CN220805643U - Steel cutting equipment - Google Patents

Steel cutting equipment Download PDF

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Publication number
CN220805643U
CN220805643U CN202321855156.9U CN202321855156U CN220805643U CN 220805643 U CN220805643 U CN 220805643U CN 202321855156 U CN202321855156 U CN 202321855156U CN 220805643 U CN220805643 U CN 220805643U
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CN
China
Prior art keywords
cutting
upright post
rod
clamping part
steel
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Active
Application number
CN202321855156.9U
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Chinese (zh)
Inventor
周海
艾娜
孙国俊
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Kunshan Shangshang Steel Metal Materials Co ltd
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Kunshan Shangshang Steel Metal Materials Co ltd
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Abstract

The utility model relates to the technical field of pipes and discloses steel cutting equipment. Comprising the following steps: the device comprises a cutting support flat plate, a displacement adjusting groove, an adjusting block, a pushing rod, an active clamping part, a passive clamping part, a supporting upright post, a supporting adjusting rod, a cutting disc, a cutting hole, a functional upright post, a longitudinal screw rod, a pressing roller body and a pressing roller body, wherein the pressing roller body is arranged on one side of a longitudinal sliding block, and a central shaft of the pressing roller body penetrates through the longitudinal sliding block and extends to the other side of the functional upright post; the compression roller rod is fixedly arranged at the middle shaft end of the compression roller body, a stop block is arranged at the top of the rectangular groove of the functional upright post, and the longitudinal screw rod upwards penetrates through the stop block to be provided with a rocker. According to the utility model, one side of the cutting support flat plate is fixedly provided with a group of functional upright posts, and the worm at the top of the longitudinal screw rod is operated to drive the longitudinal sliding block to longitudinally move, so that the press roller body can be close to the top of steel to be cut, the steel can be cut for a section by utilizing the shaking of the press roller rod to continue to walk forwards, and the active clamping part does not need to retract in the process, so that the whole operation is more efficient.

Description

Steel cutting equipment
Technical Field
The utility model relates to the technical field of steel cutting, in particular to steel cutting equipment.
Background
Steel is a steel ingot, billet or a material of a certain shape, size and properties made of steel by press working. Most steel products are processed by press working, and the steel (blank, ingot, etc.) to be processed is plastically deformed. The steel product can be divided into cold working and hot working according to the processing temperature.
Through patent retrieval discovery, a steel cutting equipment of publication number CN217890179U, through promoting centre gripping slider and slide damper, let it slide in centre gripping slide and baffle slide to this completion is to the adjustment of centre gripping position, and is comparatively nimble convenient, and it is comparatively nimble convenient to push away the mount, lets the cutting slider at the inside slip of cutting slide, drives the mount and removes, with this completion adjustment of cutting position, and is comparatively nimble convenient, and above-mentioned comparison document is when carrying out continuous cutting to steel sheet or steel, need move the steel again after cutting one section back with centre gripping position and steel separation, and cutting efficiency is lower to this kind of mode of longer steel.
Disclosure of utility model
In view of the shortcomings of the prior art, the present utility model provides a steel cutting apparatus that solves the problems noted in the background above.
The utility model provides the following technical scheme: comprising the following steps: the device comprises a cutting support flat plate, displacement adjusting grooves, adjusting blocks, a pushing rod, an active clamping part, a passive clamping part, a support upright post, a support adjusting rod, a cutting disc and a cutting hole, wherein the cutting hole is formed in the center of the surface of the cutting support flat plate, a plurality of groups of displacement adjusting grooves are formed in the upper end of the cutting support flat plate, the adjusting blocks are slidably mounted in the grooves of two adjacent groups of displacement adjusting grooves, the pushing rod is connected with the surface threads of the adjusting blocks, the pushing rod penetrates through the front end of the adjusting block to fixedly provide the active clamping part, the upper part of the other group of displacement adjusting grooves is slidably mounted with the passive clamping part, the upper part of the displacement adjusting groove at the most far end is slidably mounted with the support upright post, one side of the support upright post is provided with the support adjusting rod, one side of the support adjusting rod is provided with the cutting disc which is driven to rotate by a motor,
The functional upright post is fixedly arranged on the side wall of the pushing rod, and a rectangular groove is formed downwards at the upper part of the functional upright post;
the longitudinal screw is arranged in the rectangular groove of the functional upright post;
the longitudinal sliding block is sleeved on the periphery of the longitudinal screw rod and longitudinally slides in the rectangular groove;
the roller body is arranged on one side of the longitudinal sliding block, and a central shaft of the roller body penetrates through the longitudinal sliding block to extend to the other side of the functional upright post;
The compression roller rod is fixedly arranged at the middle shaft end of the compression roller body, a stop block is arranged at the top of the rectangular groove of the functional upright post, and the longitudinal screw rod upwards penetrates through the stop block to be provided with a rocker.
Further, the bottom of the displacement adjusting groove is provided with a limiting groove, the limiting grooves are distributed along the long section of the displacement adjusting groove at intervals, and the bottoms of the adjusting blocks and the passive clamping parts are provided with lugs matched with the limiting grooves.
Further, the tops of the two groups of adjusting blocks are connected through a U-shaped rod, and a plurality of groups of freely movable steel balls are arranged on the end face, close to the passive clamping part, of the active clamping part.
Further, a cavity is formed in the support upright post, and the cavity is connected with the tail end of the support adjusting rod through a shaft.
Further, the side wall of the supporting upright post and the side surface of the supporting adjusting rod, which is close to the supporting upright post, are connected with connecting springs, transverse grooves are formed in the two side walls of the cavity of the cutting hole, and a central supporting plate which is the same as the upper end part of the cutting supporting plate in a sliding mode is arranged in the transverse grooves.
Further, a chute is formed in the bottom of the cutting support flat plate, and a debris collection bin connected with the chute is arranged below the cutting support flat plate.
Compared with the prior art, the utility model has the following beneficial effects:
According to the application, one side of the cutting support flat plate is fixedly provided with a group of functional upright posts, and the worm at the top of the longitudinal screw rod is operated to drive the longitudinal sliding block to longitudinally move, so that the press roller body can be close to the top position of steel to be cut, the steel can be cut for a certain period by utilizing the shaking of the press roller rod and then can continue to walk forwards, the active clamping part does not need to retract in the process, the whole operation is more efficient, intermittent rapid cutting of a longer steel pipe can be realized, and compared with the cutting mode of a comparison document, the cutting is more labor-saving, the cutting efficiency is higher, and the working difficulty is reduced.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a bottom view of the present utility model;
Figure 3 is a side view of a functional post of the present utility model.
In the figure: 1. cutting the support plate; 2. a center support plate; 3. a displacement adjusting groove; 4. an adjusting block; 5. a propulsion rod; 6. an active clamping part; 7. a passive clamping part; 8. a support column; 9. supporting the adjusting rod; 10. a connecting spring; 11. cutting the disc; 12. a limit groove; 13. a debris collection bin; 14. cutting the hole; 15. a functional upright; 16. a longitudinal screw; 17. a longitudinal slide block; 18. a press roller body; 19. and a press roller rod.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, the method includes: the cutting support plate 1, the displacement adjusting grooves 3, the adjusting blocks 4, the pushing rods 5, the active clamping parts 6, the passive clamping parts 7, the supporting upright posts 8, the supporting adjusting rods 9, the cutting discs 11 and the cutting holes 14 are formed in the center of the surface of the cutting support plate 1, the cutting holes 14 are formed in the upper end part of the cutting support plate 1, a plurality of groups of the displacement adjusting grooves 3 are formed in the upper end part of the cutting support plate 1, the adjusting blocks 4 are slidably mounted in the grooves of the two adjacent groups of the displacement adjusting grooves 3, the pushing rods 5 are connected with the pushing rods 5 through the surface threads of the adjusting blocks 4, the active clamping parts 6 are fixedly arranged at the front end parts of the pushing rods 5, the upper parts of the other groups of the displacement adjusting grooves 3 are slidably mounted with the passive clamping parts 7, the supporting upright posts 8 are slidably mounted at the upper parts of the most-far-end displacement adjusting grooves 3, the supporting adjusting rods 9 are mounted on one side of the supporting upright posts 8, the cutting discs 11 which are driven to rotate by a motor are mounted on one side of the supporting adjusting rods 9, the displacement adjusting grooves 3 below the two groups of adjusting blocks 4 can allow the adjusting blocks 4 to transversely move along the grooves of the displacement adjusting grooves 3, the displacement adjusting grooves 3 at the bottom of the passive clamping part 7 can enable the passive clamping part 7 to transversely move along the displacement adjusting grooves 3, when the device is used, the two groups of adjusting blocks 4 and the passive clamping part 7 need to be kept on the same straight line, steel can be clamped between the surfaces of the active clamping part 6 and the passive clamping part 7, the displacement adjusting grooves 3 at the bottom of the supporting upright post 8 are used for transversely moving the supporting upright post 8 along the grooves of the displacement adjusting grooves 3, the cutting position can be adjusted by adjusting the supporting upright post 8, the clamping position can be adjusted by adjusting the adjusting blocks 4 and the passive clamping part 7, the cutting holes 14 adopt a rectangular cavity design, the inside of the cutting holes 14 can be cutting points, in order to realize the support of the bottom of part of steel, a central supporting plate 2 capable of transversely moving in the cutting hole 14 is arranged at the bottom of the cutting hole 14, the top of the central supporting plate 2 is flush with the surface of the cutting supporting plate 1, the central supporting plate 2 can be moved to a proper position to support the steel when required, the cutting hole 14 with larger opening can enable scraps to fall down through the cutting hole 14 in the steel cutting process, a scraps collecting bin 13 is arranged below the cutting hole 14, two groups of sliding grooves are arranged at the bottom of the cutting supporting plate 1, the scraps collecting bin 13 can slide in the sliding grooves and cannot be longitudinally separated, one side of the scraps collecting bin 13 is provided with an opening, the other side of the scraps collecting bin 13 is closed, so that the scraps stored in the scraps collecting bin 13 can be processed by transversely drawing out of the sliding grooves, the distance between the bottoms of the two groups of displacement regulating grooves 3 positioned at the lower parts of the regulating blocks 4 is provided with a plurality of groups of limiting grooves 12, the bottoms of the regulating blocks 4 are provided with projections matched with the limiting grooves 12, when the two groups of regulating blocks 4 are lifted, the regulating blocks 4 can be transversely moved and inserted into the other groups of limiting grooves 12 to finish the regulation of the positions, the passive clamping part 7 and the regulating blocks 4 are in the same regulation mode, the tops of the two groups of regulating blocks 4 are provided with U-shaped rods, the regulating blocks 4 are conveniently operated, the inside of the supporting upright post 8 is provided with a cavity, the cavity is connected with the tail end of the supporting regulating rod 9 through a shaft, the side wall of the supporting upright post 8 and the side surface of the supporting regulating rod 9 close to the supporting upright post 8 are connected with a detachable connecting spring 10, under the pull rope of the connecting spring 10, after the motor drives the cutting disc 11 to rotate and the cutting of steel at the lower part is finished, the support adjustment lever 9 can be driven back by means of a connecting spring 10, which is the same principle as the reference document.
The functional upright post 15 is fixedly arranged on the side wall of the pushing rod 5, and a rectangular groove is formed downwards at the upper part of the functional upright post 15; the longitudinal screw 16 is arranged in the rectangular groove of the functional upright 15; the longitudinal sliding block 17 is sleeved on the periphery of the longitudinal screw 16 and longitudinally slides in the rectangular groove; the roller body 18 is arranged on one side of the longitudinal sliding block 17, and the center shaft of the roller body 18 passes through the longitudinal sliding block 17 and extends to the other side of the functional upright post 15; the press roller rod 19 is fixedly arranged at the middle shaft end of the press roller body 18, a stop block is arranged at the top of a rectangular groove of the functional upright post 15, the vertical screw rod 16 upwards penetrates through the stop block to be provided with a rocker, the vertical screw rod 16 can be driven to rotate by operating the rocker at the top of the vertical screw rod 16, the vertical screw rod 16 can be driven to longitudinally move by meshing the vertical slide block 17 sleeved outside the vertical screw rod 16 along the rectangular groove of the functional upright post 15, the press roller body 18 on one side of the functional upright post 15 can be driven to longitudinally move, the shaft of the press roller body 18 penetrates through the inside of the vertical slide block 17 to the other side, the shaft connected rod is at a position close to one side of the vertical slide block 17, the meshing of the vertical screw rod 16 and the vertical slide block 17 is not influenced, the press roller body 18 is finally attached to the upper surface of steel, then the press roller body 18 is driven to rotate by operating the press roller rod 19, and steel is driven to move by the steel balls which can freely move along with the surface of the active clamping part 6, and the cut steel can move forwards.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A steel cutting apparatus comprising: cutting support flat (1), displacement adjustment groove (3), regulating block (4), push rod (5), initiative clamping part (6), passive clamping part (7), support column (8), support regulation pole (9), cutting disc (11) and cutting hole (14), cutting hole (14) have been seted up to the surface center part of cutting support flat (1), a plurality of displacement adjustment groove (3) of group have been seted up to the upper end of cutting support flat (1), wherein the in-tank sliding mounting of two adjacent displacement adjustment groove (3) has regulating block (4), the surface threaded connection of regulating block (4) has push rod (5), the front end that push rod (5) passed regulating block (4) has set firmly initiative clamping part (6), the upper portion slidable mounting of another group displacement adjustment groove (3) has passive clamping part (7), the upper portion slidable mounting of the displacement adjustment groove (3) of the most distant end has support column (8), one side of support column (8) installs support regulation pole (9), one side of support regulation pole (9) is installed and is utilized motor drive rotatory disc (11),
It is characterized in that the method comprises the steps of,
The functional upright post (15) is fixedly arranged on the side wall of the pushing rod (5), and a rectangular groove is formed downwards at the upper part of the functional upright post (15);
the longitudinal screw (16) is arranged in the rectangular groove of the functional upright post (15);
The longitudinal sliding block (17) is sleeved on the periphery of the longitudinal screw rod (16) and longitudinally slides in the rectangular groove;
The roller body (18) is arranged on one side of the longitudinal sliding block (17), and the center shaft of the roller body (18) penetrates through the longitudinal sliding block (17) to extend to the other side of the functional upright post (15);
The compression roller rod (19) is fixedly arranged at the center shaft end of the compression roller body (18), a stop block is arranged at the top of the rectangular groove of the functional upright post (15), and the longitudinal screw rod (16) upwards penetrates through the stop block to be provided with a rocker.
2. The steel cutting equipment according to claim 1, characterized in that the bottom of the displacement adjusting groove (3) is provided with a limiting groove (12), the limiting groove (12) is distributed with a plurality of groups along the long section transverse interval of the displacement adjusting groove (3), and the bottoms of the adjusting block (4) and the passive clamping part (7) are provided with a lug matched with the limiting groove (12).
3. The steel cutting device according to claim 1, characterized in that the tops of the two groups of adjusting blocks (4) are connected through a U-shaped rod, and the end face of the active clamping part (6) close to the passive clamping part (7) is provided with a plurality of groups of freely movable steel balls.
4. A steel cutting device according to claim 1, characterized in that the inside of the support post (8) is provided with a cavity, which is connected with the end of the support adjustment rod (9) by means of a shaft.
5. The steel cutting device according to claim 4, wherein the side wall of the supporting upright post (8) and the side surface of the supporting adjusting rod (9) close to the supporting upright post (8) are connected with a connecting spring (10), transverse grooves are formed in the two side walls of the cavity of the cutting hole (14), and a central supporting plate (2) which is in the same horizontal plane as the upper end part of the cutting supporting plate (1) is arranged in the transverse grooves in a sliding mode.
6. A steel cutting device according to claim 1, characterized in that the bottom of the cutting support plate (1) is provided with a chute, and that the lower side of the cutting support plate (1) is provided with a chip collecting bin (13) connected with the chute.
CN202321855156.9U 2023-07-14 2023-07-14 Steel cutting equipment Active CN220805643U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321855156.9U CN220805643U (en) 2023-07-14 2023-07-14 Steel cutting equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321855156.9U CN220805643U (en) 2023-07-14 2023-07-14 Steel cutting equipment

Publications (1)

Publication Number Publication Date
CN220805643U true CN220805643U (en) 2024-04-19

Family

ID=90698369

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321855156.9U Active CN220805643U (en) 2023-07-14 2023-07-14 Steel cutting equipment

Country Status (1)

Country Link
CN (1) CN220805643U (en)

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