CN201677148U - Manufacturing and welding tool of wind power cabin frame - Google Patents

Manufacturing and welding tool of wind power cabin frame Download PDF

Info

Publication number
CN201677148U
CN201677148U CN 201020170396 CN201020170396U CN201677148U CN 201677148 U CN201677148 U CN 201677148U CN 201020170396 CN201020170396 CN 201020170396 CN 201020170396 U CN201020170396 U CN 201020170396U CN 201677148 U CN201677148 U CN 201677148U
Authority
CN
China
Prior art keywords
engine room
room frame
wind power
welding tooling
hole
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
CN 201020170396
Other languages
Chinese (zh)
Inventor
章立东
娄俊超
李静
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.)
Tianjin Seri Machinery Equipment Corp Ltd
Original Assignee
Tianjin Seri Machinery Equipment Corp 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 Tianjin Seri Machinery Equipment Corp Ltd filed Critical Tianjin Seri Machinery Equipment Corp Ltd
Priority to CN 201020170396 priority Critical patent/CN201677148U/en
Application granted granted Critical
Publication of CN201677148U publication Critical patent/CN201677148U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Butt Welding And Welding Of Specific Article (AREA)

Abstract

The utility model relates to a manufacturing and welding tool of a wind power cabin frame, which belongs to the technical field of wind power. The manufacturing and welding tool of the wind power cabin frame is characterized by comprising a tool body, a backing plate and a positioning pin; both sides of the tool body are respectively provided with two brackets, and the space positions thereof are consistent with the space positions of cabin frame box bodies; the closing surfaces of the two brackets of each side are arranged on the same plane, and the planes of the closing surfaces of the brackets on both sides are mutually in parallel; and each bracket is provided with a through hole and a positioning pin hole which are consistent with the positions of the holes on each box body of the cabin frame. The manufacturing and welding tool of the wind power cabin frame has the advantages of simple structure, low processing cost and processing difficulty, time and labor saving, high processing efficiency, high processing precision, good product quality and the like.

Description

A kind of manufacturing welding tooling of wind power engine room frame
Technical field
The utility model belongs to the wind power technology field, particularly relates to a kind of manufacturing welding tooling of wind power engine room frame.
Background technology
At present, engine room frame is a kind of equipment of wind power generating set, and the handle by four casings in both sides closes face and hole, be connected and fixed with bolt and mainframe, so four casings the flatness and the depth of parallelism height that close face, the hole location precision height on four casings.
The engine room frame classical production process is: utilize the whole processing of large-size numerical control machine, mill four casings closing face, press each hole on the coordinate brill casing.Because engine room frame integral body is frame structure, poor rigidity adds man-hour with this classical production process, and the engine room frame distortion is serious, is difficult to reach required precision, extremely wastes time and energy and the processing charges height, is unfavorable for mass production.
Summary of the invention
The utility model is to solve the technical problem that exists in the known technology, and a kind of manufacturing welding tooling of wind power engine room frame is provided.
Design concept of the present utility model is: produce the welding tooling that a cover can be repeatedly used, the elder generation of four casings of realization engine room frame processes afterwards welds.Utilize the bearing of described body, determine the locus of engine room frame casing, with alignment pin and bolt position and close fixing.Backing plate is set, makes distance between body bearing two planes equal the plate thickness that distance between four casings of engine room frame adds twice, i.e. L1=L2+2D, the installation and removal of body in the welding process are convenient in such design.Utility model has not only guaranteed precision but also simplified technology, and helps reducing cost, and realizes mass production.
A kind of manufacture method of wind power engine room frame, comprise that the handle of four casings in both sides closes the processing in face and hole, be characterized in: the elder generation that utilizes welding tooling to carry out four casings of engine room frame processes afterwards welds, process for making is, (1) processes the casing of engine room frame separately, the handle that mills casing closes face, bores dowel hole and through hole; (2) utilize alignment pin and bolt that four casings are separately fixed on the bearing of welding tooling body, insert backing plate between each casing and the bearing, utilize bolt fixing closing; (3) with casing and engine room frame integral solder; The position of casing is fixed by frock, and its distance determines that the position degree in its flatness, the depth of parallelism and hole is guaranteed by frock to the distance and the plate thickness that close between the face by side supports; (4) after welding is finished, backing plate and alignment pin are taken out, unload bolt, body is taken out from weld the engine room frame of finishing.
The manufacture method of described wind power engine room frame is characterized in: earlier independent machining box, utilize welding tooling to weld and guarantee precision afterwards.
The purpose of this utility model provides a kind ofly to be had simple in structurely, time saving and energy saving, and processing cost is low, and the location is reliable, working (machining) efficiency height, machining accuracy height, the manufacturing welding tooling of the wind power engine room frame of characteristics such as good product quality.
The technical scheme that the utility model is taked for the technical problem that exists in the solution known technology is: a kind of manufacturing welding tooling of wind power engine room frame is characterized in: welding tooling comprises body, backing plate and alignment pin; Respectively there are two bearings the body both sides, its locus and engine room frame cabinet space position consistency; The handle of two bearings of each side closes face in same plane, and side supports is parallel to each other the plane of closing the face place; Be provided with on each bearing with each casing of engine room frame on consistent through hole and the dowel hole in hole site.
The manufacturing welding tooling of the utility model wind power engine room frame can also adopt following technical scheme: the manufacturing welding tooling of described wind power engine room frame is characterized in: side supports equals close distance between the face to engine room frame two side box bodies closing the plate thickness that distance between the face adds twice.
The manufacturing welding tooling of described wind power engine room frame is characterized in: each bearing be provided with two with the engine room frame casing on the dowel hole of pin-and-hole position consistency.
The manufacturing welding tooling of described wind power engine room frame, be characterized in: dowel hole is furnished with alignment pin, and the insertion end of alignment pin is a conehead.
The manufacturing welding tooling of described wind power engine room frame is characterized in: two backing plates are set between each casing of bearing and engine room frame.
The manufacturing welding tooling of described wind power engine room frame is characterized in: the backing plate insertion end is the flat chisel type, and the other end is the gib head type.
Advantage and the good effect that the utlity model has are: the manufacturing welding tooling of wind power engine room frame is skillfully constructed owing to adopted the technical solution of the utility model, and simple in structure, a frock is repeatedly reusable; To on large-size numerical control machine, whole classical production process of processing change into: process four casings of engine room frame earlier separately, then utilize frock to weld closing to locate.Can not only satisfy required precision, and simplify technology, save a large amount of man-hours, reduce production cost, help mass production.Therefore, it is simple to the utlity model has technology, and processing charges and difficulty of processing are low, and be time saving and energy saving, and the location is reliable, and is simple and efficient to handle, and the easy operating person grasps, working (machining) efficiency height, machining accuracy height, advantages such as good product quality.
Description of drawings
Fig. 1 is a structural representation of the present utility model; Fig. 2 is a welding tooling main body structure schematic diagram; Fig. 3 is the plan structure schematic diagram of Fig. 2; Fig. 4 is the side-looking structural representation of Fig. 2; Fig. 5 is the structural representation of backing plate; Fig. 6 is the left TV structure schematic diagram of Fig. 5; Fig. 7 is the structural representation of alignment pin; Fig. 8 is a welding tooling user mode structural representation; Fig. 9 is the local structure for amplifying schematic diagram of Fig. 7.
Among the figure: 1, four of body bearings, 2, dowel hole, 3, wear the bolt through hole, 5, four casings of engine room frame both sides, 6-gib head, 7-flat chisel, 8-conehead.L1, body side supports are the distance between two planes of closing the face place, and L2, engine room frame two side box bodies are the distance between two planes of closing the face place, the thickness of D, backing plate.
The specific embodiment
For further understanding utility model content of the present utility model, characteristics and effect, exemplify following examples now, and conjunction with figs. is described in detail as follows: consult accompanying drawing 1 to Fig. 9.
The manufacture method of 1 one kinds of wind power engine room frames of embodiment, the elder generation that utilizes welding tooling to carry out four casings of engine room frame processes afterwards welds, and process for making is: (1) processes the casing of engine room frame separately, and the handle that mills casing closes face, bores dowel hole and through hole; (2) utilize alignment pin that four casings are separately fixed on the bearing of welding tooling body, insert two backing plates between each casing and the bearing, utilize bolt fixing after the adjustment closing; (3) with casing and engine room frame integral solder; The position of casing is fixed by frock, and its distance determines that the position degree in its flatness, the depth of parallelism and hole is guaranteed by frock to the distance and the plate thickness that close between the face by side supports; (4) after welding is finished, backing plate and alignment pin are taken out, unload bolt, body is taken out from weld the engine room frame of finishing.
The manufacturing welding tooling of 2 one kinds of wind power engine room frames of embodiment comprises body, backing plate and alignment pin; Respectively there are two bearings the body both sides, its locus and engine room frame cabinet space position consistency; The handle of two bearings of each side closes face in same plane, and side supports is parallel to each other the plane of closing the face place; Be provided with on each bearing with each casing of engine room frame on the consistent through hole in hole site.
Side supports equals close distance between the face to engine room frame two side box bodies closing the plate thickness that distance between the face adds twice.Each bearing be provided with two with the engine room frame casing on the dowel hole of pin-and-hole position consistency.Dowel hole is furnished with alignment pin, and the insertion end of alignment pin is a conehead.
Two backing plates are set between each casing of bearing and engine room frame.The backing plate insertion end is the flat chisel type, the convenient insertion and taking-up; The other end is the gib head type, is convenient to insert the back and fixes.
The utility model concrete structure and operation instruction thereof are as follows: see also Fig. 1-Fig. 9, utility model is a kind of manufacturing new method of wind power engine room frame, utilizes welding tooling to realize that the elder generation of four casings of engine room frame processes afterwards and welds.Described welding tooling comprises body, backing plate and alignment pin.In described body both sides two bearings are arranged respectively, four cabinet space position consistency of its locus and engine room frame.The handle of two bearings of each side closes face in same plane, and side supports is parallel to each other the plane of closing the face place, and the distance between two planes equals engine room frame two side box bodies closing the plate thickness that distance between the face adds twice, i.e. L1=L2+2D.Each bearing of described body be provided with two with each casing of engine room frame on the dowel hole of pin-and-hole position consistency, utilize alignment pin that the casing of engine room frame and the bearing of described body are located by connecting.Be provided with on each bearing of described body with each casing of engine room frame on the consistent through hole in hole site, utilize bolt to pass through hole and close the casing of engine room frame and the bearing handle of described body fixing.For ease of the installation and removal of described body of when welding, between each casing of each bearing of described body and engine room frame, two backing plates are set.
The manufacture method of present embodiment: steel plate, the blanking of H shaped steel, be welded into the contour structures of body; The handle that mills four bearings of body closes face, two bearings that guarantee each side are closing face in same plane, side supports is parallel to each other the plane of closing the face place, and the distance between two planes equals the plate thickness that distance between four casings of engine room frame adds twice, i.e. L1=L2+2D; Utilize Digit Control Machine Tool, press the coordinate of through hole and dowel hole on four casings of engine room frame, corresponding one by one accurately boring, fraising on four bearings of body; Make alignment pin; Make backing plate, for guaranteeing all plate thickness unanimities, the preferably unified backing plate that grinds.
Use utility model and make the method for engine room frame: the first step: process the casing of engine room frame separately, the handle that mills casing closes face, bores dowel hole and through hole; Second step: utilize alignment pin that four casings are separately fixed on the bearing of body, insert two backing plates between each casing and the bearing, utilize bolt fixing after adjusting closing; The 3rd step: casing and engine room frame integral solder are arrived together.This moment, the position of casing was fixed by frock, and its distance L 2 determines that the position degree in its flatness, the depth of parallelism and each hole also can be guaranteed by frock to the plate thickness 2D that closes distance L 1 between the face and twice by side supports; The 4th step: after welding is finished, knock the flat chisel type bottom and the alignment pin conehead of backing plate, backing plate and alignment pin are taken out, unload bolt, because the distance L 1 between body bearing two planes is less than the distance L 2 between four casings of engine room frame, can take out body easily this moment from weld the engine room frame of finishing.

Claims (6)

1. the manufacturing welding tooling of a wind power engine room frame, it is characterized in that: welding tooling comprises body, backing plate and alignment pin; Respectively there are two bearings the body both sides, its locus and engine room frame cabinet space position consistency; The handle of two bearings of each side closes face in same plane, and side supports is parallel to each other the plane of closing the face place; Be provided with on each bearing with each casing of engine room frame on consistent through hole and the dowel hole in hole site.
2. according to the manufacturing welding tooling of the described wind power engine room frame of claim 1, it is characterized in that: side supports equals close distance between the face to engine room frame two side box bodies closing the plate thickness that distance between the face adds twice.
3. according to the manufacturing welding tooling of the described wind power engine room frame of claim 1, it is characterized in that: each bearing be provided with two with the engine room frame casing on the dowel hole of pin-and-hole position consistency.
4. according to the manufacturing welding tooling of the described wind power engine room frame of claim 3, it is characterized in that: dowel hole is furnished with alignment pin, and the insertion end of alignment pin is a conehead.
5. according to the manufacturing welding tooling of the described wind power engine room frame of claim 1, it is characterized in that: two backing plates are set between each casing of bearing and engine room frame.
6. according to the manufacturing welding tooling of the described wind power engine room frame of claim 5, it is characterized in that: the backing plate insertion end is the flat chisel type, and the other end is the gib head type.
CN 201020170396 2010-04-26 2010-04-26 Manufacturing and welding tool of wind power cabin frame Expired - Fee Related CN201677148U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201020170396 CN201677148U (en) 2010-04-26 2010-04-26 Manufacturing and welding tool of wind power cabin frame

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201020170396 CN201677148U (en) 2010-04-26 2010-04-26 Manufacturing and welding tool of wind power cabin frame

Publications (1)

Publication Number Publication Date
CN201677148U true CN201677148U (en) 2010-12-22

Family

ID=43342209

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201020170396 Expired - Fee Related CN201677148U (en) 2010-04-26 2010-04-26 Manufacturing and welding tool of wind power cabin frame

Country Status (1)

Country Link
CN (1) CN201677148U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101804545A (en) * 2010-04-26 2010-08-18 天津赛瑞机器设备有限公司 Manufacturing method of wind power engine room frame and welding jig thereof
CN115446532A (en) * 2022-10-06 2022-12-09 南通鋆鼎精密金属制造有限公司 Manufacturing and welding tool for wind power engine room frame

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101804545A (en) * 2010-04-26 2010-08-18 天津赛瑞机器设备有限公司 Manufacturing method of wind power engine room frame and welding jig thereof
CN101804545B (en) * 2010-04-26 2012-07-04 天津赛瑞机器设备有限公司 Manufacturing method of wind power engine room frame and welding jig thereof
CN115446532A (en) * 2022-10-06 2022-12-09 南通鋆鼎精密金属制造有限公司 Manufacturing and welding tool for wind power engine room frame
CN115446532B (en) * 2022-10-06 2023-09-26 南通鋆鼎精密科技股份有限公司 Manufacturing and welding tool for wind power cabin frame

Similar Documents

Publication Publication Date Title
CN201341072Y (en) Mold for punching slots on stator piece, cutting air gap and separating rotator piece for electric motor
CN103056687B (en) Benchmark repair clamp for vane
CN101804545B (en) Manufacturing method of wind power engine room frame and welding jig thereof
CN201677148U (en) Manufacturing and welding tool of wind power cabin frame
CN203003517U (en) Tool used for drilling location pinhole of joint body
CN203062358U (en) Auxiliary machining clamp of cylinder cover
CN202135012U (en) Stator core lamination tooling of wind power motor
CN201338118Y (en) Drilling tool for machining gas turbine transition section base
CN206578547U (en) A kind of Digit Control Machine Tool damping base
CN202934353U (en) Auxiliary processing clamp for cylinder cover
CN202343956U (en) Mains shaft connection structure for horizontal multi-shaft numerically-controlled machine tool
CN201895256U (en) Double-machining grinding machine for end surface of inner hole
CN101850493B (en) Method for processing material piling and taking machine track by using tools
CN201815828U (en) Butt-welding tool set for engine room platform of wind power equipment
CN202271129U (en) Tool for welding engine room frame of wind turbine generator system
CN201295860Y (en) Measuring tool setting device for processing rotor key slot
CN101579787B (en) Manufacturing method of steel-rolling cooling bed roller-oriented support platform
CN201279148Y (en) Stethoscope head
CN202684572U (en) Hydraulic tooling clamp
CN213671832U (en) Spindle box system for machine tool
CN201792001U (en) Equipment for processing four holes of air chamber bracket
CN220407901U (en) Combined machining tool for front section of composite material thin-wall large-opening engine shell
CN202985433U (en) Large-scale wind power generator set cabin shield positioning tooling
CN209887225U (en) Wireless data acquisition hardware of machine tool
CN217571757U (en) Friction welding and milling integrated device

Legal Events

Date Code Title Description
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: 20101222

Termination date: 20120426