CN205008459U - Conveying punching press mechanism that detains former is beaten to can body - Google Patents

Conveying punching press mechanism that detains former is beaten to can body Download PDF

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Publication number
CN205008459U
CN205008459U CN201520752001.1U CN201520752001U CN205008459U CN 205008459 U CN205008459 U CN 205008459U CN 201520752001 U CN201520752001 U CN 201520752001U CN 205008459 U CN205008459 U CN 205008459U
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China
Prior art keywords
punching mechanism
briquetting
fixedly connected
beats
support plate
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CN201520752001.1U
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Chinese (zh)
Inventor
陈振东
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Ningbo Eddie Intelligent Equipment Co., Ltd.
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NINGBO SUNWAY MACHINERY Co Ltd
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Abstract

The utility model discloses a conveying punching press mechanism that detains former is beaten to can body through PLC control, when sheet metal on the conveyer belt triggers a sensor and no. Two sensors simultaneously, stops that the piece fixes a position sheet metal, and the angle sword of first punching press mechanism and second punching press mechanism carries on die -cutly to sheet metal. After the die -cut completion, convey next process with the conveyer belt with sheet metal, improve the degree of automation of conveying punching press mechanism. Effectively reduce staff manipulation strength, improve the performance of enterprises.

Description

A kind of can body beats the transmission punching mechanism of buckle forming equipment
Technical field
The utility model relates to kind of a can body and beats buckle forming equipment, and more particularly, it relates to the transmission punching mechanism that a kind of can body beats buckle forming equipment.
Background technology
Along with growth in the living standard, the quality requirements of people to consumer goods also improves constantly.High food is required for some preservations, need to use metal can to encapsulate for convenience of preserving, because metal can has, impact resistant, sealing property are strong, the advantage of attractive appearance, firmly get consumer and like, therefore, market today just there is metal can sheet metal miscellaneous.
Metal can is primarily of cylindrical shell, bottom and top cover composition, and bottom is placed on the bottom of cylindrical shell and is fixedly connected to form tank body with cylindrical shell, and top cover is the top that can be connected to tank body with opening or closing, thus forms the inner space for food storage.The shape of metal can depends primarily on cylindrical shell, and therefore, the forming method of cylindrical shell is particularly important.
In prior art, be manufacture the metal cylinder of definite shape, Normal practice sheet metal is cut into a certain shape to bend or cans again, then by the two edges of sheet metal by being welded; But, it is all that raw material is delivered to cylinder shaper structure carries out cylindrical shell forming operation by hand usually that sheet metal is made in the process of cylindrical shell by traditional method, then forming machine is taken out by manual for shaping cylindrical shell, step is more, technique is comparatively complicated, production efficiency is lower, and labo r usage is large, can not meet the demand in production and market.
Old can body beats buckle forming equipment based on semi-automation, and half-finished conveying and punching press all need employee to complete, and this production model adds the labour intensity of employee, but operating efficiency does not improve, and has had a strong impact on the interests of corporate boss.
Traditional production model has following shortcoming:
1, metallic plate punching all operates stamping machine by employee and completes, and increases the working strength of employee;
2, during pressing equipment operation, there is certain danger;
3, sheet metal carrying expends the manpower and materials of enterprise, improves production cost, improves the automaticity of equipment.
Utility model content
For the deficiency that prior art exists, the purpose of this utility model is the transmission punching mechanism providing a kind of full-automation, effectively can reduce the labour intensity of employee, enhance productivity, and improves the automaticity of equipment.
For achieving the above object, the utility model provides following technical scheme:
Can body beats a transmission punching mechanism for buckle forming equipment, it is characterized in that, comprises frame, conveying mechanism, the first punching mechanism and the second punching mechanism; Described first punching mechanism and conveying mechanism are fixedly connected on frame, and described conveying mechanism, between the first punching mechanism and the second punching mechanism, is provided with guiding mechanism between described second punching mechanism and frame; Described conveying mechanism is fixedly connected with a sensor, and described second punching mechanism is fixedly connected with No. two sensors, and when sheet metal triggers a sensor and No. two sensors simultaneously, the first punching mechanism and the second punching mechanism carry out die-cut to sheet metal.
As preferably, described first punching mechanism comprises the first pneumatic cylinder, the first air cylinder fixed plate, first briquetting and the first flat support plate, described first pneumatic cylinder is fixedly connected with the first air cylinder fixed plate, described first briquetting is slided between the first air cylinder fixed plate and the first flat support plate by the first slipping mechanism, described first briquetting slippage is connected with the first cutter, and described first flat support plate abuts the first tool rest.
As preferably, described first briquetting slippage is connected to the first guide pillar, is arranged with the first plastic sheath between described first guide pillar and first briquetting.
As preferably, described first flat support plate has been threaded the first corner cut guide pad, and described first corner cut guide pad is fixedly connected with spacing block set.
As preferably, described second punching mechanism comprises the second pneumatic cylinder, second air cylinder fixed plate, second largest briquetting and the second flat support plate, described second pneumatic cylinder is fixedly connected with the second air cylinder fixed plate, described second largest briquetting is slided between the second air cylinder fixed plate and the second flat support plate by the second slipping mechanism, described second largest briquetting slippage is connected with the second cutter, described second flat support plate abuts the second tool rest, second flat support plate is fixedly connected with little cylinder, the piston rod of little cylinder is fixedly connected with stopper, No. two sensors are fixedly connected on the second air cylinder fixed plate.
As preferably, described second largest briquetting slippage is connected to the second guide pillar, is arranged with the second plastic sheath between described second guide pillar and second largest briquetting.
As preferably, described second flat support plate has been threaded the second corner cut guide pad, and described second corner cut guide pad offers guiding curved surface.
As preferably, guiding mechanism comprises the second symmetrical fixed head, connecting rod and tooth bar, and described connecting rod is interspersed in two piece of second symmetrical fixed head, and described tooth bar is fixed on frame, and connecting rod is fixed with the gear be meshed with tooth bar, and connecting rod is fixedly connected with handwheel.
As preferably, described conveying mechanism comprises flat bracket, conveyer belt, two directive wheels and a sensor, and described flat bracket is fixedly connected on frame, and directive wheel is connected to conveyer belt, and a sensor is between two directive wheels.
As preferably, described flat bracket is fixedly connected with two fixed blocks, and two fixed blocks are connected to conveyer belt side.
By adopting technique scheme, beneficial effect is compared with prior art: when sheet metal transmits on the conveyor belt, conveyer belt is undertaken spacing by the guide pad on flat bracket, prevent the conveyer belt of horizontal direction from offseting, directive wheel above conveyer belt produces pressure to sheet metal, prevents sheet metal from position skew occurring on the conveyor belt.When sheet metal triggers a sensor and No. two sensors, sheet metal is delivered to tool rest by conveyer belt, has stopper to position, and PLC controls the die-cut sheet metal of control corner cutter, achieves the automation that sheet metal transmits punching press.
Accompanying drawing explanation
Fig. 1 is the structural representation that a kind of can body of the utility model beats the transmission punching mechanism embodiment of buckle forming equipment;
Fig. 2 is the explosive view of the first punching mechanism structure;
Fig. 3 is the explosive view of the second punching mechanism structure;
Fig. 4 is the structural scheme of mechanism of conveying mechanism;
Fig. 5 is the structural scheme of mechanism of guiding mechanism;
Fig. 6 is the structural scheme of mechanism of the first corner cut guide pad;
Fig. 7 is the structural scheme of mechanism of the second corner cut guide pad;
Fig. 8 is the cross-sectional schematic of corner cut fixed block.
Description of reference numerals: 1, frame; 2, the first punching mechanism; 21, the first pneumatic cylinder; 22, the first air cylinder fixed plate; 23, first briquetting; 24, the first guide pillar; 25, the first flat support plate; 26, the first symmetrical fixed head; 27, the first plastic sheath; 28, the first T-slot; 29, the first cutting knife fixed block; 291, the first corner cutter; 292, the first corner cut guide pad; 2921, spacing block set; 293, the first tool rest; 294, the first fixed block; 295, the first groove; 3, the second punching mechanism; 31, the second pneumatic cylinder; 32, the second air cylinder fixed plate; 33, second largest briquetting; 34, inductor connecting plate; 35, inductor fixed head; 36, No. two sensors; 37, the second flat support plate; 38, the second guide pillar; 39, the second plastic sheath; 391, the second T-slot; 392, the second cutting knife fixed block; 393, the second corner cutter; 394, the second corner cut guide pad; 3941, lead curved surface; 395, the second tool rest; 396, little cylinder; 397, stopper; 398, the second fixed block; 399, the second groove; 4, conveying mechanism; 41, conveyer belt; 42, the first directive wheel; 43, a sensor; 44, the second directive wheel; 45, guide pad; 46, flat bracket; 47, rotary support; 48, adjustment screw; 5, guiding mechanism; 51, handwheel; 52, tooth bar; 53, connecting rod; 54, gear; 55, the second symmetrical fixed head; 6, screwed hole.
Detailed description of the invention
Referring to figs. 1 through Fig. 8, the transmission punching mechanism embodiment that a kind of can body of the utility model beats buckle forming equipment is described further.
Can body beats a transmission punching mechanism for buckle forming equipment, it is characterized in that, comprises frame 1, conveying mechanism 4, the first punching mechanism 2 and the second punching mechanism 3.
Described first punching mechanism 2 is connected to frame 1 by the first symmetrical fixed head 26 bolt.Be provided with guiding mechanism 5 between second punching mechanism 3 and frame 1, guiding mechanism 5 is provided with handwheel 51, can control the second punching mechanism 3 move horizontally on tooth bar 52 by rotation hand wheel 51.Described conveying mechanism 4 is fixedly connected in frame 1, and described conveying mechanism 4 is between the first punching mechanism 2 and the second punching mechanism 3.
In the present embodiment, first punching mechanism 2 comprises the first pneumatic cylinder 21, first pneumatic cylinder 21 bolt is connected to the top of the first air cylinder fixed plate 22, and the piston rod of the first pneumatic cylinder 21 is connected with the center bolt of first briquetting 23 through the first air cylinder fixed plate 22.First briquetting 23 offers two pilot holes, two first guide pillars 24 are through two pilot holes, first briquetting 23 can move up and down along two first guide pillars 24, the first plastic sheath 27 is provided with between first briquetting 23 and the first guide pillar 24, first plastic sheath 27 bolt connects the frictional dissipation that first briquetting 23, first plastic sheath 27 can reduce between first briquetting 23 and the first guide pillar 24.The lower end of the bolt of the first guide pillar 24 is connected to a flat support plate 25, and the right side bolt of described first flat support plate 25 connects the first corner cut guide pad 292.First corner cut guide pad 292 is provided with downward spacing block set 2921, and sheet metal is placed in the below of spacing block set 2921, prevents sheet metal from upwards offseting.First fixed block 294 bolt is connected to the right side of the first symmetrical fixed head 26, and described first symmetrical fixed head 26 has offered the first groove 295, and abutting between described first groove 295 and the first flat support plate 25 has the first tool rest 293.The side of described first briquetting 23 offers the first T-slot 28, on first T-slot 28, slippage is connected with the first cutting knife fixed block 29, first cutting knife fixed block 29 offers the screw hole 6 communicated in the first T-slot 28, by tightening the screw on screw hole 6, first cutting knife fixed block 29 can be anchored on first briquetting 23, the edge of a knife that described first cutting knife fixed block 29 bolt is connected with the first corner cutter 291, first corner cutter 291 downwards and coordinate on same vertical straight line with the first tool rest 293.
Described second punching mechanism 3 comprises the top that the second pneumatic cylinder 31, second pneumatic cylinder 31 bolt is connected to the second air cylinder fixed plate 32, and the piston rod of the second pneumatic cylinder 31 is connected with the center bolt of second largest briquetting 33 through the second air cylinder fixed plate 32.Second largest briquetting 33 offers two pilot holes, two second guide pillars 38 are through two pilot holes, second largest briquetting 33 can move up and down along two second guide pillars 24, the second plastic sheath 27 is provided with between second largest briquetting 33 and the second guide pillar 38, second plastic sheath 39 bolt connects the frictional dissipation that second largest briquetting 33, second plastic sheath 39 can reduce between second largest briquetting 33 and the second guide pillar 38.The left side of the second pneumatic cylinder 31 fixed head offers two screwed holes, inductor connecting plate 34 bolt is connected to the second pneumatic cylinder 31 screwed hole, described inductor connecting plate 34 left end bolt is connected with inductor fixed head 35, and the lower end of described inductor fixed head 35 has been threaded No. two sensors 36.The lower end of the bolt of described second guide pillar 38 is connected to the second flat support plate 37.The left side bolt of described second flat support plate 37 connects the second corner cut guide pad 394, second corner cut guide pad 394 and is provided with guiding curved surface 3941, and the edge that sheet metal upwarps enters punching press position by guiding curved surface 3941, prevents sheet metal from bending.Second fixed block 398 bolt is connected to the second symmetrical fixed head 55, and described second symmetrical fixed head 55 offers the second groove 399, and abutting between described second groove 399 and the second flat support plate 37 has the second tool rest 395.Second flat support plate 37 left surface bolt is connected with little cylinder 396, and the piston rod of described little cylinder 396 has been threaded stopper 397, and described stopper 397 is between two the second tool rests 395.The side of described second largest briquetting 33 offers the second T-slot 391, on second T-slot 391, slippage is connected with the second cutting knife fixed block 392, second cutting knife fixed block 392 offers the screw hole 6 communicated in the second T-slot 391, by tightening the screw on screw hole 6, second cutting knife fixed block 392 can be anchored on second largest briquetting 33, described second cutting knife fixed block 392 bolt is connected with the second corner cutter 393.The edge of a knife of the second corner cutter 393 downwards and coordinate on same vertical straight line with the second tool rest 395.
Described guiding mechanism 5 comprises gear 54, tooth bar 52, connecting rod 53 and handwheel 51, described connecting rod 53 is plugged in the second symmetrical fixed head 55, tooth bar 52 is fixed on frame 1, and the two ends pin of connecting rod 53 is connected with two gears 54 be meshed with tooth bar 52, connecting rod 53 is provided with handwheel 51.By removable second position of punching mechanism 3 on tooth bar 52 of rotation hand wheel 51, arrive the object of adjustment first punching mechanism 2 and the second punching mechanism 3 spacing.
Described conveying mechanism 4 comprises flat bracket 46, flat bracket 46 is fixedly connected with two rotary supports 47, first directive wheel 42 and the second directive wheel 44 are rotationally connected with two rotary supports 47, on rotary support, 47 are provided with adjustment screw 48, unclamp adjustment screw 48, the first directive wheel 42 and the second directive wheel 44 can rotate around rotary support 47; Tighten and unclamp adjustment screw 48, the position of the first directive wheel 42 and the second directive wheel 44 can be fixed.First directive wheel 42 and the second directive wheel 44 are connected to conveyer belt 41.A sensor 43 is provided with between first directive wheel 42 and the second directive wheel 44, sensor 43 bolt is connected to flat bracket 46, flat bracket 46 is fixed with two guide pads 45, two guide pads, 45 conveyer belt 41 sides, can prevent conveyer belt 41 from offseting, a described sensor 43 is proximity switch.
Operation principle of the present utility model is: PLC system controls electric machine rotation conveyer belt 41, and the direction of transfer of conveyer belt 41 is limited by guide pad 45.Sheet metal is sent to the second punching mechanism 3 by conveyer belt 41 by the first punching mechanism 2, and the position of sheet metal on conveyer belt 41 has directive wheel to limit, and prevents sheet metal from offseting.When sheet metal triggers a sensor 43, stopper 397 moves up, and carries out spacing to sheet metal.When sheet metal triggers No. two sensors 36, the first corner cutter 291 and the second corner cutter 393 carry out excision action to sheet metal under cylinder action.When excision action completes, the magnetic switch on cylinder triggers, and cylinder resets and stopper 397 is moved down, and sheet metal is delivered to subsequent work sequence by conveyer belt 41.
The above is only preferred embodiment of the present utility model, protection domain of the present utility model be not only confined to above-described embodiment, and all technical schemes belonged under the utility model thinking all belong to protection domain of the present utility model.It should be pointed out that for those skilled in the art, do not departing from the some improvements and modifications under the utility model principle prerequisite, these improvements and modifications also should be considered as protection domain of the present utility model.

Claims (10)

1. can body beats a transmission punching mechanism for buckle forming equipment, it is characterized in that, comprises frame, conveying mechanism, the first punching mechanism and the second punching mechanism;
Described first punching mechanism and conveying mechanism are fixedly connected on frame, and described conveying mechanism, between the first punching mechanism and the second punching mechanism, is provided with guiding mechanism between described second punching mechanism and frame;
Described conveying mechanism is fixedly connected with a sensor, and described second punching mechanism is fixedly connected with No. two sensors, and when sheet metal triggers a sensor and No. two sensors simultaneously, the first punching mechanism and the second punching mechanism carry out die-cut to sheet metal.
2. a kind of can body according to claim 1 beats the transmission punching mechanism of buckle forming equipment, it is characterized in that, described first punching mechanism comprises the first pneumatic cylinder, the first air cylinder fixed plate, first briquetting and the first flat support plate, described first pneumatic cylinder is fixedly connected with the first air cylinder fixed plate, described first briquetting is slided between the first air cylinder fixed plate and the first flat support plate by the first slipping mechanism, described first briquetting slippage is connected with the first cutter, and described first flat support plate abuts the first tool rest.
3. a kind of can body according to claim 2 beats the transmission punching mechanism of buckle forming equipment, it is characterized in that, described first briquetting slippage is connected to the first guide pillar, is arranged with the first plastic sheath between described first guide pillar and first briquetting.
4. a kind of can body according to claim 3 beats the transmission punching mechanism of buckle forming equipment, it is characterized in that, described first flat support plate has been threaded the first corner cut guide pad, and described first corner cut guide pad is fixedly connected with spacing block set.
5. a kind of can body according to any claim of claim 1 ~ 4 beats the transmission punching mechanism of buckle forming equipment, it is characterized in that, described second punching mechanism comprises the second pneumatic cylinder, second air cylinder fixed plate, second largest briquetting and the second flat support plate, described second pneumatic cylinder is fixedly connected with the second air cylinder fixed plate, described second largest briquetting is slided between the second air cylinder fixed plate and the second flat support plate by the second slipping mechanism, described second largest briquetting slippage is connected with the second cutter, described second flat support plate abuts the second tool rest, second flat support plate is fixedly connected with little cylinder, the piston rod of little cylinder is fixedly connected with stopper, No. two sensors are fixedly connected on the second air cylinder fixed plate.
6. a kind of can body according to claim 5 beats the transmission punching mechanism of buckle forming equipment, it is characterized in that, described second largest briquetting slippage is connected to the second guide pillar, is arranged with the second plastic sheath between described second guide pillar and second largest briquetting.
7. a kind of can body according to claim 6 beats the transmission punching mechanism of buckle forming equipment, it is characterized in that, described second flat support plate has been threaded the second corner cut guide pad, and described second corner cut guide pad offers guiding curved surface.
8. a kind of can body according to claim 7 beats the transmission punching mechanism of buckle forming equipment, it is characterized in that, guiding mechanism comprises the second symmetrical fixed head, connecting rod and tooth bar, described connecting rod is interspersed in two piece of second symmetrical fixed head, described tooth bar is fixed on frame, connecting rod is fixed with the gear be meshed with tooth bar, and connecting rod is fixedly connected with handwheel.
9. a kind of can body according to claim 8 beats the transmission punching mechanism of buckle forming equipment, it is characterized in that, described conveying mechanism comprises flat bracket, conveyer belt, two directive wheels and a sensor, described flat bracket is fixedly connected on frame, directive wheel is connected to conveyer belt, and a sensor is between two directive wheels.
10. a kind of can body according to claim 9 beats the transmission punching mechanism of buckle forming equipment, it is characterized in that, described flat bracket is fixedly connected with two fixed blocks, and two fixed blocks are connected to conveyer belt side.
CN201520752001.1U 2015-09-25 2015-09-25 Conveying punching press mechanism that detains former is beaten to can body Active CN205008459U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520752001.1U CN205008459U (en) 2015-09-25 2015-09-25 Conveying punching press mechanism that detains former is beaten to can body

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520752001.1U CN205008459U (en) 2015-09-25 2015-09-25 Conveying punching press mechanism that detains former is beaten to can body

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Publication Number Publication Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107088624A (en) * 2017-05-16 2017-08-25 深圳市天恩精密机械有限公司 A kind of automatic can body machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107088624A (en) * 2017-05-16 2017-08-25 深圳市天恩精密机械有限公司 A kind of automatic can body machine
CN107088624B (en) * 2017-05-16 2019-03-26 深圳市天恩精密机械有限公司 A kind of automatic can body machine

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C14 Grant of patent or utility model
GR01 Patent grant
CP03 Change of name, title or address

Address after: 315311 288 Peng Yuan Road, Cixi Binhai Economic Development Zone, Ningbo, Zhejiang.

Patentee after: Ningbo Eddie Intelligent Equipment Co., Ltd.

Address before: 315311 No. 108 Xiangshan Road, Kedong Industrial Zone, Cixi City, Ningbo, Zhejiang

Patentee before: NINGBO SUNWAY MACHINERY CO., LTD.