CN113682784B - Intelligent belt conveyor with multipoint blanking function - Google Patents

Intelligent belt conveyor with multipoint blanking function Download PDF

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Publication number
CN113682784B
CN113682784B CN202011011728.6A CN202011011728A CN113682784B CN 113682784 B CN113682784 B CN 113682784B CN 202011011728 A CN202011011728 A CN 202011011728A CN 113682784 B CN113682784 B CN 113682784B
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China
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plate
conveyor
ring
coaxially
annular
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CN113682784A (en
Inventor
陈子觉
龙雨哉
陈定国
陈清富
符云兴
范基正
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Hainan Hongta Cigarette Co ltd
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Hainan Hongta Cigarette Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G47/00Article or material-handling devices associated with conveyors; Methods employing such devices
    • B65G47/52Devices for transferring articles or materials between conveyors i.e. discharging or feeding devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G47/00Article or material-handling devices associated with conveyors; Methods employing such devices
    • B65G47/74Feeding, transfer, or discharging devices of particular kinds or types
    • B65G47/80Turntables carrying articles or materials to be transferred, e.g. combined with ploughs or scrapers

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Branching, Merging, And Special Transfer Between Conveyors (AREA)
  • Specific Conveyance Elements (AREA)

Abstract

The invention discloses an intelligent belt conveyor with a multipoint blanking function, and belongs to the technical field of belt conveyors. The utility model provides an intelligence belt feeder with multiple spot blanking function, includes: a screening mechanism for rejecting wastrel still includes: when the personnel are insufficient, the workers stand on the same side, the second motor is started and drives the gear to rotate through the rotating rod, the gear drives the first ring plate and the second ring plate to rotate through the outer gear ring, so that the articles pass through the workers, article omission is prevented, when the height measuring sensor senses that the workers are short, the bending cylinder moves downwards to the fourth conveyor below, and the sorting of the workers with small height is facilitated.

Description

Intelligent belt conveyor with multipoint blanking function
Technical Field
The invention belongs to the technical field of belt conveyors, and particularly relates to an intelligent belt conveyor with a multipoint blanking function.
Background
In current technique, the belt feeder only has single transport effect, causes article to pile up easily when article transportation volume is big, has caused the trouble for the personnel of letter sorting, and has reduced work efficiency, and staff's height can not be considered when the letter sorting to current belt feeder, and the belt feeder height highly mismatches with the staff for take the waist power when staff letter sorting article, and current belt feeder is not enough intelligent.
Disclosure of Invention
The invention aims to solve the problems that an existing belt conveyor is not intelligent enough and single in function, and provides an intelligent belt conveyor with a multipoint blanking function.
In order to achieve the purpose, the invention adopts the following technical scheme:
the utility model provides an intelligence belt feeder with multiple spot blanking function, includes: a screening mechanism for rejecting wastrel still includes: the multipoint blanking mechanism is arranged at one end of the screening mechanism, the rotating mechanism is coaxially arranged at the outer side of the multipoint blanking mechanism, and the support is used for supporting the screening mechanism and the multipoint blanking mechanism.
Preferably, the screening mechanism comprises a first ring conveyor and a second ring conveyor which form a ring, a first limiting plate is coaxially arranged on the outer circular surface of the ring formed by the first ring conveyor and the second ring conveyor, four first openings are uniformly arranged on the first limiting plate at intervals along the circumferential direction, two first openings which are oppositely arranged in the four first openings are correspondingly provided with the first conveyor and a third conveyor, the other two first openings are correspondingly provided with the second conveyor, a second limiting plate is coaxially arranged on the inner circular surface of the ring formed by the first ring conveyor and the second ring conveyor, a supporting plate is arranged at the center of the ring formed by the first ring conveyor and the second ring conveyor, and first electric push rods are arranged on two sides of the supporting plate facing the second conveyor, first electric putter parallel second conveyer, first electric putter suspension end are provided with first push pedal, and the backup pad is provided with second electric putter towards one side of third conveyer, the parallel third conveyer of second electric putter, and second electric putter suspension end is provided with the second push pedal, the second limiting plate set up the mouth of dodging that first push pedal of being convenient for and second push pedal pass through, first conveyer, third conveyer and second conveyer both sides be provided with the third limiting plate, first ring conveyer and second ring conveyer close on the area face below of first push pedal and be provided with the gravity inductor, the gravity inductor be connected with first electric putter electricity, the second push pedal on be provided with photoelectric sensor.
Preferably, the multipoint blanking mechanism comprises a rotating member, a multipoint blanking member coaxially arranged outside the rotating member, and a transfer member arranged at the discharge end of the multipoint blanking member;
the rotating component comprises a rubber rotary table horizontally arranged below the discharging end of the third conveyor, a vertical rotating shaft extending downwards is coaxially arranged at the bottom end of the rubber rotary table, a base is coaxially arranged below the rotating shaft, a placing groove is coaxially formed in the top end of the base, a first motor is arranged in the placing groove, an output shaft of the first motor is coaxially connected with the rotating shaft, a connecting plate is coaxially sleeved outside the rubber rotary table, a first baffle is coaxially sleeved outside the connecting plate, a second baffle is coaxially sleeved outside the first baffle, a pushing rubber plate is arranged at the edge of the top of the rubber rotary table along the radial direction of the rubber rotary table and is not connected with the connecting plate, a sleeve is coaxially sleeved outside the rotating shaft, the bottom end of the sleeve is connected with the base, and the top of the sleeve is connected with the connecting plate;
the multipoint blanking component comprises vertical cylinders vertically arranged along the circumferential direction of the rubber turntable and sliding chutes arranged on the circumferential wall of the sleeves, the top ends of the vertical cylinders are flush with the rubber turntable, the outer part of the bottom end of each vertical cylinder is sleeved with a bent cylinder, the bottom ends of the bent cylinders extend in a direction deviating from the sleeves, the sliding chutes vertically extend, the sliding chutes are uniformly arranged along the circumferential direction of the sleeves at intervals, the number of the sliding chutes is consistent with that of the bent cylinders, the top ends of the sliding chutes are provided with third electric push rods vertically extending downwards, the bottom ends of the third electric push rods are provided with connecting rods horizontally arranged, one ends of the connecting rods are connected with the bent cylinders, and the connecting rods can slide along the guiding direction of the sliding chutes;
transport component quantity and crooked section of thick bamboo quantity match, transport the component setting that corresponds with a crooked section of thick bamboo and two of arranging from top to bottom, transport the component including setting up in the fourth conveyer of crooked section of thick bamboo discharge end below, the fourth conveyer radially extends along the sleeve, fourth conveyer both sides are provided with the fifth limiting plate, be provided with the second backing plate of being connected with the fifth limiting plate between fourth conveyer and the crooked section of thick bamboo, be provided with the first backing plate of fifth limiting plate between fourth conveyer and the slewing mechanism, first backing plate and second backing plate top surface all flush with the fourth conveyer.
Preferably, the rotating mechanism comprises a first annular plate, a second annular plate and a power member which are coaxially arranged outside the multipoint blanking mechanism, the first annular plate and the second annular plate are arranged up and down, the first annular plate is positioned above the second annular plate, fourth limiting plates are arranged on two sides of the first annular plate and two sides of the second annular plate respectively, spacing openings corresponding to a fourth conveyor are arranged on the inner sides of the fourth limiting plates, and outer gear rings are coaxially sleeved outside the first annular plate and the second annular plate respectively;
the power component be provided with four and along the equal interval arrangement of first crown plate circumferencial direction, the power component includes the bottom plate, vertically set up in the vertical board at bottom plate top, the level sets up the horizontal plate on vertical board, the horizontal plate is provided with two and two horizontal plates and arranges from top to bottom, the coaxial gear that is provided with in two horizontal plate tops, coaxial wearing to be equipped with the bull stick between two gears, the bull stick bottom is provided with the second motor of being connected with the bottom plate, foretell outer ring gear supports first crown plate and second crown plate with gear engagement and horizontal plate respectively.
Preferably, height measuring sensors for sensing the height of the human body are arranged outside the circumferences of the first annular plate and the second annular plate.
Compared with the prior art, the invention provides an intelligent belt conveyor with a multipoint blanking function, which has the following beneficial effects:
1. according to the invention, articles enter the first annular conveyor and the second annular conveyor under the action of the first conveyor, the articles move towards the third conveyor under the action of the first annular conveyor and the second annular conveyor, the articles are weighed when passing through the gravity sensor, when the weight of the articles does not reach the standard, the first electric push rod pushes the first push plate to push the articles with the weight not reaching the standard into the second conveyor, the articles with the weight reaching the standard are sensed by the photoelectric sensor through the photoelectric sensor, at the moment, the second electric push rod pushes the articles with the weight reaching the standard into the third conveyor through the second push plate and then enters the multipoint blanking mechanism, and the screening efficiency can be improved by arranging the first annular conveyor and the second annular conveyor.
2. According to the invention, a first motor drives a rubber rotary table to rotate through a rotary shaft, when an article falls on the rubber rotary table, the rubber rotary table drives the article to rotate, the article is thrown out of the rubber rotary table under the action of inertia force, one part of the article enters a vertical cylinder, the other part of the article moves onto a connecting plate, when the rubber rotary table rotates, the article on the connecting plate is swept into the vertical cylinder by pushing a rubber plate, the article enters a bending cylinder under the action of gravity and enters an upper fourth conveyor under the guide of the bending cylinder, when a third electric push rod drives the bending cylinder to move downwards to the lower fourth conveyor through a connecting rod, the article enters the lower fourth conveyor, and two fourth conveyors can be adjusted and used according to the height of an article sorting person.
3. When the staff are short, the third electric push rod is started and drives the bending barrel to move downwards to the fourth conveyor below through the connecting rod, and therefore the staff with small height can sort the goods conveniently.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic structural view of a screening mechanism of the present invention;
FIG. 3 is a schematic structural view of a screening mechanism of the present invention;
FIG. 4 is a schematic structural view of a multipoint blanking mechanism and a rotating mechanism of the present invention;
FIG. 5 is a schematic structural view of the multipoint blanking mechanism of the present invention;
FIG. 6 is a schematic structural view of a multipoint blanking mechanism of the present invention;
FIG. 7 is a schematic structural view of a multipoint blanking mechanism of the present invention;
FIG. 8 is a schematic structural view of a multipoint blanking mechanism of the present invention;
FIG. 9 is a schematic structural view of a multipoint blanking mechanism of the present invention;
FIG. 10 is a schematic structural view of a multipoint blanking mechanism of the present invention;
FIG. 11 is a schematic structural view of a multipoint blanking mechanism of the present invention;
FIG. 12 is a schematic structural view of a multipoint blanking mechanism of the present invention;
FIG. 13 is a schematic structural view of a multipoint blanking mechanism of the present invention;
FIG. 14 is a schematic view of the rotating mechanism of the present invention;
FIG. 15 is a schematic view of the rotating mechanism of the present invention;
fig. 16 is a schematic structural diagram of the rotating mechanism of the present invention.
The reference numbers in the figures illustrate:
10. a screening mechanism; 110. a first conveyor; 120. a first endless conveyor; 130. a second endless conveyor; 140. a first limit plate; 141. a first opening; 150. a second limiting plate; 151. avoiding the mouth; 160. a support plate; 161. a first electric push rod; 162. a first push plate; 163. a second electric push rod; 164. a second push plate; 170. a second conveyor; 180. a third conveyor; 190. a third limiting plate; 20. a multipoint blanking mechanism; 210. a rotating member; 211. a base; 2111. a placing groove; 212. a sleeve; 213. a first motor; 214. a rotating shaft; 215. a rubber turntable; 216. pushing the rubber plate; 217. a connecting plate; 218. a first baffle plate; 219. a second baffle; 220. a multipoint blanking member; 221. a vertical cylinder; 222. a bending cylinder; 223. a chute; 224. a third electric push rod; 225. a connecting rod; 230. a transfer member; 231. a fourth conveyor; 232. a fifth limiting plate; 233. a first backing plate; 234. a second backing plate; 30. a rotating mechanism; 310. a first ring plate; 311. a fourth limiting plate; 312. a spacing port; 313. an outer ring gear; 320. a second ring plate; 330. a power member; 331. a base plate; 332. a vertical plate; 333. a horizontal plate; 334. a second motor; 335. a rotating rod; 336. a gear.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are only for convenience in describing the present invention and simplifying the description, and do not indicate or imply that the mechanism or element referred to must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present invention.
As shown in fig. 1-7, an intelligent belt feeder with multiple spot blanking function includes: a screening mechanism 10 for rejecting defective products still includes: the multipoint blanking mechanism 20 is arranged at one end of the screening mechanism 10, the rotating mechanism 30 is coaxially arranged outside the multipoint blanking mechanism 20, and the support is used for supporting the screening mechanism 10 and the multipoint blanking mechanism 20.
The screening mechanism 10 comprises a first ring conveyor 120 and a second ring conveyor 130 which form a ring, a first limiting plate 140 is coaxially arranged on the outer circular surface of the ring formed by the first ring conveyor 120 and the second ring conveyor 130, four first openings 141 are uniformly arranged at intervals along the circumferential direction on the first limiting plate 140, two first openings 141 which are oppositely arranged are correspondingly provided with the first conveyor 110 and the third conveyor 180, the other two first openings 141 are correspondingly provided with the second conveyor 170, the inner circular surface of the ring formed by the first ring conveyor 120 and the second ring conveyor 130 is coaxially provided with a second limiting plate 150, a supporting plate 160 is arranged at the center of the ring formed by the first ring conveyor 120 and the second ring conveyor 130, the supporting plate 160 is provided with a first electric push rod 161 facing to two sides of the second conveyor 170, the first electric push rod 161 is parallel to the second conveyor 170, the suspended end of the first electric push rod 161 is provided with a first push plate 162, one side of the supporting plate 160 facing to the third conveyor 180 is provided with a second push rod 163, the second electric push rod 163 is parallel to the second electric push rod 170, the second push rod 162 is provided with a second push plate 164, the second push rod 164, the third push rod 164 is provided with a sensor, the third push plate 164 which is electrically connected to the third push rod 164, the third push plate and the third push plate 190, the third push plate 164, the third push plate 190, the third push plate 180; articles enter the first annular conveyor 120 and the second annular conveyor 130 under the action of the first conveyor 110, the articles move towards the third conveyor 180 under the action of the first annular conveyor 120 and the second annular conveyor 130, the articles are weighed when passing through the gravity sensor, when the weight of the articles does not reach the standard, the first electric push rod 161 pushes the first push plate 162 to push the articles with the unqualified weight into the second conveyor 170, the qualified weight is sensed by the photoelectric sensor, at the moment, the second electric push rod 163 pushes the articles with the qualified weight into the third conveyor 180 through the second push plate 164 to enter the multi-point blanking mechanism 20, and the screening efficiency can be improved by arranging the first annular conveyor 120 and the second annular conveyor 130.
The multipoint blanking mechanism 20 includes a rotating member 210, a multipoint blanking member 220 coaxially disposed outside the rotating member 210, and a transfer member 230 disposed at a discharging end of the multipoint blanking member 220.
The rotating member 210 comprises a rubber rotating disc 215 horizontally arranged below the discharging end of the third conveyor 180, a rotating shaft 214 extending vertically downwards is coaxially arranged at the bottom end of the rubber rotating disc 215, a base 211 is coaxially arranged below the rotating shaft 214, a placing groove 2111 is coaxially formed in the top end of the base 211, a first motor 213 is arranged in the placing groove 2111, an output shaft of the first motor 213 is coaxially connected with the rotating shaft 214, a connecting plate 217 is coaxially sleeved outside the rubber rotating disc 215, a first baffle 218 is coaxially sleeved outside the connecting plate 217, a second baffle 219 is coaxially sleeved outside the first baffle 218, a pushing rubber plate 216 is radially arranged at the edge of the top of the rubber rotating disc 215 along the rubber rotating disc 215, the pushing rubber plate 216 is not connected with the connecting plate 217, a sleeve 212 is coaxially sleeved outside the rotating shaft 214, the bottom end of the sleeve 212 is connected with the base 211, and the top of the sleeve 212 is connected with the connecting plate 217.
Multipoint blanking component 220 include along the vertical section of thick bamboo 221 of the vertical arrangement of rubber carousel 215 circumferencial direction, set up the spout 223 in sleeve 212 circumference wall, vertical section of thick bamboo 221 top and rubber carousel 215 parallel and level, the outside cover in vertical section of thick bamboo 221 bottom is equipped with a crooked section of thick bamboo 222, crooked section of thick bamboo 222 bottom orientation deviates from the direction extension of sleeve 212, the vertical extension of spout 223, spout 223 is provided with a plurality of along the even interval of sleeve 212 circumferencial direction, spout 223 quantity is unanimous with crooked section of thick bamboo 222 quantity, the spout 223 top is provided with the third electric putter 224 of vertical downwardly extending, third electric putter 224 bottom is provided with the connecting rod 225 of horizontal arrangement, connecting rod 225 one end is connected with crooked section of thick bamboo 222, connecting rod 225 can slide along spout 223 direction.
The number of the transfer members 230 is matched with that of the bending drums 222, two transfer members 230 corresponding to one bending drum 222 are arranged and arranged up and down, each transfer member 230 comprises a fourth conveyor 231 arranged below the discharge end of the bending drum 222, the fourth conveyor 231 extends along the radial direction of the sleeve 212, fifth limiting plates 232 are arranged on two sides of the fourth conveyor 231, a second base plate 234 connected with the fifth limiting plates 232 is arranged between the fourth conveyor 231 and the bending drum 222, a first base plate 233 of the fifth limiting plates 232 is arranged between the fourth conveyor 231 and the rotating mechanism 30, and the top surfaces of the first base plate 233 and the second base plate 234 are flush with the top surface of the fourth conveyor 231; the gaps between the fourth conveyor 231 and the rotating mechanism 30 and between the fourth conveyor 231 and the bending cylinder 222 can be covered by providing the first shim plate 233 and the second shim plate 234, which facilitates the passage of the articles.
The first motor 213 drives the rubber turntable 215 to rotate through the rotating shaft 214, when an article falls on the rubber turntable 215, the rubber turntable 215 drives the article to rotate, the article is thrown out of the rubber turntable 215 under the action of inertia force, a part of the article enters the vertical cylinder 221, the other part of the article moves onto the connecting plate 217, when the rubber turntable 215 rotates, the article on the connecting plate 217 is swept into the vertical cylinder 221 through pushing the rubber plate 216, the article enters the bending cylinder 222 under the action of gravity and enters the fourth conveyor 231 above under the guiding of the bending cylinder 222, when the third electric push rod 224 drives the bending cylinder 222 to move downwards to the fourth conveyor 231 below through the connecting rod 225, the article enters the fourth conveyor 231 below at the moment, and the two fourth conveyors 231 can be adjusted and used according to the height of a person sorting the article.
The rotating mechanism 30 includes a first annular plate 310, a second annular plate 320 and a power member 330 which are coaxially arranged outside the multipoint blanking mechanism 20, the first annular plate 310 and the second annular plate 320 are arranged up and down, the first annular plate 310 is located above the second annular plate 320, both sides of the first annular plate 310 and the second annular plate 320 are provided with fourth limiting plates 311, the inner sides of the fourth limiting plates 311 are provided with spacing ports 312 corresponding to the fourth conveyor 231, and the outer gear rings 313 are coaxially sleeved on the outer portions of the first annular plate 310 and the second annular plate 320.
The power member 330 is provided with four power members and arranged at intervals along the circumferential direction of the first annular plate 310, each power member 330 comprises a bottom plate 331, a vertical plate 332 vertically arranged at the top of the bottom plate 331 and a horizontal plate 333 horizontally arranged on the vertical plate 332, the horizontal plate 333 is provided with two horizontal plates 333 which are arranged up and down, the tops of the two horizontal plates 333 are coaxially provided with gears 336, a rotating rod 335 is coaxially arranged between the two gears 336 in a penetrating manner, the bottom end of the rotating rod 335 is provided with a second motor 334 connected with the bottom plate 331, the outer gear ring 313 is respectively meshed with the gears 336, and the horizontal plates 333 support the first annular plate 310 and the second annular plate 320; when personnel are enough, the first ring plate 310 and the second ring plate 320 do not rotate, a plurality of workers directly sort the articles, the sorting efficiency is improved, when the personnel are not enough, the workers stand on the same side, the second motor 334 is started and drives the gear 336 to rotate through the rotating rod 335, the gear 336 drives the first ring plate 310 and the second ring plate 320 to rotate through the outer gear ring 313, the articles all pass through the workers, and the articles are prevented from being omitted.
More perfectly, height measuring sensors for sensing the height of the human body are arranged outside the circumferences of the first annular plate 310 and the second annular plate 320; when the height measuring sensor senses that the staff is short, the third electric push rod 224 is started and drives the bending barrel 222 to move downwards to the fourth conveyor 231 below through the connecting rod 225, and therefore the staff with small height can sort conveniently.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention should be equivalent or changed within the scope of the present invention.

Claims (2)

1. The utility model provides an intelligence belt feeder with multiple spot blanking function, includes: a screening mechanism (10) for rejecting defective products, characterized by further comprising: the screening device comprises a multipoint blanking mechanism (20) arranged at one end of the screening mechanism (10), a rotating mechanism (30) coaxially arranged at the outer side of the multipoint blanking mechanism (20), and a bracket for supporting the screening mechanism (10) and the multipoint blanking mechanism (20);
the screening mechanism (10) comprises a first ring conveyor (120) and a second ring conveyor (130) which form a ring, a first limiting plate (140) is coaxially arranged on the outer circular surface of the ring formed by the first ring conveyor (120) and the second ring conveyor (130), four first openings (141) are uniformly arranged at intervals along the circumferential direction in the first limiting plate (140), a first conveyor (110) and a third conveyor (180) are correspondingly arranged in two first openings (141) which are arranged oppositely, a second conveyor (170) is correspondingly arranged in the other two first openings (141), a second limiting plate (150) is coaxially arranged on the inner circular surface of the ring formed by the first ring conveyor (120) and the second ring conveyor (130), a supporting plate (160) is arranged in the center of the ring formed by the first ring conveyor (120) and the second ring conveyor (130), a first electric push rod (161) is arranged on two sides of the supporting plate (160) facing the second conveyor (170), a second electric push rod (163) is arranged on one side of the supporting plate (160) parallel to the second ring conveyor (161), and a second electric push rod (163) is arranged on one side of the supporting plate (161) facing the second ring conveyor (180), a second push plate (164) is arranged at the suspension end of the second electric push rod (163), an avoidance port (151) convenient for the first push plate (162) and the second push plate (164) to pass through is formed in the second limiting plate (150), third limiting plates (190) are arranged on two sides of the first conveyor (110), the third conveyor (180) and the second conveyor (170), a gravity sensor is arranged below the belt surface of the first annular conveyor (120) and the second annular conveyor (130) close to the first push plate (162), the gravity sensor is electrically connected with the first electric push rod (161), and a photoelectric sensor is arranged on the second push plate (164);
the multipoint blanking mechanism (20) comprises a rotating member (210), a multipoint blanking member (220) coaxially arranged outside the rotating member (210), and a transfer member (230) arranged at the discharging end of the multipoint blanking member (220);
the rotating member (210) comprises a rubber turntable (215) horizontally arranged below the discharging end of a third conveyor (180), a rotating shaft (214) which vertically extends downwards is coaxially arranged at the bottom end of the rubber turntable (215), a base (211) is coaxially arranged below the rotating shaft (214), a placing groove (2111) is coaxially formed in the top end of the base (211), a first motor (213) is arranged in the placing groove (2111), an output shaft of the first motor (213) is coaxially connected with the rotating shaft (214), a connecting plate (217) is coaxially sleeved outside the rubber turntable (215), a first baffle (218) is coaxially sleeved outside the connecting plate (217), a second baffle (219) is coaxially sleeved outside the first baffle (218), a pushing rubber plate (216) is radially arranged on the edge of the top of the rubber turntable (215) along the rubber turntable (215), the pushing rubber plate (216) is not connected with the connecting plate (217), a sleeve (212) is coaxially sleeved outside the rotating shaft (214), the bottom end of the sleeve (212) is connected with the base (211), and the top of the sleeve (212) is connected with the connecting plate (217);
the multipoint blanking component (220) comprises a vertical cylinder (221) vertically arranged along the circumferential direction of the rubber turntable (215) and a sliding groove (223) formed in the circumferential wall of the sleeve (212), the top end of the vertical cylinder (221) is flush with the rubber turntable (215), a plurality of bending cylinders (222) are sleeved outside the bottom end of the vertical cylinder (221), the bottom end of each bending cylinder (222) extends towards the direction departing from the sleeve (212), the sliding grooves (223) vertically extend, the sliding grooves (223) are uniformly arranged along the circumferential direction of the sleeve (212) at intervals, the number of the sliding grooves (223) is consistent with that of the bending cylinders (222), a third electric push rod (224) vertically extending downwards is arranged at the top end of each sliding groove (223), a connecting rod (225) horizontally arranged is arranged at the bottom end of each third electric push rod (224), one end of each connecting rod (225) is connected with the corresponding bending cylinder (222), and each connecting rod (225) can slide along the guiding direction of the corresponding sliding groove (223);
the number of the transfer members (230) is matched with that of the bending barrels (222), two transfer members (230) corresponding to one bending barrel (222) are arranged up and down, each transfer member (230) comprises a fourth conveyor (231) arranged below the discharging end of the corresponding bending barrel (222), the fourth conveyor (231) radially extends along the sleeve (212), fifth limiting plates (232) are arranged on two sides of the fourth conveyor (231), a second base plate (234) connected with the fifth limiting plate (232) is arranged between the fourth conveyor (231) and the corresponding bending barrel (222), a first base plate (233) of the fifth limiting plate (232) is arranged between the fourth conveyor (231) and the rotating mechanism (30), and the top surfaces of the first base plate (233) and the second base plate (234) are flush with the fourth conveyor (231);
the rotating mechanism (30) comprises a first annular plate (310), a second annular plate (320) and a power member (330) which are coaxially arranged outside the multipoint blanking mechanism (20), the first annular plate (310) and the second annular plate (320) are arranged up and down, the first annular plate (310) is positioned above the second annular plate (320), fourth limiting plates (311) are arranged on two sides of the first annular plate (310) and the second annular plate (320), spacing openings (312) corresponding to the fourth conveyor (231) are formed in the inner sides of the fourth limiting plates (311), and outer gear rings (313) are coaxially sleeved outside the first annular plate (310) and the second annular plate (320);
power component (330) be provided with four and follow first crown plate (310) circumferencial direction and all arrange at interval, power component (330) include bottom plate (331), vertically set up in vertical board (332) at bottom plate (331) top, the level sets up horizontal plate (333) on vertical board (332), horizontal plate (333) are provided with two and two horizontal plate (333) and arrange from top to bottom, two horizontal plate (333) top coaxial are provided with gear (336), bull stick (335) are worn to be equipped with between two gear (336) coaxially, bull stick (335) bottom is provided with second motor (334) of being connected with bottom plate (331), foretell outer ring gear (313) support first crown plate (310) and second crown plate (320) with gear (336) meshing and horizontal plate (333) respectively.
2. The intelligent belt conveyor with the multipoint blanking function as claimed in claim 1, wherein: the first annular plate (310) and the second annular plate (320) are provided with height measuring sensors outside the circumferences for sensing the height of a human body.
CN202011011728.6A 2020-09-24 2020-09-24 Intelligent belt conveyor with multipoint blanking function Active CN113682784B (en)

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Application Number Priority Date Filing Date Title
CN202011011728.6A CN113682784B (en) 2020-09-24 2020-09-24 Intelligent belt conveyor with multipoint blanking function

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Application Number Priority Date Filing Date Title
CN202011011728.6A CN113682784B (en) 2020-09-24 2020-09-24 Intelligent belt conveyor with multipoint blanking function

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CN113682784A CN113682784A (en) 2021-11-23
CN113682784B true CN113682784B (en) 2022-11-22

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