CN212197404U - Adjustable guide device for assembly line - Google Patents

Adjustable guide device for assembly line Download PDF

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Publication number
CN212197404U
CN212197404U CN201922201237.7U CN201922201237U CN212197404U CN 212197404 U CN212197404 U CN 212197404U CN 201922201237 U CN201922201237 U CN 201922201237U CN 212197404 U CN212197404 U CN 212197404U
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China
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plate
guide
panel
roller
adjusted
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CN201922201237.7U
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Chinese (zh)
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廖凯
李昌
徐晨
周松斌
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Institute of Intelligent Manufacturing of Guangdong Academy of Sciences
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Guangdong Institute of Intelligent Manufacturing
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Abstract

An adjustable guiding device for an assembly line comprises a supporting frame arranged on the assembly line, wherein a lifting mechanism is arranged on the supporting frame, one side of the lifting mechanism is connected with an extension plate, the end part of the extension plate is connected with a panel through a conversion assembly, the position of the panel is adjusted through adjusting the conversion assembly, a linear guide rail is fixed on one side of the panel, two roller sliders arranged at intervals are arranged in the linear guide rail, a fine adjustment handle is arranged on each roller slider, the roller sliders are driven to be locked on the linear guide rail through adjusting the fine adjustment handle, a guide rod is fixed on each roller slider, a guide plate for guiding articles is arranged at one end of the guide rod, which is far away from the roller sliders, the two guide plates are arranged oppositely, the width between the two guide plates is adjusted through adjusting the position of the roller sliders on the linear guide rail, a second, the position can be adjusted in the second chute. The utility model discloses can lead to the product of different height, different width on the assembly line.

Description

Adjustable guide device for assembly line
Technical Field
The utility model relates to the technical field of machinery, especially, relate to an adjustable guider for assembly line, be applicable to the quick adjustment who carries out the direction width on the assembly line.
Background
In an actual production and inspection line, the product or other inspection product on the conveyor line is often in any position. In order to be able to produce and detect the determined position, the product at any position needs to be adjusted to the transfer of the determined position. The chinese utility model patent with application number 201810196350.8 discloses a "transmission width guiding and adjusting device of a conveyor belt", which has a function of manually adjusting the transmission width of the conveyor belt. The adjusting device adjusts the amplitude in the vertical direction and the horizontal direction through four adjusting rods. Although a wide-range transmission width adjustment is realized, the width value of the specific position adjustment cannot be displayed in real time and cannot meet the situation that the requirement on the width precision is high.
In order to solve the problem of the width adjustment of a specific position on a conveyor belt, the utility model with application number 201810378620.7 discloses a material guide device and a production line, and the material guide device can automatically adjust the gap size of a product channel according to the size of a product. The driving motor of the driving unit drives the parallelogram structure of the adjusting unit, so that the adjusting unit adjusts the channel size of the product channel to adapt to products with different sizes. Because the problem of friction between the material guiding strips in the guiding unit and the product is not considered, and the two material guiding strips cannot move in the vertical direction. If a product with a large aspect ratio is transferred to the edge of the guide strip, the product is easily knocked over. Therefore, the stability and reliability of the implementation method are not high. Therefore, there is a need to design a better guiding device to solve the above problems.
SUMMERY OF THE UTILITY MODEL
Problem to prior art existence, the utility model provides a can be to the adjustable guider who is used for the assembly line of the product direction of co-altitude not, different broad width size.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
an adjustable guide device for an assembly line comprises a support frame arranged on the assembly line, wherein a lifting mechanism is arranged on the support frame, one side of the lifting mechanism is connected with an extension plate, the end part of the extension plate is connected to a panel through a conversion assembly, the position of the panel is adjusted through adjusting the conversion assembly, a linear guide rail is fixed on one side of the panel, two roller sliders arranged at intervals are arranged in the linear guide rail, each roller slider is provided with a fine adjustment handle, the roller sliders are driven to be locked on the linear guide rail through adjusting the fine adjustment handles, a guide rod is fixed on each roller slider, one end, away from the roller sliders, of each guide rod is provided with a guide plate for guiding articles, the two guide plates are arranged oppositely, the position of each roller slider on the linear guide rail is adjusted to adjust the width between the two guide plates, the guide rod is provided with a second sliding groove, and the material guide plate is arranged in the second sliding groove and can be adjusted in position in the second sliding groove.
Further, elevating system includes the shell, set up in lead screw and lifting nut in the shell, the extension board is fixed in lifting nut, the top of shell is equipped with the handle, through rotatory the handle drives the lead screw rotates, thereby drives lifting nut reaches the extension board goes up and down.
Furthermore, the conversion assembly comprises a first L-shaped conversion plate connected to the extension plate, two side faces of the first L-shaped conversion plate are respectively connected to the extension plate and the second L-shaped conversion plate through first inner hexagonal bolts, the second L-shaped conversion plate is connected to the panel through second inner hexagonal bolts, a first sliding groove is formed in the panel, the second inner hexagonal bolts are located in the first sliding groove, and the position of the panel is adjusted by adjusting the positions of the second inner hexagonal bolts in the first sliding groove.
Furthermore, semicircular chutes are formed in the surfaces of the two sides of the first L-shaped conversion plate, through holes are formed in the circle centers of the semicircular chutes, the two first inner hexagonal bolts penetrate through the through holes and the semicircular chutes respectively and are fixed to the extension plate or the second L-shaped conversion plate, and the positions of the first L-shaped conversion plate and the second L-shaped conversion plate are adjusted by adjusting the positions of the first inner hexagonal bolts in the semicircular chutes, so that the position of the panel is adjusted.
Furthermore, one end of the second hexagon socket head cap screw penetrates through the first chute to be connected with the second L-shaped conversion plate, the other end of the second hexagon socket head cap screw is connected with the fixed pressing plate, and when the second hexagon socket head cap screw is locked, the fixed pressing plate fixes the panel on the second L-shaped conversion plate.
Further, a plurality of pulleys with different axes are arranged in the rolling sliding block, the pulleys slide in the linear guide rail, a stop block groove is further formed in the inner side of the rolling sliding block, a stop block is arranged in the stop block groove, and the micro handle drives the stop block to move in the stop block groove through rotation, so that the eccentricity of the pulleys is increased, and the sliding block is fixed on the linear guide rail.
Furthermore, symmetrical scale strips are arranged on the end face of the panel, and the width value between the two guide plates is read through the symmetrical scale strips.
Furthermore, the guide plate is mounted on the second sliding groove through a groove block, a pressing plate is arranged at one end, far away from the guide plate, of the groove block, and the pressing plate is fixed on the groove block through a bolt so as to lock the position of the guide plate on the guide rod.
Furthermore, one end of the material guide plate for guiding is arranged in an arc shape.
Further, a straight shaft is installed at one end, used for guiding, of the material guide plate in a clearance mode, and a rubber roller is installed on the straight shaft.
The utility model has the advantages that:
drive the stock guide through elevating system and reciprocate to adapt to the not product of co-altitude, through adjusting the position that conversion assembly can adjusting panel, through the position of adjusting the gyro wheel slider in linear guide, with the width of adjusting between two stock guides, the height of direction is adjusted to the position of rethread stock guide in the second spout, consequently the utility model discloses the device can be to the product direction of different height on the assembly line, different width, is applicable to the direction and the situation of position determination of different grade type product part position on same assembly line, for example with detect the quick direction of different grade type product and definite position in batches on the assembly line.
Drawings
Fig. 1 is a schematic perspective view of an adjustable guiding device for a production line according to the present invention;
FIG. 2 is a top view of FIG. 1;
FIG. 3 is a schematic structural view of a first L-shaped switching plate of the adjustable guiding device for an assembly line according to the present invention;
FIG. 4 is a schematic view of a second converting plate on a panel of an adjustable guiding device for a production line according to the present invention;
fig. 5 is a schematic structural view of a linear guide rail in an adjustable guiding device for an assembly line according to the present invention;
fig. 6 is a schematic structural view of a roller slider in an adjustable guiding device for an assembly line according to the present invention;
fig. 7 is a cross-sectional view of a roller block in an adjustable guiding device for an assembly line according to the present invention;
fig. 8 is a schematic structural view of the material guiding plate of the present invention;
FIG. 9 is an enlarged view of a portion of FIG. 1 at A;
in the figure, 1-supporting frame, 2-lifting mechanism, 3-shell, 4-lifting nut, 5-handle, 6-extension plate, 7-first L-shaped conversion plate, 8-first hexagon socket screw, 9-second L-shaped conversion plate, 10-second hexagon socket screw, 11-semicircular chute, 12-through hole, 13-panel, 14-first chute, 15-fixed pressing plate, 16-linear guide rail, 17-roller slide block, 18-fine adjustment handle, 19-pulley, 20-block groove, 21-block, 22-gasket, 23-guide rod, 24-second chute, 25-guide plate, 26-groove block, 27-pressing plate, 28-straight shaft, 29-rubber roller, 30-symmetrical scale strip.
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 efforts belong to the protection scope of the present invention.
It should be noted that all the directional indicators (such as upper, lower, left, right, front and rear … …) in the embodiment of the present invention are only used to explain the relative position relationship between the components, the motion situation, etc. in a specific posture (as shown in the drawings), and if the specific posture is changed, the directional indicator is changed accordingly.
As fig. 1, the utility model provides an adjustable guider for assembly line, including installing in the support frame 1 of assembly line, the system has the spout in support frame 1 to be convenient for install on the assembly line, and two reinforcing floor of bottom welding of support frame 1 are used for guaranteeing the organism reliable and stable. Be equipped with elevating system 2 on support frame 1, elevating system 2 is including welding in the shell 3 of 1 upper surface of support frame, set up lead screw and lifting nut 4 in shell 3, the optional two guide bars that are equipped with of side of lead screw to lead to the lift to lifting nut 4, the top of shell 3 is equipped with handle 5, drive the lead screw through twist grip 5 and rotate, thereby drive lifting nut 4 at vertical direction rectilinear movement, the realization becomes linear motion with rotary motion. The lifting nut 4 is connected with an extension plate 6 through a bolt, and the extension plate 6 is driven to lift when the lifting nut 4 lifts.
As shown in fig. 1 to 4, the end of the elongate plate 6 is connected to the panel 13 by a switch assembly which is adjusted to adjust the position of the panel 13. The switching assembly comprises a first L-shaped switching plate 7 attached to the elongated plate 6, both side surfaces of the first L-shaped switching plate 7 being attached to the elongated plate 6 and a second L-shaped switching plate 9, respectively, by means of first hexagon socket head cap screws 8. In this embodiment, the two side surfaces of the first L-shaped conversion plate 7 are respectively provided with a semicircular sliding groove 11, a through hole 12 is formed at the center of the semicircular sliding groove 11, the two first hexagon socket bolts 8 respectively penetrate through the through hole 12 and the semicircular sliding groove 11 to be fixed on the extension plate 6 or the second L-shaped conversion plate 9, and the positions of the first L-shaped conversion plate 7 and the second L-shaped conversion plate 9, and further the position of the panel 13, are adjusted by adjusting the positions of the first hexagon socket bolts 8 in the semicircular sliding groove 11. When the first hexagon socket head cap screw 8 passes through the through hole 12 and the semicircular chute 11 and is not locked, the rotation of 180 degrees can be carried out in a plane so as to adjust the position of the second L-shaped conversion plate 9 in the plane, and after the position is adjusted, the fixation can be realized by locking the first hexagon socket head cap screw 8. The second L-shaped switching plate 9 is connected to the panel 13 by the second hexagon socket head cap screw 10, and the panel 13 connected to the second L-shaped switching plate can be ensured to be in a horizontal position by two angle adjustments of the first L-shaped switching plate 7 and the second L-shaped switching plate 9.
The panel 13 is provided with a first sliding groove 14, the second hexagon socket head cap screw 10 is positioned in the first sliding groove 14, and the position of the panel 13 is adjusted by adjusting the position of the second hexagon socket head cap screw 10 in the first sliding groove 14. One end of the second hexagon socket head cap screw 10 passes through the first chute 14 to be connected with the second L-shaped conversion plate 9, and the other end is connected with the fixed pressing plate 15, when the second hexagon socket head cap screw 10 is locked, the fixed pressing plate 15 fixes the panel 13 on the second L-shaped conversion plate 9. The end surface of the panel 13 far away from the second L-shaped conversion plate 9 is provided with a plurality of threaded holes for fixing the linear guide 16, so that the linear guide 16 is stably and reliably connected to the panel 13.
As shown in fig. 1, 5 to 7, the linear guide 16 is a standard member, and a plurality of mounting holes are provided in the inner groove to correspond to the screw holes, and the linear guide 16 is fixed to the panel 13 by bolts. The surface of the linear guide rail 16 is anodized to ensure that the roller slider 17 disposed on the linear guide rail 16 runs smoothly. Two roller sliders 17 arranged at intervals are arranged in the linear guide rail 16, a fine adjustment handle 18 is arranged on each roller slider 17, and the roller sliders 17 are driven to be locked on the linear guide rail 16 by adjusting the fine adjustment handles 18. The roller slider 17 is internally provided with a plurality of pulleys 19 with different axes to slide in the linear guide rail 16, the inner side of the roller slider 17 is also provided with a stop block groove 20, a stop block 21 is arranged in the stop block groove 20, the stop block 21 is arranged on a screw rod in the micro-adjustment handle 18, the screw rod in the micro-adjustment handle 18 is rotated by rotating and tightening the micro-adjustment handle 18, the stop block 21 on the screw rod moves upwards in the stop block groove 20, the eccentricity of the pulleys 19 is driven to be increased to achieve the locking function, and therefore the roller slider 17 is fixed on. A gasket 22 is arranged between the micro-handle 18 and the linear guide rail 16, so that the micro-handle 18 is not easy to loosen after being screwed down.
As shown in fig. 1, 2 and 8, a guide rod 23 is fixed on each roller slider 17, and the guide rod 23 extends in the vertical direction. One end of the guide rod 23, which is far away from the roller slider 17, is provided with material guide plates 25 for guiding the articles, the two material guide plates 25 are arranged oppositely, and the width between the two material guide plates 25 is adjusted by adjusting the position of the roller slider 17 on the linear guide rail 16, so that the width adjustment of the roller slider 17 is converted into the adjustment of the width between the material guide plates 25. The guide rod 23 is vertically provided with a second chute 24, and the guide plate 25 is mounted on the second chute 24 and can be adjusted in position in the second chute 24. In this embodiment, the material guiding plate 25 is mounted on the second chute 24 through a trough block 26, a pressing plate 27 is disposed at an end of the trough block 26 away from the material guiding plate 25, the pressing plate 27 is fixed on the trough block 26 through a bolt to lock the position of the material guiding plate 25 on the guide rod 23, and the height of the material guiding plate 25 in the vertical direction is adjusted according to the heights of different types of products on the assembly line.
As shown in fig. 1 and 8, one end of the guide plate 25 for guiding, i.e., the front end, is curved to facilitate guiding. The material guide plate 25 is in an I shape, a straight shaft 28 is installed at the front end of the material guide plate in a clearance mode, two ends of the straight shaft 28 penetrate through a mounting hole in the front end of the material guide plate 25, a rubber sleeve is installed on the straight shaft 28, and the rubber sleeve is sleeved in the mounting hole of the material guide plate 25 and fixed to the material guide plate 25 through screws. The middle part of the straight shaft 28 is provided with a rubber roller 29, and the rubber roller 29 slides on the rail surface of the linear guide rail 16, and in the embodiment, the rubber roller 29 is a rubber-coated bearing roller.
Referring to fig. 1 and 9, the end surface of the panel 13 away from the second L-shaped conversion plate 9 is provided with symmetrical scale bars 30, and the width between the two material guiding plates 25 is read through the symmetrical scale bars 30. When the material guide plate 25 is adjusted in the width direction, the adjusted width value can be directly displayed, and thus the product guiding with different width sizes is realized.
The utility model discloses during guider uses, confirm the mounted position of support frame 1 earlier, then through bolted connection on the assembly line, two times through conversion assembly adjust can adjust linear guide 16 to suitable position, twist grip 5 makes it drive lifting nut 4 lift this moment, thereby adapt to the product of co-altitude not, then rotatory micro handle 18, adjust two gyro wheel sliders 17 and can drive stock guide 25, adjust the size of different width, when the product is through stock guide 25, because stock guide 25 front end has the radian and installs rubber gyro wheel 29, can play the effect of reducing the frictional resistance to the article of conveying in-process.
The utility model discloses can solve the guider width adjusting value that provides in the background art rate of accuracy not good, can not show adjusting value, realization mode's stability and reliability in real time and the problem such as friction with the conveying article in not high, transportation. Compared with the prior art, the utility model discloses following beneficial effect has:
(1) the utility model can equivalently adjust the distance between the material guiding plates 25 by adjusting the distance between the roller sliders 17, and meanwhile, the symmetrical scale bars 30 can display the distance value between the two material guiding plates 25, thus guiding the products with different width sizes;
(2) the lifting mechanism 2 drives the guide device to vertically move, so that products with different heights can be adjusted, and the device is firm and reliable and can be well suitable for various conveying devices;
(3) the rubber roller 29 arranged at the front end of the material guide plate 25 can reduce the friction between the material guide plate 25 and the articles, and is beneficial to the stable conveying of the articles.
Although the present invention has been described in detail with reference to the preferred embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted without departing from the spirit and scope of the invention as defined in the appended claims.

Claims (10)

1. An adjustable guide for a flow line, comprising: the lifting mechanism is arranged on the support frame, one side of the lifting mechanism is connected with an extension plate, the end part of the extension plate is connected with a panel through a conversion assembly, the position of the panel is adjusted through adjusting the conversion assembly, a linear guide rail is fixed on one side of the panel, two roller sliders arranged at intervals are arranged in the linear guide rail, each roller slider is provided with a fine adjustment handle, the roller sliders are driven to be locked on the linear guide rail through adjusting the fine adjustment handles, a guide rod is fixed on each roller slider, guide plates for guiding articles are arranged at one ends of the guide rods, which are far away from the roller sliders, the two guide plates are arranged oppositely, the position of each roller slider on the linear guide rail is adjusted to adjust the width between the two guide plates, and a second chute is arranged on each guide rod, the guide plate is arranged in the second chute, and the position of the guide plate can be adjusted in the second chute.
2. The adjustable guide for a flow line of claim 1, wherein: the lifting mechanism comprises a shell, a screw rod and a lifting nut, the screw rod and the lifting nut are arranged in the shell, the extension plate is fixed on the lifting nut, a handle is arranged at the top of the shell, and the handle drives the screw rod to rotate through rotation, so that the lifting nut and the extension plate are driven to lift.
3. The adjustable guide for a flow line of claim 1, wherein: the conversion assembly comprises a first L-shaped conversion plate connected to the extension plate, two side faces of the first L-shaped conversion plate are respectively connected to the extension plate and the second L-shaped conversion plate through first inner hexagonal bolts, the second L-shaped conversion plate is connected to the panel through second inner hexagonal bolts, a first sliding groove is formed in the panel, the second inner hexagonal bolts are located in the first sliding groove, and the position of the panel is adjusted by adjusting the positions of the second inner hexagonal bolts in the first sliding groove.
4. The adjustable guide for a flow line of claim 3, wherein: the two side surfaces of the first L-shaped conversion plate are respectively provided with a semicircular sliding groove, a through hole is formed in the center of the semicircular sliding groove, the two first inner hexagonal bolts respectively penetrate through the through hole and the semicircular sliding grooves and are fixed on the extension plate or the second L-shaped conversion plate, and the positions of the first L-shaped conversion plate and the second L-shaped conversion plate can be adjusted by adjusting the positions of the first inner hexagonal bolts in the semicircular sliding grooves, so that the position of the panel can be adjusted.
5. The adjustable guide for a flow line of claim 3, wherein: one end of the second hexagon socket head cap screw penetrates through the first sliding groove to be connected with the second L-shaped conversion plate, the other end of the second hexagon socket head cap screw is connected with the fixed pressing plate, and when the second hexagon socket head cap screw is locked, the fixed pressing plate fixes the panel on the second L-shaped conversion plate.
6. The adjustable guide for a flow line of claim 1, wherein: the rolling slide block is internally provided with a plurality of pulleys with different axes, the pulleys slide in the linear guide rail, the inner side of the rolling slide block is also provided with a stop block groove, a stop block is arranged in the stop block groove, and the stop block is driven by a rotating and tightening micro handle to move in the stop block groove, so that the eccentricity of the pulleys is increased and the slide block is fixed on the linear guide rail.
7. The adjustable guide for a flow line of claim 1, wherein: symmetrical scale strips are arranged on the end face of the panel, and the width value between the two guide plates is read through the symmetrical scale strips.
8. The adjustable guide for a flow line of claim 1, wherein: the guide plate is installed on the second sliding groove through a groove block, a pressing plate is arranged at one end, far away from the guide plate, of the groove block, and the pressing plate is fixed on the groove block through bolts so as to lock the position of the guide plate on the guide rod.
9. The adjustable guide for a flow line of claim 1, wherein: and one end of the material guide plate for guiding is arranged in an arc shape.
10. The adjustable guide for a flow line of claim 1, wherein: and a straight shaft is arranged at one end of the material guide plate for guiding in a clearance mode, and a rubber roller is arranged on the straight shaft.
CN201922201237.7U 2019-12-10 2019-12-10 Adjustable guide device for assembly line Active CN212197404U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922201237.7U CN212197404U (en) 2019-12-10 2019-12-10 Adjustable guide device for assembly line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922201237.7U CN212197404U (en) 2019-12-10 2019-12-10 Adjustable guide device for assembly line

Publications (1)

Publication Number Publication Date
CN212197404U true CN212197404U (en) 2020-12-22

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Application Number Title Priority Date Filing Date
CN201922201237.7U Active CN212197404U (en) 2019-12-10 2019-12-10 Adjustable guide device for assembly line

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111017522A (en) * 2019-12-10 2020-04-17 广东省智能制造研究所 Adjustable guide device for assembly line

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111017522A (en) * 2019-12-10 2020-04-17 广东省智能制造研究所 Adjustable guide device for assembly line

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Address after: 510070 13 building, 100 martyrs Road, Yuexiu District, Guangzhou, Guangdong.

Patentee after: Institute of intelligent manufacturing, Guangdong Academy of Sciences

Address before: 510070 13 building, 100 martyrs Road, Yuexiu District, Guangzhou, Guangdong.

Patentee before: GUANGDONG INSTITUTE OF INTELLIGENT MANUFACTURING

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