CN218053950U - Unloading mechanism and plastic uptake flanging machine - Google Patents

Unloading mechanism and plastic uptake flanging machine Download PDF

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Publication number
CN218053950U
CN218053950U CN202221723374.2U CN202221723374U CN218053950U CN 218053950 U CN218053950 U CN 218053950U CN 202221723374 U CN202221723374 U CN 202221723374U CN 218053950 U CN218053950 U CN 218053950U
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Prior art keywords
blanking
driving piece
plate
supporting
workpiece
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CN202221723374.2U
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梁宇珩
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Liang Yuhang
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Foshan Nanhai Yanbu Yucheng Machinery Factory
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Abstract

The utility model discloses an unloading mechanism and plastic uptake flanging machine, including the frame, be provided with in the frame: a blanking assembly having a blanking table movable up and down; the material supporting component is provided with two supporting pieces which can approach or separate from each other, a material supporting gap is formed between the two supporting pieces, and the material supporting gap is positioned above the blanking table; the material blocking frame is connected with a material blocking plate, and the material blocking plate is positioned in the material supporting gap; the material shifting assembly is provided with a push rod which can be close to or far away from the material baffle plate, and the moving direction of the push rod is parallel to the length extending direction of the material supporting gap; the material subassembly is pressed, but it has the briquetting of up-and-down motion, and the briquetting is located holds in the palm directly over the material clearance, the utility model discloses can realize automatic unloading, pile up, reduce manual operation, be favorable to realizing automated production to production stability and production efficiency have been improved better.

Description

Blanking mechanism and plastic uptake flanging machine
Technical Field
The utility model relates to a apparatus for producing especially relates to an unloading mechanism and a plastic uptake flanging machine.
Background
Present plastic uptake panel is mostly the manual work put into on the flanging machine, start the flanging machine hem shaping, then the workman takes out the plastic uptake panel after the hem shaping again, and pile up, consequently need the workman to get repeatedly and put the plastic uptake panel, because the workman is under long-time work operating efficiency reduces gradually, and the error rate also can increase gradually, lead to production efficiency to be difficult to improve, along with labour cost increases day by day, the manufacturing cost of enterprise also increases day by day, lead to the productivity effect to reduce gradually.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an unloading mechanism and plastic uptake flanging machine to solve one or more technical problem that exist among the prior art, provide a profitable selection or creation condition at least.
The utility model provides a solution of its technical problem is:
the utility model provides a blanking mechanism, includes the frame, be provided with in the frame: a blanking assembly having a blanking table movable up and down; the material supporting assembly is provided with two supporting pieces which can approach or separate from each other, a material supporting gap is formed between the two supporting pieces, and the material supporting gap is positioned above the blanking table; the material blocking frame is connected with a material blocking plate, and the material blocking plate is positioned in the material supporting gap; the material poking assembly is provided with a push rod which can be close to or far away from the material baffle plate, and the movement direction of the push rod is parallel to the length extension direction of the material supporting gap; and the material pressing assembly is provided with a pressing block capable of moving up and down, and the pressing block is positioned right above the material supporting gap.
The technical scheme at least has the following beneficial effects: the material shifting assembly is used for shifting a workpiece subjected to edge folding forming into a material supporting gap, when the material shifting assembly is used, two supporting pieces in the material supporting assembly are in a mutually close state, when a push rod moves towards a direction close to a material baffle and pushes the workpiece to the material supporting gap, two sides of the workpiece can be supported by the two supporting pieces, the workpiece moves to the position of the material baffle and stops, then the two supporting pieces are mutually far away, the material supporting gap is enlarged, after the two sides of the workpiece lose the support, the workpiece falls onto a blanking table from the material supporting gap, a pressing block moves downwards simultaneously, the workpiece can be better positioned in an up-and-down stacking mode, the blanking table moves downwards by the thickness of one workpiece when blanking is completed, the pressing block can be enabled to press and position the workpiece falling to the top onto the stacked workpiece after the pressing block presses down the same height at each time, automatic blanking and stacking can be realized, manual operation is reduced, and automatic production is facilitated, and production stability and production efficiency are better improved.
As a further improvement of the above technical solution, the material supporting assembly includes rotary driving members and connecting shafts, the two connecting shafts are connected to the frame at intervals along the horizontal direction, the two supporting members are respectively connected to one side of the two connecting shafts opposite to each other, the two rotary driving members are respectively connected to the two connecting shafts in a driving manner, the two rotary driving members can respectively drive the two connecting shafts to rotate, and the rotating directions of the two connecting shafts are opposite. When a workpiece is required to be supported, the two supporting pieces are respectively located on one side, opposite to the connecting shafts, of the workpiece, the supporting gap formed between the two supporting pieces is small, when the workpiece is required to be discharged, the two rotary driving pieces respectively drive the two connecting shafts to rotate, the two supporting pieces are respectively rotated to the bottom sides of the two connecting shafts, the supporting gap formed between the two supporting pieces is enlarged, and the workpiece can fall on the discharging table.
As a further improvement of the technical scheme, two sides of the striker plate are respectively bent towards the direction close to the push rod to form limiting sections, and a limiting groove is formed between the striker plate and the two limiting sections in an enclosing manner. The workpiece is pushed to the position of the material baffle plate by the push rod and enters the limiting groove, the workpiece can be horizontally limited by the two limiting sections and the material baffle plate, the overturning problem of the workpiece when the workpiece drops can be reduced, and the effect of stacking the workpiece up and down is improved.
As a further improvement of the above technical solution, a discharge port is disposed on one side of the frame, a blanking plate is connected to a bottom side of the discharge port, the blanking table can move down to be flush with the blanking plate, a first translational driving member is disposed on the frame, the first translational driving member is in driving connection with a blanking push plate, and the first translational driving member can drive the blanking push plate to move in a direction close to or away from the blanking plate. After the workpieces on the blanking table are stacked to a certain height, the blanking table can be moved downwards to be flush with the blanking plate, the first translation driving piece drives the blanking push plate to be close to the blanking plate at the moment, the workpieces stacked on the blanking table are poked to the blanking plate, collection is facilitated, then the first translation driving piece drives the blanking push plate to be far away from the blanking plate, and the blanking table can ascend again to achieve secondary workpiece blanking stacking.
As a further improvement of the above technical solution, the pressing assembly includes a pressing base and a first lifting driving member, the pressing base is connected to the frame, the first lifting driving member is connected to the pressing base, the first lifting driving member is connected to the pressing block, and the first lifting driving member can drive the pressing block to move up and down. The first lifting driving piece is arranged on the material pressing base and can provide driving force for the pressing block to move up and down.
As a further improvement of the above technical solution, the blanking assembly includes an electric lifting screw rod connected to the frame, the electric lifting screw rod is connected to the bottom side of the blanking table in a driving manner, and the electric lifting screw rod can drive the blanking table to move up and down. The electric lifting screw rod can drive the blanking table to move downwards for multiple times according to a certain downwards moving height, so that the height position of the stacked workpieces can be adjusted, and the blanking table can be driven to move upwards for resetting.
As a further improvement of the above technical solution, the material shifting assembly includes a second lifting driving member, a second translational driving member and a connecting rod, the second translational driving member is connected to the frame, the second lifting driving member is connected to the second translational driving member, the second translational driving member can drive the second lifting driving member to move in a direction close to or away from the striker plate, the second lifting driving member is connected to the connecting rod in a driving manner, the second lifting driving member can drive the connecting rod to move up and down, and the push rod is connected to the connecting rod. Before pushing materials, the connecting rod firstly rises under the driving of the second lifting driving piece, then is far away from the material supporting gap under the driving of the second translation driving piece so as to cross over the workpiece, then moves downwards to one side of the workpiece far away from the material supporting gap under the driving of the second lifting driving piece, finally is close to the material supporting gap under the driving of the second translation driving piece, and pushes the workpiece into the material supporting gap, and the process is repeated so as to realize material pushing.
As a further improvement of the technical scheme, the pressing block is made of elastic materials. The elastic pressing block has a buffering effect when pressing the workpiece, the workpiece is not easy to crush, and the workpiece can be better protected.
A plastic suction flanging machine comprises a flanging forming device and the blanking mechanism, wherein the push rod can reciprocate between the flanging forming device and the material supporting gap.
The technical scheme at least has the following beneficial effects: the flanging forming device is used for flanging and forming a workpiece, and then the push rod can be used for pushing the workpiece subjected to flanging and forming into the material supporting gap for blanking, so that the labor intensity of workers can be reduced, and the improvement of the production efficiency is facilitated.
Drawings
In order to more clearly illustrate the technical solution in the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly described below. It is clear that the described figures represent only some embodiments of the invention, not all embodiments, and that a person skilled in the art can also derive other designs and figures from these figures without inventive effort.
FIG. 1 is a schematic structural view of the blanking mechanism after the frame is removed;
fig. 2 is a perspective view of the material supporting assembly of the present invention.
In the drawings: 1-blanking table, 11-electric lifting screw rod, 2-bearing piece, 21-connecting shaft, 22-material supporting gap, 3-material blocking frame, 31-material blocking plate, 311-limiting section, 4-push rod, 41-connecting rod, 5-pressing block, 51-pressing base, 52-first lifting driving piece, 61-blanking plate, 62-first translation driving piece and 63-blanking push plate.
Detailed Description
The conception, the specific structure, and the technical effects produced by the present invention will be clearly and completely described below in conjunction with the embodiments and the accompanying drawings to fully understand the objects, the features, and the effects of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and other embodiments obtained by those skilled in the art without inventive labor based on the embodiments of the present invention all belong to the protection scope of the present invention. In addition, all the connection relations mentioned herein do not mean that the components are directly connected, but mean that a better connection structure can be formed by adding or reducing connection auxiliaries according to specific implementation conditions. The technical characteristics in the invention can be combined interactively on the premise of not conflicting with each other.
Referring to fig. 1, a unloading mechanism, includes the frame, be provided with in the frame: a blanking assembly which is provided with a blanking table 1 capable of moving up and down; the material supporting assembly is provided with two supporting pieces 2 which can approach or separate from each other, a material supporting gap 22 is formed between the two supporting pieces 2, and the material supporting gap 22 is positioned above the blanking table 1; the material blocking frame 3 is connected with a material blocking plate 31, and the material blocking plate 31 is positioned in the material supporting gap 22; the material poking assembly is provided with a push rod 4 which can be close to or far away from the material baffle plate 31, and the movement direction of the push rod 4 is parallel to the length extension direction of the material supporting gap 22; the material pressing component is provided with a pressing block 5 capable of moving up and down, and the pressing block 5 is positioned right above the material supporting gap 22.
The material shifting assembly is used for shifting a workpiece subjected to edge folding forming into the material supporting gap 22, when the material shifting assembly is used, the two supporting pieces 2 in the material supporting assembly are in a mutually close state, when the push rod 4 moves towards the direction close to the material baffle plate 31 and pushes the workpiece to the material supporting gap 22, the two sides of the workpiece can be supported by the two supporting pieces 2, the workpiece moves to the position of the material baffle plate 31 and stops, then the two supporting pieces 2 are mutually far away, so that the material supporting gap 22 is enlarged, after the two sides of the workpiece lose the support, the workpiece falls from the material supporting gap 22 onto the blanking table 1, the pressing block 5 simultaneously moves downwards, so that the workpiece can be better stacked and positioned up and down, when each blanking is completed, the blanking table 1 moves downwards by the distance of one workpiece thickness, so that the pressing block 5 can press and position the workpiece falling on the top onto the stacked workpiece, automatic blanking and stacking can be realized, manual operation is reduced, and automatic production is facilitated, and production stability and production efficiency are better improved.
In practical application, there are various structural forms, for example, two telescopic driving members are directly utilized to drive the two supporting members 2 to approach or separate from each other, in order to achieve more stable blanking, and have an auxiliary downward feeding function for a workpiece, as shown in fig. 2, in this embodiment, the supporting member includes a rotary driving member and a connecting shaft 21, the two connecting shafts 21 are connected to the rack at intervals along a horizontal direction, the connecting shaft 21 is connected to the rack through a bearing in a rotating manner, the two supporting members 2 are respectively connected to one sides of the two connecting shafts 21, the supporting members 2 are fastened to the connecting shafts 21 through connecting members such as screws, bolts, rivets, and the like, the two rotary driving members respectively drive the two connecting shafts 21, the two rotary driving members can respectively drive the two connecting shafts 21 to rotate, and the two connecting shafts 21 rotate in opposite directions. When the workpiece is required to be supported, the two supporting pieces 2 are respectively positioned on one side, opposite to the two connecting shafts 21, of the workpiece, a material supporting gap 22 formed between the two supporting pieces 2 is small, when the workpiece is required to be discharged, the two rotary driving pieces respectively drive the two connecting shafts 21 to rotate, so that the two supporting pieces 2 are respectively rotated to the bottom sides of the two connecting shafts 21, the material supporting gap 22 formed between the two supporting pieces 2 is enlarged, and the workpiece can fall on the discharging table 1.
The structural shape of the supporting pieces 2 can be a groove plate structure, the notches of the two supporting pieces 2 are opposite to each other, and when a workpiece enters the notches of the supporting pieces 2, the upper position and the lower position of the workpiece can be better limited.
In the above embodiment, the striker plate 31 may be a flat plate, in order to better limit the position of the workpiece, in this embodiment, two sides of the striker plate 31 are respectively bent toward the direction close to the push rod 4 and form a limiting section 311, and a limiting groove is defined between the striker plate 31 and the two limiting sections 311. The workpiece is pushed to the position of the material baffle plate 31 by the push rod 4 and enters the limiting groove, the workpiece can be horizontally limited by the two limiting sections 311 and the material baffle plate 31, the overturning problem of the workpiece when the workpiece drops can be reduced, and the effect of vertically stacking the workpiece can be improved.
In order to facilitate material taking, the stacked workpieces on the blanking table 1 may be moved out of the rack and then taken, in this embodiment, a discharge port is disposed on one side of the rack, a blanking plate 61 is connected to a bottom side of the discharge port, the blanking table 1 may be moved down to be flush with the blanking plate 61, a first translational driving member 62 is disposed on the rack, the first translational driving member 62 is drivingly connected to a blanking push plate 63, and the first translational driving member 62 may drive the blanking push plate 63 to move in a direction close to or away from the blanking plate 61. After the workpieces on the blanking table 1 are stacked to a certain height, the blanking table 1 can be moved downwards to be flush with the blanking plate 61, at the moment, the first translational driving piece 62 drives the blanking push plate 63 to be close to the blanking plate 61, the workpieces stacked on the blanking table 1 are pushed to the blanking plate 61 to be conveniently collected, then the first translational driving piece 62 drives the blanking push plate 63 to be far away from the blanking plate 61, and the blanking table 1 can be lifted again to realize secondary workpiece blanking stacking.
In this embodiment, the pressing assembly includes a pressing base 51 and a first lifting driving element 52, the pressing base 51 is connected to the rack, the first lifting driving element 52 is connected to the pressing base 51, the first lifting driving element 52 is connected to the pressing block 5 in a driving manner, and the first lifting driving element 52 can drive the pressing block 5 to move up and down. The first elevation driving member 52 is mounted on the pressing base 51, and provides a driving force for the pressing block 5 to move up and down.
Every work piece of unloading piles up the back to unloading platform 1, and unloading platform 1 all need move down certain distance to can not crush the work piece when making next briquetting 5 push down the work piece, in this embodiment, the unloading subassembly including connect in electric lift lead screw 11 in the frame, electric lift lead screw 11 drive is connected the bottom side of unloading platform 1, electric lift lead screw 11 can drive unloading platform 1 up-and-down motion. The electric lifting screw rod 11 can drive the blanking table 1 to move downwards for multiple times according to a certain moving-down height, so that the height position of the stacked workpieces can be adjusted, and the blanking table 1 can be driven to move upwards for resetting.
The material stirring assembly is mainly used for stirring and conveying a workpiece to the material supporting gap 22 by using the push rod 4, in order to avoid the workpiece when the workpiece is close to the workpiece, namely when the workpiece is far away from the material supporting gap 22, the workpiece can be avoided by adopting modes such as rotating the push rod 4, in the embodiment, the material stirring assembly comprises a second lifting driving part, a second translation driving part and a connecting rod 41, the second translation driving part is connected to the rack, the second lifting driving part is connected to the second translation driving part, the second translation driving part can drive the second lifting driving part to move in the direction close to or far away from the material baffle plate 31, the second lifting driving part is in driving connection with the connecting rod 41, the second lifting driving part can drive the connecting rod 41 to move up and down, and the push rod 4 is connected to the connecting rod 41. Before pushing, the connecting rod 41 is driven by the second lifting driving member to ascend, then driven by the second translation driving member to be away from the material supporting gap 22 so as to cross over the workpiece, then driven by the second lifting driving member to move downwards to the side of the workpiece away from the material supporting gap 22, and finally driven by the second translation driving member to be close to the material supporting gap 22 so as to dial the workpiece into the material supporting gap 22, so that the circulation is repeated to realize material dialing.
In some embodiments, the pressing block 5 is made of an elastic material. The elastic pressing block 5 has a buffering effect when pressing the workpiece, the workpiece is not easy to crush, and the workpiece can be better protected.
In practical applications, the first lifting driving member 52, the second lifting driving member, the first translational driving member 62 and the second translational driving member are mainly used for providing the driving force reciprocating in the linear direction, and the driving structure thereof may be in various forms, such as an electric push rod, a pneumatic push rod or a hydraulic push rod, and any one of the above may be adopted.
A plastic suction flanging machine comprises a flanging forming device and the blanking mechanism, wherein the push rod 4 can reciprocate between the flanging forming device and the material supporting gap 22.
Hem forming device is used for carrying out the hem shaping to the work piece, hem forming device includes heatable hot plate, can follow straight reciprocating motion's the folded plate that turns over, utilizes the hot plate to be close to the work piece earlier, heats and 90 degrees buckle the side of work piece, then recycles and turns over the folded plate and buckle the back with 90 degrees and buckle the shaping of buckling once more, push rod 4 can be dialled the work piece after the hem shaping to holding in the palm the unloading in the material clearance 22, so can reduce workman intensity of labour, be favorable to improving production efficiency.
While the preferred embodiments of the present invention have been described in detail, it will be understood by those skilled in the art that the invention is not limited to the details of the embodiments shown, but is capable of various modifications and substitutions without departing from the spirit of the invention.

Claims (9)

1. The utility model provides a unloading mechanism which characterized in that: including the frame, be provided with in the frame:
a blanking assembly which is provided with a blanking platform (1) capable of moving up and down;
the material supporting assembly is provided with two supporting pieces (2) which can be close to or far away from each other, a material supporting gap (22) is formed between the two supporting pieces (2), and the material supporting gap (22) is positioned above the blanking table (1);
the material blocking frame (3) is connected with a material blocking plate (31), and the material blocking plate (31) is positioned in the material supporting gap (22);
the material poking assembly is provided with a push rod (4) which can be close to or far away from the material baffle plate (31), and the movement direction of the push rod (4) is parallel to the length extension direction of the material supporting gap (22);
the material pressing assembly is provided with a pressing block (5) capable of moving up and down, and the pressing block (5) is located right above the material supporting gap (22).
2. The blanking mechanism of claim 1, wherein: the material supporting assembly comprises rotary driving pieces and connecting shafts (21), the connecting shafts (21) are connected to the rack at intervals in the horizontal direction, the supporting pieces (2) are connected to two sides, opposite to the connecting shafts (21), of the connecting shafts (21), the rotary driving pieces are in driving connection with the connecting shafts (21) respectively, the two rotary driving pieces can drive the connecting shafts (21) to rotate respectively, and the rotating directions of the connecting shafts (21) are opposite.
3. The blanking mechanism of claim 1, wherein: the two sides of the material baffle plate (31) are bent towards the direction close to the push rod (4) respectively to form a limiting section (311), and a limiting groove is formed between the material baffle plate (31) and the two limiting sections (311).
4. The blanking mechanism of claim 1, wherein: the blanking device is characterized in that a discharge port is formed in one side of the rack, a blanking plate (61) is connected to the bottom side of the discharge port, the blanking table (1) can move downwards to be flush with the blanking plate (61), a first translation driving piece (62) is arranged on the rack, the first translation driving piece (62) is in driving connection with a blanking push plate (63), and the first translation driving piece (62) can drive the blanking push plate (63) to move in a direction close to or far away from the blanking plate (61).
5. The blanking mechanism of claim 1, wherein: the material pressing assembly comprises a material pressing base (51) and a first lifting driving piece (52), the material pressing base (51) is connected to the rack, the first lifting driving piece (52) is connected to the material pressing base (51), the first lifting driving piece (52) is in driving connection with the pressing block (5), and the first lifting driving piece (52) can drive the pressing block (5) to move up and down.
6. The blanking mechanism of claim 1, wherein: the blanking assembly comprises an electric lifting screw rod (11) connected to the rack, the electric lifting screw rod (11) is in driving connection with the bottom side of the blanking table (1), and the electric lifting screw rod (11) can drive the blanking table (1) to move up and down.
7. The blanking mechanism of claim 1, wherein: the material stirring assembly comprises a second lifting driving piece, a second translation driving piece and a connecting rod (41), the second translation driving piece is connected to the rack, the second lifting driving piece is connected to the second translation driving piece, the second translation driving piece can drive the second lifting driving piece to move in the direction close to or far away from the material baffle plate (31), the second lifting driving piece is in driving connection with the connecting rod (41), the second lifting driving piece can drive the connecting rod (41) to move up and down, and the push rod (4) is connected to the connecting rod (41).
8. The blanking mechanism of claim 1, wherein: the pressing block (5) is made of elastic materials.
9. The utility model provides a plastic uptake flanging machine which characterized in that: -a blanking mechanism according to any of claims 1 to 8, comprising a flanging device, the push rod (4) being reciprocally movable between the flanging device and the holding gap (22).
CN202221723374.2U 2022-07-06 2022-07-06 Unloading mechanism and plastic uptake flanging machine Active CN218053950U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221723374.2U CN218053950U (en) 2022-07-06 2022-07-06 Unloading mechanism and plastic uptake flanging machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221723374.2U CN218053950U (en) 2022-07-06 2022-07-06 Unloading mechanism and plastic uptake flanging machine

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CN218053950U true CN218053950U (en) 2022-12-16

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115091728A (en) * 2022-07-06 2022-09-23 佛山市南海盐步裕城机械厂 Plastic uptake flanging machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115091728A (en) * 2022-07-06 2022-09-23 佛山市南海盐步裕城机械厂 Plastic uptake flanging machine

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GR01 Patent grant
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TR01 Transfer of patent right

Effective date of registration: 20240206

Address after: 528247, No. 5, Sixiang, Yanbu Chongbiao Xin Village, Dali Town, Nanhai District, Foshan City, Guangdong Province

Patentee after: Liang Yuhang

Country or region after: China

Address before: No. 418-4, Liansheng Village, Yanbu Hedong, Dali Town, Nanhai District, Foshan City, Guangdong Province, 528247

Patentee before: Foshan Nanhai Yanbu Yucheng Machinery Factory

Country or region before: China