CN204124795U - A kind of part flow arrangement and automatic shunt mechanism - Google Patents

A kind of part flow arrangement and automatic shunt mechanism Download PDF

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Publication number
CN204124795U
CN204124795U CN201420575763.4U CN201420575763U CN204124795U CN 204124795 U CN204124795 U CN 204124795U CN 201420575763 U CN201420575763 U CN 201420575763U CN 204124795 U CN204124795 U CN 204124795U
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China
Prior art keywords
longitudinal
horizontal driving
driving lever
cylinder
longitudinal cylinder
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Withdrawn - After Issue
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CN201420575763.4U
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Chinese (zh)
Inventor
罗勇
潘俊武
赵明宏
罗明
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GUANGZHOU DICASTAL ASAHI ALUMINUM CASTING Co Ltd
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GUANGZHOU DICASTAL ASAHI ALUMINUM CASTING Co Ltd
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Priority to CN201420575763.4U priority Critical patent/CN204124795U/en
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Publication of CN204124795U publication Critical patent/CN204124795U/en
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Abstract

The utility model relates to a kind of part flow arrangement, comprise some longitudinal cylinders of being arranged side by side and at least one horizontal driving lever, horizontal driving lever wherein between two adjacent longitudinal cylinders and can between two longitudinal cylinders transverse shifting, horizontal driving lever is supporting is provided with jacking unit, and jacking unit makes horizontal driving lever upwards be raised up to exceed longitudinal cylinder or be reduced to downwards lower than longitudinal cylinder.The utility model also relates to the automatic shunt mechanism using part flow arrangement.The utility model utilizes longitudinal cylinder that product is longitudinally delivered on longitudinal slipway, when needs branch to sideslipway, utilize jacking unit that horizontal driving lever is risen, horizontal group of product is on the sideslipway of device both sides again, use by using merely the interlock of longitudinal cylinder and longitudinal cylinder and horizontal driving lever, realize the orientating products on manufacturing line being branched to the position of specifying for detection, greatly improve production efficiency.The utility model can be applicable to product automatic shunt on a production line.

Description

A kind of part flow arrangement and automatic shunt mechanism
Technical field
The utility model relates to the processing of auto parts and components, particularly a kind of part flow arrangement and automatic shunt mechanism.
Background technology
At present, production firm all needs to be tested to its quality by checker in the process of producing automotive hub, and concrete way is that wheel hub product is transported to somewhere by the mode shunted by a dead lift from conveyor line.But along with the lifting of casting efficiency, the output time of product, gradually lower than detection time, so conveyor line just returns and cause product overloading, and the proving time of checker is wasted in shunting, so just cannot check production product in time.
Overstocking of product also can bring very large impact to the quality of whole manufacturing line and product, such as:
1. product overloading can affect production quality control, and the product that does does not have enough time to check, and brings larger quality influence like this to product design;
2. product overloading also affects on-the-spot 5S simultaneously, and tractor driver also can be affected in course work, even can cause raw safety misadventure;
3. overstocking of product could affect normal Foundry Production simultaneously! Process easily causes bump injury;
4. the overstocked meeting of product causes checkout procedure to accelerate, and undetected, brill rising head overstocks.
Utility model content
In order to overcome above-mentioned technical matters, the purpose of this utility model is to provide a kind of part flow arrangement, realizes the direction splitter of product.
The technical scheme that the utility model adopts is:
A kind of part flow arrangement, comprise some longitudinal cylinders of being arranged side by side and at least one horizontal driving lever, described horizontal driving lever wherein between two adjacent longitudinal cylinders and can between two longitudinal cylinders transverse shifting, described horizontal driving lever is supporting is provided with jacking unit, and described jacking unit makes horizontal driving lever upwards be raised up to exceed longitudinal cylinder or be reduced to downwards lower than longitudinal cylinder.
As the further improvement of technique scheme, described horizontal driving lever has two, and the line of two horizontal driving levers is perpendicular to longitudinal cylinder, and described two horizontal driving levers are synchronously traversing.
As the further improvement of technique scheme, described jacking unit comprises cross slide, and described cross slide is provided with lifter, and described lifter connects horizontal driving lever.
As the further improvement of technique scheme, be provided with cross slide relatively-stationary guide plate above described cross slide, described guide plate is provided with orienting sleeve that is supporting with horizontal driving lever and the horizontal driving lever up-and-down movement of confession.
As the further improvement of technique scheme, also comprise traversing driver element, described traversing driver element comprises fixed end and mouth, and described fixed end is fixed relative to the axis of longitudinal cylinder, and mouth connects cross slide and can be parallel to longitudinal cylinder work axial-movement back and forth.
As the further improvement of technique scheme, described cross slide is connected with line slideway, and described line slideway is as the load-bearing of cross slide.
As the further improvement of technique scheme, described each longitudinal cylinder one end is in the same way connected to sprocket wheel respectively, and the external diameter of described sprocket wheel is less than the external diameter of longitudinal cylinder, and described each sprocket wheel is engaged with chain drive-belt in bottom, and described chain drive-belt does one-way movement.
As the further improvement of technique scheme, the two ends of described longitudinal cylinder are provided with transition cylinder, and described transition cylinder is perpendicular to longitudinal cylinder.
The utility model also provides a kind of automatic shunt mechanism, thus the easy product that realizes arrives assigned address automatically.
A kind of automatic shunt mechanism, comprise in one longitudinal slipway of " fourth " font and the twice sideslipway perpendicular to longitudinal slipway, part flow arrangement is provided with at the crossover location of " fourth " word, described sideslipway is positioned at the transverse ends of longitudinal cylinder, and described longitudinal slipway is positioned at longitudinal exit of longitudinal cylinder.
As the further improvement of technique scheme, described longitudinal slipway and sideslipway are equipped with projector and receptor, corresponding projector presss from both sides in an acute angle to the straight line that receptor is linked to be and product at the straight line at the service direction place of corresponding slideway.
The beneficial effects of the utility model are: the utility model utilizes longitudinal cylinder that product is longitudinally delivered on longitudinal slipway, when needs branch to sideslipway, utilize jacking unit that horizontal driving lever is risen, horizontal group of product is on the sideslipway of device both sides again, use by using merely the interlock of longitudinal cylinder and longitudinal cylinder and horizontal driving lever, realize the orientating products on manufacturing line being branched to the position of specifying for detection, eliminate the operation adopting a dead lift, greatly improve production efficiency.
Accompanying drawing explanation
Below in conjunction with drawings and embodiments, the utility model is further illustrated.
Fig. 1 is front view of the present utility model;
Fig. 2 is the enlarged diagram of part A in Fig. 1;
Fig. 3 is right elevation of the present utility model;
Fig. 4 is the enlarged diagram of part B in Fig. 3;
Fig. 5 is birds-eye view of the present utility model;
Fig. 6 is the structural representation of longitudinal cylinder;
Fig. 7 is the schematic diagram of traversing driver element;
The schematic diagram of Tu8Shi automatic shunt mechanism.
Detailed description of the invention
Part flow arrangement as shown in Figures 1 to 6, comprises some longitudinal cylinders 1 of being arranged side by side and at least one horizontal driving lever 2.Each longitudinal cylinder 1 all rolls along a direction, makes can unidirectionally to carry at the product of its surperficial process, such as, moving to the left from right side shown in Fig. 1.Horizontal driving lever 2, and should between two longitudinal cylinders 1 near middle part wherein between two adjacent longitudinal cylinders 1.Horizontal driving lever 2 can do the transverse shifting being parallel to longitudinal cylinder 1 axis between two longitudinal cylinders 1, thus drives product and horizontal driving lever 2 to move in the same way.In order to ensure that product is not stopped by horizontal driving lever 2 entering in longitudinal cylinder 1 area division, it is horizontal that driving lever 2 is supporting is provided with jacking unit, this jacking unit can rise and decline, drive horizontal driving lever 2 to be upwards raised up to during its rising and exceed longitudinal cylinder 1, start horizontal group of product afterwards, it drives horizontal driving lever 2 to be reduced to lower than longitudinal cylinder 1 downwards when declining, thus product can enter above longitudinal cylinder 1.
As preferred embodiment, as shown in Figure 1 and Figure 5, because wheel hub product is circular, single horizontal driving lever 2 easily causes product to rotate and displacement, and therefore horizontal driving lever 2 has two.The line of two horizontal driving levers 2 is synchronously traversing perpendicular to longitudinal cylinder 1, two horizontal driving levers 2, and two horizontal driving levers 2 all to insert after in the space in the middle part of wheel hub more synchronously horizontal group, and the movement of product can keep stable.
As preferred embodiment, enter shown in Fig. 2,5 and 7, jacking unit comprises cross slide 3, and cross slide 3 is provided with left, right two lifters, this lifter is little cylinder 12, and the output shaft of little cylinder 12 vertically upward and connect horizontal driving lever 2.
As preferred embodiment, as shown in Figure 2, be provided with the relatively-stationary guide plate 4 with cross slide 3 above cross slide 3, both are connected and move simultaneously.Guide plate 4 is provided with the orienting sleeve 5 of two vertical direction, and this two orienting sleeves 5 are supporting and for horizontal driving lever 2 up-and-down movement with horizontal driving lever 2.By the setting of orienting sleeve 5, the reaction force acts of horizontal driving lever 2 product when traversing, on orienting sleeve 5, prevents the stress deformation of little cylinder 12 output shaft.
As preferred embodiment, as Fig. 3,4, shown in 5 and 7, part flow arrangement also comprises traversing driver element, the transverse direction for cross slide 3 and horizontal driving lever 2 drives.Traversing driver element comprises fixed end and mouth, and fixed end is fixed relative to the axis of longitudinal cylinder 1, and mouth connects cross slide 3 and can be parallel to the axial-movement that longitudinal cylinder 1 does back and forth.Concrete, this traversing driver element is a large cylinder 13 put in level, and the cylinder body of large cylinder 13 is fixed in the frame 14 of part flow arrangement as fixed end, and the output shaft of large cylinder 13 is parallel to longitudinal cylinder 1 as the part of mouth and arranges.Mouth also comprises the draw back plate 15 vertical with large cylinder output shaft, one end of draw back plate 15 connects large cylinder output shaft, the other end is connected to the pull bar 16 of parallel atmosphere cylinder output shaft, the afterbody of pull bar 16 is fixedly connected with cross slide 3, traversing by the extension and contraction control cross slide 3 of large cylinder output shaft.
As shown in Figure 3, in the present embodiment, product is after entering longitudinal cylinder 1 surf zone, it is all controlled by large cylinder 13 to horizontal group of both sides, namely after the output shaft of large cylinder 13 reaches maximum displacement, product is allocated to the high order end of longitudinal cylinder 1 by horizontal driving lever 2, and after the output shaft complete retraction to cylinder body of large cylinder 13, product is allocated to the low order end of longitudinal cylinder 1 by horizontal driving lever 2.
As preferred embodiment, as shown in Fig. 2,3 and 4, the bottom of cross slide 3 is connected with line slideway 6, and line slideway 6 is fixed in frame 14, and as the load-bearing of cross slide 3.This line slideway 6 ensures that horizontal driving lever 2 is in the walking of moving process cathetus, also transfers to the weight of whole traversing driver element, little cylinder 12 and cross slide 3 on line slideway 6 simultaneously, prevents large cylinder 13 to be subject to weight and oppresses and deformed damaged.
As preferred embodiment, as depicted in figs. 1 and 2, each longitudinal cylinder 1 one end is in the same way connected to sprocket wheel 7 respectively, consistent and the external diameter of sprocket wheel 7 of the specification of each sprocket wheel 7 is less than the external diameter of longitudinal cylinder 1, so when sprocket wheel 7 drives longitudinal cylinder 1 to rotate, product from longitudinal cylinder 1 surface through also sprocket wheel 7 can not be encountered.Because the external diameter of sprocket wheel 7 is less, longitudinal cylinder 1 velocity of rotation can be caused too fast, be unfavorable for that product orientation is above longitudinal cylinder 1, therefore each sprocket wheel 7 is in bottom with the engagement system of chain drive-belt 8, namely utilize chain drive-belt 8 at bottom drive sprocket 7, make chain drive-belt 8 do one-way movement, also can ensure that rotating speed can not be too fast when sprocket wheel 7 size is less like this.As shown in Figure 1, the middle part of frame 14 is provided with motor 17, is driven the operation of chain drive-belt 8 by motor 17, and reconciles the tensile force of chain drive-belt 8 by mechanisms such as tension wheels 18.
Automatic shunt mechanism as shown in Figure 8, comprise in one longitudinal slipway 10 of " fourth " font and the twice sideslipway 11 perpendicular to longitudinal slipway 10, above-mentioned part flow arrangement is provided with at the crossover location of " fourth " word, sideslipway 11 is positioned at the transverse ends of longitudinal cylinder 1, and longitudinal slipway 10 is positioned at the exit of longitudinal cylinder 1.
The shunting flow process of automatic shunt mechanism is as follows: product enters from the entrance of longitudinal cylinder 1 and arrives the top on longitudinal cylinder 1 surface, now has two kinds of situations:
1. longitudinal cylinder 1 is rotated further, and product is from entering longitudinal cylinder 1;
2. product orientation is on longitudinal cylinder 1, and horizontal driving lever 2 is stirred a product wherein lateral movement to the left and right sides and entered sideslipway 11 after rising, horizontal driving lever 2 resets afterwards.
As preferred embodiment, as shown in figures 3 and 8, the two ends of longitudinal cylinder 1 are provided with transition cylinder 9, transition cylinder 9 perpendicular to longitudinal cylinder 1 and between longitudinal cylinder 1 and sideslipway 11, excessive clearance when effectively can prevent product sway and stuck.
As preferred embodiment, as shown in Figure 8, the both sides of longitudinal slipway 10 are respectively equipped with light eye inductive transmitter 19 and light eye inducing receiver 20, and the straight line that both are linked to be and product press from both sides in an acute angle at the straight line at the service direction place of longitudinal slipway 10, oblique line arrange.Because wheel hub is round, if the linear vertical that both are linked to be is in the arrangement of slideway direction straight line, may cause erroneous judgement because of moment edge induction, therefore the present embodiment changes oblique line correspondence into, effectively can ensure inductive effects, prevents other impurity from causing erroneous judgement.Both are advisable from the length of distance about 2 ~ 3 products at part flow arrangement edge.
Meanwhile, sideslipway 11 both sides arrange light eye induction parasite 21, light eye inducing receiver 22, light eye induction parasite 23, light eye inducing receiver 24 consistent also with on longitudinal slipway 10 of arrangement.In addition, the two ends of part flow arrangement are also provided with the light eye induction parasite 25 and light eye inducing receiver 26 arranged in oblique line.
Automatic shunt mechanism adopts PLC system, PLC is fed back signal to by projector and receptor, thus judged by program, ensure that the shunting of product completes, its idiographic flow is as follows: when light eye inducing receiver 26 senses signal, and product flows through horizontal group of sideslipway 11 direction from trend light eye inducing receiver 22 direction; When light eye inducing receiver 26 and light eye inducing receiver 22 sense signal simultaneously, product can flow to longitudinal slipway direction; When light eye inducing receiver 26, light eye inducing receiver 22 and light eye inducing receiver 20 sense signal simultaneously, product flows to the direction of light eye inducing receiver 24 place sideslipway 11 through horizontal group.
The above be the utility model preferred embodiment, it does not form the restriction to the utility model protection domain.

Claims (10)

1. a part flow arrangement, it is characterized in that: comprise some longitudinal cylinders (1) of being arranged side by side and at least one horizontal driving lever (2), described horizontal driving lever (2) be positioned at wherein between two adjacent longitudinal cylinders (1) and can between two longitudinal cylinders (1) transverse shifting, described horizontal driving lever (2) is supporting is provided with jacking unit, and described jacking unit makes horizontal driving lever (2) upwards be raised up to exceed longitudinal cylinder (1) or be reduced to downwards lower than longitudinal cylinder (1).
2. part flow arrangement according to claim 1, it is characterized in that: described horizontal driving lever (2) has two, the line of two horizontal driving levers (2) is perpendicular to longitudinal cylinder (1), and described two horizontal driving levers (2) are synchronously traversing.
3. part flow arrangement according to claim 1 and 2, is characterized in that: described jacking unit comprises cross slide (3), and (3) are provided with lifter with described cross slide, and described lifter connects horizontal driving lever (2).
4. part flow arrangement according to claim 3, it is characterized in that: described cross slide (3) top is provided with and cross slide (3) relatively-stationary guide plate (4), described guide plate (4) is provided with orienting sleeve (5) that is supporting with horizontal driving lever (2) and confession horizontal driving lever (2) up-and-down movement.
5. part flow arrangement according to claim 3, it is characterized in that: also comprise traversing driver element, described traversing driver element comprises fixed end and mouth, described fixed end is fixed relative to the axis of longitudinal cylinder (1), and mouth connects cross slide (3) and can be parallel to longitudinal cylinder (1) work axial-movement back and forth.
6. part flow arrangement according to claim 5, is characterized in that: described cross slide (3) is connected with line slideway (6), and described line slideway (6) is as the load-bearing of cross slide (3).
7. part flow arrangement according to claim 1, it is characterized in that: described each longitudinal cylinder (1) one end is in the same way connected to sprocket wheel (7) respectively, the external diameter of described sprocket wheel (7) is less than the external diameter of longitudinal cylinder (1), described each sprocket wheel (7) is engaged with chain drive-belt (8) in bottom, described chain drive-belt (8) does one-way movement.
8. the part flow arrangement according to claim 1 or 7, is characterized in that: the two ends of described longitudinal cylinder (1) are provided with transition cylinder (9), and described transition cylinder (9) is perpendicular to longitudinal cylinder (1).
9. an automatic shunt mechanism, it is characterized in that: comprise in one longitudinal slipway (10) of " fourth " font and the twice sideslipway (11) perpendicular to longitudinal slipway (10), the part flow arrangement according to any one of claim 1 to 8 is provided with at the crossover location of " fourth " word, described sideslipway (11) is positioned at the transverse ends of longitudinal cylinder (1), and described longitudinal slipway (10) is positioned at longitudinal exit of longitudinal cylinder (1).
10. automatic shunt mechanism according to claim 9, it is characterized in that: described longitudinal slipway (10) and sideslipway (11) are equipped with projector and receptor, corresponding projector presss from both sides in an acute angle to the straight line that receptor is linked to be and product at the straight line at the service direction place of corresponding slideway.
CN201420575763.4U 2014-09-30 2014-09-30 A kind of part flow arrangement and automatic shunt mechanism Withdrawn - After Issue CN204124795U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420575763.4U CN204124795U (en) 2014-09-30 2014-09-30 A kind of part flow arrangement and automatic shunt mechanism

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Application Number Priority Date Filing Date Title
CN201420575763.4U CN204124795U (en) 2014-09-30 2014-09-30 A kind of part flow arrangement and automatic shunt mechanism

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104276400A (en) * 2014-09-30 2015-01-14 广州戴卡旭铝铸件有限公司 Distribution device and automatic distribution mechanism
CN105438794A (en) * 2015-12-24 2016-03-30 嵊州市意海电机配件厂 Shunting conveying device applied to production line of mechanical workpieces
CN106743427A (en) * 2016-12-23 2017-05-31 广州市万世德智能装备科技有限公司 A kind of high-speed packaging production line
CN107839936A (en) * 2017-11-14 2018-03-27 广东瑞安杰智能科技有限公司 A kind of object pusher of the pneumatic type based on wireless senser

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104276400A (en) * 2014-09-30 2015-01-14 广州戴卡旭铝铸件有限公司 Distribution device and automatic distribution mechanism
CN105438794A (en) * 2015-12-24 2016-03-30 嵊州市意海电机配件厂 Shunting conveying device applied to production line of mechanical workpieces
CN106743427A (en) * 2016-12-23 2017-05-31 广州市万世德智能装备科技有限公司 A kind of high-speed packaging production line
CN107839936A (en) * 2017-11-14 2018-03-27 广东瑞安杰智能科技有限公司 A kind of object pusher of the pneumatic type based on wireless senser

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20150128

Effective date of abandoning: 20160921

C25 Abandonment of patent right or utility model to avoid double patenting