CN210420239U - Linear double-side lifting automatic hanging machine - Google Patents

Linear double-side lifting automatic hanging machine Download PDF

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Publication number
CN210420239U
CN210420239U CN201921298195.7U CN201921298195U CN210420239U CN 210420239 U CN210420239 U CN 210420239U CN 201921298195 U CN201921298195 U CN 201921298195U CN 210420239 U CN210420239 U CN 210420239U
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hanging
positioning
linear
rotary
driving
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赵立文
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Magsuper (dongguan) Corp
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Magsuper (dongguan) Corp
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Abstract

The utility model discloses a linear double-side lifting automatic hanging machine, which comprises a linear conveying device, a hanging device connected with the output end of the linear conveying device and a hanging tool positioned on the hanging device; the linear conveying device comprises a feeding mechanism and a linear material guide mechanism connected with the output end of the feeding mechanism, wherein the linear material guide mechanism is provided with at least one conveying groove; the hanging device comprises a hanging positioning mechanism, a lifting driving device and a rotating driving device; the upper hanging positioning mechanism is positioned on one side of the output end of the linear material guide mechanism; the hanging tool is positioned on the upper hanging positioning mechanism, the hanging tool is provided with a first side and a second side which are used for hanging and are opposite to each other, each side comprises at least two upper hanging layers which are vertically stacked, each upper hanging layer comprises at least one upper hanging position, and each upper hanging position is adaptive to a corresponding conveying groove; therefore, the linear full-automatic hanging device realizes linear full-automatic hanging, reduces manpower, improves hanging efficiency of products, and reduces production cost.

Description

Linear double-side lifting automatic hanging machine
Technical Field
The utility model belongs to the technical field of on hang the equipment and specifically relates to indicate a two side lift automatic on-hook of orthoscopic.
Background
The existing industrial products are more and more required to be electroplated, and before the products are electroplated, the products are often required to be hung on a hanger so as to be convenient for electroplating. In the prior art, the method for hanging the electroplating products on the hanger generally adopts a manual hanging mode to hang the products on the hanger one by one, so that a large amount of manual work is needed for feeding, and the production cost is increased due to the fact that the products are more, the manual work intensity is high, the manual feeding efficiency is low, and the production cost is increased.
Therefore, a new technology needs to be developed to solve the above problems.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model discloses to the disappearance that prior art exists, its main objective provides a two side lift automatic on-hook of orthoscopic, and it has realized that orthoscopic full-automatic on-hook has reduced the manual work, has improved the on-hook efficiency of product, has reduced manufacturing cost.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a linear type automatic double-side lifting hanging machine comprises a linear conveying device, a hanging device connected to the output end of the linear conveying device and a hanging tool positioned on the hanging device;
the linear conveying device comprises a feeding mechanism and a linear material guide mechanism connected with the output end of the feeding mechanism, wherein the linear material guide mechanism is provided with at least one conveying groove;
the hanging device comprises a hanging positioning mechanism for positioning the hanging tool, a lifting driving device for driving the hanging positioning mechanism to lift and a rotary driving device for driving the hanging positioning mechanism to rotate; the upper hanging positioning mechanism is positioned on one side of the output end of the linear material guide mechanism;
the hanger is positioned on the upper hanging positioning mechanism, the hanger is provided with a first side and a second side which are used for hanging and are back to each other, each side comprises an upper hanging layer formed by at least two layers of vertical stacking, each upper hanging layer comprises at least one upper hanging position, and each upper hanging position is adaptive to the corresponding conveying groove.
As a preferred scheme, the feeding mechanism comprises a vibrating disc, and the output end of the vibrating disc is connected to the linear material guide mechanism;
the linear material guide mechanism comprises a support frame and a material guide platform arranged on the support frame, and the conveying groove is formed in the material guide platform;
the output end of each conveying groove is provided with a yielding groove for the hook of the hanger to pass through, and the yielding groove penetrates through the upper side and the lower side of the conveying groove;
the inner bottom surface of the conveying groove is concavely provided with a standby positioning groove which is narrower than the conveying groove, and the output end of the standby positioning groove penetrates through the abdicating groove.
As a preferable scheme, the lifting driving device comprises a lifting mechanism and a lifting driving mechanism for driving the lifting mechanism to lift; the rotary driving device is connected to the lifting mechanism.
As a preferred scheme, the lifting mechanism comprises an installation frame, a screw rod installed on the installation frame, a screw nut connected to the screw rod, a first connection block connected to the screw nut, a first slide block connected to the first connection block, and a first slide rail installed on the installation frame; the first sliding block can be matched with the first sliding rail in a vertically sliding mode.
As a preferable scheme, the rotation driving device comprises a rotation mechanism and a rotation driving mechanism, one end of the rotation mechanism is connected to the rotation driving mechanism, and the hanging positioning mechanism is connected to the rotation mechanism.
As a preferable scheme, the rotating mechanism comprises a rotating shaft and a rotating block connected to the rotating shaft, one end of the rotating shaft is connected to the rotating driving mechanism, the rotating block extends out of the upper part of the positioning frame and is rotatably arranged, and the hanging positioning mechanism is connected to the rotating block.
As a preferred scheme, the hanging positioning mechanism comprises a cross beam and two vertical rods which are vertically connected to two ends of the cross beam respectively, a placing space for placing the hanging tool is formed by the two vertical rods and the cross beam in a surrounding manner, and a positioning groove for positioning the hanging tool is formed in one side of each vertical rod, which is located in the placing space; the positioning groove is downwards concavely arranged from the upper end of the vertical rod and is communicated with the placing space; the beam is connected to the rotating block.
As a preferable scheme, a rotary positioning device for rotationally positioning the hanging positioning mechanism is arranged on the positioning frame on one side of the rotary driving device;
the rotary positioning device comprises a rotary positioning mechanism and a positioning driving mechanism for driving the rotary positioning mechanism to perform up-and-down lifting positioning, and the rotary positioning mechanism comprises a clamping piece; the clamping piece comprises a main body portion and two vertical plate portions, wherein the two vertical plate portions are respectively connected to two sides of the main body portion in an upward mode, the main body portion is connected to a positioning driving mechanism, the positioning driving mechanism is connected to a positioning frame through a connecting plate, the two vertical plate portions penetrate through the upper portion of the positioning frame, and the two vertical plate portions are arranged at intervals to form a clamping space for positioning a cross beam used for hanging the positioning mechanism.
As a preferred scheme, the hanger comprises a frame body and at least one hanging rod arranged on the frame body, the hanging rod comprises at least one upper hanging position in the transverse direction, each upper hanging position is correspondingly provided with a hook, and the plurality of hooks are vertically arranged at an upper-lower stacking interval relative to the frame body.
As a preferred scheme, the device further comprises a machine table, and the upper hanging device and the linear material guide mechanism are both arranged on the machine table.
Compared with the prior art, the utility model has obvious advantages and beneficial effects, concretely speaking, according to the technical scheme, the full-automatic linear hanging device is realized by the combined design of the feeding mechanism, the linear material guiding mechanism, the hanging positioning mechanism, the lifting driving device and the rotary driving device, thereby reducing the labor force, improving the production efficiency and reducing the production cost; especially, with the hanger location on hanging positioning mechanism to the both sides that make the hanger all include the last layer of hanging of two-layer vertical range upon range of setting at least, every layer of hanging all includes at least one and hangs the position, makes it realize that two side lift of orthoscopic are automatic to hang, has improved and has hung efficiency.
To more clearly illustrate the structural features and technical means of the present invention and the specific objects and functions achieved thereby, the present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Drawings
FIG. 1 is a schematic diagram of the overall structure of an embodiment of the present invention;
FIG. 2 is another overall structure diagram of the embodiment of the present invention;
FIG. 3 is a schematic diagram of a portion of an embodiment of the present invention;
fig. 4 is a schematic view of an overall structure of a linear guide mechanism according to an embodiment of the present invention;
fig. 5 is an exploded view of the linear guide mechanism according to the embodiment of the present invention;
fig. 6 is a schematic perspective view of a hanger according to an embodiment of the present invention;
fig. 7 is a side view of a hanger of an embodiment of the present invention;
fig. 8 is a top view of an embodiment of the present invention.
The attached drawings indicate the following:
10. feeding mechanism 11 and vibrating disk
20. Linear material guide mechanism 21 and support frame
22. Material guiding table 221 and base
222. Stock guide 223, groove of stepping down
224. Stop plate 23 and conveying groove
30. Upper hanging positioning mechanism 31 and cross beam
32. Vertical rod 33 and positioning groove
40. Lifting drive device 41 and lifting mechanism
411. Mounting rack 412 and lead screw
413. Screw nut 414 and first connecting block
415. First sliding block 416 and first sliding rail
42. Lifting driving mechanism 43 and positioning frame
50. Rotation driving device 51 and rotation mechanism
511. Rotating shaft 512 and rotating block
52. Rotary driving mechanism 60 and hanger
61. Frame 62 and hanging rod
63. Hook 70 and rotary positioning device
71. Rotary positioning mechanism 711 and clamping piece
72. Positioning drive mechanism 73 and connecting plate
80. Left-right driving device 81 and second slide rail
82. Second slider 83, left-right driving mechanism
84. Second connecting block 90 and front and back driving device
91. Travel rod 92, front-rear drive mechanism
93. Third slide block 94 and third slide rail
95. Third connecting block 96 and fourth connecting block
101. Machine station 102 and upper hanging station
103. Feeding and discharging station 201 and standby positioning groove
202. A material distributing groove.
Detailed Description
Please refer to fig. 1 to 8, which show the specific structure of the embodiment of the present invention; the magnetic ring is mainly applied to hanging of products needing electroplating, such as a magnetic ring, but the magnetic ring is not limited to hanging of electroplating products such as a magnetic ring, and the like, and can also be applied to other products needing hanging, and the hanging of the magnetic ring is described below.
First, it should be noted that in the following description, some terms such as "left", "right", "front", "back", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, which are only for convenience of describing the technical solution of the present invention and simplifying the description, but do not indicate or imply that the indicated device or element must have a specific orientation or be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention.
A linear type automatic double-side lifting hanging machine comprises a linear conveying device, a hanging device connected to the output end of the linear conveying device and a hanging tool positioned on the hanging device;
the linear conveying device comprises a feeding mechanism and a linear material guide mechanism connected with the output end of the feeding mechanism, wherein the linear material guide mechanism is provided with at least one conveying groove;
the hanging device comprises a hanging positioning mechanism for positioning the hanging tool, a lifting driving device for driving the hanging positioning mechanism to lift and a rotary driving device for driving the hanging positioning mechanism to rotate; the upper hanging positioning mechanism is positioned on one side of the output end of the linear material guide mechanism;
the hanger is positioned on the upper hanging positioning mechanism, the hanger is provided with a first side and a second side which are used for hanging and are back to each other, each side comprises an upper hanging layer formed by at least two layers of vertical stacking, each upper hanging layer comprises at least one upper hanging position, and each upper hanging position is adaptive to the corresponding conveying groove.
The utility model discloses a two side lift of orthoscopic automatic on-hook, it has the first side that sets up back of the body mutually, the condition of second side to the hanger, utilizes the conveyer trough of sharp guide mechanism directly to correspond to go up to hang the position and carry out the pay-off, and rethread lift drive device controls the last string position intermittent type formula on different layers and matches in the conveyer trough, so, accomplishes and hangs on one side, and rethread rotary drive device goes up to hang to the opposite side rotation 180 degrees of hanger, goes on to the opposite side successive layer again. Therefore, the method can be applied to the situation that the number of hanging positions of each hanging layer is the same as that of the conveying grooves; of course, if the hanging position of each hanging layer is required to be suitable for the situation that the number of the hanging positions of each hanging layer is more than the number of the conveying grooves, the left and right driving mechanism is required to be configured for the hanging positioning mechanism so as to meet the hanging of all the hanging positions of the single hanging layer. The utility model discloses a two side lift automatic on-hook of orthoscopic, it hangs on the work piece to the hanger, accomplishes and goes up to hang the back, can adopt artifical or automatic mode to deliver to next station with the hanger, here, no longer do the perusal.
In this embodiment, the linear type automatic hanging-up machine capable of ascending and descending on two sides side by side is taken as an example for explanation, and in fact, the linear type automatic hanging-up machine capable of ascending and descending on two sides is not limited to this application.
Specifically, the method comprises the following steps: the linear type automatic side-by-side double-side lifting hanging-up machine comprises a linear conveying device, a hanging device connected to the output end of the linear conveying device, a hanging tool 60 positioned on the hanging device, a left-right driving device 80 used for driving the hanging device to move left and right, and a front-back driving device 90 used for driving the hanging device to move front and back;
the linear conveying device comprises a feeding mechanism 10 and a linear material guiding mechanism 20 connected to the output end of the feeding mechanism 10, wherein the linear material guiding mechanism 20 is provided with at least two conveying troughs 23 which are transversely arranged side by side; the hanging device comprises a hanging positioning mechanism 30 for positioning a hanging tool 60, a lifting driving device 40 for driving the hanging positioning mechanism 30 to lift and a rotating driving device 50 for driving the hanging positioning mechanism 30 to rotate; the upper hanging positioning mechanism 30 is positioned at one side of the output end of the linear material guiding mechanism 20; this hanger 60 is positioned and hangs on positioning mechanism 30, and this hanger 60 has the first side, the second side that carry on the back of the body mutually that are used for hanging, and every side all includes the last layer of hanging of at least two-layer vertical range upon range of setting, and every layer of hanging all includes the last position of hanging of two at least horizontal settings side by side, hangs the position adaptation in corresponding conveyer trough 23 on every.
Specifically, the feeding mechanism 10 includes a vibration disk 11, and an output end of the vibration disk 11 is connected to the linear material guiding mechanism 20; the linear material guiding mechanism 20 comprises a support frame 21 and a material guiding platform 22 installed on the support frame 21, and the conveying chute 23 is formed on the material guiding platform 22; the material guiding table 22 comprises a base 221 and a material guiding plate 222 obliquely arranged on the base 221, the base 221 is mounted on the supporting frame 21, the conveying chute 23 is formed on the material guiding plate 222, an input end of the material guiding plate 222 is connected to an output end of the vibrating disk 11, and the material guiding plate 222 is obliquely arranged from the input end to the output end; the output end of each conveying groove 23 is provided with a yielding groove 223 for the hook 63 of the hanging tool 60 to pass through, and the yielding grooves 223 penetrate through the upper side and the lower side of the conveying groove 23, so that the magnetic ring of the conveying groove 23 can be smoothly, simply and conveniently hung in the hook 63; the concave reserve constant head tank 201 that is narrower than conveyer trough 23 that is equipped with of interior bottom surface of conveyer trough 23, reserve constant head tank 201's output link up and give the way groove 23, and reserve constant head tank 201 can be used for carrying the work piece that the size is littleer, also can regard as the supplementary constant head tank of different shape work pieces, so, can carry the location to the work piece more accurately. The output end of the vibration disk 11 is provided with a plurality of material distributing grooves 202, one ends of the material distributing grooves 202 are communicated with the output end of the vibration disk 11, and the other ends of the material distributing grooves 202 are respectively communicated with the input ends of the corresponding conveying grooves 23. Preferably, the guide plate 222 is connected with a stop plate 224 for blocking the upper opening of the conveying trough 23, the stop plate 224 is covered above the conveying trough 23, and here, the phenomenon that the magnetic ring is separated from the conveying trough 23 is avoided by the design of the stop plate 224.
The lifting driving device 40 comprises a lifting mechanism 41 and a lifting driving mechanism 42 for driving the lifting mechanism 41 to lift; the rotary driving device 50 is connected to the lifting mechanism 41; the lifting mechanism 41 comprises a mounting frame 411, a screw 412 mounted on the mounting frame 411, a screw nut 413 connected to the screw 412, a first connecting block 414 connected to the screw nut 413, a first sliding block 415 connected to the first connecting block 414, and a first sliding rail 416 mounted on the mounting frame 411; the first sliding block 415 can be slidably fitted on the first sliding rail 416 up and down.
Preferably, in this embodiment, there are two rotation driving devices 50, and correspondingly, there are two hanging positioning mechanisms 30; the two rotation driving devices 50 are respectively installed at the left end and the right end of a positioning frame 43, the positioning frame 43 is connected to a first connecting block 414, each rotation driving device 50 comprises a rotation mechanism 51 and a rotation driving mechanism 52, one end of the rotation mechanism 51 is connected to the rotation driving mechanism 52, and the two hanging positioning mechanisms 30 are respectively connected to the corresponding rotation mechanisms 51; the rotating mechanism 51 comprises a rotating shaft 511 and a rotating block 512 connected to the rotating shaft 511, one end of the rotating shaft 511 is connected to the rotating driving mechanism 52, the rotating block 512 extends out of the upper part of the positioning frame 43 and is rotatably arranged, and the hanging positioning mechanism 30 is connected to the corresponding rotating block 512. Therefore, the left and right driving device 80 can drive the hanging device to move left and right relative to the material guide table 22 so as to respectively hang the hangers 60 on the two hanging positioning mechanisms 30 (hang the magnetic rings on the hooks 63 of the hangers 60), load (position the hangers 60 on the hanging positioning mechanisms 30) and unload (take the hangers 60 with the magnetic rings hung on the hanging positioning mechanisms 30) so as to keep the hanging positioning mechanisms 30 at the output end of the material guide table 22, so that the hanging, loading and unloading of the hangers 60 can be alternately carried out, the phenomenon of overlong idle time is avoided, and the working efficiency is greatly improved.
In addition, a rotary positioning device 70 for rotationally positioning the hanging positioning mechanism 30 is arranged on the positioning frame 43 corresponding to one side of each rotary driving device 50, the rotary positioning device 70 comprises a rotary positioning mechanism 71 and a positioning driving mechanism 72 for driving the rotary positioning mechanism 71 to vertically lift and position, and the rotary positioning mechanism 71 comprises a clamping piece 711; the clamping member 711 includes main part and two vertical plate portions that upwards connect in the main part both sides respectively, the main part is connected in location actuating mechanism 72, location actuating mechanism 72 passes through connecting plate 73 and connects on locating rack 43, and two vertical plate portions all pass the top of locating rack 43, and two vertical plate portion intervals set up in order to form the centre gripping space that is used for fixing a position the crossbeam 31 of hanging the locating mechanism 30. Therefore, through the design of the rotary positioning device 70, the problem that the hanging is influenced by the fact that the hanging positioning mechanism 30 is prone to being positioned inaccurately and offset after rotating is solved, the accurate positioning of the hanging positioning mechanism 30 is guaranteed, and the hanging is guaranteed.
The hanging positioning mechanism 30 comprises a cross beam 31 and two vertical rods 32 which are vertically connected to two ends of the cross beam 31 respectively, a placing space for placing the hanging tool 60 is formed by the two vertical rods 32 and the cross beam 31 in a surrounding manner, and a positioning groove 33 for positioning the hanging tool 60 is arranged on one side of the vertical rod 32, which is located in the placing space; the positioning groove 33 is arranged downwards from the upper end of the vertical rod 32 and communicated with the placing space; the cross beam 31 is connected to the rotating block 512.
The left and right driving device 80 comprises a second sliding rail 81, a second sliding block 82 adapted to the second sliding rail 81, and a left and right driving mechanism 83 for driving the second sliding block 82 to move, the second sliding block 82 is connected with a second connecting block 84, and the mounting frame 411 of the hanging device is connected to the second connecting block 84, so that the hanging device is integrally mounted on the left and right driving device 80. Here, the left-right driving mechanism 83 may be connected to the second slider 82 by using the connection between the lead screw 412 and the lead screw nut 413, so that the left-right driving mechanism 83 drives the second slider 82 to move on the second slide rail 81; therefore, the left and right driving device 80 drives the hanging device to integrally move, so that the hanging tool 60 on the two hanging positioning mechanisms 30 can be hung, discharged and loaded respectively, the phenomenon of overlong idle time is avoided, the working efficiency is greatly improved, and meanwhile, the loading and the unloading are facilitated.
The front-rear driving device 90 comprises a moving rod 91, a front-rear driving mechanism 92, a third slide block 93 and a third slide rail 94; one end of the moving rod 91 is connected to the front and rear driving mechanism 92, and the other end is connected to a third connecting block 95; the second slide rail 81 of the left and right driving device 80 is connected to the third connecting block 95; one end of the third sliding block 93 is connected to the second sliding rail 81 through a fourth connecting block 96, and the other end is adapted to the third sliding rail 94.
The hanger 60 comprises a frame body 61 and at least two hanging rods 62 arranged on the frame body 61, the hanging rods 62 are sequentially arranged at intervals, each hanging rod 62 comprises at least two upper hanging positions, each upper hanging position is correspondingly provided with a hook 63, the hooks 63 are vertically arranged on the frame body 61 at intervals in an up-and-down stacked manner, and the hooks 63 are transversely arranged on the frame body 61 at intervals in a left-and-right side-by-side manner; here, the hanging rod 62 extends vertically or horizontally relative to the frame body 61, and only the vertical and horizontal hooks 63 are located on the same horizontal line, so that the magnetic ring can be smoothly hung on the hooks 63 of the hanger 60 through the conveying groove 23; and the upper end of the frame body 61 is also provided with a hanging part convenient for hanging.
In the embodiment, the device further includes a machine 101, and the hanging device, the support frame 21 of the linear material guiding mechanism 20, the left and right driving device 80, the front and rear driving device 90, and the third slide rail 94 are all mounted on the machine 101; the device further comprises a control device which is respectively and electrically connected with the linear conveying device, the hanging device, the left and right driving device 80 and the front and back driving device 90.
The lifting driving mechanism 42, the rotation driving mechanism 52, and the left and right driving mechanism 83 are preferably driven by motors, and of course, other driving mechanisms may be adopted, which is not described herein; the positioning driving mechanism 72 and the front and rear driving mechanism 92 are preferably driven by air cylinders, and of course, other driving mechanisms may be adopted, which are not described herein.
In addition, in the embodiment, an upper hanging station 102 for hanging a magnetic ring is disposed at one side of the output end of the material guiding table 22, and a feeding and discharging station 103 is disposed at both left and right sides of the upper hanging station 102.
The operation process is as follows:
firstly, under the condition that neither upper hanging positioning mechanism 30 has a positioning hanger 60, hanging one upper hanging positioning mechanism 30 positioned at the left loading and unloading station 103 into the hanger 60, and at the moment, the other upper hanging positioning mechanism 30 without the positioning hanger 60 is positioned at the upper hanging station 102;
secondly, the left and right driving device 80 drives the upper hanging device to integrally move rightwards, so that the upper hanging positioning mechanism 30 which is hung with the hanging tool 60 and is positioned at the left loading and unloading station 103 moves to the upper hanging station 102, the hanging tool 60 is positioned at the upper hanging station 102, at the moment, the other upper hanging positioning mechanism 30 which is not provided with the positioning hanging tool 60 simultaneously moves to the right loading and unloading station 103, and the hanging tool 60 can be positioned on the other upper hanging positioning mechanism 30 which is not provided with the positioning hanging tool 60 and is positioned at the right loading and unloading station 103;
thirdly, the front and rear driving device 90 drives the whole hanging device to move backwards;
fourthly, the lifting driving mechanism 42 drives the lifting mechanism 41 to lift upwards so as to drive the hanging positioning mechanism 30 hanging the hanging tool 60 to move upwards integrally, and the hook 63 at the uppermost row of the hanging tool 60 extends into the corresponding abdicating groove 223;
fifthly, the magnetic rings are conveyed to the material guide table 22 by the vibration disc 11 of the linear conveying device, the magnetic rings are hung into the corresponding hooks 63 through the abdicating slots 223 by the conveying grooves 23 of the material guide table 22, then the lifting mechanism 41 is continuously driven to ascend by the lifting driving mechanism 42, so that the hooks 63 of the magnetic rings hung on the uppermost row of the hangers 60 ascend to the abdicating slots 223, the hooks 63 of the second row above the hangers 60 extend into the abdicating slots 223, thus the hangers 60 are sequentially ascended until the hooks 63 of the bottommost row of the hangers 60 hang the magnetic rings, and then the lifting driving mechanism 42 drives the lifting mechanism 41 to descend to drive the hangers 60 hung with the magnetic rings to integrally descend to the initial position;
sixthly, the left and right driving device 80 drives the upper hanging device to integrally move leftwards, so that the hanging tool 60 with the hung magnetic ring integrally moves to the left feeding and discharging station 103, and the hanging tool 60 with the hung magnetic ring is integrally taken down; at the moment, the hanging positioning mechanism 30 of the hanging rack 60 positioned on the right loading and unloading station 103 moves to the hanging station 102, the actions of the third step, the fourth step and the fifth step are repeated, at the moment, the hanging rack 60 without the magnetic ring can be hung on the hanging positioning mechanism 30 on the left loading and unloading station 103, after the hanging is finished, the second step is repeated, at the moment, the hanging positioning mechanism 30 moved to the right loading and unloading station 103 in the second step hangs the magnetic ring; thus, repeated operation can realize that the hanging tool 60 on one hanging positioning mechanism 30 can be hung on the other hanging positioning mechanism 30 while one hanging positioning mechanism 30 is loaded and unloaded on the loading and unloading station 103.
In summary, the utility model is mainly designed by combining the feeding mechanism, the linear guide mechanism, the hanging positioning mechanism, the lifting driving device and the rotary driving device, so that the linear full-automatic hanging is realized, the labor is reduced, the production efficiency is improved, and the production cost is reduced; especially, with the hanger location on hanging positioning mechanism to the both sides that make the hanger all include the last layer of hanging of two-layer vertical range upon range of setting at least, every layer of hanging all includes at least one and hangs the position, makes it realize that two side lift of orthoscopic are automatic to hang, has improved and has hung efficiency.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the technical scope of the present invention, so that any slight modifications, equivalent changes and modifications made by the technical spirit of the present invention to the above embodiments are all within the scope of the technical solution of the present invention.

Claims (10)

1. The utility model provides a two side lift automatic on-hook of orthoscopic which characterized in that: the device comprises a linear conveying device, an upper hanging device connected with the output end of the linear conveying device and a hanging tool positioned on the upper hanging device;
the linear conveying device comprises a feeding mechanism and a linear material guide mechanism connected with the output end of the feeding mechanism, wherein the linear material guide mechanism is provided with at least one conveying groove;
the hanging device comprises a hanging positioning mechanism for positioning the hanging tool, a lifting driving device for driving the hanging positioning mechanism to lift and a rotary driving device for driving the hanging positioning mechanism to rotate; the upper hanging positioning mechanism is positioned on one side of the output end of the linear material guide mechanism;
the hanger is positioned on the upper hanging positioning mechanism, the hanger is provided with a first side and a second side which are used for hanging and are back to each other, each side comprises an upper hanging layer formed by at least two layers of vertical stacking, each upper hanging layer comprises at least one upper hanging position, and each upper hanging position is adaptive to the corresponding conveying groove.
2. The linear, double-sided lift, automatic on-hook according to claim 1, characterized in that: the feeding mechanism comprises a vibrating disk, and the output end of the vibrating disk is connected to the linear material guide mechanism;
the linear material guide mechanism comprises a support frame and a material guide platform arranged on the support frame, and the conveying groove is formed in the material guide platform;
the output end of each conveying groove is provided with a yielding groove for the hook of the hanger to pass through, and the yielding groove penetrates through the upper side and the lower side of the conveying groove;
the inner bottom surface of the conveying groove is concavely provided with a standby positioning groove which is narrower than the conveying groove, and the output end of the standby positioning groove penetrates through the abdicating groove.
3. The linear, double-sided lift, automatic on-hook according to claim 1, characterized in that: the lifting driving device comprises a lifting mechanism and a lifting driving mechanism for driving the lifting mechanism to lift; the rotary driving device is connected to the lifting mechanism.
4. The linear double-sided lift automatic on-hook of claim 3, characterized in that: the lifting mechanism comprises a mounting frame, a screw rod arranged on the mounting frame, a screw rod nut connected to the screw rod, a first connecting block connected to the screw rod nut, a first sliding block connected to the first connecting block, and a first sliding rail arranged on the mounting frame; the first sliding block can be matched with the first sliding rail in a vertically sliding mode.
5. The linear, double-sided lift, automatic on-hook according to claim 4, characterized in that: the rotary driving device comprises a rotary mechanism and a rotary driving mechanism, one end of the rotary mechanism is connected to the rotary driving mechanism, and the hanging positioning mechanism is connected to the rotary mechanism.
6. The linear, double-sided lift, automatic on-hook according to claim 5, characterized in that: the rotary mechanism comprises a rotary shaft and a rotary block connected to the rotary shaft, one end of the rotary shaft is connected to the rotary driving mechanism, the rotary block extends out of the upper portion of the positioning frame and is arranged in a rotatable mode, and the upper hanging positioning mechanism is connected to the rotary block.
7. The linear, double-sided lift, automatic on-hook according to claim 6, characterized in that: the hanging positioning mechanism comprises a cross beam and two vertical rods which are vertically connected to two ends of the cross beam respectively, a placing space for placing a hanger is formed by the two vertical rods and the cross beam in a surrounding mode, and a positioning groove for positioning the hanger is formed in one side, located in the placing space, of each vertical rod; the positioning groove is downwards concavely arranged from the upper end of the vertical rod and is communicated with the placing space; the beam is connected to the rotating block.
8. The linear, double-sided lift, automatic on-hook according to claim 1, characterized in that: a rotary positioning device for rotationally positioning the upper hanging positioning mechanism is arranged on the positioning frame on one side of the rotary driving device;
the rotary positioning device comprises a rotary positioning mechanism and a positioning driving mechanism for driving the rotary positioning mechanism to perform up-and-down lifting positioning, and the rotary positioning mechanism comprises a clamping piece; the clamping piece comprises a main body portion and two vertical plate portions, wherein the two vertical plate portions are respectively connected to two sides of the main body portion in an upward mode, the main body portion is connected to a positioning driving mechanism, the positioning driving mechanism is connected to a positioning frame through a connecting plate, the two vertical plate portions penetrate through the upper portion of the positioning frame, and the two vertical plate portions are arranged at intervals to form a clamping space for positioning a cross beam used for hanging the positioning mechanism.
9. The linear, double-sided lift, automatic on-hook according to claim 1, characterized in that: the hanger comprises a frame body and at least one hanging rod arranged on the frame body, the hanging rod comprises at least one upper hanging position in the transverse direction, each upper hanging position is correspondingly provided with a hook, and the frame body is vertically arranged at a plurality of upper hooks and lower hooks at a stacking interval.
10. The linear, double-sided lift, automatic on-hook according to claim 1, characterized in that: the device comprises a machine table, and the upper hanging device and the linear material guide mechanism are arranged on the machine table.
CN201921298195.7U 2019-08-12 2019-08-12 Linear double-side lifting automatic hanging machine Active CN210420239U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110318088A (en) * 2019-08-12 2019-10-11 东莞市海天磁业股份有限公司 Linear bilateral lifting upper on-hook automatically

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110318088A (en) * 2019-08-12 2019-10-11 东莞市海天磁业股份有限公司 Linear bilateral lifting upper on-hook automatically
CN110318088B (en) * 2019-08-12 2024-06-14 东莞市海天磁业股份有限公司 Linear double-side lifting automatic hanging machine

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