitating C-hook loading of claim 2, wherein: the groove pipe is a circular pipe with the wall thickness larger than 10mm, and the width of the strip-shaped groove is 5mm larger than the thickness of the C-shaped hook; the positioning column is a circular tube with the wall thickness of 20 mm.
10. The copper foil annealing stack facilitating C-hook loading of claim 8, wherein: the material of the material tray and the movable pin is 310S stainless steel.
CN202222495307.6U 2022-09-20 2022-09-20 Copper foil annealing material rack convenient for C-shaped hook loading Active CN217973349U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222495307.6U CN217973349U (en) 2022-09-20 2022-09-20 Copper foil annealing material rack convenient for C-shaped hook loading

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222495307.6U CN217973349U (en) 2022-09-20 2022-09-20 Copper foil annealing material rack convenient for C-shaped hook loading

Publications (1)

Publication Number Publication Date
CN217973349U true CN217973349U (en) 2022-12-06

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Application Number Title Priority Date Filing Date
CN202222495307.6U Active CN217973349U (en) 2022-09-20 2022-09-20 Copper foil annealing material rack convenient for C-shaped hook loading

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20230907

Address after: 274000 Wudian Town, Mudan District, Heze City, Shandong Province

Patentee after: Heze Guangyuan Copper Co.,Ltd.

Patentee after: SHANDONG TIANHE ROLLED COPPER FOIL Co.,Ltd.

Address before: No. 1599, Huanghe West Road, hi tech Zone, Heze City, Shandong Province

Patentee before: SHANDONG TIANHE ROLLED COPPER FOIL Co.,Ltd.