A sheet processing apparatus

By precisely adjusting the double-roller extrusion structure and designing uniform force, the problem of uneven thickness in thin sheet forming is solved, achieving precise control of thin sheet processing and enhancing equipment durability.

CN119747434BActive Publication Date: 2026-03-20NANTONG TONGOU INTELLIGENT EQUIP TECH CO LTD
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Patent Information

Application Number
CN202411958546.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-03-20
Estimated Expiration
2044-12-30

AI Technical Summary

Technical Problem

Existing thin plate processing equipment cannot effectively control the forming thickness of thin plates, resulting in uneven processing and easy equipment damage.

Method used

The double-roller extrusion structure is adopted. By adjusting the bolts between the upper adjusting limit slide and the lower fixed limit slide, combined with the conical inclined slide groove and the drive threaded slide, the extrusion rollers can be precisely adjusted and the force can be evenly distributed, thus ensuring the precise control of the thickness of the thin plate.

Benefits of technology

It enables precise adjustment of sheet thickness and uniform forming, reduces the risk of equipment damage, and improves processing efficiency and finished product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the field of machining, more particularly to a thin plate processing equipment, a thin plate processing equipment, including upper adjusting limiting slide plate, lower fixed limiting slide plate and extrusion slide roller, the upper adjusting limiting slide plate and the lower fixed limiting slide plate are symmetrically slidably provided with extrusion slide roller for repeated clamping; the upper adjusting limiting slide plate and the lower fixed limiting slide plate are symmetrically provided with tapered inclined sliding groove, and the tapered inclined sliding groove is a limiting sliding groove with symmetrical inclination at both ends and horizontal in the middle; the present application has the beneficial effects that by adjusting the gap between extrusion, the thickness of the thin plate after extrusion is ensured, by the reciprocating automatic extrusion, the damage of the equipment is effectively reduced, the stress is as uniform as possible, and the formed thin plate is more uniform; at the same time, the thin plate processing can be carried out after the pipe cutting and unfolding, and the recycling processing of waste pipe is completed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of mechanical processing, more particularly to a thin plate processing equipment. BACKGROUND

[0002] The hydraulic drive is used to extrude the waste steel products to form a thin plate, which is convenient for recycling and recycling, and can also be recycled in different environments to reduce carbon pollution and protect the repeated use of steel products; Patent No. CN202010095441.X discloses a flattening device for metal thin plate processing, which comprises a base, a workpiece arranged on the base, a pushing mechanism arranged in the base, a side plate vertically fixedly connected to one side of the base, a top plate fixedly connected to the upper end of the side plate and located on the upper end of the base, a solid square trigger block fixedly connected to the lower end of the top plate, and a liquid storage cavity and a connecting cavity sequentially arranged in the trigger block from left to right. The advantages are that the roller contacts the workpiece, the workpiece height is used to lift the first mounting frame, the adjusting cylinder, the driven rod and the piston plate, and then the conductive liquid in the liquid storage cavity is extruded into the connecting cavity through the one-way liquid outlet hole, realizing the conduction between the two conductive blocks, and then the oil cylinder is extended, the flattening roller is used to flatten the workpiece. Under the pushing of the pushing mechanism, the workpiece needs to be flattened and will receive the downward pressure force of the flattening roller, avoiding the case that the flattening roller is always in contact with the workpiece and has friction resistance, so that the pushing speed is low. However, the extrusion of the device cannot guarantee the regulation of the thickness of the formed thin plate. SUMMARY

[0003] The purpose of the present application is to provide a thin plate processing equipment, which has the advantages of effectively adjusting the thickness of the processed thin plate through double-roller extrusion, and then processing thin plates of different thickness specifications.

[0004] The purpose of the present application is achieved by the following technical solutions:

[0005] A thin plate processing equipment, comprising an upper adjusting limiting slide plate, a lower fixed limiting slide plate and an extrusion slide roller, the upper adjusting limiting slide plate and the lower fixed limiting slide plate are symmetrically provided with an extrusion slide roller for repeated clamping and pressing, and the upper adjusting limiting slide plate and the lower fixed limiting slide plate are connected by bolt adjustment.

[0006] The upper adjusting limiting slide plate and the lower fixed limiting slide plate are symmetrically provided with a conical inclined sliding groove, which is a limiting sliding groove with symmetrical inclination at both ends and horizontal in the middle.

[0007] Both ends of the extrusion slide roller are limited to slide in the conical inclined sliding groove of the limiting sliding track through the limiting sliding block; at the same time, both ends of the extrusion slide roller are longitudinally slid in the driving thread sliding seat for driving connection through the limiting sliding block.

[0008] The two ends of the lower fixed limiting sliding plate are fixedly connected with the side fixed table, the upper adjusting limiting sliding plate and the lower fixed limiting sliding plate are adjusted through the scale adjusting lifting bolt, the scale adjusting lifting bolt is threadedly connected in the upper adjusting limiting sliding plate and rotates in the side fixed table.

[0009] By adjusting the gap between extrusion, the thickness of the sheet formed by extrusion is ensured, by repeated reciprocating automatic extrusion, the damage of the equipment is effectively reduced, the stress is as uniform as possible, the formed sheet is more uniform, the sheet processing can be carried out after the pipe cutting and unfolding, and the recycling processing of waste pipe is completed. BRIEF DESCRIPTION OF DRAWINGS

[0010] Figure 1 is the structure schematic diagram of the extrusion structure of the present application;

[0011] Figure 2 is the structure schematic diagram of the extrusion structure drive of the present application Figure 1 ;

[0012] Figure 3 is the structure schematic diagram of the extrusion structure drive of the present application Figure 2 ;

[0013] Figure 4 is the structure schematic diagram of the whole of the present application Figure 1 ;

[0014] Figure 2 is the structure schematic diagram of the whole of the present application Figure 6 ;

[0015] Figure 1 is the structure schematic diagram of the processing raw material propulsion of the present application Figure 7 ;

[0016] Figure 2 is the structure schematic diagram of the processing raw material propulsion of the present application Figure 8 ;

[0017] Figure 9 is the structure schematic diagram of the screw variable frequency driver of the present application;

[0018] Figure 10 is the structure schematic diagram of the pipe cutting frame of the present application;

[0019] Figure 1 is the structure schematic diagram of the pipe cutting frame adjustment of the present application.

[0020] In the figure: up adjustment limit slide plate 1; lower fixed limit slide plate 2; conical inclined chute 3; side fixed table 4; scale adjustment lifting bolt 5; extrusion slide roller 6; limit slide block 7; driving threaded slide 8; driving threaded shaft 9; reciprocating frequency converter driver 10; fixed base 11; extension support table 12; advancing support table 13; clamping advancing table 14; threaded frequency converter driver 15; pipe cutting frame 16; sliding adjustment clamp plate 17; fixed clamp plate 18; pipe cutting device 19; pipe expander 20; cutting adjustment bolt 21; cutting longitudinal insertion frame 22; DETAILED DESCRIPTION

[0021] The application will be further described in detail below with reference to the accompanying drawings.

[0022] As shown in the embodiments shown here,

[0023] By adjusting the gap between extrusion, and then ensuring the thickness of the finished sheet, by repeated reciprocating automatic extrusion, effectively reducing the damage of the equipment, at the same time, the stress is as uniform as possible, and the formed sheet is more uniform; At the same time, the sheet processing can be carried out after the pipe cutting and expansion, and the recycling and processing of waste pipes are completed.

[0024] According to Figure 2 , Figure 3 , Figure 4 and Figure 1 The working process of a sheet processing equipment example is shown as follows:

[0025] By adjusting the relative position between the upper adjustment limit slide plate 1 and the lower fixed limit slide plate 2, the space gap between the two extrusion slide rollers 6 for extrusion is accurately adjusted, and the thickness of the sheet formed by extrusion is accurately adjusted, so as to ensure the accuracy of extrusion processing.

[0026] Further optimization is combined with the above embodiments:

[0027] Further according to Figure 2 , Figure 3 , Figure 4 and Figure 1 The working process of a sheet processing equipment example is shown as follows:

[0028] The symmetrical inclination of the two ends of the conical inclined chute 3 and the horizontal design in the middle are to collide in the middle during the trajectory process, and by continuously driving reciprocally, the added sheet is continuously extruded reciprocally until the thickness between the two extrusion slide rollers 6 is adjusted.

[0029] Further optimization is combined with the above embodiments:

[0030] Further according to Figure 2 ,Figure 3 、 Figure 4 and Figure 1 The working process of the sheet processing equipment example shown in

[0031] The limiting sliding block 7 arranged at both ends of the extrusion slide roller 6 enables the extrusion slide roller 6 to slide in the conical inclined sliding groove 3 along the track, and the limiting sliding block 7 is longitudinally slid in the driving threaded slide seat 8 to be driven and matched, preventing interference and facilitating automatic processing.

[0032] Further optimization is made in combination with the above embodiments:

[0033] Further, the two ends of the lower fixed limiting sliding plate 2 are fixedly connected to the side fixed table 4, and the upper adjusting limiting sliding plate 1 and the lower fixed limiting sliding plate 2 are adjusted by the scale adjusting lifting bolt 5. The scale adjusting lifting bolt 5 is threadedly matched in the upper adjusting limiting sliding plate 1 and rotates in the side fixed table 4.

[0034] This part is according to Figure 2 、 Figure 3 、 Figure 4 and Figure 3 The working process of the sheet processing equipment example shown in

[0035] By rotating the multiple scale adjusting lifting bolts 5 with high precision on the lower fixed limiting sliding plate 2, a unified scale is achieved, and the mutual sliding between the upper adjusting limiting sliding plate 1 and the lower fixed limiting sliding plate 2 is realized, so as to adjust the closest distance between the two extrusion slide rollers 6, and facilitate the adjustment of the thickness of the sheet after extrusion.

[0036] Further optimization is made in combination with the above embodiments:

[0037] Further, the middle end of the driving threaded slide seat 8 is threadedly connected to the driving threaded shaft 9, the driving threaded shaft 9 is fixed to the transmission shaft of the reciprocating variable frequency driver 10 through a shaft coupling, and the reciprocating variable frequency driver 10 is connected to another driving threaded shaft 9 through a belt transmission; the driving threaded shaft 9 rotates in the side fixed table 4 at both ends of the lower fixed limiting sliding plate 2; and the lower end of the driving threaded slide seat 8 is limited to slide in the fixed base table 11.

[0038] This part is according to Figure 4 、 Figure 5 、 Figure 6 and Figure 3 The working process of the sheet processing equipment example shown in

[0039] Through the variable frequency control drive of the reciprocating variable frequency drive 10, the forward and reverse reciprocating drive adjustment is realized, the driving screw sliding seat 8 is driven to reciprocate in the fixed base 11, the sliding limit block 7 is driven to reciprocate, the two extrusion sliding rollers 6 are driven to reciprocate, and the two extrusion sliding rollers 6 are driven to reciprocate along the track of the tapered inclined sliding groove 3, and the plate or pipe is extruded to form a specified thickness of the plate.

[0040] Further optimization is made in combination with the above embodiments:

[0041] Further, the fixed base 11 is fixed with an extension support table 12 and a pushing support table 13 for carrying the processed plate or pipe.

[0042] The working process of the plate processing equipment shown in the above embodiments is as follows: Figure 4 、 Figure 5 、 Figure 6 and Figure 7

[0043] The extension support table 12 and the pushing support table 13 on the fixed base 11 are used to support and carry the plate or pipe for processing and extrusion, and the two extrusion sliding rollers 6 are extruded in the space between the extension support table 12 and the pushing support table 13, and the processed plate continues to pass through the extension support table 12 to complete the processing.

[0044] Further optimization is made in combination with the above embodiments:

[0045] Further, the side end of the pushing support table 13 is fixed with a threaded table, the upper end of the pushing support table 13 is slidably provided with a clamping pushing table 14 for processing, the outer end of the clamping pushing table 14 is rotatably connected with a threaded variable frequency drive 15 through a screw shaft, and the threaded variable frequency drive 15 is fixed on the fixed base 11.

[0046] The working process of the plate processing equipment shown in the above embodiments is as follows: Figure 8 、 Figure 9 、 Figure 10 and Figure 7

[0047] Through the rotation of the threaded cylinder of the threaded variable frequency drive 15, the screw shaft on the clamping pushing table 14 is rotated to push and retract, and the clamping pushing table 14 is limited to slide on the pushing support table 13 during the pushing process, so that the plate or pipe is pushed and extruded on the extension support table 12 and the pushing support table 13.

[0048] Further optimization is made in combination with the above embodiments:

[0049] ​​Further, the clamping and pushing table 14 is fixed with a fixed clamping plate 18 for clamping and pushing, and the sliding adjusting clamping plate 17 slides longitudinally on the clamping and pushing table 14 through screw rod adjustment.

[0050] The working process of the sheet processing equipment example shown in Figure 8 、 Figure 9 、 Figure 10 and Figure 7 is as follows:

[0051] By adjusting the sliding adjusting clamping plate 17 on the clamping and pushing table 14 through bolts, the sheet or pipe is clamped and prevented from falling off through the clamping force between the fixed clamping plates 18.

[0052] Further optimization in combination with the above embodiments:

[0053] Further, the two ends of the fixed base table 11 are fixed with a cutting longitudinal plug-in frame 22 for longitudinal definition, and the pipe cutting frame 16 for longitudinal adjustment is plugged into the cutting longitudinal plug-in frame 22, and the pipe cutting frame 16 is fixed with a pipe cutting device 19 and a pipe expander 20 for pipe cutting and pipe expansion.

[0054] The working process of the sheet processing equipment example shown in Figure 8 、 Figure 9 、 Figure 10 and Figure 7 is as follows:

[0055] When sheet processing of waste pipes is needed, add the pipe cutting frame 16 on the fixed base table 11, so that the upper end of the pipe is cut and broken by the pipe cutting device 19 during the pushing process, and is expanded by the pipe expander 20 during the continuous pushing process, so as to facilitate the increase of the extrusion area and avoid the formation of overlapping sheets, thereby realizing the effect of cutting and extruding the pipe into sheets; the pipe cutting device 19 rotates the cutting blade in its interior to complete the cutting.

[0056] Further optimization in combination with the above embodiments:

[0057] Further, the side end of the cutting longitudinal plug-in frame 22 is connected with the cutting adjusting screw 21 for fixed adjustment through screw thread cooperation, and the cutting adjusting screw 21 rotates in the pipe cutting frame 16.

[0058] The working process of the sheet processing equipment example shown in Figure 8 、 Figure 9 、 Figure 10 and ​ is as follows:

[0059] By adjusting the rotary cutting adjusting bolt 21 on the cutting longitudinal plug-in frame 22, the pipe cutting frame 16 is lifted on the cutting longitudinal plug-in frame 22, and when the plate is extruded, it is not necessary to use, and it is not affected by the use of high suspension, and when the pipe is cut, it can be adjusted to the specified position for addition.

[0060] In the device, the fixed connection can be fixed by welding, threaded fixing and the like, and the rotating connection can be that a bearing is baked on a shaft, a spring retainer groove or an inter-shaft baffle is arranged on the shaft or a shaft hole, an elastic retainer is clamped in the spring retainer groove or the inter-shaft baffle to axially fix the bearing, and rotation is realized through relative sliding of the bearing; different connection modes are used in combination with different use environments.

Claims

1. A thin plate processing device, comprising an upper adjusting limit slide plate (1), a lower fixed limit slide plate (2), and an extrusion roller (6), characterized in that: The upper adjustable limit slide plate (1) and the lower fixed limit slide plate (2) are both symmetrically and slidably clamped with extrusion rollers (6) for repeated clamping. The upper adjustable limit slide plate (1) and the lower fixed limit slide plate (2) are slidably connected by bolts. Both ends of the extrusion roller (6) are limited to slide along the track by the limiting slider (7) in the conical inclined groove (3) that defines the sliding track; at the same time, both ends of the extrusion roller (6) slide longitudinally in the drive threaded slide block (8) used for drive connection by the limiting slider (7). The middle end of the drive threaded slide (8) is connected to the drive threaded shaft (9) by a threaded connection. The drive threaded shaft (9) is fixed to the transmission shaft of the reciprocating frequency converter (10) by a coupling. The reciprocating frequency converter (10) is connected to another drive threaded shaft (9) by a belt drive. The drive threaded shaft (9) rotates within the side fixed platforms (4) at both ends of the lower fixed limit slide plate (2). The lower end of the drive threaded slide (8) is limited and slid within the fixed base platform (11). The fixed base (11) is fixed with an extension support platform (12) and a push support platform (13) for bearing the processing, and the extrusion roller (6) is pressed between the extension support platform (12) and the push support platform (13). Both ends of the fixed base (11) are fixed with a longitudinal cutting frame (22) for longitudinal limitation. A pipe cutting frame (16) for longitudinal adjustment is inserted into the longitudinal cutting frame (22). A pipe cutter (19) for pipe cutting and a pipe unfolder (20) for unfolding the pipe are fixed in the pipe cutting frame (16). The waste pipes are recycled and processed by cutting them into thin plates.

2. The thin plate processing equipment according to claim 1, wherein, The upper adjustable limit slide (1) and the lower fixed limit slide (2) are both symmetrically provided with conical inclined slide grooves (3), which are limit slide grooves that are symmetrically inclined at both ends and horizontal in the middle.

3. The thin plate processing equipment according to claim 1, wherein, Both ends of the lower fixed limit slide plate (2) are fixedly connected to the side fixed platform (4). The upper adjustable limit slide plate (1) and the lower fixed limit slide plate (2) are adjusted by the scale adjustment lifting bolt (5). The scale adjustment lifting bolt (5) is threaded in the upper adjustable limit slide plate (1) and rotates in the side fixed platform (4).

4. The thin plate processing equipment according to claim 1, wherein, The side end of the propulsion support platform (13) is fixed with a threaded platform, and the upper end of the propulsion support platform (13) is slidably connected to a clamping propulsion platform (14) for propulsion processing via a limit slider. The outer end of the clamping propulsion platform (14) is connected to a threaded frequency converter (15) via a screw shaft rotation thread engagement. The threaded frequency converter (15) is fixed on the fixed base platform (11).

5. A thin plate processing equipment according to claim 4, wherein, The clamping and pushing platform (14) is fixed with a clamping plate (18) for clamping and pushing. The sliding adjustment plate (17) slides longitudinally on the clamping and pushing platform (14) by adjusting the screw.

6. A thin plate processing equipment according to claim 5, wherein, The side end of the longitudinal cutting frame (22) is connected by a threaded connection to a cutting adjustment bolt (21) for fixing and adjusting, and the cutting adjustment bolt (21) rotates inside the pipe cutting frame (16).

Citation Information

Patent Citations

  • Flattening device for sheet metal machining

    CN111283015A

  • Horizontal straightening device for multi-specification half shaft production detection

    CN216881145U