CN214826927U - Prevent damaged automatic tilting mechanism of product - Google Patents

Prevent damaged automatic tilting mechanism of product Download PDF

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Publication number
CN214826927U
CN214826927U CN202120841647.2U CN202120841647U CN214826927U CN 214826927 U CN214826927 U CN 214826927U CN 202120841647 U CN202120841647 U CN 202120841647U CN 214826927 U CN214826927 U CN 214826927U
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gear
plate
turnover
product
conveyor belt
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CN202120841647.2U
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汪立彬
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Suzhou Weichuang Special Precision Machinery Co ltd
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Suzhou Weichuang Special Precision Machinery Co ltd
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Abstract

The utility model discloses a prevent damaged automatic tilting mechanism of product, including the working plate body, spacing subassembly and upset subassembly, the working plate body: its upper surface is equipped with the recess, and the left end of recess is equipped with first electronic conveyer belt, and the right-hand member of recess is equipped with the electronic conveyer belt of second, and the rear side inner wall left end upper side of recess is equipped with photoelectric sensor, and the front surface middle part of the working plate body is equipped with motor, upset subassembly: set up in the middle part of recess, the front end of upset subassembly and the output shaft rear end fixed connection of motor, photoelectric sensor vertically corresponds with the left end of upset subassembly, spacing subassembly: set up in the upper end of upset subassembly, wherein: still include the PLC controller, the PLC controller sets up in the front surface left end of work plate body, and this prevent damaged automatic tilting mechanism of product reduces human resource's input, improves production efficiency, increases the stability of product in the upset in-process, avoids the product to produce the damage, increases the yields, improves production speed.

Description

Prevent damaged automatic tilting mechanism of product
Technical Field
The utility model relates to an automatic tipping arrangement technical field specifically is a prevent damaged automatic tilting mechanism of product.
Background
The turnover mechanism is widely applied to industries such as metallurgy, stamping, metal plates, dies, papermaking, refrigeration, steel belts, wire coils, barrels, coil stocks and the like, can meet engineering turnover requirements of goods of different specifications, safely, stably and effectively provides process conveying, achieves an operation target of converting goods from horizontal to vertical or from vertical to horizontal, adopts an original manual turnover method, and can cause accidental danger to damage workpieces; the personal safety of operators is endangered; damage lifting device, so just need use tilting mechanism to overturn the product, convenient and fast ground overturns the goods, need not artifical and the participation that hangs of going, improves production efficiency, and in specific use, the product makes easy emergence offset in the upset, and the phenomenon that drops appears, produces the damage to the product, influences the efficiency of production.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome current defect, provide a prevent damaged automatic tilting mechanism of product, inject the position of product in the upset process, increase the stability of product in the upset process, avoid the product to produce the damage, improve production efficiency, can effectively solve the problem in the background art.
In order to achieve the above object, the utility model provides a following technical scheme: an automatic turnover mechanism for preventing a product from being damaged comprises a working plate body, a limiting assembly and a turnover assembly;
a working plate body: the upper surface of the working plate body is provided with a groove, the left end of the groove is provided with a first electric conveyor belt, the right end of the groove is provided with a second electric conveyor belt, the upper side of the left end of the inner wall of the rear side of the groove is provided with a photoelectric sensor, and the middle part of the front surface of the working plate body is provided with a motor;
turning over the assembly: the front end of the overturning assembly is fixedly connected with the rear end of an output shaft of the motor, and the photoelectric sensor longitudinally corresponds to the left end of the overturning assembly;
a limiting component: the turnover component is arranged at the upper end of the turnover component;
wherein: still include the PLC controller, the PLC controller sets up in the front surface left end of work plate body, the input electricity of PLC controller is connected in external power supply, including a motor, an end cap, a controller, and a cover plate, the input electricity of first electric conveyor belt and second electric conveyor belt all connects in the output of PLC controller, photoelectric sensor's output electricity is connected in the input of PLC controller, overturn the product, reduce the input of manpower resources, reduce the required time of product upset, and the efficiency of production is improved, prescribe a limit to the position of product in the upset process, increase the stability of product in the upset process, avoid the product to produce the damage, increase the yields, and the production speed is improved.
Further, the upset subassembly includes returning face plate, drive gear, rotary column, turn trough and gear, the rotary column symmetry rotates and connects in the middle part of recess, left rotary column extrados middle part all is equipped with drive gear with the rotary column outside front end on right side, the extrados of rotary column all is equipped with the returning face plate, the inside of returning face plate all is equipped with the turn trough that transversely corresponds with the drive gear of homonymy, left returning face plate diaphragm vertically corresponds with photoelectric sensor, gear revolve connects in the front side inner wall middle part of recess, the gear is located between two rotary columns and is connected with the drive gear meshing on right side, the output shaft rear end of motor pass on the working plate body vertically the through-hole that corresponds and with the front end fixed connection of gear, the rotation through the returning face plate overturns the product.
Further, the upset subassembly still includes sliding gear and column spinner, the column spinner rotates to be connected in the front and back inner wall middle part of recess, and the column spinner rotates to be connected in upside between two column spinners, and the extrados middle part of column spinner is equipped with sliding gear, and sliding gear is connected with left drive gear meshing, and sliding gear's front end and gear engagement are connected, make two synchronous relative rotations of returning face plate, realize the upset to the product.
Further, spacing subassembly includes baffle, spring, spout, connecting plate and roof, the connecting plate sets up in left returning face plate diaphragm lower surface right-hand member, the spout sets up in left returning face plate diaphragm upper surface right-hand member, inside the lower extreme of spout passed left returning face plate diaphragm and entered into the connecting plate, the diapire longitudinal arrangement of spout has the spring, the top of spring all with the lower fixed surface of baffle be connected, the inside sliding connection of baffle and spout, the roof sets up in the returning face plate diaphragm upper surface left end on right side, prescribe a limit to the position of product among the upset process, avoid the product to produce the damage.
Furthermore, the upper surface of the first electric conveyor belt is positioned on the upper side of the upper surface of the second electric conveyor belt, the upper surface of the transverse plate of the turnover plate on the left side and the upper surface of the first electric conveyor belt are positioned in the same plane, and the transverse plate of the turnover plate on the right side inclines towards the lower right side, so that the overturned product can be automatically transferred to the upper surface of the second electric conveyor belt.
Compared with the prior art, the beneficial effects of the utility model are that: this prevent damaged automatic tilting mechanism of product has following benefit:
1. PLC controller control motor starts, the output shaft of motor drives gear clockwise rotation, be connected with the drive gear meshing on right side through the gear, make the rotary column on right side drive the returning face plate counter-clockwise turning on right side, the while slip gear counter-clockwise turning, drive left rotary column and left returning face plate clockwise turning, two returning face plate relative rotations, the diaphragm that finally makes two returning face plates is parallel to each other, the returning face plate on right side is shifted to the product from left returning face plate, then the motor reversal, drive two returning face plates and reset, overturn the product, reduce manpower resources's input, reduce the required time of product upset, and the production efficiency is improved.
2. At left returning face plate rotation in-process, the baffle can block the lapse of product, support the product, after the diaphragm of two returning face plates is parallel to each other, roof pressure baffle, the spring shrink makes inside the baffle slips into the spout, the roof replaces the baffle to support the product, make the product shift the returning face plate on right side from left returning face plate, prescribe a limit to the position of turnover in-process product, increase the stability of product in the turnover process, avoid the product to produce the damage, increase the yields, and the production speed is increased.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of the turnover assembly of the present invention;
fig. 3 is an enlarged schematic view of the a position of the present invention.
In the figure: the automatic control device comprises a working plate body 1, a groove 2, a first electric conveyor belt 3, a second electric conveyor belt 4, a photoelectric sensor 5, a limiting assembly 6, a baffle plate 61, a spring 62, a sliding groove 63, a connecting plate 64, a top plate 65, a turnover assembly 7, a turnover plate 71, a transmission gear 72, a sliding gear 73, a rotating column 74, a rotating column 75, a rotating groove 76, a gear 77, a motor 8 and a PLC (programmable logic controller) 9.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides a technical solution: an automatic turnover mechanism for preventing a product from being damaged comprises a working plate body 1, a limiting assembly 6 and a turnover assembly 7;
the working plate body 1: the upper surface of the working plate body 1 is provided with a groove 2 to provide space for the arrangement of the turnover assembly 7, the left end of the groove 2 is provided with a first electric conveyor belt 3, the right end of the groove 2 is provided with a second electric conveyor belt 4 to convey products, the upper side of the left end of the inner wall of the rear side of the groove 2 is provided with a photoelectric sensor 5 to detect the position of the products, and the middle part of the front surface of the working plate body 1 is provided with a motor 8 to provide power for the operation of the turnover assembly 7;
the overturning assembly 7: the turning assembly 7 comprises a turning plate 71, a transmission gear 72, turning columns 75, turning grooves 76 and a gear 77, the turning columns 75 are symmetrically and rotatably connected to the middle part of the groove 2, the transmission gear 72 is arranged at the middle part of the outer arc surface of the turning column 75 on the left side and the front end of the outer side surface of the turning column 75 on the right side, the turning plate 71 is arranged on the outer arc surface of the turning column 75 on the left side, the turning grooves 76 transversely corresponding to the transmission gear 72 on the same side are arranged in the turning plate 71, the transverse plate of the turning plate 71 on the left side longitudinally corresponds to the photoelectric sensor 5, the gear 77 is rotatably connected to the middle part of the inner wall on the front side of the groove 2, the gear 77 is positioned between the two turning columns 75 and is meshed and connected with the transmission gear 72 on the right side, the rear end of the output shaft of the motor 8 penetrates through a longitudinally corresponding through hole on the working plate body 1 and is fixedly connected with the front end of the gear 77, the turnover assembly 7 further comprises a sliding gear 73 and a rotating column 74, the rotating column 74 is rotatably connected to the middle parts of the front and rear inner walls of the groove 2, the rotating column 74 is rotatably connected to the upper side between the two rotating columns 75, the sliding gear 73 is arranged in the middle part of the outer arc surface of the rotating column 74, the sliding gear 73 is meshed with the transmission gear 72 on the left side, the front end of the sliding gear 73 is meshed with the gear 77, the PLC 9 controls the motor 8 to be started, the output shaft of the motor 8 drives the gear 77 to rotate clockwise, the gear 77 is meshed with the transmission gear 72 on the right side, the rotating column 75 on the right side drives the turnover plate 71 on the right side to rotate anticlockwise, the sliding gear 73 rotates anticlockwise simultaneously to drive the rotating column 75 on the left side and the turnover plate 71 on the left side to rotate clockwise, the two turnover plates 71 rotate relatively, and finally the transverse plates of the two turnover plates 71 are parallel to each other, so that the product is transferred from the turnover plate 71 on the left side to the turnover plate 71 on the right side, then the motor 8 rotates reversely to drive the two turnover plates 71 to reset to turn over the products, the upper surface of the first electric conveyor belt 3 is positioned at the upper side of the upper surface of the second electric conveyor belt 4, the upper surface of the transverse plate of the turnover plate 71 at the left side and the upper surface of the first electric conveyor belt 3 are positioned in the same plane, and the transverse plate of the turnover plate 71 at the right side inclines towards the lower right side, so that the products after turning over slide downwards under the action of self gravity and fall onto the upper surface of the second electric conveyor belt 4;
and a limiting component 6: the limiting component 6 comprises a baffle 61, a spring 62, a chute 63, a connecting plate 64 and a top plate 65, the connecting plate 64 is arranged at the right end of the lower surface of the transverse plate of the left turnover plate 71, the chute 63 is arranged at the right end of the upper surface of the transverse plate of the left turnover plate 71, the lower end of the chute 63 penetrates through the transverse plate of the left turnover plate 71 and enters into the connecting plate 64, the springs 62 are longitudinally arranged at the bottom wall of the chute 63, the upper ends of the springs 62 are fixedly connected with the lower surface of the baffle 61, the baffle 61 is slidably connected with the inside of the chute 63, the top plate 65 is arranged at the left end of the upper surface of the transverse plate of the right turnover plate 71, the baffle 61 can block downward sliding of a product during the rotation process of the left turnover plate 71 to support the product, when the transverse plates of the two turnover plates 71 are parallel to each other, the top plate 65 presses the baffle 61, the spring 62 contracts to enable the baffle 61 to slide into the chute 63, the top plate 65 supports the product instead of the baffle plate 61, so that the product is transferred from the turnover plate 71 on the left side to the turnover plate 71 on the right side;
wherein: still include PLC controller 9, PLC controller 9 sets up in the front surface left end of the work plate body 1, and the input electricity of PLC controller 9 is connected in external power source, and the input electricity of motor 8, first electric conveyor belt 3 and second electric conveyor belt 4 is all connected in the output of PLC controller 9, and the output electricity of photoelectric sensor 5 is connected in the input of PLC controller 9, controls the start-up and the stop of integrated device.
When in use: fixing the whole device on a plane, placing a product at the left end of the upper surface of a first electric conveyor belt 3, starting the first electric conveyor belt 3 through a PLC (programmable logic controller) 9, driving the product to move rightwards and moving the product to the upper surface of the transverse plate of a left turnover plate 71, at the moment, detecting the product by a photoelectric sensor 5 and transmitting a signal to the PLC 9, controlling a motor 8 to start by the PLC 9, driving a gear 77 to rotate clockwise by an output shaft of the motor 8, meshing and connecting with a transmission gear 72 on the right through the gear 77, enabling a rotary column 75 on the right to drive the turnover plate 71 on the right to rotate anticlockwise, simultaneously enabling a sliding gear 73 to rotate anticlockwise, driving a rotary column 75 on the left and the turnover plate 71 on the left to rotate clockwise, enabling two turnover plates 71 to rotate relatively, and finally enabling the transverse plates of the two turnover plates 71 to be parallel to each other, wherein in the rotating process of the turnover plate 71 on the left, a baffle 61 can block the product from sliding downwards, support the product, after the diaphragm of two returning face plates 71 is parallel to each other, roof 65 roof pressure baffle 61, spring 62 shrink, make baffle 61 slide into inside the spout 63, roof 65 replaces baffle 61 to support the product, make the product shift to the returning face plate 71 on right side from left returning face plate 71, then the motor 8 reversal, drive two returning face plates 71 and reset, returning face plate 71 on right side drives the product clockwise, overturn the product, after the upset is accomplished, because the returning face plate 71 diaphragm below slope to the right side on right side, under the effect of product self gravity, the product slides down, fall into the upper surface of second electric conveyor belt 4, start second electric conveyor belt 4, continue to move the product to the right.
It should be noted that the PLC controller 9 disclosed in this embodiment may be a PLC controller of model TPC8-8TD of beijing watch-controlled technology ltd, the motor 8 and the photoelectric sensor 5 may be freely configured according to an actual application scenario, the motor 8 may be a speed-adjusting motor of model 5IK40RGU-CF of raoharded transmission equipment ltd, tokyo, guan, the photoelectric sensor 5 may be a reflection-type photoelectric sensor of model KR3630 of zhhai rijia new optoelectronics ltd, and the PLC controller 9 controls the motor 8 and the photoelectric sensor 5 to operate by a method commonly used in the prior art.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. The utility model provides a prevent damaged automatic tilting mechanism of product which characterized in that: comprises a working plate body (1), a limiting component (6) and a turnover component (7);
-a work plate body (1): a groove (2) is formed in the upper surface of the working plate body, a first electric conveyor belt (3) is arranged at the left end of the groove (2), a second electric conveyor belt (4) is arranged at the right end of the groove (2), a photoelectric sensor (5) is arranged on the upper side of the left end of the inner wall of the rear side of the groove (2), and a motor (8) is arranged in the middle of the front surface of the working plate body (1);
flip assembly (7): the turnover mechanism is arranged in the middle of the groove (2), the front end of the turnover component (7) is fixedly connected with the rear end of an output shaft of the motor (8), and the photoelectric sensor (5) longitudinally corresponds to the left end of the turnover component (7);
limiting component (6): is arranged at the upper end of the turnover component (7);
wherein: still include PLC controller (9), PLC controller (9) set up in the front surface left end of work plate body (1), and the input electricity of PLC controller (9) is connected in external power source, and the input of motor (8), first electric conveyor belt (3) and second electric conveyor belt (4) all connects in the output of PLC controller (9), and the output electricity of photoelectric sensor (5) connects in the input of PLC controller (9).
2. The automatic turnover mechanism for preventing breakage of products as claimed in claim 1, wherein: the turnover component (7) comprises a turnover plate (71), a transmission gear (72), a rotary column (75), a rotary groove (76) and a gear (77), the utility model discloses a photoelectric sensor, including groove (2), rotary column (75), the outer cambered surface of left rotary column (75) middle part all is equipped with drive gear (72) with rotary column (75) outside front end on right side, the outer cambered surface of rotary column (75) all is equipped with returning face plate (71), the inside of returning face plate (71) all is equipped with the turn trough (76) that transversely corresponds with drive gear (72) of homonymy, left returning face plate (71) diaphragm vertically corresponds with photoelectric sensor (5), gear (77) rotate to be connected in the front side inner wall middle part of groove (2), gear (77) are located between two rotary columns (75) and are connected with drive gear (72) meshing on right side, the output shaft rear end of motor (8) passes on work plate body (1) vertical corresponding through-hole and with the front end fixed connection of gear (77).
3. The automatic turnover mechanism for preventing breakage of products as claimed in claim 2, wherein: upset subassembly (7) still include sliding gear (73) and column spinner (74), column spinner (74) rotate to be connected in the front and back inner wall middle part of recess (2), and column spinner (74) rotate to be connected in upside between two column spinners (75), and the extrados middle part of column spinner (74) is equipped with sliding gear (73), and sliding gear (73) are connected with left drive gear (72) meshing, and the front end and the gear (77) meshing of sliding gear (73) are connected.
4. The automatic turnover mechanism for preventing breakage of products as claimed in claim 2, wherein: spacing subassembly (6) include baffle (61), spring (62), spout (63), connecting plate (64) and roof (65), connecting plate (64) set up in left returning face plate (71) diaphragm lower surface right-hand member, spout (63) set up in left returning face plate (71) diaphragm upper surface right-hand member, the lower extreme of spout (63) passes left returning face plate (71) diaphragm and enters into inside connecting plate (64), the diapire longitudinal arrangement of spout (63) has spring (62), the top of spring (62) all with the lower fixed surface of baffle (61) be connected, the inside sliding connection of baffle (61) and spout (63), roof (65) set up in the returning face plate (71) diaphragm upper surface left end on right side.
5. The automatic turnover mechanism for preventing breakage of products as claimed in claim 2, wherein: the upper surface of the first electric conveyor belt (3) is positioned on the upper side of the upper surface of the second electric conveyor belt (4), the upper surface of the transverse plate of the turnover plate (71) on the left side and the upper surface of the first electric conveyor belt (3) are positioned in the same plane, and the transverse plate of the turnover plate (71) on the right side inclines towards the lower right side.
CN202120841647.2U 2021-04-23 2021-04-23 Prevent damaged automatic tilting mechanism of product Active CN214826927U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120841647.2U CN214826927U (en) 2021-04-23 2021-04-23 Prevent damaged automatic tilting mechanism of product

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Application Number Priority Date Filing Date Title
CN202120841647.2U CN214826927U (en) 2021-04-23 2021-04-23 Prevent damaged automatic tilting mechanism of product

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CN202120841647.2U Active CN214826927U (en) 2021-04-23 2021-04-23 Prevent damaged automatic tilting mechanism of product

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116750464A (en) * 2023-08-16 2023-09-15 江苏人民机具有限公司 Automatic turning device of track shoe

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116750464A (en) * 2023-08-16 2023-09-15 江苏人民机具有限公司 Automatic turning device of track shoe
CN116750464B (en) * 2023-08-16 2023-11-07 江苏人民机具有限公司 Automatic turning device of track shoe

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