CN212524997U - Automatic change intelligent sorting device - Google Patents
Automatic change intelligent sorting device Download PDFInfo
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- CN212524997U CN212524997U CN202021881604.9U CN202021881604U CN212524997U CN 212524997 U CN212524997 U CN 212524997U CN 202021881604 U CN202021881604 U CN 202021881604U CN 212524997 U CN212524997 U CN 212524997U
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Abstract
The utility model provides an automatic change intelligent sorting device, including vibration dish and main sorting mechanism, be equipped with spiral shell screwing in and export the transfer passage who extends to the vibration dish outside in the vibration dish, main sorting mechanism connects transfer passage's export, and main sorting mechanism sets gradually and respectively with the round pin piece passageway, K board nut passageway, K board screw passageway, pin passageway and the tensile force silk nut passageway of letter sorting main access connection including letter sorting main passage and along letter sorting main passage. The utility model can sort out the pin sheet, the K plate nut, the K plate screw, the pin and the tension wire nut in turn by combining the action of the vibration disc according to the respective structural characteristics of the pin sheet, the K plate nut, the K plate screw, the pin and the tension wire nut; sorting can be completed only through a simple structural design without other auxiliary equipment; manual sorting can be replaced, the sorting efficiency is greatly improved, and the manpower consumption is reduced; and reduce the risk of injury to the operating personnel during sorting.
Description
Technical Field
The utility model relates to a sorting machine field, more specifically relates to an automatic change intelligent sorting device.
Background
The pin sheet, the K plate nut, the K plate screw, the pin and the tension wire nut belong to common metal accessories in engineering, are in an unordered mixed state after being subjected to logistics or recycled from an implementation site in the packaging and conveying processes, and are separated out by manual sorting in the prior art, so that a large amount of manpower is consumed, and the sorting efficiency is extremely low; sometimes, the metal fitting is pricked, which causes damage to the body of the worker.
In the prior art, a device for sorting metal parts is provided, and a specially designed channel is added on a main sorting mechanism aiming at the sorted parts to sort out corresponding metal parts; for example, chinese patent CN11123611A discloses a metal part sorting and arranging device; it can be used to sort screws and nuts, but it cannot be used to sort pin pieces, K-plate nuts, K-plate screws, pins, and tension wire nuts; at present, a sorting device special for sorting pin sheets, K plate nuts, K plate screws, pins and tension wire nuts does not exist.
SUMMERY OF THE UTILITY MODEL
The utility model discloses an overcome among the above-mentioned background art the problem that does not have the sorting device who is used for sorting round pin piece, K board nut, K board screw, pin and pulling force silk nut specially yet at present, provide an automatic change intelligent sorting device. The utility model discloses can be used for the letter sorting of round pin piece, K board nut, K board screw, pin and pulling force silk nut specially.
In order to solve the technical problem, the utility model discloses a technical scheme is: the utility model provides an automatic change intelligent sorting device, includes vibration dish and main sorting mechanism, be equipped with spiral shell screwing in and export and extend to in the vibration dish outside transfer passage, main sorting mechanism connects transfer passage's export, main sorting mechanism includes the letter sorting main channel and along the letter sorting main channel set gradually and respectively with sell piece passageway, K board nut passageway, K board screw passageway, pin passageway and the tension wire nut passageway that the letter sorting main channel is connected.
Further, the sorting main channel includes:
the main track is used for conveying pin pieces to be sorted, K plate nuts, K plate screws, pins and tension wire nuts;
the height limiting side plate is connected to the outer side edge of the head end of the main track and is provided with a first pin piece outlet, and the height of the first pin piece outlet is limited only by the passing of the pin piece;
the track is divided and used for screening out the tension wire nuts and conveying the tension wire nuts;
the guiding height-limiting surrounding rod is used for guiding the K plate screws and the pins;
the pin piece channel is connected outside the first pin piece outlet, the K plate nut channel is connected outside one end, close to the limiting side plate, of the guide height-limiting surrounding rod, the head end of the sub-track is connected to the main track, the tail end of the sub-track is connected to the tension wire nut channel, the pin channel is located at the tail end of the main track, the guide height-limiting surrounding rod is arranged above the main track and has a distance with the track surface of the main track, the distance is limited to the passage of the pin piece and the K plate nut, one end of the guide height-limiting surrounding rod is connected with the limiting side plate, the other end of the guide height-limiting surrounding rod extends to the pin channel, the main track is provided with a K plate screw opening which enables a K plate screw to fall and the pin not to fall between the pin channel and the K plate nut channel, and the K plate screw channel is located below the K plate screw opening, the tension wire nut channel is positioned at the other end of the sub-track.
Furthermore, the main track comprises a front end track, a middle track and a rear end track which are sequentially connected end to end, the pin sheet channel and the K plate nut channel are connected to the front end track, and the width of the middle track is less than 1.5 times of that of the tension wire nut; the K plate screw channel and the pin channel are positioned below the rear end track; the rear end track and the branch track are arranged adjacently and are connected to the same end of the middle track together, and the distance between the side edge of the rear end track adjacent to the branch track and the guide height-limiting surrounding rod is smaller than 1/2 of the width of the tension wire nut.
Furthermore, the main track is along round pin piece passageway, K board nut passageway, K board screw passageway and pulling force silk nut passageway are constantly downward slope.
Further, the K plate nut channel include with the passageway bottom plate of main track parallel and level, one side of passageway bottom plate is connected on the main track, the passageway bottom plate with one side that the main track is relative is equipped with the side shield, the export of second round pin piece has still been seted up on the side shield.
Further, direction limit for height surrounding rod is in the corresponding position of K board screw opening part is equipped with the breach or the portion of encircleing that supplies the K board screw to drop, breach or the portion of encircleing with K board screw open-ended first side piece is just right from top to bottom, on the K board screw opening with the relative second side piece of first side piece is located the outside of primary rail, first side piece with interval D between the second side piece satisfies: the length of the K plate screw is less than the length of the pin and less than the length of the pin.
Preferably, the main track and the sub-track are both arc-shaped.
Furthermore, a downward slope is formed from one side edge of the sub-rail close to the rear end rail to the other side edge of the sub-rail.
Furthermore, the other end of the guide height-limiting surrounding rod is suspended above the pin channel inlet.
Further, the guiding height-limiting surrounding rod is made of aluminum alloy.
Compared with the prior art, the beneficial effects are:
1. the utility model can sort out the pin sheet, the K plate nut, the K plate screw, the pin and the tension wire nut in turn by combining the action of the vibration disc through the matching use of the sorting main channel and each sorting material channel according to the respective structural characteristics of the pin sheet, the K plate nut, the K plate screw, the pin and the tension wire nut; sorting can be completed only through a simple structural design without other auxiliary equipment; manual sorting can be replaced, the sorting efficiency is greatly improved, and the manpower consumption is reduced; and reduce the risk of injury to the operating personnel during sorting.
2. The utility model discloses the ingenious design of well each letter sorting export of letter sorting main entrance and main orbit, branch track and direction limit for height surrounding rod isotructure matches the respective structural feature of round pin piece, K board nut, K board screw, pin and tensile wire nut completely and screens, sorts more accurately, and the error rate is lower.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic structural diagram of the main sorting mechanism of the present invention.
Fig. 3 is a schematic structural diagram of the middle pin piece channel and the K-plate nut channel of the present invention.
Fig. 4 is a schematic structural diagram of the screw passage of the middle K plate of the present invention.
Detailed Description
The drawings are for illustrative purposes only and are not to be construed as limiting the patent; for the purpose of better illustrating the embodiments, certain features of the drawings may be omitted, enlarged or reduced, and do not represent the size of an actual product; it will be understood by those skilled in the art that certain well-known structures in the drawings and descriptions thereof may be omitted. The positional relationships depicted in the drawings are for illustrative purposes only and are not to be construed as limiting the present patent.
The same or similar reference numerals in the drawings of the embodiments of the present invention correspond to the same or similar parts; in the description of the present invention, it should be understood that if there are the terms "upper", "lower", "left", "right", "long", "short", etc. indicating the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, it is only for convenience of description and simplification of description, but it is not intended to indicate or imply that the device or element referred to must have a specific orientation, be constructed in a specific orientation, and be operated, and therefore the terms describing the positional relationship in the drawings are only for illustrative purposes and are not to be construed as limiting the present patent, and those skilled in the art will understand the specific meaning of the terms according to their specific circumstances.
The technical solution of the present invention is further described in detail by the following specific embodiments in combination with the accompanying drawings:
as shown in fig. 1, an automatic intelligent sorting device, including a vibrating disk 100 and a main sorting mechanism 110, a conveying channel 111 is arranged in the vibrating disk 100, which is spirally raised and extends to the outside of the vibrating disk 100, the main sorting mechanism 110 is connected with the outlet of the conveying channel 111, the main sorting mechanism 110 includes a main sorting channel 1, and a pin sheet channel 2, a K plate nut channel 3, a K plate screw channel 4, a pin channel 5 and a tension wire nut channel 6, which are sequentially arranged along the main sorting channel 1 and respectively connected with the main sorting channel 1.
As shown in fig. 2, the sorting main channel 1 includes:
the main track 10 is used for conveying a pin sheet 20 to be sorted, a K plate nut 30, a K plate screw 40, a pin 50 and a tension wire nut 60;
a height-limiting side plate 104 connected to an outer side of the head end of the main rail 10 and provided with a first pin plate outlet 201 whose height is limited to pass through the pin plate 20;
a sub-rail 70 for individually screening out and conveying the tension wire nuts 60;
a guide height-limiting surrounding rod 105 for guiding the K plate screw 40 and the pin 50;
as shown in fig. 3, the pin plate channel 2 is connected outside the first pin plate outlet 201, the K plate nut channel 3 is connected outside one end of the guide height-limiting surrounding rod 105 close to the height-limiting side plate 104, the head end of the sub-rail 70 is connected to the main rail 10, the tail end of the sub-rail is connected to the tension wire nut channel 6, the pin channel 5 is located at the tail end of the main rail 10, the guide height-limiting surrounding rod 105 is arranged above the main rail 10 and has a distance with the rail surface of the main rail 10, the distance is only enough to allow the pin plate 20 and the K plate nut to pass through, one end of the guide height-limiting surrounding rod 105 is connected to the height-limiting side plate 104, the other end of the guide height-limiting surrounding rod 105 extends to the pin channel 5, and; the main rail 10 is provided with a K-plate screw opening 44 between the pin channel 5 and the K-plate nut channel 3, so that the K-plate screw 40 falls and the pin 50 does not fall, the K-plate screw channel 4 is located below the K-plate screw opening 44, and the tension wire nut channel 6 is located at the other end of the sub-rail 70; the K plate nut channel 3 comprises a channel bottom plate which is flush with the main rail 10, one side of the channel bottom plate is connected to the main rail 10, a side baffle 301 is arranged on one side, opposite to the main rail 10, of the channel bottom plate, and a second pin piece outlet 302 is further formed in the side baffle 301.
In this embodiment, the main rail 10 includes a front end rail 101, a middle rail 102 and a rear end rail 103 which are sequentially connected end to end, the pin sheet channel 2 and the K plate nut channel 3 are connected on the front end rail 101, and the width of the middle rail 102 is less than 1.5 times of the width of the tension wire nut 60; the K plate screw channel 4 and the pin channel 5 are positioned below the rear end rail 103; the rear end rail 103 and the sub rail 70 are adjacently arranged and are connected to the same end of the middle rail 102 together, and the distances between the adjacent side edges of the rear end rail 103 and the sub rail 70 and the guide height-limiting surrounding rod 105 are smaller than 1/2 of the width of the tension wire nut 60; the main track 10 is constantly sloped downward along the pin plate channel 2, the K plate nut channel 3, the K plate screw channel 4, and the tension wire nut channel 6.
As shown in fig. 4, the guiding height-limiting surrounding rod 105 is provided with a notch 41 or an arch portion at a corresponding position of the K-plate screw opening 44 for the K-plate screw 40 to fall, the notch 41 or the arch portion is opposite to the first side block 42 of the K-plate screw opening 44 up and down, the second side block 43 opposite to the first side block 42 on the K-plate screw opening 44 is located outside the main track 10, and the distance D between the first side block 42 and the second side block 43 satisfies: the length of the K plate screw 40 < D < the length of the pin 50.
The sub-rail 70 is inclined downwards from one side close to the rear end rail 103 to the other side; the main track 10 and the sub-tracks 70 are both arc-shaped; the guide height-limiting shroud 105 is made of an aluminum alloy. The main track 10 and the sub track 70 are both arc-shaped and can be arranged around the outer side wall of the vibration disc 100, so that the layout space is saved, the track surface of the sub track 70 is downward downhill from outside to inside, and is a reverse slope relative to the rear end track 103, so that the tension wire nut 60 can be conveniently shunted.
This embodiment is specific to the sorting of the pin sheet 20, the K-plate nut 30, the K-plate screw 40, the pin 50 and the tension wire nut 60 (or other parts each similar in structure thereto). When the vibrating plate 100 is used, the disordered pin pieces 20, the K plate nuts 30, the K plate screws 40, the pins 50 and the tension wire nuts 60 (hereinafter referred to as mixed materials) are placed in the vibrating plate 100 for sorting, and the mixed materials can be sequentially conveyed out of the vibrating plate 100 through the exciting force in the conveying channel 111 of the vibrating plate, which belongs to the existing common technology and is not described in detail herein; when the mixed material is conveyed out from the outlet of the conveying channel 111 and then enters the main sorting mechanism 110 and enters the sorting main channel 1, the mixed material can continuously move along the main channel due to the action of exciting force and self gravity, the front end of the sorting main channel 1 is provided with a height-limited side plate 104, the mixed material firstly reaches the pin sheet channel 2, the height-limited side plate 104 is provided with a first pin sheet outlet 201 with the height slightly larger than the thickness of the pin sheet 20, the height of the first pin sheet outlet 201 is larger than the thickness of the pin sheet 20 and smaller than the thickness of the K plate nut 30, so that the pin sheet 20 can be screened and passed, and the K plate nut 30 and other materials can not pass through the first pin sheet outlet 201; the remaining 4 mixed materials (the K plate nut 30, the K plate screw 40, the pin 50 and the tension screw nut 60) are continuously conveyed to the K plate nut channel 3, the height of the main track 10 in the K plate nut channel 3 is limited by a guide height limiting surrounding rod 105, the height of the guide height limiting surrounding rod 105 and the track surface of the main track 10 is larger than the thickness of the K plate nut 30, is smaller than the width of a nut cap on the K plate screw 40 and the pin 50 and is also much smaller than the width of the tension screw nut 60 (the tension screw nut 60 is in a regular hexagonal prism shape, the width of the tension screw nut 60 in the embodiment refers to the length of two opposite point diagonals on the bottom surface of the tension screw nut 60), the guide height limiting surrounding rod 105 is arranged along the main track 10 and also plays a conveying guide function, when the K plate nut 30 passes through the front end of the guide height limiting surrounding rod 105, the K plate nut is screened out and conveyed to the channel bottom plate of the K plate nut channel 3, and the pin pieces 20 which are not output in time at the, then falls out of the second pin outlet 302, the height of the second pin outlet 302 is consistent with that of the first pin outlet 201, and the K plate nut channel 3 falls out of the side of the channel bottom plate adjacent to the second pin outlet 302; the rest K plate screws 40, the pins 50 and the tension wire nuts 60 are conveyed continuously, because the diameters of the rod ends of the K plate screws 40 and the pins 50 are smaller than the distance from the guide height limiting surrounding rod 105 to the main track 10, and the diameters of the cap ends of the K plate screws 40 and the pins 50 are larger than the distance from the guide height limiting surrounding rod 105 to the main track 10, when the K plate screws 40 and the pins 50 enter the guide section of the guide height limiting surrounding rod 105, the K plate screws 40 and the pins 50 are conveyed in a posture that the rod ends can extend out of the guide height limiting surrounding rod 105 and the cap ends are hung by the guide height limiting surrounding rod 105 under the action of gravity and excitation force, and when the K plate screws 40 and the pins 50 reach the middle track 102 of the main track 10, the middle track 102 plays a role in limiting width and current; because the width is only slightly larger than that of the tension wire nut 60, only one tension wire nut 60 can be accommodated to pass through at a time, the K plate screws 40 and the pins 50 are sequentially conveyed to pass through one by one, and a falling hole exists between the middle rail 102 and the side wall of the vibration disc 100, so that the excessive K plate screws 40, the pins 50 and the tension wire nuts 60 can fall back into the vibration disc 100; after the flow limitation of the middle rail 102, 3 materials are shunted under the guiding action of the guiding height-limiting surrounding rod 105, the middle rail 102 is connected with the rear end rail 103 and the branch rail 70 at the same time, the rear end rail 103 and the branch rail 70 are arranged in a close and parallel manner, as the tension wire nuts 60 are large in size, the extrusion action of the guiding height-limiting surrounding rod 105 can extrude all the materials to the branch rail 70, the branch rail 70 and the rear end rail 103 form a reverse slope, so that the tension wire nuts 60 can be shunted, the tension wire nuts 60 are conveyed along the branch rail 70 after being shunted, and finally fall into the tension wire nut channel 6; and the shape of the K-plate screw 40 is similar to that of the pin 50, except that the rod of the K-plate screw 40 is shorter and the diameter of the cap end is smaller, the K-plate screw 40 and the pin 50 continue to be hung on the guiding height-limiting surrounding rod 105 to move along the rear-end track 103, when they reach the K-plate screw opening 44, the K-plate screw opening 44 is an opening arranged on the track surface of the rear-end track 103, and the distance D between the first side block 42 and the second side block 43 on the K-plate screw opening 44 satisfies: the length of the K plate screw 40 < D < the length of the pin 50, the guiding height-limiting surrounding rod 105 is positioned above the first side edge block 42, so that the K plate screw 40 and the cap end of the pin 50 can be supported by the first side edge block 42, but the pin 50 can straddle the K plate screw opening 44 to be supported and move continuously due to the longer pin 50; the K plate screw 40 is short, the tail end of the rod cannot be supported and falls off, and the cap end of the rod is tilted when the tail end of the rod falls off, so that the guide height-limiting surrounding rod 105 is provided with a notch 41 or an arched part at a corresponding position, if the notch 41 is provided, the distance between the notches 41 is larger than the width of the cap end of the K plate screw 40 and can also be slightly larger than the width of the cap end of the pin 50, because both ends of the pin 50 are supported, the pin can stably move along the track, and the pin cannot fall off as long as the notch 41 is not too large; it should be particularly noted that, when the vibration plate 100 is mounted and connected, the guiding height-limiting surrounding rod 105 is also hung on the side wall of the vibration plate 100 through an external connecting bridge (not shown in the figure, or other structures can be used, which plays a connecting role and does not affect the function of the guiding height-limiting surrounding rod 105), so that the rear end of the middle section is not completely suspended even if the gap 41 exists; if the screw is arched, the arched dimension is larger than the size of the cap end of the K plate screw 40 and can be slightly larger than the size of the cap end of the pin 50, so that the K plate screw 40 is provided with a falling space and cannot be hung by the guide height limiting surrounding rod 105; after screening at the K plate screw opening 44, only the remaining pins 50 are hung on the guide height-limiting surrounding rod 105 to be conveyed continuously, and finally fall into the pin channel 5 at the tail end of the rear-end track 103; because K board screw and pin do not need the secondary letter sorting when in actual use, so can directly respectively install the light sense counter in K board screw opening and pin exit, count the K board screw opening or the pin of sorting out.
According to the respective structural characteristics of the pin sheet 20, the K plate nut 30, the K plate screw 40, the pin 50 and the tension screw nut 60, the pin sheet 20, the K plate nut 30, the K plate screw 40, the pin 50 and the tension screw nut 60 can be sequentially sorted out by matching with the action of the vibration disc 100 through the ingenious design of the structures of the sorting ports, the main track 10, the branch track 70, the guide height-limiting surrounding rod 105 and the like on the sorting main channel 1 on the main sorting mechanism 110; sorting can be completed only through a simple structural design without other auxiliary equipment; manual sorting can be replaced, the sorting efficiency is greatly improved, and the manpower consumption is reduced; and the risk of injury to the operating personnel during sorting is reduced.
It is obvious that the above embodiments of the present invention are only examples for clearly illustrating the present invention, and are not limitations to the embodiments of the present invention. Other variations and modifications will be apparent to persons skilled in the art in light of the above description. And are neither required nor exhaustive of all embodiments. Any modification, equivalent replacement, and improvement made within the spirit and principle of the present invention should be included in the protection scope of the claims of the present invention.
Claims (10)
1. The utility model provides an automatic change intelligent sorting device, includes vibration dish (100) and main sorting mechanism (110), be equipped with spiral shell screwing in the vibration dish (100) and export and extend to conveying channel (111) of vibration dish (100) outside, main sorting mechanism (110) are connected the export of conveying channel (111), a serial communication port, main sorting mechanism (110) including letter sorting main channel (1) and along letter sorting main channel (1) set gradually and respectively with round pin piece passageway (2), K board nut passageway (3), K board screw passageway (4), pin passageway (5) and tension wire nut passageway (6) that letter sorting main channel (1) is connected.
2. The automated intelligent sorting apparatus according to claim 1, wherein the sorting main channel (1) comprises:
the main track (10) is used for conveying pin pieces (20) to be sorted, K plate nuts (30), K plate screws (40), pins (50) and tension wire nuts (60);
the height limiting side plate (104) is connected to the outer side edge of the head end of the main rail (10) and is provided with a first pin sheet outlet (201) the height of which is limited only by the pin sheet (20) to pass through;
the sub-track (70) is used for screening out the tension wire nuts (60) and conveying the tension wire nuts;
the guide height limiting surrounding rod (105) is used for guiding the K plate screw (40) and the pin (50);
pin piece passageway (2) are connected outside first round pin piece export (201), K board nut passageway (3) are connected direction limit for height pin (105) are close to the outside of limit for height curb plate (104) one end, the head end of branch track (70) is connected on main track (10), end-to-end connection lag wire nut passageway (6), pin passageway (5) are located the end of main track (10), direction limit for height pin (105) are located the top of main track (10) and with there is the interval in the track face of main track (10), the interval size satisfies to be limited only to pass through pin piece (20) and K board nut (30), direction limit for height pin (105) one end is connected limit for height curb plate (104), the other end extend to pin passageway (5) department, main track (10) be in pin passageway (5) with be equipped with between K board nut passageway (3) and make K board (40) drop and fall and the K board nut passageway (3) is equipped with and make The K plate screw channel (4) is located below the K plate screw opening (44), and the tension wire nut channel (6) is located at the other end of the sub-rail (70).
3. The automated intelligent sorting apparatus according to claim 2, wherein the main track (10) comprises a front end track (101), a middle track (102) and a rear end track (103) which are connected end to end in sequence, the pin sheet channel (2) and the K plate nut channel (3) are connected on the front end track (101), and the width of the middle track (102) is less than 1.5 times the width of the tension wire nut (60); the K plate screw channel (4) and the pin channel (5) are positioned below the rear end track (103); the rear end rail (103) and the branch rail (70) are arranged adjacently and are connected to the same end of the middle rail (102) together, and the distance between the side edge of the rear end rail (103) adjacent to the branch rail (70) and the guide height-limiting surrounding rod (105) is smaller than 1/2 of the width of the tension wire nut (60).
4. The automated intelligent sorting apparatus according to claim 2 or 3, wherein the main track (10) is continuously downwardly sloped along the pin channel (2), K-plate nut channel (3), K-plate screw channel (4) and tension wire nut channel (6).
5. The automated intelligent sorting device according to claim 2, wherein the K-plate nut channel (3) comprises a channel bottom plate which is flush with the main rail (10), one side of the channel bottom plate is connected to the main rail (10), a side baffle (301) is arranged on the side of the channel bottom plate opposite to the main rail (10), and a second pin outlet (302) is further formed in the side baffle (301).
6. The automated intelligent sorting device according to claim 2, wherein the guiding height-limiting surrounding rod (105) is provided with a notch (41) or an arch part for falling of a K plate screw (40) at a corresponding position of the K plate screw opening (44), the notch (41) or the arch part is opposite to a first side block (42) of the K plate screw opening (44) up and down, a second side block (43) opposite to the first side block (42) on the K plate screw opening (44) is located on the outer side of the main track (10), and a distance D between the first side block (42) and the second side block (43) satisfies: the length of the K plate screw (40) is less than D and less than the length of the pin (50).
7. The automated intelligent sorting apparatus according to claim 2, wherein the main track (10) and the sub-track (70) are each circular arc shaped.
8. The automated intelligent sorting apparatus according to claim 3, wherein the branch rails (70) are sloped downward from one side to the other side of the branch rails (70) near the rear end rail (103).
9. The automated intelligent sorting apparatus according to claim 2, wherein the other end of the guide height-limiting boom (105) is suspended above the entrance of the pin channel (5).
10. The automated intelligent sorting apparatus according to claim 2, wherein the guide height-limiting girt (105) is made of aluminum alloy.
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CN112024407A (en) * | 2020-09-01 | 2020-12-04 | 广州景兴建筑科技有限公司 | Automatic change intelligent sorting device |
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