CN201543911U - Pipe material feeding device - Google Patents

Pipe material feeding device Download PDF

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Publication number
CN201543911U
CN201543911U CN2009202880975U CN200920288097U CN201543911U CN 201543911 U CN201543911 U CN 201543911U CN 2009202880975 U CN2009202880975 U CN 2009202880975U CN 200920288097 U CN200920288097 U CN 200920288097U CN 201543911 U CN201543911 U CN 201543911U
Authority
CN
China
Prior art keywords
feeding device
pipe material
stirring
support bar
spill framework
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.)
Expired - Fee Related
Application number
CN2009202880975U
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Chinese (zh)
Inventor
史勃
朱军
吴景辉
张环宇
陶柯
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.)
Shenyang Institute of Automation of CAS
Original Assignee
Shenyang Institute of Automation of CAS
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 Shenyang Institute of Automation of CAS filed Critical Shenyang Institute of Automation of CAS
Priority to CN2009202880975U priority Critical patent/CN201543911U/en
Application granted granted Critical
Publication of CN201543911U publication Critical patent/CN201543911U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a pipe material feeding device. The pipe material feeding device comprises an actuation mechanism for lifting a material bin, a material turning mechanism for turning over the pipe material, a hydraulic driving mechanism, and a concave frame, wherein the concave frame is integrally fixed on the ground; the actuation mechanism is mounted in the concave frame; the material turning mechanism is mounted at the upper part on one side wall of the concave frame, and is connected with a material outlet at the upper part of the side wall of the concave frame in the material receiving state; the actuation mechanism comprises racks, a gear, a universal coupling, a chain wheel, chains and a material bin chassis; the racks are engaged with the gear, and then are respectively connected with the bin chassis through one end of each chain via the universal coupling; and the width of the bin chassis is fit with that of the concave frame. The pipe material feeding device has simple structure, and can feed the pipe materials one by one through the operation of only two hydraulic cylinders. In addition, the device can achieve movement conversion by using the rack-gear system, the universal coupling and the chain-chain wheel mechanism, thereby ensuring force balance and stable feeding in the whole process.

Description

A kind of pipe material feeding device
Technical field
The utility model relates to a kind of material loading technology of automatic casing cutter bed that is, a kind of specifically pipe material feeding device.
Background technology
Automatic casing cutter is present state-of-the-art mechanical, electrical, liquid integrated numerical control machine tool.This kind lathe changes the mode that in the past adopted single saw blade vertical cut, replaces the mode of two saw blade winding type millings, makes the processing caliber improve greatly.Quoting of Numeric Control Technology, make this lathe can be fast, accurate location, and can change the length of Pipe Cutting easily, the flexible working ability of lathe is greatly improved.Its material loading problem seems especially outstanding at present, also is the main bottleneck of this pipe cutting machine Pipe Cutting efficient of restriction.The mach pipe material of Pipe Cutting length is more than 6m at present, and diameter is more than 100mm, and the mode of its material loading mainly puts in place by crane lifting.Because the limited amount that crane is equipped with in the workshop can not in time provide lifting operation, this also just greatly reduces the real work efficient of pipe cutting machine, simultaneously frequent lifting operation, can increase the wearing and tearing of crane, the utilization rate of crane is also lower, and operative employee's safety is also produced certain threat.So design and develop a kind of simple and reliable feeding device, cooperate the work of pipe cutting machine, improve the operating efficiency of pipe cutting machine, be present problem demanding prompt solution.
The utility model content
At above shortcomings part in the prior art, the technical problems to be solved in the utility model provides a kind of simple and reliable pipe material feeding device, to cooperate the work of automatic casing cutter, improves the operating efficiency of pipe cutting machine.
For solving the problems of the technologies described above, the technical solution adopted in the utility model is:
The utility model pipe material feeding device comprises: be used for the actuating mechanism of lifting feed bin, material stirring-up mechanism, the hydraulic mechanism that is used to drive and the spill framework of the pipe material that is used to overturn, described spill framework overall fixed is on ground, and actuating mechanism is installed in the spill framework; Material stirring-up mechanism is installed on spill framework one sidewall top, and material stirring-up mechanism is connected with the discharging opening of spill frame side wall top when connecting material state.
Described actuating mechanism comprises tooth bar, gear, Hooks coupling universal coupling, sprocket wheel, chain and feed bin chassis, wherein after the rack and pinion engagement, is fixedlyed connected with the feed bin chassis respectively by an end of a plurality of chains through a plurality of sprocket wheels by Hooks coupling universal coupling; Width in the width on feed bin chassis and the spill framework matches.
Described material stirring-up mechanism has stirring blade, horizontal support bar and vertical support bar, and wherein the stirring blade is a plurality of, and serial is installed on the horizontal support bar, is fixed on the ground by vertical support bar again; The stirring blade is connected with the discharging opening of spill frame side wall top when connecting material state.
Described horizontal support bar is rotationally connected by axle sleeve with vertical support bar; Described stirring blade top is provided with the baffle plate that a pipe material is passed through.
Described hydraulic mechanism comprises hoist cylinder and stirring oil cylinder, and wherein the piston rod of hoist cylinder and tooth bar are connected, and the piston rod and the horizontal support bar of stirring oil cylinder are connected; Described stirring oil cylinder bottom is hinged with frame base, and an end of the piston rod of stirring oil cylinder and a connecting rod is hinged, and the other end and the horizontal support bar of this connecting rod are connected.
The sidewall height of described spill framework at the discharging opening place is lower than the sidewall height of opposite side; Described feed bin chassis tilts to the discharging opening direction.
The utlity model has following beneficial effect and advantage:
1. the utility model is simple in structure, only by the action of two hydraulic cylinders cooperate can realize managing material by the root material loading.
2. the utility model has utilized rack tooth train, Hooks coupling universal coupling and chain sprocket mechanism, realizes the motion conversion, guarantees whole process stress balance, and material loading is steady.
Description of drawings
Fig. 1 is the utility model fundamental diagram;
Fig. 2 is the utility model structure diagram;
Fig. 3 is a lateral plan of the present utility model.
The specific embodiment
Below in conjunction with following examples and accompanying drawing technical solutions of the utility model are elaborated.
Shown in Fig. 1~3, the utility model pipe material feeding device comprises the actuating mechanism that is used for the lifting feed bin, material stirring-up mechanism, the hydraulic mechanism that is used to drive and the spill framework 12 of the pipe material that is used to overturn, described spill framework 12 overall fixed are on ground, and actuating mechanism is installed in the spill framework 12; Material stirring-up mechanism is installed on spill framework 12 1 sidewalls top, and material stirring-up mechanism is connected with the discharging opening of spill framework 12 sidewalls top when connecting material state.
Described actuating mechanism comprises tooth bar 2, gear 3, Hooks coupling universal coupling 4, sprocket wheel 5, chain 6 and feed bin chassis 7, its middle rack 2 is fixedlyed connected with feed bin chassis 7 respectively by an end of a plurality of chains 6 through a plurality of sprocket wheels 5 by Hooks coupling universal coupling 4 after meshing with gear 3; Width in the width on feed bin chassis 7 and the spill framework 12 matches.
Described material stirring-up mechanism has stirring blade 9, horizontal support bar 10 and vertical support bar 11, and wherein stirring blade 9 is a plurality of, and serial is installed on the horizontal support bar 10, is fixed on the ground by vertical support bar 11 again; Stirring blade 9 is connected with the discharging opening of spill framework 12 sidewalls top when connecting material state; Horizontal support bar 10 and vertical support bar 11 are rotationally connected by axle sleeve; Stirring blade 9 tops are provided with the baffle plate 14 that a pipe material is passed through.
Described hydraulic mechanism comprises hoist cylinder 1 and stirring oil cylinder 8, and wherein the piston rod of hoist cylinder 1 and tooth bar 2 are connected, and the piston rod of stirring oil cylinder 8 and horizontal support bar 10 are connected; Stirring oil cylinder 8 bottoms and spill framework 12 are hinged, and an end of the piston rod of stirring oil cylinder 8 and a connecting rod 13 is hinged, and the other end of this connecting rod 13 and horizontal support bar 10 are connected.
Stirring blade 9 is a plurality of, present embodiment is 6, the cylinder base of stirring oil cylinder 9 links to each other with frame base 12 in hinged way, to guarantee that it has certain rotary freedom, the piston rod of stirring oil cylinder 8 is hinged with an end of a connecting rod 13 in hinged way, and the other end of this connecting rod 13 is fixed on the horizontal support bar 10.The elevating movement of stirring oil cylinder just can drive stirring blade upset pipe material.
During use, the primer fluid press mechanism, the 1st magnetic valve dead electricity of control hoist cylinder 1, the 2nd magnetic valve of control hoist cylinder 1 gets, the piston rod of hydraulic-driven hoist cylinder 1 drives tooth bar 2 indentation hoist cylinders 1,3 rotations of tooth bar 2 driven gears drive bottom that feed bin chassis 7 drop to spill framework 12 through four sprocket wheels 5 by 4 chains 6 by Hooks coupling universal coupling 4 again, and the whole pipe material of tying is lifted on the feed bin chassis 7.The 3rd magnetic valve of control stirring oil cylinder 8 gets, the 4th magnetic valve dead electricity of control stirring oil cylinder 8, the piston rod drivening rod 13 of hydraulic-driven stirring oil cylinder 8 also further drives horizontal support bar 10 rotations, and stirring blade 9 turn to the position that connects material with horizontal support bar 10.
The 1st magnetic valve of control hoist cylinder 1 gets, the 2nd magnetic valve dead electricity of control hoist cylinder 1, the piston rod of hoist cylinder 1 drives tooth bar 2 and stretches out hoist cylinder 1, tooth bar 2 driven gears 3 rotate round about, drive connect material position that the pipe material top that feed bin chassis 7 on is installed in rise to stirring blade 9 through four sprocket wheels 5 by 4 chains 6 by Hooks coupling universal coupling 4 again, under the blocking of baffle plate 14, have only a pipe material to roll on the stirring blade 9;
The 3rd magnetic valve dead electricity of control control stirring oil cylinder 8, the 4th magnetic valve of control stirring oil cylinder 8 gets, the piston rod drivening rod 13 of hydraulic-driven stirring oil cylinder 8 also further drives horizontal support bar 10 reverse rotations, stirring blade 9 is turned to feeding position with horizontal support bar 10 by the position-reversed that connects material, the pipe material rolls to next mechanism under the gravity effect, once pipe material material loading process finishes.
When only remaining several pipes are expected, feed bin chassis 7 need rise to the height of discharging opening, and feed bin chassis 7 tilts to the discharging opening direction, because the sidewall height of spill framework 12 at the discharging opening place is lower than the sidewall height of opposite side, the pipe material on feed bin chassis 7 can not tumbled to other directions, can only tumble on the stirring blade 9 by discharging opening.When simultaneously stirring blade 9 was turned to feeding position by the position-reversed that connects material, its plane that connects material tilted to next mechanism direction, and the pipe material can roll in the next mechanism by nature.

Claims (9)

1. a pipe is expected feeding device, it is characterized in that comprising: be used for the actuating mechanism of lifting feed bin, material stirring-up mechanism, the hydraulic mechanism that is used to drive and the spill framework (12) of the pipe material that is used to overturn, described spill framework (12) overall fixed is on ground, and actuating mechanism is installed in the spill framework (12); Material stirring-up mechanism is installed on spill framework (12) one sidewalls top, and material stirring-up mechanism is connected with the discharging opening of spill framework (12) sidewall top when connecting material state.
2. by the described pipe material of claim 1 feeding device, it is characterized in that: described actuating mechanism comprises tooth bar (2), gear (3), Hooks coupling universal coupling (4), sprocket wheel (5), chain (6) and feed bin chassis (7), its middle rack (2) is fixedlyed connected with feed bin chassis (7) respectively by an end of a plurality of chains (6) through a plurality of sprocket wheels (5) by Hooks coupling universal coupling (4) after meshing with gear (3); Width in the width on feed bin chassis (7) and the spill framework (12) matches.
3. by the described pipe material of claim 1 feeding device, it is characterized in that: described material stirring-up mechanism has stirring blade (9), horizontal support bar (10) and vertical support bar (11), wherein stirring blade (9) is a plurality of, serial is installed on the horizontal support bar (10), is fixed on the ground by vertical support bar (11) again; Stirring blade (9) is connected with the discharging opening of spill framework (12) sidewall top when connecting material state.
4. by the described pipe material of claim 3 feeding device, it is characterized in that: described horizontal support bar (10) is rotationally connected by axle sleeve with vertical support bar (11).
5. by the described pipe material of claim 1 feeding device, it is characterized in that: described stirring blade (9) top is provided with the baffle plate (14) that a pipe material is passed through.
6. by the described pipe material of claim 1 feeding device, it is characterized in that: described hydraulic mechanism comprises hoist cylinder (1) and stirring oil cylinder (8), wherein the piston rod of hoist cylinder (1) and tooth bar (2) are connected, and the piston rod of stirring oil cylinder (8) and horizontal support bar (10) are connected.
7. by the described pipe material of claim 6 feeding device, it is characterized in that: described stirring oil cylinder (8) bottom is hinged with frame base (12), one end of the piston rod of stirring oil cylinder (8) and a connecting rod (13) is hinged, and the other end of this connecting rod (13) and horizontal support bar (10) are connected.
8. by the described pipe material of claim 1 feeding device, it is characterized in that: the sidewall height of described spill framework (12) at the discharging opening place is lower than the sidewall height of opposite side.
9. by the described pipe material of claim 1 feeding device, it is characterized in that: described feed bin chassis (7) tilts to the discharging opening direction.
CN2009202880975U 2009-12-16 2009-12-16 Pipe material feeding device Expired - Fee Related CN201543911U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009202880975U CN201543911U (en) 2009-12-16 2009-12-16 Pipe material feeding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009202880975U CN201543911U (en) 2009-12-16 2009-12-16 Pipe material feeding device

Publications (1)

Publication Number Publication Date
CN201543911U true CN201543911U (en) 2010-08-11

Family

ID=42599070

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2009202880975U Expired - Fee Related CN201543911U (en) 2009-12-16 2009-12-16 Pipe material feeding device

Country Status (1)

Country Link
CN (1) CN201543911U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105750982A (en) * 2016-05-16 2016-07-13 张家港市台和机械制造有限公司 Feeding device in full-automatic feeding and discharging integrated pipe cutting machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105750982A (en) * 2016-05-16 2016-07-13 张家港市台和机械制造有限公司 Feeding device in full-automatic feeding and discharging integrated pipe cutting machine

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100811

Termination date: 20131216