WO2021022617A1 - Bloc d'assemblage de bande transporteuse, bande transporteuse et machine tournante - Google Patents

Bloc d'assemblage de bande transporteuse, bande transporteuse et machine tournante Download PDF

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Publication number
WO2021022617A1
WO2021022617A1 PCT/CN2019/105170 CN2019105170W WO2021022617A1 WO 2021022617 A1 WO2021022617 A1 WO 2021022617A1 CN 2019105170 W CN2019105170 W CN 2019105170W WO 2021022617 A1 WO2021022617 A1 WO 2021022617A1
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WO
WIPO (PCT)
Prior art keywords
splicing
block
conveyor belt
splicing block
piece
Prior art date
Application number
PCT/CN2019/105170
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English (en)
Chinese (zh)
Inventor
洪健荣
Original Assignee
深圳市华南新海传动机械有限公司
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Filing date
Publication date
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Publication of WO2021022617A1 publication Critical patent/WO2021022617A1/fr

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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
    • B65G15/00Conveyors having endless load-conveying surfaces, i.e. belts and like continuous members, to which tractive effort is transmitted by means other than endless driving elements of similar configuration
    • B65G15/02Conveyors having endless load-conveying surfaces, i.e. belts and like continuous members, to which tractive effort is transmitted by means other than endless driving elements of similar configuration for conveying in a circular arc
    • 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
    • B65G15/00Conveyors having endless load-conveying surfaces, i.e. belts and like continuous members, to which tractive effort is transmitted by means other than endless driving elements of similar configuration
    • B65G15/30Belts or like endless load-carriers
    • 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

Definitions

  • the invention relates to the technical field of conveying equipment, in particular to a splicing block, a conveying belt and a turning machine for conveying driving.
  • the current splicing block 100 is generally a planar structure (see Figure 1), since the conveyor belt often rotates during the actual conveying process, an angle will be formed between the two splicing blocks 100 at the rotating position.
  • the rotation position is usually used as the starting point of conveying, and there is only a point contact between the angle of the rotation position and the included angle.
  • the gap between the two conveyor belts after the connection is large, causing the workpiece to fall Or the case of clips.
  • the turning machine conveys the workpiece
  • the workpiece needs to be turned according to the restrictions of the transportation site or production line.
  • one of the objectives of the present invention is to provide a splicing block for a conveyor belt, which can be used as a conveying surface with an arc-shaped end surface, which can be rounded when the revolving part is connected when used as a conveyor belt.
  • the arc and the circular arc are connected to reduce the joint gap.
  • the second object of the present invention is to provide a conveyor belt, which can be used as a conveying end surface with an arc shape, and adjacent conveyor belts can be connected by arcs and arcs when the revolving parts are connected, thereby reducing the joint gap.
  • the third object of the present invention is to provide a turning machine, which can use the arc-shaped revolving part to connect different conveyor belts to reduce the joint gap.
  • a splicing block for a conveyor belt comprising a splicing block body, the top of the splicing block body is provided with an arc surface; the arc surface is formed as a conveying surface for contact with a workpiece; the side of the splicing block body A plurality of splicing pieces are protrudingly provided; the plurality of splicing pieces are distributed at intervals along the length direction of the main body of the splicing block; a splicing groove is formed between two adjacent splicing pieces; the splicing groove is for inserting the splicing piece.
  • the splicing piece is cylindrical, and the central axis of the splicing piece extends along the length direction of the splicing block body, and the side wall surface of the splicing piece is connected with the splicing block body.
  • the splicing piece located on one side of the main body of the splicing piece and the splicing piece located on the opposite side of the main body of the splicing piece crossly face each other.
  • the splicing piece is provided with a through hole; the through hole extends along the length direction of the splicing block body and penetrates to the side of the splicing piece; the through holes of each splicing piece correspond one-to-one.
  • the bottom end of one end of the splicing block body extends outward to form a connecting block; the connecting block is provided with a clamping groove, and the bottom end of the other end of the splicing block body is provided with a clamping block; Used to snap into the card slot.
  • the card slot extends from one side surface of the connecting block to the other side surface along the width direction of the splicing piece.
  • the bottom end surface of the main body of the splicing block is provided with a plurality of reinforcing bars; the plurality of reinforcing bars are distributed at intervals along the length direction of the main body of the splicing block.
  • the splicing piece located on one side of the splicing piece main body is opposite to the splicing groove located on the opposite side of the splicing piece main body, and each of the reinforcing strips connects one end of the splicing piece to the opposite side. The nearest end of the splicing piece on the side.
  • the splicing piece is cylindrical, and the shape of the connection between the reinforcing strip and the splicing piece is an arc shape, which is adapted to the outer peripheral surface of the splicing piece.
  • a conveyor belt includes a splicing block assembly; the splicing block assembly includes a plurality of splicing blocks arranged along a conveying direction, the splicing block includes a splicing block body, the top of the splicing block body is provided with an arc surface; the arc surface is formed as The conveying surface used for contact with the workpiece; each conveying surface is used to jointly form the conveying end surface of the conveyor belt after multiple splicing block bodies are spliced; the side of the splicing block body is protruding with multiple splicing pieces; multiple splicing pieces Distributed at intervals along the length of the main body of the splicing block; splicing grooves are formed at intervals between two adjacent splicing pieces; the splicing sheet of one of the adjacent splicing block main bodies in the conveying direction is inserted into another adjacent splicing block In the groove of the main body, the splicing block assembly is fan-shaped, and includes a pluralit
  • the splicing piece is provided with a through hole; the through hole extends along the length direction of the splicing block body and penetrates to the side of the splicing piece; the through holes of each splicing piece correspond one-to-one.
  • the splicing block assembly is provided with multiple groups; the bottom end of one end of the splicing block body extends outward to form a connecting block; the connecting block is provided with a card slot, and the bottom end of the other end of the splicing block body is provided There are clamping blocks; the two adjacent sets of splicing block assemblies correspond to the clamping blocks of one of the adjacent splicing block main bodies being clamped in the clamping slots of the adjacent splicing block main body.
  • the bottom end surface of the splicing block body is provided with a plurality of reinforcing strips; the plurality of reinforcing strips are distributed at intervals along the length direction of the splicing block body; two splicing pieces adjacent in the width direction of the splicing block body pass through the reinforcing strips connection.
  • a turning machine includes a body, a driving mechanism and the conveyor belt; the conveyor belt is installed on the body and makes a rotary motion under the action of the driving mechanism.
  • the present invention has the beneficial effect that it uses splicing blocks as the splicing basis of the conveyor belt, and the arc surface on the splicing body of the splicing blocks can form the conveying surface, so a conveyor belt formed by splicing multiple splicing blocks
  • the conveying end surface of the conveyor belt is a circular arc surface, so the surface formed by the rotation of the conveyor belt at the starting position of the conveying is a circular arc surface. Therefore, the adjacent conveyor belts can be connected by circular arcs and arcs to reduce the connection The gap prevents the clamping of parts due to the excessive gap during the conveying process.
  • Figure 1 is a schematic diagram of the joint structure of the existing conveyor belt at the revolving position
  • Figure 2 is a schematic diagram of the structure of the splicing block of the present invention.
  • Figure 3 is a schematic view of another view of the structure of the splicing block of the present invention.
  • Figure 5 is a schematic diagram of the joint structure of the conveyor belt of the present invention at the rotating position
  • Figure 6 is a schematic diagram of the structure of the turning machine of the present invention.
  • a splicing block for a conveyor belt includes a splicing block body 10, specifically an arc surface 11 is provided at the top end of the splicing block body 10, and the arc surface 11 is formed for communication with The conveying surface that the workpiece touches.
  • a plurality of splicing pieces 12 are protrusively provided on the side of the splicing block body 10; the plurality of splicing sheets 12 are distributed at intervals along the length direction of the splicing block body 10; two adjacent splicing sheets 12 are spaced to form splicing grooves. 13; Splicing groove 13 for splicing piece 12 to be inserted.
  • the splicing block of the present invention when used in the conveyor belt 20, multiple splicing blocks can be spliced, a plurality of splicing blocks can be arranged in the conveying direction, and then the splicing blocks of two adjacent splicing blocks The splicing piece 12 on one side of the main body 10 can be inserted into the splicing groove 13 on the corresponding side of the other splicing block main body 10 to realize the splicing of the splicing blocks. After the splicing is completed, the formed conveyor belt 20 can be used to convey the workpiece.
  • a bead arranged along the conveying direction will be arranged to connect the ends of the spliced splicing blocks to prevent them from loosening during the conveying process.
  • rotating shafts or rotating wheels are usually set at both ends of the machine body, and the conveyor belt can be wound on the rotating shafts or rotating wheels at both ends, and the rotating shaft or rotating wheel can be driven by the drive motor. Make the conveyor belt output rotary motion to realize the conveying of the workpiece.
  • the splicing block is used as the splicing basis of the conveyor belt 20, and the arc surface 11 on the splicing body of the splicing block can form a conveying surface. Therefore, the conveying end surface of the conveyor belt 20 formed by splicing multiple splicing blocks is round.
  • the arc surface 11, so the surface formed by the rotation of the conveyor belt 20 at the starting position of the conveying is the arc surface 11. Therefore, the adjacent conveyor belts 20 can be connected by arcs and arcs to reduce the joint gap .
  • the splicing piece 12 has a cylindrical shape, and the central axis of the splicing piece 12 extends along the length direction of the splicing block body 10, and the side wall surface of the splicing piece 12 is connected to the splicing block body 10.
  • the splicing piece 12 located on one side of the splicing block main body 10 and the splicing piece 10 located on the opposite side cross and face each other. As shown in Fig. 3, the splicing pieces 12 on both sides are not aligned one by one. Therefore, when multiple splicing blocks are spliced, the overall structural strength is higher.
  • a through hole 121 may be provided in the splicing piece 12.
  • the through hole 121 extends along the length direction of the splicing piece body 10 and penetrates to the side surface of the splicing piece 12, and the through holes 121 of each splicing piece 12 correspond one-to-one . In this way, after the two splicing block bodies 10 are spliced, the splicing piece 12 on one splicing block main body 10 is inserted into the splicing groove 13 formed between the two splicing pieces 12 on the other splicing block main body 10.
  • the splicing pieces 12 on the main body 10 of the two splicing blocks will be connected, and the through holes 121 on the corresponding splicing pieces 12 can be connected correspondingly, and a screw or other metal connecting piece can be inserted into the through hole 121 to make the two splicing blocks rotatably connected.
  • the structure of the formed conveyor belt 20 is stabilized.
  • the bottom end of one end of the splicing block body 10 may extend outward to form a connecting block 14, and the connecting block 14 is provided with a slot 141.
  • the bottom end of the other end of the splicing block body 10 is provided with a clamping block 15; the clamping block 15 is used for clamping in the clamping slot 141.
  • the conveyor belt 20 is generally formed by multiple sets of splicing block assemblies 21 distributed in the conveying direction. When two adjacent sets of splicing block assemblies 21 are connected, they will correspond to each other.
  • the locking block 15 at one end of the splicing block main body 10 is clamped into the slot 141 of the adjacent splicing block main body 10 to realize the connection.
  • the slot 141 extends from one side surface of the connecting block 14 to the other side surface along the width direction of the splicing piece 12.
  • the card slot 141 opens toward the arc surface 11, and the card block 15 can be easily inserted into the card slot 141.
  • a plurality of reinforcing bars 16 may be provided on the bottom end surface of the splicing block main body 10; By strengthening the structure of the splicing block body 10, the formed conveyor belt 20 has a better structural strength.
  • two splicing pieces 12 adjacent in the width direction of the splicing block body 10 are connected by a reinforcing strip 16. Since the splicing grooves 13 are formed between the splicing pieces 12 on the side of the main body of the splicing piece 12, the splicing piece 12 on the main body 10 of the separate splicing block has a relatively light structure, poor strength, and is easy to break during the splicing process.
  • the reinforcing strips 16 are connected to the splicing pieces 12 adjacent to each other in the width direction of the splicing block body 10, which can strengthen the structure of the splicing sheet 12 and the overall structure of the splicing block.
  • the splicing piece 12 located on one side of the splicing piece main body 10 is opposite to the splicing groove 13 located on the opposite side of the splicing piece main body 10, and each reinforcing strip 16 is connected to the splicing piece One end of 12 and the closest end of the splicing piece 12 on the opposite side.
  • the splicing pieces 12 on both sides are staggered and facing each other, and the end of the splicing sheet 12 on one side and the end of the splicing sheet 12 on the other side of the reinforcing strip 16 are in turn.
  • the splicing piece 12 is cylindrical, and the shape of the connection between the reinforcing strip 16 and the splicing piece 12 is an arc shape, which fits with the outer peripheral surface of the splicing piece 12.
  • this embodiment also provides a conveyor belt 20, including a splicing block assembly 21; the splicing block assembly 21 includes a plurality of splicing blocks arranged along a conveying direction, including a splicing block body 10, specifically in the splicing block
  • the top end of the main body 10 is provided with a circular arc surface 11 formed as a conveying surface for contact with a workpiece.
  • a plurality of splicing pieces 12 are protrusively provided on the side of the splicing block body 10; the plurality of splicing sheets 12 are distributed at intervals along the length direction of the splicing block body 10; two adjacent splicing sheets 12 are spaced to form splicing grooves.
  • the splicing groove 13 is formed at intervals between two adjacent splicing pieces 12; the splicing sheet 12 of one of the splicing block main bodies 10 adjacent in the conveying direction is inserted into the concave of the adjacent splicing block main body 10 In the slot, the splicing block assembly is fan-shaped, and includes a plurality of splicing block strips arranged in a radial direction and formed by splicing a plurality of splicing blocks, and the size of the splicing block gradually increases in the radial direction.
  • the splicing block of the present invention when used in the conveyor belt 20, multiple splicing blocks can be spliced, a plurality of splicing blocks can be arranged in the conveying direction, and then the splicing blocks of two adjacent splicing blocks The splicing piece 12 on one side of the main body 10 can be inserted into the splicing groove 13 on the corresponding side of the other splicing block main body 10 to realize the splicing of the splicing blocks. After the splicing is completed, the formed conveyor belt 20 can be used to convey the workpiece.
  • a bead arranged along the conveying direction will be set to connect the ends of the spliced splicing blocks to prevent them from loosening during the conveying process.
  • the splicing block is used as the splicing basis of the conveyor belt 20, and the arc surface 11 on the splicing body of the splicing block can form a conveying surface. Therefore, the conveying end surface of the conveyor belt 20 formed by splicing multiple splicing blocks is round. Curved surface 11, so the conveyor belt 20 at the starting position of the conveying, that is, the surface formed by the rotation position 22 of the conveyor belt 20 is the arc surface 11, so the rotation position 22 of the adjacent conveyor belt 20 can be connected through the circle The arc and circular arc are realized to reduce the joint gap.
  • the conveyor belt Since the conveyor belt is usually applied with rotating shafts or rotating wheels at both ends of the machine body, it is enough to wind the conveyor belt on the rotating shafts or rotating wheels at both ends, and the rotating shaft or rotating wheel can be driven by the drive motor to rotate.
  • the conveyor belt outputs the rotary motion to realize the conveying of the workpiece. Therefore, the rotating position of the conveyor belt in this embodiment is around the part of the rotating shaft or the rotating wheel.
  • a through hole 121 may be provided in the splicing piece 12.
  • the through hole 121 extends along the length direction of the splicing piece body 10 and penetrates to the side surface of the splicing piece 12, and the through holes 121 of each splicing piece 12 correspond one-to-one .
  • the splicing piece 12 on one splicing block main body 10 is inserted into the splicing groove 13 formed between the two connecting pieces on the other splicing block main body 10, so that two The splicing pieces 12 on the splicing block main body 10 will be connected, and the through holes 121 on the corresponding splicing pieces 12 can be connected correspondingly, and a screw or other metal connecting piece can be inserted into the through hole 121 to make the two splicing blocks rotate and connect.
  • the formed conveyor belt 20 has a stable structure.
  • the bottom end of one end of the splicing block body 10 may extend outward to form a connecting block 14, and the connecting block 14 is provided with a slot 141.
  • the bottom end of the other end of the splicing block body 10 is provided with a clamping block 15; the clamping block 15 is used for clamping in the clamping slot 141.
  • the conveyor belt 20 is generally formed by multiple sets of splicing block assemblies 21 distributed in the conveying direction. When two adjacent sets of splicing block assemblies 21 are connected, they will correspond to each other.
  • the locking block 15 at one end of the splicing block main body 10 is clamped into the slot 141 of the adjacent splicing block main body 10 to realize the connection.
  • a plurality of reinforcing strips 16 may be provided on the bottom end surface of the splicing block body 10; the plurality of reinforcing strips 16 are distributed at intervals along the length direction of the splicing block body 10, and the plurality of reinforcing strips 16 may be By strengthening the structure of the splicing block body 10, the resulting conveyor belt 20 has a better structural strength.
  • two splicing pieces 12 adjacent in the width direction of the splicing block body 10 are connected by a reinforcing strip 16. Since the splicing grooves 13 are formed between the splicing pieces 12 on the side of the main body of the splicing piece 12, the splicing piece 12 on the main body 10 of the separate splicing block has a relatively light structure, poor strength, and is easy to break during the splicing process.
  • the reinforcing strips 16 are connected to the splicing pieces 12 adjacent to each other in the width direction of the splicing block body 10, which can strengthen the structure of the splicing sheet 12 and the overall structure of the splicing block.
  • this embodiment also provides a turning machine, including a body 30, a driving mechanism 40 and a conveyor belt 20; the conveyor belt 20 is installed on the body 30 and rotates under the action of the driving mechanism 40, Due to actual application requirements of the specific turning machine, the conveying direction of the conveyor belt 20 is an arc direction.
  • a plurality of splicing block bodies 10 may be spliced to form an arc-shaped conveying belt 20.
  • the conveying end surface of the conveyor belt 20 formed by splicing a plurality of splicing blocks is the arc surface 11, so the conveyor belt 20 is at the starting position of conveying, that is, the conveyor belt 20
  • the surface formed by the revolving position 22 is the arc surface 11, so when the revolving positions 22 of the adjacent conveyor belts 20 are connected, they can be realized by circular arcs and arcs to reduce the joint gap.
  • a rotating shaft or a rotating wheel and a driving motor can be arranged on both ends of the body, and the conveyor belt can be wound on the rotating shaft or rotating wheel at both ends, and the rotating shaft or the rotating wheel can be driven by the driving motor.
  • the conveyor belt can output the rotary motion to realize the conveying of the workpiece.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Belt Conveyors (AREA)

Abstract

L'invention concerne un bloc d'assemblage d'une bande transporteuse, une bande transporteuse et une machine tournante. Le bloc d'assemblage comprend un corps de bloc d'assemblage (10), et une surface en forme d'arc (11) est formée au sommet du corps de bloc d'assemblage (10) ; la surface en forme d'arc (11) est formée en tant que surface de transport à des fins de contact avec une pièce à travailler ; des pièces d'une pluralité de pièces d'assemblage (12) sont formées d'une manière en saillie sur les côtés du corps de bloc d'assemblage (10) ; les pièces de la pluralité de pièces d'assemblage (12) sont espacées dans la direction de la longueur du corps de bloc d'assemblage (10) ; une rainure d'assemblage (13) est formée à un certain espacement entre deux pièces d'assemblage adjacentes (12) ; la rainure d'assemblage (13) permet l'insertion de la pièce d'assemblage (12). La bande transporteuse (20) comprend un composant de bloc d'assemblage ; le composant de bloc d'assemblage comprend une pluralité de blocs d'assemblage disposés dans une direction de transport. La machine tournante comprend un corps de machine (30), un mécanisme d'entraînement (40) et la bande transporteuse (20) ; la bande transporteuse (20) est montée sur le corps de machine (30) et effectue un mouvement rotatif sous l'action du mécanisme d'entraînement (40). Du fait que la surface d'extrémité qui sert de surface de transport a une forme d'arc, lorsque la bande transporteuse est en prise au niveau d'une partie rotative, la prise peut être obtenue par des arcs, ce qui permet de réduire un espace de prise.
PCT/CN2019/105170 2019-08-08 2019-09-10 Bloc d'assemblage de bande transporteuse, bande transporteuse et machine tournante WO2021022617A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201910730045.7A CN110482116A (zh) 2019-08-08 2019-08-08 一种用于输送带的拼接块、输送带以及转弯机
CN201910730045.7 2019-08-08

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WO2021022617A1 true WO2021022617A1 (fr) 2021-02-11

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WO1998014396A1 (fr) * 1996-10-03 1998-04-09 Dieter Zimmermann Dispositif de remontee mecanique
CN201647559U (zh) * 2010-08-17 2010-11-24 新乡市振源机械设备有限责任公司 新型甲片
KR101038586B1 (ko) * 2011-03-23 2011-06-03 이천수 컨베이어벨트의 피봇로드 차단용 셔틀플러그 체결 구조
CN106255655A (zh) * 2014-04-16 2016-12-21 莱特拉姆有限责任公司 顶表面带纹理的传送带模块
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CN110482113A (zh) * 2019-08-08 2019-11-22 深圳市华南新海传动机械有限公司 一种横置滚轮的输送带
CN110482119A (zh) * 2019-08-08 2019-11-22 深圳市华南新海传动机械有限公司 一种输送装置以及转弯机
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CN209922175U (zh) * 2019-01-21 2020-01-10 深圳市华南新海传动机械有限公司 一种缝隙紧密的输送结构

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CN208932257U (zh) * 2018-08-09 2019-06-04 深圳市华南新海传动机械有限公司 轮胎输送带
CN210794572U (zh) * 2019-08-08 2020-06-19 深圳市华南新海传动机械有限公司 一种用于输送带的拼接块、输送带以及转弯机

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1998014396A1 (fr) * 1996-10-03 1998-04-09 Dieter Zimmermann Dispositif de remontee mecanique
CN201647559U (zh) * 2010-08-17 2010-11-24 新乡市振源机械设备有限责任公司 新型甲片
KR101038586B1 (ko) * 2011-03-23 2011-06-03 이천수 컨베이어벨트의 피봇로드 차단용 셔틀플러그 체결 구조
CN106255655A (zh) * 2014-04-16 2016-12-21 莱特拉姆有限责任公司 顶表面带纹理的传送带模块
CN208499503U (zh) * 2018-07-31 2019-02-15 成都天一游乐设备有限公司 一种用于水上乐园的无链条传动链板
CN109607044A (zh) * 2019-01-21 2019-04-12 深圳市华南新海传动机械有限公司 一种缝隙紧密的输送结构
CN209922175U (zh) * 2019-01-21 2020-01-10 深圳市华南新海传动机械有限公司 一种缝隙紧密的输送结构
CN305216003S (fr) * 2019-01-29 2019-06-14
CN110482118A (zh) * 2019-08-08 2019-11-22 深圳市华南新海传动机械有限公司 一种便于维修的输送装置以及转弯机
CN110482113A (zh) * 2019-08-08 2019-11-22 深圳市华南新海传动机械有限公司 一种横置滚轮的输送带
CN110482119A (zh) * 2019-08-08 2019-11-22 深圳市华南新海传动机械有限公司 一种输送装置以及转弯机
CN110482115A (zh) * 2019-08-08 2019-11-22 深圳市华南新海传动机械有限公司 一种便于拆装的输送装置以及转弯机

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