CN220244436U - Anti-seize piece conveyor and sorting equipment - Google Patents

Anti-seize piece conveyor and sorting equipment Download PDF

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Publication number
CN220244436U
CN220244436U CN202321546174.9U CN202321546174U CN220244436U CN 220244436 U CN220244436 U CN 220244436U CN 202321546174 U CN202321546174 U CN 202321546174U CN 220244436 U CN220244436 U CN 220244436U
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China
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roller
narrow
cover plate
conveyor
plate
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CN202321546174.9U
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Chinese (zh)
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蔡熙
郑恒飞
汪文杰
蔡昂
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Suzhou Jinfeng Logistics Equipment Technology Co ltd
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Suzhou Jinfeng Logistics Equipment Technology Co ltd
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Abstract

The utility model discloses an anti-jamming conveyer and sorting equipment, wherein the anti-jamming conveyer comprises a rack and a group of narrow-band conveying components which are distributed on the rack in a divergent mode, a cover plate is further arranged on the rack, and an avoidance port corresponding to the position of each narrow-band conveying component is formed in the cover plate so that the top surface of the upper layer of a conveying belt of the narrow-band conveying component protrudes out of the top of the cover plate, and the downstream of the output end of each narrow-band conveying component is not provided with a horizontal part of the cover plate. According to the utility model, the avoidance opening is formed on the cover plate, so that the output end of the narrow-band conveying assembly is of an open structure, a gap between the cover plate and the output end of the narrow-band conveying assembly is avoided, the condition of material clamping is effectively avoided, and the stability and safety of sorting are improved.

Description

Anti-seize piece conveyor and sorting equipment
Technical Field
The utility model relates to the field of logistics sorting equipment, in particular to an anti-seizing piece conveyor and sorting equipment.
Background
In logistics sorting, it is often necessary to spread a large number of articles in the transverse direction by means of a divergent conveyor, so that subsequent handling is facilitated.
The diverging conveyor typically employs a structure such as that disclosed in the patent publication CN218144311U, in which a cover plate is provided on the frame to cover the gaps between and across the active belt modules.
However, due to the fact that a certain gap exists between the cover plate and the output end of the driving belt module, when the soft package exists during package conveying, the situation that the package is clamped to the gap is easy to occur, and the stable use of equipment and the package safety are affected.
Disclosure of Invention
The utility model aims to solve the problems in the prior art and provides an anti-seizing piece conveyor and sorting equipment.
The aim of the utility model is achieved by the following technical scheme:
the anti-blocking piece conveyor comprises a frame and a group of narrow-band conveying components which are distributed on the frame in a divergent mode, wherein a cover plate is further arranged on the frame, and the cover plate is provided with an avoidance port corresponding to each narrow-band conveying component in position so that the top surface of the upper layer of the conveying belt of the narrow-band conveying component protrudes out of the top of the cover plate, and the downstream of the output end of each narrow-band conveying component is not provided with a horizontal part of the cover plate.
Preferably, the narrow-band conveying assembly comprises a base, a first roller and a second roller are arranged at two ends of the base, the conveying belt is sleeved on the first roller and the second roller, and one of the first roller and the second roller is an electric roller or a driving mechanism connected with the driving mechanism for driving the conveying belt to rotate.
Preferably, the first roller is movably arranged on the base along a conveying direction parallel to the narrow-band conveying assembly, and two tensioning adjusting mechanisms connected with the first roller are further arranged on two sides of the base to adjust the distance between the first roller and the second roller.
Preferably, two opposite L-shaped mounting openings are formed in the two side plates of the base, one end of each L-shaped mounting opening extends to the top of each side plate, and two ends of the supporting shaft of the first roller are located at the transverse parts of the two L-shaped mounting openings.
Preferably, the tensioning adjustment mechanism comprises a mounting plate fixed on the outer side of the base, a limit bolt with an axis perpendicular to the axis of the supporting shaft of the first roller is connected to the mounting plate in a threaded mode, the limit bolt is biased to one side, close to the second roller, of the supporting shaft and is abutted to the side face of the supporting shaft, and one end, abutted to the supporting shaft, of the limit bolt is inclined and is lower than the other end, opposite to the other end, of the limit bolt.
Preferably, a sliding notch is formed on the mounting plate, the support shaft is movably arranged in the sliding notch, the opening end of the sliding notch faces away from the second roller, and the inner end surface of the sliding notch enables the support shaft not to move to the vertical part of the L-shaped mounting opening.
Preferably, two ends of a drum shaft of the second drum are respectively and movably arranged in a straight slot on two side plates of the base, the straight slot extends along the conveying direction of the narrow-band conveying assembly and the slot extends to the end part of the side plate, two ends of the drum shaft are respectively and spirally connected with an adjusting bolt, the extending direction of the adjusting bolt is parallel to the extending direction of the straight slot, and the inner end of the adjusting bolt is abutted to the inner end surface of the straight slot and/or the supporting piece.
Preferably, the cover plate comprises a horizontal plate and a vertical plate positioned at the output end of the narrow-band conveying assembly, a group of avoidance openings are formed in the horizontal plate, end gaps which are in one-to-one correspondence with and are communicated with the avoidance openings are formed in the vertical plate, and the bottoms of the end gaps are not higher than the bottoms of the conveying belts.
Preferably, the cover plate is fixed to a set of connection posts on the frame.
Sorting apparatus comprising an anti-seize conveyor as defined in any one of the preceding claims.
The technical scheme of the utility model has the advantages that:
according to the utility model, the avoidance opening is formed on the cover plate, so that the output end of the narrow-band conveying assembly is of an open structure, a gap between the cover plate and the output end of the narrow-band conveying assembly is avoided, the condition of material clamping is effectively avoided, and the stability and safety of sorting are improved.
The narrow-band conveying assembly is driven by the electric roller, so that the device is simpler in structure, easier to assemble and realize and lower in failure rate.
The L-shaped mounting opening structure on the base of the narrow-band conveying assembly is convenient for mounting the first roller, meanwhile, the tensioning adjusting mechanism is abutted against the supporting shaft by adopting the obliquely arranged limiting bolt, and after the cover plate is taken down, the limiting bolt can be adjusted from the top, so that the operation is more convenient, and the design is more humanized.
The second roller of the narrow-band conveying assembly is also connected with the tensioning structure, so that the tensioning adjustment degree of the conveying belt is larger, and the operation is more flexible.
The cover plate comprises the horizontal plate and the vertical plate positioned at the output end of the narrow-band conveying assembly, so that the problem that the sharp angle at the tail end of the horizontal plate is blocked to wrap or damage is caused can be effectively avoided.
Drawings
FIG. 1 is a schematic view of an anti-jam conveyor of the present utility model;
FIG. 2 is a partial cross-sectional view of the anti-jam conveyor of the present utility model showing only a portion of one of the narrowband conveying assemblies and cover plate;
fig. 3 is a perspective view of the narrow band transport assembly of the present utility model.
Detailed Description
The objects, advantages and features of the present utility model are illustrated and explained by the following non-limiting description of preferred embodiments. These embodiments are only typical examples of the technical scheme of the utility model, and all technical schemes formed by adopting equivalent substitution or equivalent transformation fall within the scope of the utility model.
In the description of the embodiments, it should be noted that the positional or positional relationship indicated by the terms such as "center", "upper", "lower", "left", "right", "front", "rear", "vertical", "horizontal", "inner", "outer", etc. are based on the positional or positional relationship shown in the drawings, are merely for convenience of description and simplification of description, and do not indicate or imply that the apparatus or elements referred to must have a specific orientation, be configured and operated in the specific orientation, and thus are not to be construed as limiting the present utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
Example 1
The anti-seizing member conveyor disclosed by the utility model is described below with reference to the accompanying drawings, and comprises a frame 100 and a group of narrow band conveying components 200 which are distributed on the frame 100 in a divergent shape, wherein a cover plate 300 is further arranged on the frame 100, and the cover plate 300 is provided with a dodging port 310 corresponding to the position of each narrow band conveying component 200 so that the top surface of an upper layer 241 of a conveying belt 240 of the narrow band conveying component 200 protrudes out of the top of the cover plate 300 and the downstream of the output end of each narrow band conveying component 200 is not provided with a horizontal part of the cover plate 300.
The rack 100 includes a base 110, and a platform 120 is disposed on the base 110, and the narrow band conveying assembly 200 is disposed on the platform.
The narrow-band conveying assembly 200 comprises a base 210, the base 210 comprises two side plates 211, bottoms of the two side plates 211 are connected through a bottom plate, a connecting piece 212 is arranged below the two side plates 211, and the base 210 is connected to the frame 100 through the connecting piece 212. And a supporting block (not shown) is arranged between the two side plates 211 for supporting an upper layer 241 of the conveyor belt 240.
The two ends of the base 210 are provided with a first roller 220 and a second roller 230, the conveyor belt 240 is sleeved on the rollers, and the friction coefficient of the outer surface of the conveyor belt 240 is between 0.1 and 0.2, so that the situation of material clamping is more convenient to reduce. One of the first roller 220 and the second roller 230 is an electric roller or is connected to a driving mechanism for driving the electric roller to rotate. The drive mechanism is, for example, a motor and a transmission mechanism connecting the motor and the first roller 220 and/or the second roller 230. Further, each of the narrow band conveying units 200 may be provided with a driving mechanism, and it is needless to say that a plurality of narrow band conveying units 200 may share a driving mechanism as in the prior art.
The first roller 220 is movably disposed on the base 210 along a conveying direction parallel to the narrow-band conveying assembly 200, two opposite L-shaped mounting openings 213 are formed on two side plates 211 of the base 210 near one end thereof, one end of each L-shaped mounting opening 213 extends to the top of each side plate 211, two ends of a supporting shaft 221 of the first roller 220 are flattened and slide on the transverse parts of the two L-shaped mounting openings 213, two tensioning adjustment mechanisms 250 connected with the first roller 220 are further disposed on two sides of the base 210 to adjust the distance between the first roller 220 and the second roller 230, that is, the mounting position of the first roller 220 on the base 210 is adjusted by the tensioning adjustment mechanisms 250 to adjust the distance between the first roller 220 and the second roller 230, and further tensioning adjustment of the conveying belt 240 is achieved.
The tension adjusting mechanism 250 includes a mounting plate 251 fixed to the outside of the base 210, the mounting plate 251 including a first plate member and a second plate member having 90 degrees, the first plate member being parallel to the side plate 211 of the base 210 and being screwed to the side plate 211 by bolts. The second plate is located at the upper left corner of the supporting shaft 221, and is screwed with a limit bolt 252 with an axis perpendicular to the axis of the supporting shaft 221 of the first roller 220, the limit bolt 252 is perpendicular to the second plate, the limit bolt 252 is biased to one side of the supporting shaft 221 close to the second roller 230 and is abutted against the side surface of the supporting shaft 221, and the side surface of the supporting shaft 221 facing the second roller 230 is an arc surface, so that the adjustment is facilitated. The limit bolt 252 is disposed obliquely, and one end of the limit bolt is abutted against the support shaft 221 is lower than the other end of the limit bolt opposite to the support shaft 221, so that the limit bolt 252 is abutted against the upper left corner of the support shaft 221 in a normal state. The limit bolt 252 is a socket head cap bolt and has a head portion thereon. When the tension of the conveyor belt 240 needs to be adjusted, the limit bolt 252 can be screwed to adjust the length of the limit bolt extending to the right side of the second plate, so that the position of the support shaft 221 at the transverse part of the L-shaped mounting opening 213 is realized.
Further, a sliding slot 253 is formed on the first plate on the mounting plate 251, the support shaft 221 is movably disposed in the sliding slot 253, the slot of the sliding slot 253 faces away from the second roller 230, and the inner end surface of the sliding slot 253 prevents the support shaft 221 from moving to the vertical portion of the L-shaped mounting opening 213. This effectively restricts the position to which the support shaft 221 can be pulled, and prevents the support shaft 221 from being withdrawn from the L-shaped mounting opening 213 when in operation.
The mounting position of the second roller 230 on the base 210 may be fixed and non-adjustable, although in a more preferred embodiment the mounting position of the second roller 230 on the base 210 is also adjustable, so that tensioning of the conveyor belt 240 may be achieved by adjusting the position of the second roller 230. Specifically, the two side plates 211 of the base 210 are provided with a linear notch 214 at the other end, the linear notch 214 extends along the conveying direction of the narrow-band conveying assembly 200, the notch extends to the end of the side plate 211, two ends of the drum shaft 231 of the second drum 230 are respectively milled flat and can be movably arranged at the two linear notches 214, two ends of the drum shaft 231 are respectively connected with an adjusting bolt 260 in a threaded manner, the extending direction of the adjusting bolt 260 is parallel to the extending direction of the linear notch 214, the inner end of the adjusting bolt 260 passes through the drum shaft 231 and is abutted against the inner end face of the linear notch 214 and/or the supporting member 270, the adjusting bolt 260 is also a hexagon socket bolt, the head of the adjusting bolt faces outwards, and the inner end of the adjusting bolt is abutted against the inner end face of the linear notch 214 and/or the supporting member 270, so that the position of the drum shaft 231 in threaded connection with the adjusting bolt can move outwards along the axial direction of the adjusting bolt 260 to realize tensioning of the conveying belt 240.
The cover plate 300 comprises a horizontal plate 320 and a vertical plate 330 positioned at the output end of the narrow-band conveying assembly, wherein the horizontal plate 320 and the vertical plate 330 are formed by bending a plate, and the horizontal plate 320 is the horizontal part of the cover plate; the horizontal plate 320 is formed with a group of avoidance openings 310, the vertical plate 330 is formed with end notches 331 corresponding to and communicating with the avoidance openings 310 one by one, and the bottom of the end notch 331 is not higher than the bottom of the conveying belt 240. The cover plate 300 is secured to a set of posts on the frame 100. The horizontal plate 320 is formed with counter bores corresponding to the connecting columns one by one, the connecting columns are fixed at the top of the platform and are formed with screw holes extending along the axial direction of the connecting columns, and the connecting columns are connected into the screw holes of the connecting columns through bolts penetrating through the counter bores in a threaded manner, so that the cover plate 300 is connected with the frame 100. By adopting the scheme of directly fixing the cover plate 300, the height of the cover plate 300 at the outlet is not required to be adjusted, and the assembly is simpler. Of course, the other three sides of the horizontal plate can also be bent downwards.
Further, the frame 100 is further provided with side blocks 400 located at two sides of the set of narrow-band conveying assemblies 200, the two side blocks 400 are distributed in a bell mouth shape, and two sides of the cover plate 300 are abutted to inner side surfaces of the side blocks 400.
Example 2
The embodiment discloses a sorting device, including the anti-seize piece conveyor of the above embodiment, the sorting device can be a visual separating device, of course also can be other sorting devices, the anti-seize piece conveyor can be used for converging or diverging.
The utility model has various embodiments, and all technical schemes formed by equivalent transformation or equivalent transformation fall within the protection scope of the utility model.

Claims (10)

1. Anti-sticking spare conveyer, be in including frame and being the shape of diverging a set of narrowband conveying assembly in the frame, its characterized in that: the machine frame is also provided with a cover plate, and the cover plate is provided with an avoidance port corresponding to the position of each narrow-band conveying assembly so that the top surface of the upper layer of the conveying belt of the narrow-band conveying assembly protrudes out of the top of the cover plate and the downstream of the output end of each narrow-band conveying assembly is not provided with a horizontal part of the cover plate.
2. The anti-seize conveyor as in claim 1 wherein: the narrow-band conveying assembly comprises a base, a first roller and a second roller are arranged at two ends of the base, the conveying belt is sleeved on the first roller and the second roller, and one of the first roller and the second roller is an electric roller or a driving mechanism connected with the electric roller to drive the electric roller to rotate.
3. The anti-seize conveyor as in claim 2 wherein: the first roller is movably arranged on the base along the conveying direction parallel to the narrow-band conveying assembly, and two tensioning adjusting mechanisms connected with the first roller are further arranged on two sides of the base to adjust the distance between the first roller and the second roller.
4. A jam-preventing conveyor as in claim 3 wherein: the two side plates of the base are provided with L-shaped mounting openings with opposite positions, one end of each L-shaped mounting opening extends to the top of each side plate, and two ends of the supporting shaft of the first roller are positioned at the transverse parts of the two L-shaped mounting openings.
5. The anti-seize conveyor as in claim 4 wherein: the tensioning adjustment mechanism comprises a mounting plate fixed on the outer side of the base, a limit bolt with an axis perpendicular to the axis of the supporting shaft of the first roller is connected to the mounting plate in a threaded mode, the limit bolt is biased to one side, close to the second roller, of the supporting shaft and is abutted to the side face of the supporting shaft, and one end, abutted to the supporting shaft, of the limit bolt is inclined and is lower than the other end, opposite to the other end, of the limit bolt.
6. The anti-seize conveyor as in claim 5 wherein: the mounting plate is provided with a sliding notch, the support shaft is movably arranged in the sliding notch, the opening end of the sliding notch faces away from the second roller, and the inner end surface of the sliding notch enables the support shaft not to move to the vertical part of the L-shaped mounting opening.
7. The anti-seize conveyor as in claim 2 wherein: the two ends of the drum shaft of the second drum can be movably arranged in the straight-line notch on the two side plates of the base respectively, the straight-line notch extends along the conveying direction of the narrow-band conveying assembly and the notch extends to the end part of the side plate, the two ends of the drum shaft are connected with adjusting bolts in a threaded mode respectively, the extending direction of the adjusting bolts is parallel to the extending direction of the straight-line notch, and the inner ends of the adjusting bolts are abutted to the inner end surface of the straight-line notch and/or the supporting piece.
8. The anti-seize conveyor as in any one of claims 1-7 wherein: the cover plate comprises a horizontal plate and a vertical plate positioned at the output end of the narrow-band conveying assembly, a group of avoidance openings are formed in the horizontal plate, end gaps which are in one-to-one correspondence with and are communicated with the avoidance openings are formed in the vertical plate, and the bottoms of the end gaps are not higher than the bottoms of the conveying belts.
9. The anti-seize conveyor as in claim 8 wherein: the cover plate is fixed on a group of connecting columns on the frame.
10. Sorting equipment, its characterized in that: an anti-seize conveyor comprising any one of claims 1-9.
CN202321546174.9U 2023-06-16 2023-06-16 Anti-seize piece conveyor and sorting equipment Active CN220244436U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321546174.9U CN220244436U (en) 2023-06-16 2023-06-16 Anti-seize piece conveyor and sorting equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321546174.9U CN220244436U (en) 2023-06-16 2023-06-16 Anti-seize piece conveyor and sorting equipment

Publications (1)

Publication Number Publication Date
CN220244436U true CN220244436U (en) 2023-12-26

Family

ID=89234843

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321546174.9U Active CN220244436U (en) 2023-06-16 2023-06-16 Anti-seize piece conveyor and sorting equipment

Country Status (1)

Country Link
CN (1) CN220244436U (en)

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