CN215467547U - Die for bending angle steel in chemical machinery - Google Patents
Die for bending angle steel in chemical machinery Download PDFInfo
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- CN215467547U CN215467547U CN202121746085.XU CN202121746085U CN215467547U CN 215467547 U CN215467547 U CN 215467547U CN 202121746085 U CN202121746085 U CN 202121746085U CN 215467547 U CN215467547 U CN 215467547U
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- angle steel
- die
- cover plate
- auxiliary wheel
- apron
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- 229910000831 Steel Inorganic materials 0.000 title claims abstract description 85
- 239000010959 steel Substances 0.000 title claims abstract description 85
- 238000005452 bending Methods 0.000 title claims abstract description 45
- 239000000126 substance Substances 0.000 title claims abstract description 15
- 230000006978 adaptation Effects 0.000 claims 2
- 238000000034 method Methods 0.000 abstract description 4
- 229910000746 Structural steel Inorganic materials 0.000 description 3
- 125000006850 spacer group Chemical group 0.000 description 3
- 238000004519 manufacturing process Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 235000000396 iron Nutrition 0.000 description 1
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Abstract
The utility model discloses a die for bending angle steel in chemical machinery, which relates to the technical field of angle steel processing, and comprises a main wheel die and an auxiliary wheel die which are arranged at left and right intervals and used for bending the angle steel; the first cover plate is used for being arranged on one side of the auxiliary wheel mold, the auxiliary wheel mold and the first cover plate are distributed at intervals up and down, and one or more first gaskets are arranged between the auxiliary wheel mold and the first cover plate. The main wheel die and the auxiliary wheel die provided by the utility model are matched with the first cover plate and the first gasket for use, so that the angle steel can be subjected to outward bending operation, the angle steel can adapt to angle steels with different thicknesses, tools of a plurality of models are not required to be purchased and used additionally, the cost for processing the angle steel is effectively saved, and meanwhile, when a plurality of angle steels with different thicknesses are bent, the quantity of the first gaskets is only required to be added or reduced, the workload of the angle steel bending process is reduced, and the angle steel bending efficiency is improved.
Description
Technical Field
The utility model relates to the technical field of angle steel processing, in particular to a die for bending angle steel in chemical machinery.
Background
Angle iron is commonly called angle iron and is a long steel bar with two sides perpendicular to each other to form an angle shape.
At present, when angle steel is produced and processed, angle steel needs to be bent, but when the angle steel with different sizes is bent, tools with different sizes need to be replaced, and the plurality of bending tools with different sizes can not only increase the cost of angle steel production of manufacturers, but also reduce the efficiency of angle steel bending in the production process; and the existing bending die needs to be replaced when the same angle steel is subjected to outward bending and inward bending.
SUMMERY OF THE UTILITY MODEL
The utility model mainly aims to provide a die for bending angle steel in chemical machinery, which can bend angle steel with different sizes without replacing a bending tool, and further does not need to frequently replace different dies when bending the angle steel from outside to inside.
The purpose of the utility model can be achieved by adopting the following technical scheme:
a mould that is used for angle steel to bend among chemical machinery, include
The main wheel die and the auxiliary wheel die are arranged at left and right intervals and used for bending the angle steel;
the first cover plate is used for being arranged on one side of the auxiliary wheel mold, the auxiliary wheel mold and the first cover plate are distributed at intervals up and down to clamp angle steel, one or more first gaskets are arranged between the auxiliary wheel mold and the first cover plate and used for adjusting the distance between the auxiliary wheel mold and the first cover plate to adapt to the angle steel with different thicknesses.
Preferably, the second cover plate is arranged on one side of the main wheel die, the main wheel die and the second cover plate are distributed at intervals up and down to clamp the angle steel, and one or more second gaskets are arranged between the main wheel die and the second cover plate and used for adjusting the distance between the main wheel die and the second cover plate to adapt to the angle steel with different thicknesses.
Preferably, a plurality of first screw holes are formed in one side face, close to the first cover plate, of the auxiliary wheel mold, a plurality of second screw holes penetrate through the top face of the first gasket, a plurality of third screw holes penetrate through the top face of the first cover plate, and fixing screw rods are inserted into the first screw holes, the second screw holes and the third screw holes which correspond to each other from top to bottom, so that the auxiliary wheel mold, the first gasket and the first cover plate are fixedly connected.
Preferably, a fourth screw hole penetrates through one surface of the second cover plate, a fifth screw hole penetrates through one surface of the second gasket, a sixth screw hole is formed in one side surface, close to the second cover plate, of the main wheel mold, and fixing screws penetrate through the sixth screw hole, the fifth screw hole and the fourth screw hole which correspond to each other from top to bottom, so that the main wheel mold, the second gasket and the second cover plate are fixedly connected.
Preferably, first spacing grooves are formed in the opposite surfaces of the first cover plate and the auxiliary wheel die, and the first gasket is arranged on the inner sides of the first spacing grooves in the first cover plate and the auxiliary wheel die.
Preferably, the second cover plate and the opposite surface of the main wheel mold are both provided with a limiting groove, and the second gasket is arranged on the inner sides of the limiting grooves on the second cover plate and the main wheel mold.
The utility model has the beneficial technical effects that:
1. the main wheel die and the auxiliary wheel die provided by the utility model are matched with the first cover plate and the first gasket for use, so that the angle steel can be subjected to outward bending operation, the angle steel can adapt to angle steels with different thicknesses, tools of a plurality of models are not required to be purchased and used additionally, the cost for processing the angle steel is effectively saved, and meanwhile, when a plurality of angle steels with different thicknesses are bent, the quantity of the first gaskets is only required to be added or reduced, the workload of the angle steel bending process is reduced, and the angle steel bending efficiency is improved.
2. The main wheel die and the auxiliary wheel die provided by the utility model are matched with the second cover plate and the second gasket for use, the angle steel can be subjected to inward bending operation, the angle steel can adapt to angle steels with different thicknesses, tools of a plurality of types are not required to be purchased and used additionally, the cost for processing the angle steel is effectively saved, meanwhile, when a plurality of angle steels with different thicknesses are bent, the number of the second gaskets is only required to be added or reduced, the workload of the angle steel bending process is reduced, the angle steel bending efficiency is improved, and when the same angle steel is subjected to outward bending and inward bending operation, the dies are not required to be frequently replaced.
Drawings
FIG. 1 is a sectional view schematically illustrating a structure of a sub-wheel mold and a first cover plate in a use state according to an embodiment of the present invention;
FIG. 2 is a schematic cross-sectional view of a main wheel mold and a second cover plate according to an embodiment of the present invention;
fig. 3 is a sectional view schematically illustrating a main wheel mold and a second cover plate in use according to an embodiment of the present invention.
In the figure: 1-main wheel mold, 2-auxiliary wheel mold, 3-first cover plate, 4-first limiting groove, 5-first gasket, 6-first screw hole, 7-second screw hole, 8-third screw hole, 9-limiting groove, 10-second gasket, 11-second cover plate, 12-fourth screw hole, 13-fifth screw hole, 14-sixth screw hole, 15-fixing screw rod and 16-angle steel.
Detailed Description
In order to make the technical solutions of the present invention more clear and definite for those skilled in the art, the present invention is further described in detail below with reference to the examples and the accompanying drawings, but the embodiments of the present invention are not limited thereto.
As shown in fig. 1 to 3, the die for bending angle steel in chemical machinery provided in this embodiment includes
The main wheel die 1 and the auxiliary wheel die 2 are arranged at left and right intervals and are used for bending the angle steel 16;
the first cover plate 3 is used for being arranged on one side of the auxiliary wheel die 2, the auxiliary wheel die 2 and the first cover plate 3 are distributed at intervals up and down to clamp angle steel 16, one or more first gaskets 5 are arranged between the auxiliary wheel die 2 and the first cover plate 3, the first gaskets 5 can be the same in thickness or different in thickness, the second gasket 10 is used for adjusting the interval between the auxiliary wheel die 2 and the first cover plate 3 to adapt to the angle steel with different thicknesses,
when first apron 3 sets up in the below of auxiliary wheel mould 2, the main wheel mould 1 that the interval set up about is used for bending angle steel 16 with auxiliary wheel mould 2, and upper and lower interval distribution's auxiliary wheel mould 2 and first apron 3 are used for the another part of centre gripping angle steel 16, and first apron 3 has partly to be located the below of main wheel mould 1, and spacing groove 9 on the main wheel mould 1 faces up, and does not have second gasket 10 and second apron 11, is in the state of carrying out the excurvation to angle steel 16 this moment.
In this embodiment, as shown in fig. 3, a second cover plate 11 is further included, the second cover plate 11 is configured to be disposed at one side of the main wheel mold 1, the main wheel mold 1 and the second cover plate 11 are spaced up and down to clamp the angle iron 16, one or more second spacers 10 are disposed between the main wheel mold 1 and the second cover plate 11 to adjust the distance between the main wheel mold 1 and the second cover plate 11 to adapt to the angle irons 16 with different thicknesses,
when the second cover plate 11 is arranged below the main wheel mold 1, namely the limiting groove 9 on the main wheel mold 1 is downward, the limiting groove 9 on the auxiliary wheel mold 2 is upward at the moment, the first gasket 5 and the first cover plate 3 are not arranged, the main wheel mold 1 and the auxiliary wheel mold 2 which are arranged at left and right intervals are used for bending the other part of the angle steel 16, the main wheel mold 1 and the second cover plate 11 which are distributed at upper and lower intervals are used for clamping one part of the angle steel 16, and the second cover plate 11 is provided with one part which is positioned below the auxiliary wheel mold 2 and is in a state of inward bending the angle steel 16 at the moment.
In this embodiment, as shown in fig. 1, a plurality of first screw holes 6 have been seted up to the side that vice wheel mould 2 is close to first apron 3, the top surface of first gasket 5 runs through there are a plurality of second screw holes 7, the top surface of first apron 3 runs through there are a plurality of third screw holes 8, and the first screw hole 6 that corresponds from top to bottom, second screw hole 7 and third screw hole 8 interpenetration have fixing screw, so that vice wheel mould 2, first gasket 5 and 3 three fixed connection of first apron, the centre gripping is fixed when conveniently carrying out the outer bend to angle steel 16.
In this embodiment, as shown in fig. 2, a fourth screw hole 12 penetrates through one surface of the second cover plate 11, a fifth screw hole 13 penetrates through one surface of the second gasket 10, a sixth screw hole 14 is formed in a side surface of the main wheel mold 1 close to the second cover plate 11, and fixing screws penetrate through the sixth screw hole 14, the fifth screw hole 13 and the fourth screw hole 12 which correspond to each other up and down, so that the main wheel mold 1, the second gasket 10 and the second cover plate 11 are fixedly connected, and the angle steel 16 can be conveniently clamped and fixed when being bent inwards.
In this embodiment, as shown in fig. 1, first limiting grooves 4 are formed in opposite surfaces of the first cover plate 3 and the pinion mold 2, the first spacers 5 are disposed inside the first limiting grooves 4 of the first cover plate 3 and the pinion mold 2, and the first spacers 5 with different numbers or different thicknesses can be stacked according to the thickness of the current angle steel 16, so that the angle steel 16 with different thicknesses can be clamped by the first cover plate 3 and the pinion mold 2.
In this embodiment, as shown in fig. 3, the second cover plate 11 and the main wheel mold 1 are provided with a limiting groove 9 on opposite surfaces thereof, the second gasket 10 is disposed on the second cover plate 11 and the main wheel mold 1 at inner sides of the limiting groove 9, and the second gaskets 10 with different numbers or different thicknesses can be used for stacking according to the thickness of the current angle steel 16, so that the second cover plate 11 and the main wheel mold 1 can clamp the angle steel 16 with different thicknesses.
To sum up, in this embodiment, the main wheel mould 1 and the auxiliary wheel mould 2 that this embodiment provided and the cooperation between first apron 3 and first gasket 5 are used, can carry out the operation of bending outward to the angle steel, also can adapt to the angle steel of different thickness, need not to purchase in addition and use the instrument of a plurality of models, the effectual cost of having practiced thrift processing angle steel, simultaneously when bending the angle steel of a plurality of thickness differences, only need add or reduce the quantity of first gasket 5 can, the work load of the process of bending to the angle steel has been reduced, the efficiency of bending of angle steel has been improved.
The above description is only for the purpose of illustrating the present invention and is not intended to limit the scope of the present invention, and any person skilled in the art can substitute or change the technical solution of the present invention and its conception within the scope of the present invention.
Claims (8)
1. The utility model provides a be used for angle steel mould of bending among chemical machinery which characterized in that: comprises that
The main wheel die (1) and the auxiliary wheel die (2) are arranged at left and right intervals and are used for bending the angle steel;
first apron (3), first apron (3) are used for setting up the one side at auxiliary wheel mould (2), interval distribution about auxiliary wheel mould (2) and first apron (3) to the centre gripping angle steel, be provided with one or more first gasket (5) between auxiliary wheel mould (2) and first apron (3) for adjust the interval between auxiliary wheel mould (2) and first apron (3), with the angle steel of adaptation different thickness.
2. The die for bending angle steel in chemical machinery according to claim 1, wherein the die comprises: still including second apron (11), second apron (11) are used for setting up the one side at main wheel mould (1), interval distribution about main wheel mould (1) and second apron (11) to the centre gripping angle steel, be provided with one or more second gasket (10) between main wheel mould (1) and second apron (11) for adjust the interval between main wheel mould (1) and second apron (11), with the angle steel of adaptation different thickness.
3. The die for bending angle steel in chemical machinery according to claim 1, wherein the die comprises: a plurality of first screws (6) are arranged on one side face, close to the first cover plate (3), of the auxiliary wheel mold (2), a plurality of second screws (7) penetrate through the top face of the first gasket (5), a plurality of third screws (8) penetrate through the top face of the first cover plate (3), and fixing screws penetrate through the vertically corresponding first screws (6), second screws (7) and third screws (8) to enable the auxiliary wheel mold (2), the first gasket (5) and the first cover plate (3) to be fixedly connected.
4. The die for bending angle steel in chemical machinery according to claim 2, wherein: one side of the second cover plate (11) is penetrated with a fourth screw hole (12), one side of the second gasket (10) is penetrated with a fifth screw hole (13), a side face, close to the second cover plate (11), of the main wheel mold (1) is provided with a sixth screw hole (14), and fixing screws are inserted into the sixth screw hole (14), the fifth screw hole (13) and the fourth screw hole (12) which correspond up and down, so that the main wheel mold (1), the second gasket (10) and the second cover plate (11) are fixedly connected.
5. The die for bending angle steel in chemical machinery according to claim 1, wherein the die comprises: first spacing groove (4) have all been seted up to first apron (3) and the relative one side of auxiliary wheel mould (2), first gasket (5) set up the inboard in first spacing groove (4) on first apron (3) and auxiliary wheel mould (2).
6. The die for bending angle steel in chemical machinery according to claim 2, wherein: spacing groove (9) have all been seted up to second apron (11) and the relative one side of main round mould (1), second gasket (10) set up the inboard in spacing groove (9) on second apron (11) and main round mould (1).
7. The die for bending angle steel in chemical machinery according to claim 1, wherein the die comprises: when the first cover plate (3) is arranged below the auxiliary wheel mold (2), the main wheel mold (1) and the auxiliary wheel mold (2) which are arranged at left and right intervals are used for bending one part of the angle steel, the auxiliary wheel mold (2) and the first cover plate (3) which are distributed at upper and lower intervals are used for clamping the other part of the angle steel, and one part of the first cover plate (3) is positioned below the main wheel mold (1).
8. The die for bending angle steel in chemical machinery according to claim 2, wherein: when the second cover plate (11) is arranged below the main wheel die (1), the main wheel die (1) and the auxiliary wheel die (2) which are arranged at left and right intervals are used for bending the other part of the angle steel, the main wheel die (1) and the second cover plate (11) are distributed at upper and lower intervals and used for clamping one part of the angle steel, and one part of the second cover plate (11) is positioned below the auxiliary wheel die (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121746085.XU CN215467547U (en) | 2021-07-29 | 2021-07-29 | Die for bending angle steel in chemical machinery |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121746085.XU CN215467547U (en) | 2021-07-29 | 2021-07-29 | Die for bending angle steel in chemical machinery |
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Publication Number | Publication Date |
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CN215467547U true CN215467547U (en) | 2022-01-11 |
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CN202121746085.XU Active CN215467547U (en) | 2021-07-29 | 2021-07-29 | Die for bending angle steel in chemical machinery |
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CN (1) | CN215467547U (en) |
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2021
- 2021-07-29 CN CN202121746085.XU patent/CN215467547U/en active Active
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GR01 | Patent grant | ||
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TR01 | Transfer of patent right |
Effective date of registration: 20231218 Address after: No. 67 Hengyuan Road, Dantu District, Zhenjiang City, Jiangsu Province, 212000 Patentee after: Jiangsu Haichuan Petrochemical Engineering Technology Co.,Ltd. Address before: 212000 No. 67, Hengyuan Road, Dantu new town, Zhenjiang City, Jiangsu Province Patentee before: JIANGSU KUNZHONG MACHINERY Co.,Ltd. |