CN203664582U - Semi-shell displacing conveyor - Google Patents

Semi-shell displacing conveyor Download PDF

Info

Publication number
CN203664582U
CN203664582U CN201320807965.2U CN201320807965U CN203664582U CN 203664582 U CN203664582 U CN 203664582U CN 201320807965 U CN201320807965 U CN 201320807965U CN 203664582 U CN203664582 U CN 203664582U
Authority
CN
China
Prior art keywords
assembly
chain
chain wheel
lifting
telescopic arm
Prior art date
Legal status (The legal status 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 status listed.)
Withdrawn - After Issue
Application number
CN201320807965.2U
Other languages
Chinese (zh)
Inventor
卢洪滨
王国先
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shandong Pengxiang Automobile Co Ltd
Original Assignee
Shandong Pengxiang Automobile Co Ltd
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 Shandong Pengxiang Automobile Co Ltd filed Critical Shandong Pengxiang Automobile Co Ltd
Priority to CN201320807965.2U priority Critical patent/CN203664582U/en
Application granted granted Critical
Publication of CN203664582U publication Critical patent/CN203664582U/en
Anticipated expiration legal-status Critical
Withdrawn - After Issue legal-status Critical Current

Links

Images

Landscapes

  • Automatic Assembly (AREA)

Abstract

The utility model discloses a semi-shell displacing conveyor. The semi-shell displacing conveyor is characterized by being mainly composed of a moving base assembly (1), a lifting guide assembly (2), a lifting air cylinder assembly (3), a lifting support assembly (4), a fluctuating buffering positioning device lifting air cylinder (5), a fluctuating buffering positioning device assembly (6), a rigid limiting assembly (7), a telescopic arm assembly (8), a telescopic arm driving air cylinder assembly (10), an annular dragging chain assembly (11), a chain wheel tensioning device assembly (12), a dragging chain driving motor assembly (13), a middle transmission system, a control cabinet assembly (14), a guide rail assembly (19) and a guide sliding groove assembly (18). A rigid welded framework and a four-pillar guide structure are adopted and an annular dragging chain is used for conveying semi-shells. Pneumatic and power-driven combined sequential actions are achieved under the control of a PLC so as to complete the task of forming, displacing and conveying the semi-shells to the next procedure. The semi-shell displacing conveyor is simple in structure, convenient to operate, capable of relieving labor intensity and improving production efficiency, low in investment and low in use and maintaining cost.

Description

Half shell displacement conveyer
Technical field:
The utility model relates to Medium or severe type load-carrying vehicle punching weldering bridge half shell manufacturing technology field, it is specifically a kind of half shell displacement conveyer, be a kind of half shell shaping displacement, carry special equipment, be applicable to half shell in punching weldering bridge half shell hot forging forming technique and be shifted and station conveying backward at double die cavity.
Background technology:
Along with the development of auto industry, Medium or severe type truck has entered high-speed development period, Medium or severe type load-carrying vehicle is to high bearing capacity, high performance requirements future development, and punching weldering drive axle is as load-carrying vehicle vitals, and its bearing capacity, bending resistance and fatigue performance require corresponding raising.The production of punching weldering bridge half shell also progressively adopts forge hot groove forming technology, and to improve its mechanical performance, simplify production technology, to reduce production costs, mould is single mode double mold cavity configuration.Half shell is shifted and in station course of conveying, conventionally adopts artificial lift to move or two kinds of modes of industrial robot transhipment backward at double die cavity.Adopt artificial lift to move mode to have following deficiency: 1, labour intensity is high; 2, inefficiency; 3, there is potential safety hazard; Adopt industrial robot mode to have following deficiency: 1, one-time investment is large; 2, use, maintenance cost are high.
Utility model content:
The purpose of this utility model is the deficiency that overcomes above-mentioned prior art, and a kind of half shell displacement conveyer is provided; Mainly solve existing half shell in the time that double die cavity is shifted and station is carried backward high, the inefficiency of artificial lift to move mode labour intensity, there is potential safety hazard and adopt industrial robot mode to invest the problems such as large and use, maintenance cost height.
The technical solution of the utility model is: half shell displacement conveyer, its special character is, it mainly comprises that movable base assembly, lifting guiding assemblage, lifting cylinder assembly, lifting bracket assembly, floating buffer locator lifting cylinder, floating buffer locator assembly, rigid limit assembly, telescopic arm assembly, telescopic arm drive cylinder assembly, annular drag chain assembly, chain Radspanner assembly, drag chain drive motors assembly and intermediate transmission system, switch board assembly, rail assembly, guide chute assembly; Described movable base assembly and lifting bracket assembly are shaped steel welding rigid backbone; On movable base assembly, establish lifting guiding assemblage and lifting cylinder assembly, the piston rod of lifting cylinder assembly connects with lifting bracket assembly, drives lifting bracket assembly to move up and down under the guiding of four guide pillars of four lifting guiding assemblages; Under the second intermediate chain wheel and the 3rd intermediate chain wheel, establish respectively chain Radspanner assembly, the first roller chain and the second roller chain are carried out to tensioning adjustment; On lifting bracket assembly, establish countershaft assembly, the 4th intermediate chain wheel and the first intermediate chain wheel connect with countershaft assembly, the second intermediate chain wheel and the 3rd intermediate chain wheel connect with two drag chain wheel shafts respectively, three rollers chain is loaded on the 4th intermediate chain wheel and the 5th intermediate chain wheel, the first roller chain is loaded on the first intermediate chain wheel, chain Radspanner assembly and the second intermediate chain wheel, and the second roller chain is loaded on the 3rd intermediate chain wheel, chain Radspanner assembly and the 4th intermediate chain wheel; Drag chain drive motors assembly is established in lifting bracket assembly bottom, drag chain drive motors assembly drives both sides upper track wheel by the 5th intermediate chain wheel, three rollers chain, the 4th intermediate chain wheel, the second roller chain, the 3rd intermediate chain wheel, the first intermediate chain wheel, first roller chain the second intermediate chain wheel, both sides upper track wheel drives two annular drag chain assemblies to move in guide chute assembly, and guide chute assembly connects with lifting bracket assembly; On lifting bracket assembly, establish telescopic arm and drive cylinder assembly, telescopic arm drives cylinder assembly to connect with telescopic arm assembly by cranking arm, and drives telescopic arm assembly stretching motion in rail assembly; On telescopic arm assembly, establish blocking material hook, traction half shell is to annular drag chain assembly; Below lifting bracket assembly, establish floating buffer locator lifting cylinder, floating buffer locator lifting cylinder connects with floating buffer locator assembly, and promotes it and move up and down in fairlead, to telescopic arm assembly buffer limit; On lifting bracket assembly, establish rigid limit and always grow up to be a useful person, spacing to telescopic arm assembly; On movable base assembly, establish switch board assembly, inside have PLC Programmable Logic Controller and other electric-controlled parts, each moving component is carried out to programme-control.
Compared with the prior art half shell displacement conveyer described in the utility model has following good effect, adopts rigidity welded framework, four post guide frames, and annular drag chain is carried half shell; Under PLC Controlled by Programmable Controller, pneumatic, electronic associating sequentially-operating, realizes each parts coordinate and moves, complete half shell be shaped displacement and to subsequent processing transportation work; Telescopic arm drives cylinder assembly to drive telescopic arm assembly stretching motion in rail assembly; Lifting cylinder assembly drives lifting bracket assembly to move up and down on the guide pillar of four groups of lifting guiding assemblages, realizes moving up and down of telescopic arm assembly, and four post guide frames guarantee the stable of lifting campaign; Drag chain drive motors assembly drives both sides upper track wheel by intermediate chain wheel and roller chain, drives two annular drag chain assemblies to move in guide chute assembly and carries half shell to lower operation roller-way; It is simple in structure, easy to operate, falls hand labor intensity simultaneously, enhances productivity, and invests littlely, and use and maintenance cost is low.
Accompanying drawing explanation:
Fig. 1 is structural representation of the present utility model;
Fig. 2 is fundamental diagram of the present utility model;
Fig. 3 is Fig. 2 left view.
Drawing explanation:
1 movable base assembly, 2 lifting guiding assemblages, 3 lifting cylinder assemblies, 4 lifting bracket assemblies, 5 floating buffer locator lifting cylinders, 6 floating buffer locator assemblies, 7 rigid limit assemblies, 8 telescopic arm assemblies, 9 blocking material hooks, 10 telescopic arms drive cylinder assembly, 11 annular drag chain assemblies, 12 chain Radspanner assemblies, 13 drag chain drive motors assemblies, 14 switch board assemblies, 15 first intermediate chain wheels, 16 first roller chains, 17 second intermediate chain wheels, 18 guide chute assemblies, 19 rail assemblies, 20 crank arm, 21 upper track wheels, 22 the 3rd intermediate chain wheels, 23 second roller chains, 24 the 4th intermediate chain wheels, 25 three rollers chains, 26 the 5th intermediate chain wheels, 27 guide pillars, 28 countershaft assemblys, 29 drag chain wheel shafts, 30 first die cavitys, 31 second die cavitys, 32 the first half shells, 33 the second half shells.
The specific embodiment:
For better Comprehension and Implementation, provide specific embodiment below in conjunction with accompanying drawing and describe the utility model in detail; Illustrated embodiment is only for explaining the utility model, not for limiting scope of the present utility model.
Embodiment 1, referring to Fig. 1,2,3, movable base assembly 1 adopts rigidity welded framework with lifting bracket assembly 4; Movable base assembly 1 and lifting guiding assemblage 2 use bolt-connections; Lifting cylinder assembly 3 bases connect with movable base assembly 1 with bolt, and its piston rod connects with lifting bracket assembly 4, drive lifting bracket assembly 4 to move up and down on four guide pillars 27 of four lifting guiding assemblages 2;
Drag chain drive motors assembly 13 use bolt-connections are in lifting bracket assembly 4 bottoms, drive both sides upper track wheel 21 by the 5th intermediate chain wheel 26, three rollers chain 25, the 4th intermediate chain wheel 24, the second roller chain 23, the 3rd intermediate chain wheel 22, the first intermediate chain wheel 15, the first roller chain 16, the second intermediate chain wheel 17, drive two annular drag chain assemblies 11 in the interior movement of guide chute assembly 18 and carry half shell to lower operation roller-way; Chain Radspanner assembly 12 and drag chain wheel shaft 29 are all arranged on lifting bracket assembly 4; Chain Radspanner assembly 12 carries out tensioning adjustment to the first roller chain 16 and the second roller chain 23; Countershaft assembly 28 is connected on lifting bracket assembly 4, and the 4th intermediate chain wheel 24 and the first intermediate chain wheel 15 connect with countershaft assembly 28, and the second intermediate chain wheel 17 and the 3rd intermediate chain wheel 22 connect with two drag chain wheel shafts 29 respectively; Three rollers chain 25 is loaded on the 4th intermediate chain wheel 24 and the 5th intermediate chain wheel 26, the first roller chain 16 is loaded on the first intermediate chain wheel 15, chain Radspanner assembly 12 and the second intermediate chain wheel 17, and the second roller chain 23 is loaded on the 3rd intermediate chain wheel 22, chain Radspanner assembly 12 and the 4th intermediate chain wheel 24;
Guide chute assembly 18 use bolts connect with lifting bracket assembly 4; Telescopic arm drives cylinder assembly 10 use bolt-connections on lifting bracket assembly 4, and 20 connects with telescopic arm assembly 8 by cranking arm, and driving telescopic arm assembly 8 is at the interior stretching motion of rail assembly 19; Blocking material hook 9 is arranged on telescopic arm assembly 8, plays backgauge effect, when telescopic arm assembly 8 is retracted by half shell traction on annular drag chain assembly 11;
Floating buffer locator lifting cylinder 5 use bolt-connections, below lifting bracket assembly 4, and connect with floating buffer locator assembly 6, and it moves up and down in fairlead to promote floating buffer locator assembly 6, to telescopic arm assembly 8 buffer limits; Rigid limit assembly 7 use bolt-connections are on lifting bracket assembly 4, spacing to telescopic arm assembly 8;
Switch board assembly 14 is arranged on movable base assembly 1, inside has PLC Programmable Logic Controller and other electric-controlled parts, and each moving component is carried out to programme-control, realizes sequentially-operating.
The half shell displacement conveyer of above-described embodiment 1, when work, station I the first die cavity 30 and station II the second die cavity 31 half shells are put in place by push rod lifting, inductive switch sender, telescopic arm driving cylinder 10 promotes telescopic arm assembly 8 and stretches out along rail assembly 19, arrive rigid limit and always grow up to be a useful person and 7 stop, making telescopic arm assembly 8 be positioned at the first half shells 32, the second half shell 33 belows; Inductive switch sender startup lifting cylinder assembly 3 is elected lifting bracket assembly 4 and is upwards risen, and two halves shell is held up; Lifting bracket assembly 4 lifting under lifting guiding assemblage 2 guiding puts in place, inductive switch sender, telescopic arm drive cylinder 10 rollbacks drive telescopic arm assemblies 8 along rail assembly 19 for the first time rollback to original position; Inductive switch sender, drag chain drive motors assembly 13 starts, and drives both sides upper track wheel 21 by intermediate chain wheel 26,24,22,15,17 and roller chain 25,23,16, drives two annular drag chain assemblies 11 in the interior movement of guide chute 18; The second half shells 33 that brought on annular drag chain assembly 11 by blocking material hook 9 are sent on lower operation roller-way, drag chain drive motors assembly 13 can continuous runnings until equipment downtime; Drag chain drive motors assembly 13 starts simultaneously, and floating buffer locator lifting cylinder 5 is moved, and the lifting under lifting cylinder 5 is elected of floating buffer locator assembly 6 puts in place; Inductive switch sender, telescopic arm driving cylinder 10 promotes telescopic arm assembly 8 and stretches out along rail assembly 19, arrives floating buffer locator assembly 6 and stops, and half shell 32 is positioned at II station the second die cavity 31 tops; Inductive switch sender, lifting cylinder assembly 3 rollbacks, lifting bracket assembly 4 falls to original position, and the first half shells 32 are put on II station the second die cavity 31 push rods; Inductive switch sender, telescopic arm drives cylinder 10 rollbacks drive telescopic arm assemblies 8, and along rail assembly 19, rollback is to original position for the second time, and an operation cycle finishes.

Claims (1)

1. half shell displacement conveyer, it is characterized in that, it mainly comprises movable base assembly (1), lifting guiding assemblage (2), lifting cylinder assembly (3), lifting bracket assembly (4), floating buffer locator lifting cylinder (5), floating buffer locator assembly (6), rigid limit assembly (7), telescopic arm assembly (8), telescopic arm drives cylinder assembly (10), annular drag chain assembly (11), chain Radspanner assembly (12), drag chain drive motors assembly (13) and intermediate transmission system, switch board assembly (14), rail assembly (19), guide chute assembly (18), described movable base assembly (1) and lifting bracket assembly (4) are shaped steel welding rigid backbone, on movable base assembly (1), establish lifting guiding assemblage (2) and lifting cylinder assembly (3), the piston rod of lifting cylinder assembly (3) connects with lifting bracket assembly (4), drives lifting bracket assembly (4) to move up and down under the guiding of four guide pillars (27) of four lifting guiding assemblages (2), under the second intermediate chain wheel (17) and the 3rd intermediate chain wheel (22), establish respectively chain Radspanner assembly (12), the first roller chain (16) and the second roller chain (23) are carried out to tensioning adjustment, on lifting bracket assembly (4), establish countershaft assembly (28), the 4th intermediate chain wheel (24) and the first intermediate chain wheel (15) connect with countershaft assembly (28), the second intermediate chain wheel (17) and the 3rd intermediate chain wheel (22) connect with two drag chain wheel shafts (29) respectively, three rollers chain (25) is loaded on the 4th intermediate chain wheel (24) and the 5th intermediate chain wheel (26), the first roller chain (16) is loaded on the first intermediate chain wheel (15), on chain Radspanner assembly (12) and the second intermediate chain wheel (17), the second roller chain (23) is loaded on the 3rd intermediate chain wheel (22), on chain Radspanner assembly (12) and the 4th intermediate chain wheel (24), drag chain drive motors assembly (13) is established in lifting bracket assembly (4) bottom, drag chain drive motors assembly (13) is by the 5th intermediate chain wheel (26), three rollers chain (25), the 4th intermediate chain wheel (24), the second roller chain (23), the 3rd intermediate chain wheel (22), the first intermediate chain wheel (15), the first roller chain (16) second intermediate chain wheels (17) drive both sides upper track wheels (21), both sides upper track wheel (21) drives two annular drag chain assemblies (11) mobile in guide chute assembly (18), guide chute assembly (18) connects with lifting bracket assembly (4), on lifting bracket assembly (4), establish telescopic arm and drive cylinder assembly (10), telescopic arm drives cylinder assembly (10) to connect with telescopic arm assembly (8) by crank arm (20), drives telescopic arm assembly (8) stretching motion in rail assembly (19), on telescopic arm assembly (8), establish blocking material hook (9), traction half shell is to annular drag chain assembly (11), establish floating buffer locator lifting cylinder (5) in lifting bracket assembly (4) below, floating buffer locator lifting cylinder (5) connects with floating buffer locator assembly (6), and promote it and move up and down in fairlead, to telescopic arm assembly (8) buffer limit, on lifting bracket assembly (4), establish rigid limit and always grow up to be a useful person (7), spacing to telescopic arm assembly (8), on movable base assembly (1), establish switch board assembly (14), inside have PLC Programmable Logic Controller and other electric-controlled parts, each moving component is carried out to programme-control.
CN201320807965.2U 2013-12-11 2013-12-11 Semi-shell displacing conveyor Withdrawn - After Issue CN203664582U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320807965.2U CN203664582U (en) 2013-12-11 2013-12-11 Semi-shell displacing conveyor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320807965.2U CN203664582U (en) 2013-12-11 2013-12-11 Semi-shell displacing conveyor

Publications (1)

Publication Number Publication Date
CN203664582U true CN203664582U (en) 2014-06-25

Family

ID=50960916

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320807965.2U Withdrawn - After Issue CN203664582U (en) 2013-12-11 2013-12-11 Semi-shell displacing conveyor

Country Status (1)

Country Link
CN (1) CN203664582U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103658503A (en) * 2013-12-11 2014-03-26 山东蓬翔汽车有限公司 Semi-shell displacement conveyor
CN108673347A (en) * 2018-05-02 2018-10-19 山东蓬翔汽车有限公司 A kind of overturning lifting charging & discharging machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103658503A (en) * 2013-12-11 2014-03-26 山东蓬翔汽车有限公司 Semi-shell displacement conveyor
CN108673347A (en) * 2018-05-02 2018-10-19 山东蓬翔汽车有限公司 A kind of overturning lifting charging & discharging machine

Similar Documents

Publication Publication Date Title
CN103441620B (en) A kind of equipment of automatic turning generator unit stator
CN103359484B (en) Gantry type blank grabbing machine
CN103434850A (en) Tire carrying and destacking-stacking system and tire warehousing stacking method
CN106348181A (en) Three-dimensional direction carrying hanging tool
CN104843610A (en) Electric yeast stirring forklift used in brewing yeast making industry
CN104192562B (en) Automated machine handgrip carrying implement
CN205257309U (en) Be used for fork welded fork automatic handling device
CN203512752U (en) Manipulator for transporting pile of tires
CN203664582U (en) Semi-shell displacing conveyor
CN103342222B (en) A kind of reciprocating delivery system and reciprocating conveying appliance
CN203359548U (en) Tire carrying and stack dismantling system
CN103213803A (en) Automatic plate conveying machine
CN203998083U (en) Automated machine handgrip carrying implement
CN204489967U (en) The automatically-unhooked machine of tyre conveying line
CN103661808A (en) Hull block turning method and hull block turning system during ship construction
CN203578599U (en) Novel mechanical servo driven material support for numerical control plate bending machine
CN203820377U (en) Double-station track lifter
CN102248598A (en) Grouping hanger for producing aerated concrete
CN103658503B (en) Semi-shell displacement conveyor
CN203345962U (en) Crown block easy to hang
CN107618997B (en) A kind of small-sized remote control handling equipment
CN103569614B (en) Conveying system for fly ash block steam-curing
CN207839903U (en) The curved equipment of the automatic arc of fender
CN202137339U (en) Box pushing manipulator
CN212227742U (en) Double-row plate blank charging machine

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20140625

Effective date of abandoning: 20150715

RGAV Abandon patent right to avoid regrant