CN212946745U - Blanking device for stainless steel plate - Google Patents

Blanking device for stainless steel plate Download PDF

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Publication number
CN212946745U
CN212946745U CN202021543402.3U CN202021543402U CN212946745U CN 212946745 U CN212946745 U CN 212946745U CN 202021543402 U CN202021543402 U CN 202021543402U CN 212946745 U CN212946745 U CN 212946745U
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China
Prior art keywords
feeding
stainless steel
platform
steel plate
plate
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CN202021543402.3U
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Chinese (zh)
Inventor
高家乐
胡有光
潘高
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Foshan Bangyu Stainless Steel Co ltd
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Foshan Bangyu Stainless Steel Co ltd
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Priority to CN202021543402.3U priority Critical patent/CN212946745U/en
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Abstract

The utility model discloses a corrosion resistant plate's unloader, including the material feeding unit who sets gradually, tailor part, feeding platform and receiving platform, material feeding unit includes pay-off support and corrosion resistant plate, corrosion resistant plate unreels the pay-off for the pay-off support, and the sheet material passes tailors the part and leads to the feeding platform top, tailors the part and is used for cutting the sheet material from corrosion resistant plate, feeding platform includes pay-off mesa and feeding mechanism, and under feeding mechanism's effect, the sheet material that will cut off pushes away to receiving platform on, through the coordination of each part, realizes continuous automatic unloading, and is efficient, and the incident is low.

Description

Blanking device for stainless steel plate
Technical Field
The utility model relates to a corrosion resistant plate's unloader.
Background
At present, a blanking device for a stainless steel plate carries out blanking on a plate through a cutting part, the sheared plate is placed on a tray manually by a worker under a general condition, subsequent processing is carried out after the stainless steel plate is lifted, the carrying of the worker in the whole process becomes the lowest efficiency link, the continuous blanking capacity of a machine is influenced, and safety risks exist in the carrying process.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a corrosion resistant plate's unloader, let the continuous automatic unloading of corrosion resistant plate, need not artifical transport.
In order to solve the technical problem, the utility model provides a technical scheme does: a blanking device for a stainless steel plate comprises a feeding device, a cutting part, a feeding platform and a receiving platform which are arranged in sequence;
the feeding device comprises a feeding support and a stainless steel plate, the stainless steel plate is unreeled and fed relative to the feeding support, the plate penetrates through the cutting part and is communicated to the upper part of the feeding platform, and the cutting part is used for cutting the plate from the stainless steel plate;
the feeding platform comprises a feeding table board and a feeding mechanism, the cut plates are pushed onto the receiving platform under the action of the feeding mechanism, continuous automatic blanking is realized through coordination of all parts, the efficiency is high, and safety accidents are low.
Furthermore, the material receiving platform comprises a material receiving table board and a material receiving base, the material receiving table board comprises at least two guide pillars, the material receiving base is correspondingly provided with guide sleeves in the same number, the material receiving table board is sleeved with the guide sleeves of the material receiving base through the guide pillars and can move along the direction of the guide sleeves, the material receiving table board and the material receiving base are detachably connected, the lifting weight can be reduced, and the material receiving table board can be prevented from being overturned through the arrangement of the guide pillars.
Further, connect the material platform still includes the spring, the spring housing is established outside the guide pin bushing, and the up end of spring offsets with connecing the material mesa, and the lower terminal surface of spring offsets with connecing the material base, through the setting of spring, can set up the material mesa to suitable position, and the continuous delivery of sheet material is to connecing the material mesa, and the spring receives the compression, reduces and connects the material mesa height, and the sheet material is not fragile in the transfer process.
Furthermore, connect the material mesa still including lifting by crane the structure, lifting by crane the structure and at least two and set up respectively in the outward flange that connects the material mesa, set up lifting by crane the structure, can the high-efficient sheet material of piling up through crane handling unloading.
Further, feeding mechanism includes the pendulum rod and sets up the pivot in pendulum rod one end, the pivot with set up spacing hole normal running fit on the pay-off mesa, the pendulum rod sets up at pay-off mesa upper surface, the pendulum rod is through the swing of revolving the axle, pushes away the sheet material to connect the material platform on, sets up the pendulum rod through the swing, can cooperate the beat that the material loading was cut off, lets whole process go on in order.
Furthermore, the feeding mechanism also comprises a driving rod, and one end of the driving rod is connected with the rotating shaft and is arranged on the lower surface of the feeding table top;
feeding mechanism still includes a pay-off mesa swivelling joint's cam, the cam with the actuating lever butt, feeding mechanism still includes the elasticity piece that resets, the both ends that the elasticity resets the piece are fixed with pendulum rod and pay-off mesa respectively, and under the combined action of elasticity piece and cam that resets, the pendulum rod is at initial position and pushes away the swing of material extreme position within range, sets up cam mechanism, can accomplish intermittent type nature motion, cooperates the beat of unloading, and simple structure just can realize through setting up of motor, has avoided the swing output of high-loss.
Furthermore, one end, far away from the rotating shaft, of the oscillating bar is hinged with a pushing rod, the pushing rod is abutted to the plate in the pushing process, and the pushing rod is arranged, so that the contact area of pushing materials can be increased, and the plate is prevented from being inclined to cause accidents.
Furthermore, the feeding platform further comprises heightening plates at two ends of the feeding platform surface, two track plates are erected on the heightening plates, the moving trolley is movably connected onto the track plates, the moving trolley comprises a clamping mechanism for clamping the plate, and the moving trolley is arranged and can reduce deformation of the plate during blanking.
Further, fixture is including setting up last clamping part on the sheet material and setting up the lower clamping part under the sheet material, lower clamping part rotates to be connected on moving the dolly, and the sheet material of cutting down rotates lower clamping part when loosening fixture, and the sheet material falls into feeding platform, sets up the direction that the sheet material unloading can effectively be avoided to wobbling lower clamping part, avoids the emergence of card material.
The utility model discloses still including setting up at material feeding unit and tailor guider between the part, guider includes guide bracket, guide roller is used for the sheet material to remove the direction.
Compared with the prior art, the structure design has the following advantages:
this product can carry out the unloading to corrosion resistant plate by efficient in succession, and the security is high, through the setting of cam pendulum rod, can low energy consumption intermittent type nature accomplish and push away the material, and the beat of unloading sets up flexible material platform that connects in the cooperation, can let the slight collision of sheet material pile up, sets up the precision that the travelling car can improve the unloading.
Drawings
Fig. 1 is a perspective view of the overall structure of the present invention.
Fig. 2 is a plan view of the overall structure of the present invention.
Fig. 3 is a sectional view a-a of fig. 2.
Fig. 4 is a partially enlarged view of portion B of fig. 3.
Fig. 5 is a bottom view of the overall structure of the present invention.
Fig. 6 is a schematic view of the feeding platform of the present invention.
Fig. 7 is a top view of fig. 6.
Fig. 8 is a schematic view of the feeding mechanism of the present invention.
Shown in the figure: 100. a feeding device; 110. a feeding bracket; 120. a stainless steel plate; 121. a plate material; 200. cutting the component; 300. a feeding platform; 310. a feeding table surface; 311. a limiting hole; 320. a feeding mechanism; 321. a swing rod; 322. a rotating shaft; 323. a drive rod; 324. a cam; 325. an elastic reset member; 326. a material pushing rod; 330. a step-up plate; 340. a track plate; 400. a material receiving platform; 410. a material receiving table-board; 411. a guide post; 412. a hoisting structure; 420. a material receiving base; 421. a guide sleeve; 430. a spring; 500. moving the trolley; 510. a clamping mechanism; 511. an upper clamping portion; 512. a lower clamping portion; 600. a guide device; 610. a guide bracket; 620. a guide roller.
Detailed Description
The present invention will be described in further detail below with reference to specific embodiments and with reference to the accompanying drawings.
A blanking device for stainless steel plates is shown in figures 1-8 and comprises a feeding device 100, a cutting part 200, a feeding platform 300 and a receiving platform 400 which are arranged in sequence;
the feeding device 100 comprises a feeding support 110 and a stainless steel plate 120, the stainless steel plate 120 unreels and feeds materials relative to the feeding support 110, a plate material 121 penetrates through a cutting part 200 and is led to the upper side of a feeding platform 300, and the cutting part 200 is used for cutting the plate material 121 off the stainless steel plate 120;
the feeding platform 300 comprises a feeding table 310 and a feeding mechanism 320, and the cut sheet 121 is pushed onto the receiving platform 400 by the feeding mechanism 320.
In a specific implementation, as a further scheme, the receiving platform 400 includes a receiving table top 410 and a receiving base 420, the receiving table top 410 includes at least two guide posts 411, the receiving base 420 is correspondingly provided with the same number of guide sleeves 421, and the receiving table top 410 is sleeved with the guide sleeves 421 of the receiving base 420 through the guide posts 411 and can move along the direction of the guide sleeves 421.
In a specific implementation, as a further scheme, the material receiving platform 400 further includes a spring 430, the spring 430 is sleeved outside the guide sleeve 421, an upper end surface of the spring 430 abuts against the material receiving table 410, and a lower end surface of the spring 430 abuts against the material receiving base 420.
In a specific implementation, as a further scheme, the material receiving table 410 further includes at least two lifting structures 412, and the at least two lifting structures 412 are respectively disposed at an outer edge of the material receiving table 410.
In a specific implementation, as a further scheme, the feeding mechanism 320 includes a swing rod 321 and a rotating shaft 322 disposed at one end of the swing rod 321, the rotating shaft 322 is rotatably engaged with a limiting hole 311 disposed on the feeding table 310, the swing rod 321 is disposed on the upper surface of the feeding table 310, and the swing rod 321 swings around the rotating shaft 322 to push the sheet material 121 onto the receiving platform 400.
In a specific implementation, as a further scheme, the feeding mechanism 320 further includes a driving rod 323, one end of the driving rod 323 is connected with the rotating shaft 322 and is disposed on the lower surface of the feeding table 310;
the feeding mechanism 320 further comprises a cam 324 rotatably connected with the feeding table surface 310, the cam 324 abuts against the driving rod 323, the feeding mechanism 320 further comprises an elastic resetting piece 325, two ends of the elastic resetting piece 325 are respectively fixed with the swing rod 321 and the feeding table surface 310, and under the combined action of the elastic resetting piece 325 and the cam 324, the swing rod 321 swings in the range of an initial position and a material pushing limit position.
In a specific implementation, as a further scheme, one end of the swing rod 321, which is far away from the rotating shaft 322, is hinged to a material pushing rod 326, and the material pushing rod 326 abuts against the sheet material 121 in the material pushing process.
In a specific implementation, as a further scheme, the feeding platform 300 further includes a raising plate 330 at two ends of the feeding platform 310, two rail plates 340 are erected on the raising plate 330, the moving trolley 500 is movably connected to the rail plates 340, and the moving trolley 500 includes a clamping mechanism 510 for clamping the slab 121.
In a specific implementation, as a further scheme, the clamping mechanism 510 includes an upper clamping portion 511 disposed on the sheet 121 and a lower clamping portion 512 disposed below the sheet 121, the lower clamping portion 512 is rotatably connected to the moving trolley 500, the cut sheet 121 rotates the lower clamping portion 512 when the clamping mechanism 510 is released, and the sheet 121 falls into the feeding platform 300.
In a further implementation, the cutting device further comprises a guide device 600 arranged between the feeding device 100 and the cutting part 200, wherein the guide device 600 comprises a guide bracket 610 and a guide roller 620, and the guide roller 620 is used for moving and guiding the sheet metal 121.
The foregoing is illustrative of the preferred embodiments of the present invention only, and is not to be construed as limiting the claims. The present invention is not limited to the above embodiments, and all the changes made within the scope of the independent claims of the present invention are within the scope of the present invention.

Claims (10)

1. The utility model provides a unloader of corrosion resistant plate which characterized in that: comprises a feeding device (100), a cutting part (200), a feeding platform (300) and a receiving platform (400) which are arranged in sequence;
the feeding device (100) comprises a feeding support (110) and a stainless steel plate (120), the stainless steel plate (120) is unreeled and fed relative to the feeding support (110), a plate material (121) penetrates through a cutting part (200) and is communicated to the upper side of the feeding platform (300), and the cutting part (200) is used for cutting the plate material (121) off from the stainless steel plate (120);
the feeding platform (300) comprises a feeding table top (310) and a feeding mechanism (320), and the cut plates (121) are pushed onto the receiving platform (400) under the action of the feeding mechanism (320).
2. The blanking device of the stainless steel plate as set forth in claim 1, wherein: the material receiving platform (400) comprises a material receiving table top (410) and a material receiving base (420), wherein the material receiving table top (410) comprises at least two guide posts (411), the material receiving base (420) is correspondingly provided with guide sleeves (421) with the same quantity, and the material receiving table top (410) is sleeved with the guide sleeves (421) of the material receiving base (420) through the guide posts (411) and can move along the direction of the guide sleeves (421).
3. The blanking device of the stainless steel plate as set forth in claim 2, wherein: the material receiving platform (400) further comprises a spring (430), the spring (430) is sleeved outside the guide sleeve (421), the upper end face of the spring (430) abuts against the material receiving table board (410), and the lower end face of the spring (430) abuts against the material receiving base (420).
4. A blanking device for stainless steel plates (120) according to claim 2, characterized in that: the material receiving table top (410) further comprises at least two lifting structures (412), and the lifting structures (412) are arranged on the outer edge of the material receiving table top (410) respectively.
5. The blanking device of the stainless steel plate as set forth in claim 1, wherein: feeding mechanism (320) include pendulum rod (321) and set up pivot (322) in pendulum rod (321) one end, pivot (322) with set up spacing hole (311) normal running fit on pay-off mesa (310), pendulum rod (321) set up at pay-off mesa (310) upper surface, pendulum rod (321) are through revolving axle (322) swing, push away sheet material (121) to connect material platform (400) on.
6. The blanking device of the stainless steel plate as set forth in claim 5, wherein: the feeding mechanism (320) further comprises a driving rod (323), one end of the driving rod (323) is connected with the rotating shaft (322) and is arranged on the lower surface of the feeding table top (310);
the feeding mechanism (320) further comprises a cam (324) rotatably connected with the feeding table board (310), the cam (324) is abutted to the driving rod (323), the feeding mechanism (320) further comprises an elastic resetting piece (325), two ends of the elastic resetting piece (325) are respectively fixed with the swing rod (321) and the feeding table board (310), and the swing rod (321) swings in the range of an initial position and a material pushing limit position under the combined action of the elastic resetting piece (325) and the cam (324).
7. The blanking device of the stainless steel plate as set forth in claim 5, wherein: one end, far away from the rotating shaft (322), of the swing rod (321) is hinged with a material pushing rod (326), and the material pushing rod (326) is abutted to the plate material (121) in the material pushing process.
8. The blanking device of the stainless steel plate as set forth in claim 1, wherein: the feeding platform (300) further comprises heightening plates (330) at two ends of the feeding table top (310), two track plates (340) are erected on the heightening plates (330), the movable trolley (500) is movably connected to the track plates (340), and the movable trolley (500) comprises a clamping mechanism (510) used for clamping the plate materials (121).
9. The blanking device for the stainless steel plate as set forth in claim 8, wherein: the clamping mechanism (510) comprises an upper clamping portion (511) arranged on the plate (121) and a lower clamping portion (512) arranged below the plate (121), the lower clamping portion (512) is rotatably connected to the mobile trolley (500), the sheared plate (121) rotates the lower clamping portion (512) when the clamping mechanism (510) is loosened, and the plate (121) falls into the feeding platform (300).
10. The blanking device of the stainless steel plate as set forth in claim 1, wherein: still including setting up guider (600) between material feeding unit (100) and cutting part (200), guider (600) include guide bracket (610), guide roll wheel (620) are used for sheet material (121) to move the direction.
CN202021543402.3U 2020-07-30 2020-07-30 Blanking device for stainless steel plate Active CN212946745U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021543402.3U CN212946745U (en) 2020-07-30 2020-07-30 Blanking device for stainless steel plate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021543402.3U CN212946745U (en) 2020-07-30 2020-07-30 Blanking device for stainless steel plate

Publications (1)

Publication Number Publication Date
CN212946745U true CN212946745U (en) 2021-04-13

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CN202021543402.3U Active CN212946745U (en) 2020-07-30 2020-07-30 Blanking device for stainless steel plate

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112978338A (en) * 2021-04-26 2021-06-18 常州铭赛机器人科技股份有限公司 Pushing mechanism
CN113895873A (en) * 2021-10-29 2022-01-07 江苏伊凡诺尔智能科技有限公司 Anti-blocking and anti-deviation belt conveyor

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112978338A (en) * 2021-04-26 2021-06-18 常州铭赛机器人科技股份有限公司 Pushing mechanism
CN113895873A (en) * 2021-10-29 2022-01-07 江苏伊凡诺尔智能科技有限公司 Anti-blocking and anti-deviation belt conveyor
CN113895873B (en) * 2021-10-29 2023-02-28 江苏伊凡诺尔智能科技有限公司 Anti-blocking and anti-deviation belt conveyor

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