WO2022016776A1 - 一种顶升移载机 - Google Patents

一种顶升移载机 Download PDF

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Publication number
WO2022016776A1
WO2022016776A1 PCT/CN2020/134473 CN2020134473W WO2022016776A1 WO 2022016776 A1 WO2022016776 A1 WO 2022016776A1 CN 2020134473 W CN2020134473 W CN 2020134473W WO 2022016776 A1 WO2022016776 A1 WO 2022016776A1
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WO
WIPO (PCT)
Prior art keywords
support
transmission
belt
assembly
conveying
Prior art date
Application number
PCT/CN2020/134473
Other languages
English (en)
French (fr)
Inventor
洪健荣
Original Assignee
深圳市华南新海传动机械有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市华南新海传动机械有限公司 filed Critical 深圳市华南新海传动机械有限公司
Publication of WO2022016776A1 publication Critical patent/WO2022016776A1/zh

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Classifications

    • 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
    • B65G41/00Supporting frames or bases for conveyors as a whole, e.g. transportable conveyor frames
    • B65G41/001Supporting frames or bases for conveyors as a whole, e.g. transportable conveyor frames with the conveyor adjustably mounted on the supporting frame or base
    • B65G41/003Supporting frames or bases for conveyors as a whole, e.g. transportable conveyor frames with the conveyor adjustably mounted on the supporting frame or base mounted for linear movement only
    • 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
    • B65G21/00Supporting or protective framework or housings for endless load-carriers or traction elements of belt or chain conveyors
    • B65G21/20Means incorporated in, or attached to, framework or housings for guiding load-carriers, traction elements or loads supported on moving surfaces
    • 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
    • B65G23/00Driving gear for endless conveyors; Belt- or chain-tensioning arrangements
    • B65G23/02Belt- or chain-engaging elements
    • B65G23/04Drums, rollers, or wheels
    • B65G23/10Drums, rollers, or wheels arranged intermediate the ends of the conveyors
    • 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
    • B65G23/00Driving gear for endless conveyors; Belt- or chain-tensioning arrangements
    • B65G23/22Arrangements or mountings of driving motors
    • 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
    • B65G37/00Combinations of mechanical conveyors of the same kind, or of different kinds, of interest apart from their application in particular machines or use in particular manufacturing processes
    • 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
    • B65G41/00Supporting frames or bases for conveyors as a whole, e.g. transportable conveyor frames
    • B65G41/006Supporting frames or bases for conveyors as a whole, e.g. transportable conveyor frames with the conveyor not adjustably mounted on the supporting frame or base
    • 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
    • B65G47/22Devices influencing the relative position or the attitude of articles during transit by conveyors
    • B65G47/24Devices influencing the relative position or the attitude of articles during transit by conveyors orientating the articles
    • 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
    • B65G47/64Switching conveyors
    • B65G47/641Switching conveyors by a linear displacement of the switching conveyor
    • B65G47/643Switching conveyors by a linear displacement of the switching conveyor in a vertical plane
    • 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
    • B65G2207/00Indexing codes relating to constructional details, configuration and additional features of a handling device, e.g. Conveyors
    • B65G2207/14Combination of conveyors

Definitions

  • the invention relates to the technical field of conveying equipment, in particular to a jacking and transferring machine.
  • the transfer and return equipment used in the automated production line are all completed by 90-degree and 180-degree curved conveyors.
  • the working principle is: the workpieces that have not completed the work of the main conveying line are automatically sent to another through the curved conveyor. Conveying line, and then continue to process the product by another conveying line until the processing task is completed.
  • the curve conveyor realizes the transfer of products, it can only transfer in one direction, and the applicable range of transfer is small.
  • the purpose of the present invention is to provide a jack-up transfer machine to solve the problem that the curve conveyor on the market can only transfer in one direction, and the applicable transfer range is small.
  • the present invention adopts the following technical scheme to realize:
  • the present invention provides a jack-up transfer machine, which comprises a base with an accommodation space, and a first conveying part, a second conveying part and a jacking part accommodated in the accommodation space, wherein the first conveying part is connected to The direction of the main conveying line is the same, the second conveying part crosses the direction of the main conveying line, and the jacking part includes a first driving mechanism installed on the machine base and connected to the output end of the first driving mechanism
  • the eccentric wheel assembly and the sliding assembly slidably installed on the base
  • the second conveying part includes a support assembly vertically slidably installed on the base and a number of parts rotatably installed on the support assembly
  • the first belt body, one end of the sliding assembly is slidably connected with the support assembly, and the other end is connected with the eccentric wheel assembly, and the first driving mechanism drives the sliding assembly to level through the eccentric wheel assembly.
  • the direction reciprocates to raise or retract the support assembly and the first belt body.
  • the eccentric wheel assembly includes an eccentric wheel mounted on the output end of the first drive mechanism, a push rod rotatably mounted on the eccentric wheel at one end, and a jaw fixedly connected with the other end of the push rod, The claws are connected with the hooks of the sliding components.
  • the machine base includes a base frame, two first support protrusions protruding from both sides of the base frame, and two first support protrusions protruding from the base frame and located between the two first support protrusions
  • the length direction of the first support protrusion and the second support protrusion are both arranged along the direction of the main conveying line
  • the first conveying part includes several first conveying rails, two second belt bodies , a number of first drive rollers, four second drive rollers, a second drive mechanism fixed on the base, and a first drive shaft fixed on the base and perpendicular to the direction of the main conveying line, so
  • the output end of the second drive mechanism is connected with the first transmission shaft, two of the second belt bodies, a number of the first transmission rails, a number of the first transmission rollers and four of the second transmission rollers They are equally divided on both sides of the second support protrusion, and the first transmission roller, the second transmission roller and one end of the first conveying rail are all connected with the first support protru
  • the transmission rollers are located above the first transmission shaft and are respectively abutted on two opposite sides of the second belt body, and at least two of the first transmission rollers are arranged under each of the first transmission rails, And the adjacent two adjacent first transmission rollers below the adjacent two first transmission rails are pressed against the outer side of the annular second belt body and the second belt body is recessed to form a in the accommodating part of the avoidance groove of the second conveying part.
  • the second support protrusion includes two first support plates spaced apart and both fixed on the base frame, and the middle part of the first transmission shaft is rotatably mounted on the two first support plates, so The end of the first support plate away from the bottom frame is provided with a first gap that communicates with the escape groove, and the second conveying part further includes a third driving mechanism, and a third drive mechanism located between the two first support plates.
  • a second transmission shaft arranged intermittently and along the direction of the main conveying line, the output end of the third driving mechanism is connected with the second transmission shaft, and the support assembly includes a plurality of belt frames, two respectively connected to the two first transmission shafts.
  • the first support protrusion is concavely provided with a second gap that communicates with the avoidance groove, the two avoidance grooves, the two second gaps, the two Each of the first gaps and the interval between the two first support plates together form a through groove, one end of the belt frame is connected to one of the transverse plates, and the other end passes through the through groove
  • the first belt body is annular, one end of the first belt body is sleeved on the second transmission shaft, and the other end is sleeved on the belt frame.
  • the belt frame includes two second supporting plates arranged at intervals and a second conveying rail fixed between the two second supporting plates, and the second conveying part further includes a plurality of second supporting plates located on the second supporting plate.
  • the third drive roller below the middle of the conveying rail, the second support plate is "n" shaped, the two ends of the second support plate are respectively connected with the two horizontal plates, and one end of the first belt body is sleeved It is arranged on the second transmission shaft, and the other end is sleeved on the second transmission rail through a plurality of the third transmission rollers.
  • the machine base also includes two support rods that are both fixed on the first support protrusion and located on both sides of the sliding assembly, and the length direction of the support rods is consistent with the direction of the main conveying line,
  • the first support protrusion is provided with a plurality of first through holes, one end of the sliding component is connected with the eccentric wheel component, and the other end is slidably connected with the guide seat after passing through the first through holes, and all the The middle part of the sliding assembly is slidably connected with the support rod.
  • the sliding assembly includes a driving plate, a plurality of supporting sheets distributed at both ends of the driving plate, a plurality of rubber-coated bearings arranged at intervals, and a plurality of linear bearings slidably mounted on the two supporting rods, respectively.
  • One end of the plate is connected with the eccentric wheel assembly, and the other end is connected with a plurality of the linear bearings after passing through the first through hole.
  • the plates are connected vertically, and the guide base is provided with a guide groove.
  • the guide groove has a first position for raising the belt frame relative to the base and a second position for lowering the belt frame relative to the first position. position, the rubber-coated bearing is mounted in the guide groove and can travel from the first position to the second position.
  • the support assembly further includes two module bases respectively located on both sides of the belt frame and fixed on the machine base, a plurality of flanges fixed on the module bases, and a plurality of flanges fixed on the horizontal plate.
  • the flange is provided with a second through hole
  • the module seat is provided with a third through hole that communicates with the second through hole
  • the guide rod is slidably penetrated through the second through hole. perforation and the third perforation.
  • the machine base also includes a support beam, a first side plate fixed on both sides of the chassis, and a second side plate fixed on the other two sides of the chassis, the first side plate and the The support rods are arranged in parallel, and the two ends of the support beam are respectively connected with the two second side plates.
  • the lifting and transferring machine further includes a plurality of fourth transmission rollers located between the two second belt bodies, and a plurality of the fourth transmission rollers are installed on the second support protrusions and are connected with all the second belt bodies.
  • the first notch is dislocated.
  • the jacking and transferring machine of the present invention can place items in multiple directions of front, rear, left, right, and turn the direction of the items, realize right-angle turning under the condition of limited space, has the advantage of saving space, and has the characteristics of simple structure, stability and reliability .
  • FIG. 1 is a schematic structural diagram of a jack-up transfer machine provided by an embodiment of the present invention
  • Fig. 2 is the top view of the jack-up transfer machine provided by the embodiment of the present invention.
  • Fig. 3 is the sectional view along A-A in Fig. 2;
  • Fig. 4 is a sectional view along B-B in Fig. 2;
  • FIG. 5 is a schematic structural diagram of a part of the second transmission assembly and the second transmission shaft combined according to an embodiment of the present invention
  • Fig. 6 is the exploded view of Fig. 5;
  • FIG. 7 is a schematic structural diagram of a second rotating gear provided by an embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of the jacking and transferring machine provided by an embodiment of the present invention after removing the support beam;
  • Fig. 9 is the partial enlarged schematic diagram of C place in Fig. 8.
  • FIG. 10 is a schematic structural diagram of the jacking and transferring machine provided by the embodiment of the present invention after removing the first belt body, the support assembly, the first side plate and the second side plate;
  • FIG. 11 is a schematic structural diagram of the combination of the lifting part and the second conveying part provided by the embodiment of the present invention.
  • FIG. 12 is a schematic structural diagram of a jacking portion provided by an embodiment of the present invention.
  • FIG. 13 is a schematic structural diagram of a support assembly provided by an embodiment of the present invention.
  • FIG. 14 is an exploded view of FIG. 13 .
  • the present invention discloses a jacking and transferring machine.
  • the jacking and transferring machine includes a machine base 10 , a first conveying part 20 , a second conveying part 30 and a jacking part 40 , and the machine base 10
  • the running direction of the first conveying part 20 is consistent with the direction of the main conveying line
  • the running direction of the second conveying part 30 is opposite to the main conveying line vertical.
  • the jacking part 40 includes a first driving mechanism 41, an eccentric wheel assembly 42 and a sliding assembly 43.
  • the first driving mechanism 41 is installed on the machine base 10, and the eccentric wheel assembly 42 is connected to the output end of the first driving mechanism 41, and the sliding
  • the moving assembly 43 is slidably installed on the machine base 10
  • the second conveying part 30 includes a supporting assembly 31 and a plurality of first belt bodies 32 , the supporting assembly 31 is vertically slidably installed on the machine base 10 , and a part of the first belt body 32 is rotatably installed On the supporting assembly 31, one end of the sliding assembly 43 is slidably connected to the supporting assembly 31, and the other end is connected to the eccentric wheel assembly 42.
  • the middle of the sliding assembly 43 is slidably installed on the machine base 10, and the first driving mechanism 41 passes through the eccentric wheel.
  • the assembly 42 drives the sliding assembly 43 to reciprocate in the horizontal direction to lift or retract the support assembly 31 and the first belt body 32 , so as to lift the articles away from the first conveying portion 20 through the second conveying portion 30 to divert and transport the articles.
  • the eccentric wheel assembly 42 includes an eccentric wheel 421 mounted on the output end of the first drive mechanism 41, a push rod 422, one end of which is rotatably mounted on the eccentric wheel 421, and a claw 423 fixedly connected to the other end of the push rod 422.
  • the claw 423 is hooked and connected with the sliding component 43 , and the first driving mechanism 41 drives the sliding component 43 to reciprocate in the horizontal direction through the eccentric wheel component 42 .
  • the eccentric wheel assembly 42 in this embodiment can also be replaced by other structures, as long as the sliding assembly 43 can be driven to reciprocate in the horizontal direction.
  • the machine base 10 includes a bottom frame 12 , two first support protrusions 13 protruding from both sides of the bottom frame 12 , and two first support protrusions 13 protruding from the bottom frame 12 and located between the two first support protrusions 13 .
  • the length direction of the first support protrusion 13 and the second support protrusion 14 is arranged along the direction of the main conveying line, and the bottom frame 12 is a frame body with a hollow structure.
  • the first conveying part 20 includes a first transmission assembly 21 , a plurality of first transmission rails 22 , two second belt bodies 23 , a plurality of first transmission rollers 24 , four second transmission rollers 25 , and a first transmission roller fixed on the machine base 10 .
  • the second driving mechanism 26 is connected with the first transmission shaft 27 through the first transmission assembly 21, and the two The second belt bodies 23 , the first conveying rails 22 , the first transmission rollers 24 and the four second transmission rollers 25 are equally divided on both sides of the second support protrusion 14 , and the first transmission rollers 24 One end of the second transmission roller 25 and the first transmission rail 22 are connected with the first support protrusion 13, and the other end is connected with the second support protrusion 14.
  • the first transmission shaft 27 is rotatably mounted on the second support protrusion 14.
  • the two second transmission rollers 25 are located above the first transmission shaft 27 and are respectively abutted on the two outer sides of the second belt body 23 opposite to each other, below each of the first transmission rails 22 Both are provided with at least two first transmission rollers 24, and the adjacent two adjacent first transmission rollers 24 below the adjacent two first conveying rails 22 are pressed against the outer side of the annular second belt body 23 and make The second belt body 23 is recessed to form an escape groove 50 for accommodating part of the second conveying part 30 .
  • the first conveying rail 22 includes a first carrying plate 221 and two fifth transmission rollers 222 arranged at intervals.
  • the second support protrusions 14 are connected, the first bearing plate 221 is located between the two fifth transmission rollers 222, and the height from the top of the first bearing plate 221 to the ground is lower than the height from the top of the fifth transmission roller 222 to the ground,
  • the first bearing plate 221 and the two fifth transmission rollers 222 are both located inside the annular second belt body 23 , and the first bearing plate 221 and the second belt body 23 are arranged at intervals.
  • the first conveying part 20 further includes four sixth transmission rollers 28 .
  • the four sixth transmission rollers 28 are equally divided on both sides of the second support protrusion 14 , and one end of the sixth transmission roller 28 is connected to the first support protrusion. 13 is connected, the other end is connected with the second support protrusion 14, the four sixth transmission rollers 28 are respectively sleeved in the two second belt bodies 23 in a group of two, and the two sixth transmission rollers 28 are located at the two The outer sides of the second transmission rollers 25 are substantially flush with the second transmission rollers 25 so as to facilitate tensioning and supporting the second belt body 23 .
  • the first transmission shaft 27 includes a first rotating shaft 271 rotatably mounted on the second supporting protrusion 14, a plurality of first bar keys and a plurality of first rotating gears 272.
  • the first rotating shaft 271 is provided with a plurality of and Each of the first bar keys is matched with the first keyway, each first rotating gear 272 is fixed on the first rotating shaft 271 through a first bar key, and one end of the second belt body 23 is sleeved on the first transmission The other end of the rail 22 is sleeved on a plurality of first rotating gears 272 .
  • the first transmission shaft 27 further includes a plurality of first retaining springs
  • the first rotating shaft 271 is further provided with a plurality of first retaining grooves
  • each first key groove is located between the two first retaining grooves
  • Each first retaining spring is inserted into each first retaining slot, and both ends of each first rotating gear 272 are in contact with the two first retaining springs.
  • Two first rotating gears 272 are correspondingly fixed on the keys.
  • the second support protrusion 14 includes two first support plates 141 spaced apart and both fixed on the base frame 12 .
  • the middle of the first transmission shaft 27 is rotatably mounted on the two first support plates 141 .
  • One end away from the base frame 12 is provided with a first gap 1411 communicating with the avoidance groove 50
  • the second conveying part 30 further includes a third driving mechanism 33 fixed on the machine base 10 and connected to the output end of the third driving mechanism 33
  • the second transmission assembly 34 and the second transmission shaft 35 located between the two first support plates 141 and along the direction of the main conveying line, the output end of the third drive mechanism 33 is connected to the second transmission through the second transmission assembly 34.
  • the shaft 35 is connected to drive the first belt body 32 to rotate.
  • the first driving mechanism 41 , the second driving mechanism 26 and the third driving mechanism 33 are all preferably motors
  • the first transmission assembly 21 and the second transmission assembly 34 are all chain transmissions.
  • the second transmission shaft 35 includes a plurality of second bar keys 351, a plurality of second rotating gears 352 and a second rotating shaft 353 rotatably mounted on the base 10.
  • the second rotating shaft 353 is provided with a plurality of The second keyway 3531 matched with the two bar keys 351, a plurality of second rotating gears 352 are mounted on the second rotating shaft 353 through the second bar keys 351 and rotate together with the second rotating shaft 353, and each second rotating gear 352
  • the sum of the widths of the plurality of second rotating gears 352 fixed on the bar key 351 is smaller than the length of the second bar key 351.
  • One end of the first belt body 32 is sleeved on the support assembly 31, and the other end is sleeved on the support assembly 31.
  • each second rotating gear 352 matched on a second bar key 351 can move relative to the second bar key 351, so that the first The second rotating gear 352 and the first belt body 32 can be better matched and connected, thereby increasing the service life of the second rotating gear 352 and the first belt body 32 .
  • the second transmission shaft 35 further includes a plurality of second retaining springs 354, a plurality of second retaining grooves 3532 are further provided on the second rotating shaft 353, and each second key groove 3531 is located in two second retaining grooves Between 3532, each second retaining spring 354 is inserted into each second retaining slot 3532 respectively, the number of the second rotating gears 352 corresponding to each second bar key 351 is three and the outer two are respectively. The second rotating gears 352 are respectively abutted against the two second retaining springs 354 to prevent the second rotating gears 352 from disengaging from the second bar keys 351 .
  • the intervals between the second rotating gears 352 can be set according to actual needs, so that they can be connected with the first belt body 32 in a better fit.
  • the first rotating gear 272 includes a first rotating disk and a plurality of first protruding teeth fixed on the outer periphery of the first rotating disk and connected with the second belt body 23.
  • the first rotating disk is provided with a first bar key for engaging with
  • the second rotating gear 352 includes a second rotating disk 3521 and a plurality of second protruding teeth 3522 fixed on the outer circumference of the second rotating disk 3521 and connected to the first belt body 32.
  • the second rotating disk 3521 There is a fourth slot 3523 for the second bar key 351 to be inserted.
  • first rotating gear 272 and the second rotating gear 352 in this embodiment are the same, and the first belt body 32 and the second belt body 23 have the same structure.
  • the support assembly 31 includes a plurality of belt brackets 311 , two horizontal plates 312 slidably connected to the two first support protrusions 13 respectively, and a plurality of horizontal plates 312 fixed under the horizontal plates 312 and connected to the lifting portion
  • the guide seat 313 connected with 40, the horizontal plate 312 and the guide seat 313 are all located on the side of the first support protrusion 13 away from the second support protrusion 14, and the first support protrusion 13 is concavely provided with the escape groove 50.
  • the second gap 131, the two avoidance grooves 50, the two second gaps 131, the two first gaps 1411 and the interval between the two first support plates 141 together form a penetration groove 60, the belt frame 311 One end is connected to one horizontal plate 312, the other end is connected to the other horizontal plate 312 after passing through the penetration groove 60, the first belt body 32 is annular, and one end of the first belt body 32 is sleeved on the second transmission shaft 35, The other end is sleeved on the belt frame 311 .
  • the belt frame 311 includes two second supporting plates 3111 arranged at intervals and a second conveying rail 3112 fixed between the two second supporting plates 3111.
  • the second conveying part 30 further includes a plurality of The third drive roller 36 below the middle of the transfer rail 3112, the second support plate 3111 is "n" shaped, the two ends of the second support plate 3111 are respectively connected with the two horizontal plates 312, and one end of the first belt body 32 is sleeved The other end of the second transmission shaft 35 is sleeved on the second transmission rail 3112 through a plurality of third transmission rollers 36 .
  • Each second conveying rail 3112 includes a third support plate 3113 and two seventh transmission rollers 3114, the third support plate 3113 is fixed on the belt frame 311, and the two seventh transmission rollers 3114 are rotatably mounted on the belt frame 311 and Located on both sides of the third support plate 3113 in the axial direction respectively, the first belt body 32 is sleeved on the two seventh transmission rollers 3114 and is spaced from the third support plate 3113 .
  • the distance from the second belt body 23 of the first conveying part 20 to the ground is greater than the distance from the first belt body 32 of the second conveying part 30 to the ground, so as to prevent the articles from being trapped on the ground.
  • the second belt body 23 is scraped with the first belt body 32 during the conveying process.
  • the first belt body 32 is elastic, and the height of the belt frame 311 and the first belt body 32 being lifted is not high, it only needs to be slightly higher than the top of the second belt body 23 on the first conveying part 20 . That is, therefore, the belt frame 311 and the first belt body 32 can be lifted normally.
  • the machine base 10 also includes two support rods 15 that are both fixed on the first support protrusion 13 and located on both sides of the sliding assembly 43 respectively.
  • the length direction of the support rod 15 is consistent with the direction of the main conveying line.
  • the first support protrusion 13 A plurality of first through holes 132 are provided throughout, one end of the sliding assembly 43 is connected with the eccentric wheel assembly 42, the other end is slidably connected with the guide seat 313 after passing through the first through holes 132, and the middle of the sliding assembly 43 slides with the support rod 15 connect.
  • the sliding assembly 43 includes a driving plate 431 , a plurality of supporting pieces 432 distributed at both ends of the driving plate 431 , a plurality of rubber-coated bearings 433 arranged at intervals, and a plurality of linear bearings 434 slidably mounted on the two support rods 15 respectively.
  • One end is connected with the eccentric wheel assembly 42, and the other end is connected with a plurality of linear bearings 434 after passing through the first through hole 132.
  • the support rod 15 provides a support point for the sliding assembly 43 to slide.
  • the other end is vertically connected with the drive plate 431.
  • the guide seat 313 is provided with a guide groove 3131.
  • the guide groove 3131 has a first position 3132 for raising the belt frame 311 relative to the base 10 and a second position for lowering the belt frame 311 relative to the first position 3132.
  • the second position 3133, the height of the second position 3133 from the ground is higher than the height of the first position 3132 from the ground, the rubber-coated bearing 433 is installed in the guide groove 3131, and driven by the first driving mechanism 41, the rubber-coated bearing 433 will always
  • the reciprocating movement in the horizontal direction can run from the first position 3132 to the second position 3133, and the support assembly 31 and the first belt body 32 will realize the alternate reciprocating movement from lifting to retracting.
  • the driving plate 431 includes two first support plates 4311 arranged at intervals and two second support plates 4312 arranged at intervals, and two ends of the first support plate 4311 are respectively perpendicular to the two second support plates 4312 connection, the second support plate 4312 is arranged in parallel with the support rod 15, the second support plate 4312 is fixedly connected with the linear bearing 434, the first support plate 4311 passes through the first through hole 132, and the claw 423 is in contact with one of the first support plates 4311 In this way, the weight of the driving plate 431 can be reduced, so that the first driving mechanism 41 can drive the driving plate 431 to run through the eccentric wheel assembly 42 with less effort.
  • the support assembly 31 further includes two module bases 314 respectively located on both sides of the belt frame 311 and fixed on the machine base 10 , a plurality of flanges 315 fixed on the module bases 314 , and a plurality of guide rods 316 fixed at the bottom of the horizontal plate 312 , A second through hole 3151 is formed through the flange 315, a third through hole 3141 communicated with the second through hole 3151 is formed through the module seat 314, and the guide rod 316 slides through the second through hole 3151 and the third through hole 3141 to guide the The cooperation of the rod 316 with the first through hole 132 and the second through hole 3151 can keep the support assembly 31 running vertically all the time during the up and down movement.
  • the machine base 10 also includes a support beam 16, a first side plate 17 fixed on both sides of the base frame 12, and a second side plate 18 fixed on the other two sides of the base frame 12.
  • the first side plate 17 is arranged in parallel with the support rod 15, Both ends of the support beam 16 are respectively connected with the two second side plates 18 to enhance the overall strength of the machine base 10 .
  • the jacking and transferring machine also includes a plurality of fourth transmission rollers 70 located between the two second belt bodies 23, and the plurality of fourth transmission rollers 70 are installed on the second support protrusions 14 and are arranged in a dislocation with the first gap 1411, The arrangement of the fourth transmission roller 70 can make the first conveying part 20 convey the articles more smoothly.
  • the second driving mechanism 26 is activated, and the articles are transported along the main conveying line.
  • the first driving mechanism 41 and the third driving mechanism 33 are activated, the third driving mechanism 33 drives the first belt body 32 to rotate, and the first driving mechanism
  • the mechanism 41 drives the drive plate 431 to run to the right through the eccentric wheel assembly 42, and the support piece 432 and the rubber-coated bearing 433 will run to the right together with the drive plate 431.
  • the rubber bearing 433 always runs in a straight line to the right in the guide groove 3131.
  • the transport direction of the articles is changed, and the cooperation of the guide rod 316 and the flange 315 will make the belt frame 311 and the first belt body 32 always maintain a vertical straight line when being lifted run;
  • the first drive mechanism 41 drives the drive plate 431 and the support piece 432 to the left through the eccentric wheel assembly 42, and the rubber bearing 433 will also run straight to the left together.
  • the lifting transfer machine of the present invention can place items in multiple directions of front, rear, left, right, and turn the direction of the items, and realize right-angle turns under the condition of limited space, which has the advantage of saving space and has the advantages of large bearing capacity. , simple structure, stable and reliable characteristics.

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Abstract

一种顶升移载机,包括具有收容空间(11)的机座(10)、以及收纳于收容空间(11)内的第一输送部(20)、第二输送部(30)与顶升部(40),第一输送部(20)与主输送线路方向一致,第二输送部(30)与主输送线路方向交叉,顶升部(40)包括安装于机座(10)上的第一驱动机构(41)、与第一驱动机构(41)的输出端相连接的偏心轮组件(42)以及滑动安装于机座(10)上的滑移组件(43),第二输送部(30)包括竖向滑动安装于机座(10)上的支撑组件(31)以及若干部分转动安装于支撑组件(31)上的第一带体(32),滑移组件(43)的一端与支撑组件(31)滑动连接、另一端与偏心轮组件(42)连接,第一驱动机构(41)通过偏心轮组件(42)带动滑移组件(43)作水平方向往复移动以抬升或缩回支撑组件(31)和第一带体(32)。该顶升移载机可在前后左右多个方向上放置物品以进行物品方向的转向传输。

Description

一种顶升移载机 技术领域
本发明涉及输送设备技术领域,尤其涉及一种顶升移载机。
背景技术
目前,自动化生产流水线所使用的移载、回程设备均是采用90度和180度转弯输送机来完成,其工作原理是:将主输送线路未完成工作的工件经转弯输送机自动送入另一输送线路,再由另一输送线路对产品继续加工,直至完成加工任务。
转弯输送机虽然实现了产品的移载,但只能向一个方向移载,适用移载范围较小。
技术解决方案
本发明的目的在于提供一种顶升移载机,以解决现有市场上的转弯输送机只能向一个方向移载,适用移载范围较小的问题。
本发明采用如下技术方案实现:
本发明提供了一种顶升移载机,包括具有收容空间的机座、以及收纳于所述收容空间内的第一输送部、第二输送部与顶升部,所述第一输送部与主输送线路方向一致,所述第二输送部与主输送线路方向交叉,所述顶升部包括安装于所述机座上的第一驱动机构、与所述第一驱动机构的输出端相连接的偏心轮组件以及滑动安装于所述机座上的滑移组件,所述第二输送部包括竖向滑动安装于所述机座上的支撑组件以及若干部分转动安装于所述支撑组件上的第一带体,所述滑移组件的一端与所述支撑组件滑动连接、另一端与所述偏心轮组件连接,所述第一驱动机构通过所述偏心轮组件带动所述滑移组件作水平方向往复移动以抬升或缩回所述支撑组件和所述第一带体。
进一步地,所述偏心轮组件包括安装于所述第一驱动机构输出端上的偏心轮、一端转动安装于所述偏心轮上的推杆以及与所述推杆另一端固定连接的卡爪,所述卡爪与所述滑移组件卡勾连接。
进一步地,所述机座包括底架、两个分别凸设于所述底架两侧的第一支撑凸起以及凸设于所述底架上并位于两所述第一支撑凸起之间的第二支撑凸起,所述第一支撑凸起和第二支撑凸起的长度方向都沿主输送线路方向设置,所述第一输送部包括若干第一传送轨、两个第二带体、若干第一传动辊、四个第二传动辊、固定于所述机座上的第二驱动机构、以及固定于所述机座上并与主输送线路方向相垂直的第一传动轴,所述第二驱动机构的输出端与所述第一传动轴连接,两个所述第二带体、若干所述第一传送轨、若干所述第一传动辊以及四个所述第二传动辊都等均分的位于所述第二支撑凸起的两侧,且所述第一传动辊、所述第二传动辊以及所述第一传送轨的一端都与所述第一支撑凸起连接、另一端都与所述第二支撑凸起连接,所述第一传动轴转动安装于所述第二支撑凸起上且其两端都凸露于所述第二支撑凸起外以分别与两所述第二带体的一端连接,所述第二带体的另一端通过所述第一传动辊和第二传动辊套设于各所述第一传送轨上,两个所述第二传动辊位于所述第一传动轴的上方并分别抵接于所述第二带体相背的两外侧,每个所述第一传送轨下方都设有至少两个所述第一传动辊,且相邻两所述第一传送轨下方所对应的相邻两所述第一传动辊都抵压于环形的所述第二带体的外侧并使所述第二带体凹陷以形成一个用于容纳部分所述第二输送部的避让槽。
进一步地,所述第二支撑凸起包括两个间隔且都固定于所述底架上的第一支撑板,所述第一传动轴的中部转动安装于两所述第一支撑板上,所述第一支撑板之远离所述底架的一端设有与所述避让槽相连通的第一缺口,所述第二输送部还包括第三驱动机构、以及位于两所述第一支撑板之间且沿主输送线路方向设置的第二传动轴,所述第三驱动机构的输出端与所述第二传动轴连接,所述支撑组件包括若干皮带架、两个分别与两所述第一支撑凸起滑动连接的横板以及若干固设于所述横板下方且与所述顶升部连接的导向座,所述横板和所述导向座均位于所述第一支撑凸起之远离所述第二支撑凸起的一侧,所述第一支撑凸起上凹设有与所述避让槽相连通的第二缺口,两个所述避让槽、两个所述第二缺口、两个所述第一缺口以及两个所述第一支撑板之间的间隔共同围合成一个穿设槽,所述皮带架的一端与一个所述横板连接、另一端穿过所述穿设槽后与另一个所述横板连接,所述第一带体为环形,所述第一带体的一端套设于所述第二传动轴上、另一端套设于所述皮带架上。
进一步地,所述皮带架包括两个间隔设置的第二支撑板以及固设于两所述第二支撑板之间的第二传送轨,所述第二输送部还包括若干位于所述第二传送轨中部的下方的第三传动辊,所述第二支撑板为“n”形,所述第二支撑板的两端分别与两所述横板连接,所述第一带体的一端套设于所述第二传动轴上、另一端通过若干所述第三传动辊套设于所述第二传送轨上。
进一步地,所述机座还包括两个都固定于所述第一支撑凸起上并分别位于所述滑移组件两侧的支撑杆,所述支撑杆的长度方向与主输送线路方向一致,所述第一支撑凸起贯穿设有若干第一穿孔,所述滑移组件的一端与所述偏心轮组件连接、另一端穿过所述第一穿孔后与所述导向座滑动连接,且所述滑移组件的中部与所述支撑杆滑动连接。
进一步地,所述滑移组件包括驱动板、若干分布于所述驱动板两端的支撑片、若干间隔设置的包胶轴承以及若干分别滑动安装于两所述支撑杆上的直线轴承,所述驱动板的一端与所述偏心轮组件相连接、另一端穿过所述第一穿孔后与若干所述直线轴承连接,所述支撑片的一端安装有所述包胶轴承、另一端与所述驱动板垂直连接,所述导向座内设有导向槽,所述导向槽具有使所述皮带架相对所述机座上升的第一位置以及使所述皮带架相对所述第一位置下降的第二位置,所述包胶轴承安装于所述导向槽内并可从所述第一位置运行至所述第二位置。
进一步地,所述支撑组件还包括两个分别位于所述皮带架两侧且固定于所述机座上的模块座、若干固定于所述模块座的法兰以及若干固设于所述横板底部的导向杆,所述法兰上贯穿设有第二穿孔,所述模块座上贯穿设有与所述第二穿孔相连通的第三穿孔,所述导向杆滑动穿设于所述第二穿孔和所述第三穿孔。
进一步地,所述机座还包括支撑横梁、固定于所述底架两侧的第一侧板以及固定于所述底架另两侧的第二侧板,所述第一侧板与所述支撑杆平行设置,所述支撑横梁的两端分别与两所述第二侧板连接。
进一步地,所述顶升移载机还包括若干位于两所述第二带体之间的第四传动辊,若干所述第四传动辊都安装于所述第二支撑凸起上并与所述第一缺口错位设置。
有益效果
本发明的顶升移载机可在前后左右多个方向上放置物品以进行物品方向的转向传输,在空间有限的条件下实现直角转弯,具有节省空间的优势,具有结构简单,稳定可靠的特点。
附图说明
图1为本发明实施例所提供的顶升移载机的结构示意图;
图2为本发明实施例所提供的顶升移载机的俯视图;
图3为图2中沿A-A的剖视图;
图4为图2中沿B-B的剖视图;
图5为本发明实施例所提供的部分第二传动组件与第二传动轴组合后的结构示意图;
图6为图5的爆炸图;
图7为本发明实施例所提供的第二旋转齿轮的结构示意图;
图8为本发明实施例所提供的顶升移载机除去支撑横梁后的结构示意图;
图9为图8中C处的局部放大示意图;
图10为本发明实施例所提供的顶升移载机除去第一带体、支撑组件、第一侧板和第二侧板后的结构示意图;
图11为本发明实施例所提供的顶升部和第二输送部组合后的结构示意图;
图12为本发明实施例所提供的顶升部的结构示意图;
图13为本发明实施例所提供的支撑组件的结构示意图;
图14为图13的爆炸图。
图中:
10、机座;11、收容空间;12、底架;13、第一支撑凸起;131、第二缺口;132、第一穿孔;14、第二支撑凸起;141、第一支撑板;1411、第一缺口;15、支撑杆;16、支撑横梁;17、第一侧板;18、第二侧板;20、第一输送部;21、第一传动组件;22、第一传送轨;221、第一承载板;222、第五传动辊;23、第二带体;24、第一传动辊;25、第二传动辊;26、第二驱动机构;27、第一传动轴;271、第一旋转轴;272、第一旋转齿轮;28、第六传动辊;30、第二输送部;31、支撑组件;311、皮带架;3111、第二支撑板;3112、第二传送轨;3113、第三支板;3114、第七传动辊;312、横板;313、导向座;3131、导向槽;3132、第一位置;3133、第二位置;314、模块座;3141、第三穿孔;315、法兰;3151、第二穿孔;316、导向杆;32、第一带体;33、第三驱动机构;34、第二传动组件;35、第二传动轴;351、第二条形键;352、第二旋转齿轮;3521、第二旋转盘;3522、第二凸齿;3523、第四卡槽;353、第二旋转轴;3531、第二键槽;3532、第二卡槽;354、第二卡簧;36、第三传动辊;40、顶升部;41、第一驱动机构;42、偏心轮组件;421、偏心轮;422、推杆;423、卡爪;43、滑移组件;431、驱动板;4311、第一支板;4312、第二支板;432、支撑片;433、包胶轴承;434、直线轴承;50、避让槽;60、穿设槽;70、第四传动辊。
本发明的实施方式
下面,结合附图以及具体实施方式,对本发明做进一步描述,需要说明的是,在不相冲突的前提上,以下描述的各实施例之间或各技术特征之间可以任意组合形成新的实施例。
请参阅图1至图12,本发明公开了一种顶升移载机,顶升移载机包括机座10、第一输送部20、第二输送部30与顶升部40,机座10具有收容空间11,第一输送部20、第二输送部30和顶升部40都收纳于收容空间11内,第一输送部20的运行方向与主输送线路方向一致,第二输送部30的运行方向与主输送线路方向交叉,即第一输送部20与第二输送部30交叉设置,远看也可以认为是重叠设置,优选地,第二输送部30的运行方向与主输送线路方向相垂直。
顶升部40包括第一驱动机构41、偏心轮组件42以及滑移组件43,第一驱动机构41安装于机座10上,偏心轮组件42与第一驱动机构41的输出端相连接,滑移组件43滑动安装于机座10上,第二输送部30包括支撑组件31以及若干第一带体32,支撑组件31竖向滑动安装于机座10上,第一带体32其中一部分转动安装于支撑组件31上,滑移组件43的一端与支撑组件31滑动连接、另一端与偏心轮组件42连接,滑移组件43的中部滑动安装于机座10上,第一驱动机构41通过偏心轮组件42带动滑移组件43作水平方向往复移动以抬升或缩回支撑组件31和第一带体32,从而通过第二输送部30将物品抬升离开第一输送部20以对物品进行转向运输。
具体地,偏心轮组件42包括安装于第一驱动机构41输出端上的偏心轮421、一端转动安装于偏心轮421上的推杆422以及与推杆422另一端固定连接的卡爪423,卡爪423与滑移组件43卡勾连接,第一驱动机构41通过偏心轮组件42驱动滑移组件43在水平方向往复移动。当然本实施例中的偏心轮组件42也可以用其它结构代替,只要能驱动滑移组件43水平方向往复移动即可。
本实施例中,机座10包括底架12、两个分别凸设于底架12两侧的第一支撑凸起13以及凸设于底架12上并位于两个第一支撑凸起13之间的第二支撑凸起14,第一支撑凸起13和第二支撑凸起14的长度方向都沿主输送线路方向设置,底架12为中空结构的架体。
第一输送部20包括第一传动组件21、若干第一传送轨22、两个第二带体23、若干第一传动辊24、四个第二传动辊25、固定于机座10上的第二驱动机构26、以及固定于机座10上并与主输送线路方向相垂直的第一传动轴27,第二驱动机构26的输出端通过第一传动组件21与第一传动轴27连接,两个第二带体23、若干第一传送轨22、若干第一传动辊24以及四个第二传动辊25都等均分的位于第二支撑凸起14的两侧,且第一传动辊24、第二传动辊25以及第一传送轨22的一端都与第一支撑凸起13连接、另一端都与第二支撑凸起14连接,第一传动轴27转动安装于第二支撑凸起14上且其两端都凸露于第二支撑凸起14外以分别与两个第二带体23的一端连接,第二带体23的另一端通过第一传动辊24和第二传动辊25套设于各第一传送轨22上,两个第二传动辊25位于第一传动轴27的上方并分别抵接于第二带体23相背的两外侧,每个第一传送轨22下方都设有至少两个第一传动辊24,且相邻两个第一传送轨22下方所对应的相邻两个第一传动辊24都抵压于环形的第二带体23的外侧并使第二带体23凹陷以形成一个用于容纳部分第二输送部30的避让槽50。
第一传送轨22包括第一承载板221以及两个间隔设置的第五传动辊222,第一承载板221和第五传动辊222的一端都与第一支撑凸起13连接、另一端都与第二支撑凸起14连接,第一承载板221位于两个第五传动辊222之间,且第一承载板221的顶部至地面的高度低于第五传动辊222的顶部至地面的高度,第一承载板221和两个第五传动辊222都位于环形的第二带体23的内侧,第一承载板221与第二带体23为间隔设置。
第一输送部20还包括四个第六传动辊28,四个第六传动辊28等均分的位于第二支撑凸起14的两侧,且第六传动辊28的一端与第一支撑凸起13连接、另一端与第二支撑凸起14连接,四个第六传动辊28以两个为一组分别套设于两个第二带体23内,两个第六传动辊28位于两个第二传动辊25的外侧并与第二传动辊25基本平齐,以便于张紧和支撑第二带体23。
第一传动轴27包括转动安装于第二支撑凸起14上的第一旋转轴271、若干第一条形键以及若干第一旋转齿轮272,第一旋转轴271沿其长度方向设有若干与各第一条形键相配合的第一键槽,每个第一旋转齿轮272都通过一个第一条形键固定于第一旋转轴271上,第二带体23的一端套设于第一传送轨22上、另一端套设于若干第一旋转齿轮272上。
作为优选地实施方式,第一传动轴27还包括若干第一卡簧,第一旋转轴271上还设有若干第一卡槽,每一个第一键槽都位于两个第一卡槽之间,各第一卡簧分别卡插于各第一卡槽内,每个第一旋转齿轮272的两端分别抵接于两个第一卡簧,当然,也可以根据需要在每个第一条形键上对应固定两个第一旋转齿轮272。
第二支撑凸起14包括两个间隔且都固定于底架12上的第一支撑板141,第一传动轴27的中部转动安装于两个第一支撑板141上,第一支撑板141之远离底架12的一端设有与避让槽50相连通的第一缺口1411,第二输送部30还包括固定于机座10上的第三驱动机构33、与第三驱动机构33的输出端连接的第二传动组件34、以及位于两个第一支撑板141之间且沿主输送线路方向设置的第二传动轴35,第三驱动机构33的输出端通过第二传动组件34与第二传动轴35连接,进而带动第一带体32转动。优选地,第一驱动机构41、第二驱动机构26和第三驱动机构33都优选为电机,第一传动组件21和第二传动组件34都为链传动。
第二传动轴35包括若干第二条形键351、若干第二旋转齿轮352以及转动安装于机座10上的第二旋转轴353,第二旋转轴353沿其长度方向设有若干与各第二条形键351相配合的第二键槽3531,若干第二旋转齿轮352通过各第二条形键351安装在第二旋转轴353上并随第二旋转轴353一起转动,且每个第二条形键351上对应固定的若干第二旋转齿轮352的宽度之和小于此第二条形键351的长度,第一带体32的一端套设于支撑组件31上、另一端套设于与一个第二条形键351相配合的若干第二旋转齿轮352上,一个第二条形键351上相配合的各第二旋转齿轮352都可以相对该第二条形键351移动,从而使得第二旋转齿轮352与第一带体32能更好的配合连接,增加第二旋转齿轮352与第一带体32的使用寿命。
作为优选地实施方式,第二传动轴35还包括若干第二卡簧354,第二旋转轴353上还设有若干第二卡槽3532,每一个第二键槽3531都位于两个第二卡槽3532之间,各第二卡簧354分别卡插于各第二卡槽3532内,每个第二条形键351上所对应设置的第二旋转齿轮352的数量为三个且其外侧的两个第二旋转齿轮352分别抵接于两个第二卡簧354,以防止第二旋转齿轮352与第二条形键351发生脱离,每个第二条形键351上所对应设置的三个第二旋转齿轮352彼此之间的间隔可以根据实际需要进行设定,以使其能与第一带体32能更好的配合连接。第一旋转齿轮272包括第一旋转盘以及若干固设于第一旋转盘外周且与第二带体23相连接的第一凸齿,第一旋转盘上设有供第一条形键相卡插的第三卡槽;第二旋转齿轮352包括第二旋转盘3521以及若干固设于第二旋转盘3521外周且与第一带体32相连接的第二凸齿3522,第二旋转盘3521上设有供第二条形键351相卡插的第四卡槽3523,本实施例的第一旋转齿轮272和第二旋转齿轮352结构一样,第一带体32和第二带体23都为模组带,即第一带体32和第二带体23上都设有齿槽,以便于与第一凸齿和第二凸齿3522相卡插配合。
请进一步参阅图13至图14,支撑组件31包括若干皮带架311、两个分别与两个第一支撑凸起13滑动连接的横板312以及若干固设于横板312下方且与顶升部40连接的导向座313,横板312和导向座313均位于第一支撑凸起13之远离第二支撑凸起14的一侧,第一支撑凸起13上凹设有与避让槽50相连通的第二缺口131,两个避让槽50、两个第二缺口131、两个第一缺口1411以及两个第一支撑板141之间的间隔共同围合成一个穿设槽60,皮带架311的一端与一个横板312连接、另一端穿过穿设槽60后与另一个横板312连接,第一带体32为环形,第一带体32的一端套设于第二传动轴35上、另一端套设于皮带架311上。
本实施例中,皮带架311包括两个间隔设置的第二支撑板3111以及固设于两个第二支撑板3111之间的第二传送轨3112,第二输送部30还包括若干位于第二传送轨3112中部的下方的第三传动辊36,第二支撑板3111为“n”形,第二支撑板3111的两端分别与两个横板312连接,第一带体32的一端套设于第二传动轴35上、另一端通过若干第三传动辊36套设于第二传送轨3112上。
各第二传送轨3112都包括第三支板3113以及两个第七传动辊3114,第三支板3113固定于皮带架311上,两个第七传动辊3114都转动安装于皮带架311上并分别位于第三支板3113轴向的两侧,第一带体32套设于两个第七传动辊3114上并与第三支板3113间隔设置。
需要说明的是,当物品沿主输送线路输送时,第一输送部20的第二带体23至地面的距离大于第二输送部30的第一带体32至地面的距离,以避免物品在第二带体23上运送过程中与第一带体32发生刮擦。同时,第一带体32由于是具有弹性的,而且皮带架311和第一带体32被抬起的高度并不高,只需要略微高于第一输送部20上第二带体23的顶部即可,因此,皮带架311和第一带体32可被正常抬升。
机座10还包括两个都固定于第一支撑凸起13上并分别位于滑移组件43两侧的支撑杆15,支撑杆15的长度方向与主输送线路方向一致,第一支撑凸起13贯穿设有若干第一穿孔132,滑移组件43的一端与偏心轮组件42连接、另一端穿过第一穿孔132后与导向座313滑动连接,且滑移组件43的中部与支撑杆15滑动连接。
滑移组件43包括驱动板431、若干分布于驱动板431两端的支撑片432、若干间隔设置的包胶轴承433以及若干分别滑动安装于两个支撑杆15上的直线轴承434,驱动板431的一端与偏心轮组件42相连接、另一端穿过第一穿孔132后与若干直线轴承434连接,支撑杆15给滑移组件43滑动提供支撑点,支撑片432的一端安装有包胶轴承433、另一端与驱动板431垂直连接,导向座313内设有导向槽3131,导向槽3131具有使皮带架311相对机座10上升的第一位置3132以及使皮带架311相对第一位置3132下降的第二位置3133,第二位置3133距地面的高度高于第一位置3132距地面的高度,包胶轴承433安装于导向槽3131内,在第一驱动机构41的带动下,包胶轴承433将始终沿水平方向作往复移动,可从第一位置3132运行至第二位置3133,支撑组件31和第一带体32将实现从抬升到缩回的交替往复运动。
作为优选地实施方式,驱动板431包括两个间隔设置的第一支板4311以及两个间隔设置的第二支板4312,第一支板4311的两端分别与两个第二支板4312垂直连接,第二支板4312与支撑杆15平行设置,第二支板4312与直线轴承434固定连接,第一支板4311穿过第一穿孔132,卡爪423与其中一个第一支板4311相连接,这样可以减少驱动板431的重量,以使第一驱动机构41能更省力的通过偏心轮组件42驱使驱动板431运行。
支撑组件31还包括两个分别位于皮带架311两侧且固定于机座10上的模块座314、若干固定于模块座314的法兰315以及若干固设于横板312底部的导向杆316,法兰315上贯穿设有第二穿孔3151,模块座314上贯穿设有与第二穿孔3151相连通的第三穿孔3141,导向杆316滑动穿设于第二穿孔3151和第三穿孔3141,导向杆316与第一穿孔132、第二穿孔3151的配合可以使支撑组件31在上下运行的过程中始终保持竖直运行。
机座10还包括支撑横梁16、固定于底架12两侧的第一侧板17以及固定于底架12另两侧的第二侧板18,第一侧板17与支撑杆15平行设置,支撑横梁16的两端分别与两个第二侧板18连接,以增强机座10的整体强度。
顶升移载机还包括若干位于两个第二带体23之间的第四传动辊70,若干第四传动辊70都安装于第二支撑凸起14上并与第一缺口1411错位设置,第四传动辊70的设置可以使得第一输送部20输送物品时更顺畅。
本实施例中顶升移载机的工作原理为:
第二驱动机构26启动,物品沿主输送线路运输,当物品需要改变方向时,第一驱动机构41和第三驱动机构33启动,第三驱动机构33带动第一带体32旋转,第一驱动机构41通过偏心轮组件42带动驱动板431向右运行,支撑片432和包胶轴承433将随驱动板431一起向右运行,由于驱动板431通过直线轴承434滑动于支撑杆15上,所以包胶轴承433在导向槽3131内始终向右直线运行,包胶轴承433从第二位置3133运行至第一位置3132的过程中,皮带架311和第一带体32将被抬起,物品从而移至第二输送部30的第一带体32上,物品运输方向即改变,导向杆316与法兰315的配合将使得皮带架311和第一带体32在被抬起时始终保持竖向直线运行;
当物品需要重新回到主输送线路时,第一驱动机构41通过偏心轮组件42驱使驱动板431和支撑片432向左运行,包胶轴承433也将一起往左直线运行,包胶轴承433在支撑组件31的导向槽3131内从第一位置3132运行至第二位置3133,皮带架311和第一带体32将下降,直至回到原位,物品重新落至第一输送部20的第二带体23上。
综上所述,本发明的顶升移载机可在前后左右多个方向上放置物品以进行物品方向的转向传输,在空间有限的条件下实现直角转弯,具有节省空间的优势,具有承载大,结构简单,稳定可靠的特点。
上述实施方式仅为本发明的优选实施方式,不能以此来限定本发明保护的范围,本领域的技术人员在本发明的基础上所做的任何非实质性的变化及替换均属于本发明所要求保护的范围。

Claims (10)

  1. 一种顶升移载机,包括具有收容空间的机座、以及收纳于所述收容空间内的第一输送部、第二输送部与顶升部,所述第一输送部与主输送线路方向一致,所述第二输送部与主输送线路方向交叉,其特征在于,所述顶升部包括安装于所述机座上的第一驱动机构、与所述第一驱动机构的输出端相连接的偏心轮组件以及滑动安装于所述机座上的滑移组件,所述第二输送部包括竖向滑动安装于所述机座上的支撑组件以及若干部分转动安装于所述支撑组件上的第一带体,所述滑移组件的一端与所述支撑组件滑动连接、另一端与所述偏心轮组件连接,所述第一驱动机构通过所述偏心轮组件带动所述滑移组件作水平方向往复移动以抬升或缩回所述支撑组件和所述第一带体。
  2. 根据权利要求1所述的顶升移载机,其特征在于,所述偏心轮组件包括安装于所述第一驱动机构输出端上的偏心轮、一端转动安装于所述偏心轮上的推杆以及与所述推杆另一端固定连接的卡爪,所述卡爪与所述滑移组件卡勾连接。
  3. 根据权利要求1所述的顶升移载机,其特征在于,所述机座包括底架、两个分别凸设于所述底架两侧的第一支撑凸起以及凸设于所述底架上并位于两所述第一支撑凸起之间的第二支撑凸起,所述第一支撑凸起和第二支撑凸起的长度方向都沿主输送线路方向设置,所述第一输送部包括若干第一传送轨、两个第二带体、若干第一传动辊、四个第二传动辊、固定于所述机座上的第二驱动机构、以及固定于所述机座上并与主输送线路方向相垂直的第一传动轴,所述第二驱动机构的输出端与所述第一传动轴连接,两个所述第二带体、若干所述第一传送轨、若干所述第一传动辊以及四个所述第二传动辊都等均分的位于所述第二支撑凸起的两侧,且所述第一传动辊、所述第二传动辊以及所述第一传送轨的一端都与所述第一支撑凸起连接、另一端都与所述第二支撑凸起连接,所述第一传动轴转动安装于所述第二支撑凸起上且其两端都凸露于所述第二支撑凸起外以分别与两所述第二带体的一端连接,所述第二带体的另一端通过所述第一传动辊和第二传动辊套设于各所述第一传送轨上,两个所述第二传动辊位于所述第一传动轴的上方并分别抵接于所述第二带体相背的两外侧,每个所述第一传送轨下方都设有至少两个所述第一传动辊,且相邻两所述第一传送轨下方所对应的相邻两所述第一传动辊都抵压于环形的所述第二带体的外侧并使所述第二带体凹陷以形成一个用于容纳部分所述第二输送部的避让槽。
  4. 根据权利要求3所述的顶升移载机,其特征在于,所述第二支撑凸起包括两个间隔且都固定于所述底架上的第一支撑板,所述第一传动轴的中部转动安装于两所述第一支撑板上,所述第一支撑板之远离所述底架的一端设有与所述避让槽相连通的第一缺口,所述第二输送部还包括第三驱动机构、以及位于两所述第一支撑板之间且沿主输送线路方向设置的第二传动轴,所述第三驱动机构的输出端与所述第二传动轴连接,所述支撑组件包括若干皮带架、两个分别与两所述第一支撑凸起滑动连接的横板以及若干固设于所述横板下方且与所述顶升部连接的导向座,所述横板和所述导向座均位于所述第一支撑凸起之远离所述第二支撑凸起的一侧,所述第一支撑凸起上凹设有与所述避让槽相连通的第二缺口,两个所述避让槽、两个所述第二缺口、两个所述第一缺口以及两个所述第一支撑板之间的间隔共同围合成一个穿设槽,所述皮带架的一端与一个所述横板连接、另一端穿过所述穿设槽后与另一个所述横板连接,所述第一带体为环形,所述第一带体的一端套设于所述第二传动轴上、另一端套设于所述皮带架上。
  5. 根据权利要求4所述的顶升移载机,其特征在于,所述皮带架包括两个间隔设置的第二支撑板以及固设于两所述第二支撑板之间的第二传送轨,所述第二输送部还包括若干位于所述第二传送轨中部的下方的第三传动辊,所述第二支撑板为“n”形,所述第二支撑板的两端分别与两所述横板连接,所述第一带体的一端套设于所述第二传动轴上、另一端通过若干所述第三传动辊套设于所述第二传送轨上。
  6. 根据权利要求5所述的顶升移载机,其特征在于,所述机座还包括两个都固定于所述第一支撑凸起上并分别位于所述滑移组件两侧的支撑杆,所述支撑杆的长度方向与主输送线路方向一致,所述第一支撑凸起贯穿设有若干第一穿孔,所述滑移组件的一端与所述偏心轮组件连接、另一端穿过所述第一穿孔后与所述导向座滑动连接,且所述滑移组件的中部与所述支撑杆滑动连接。
  7. 根据权利要求6所述的顶升移载机,其特征在于,所述滑移组件包括驱动板、若干分布于所述驱动板两端的支撑片、若干间隔设置的包胶轴承以及若干分别滑动安装于两所述支撑杆上的直线轴承,所述驱动板的一端与所述偏心轮组件相连接、另一端穿过所述第一穿孔后与若干所述直线轴承连接,所述支撑片的一端安装有所述包胶轴承、另一端与所述驱动板垂直连接,所述导向座内设有导向槽,所述导向槽具有使所述皮带架相对所述机座上升的第一位置以及使所述皮带架相对所述第一位置下降的第二位置,所述包胶轴承安装于所述导向槽内并可从所述第一位置运行至所述第二位置。
  8. 根据权利要求5所述的顶升移载机,其特征在于,所述支撑组件还包括两个分别位于所述皮带架两侧且固定于所述机座上的模块座、若干固定于所述模块座的法兰以及若干固设于所述横板底部的导向杆,所述法兰上贯穿设有第二穿孔,所述模块座上贯穿设有与所述第二穿孔相连通的第三穿孔,所述导向杆滑动穿设于所述第二穿孔和所述第三穿孔。
  9. 根据权利要求6所述的顶升移载机,其特征在于,所述机座还包括支撑横梁、固定于所述底架两侧的第一侧板以及固定于所述底架另两侧的第二侧板,所述第一侧板与所述支撑杆平行设置,所述支撑横梁的两端分别与两所述第二侧板连接。
  10. 根据权利要求4所述的顶升移载机,其特征在于,所述顶升移载机还包括若干位于两所述第二带体之间的第四传动辊,若干所述第四传动辊都安装于所述第二支撑凸起上并与所述第一缺口错位设置。
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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114653910A (zh) * 2022-03-10 2022-06-24 江西台鑫钢铁有限公司 钢坯加热旁通热送机构
CN114955481A (zh) * 2022-03-30 2022-08-30 杭州三奥智能科技有限公司 一种凸轮节距上料机
CN116986333A (zh) * 2023-09-26 2023-11-03 江苏晶雪节能科技股份有限公司 一种冷库板生产用供料装置
CN117068725A (zh) * 2023-10-13 2023-11-17 福建中科兰剑智能装备科技有限公司 一种用于锂电新能源的智能输送移载装置
CN117086531A (zh) * 2023-10-19 2023-11-21 新乡市诚德能源科技装备有限公司 罐式集装箱加强圈组对工装

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN213949741U (zh) * 2020-07-20 2021-08-13 深圳市华南新海传动机械有限公司 一种顶升移载机中带体的缠绕结构
CN114700755A (zh) * 2022-04-27 2022-07-05 中建三局第一建设安装有限公司 一种模块化全自动管道加工装置及其控制方法
CN114906596A (zh) * 2022-05-30 2022-08-16 江西立讯智造有限公司 一种接驳机及生产线

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102381559A (zh) * 2010-08-31 2012-03-21 伊东电机株式会社 移载装置
US9365361B1 (en) * 2015-06-30 2016-06-14 Skarlupka Mfg., Inc. 90 degree cross transfer conveyor
CN106132849A (zh) * 2014-01-28 2016-11-16 伊东电机株式会社 移载装置
CN208577009U (zh) * 2018-06-15 2019-03-05 河南中烟工业有限责任公司 一种适用于滚筒输送机的包装箱直角转向装置
CN110697320A (zh) * 2019-09-21 2020-01-17 科捷智能装备有限公司 电动顶升移载机及其方法
KR102092779B1 (ko) * 2019-09-02 2020-03-24 박수원 알루미늄 압출재의 방향전환 및 이송장치
CN112265794A (zh) * 2020-07-20 2021-01-26 深圳市华南新海传动机械有限公司 一种顶升移载机

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8042682B2 (en) * 2009-03-13 2011-10-25 Dorner Mfg. Corp. Conveyor belt drive sprocket retention system
CN106241327B (zh) * 2016-09-28 2018-09-21 江苏华章物流科技股份有限公司 一种顶升移载机
CN206494497U (zh) * 2016-11-04 2017-09-15 浙江德马科技股份有限公司 一种带式移载机
CN108861356A (zh) * 2018-05-26 2018-11-23 周如彬 一种陶瓷滚筒包胶手动输送装置
CN210943617U (zh) * 2019-08-30 2020-07-07 山东洛杰斯特物流科技有限公司 转向输送装置

Patent Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102381559A (zh) * 2010-08-31 2012-03-21 伊东电机株式会社 移载装置
CN106132849A (zh) * 2014-01-28 2016-11-16 伊东电机株式会社 移载装置
US9365361B1 (en) * 2015-06-30 2016-06-14 Skarlupka Mfg., Inc. 90 degree cross transfer conveyor
CN208577009U (zh) * 2018-06-15 2019-03-05 河南中烟工业有限责任公司 一种适用于滚筒输送机的包装箱直角转向装置
KR102092779B1 (ko) * 2019-09-02 2020-03-24 박수원 알루미늄 압출재의 방향전환 및 이송장치
CN110697320A (zh) * 2019-09-21 2020-01-17 科捷智能装备有限公司 电动顶升移载机及其方法
CN112265794A (zh) * 2020-07-20 2021-01-26 深圳市华南新海传动机械有限公司 一种顶升移载机
CN112265792A (zh) * 2020-07-20 2021-01-26 深圳市华南新海传动机械有限公司 一种顶升移载机
CN112265796A (zh) * 2020-07-20 2021-01-26 深圳市华南新海传动机械有限公司 一种顶升移载机中带体的缠绕结构
CN112265795A (zh) * 2020-07-20 2021-01-26 深圳市华南新海传动机械有限公司 一种顶升移载机
CN112265793A (zh) * 2020-07-20 2021-01-26 深圳市华南新海传动机械有限公司 一种顶升移载机

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114653910A (zh) * 2022-03-10 2022-06-24 江西台鑫钢铁有限公司 钢坯加热旁通热送机构
CN114955481A (zh) * 2022-03-30 2022-08-30 杭州三奥智能科技有限公司 一种凸轮节距上料机
CN116986333A (zh) * 2023-09-26 2023-11-03 江苏晶雪节能科技股份有限公司 一种冷库板生产用供料装置
CN116986333B (zh) * 2023-09-26 2023-11-28 江苏晶雪节能科技股份有限公司 一种冷库板生产用供料装置
CN117068725A (zh) * 2023-10-13 2023-11-17 福建中科兰剑智能装备科技有限公司 一种用于锂电新能源的智能输送移载装置
CN117086531A (zh) * 2023-10-19 2023-11-21 新乡市诚德能源科技装备有限公司 罐式集装箱加强圈组对工装
CN117086531B (zh) * 2023-10-19 2024-01-19 新乡市诚德能源科技装备有限公司 罐式集装箱加强圈组对工装

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