CN221047811U - Tooling device for manufacturing hanging bracket for engineering - Google Patents
Tooling device for manufacturing hanging bracket for engineering Download PDFInfo
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- CN221047811U CN221047811U CN202322572176.1U CN202322572176U CN221047811U CN 221047811 U CN221047811 U CN 221047811U CN 202322572176 U CN202322572176 U CN 202322572176U CN 221047811 U CN221047811 U CN 221047811U
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- supporting rod
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- 238000004519 manufacturing process Methods 0.000 title claims abstract description 23
- 238000002360 preparation method Methods 0.000 claims description 4
- 238000010276 construction Methods 0.000 description 5
- 238000003466 welding Methods 0.000 description 3
- 238000010586 diagram Methods 0.000 description 2
- 238000009434 installation Methods 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 238000004080 punching Methods 0.000 description 2
- 229910000831 Steel Inorganic materials 0.000 description 1
- 239000013065 commercial product Substances 0.000 description 1
- 238000013016 damping Methods 0.000 description 1
- 238000009826 distribution Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000009439 industrial construction Methods 0.000 description 1
- 230000001788 irregular Effects 0.000 description 1
- 238000003754 machining Methods 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 239000010959 steel Substances 0.000 description 1
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Abstract
The utility model relates to a tool device for manufacturing a crane for engineering, which comprises a base, a Y-direction positioning device and an X-direction positioning device. The top of the base is respectively provided with the Y-direction positioning device and the X-direction positioning device; and the Y-direction positioning device is provided with a hanging bracket. After the utility model is adopted, the hanger is simple to manufacture, the processing speed is high, and the manufacture quality of the hanger can be ensured.
Description
Technical Field
The utility model relates to the technical field of industrial and civil building engineering construction, in particular to a tool device for manufacturing a lifting frame for engineering.
Background
In the construction engineering project, no matter civil construction or industrial construction, the use of the pipeline hanging frame is involved, and the manufacturing quality requirement of the pipeline hanging frame is high. At present, pipeline gallows form is various, and the size is different, and pipeline gallows preparation does not have special manufacturing installation yet, and operating personnel adopts hand welding, the mode of punching to accomplish the gallows preparation during on-the-spot preparation for the gallows of making appear angle steel welding non-perpendicular, turn round, the quality is poor, the welding is infirm, the problem such as irregular that punches, seriously influence installation quality and construction progress.
Disclosure of utility model
The technical problem to be solved by the utility model is to provide a tooling device for manufacturing the engineering hanging bracket, which can ensure the manufacturing quality of the hanging bracket.
In order to solve the problems, the tooling device for manufacturing the engineering hanging bracket is characterized in that: the device comprises a base, a Y-direction positioning device and an X-direction positioning device; the top of the base is respectively provided with the Y-direction positioning device and the X-direction positioning device; and the Y-direction positioning device is provided with a hanging bracket.
The base comprises a bracket and connecting piece foot fixing blocks which are arranged at four corners of the bottom of the bracket and fixed on the ground; the support is provided with a tooling table, and the tooling table is respectively provided with a Y-direction graduated scale, an X-direction graduated scale and an X-direction positioning groove; the Y-direction positioning devices are arranged on two sides of the Y-direction graduated scale; the X-direction positioning device is arranged on one side of the X-direction graduated scale; an X-direction positioning block II is arranged in the X-direction positioning groove.
The Y-direction positioning device comprises two pairs of Y-direction guide rod supports I and two pairs of Y-direction guide rod supports II; two Y-direction guide rods are arranged in parallel between the two pairs of Y-direction guide rod supports II, and two ends of each Y-direction guide rod are fixed on the bracket through the Y-direction guide rod supports I; the two Y-direction guide rods are arranged on two sides of the tool table and are parallel to the Y-direction graduated scale; each Y-direction guide rod is provided with a Y-direction adjusting block, and Y-direction supporting rods crossing the Y-direction adjusting blocks are arranged on the two Y-direction adjusting blocks; a pair of Y-direction positioning handles are symmetrically arranged at the top of the Y-direction supporting rod; a Y-direction chute is arranged on the Y-direction supporting rod, and a Y-direction positioning block I, a Y-direction positioning block II, a Y-direction positioning block III and a Y-direction positioning block IV are respectively arranged in the Y-direction chute, and a Y-direction positioning block I and a Y-direction positioning block II in the hanger are clamped between the Y-direction positioning block I and the Y-direction positioning block II; and a Y-direction positioning III and a Y-direction positioning IV in the hanging bracket are clamped between the Y-direction positioning III and the Y-direction positioning IV.
And two ends of the Y-direction supporting rod are connected with the Y-direction supporting rod through the Y-direction adjusting block.
The Y-direction positioning block I, the Y-direction positioning block II and the Y-direction positioning block III are respectively fixed on the Y-direction supporting rod through Y-direction locking nuts.
And the Y-direction positioning block IV is fixedly connected with the Y-direction supporting rod.
The X-direction positioning device comprises two X-direction guide rods which are arranged between two X-direction guide rod supports and are arranged in parallel; the X-direction guide rod is respectively provided with an X-direction adjusting block with a square groove and a puncher adjusting block; an X-direction supporting rod in a shape is arranged on the X-direction adjusting block, and an X-direction positioning handle I is arranged on the X-direction supporting rod; one end of the X-direction supporting rod is provided with an X-direction positioning block I, and the other end of the X-direction supporting rod is provided with an X-direction positioning handle II; the puncher adjusting block is provided with a puncher guide rail, and the puncher guide rail is provided with a puncher mounting block; and the puncher mounting block is provided with a puncher.
The X-direction supporting rod is connected with one side of the bracket through the X-direction positioning handle II.
The X-direction positioning handle I penetrates through the X-direction adjusting block and is connected with the X-direction supporting rod and is tightly pressed.
Compared with the prior art, the utility model has the following advantages:
1. The Y-direction positioning device and the X-direction positioning device are arranged in the utility model, and the tooling positioning of the hanger can be accurately completed by adjusting the corresponding position adjusting blocks on the Y-direction positioning device and locking the corresponding positioning blocks.
2. The puncher is arranged on the position regulator, and can meet the punching requirement of the hanger on the continuous position by sliding back and forth in the X direction.
3. The adjustable Y-direction positioning device and the X-direction positioning device are arranged in the utility model, so that the adjustable Y-direction positioning device and the X-direction positioning device are applicable to manufacturing of pipeline hangers of different sizes, the pipeline hangers have good quality effect, and the pipeline hangers are molded at one time, so that the increase of reworking cost and the influence of construction period caused by nonstandard machining process are avoided.
4. The utility model has the advantages of convenient material taking, convenient processing and meeting the use requirement.
5. After the utility model is adopted, the hanger is simple to manufacture, the processing speed is high, and the manufacture quality of the hanger can be ensured.
Drawings
The following describes the embodiments of the present utility model in further detail with reference to the drawings.
FIG. 1 is a distribution of engineering pipeline hanger anchor points.
Fig. 2 is a schematic structural view of the present utility model.
Fig. 3 is a schematic structural view of a base frame according to the present utility model.
Fig. 4 is a schematic structural diagram of a Y-directional positioning device according to the present utility model.
Fig. 5 is a top view of the Y-direction positioning device of the present utility model.
Fig. 6 is a top view of the X-direction positioning device of the present utility model.
Fig. 7 is a schematic structural diagram of an X-direction positioning device according to the present utility model.
In the figure: 1-a base frame; 2-Y direction positioning device; 3-X direction positioning device; 4-hanging bracket; 101-a bracket; 102-a ground anchor fixing block; 103-a tool table; 104-Y direction graduated scale; 105-X direction scale; 106-X direction positioning grooves; 201-Y direction adjusting block; 202-Y guide bar; 203-Y guide bar support I; 204-Y guide bar support II; 205-Y direction positioning handle; 206-Y direction positioning block I; 207-Y positioning block II; 208-Y direction lock nut; 209-Y positioning block III; 210-Y positioning block IV; 211-Y direction supporting rods; 212-Y direction sliding grooves; 301-X direction positioning block I; 302-X direction supporting rods; 303-X direction adjusting block; 304-X positioning handle I; 305-X direction positioning handle II; 306-X guide bar; 307-X direction guide rod support; 308-a hole puncher rail; 309-a hole punch adjustment block; 310-puncher; 311-a hole puncher mounting block; 312-X direction positioning block II; 401-Y direction positioning I; 402-Y positioning II; 403-Y positioning III; 404-Y direction positioning IV; 405-fixing and positioning; 406-X positioning I; 407-X direction positioning II; 408-X orientation III.
Detailed Description
As shown in fig. 1 to 7, a tooling device for manufacturing a hanger for engineering comprises a base 1, a Y-directional positioning device 2 and an X-directional positioning device 3. The top of the base 1 is respectively provided with a Y-direction positioning device 2 and an X-direction positioning device 3; the Y-direction positioning device 2 is provided with a hanging bracket 4.
Wherein: the base 1 comprises a bracket 101 and connecting piece anchor fixing blocks 102 which are arranged at four corners of the bottom of the bracket 101 and fixed on the ground; a tooling table 103 is arranged on the bracket 101, and a Y-direction graduated scale 104, an X-direction graduated scale 105 and an X-direction positioning groove 106 are respectively arranged on the tooling table 103; y-direction positioning devices 2 are arranged on two sides of the Y-direction graduated scale 104; an X-direction positioning device 3 is arranged on one side of the X-direction graduated scale 105; an X-direction positioning block II 312 is arranged in the X-direction positioning groove 106.
The Y-direction positioning device 2 comprises two pairs of Y-direction guide rod supports I203 and two pairs of Y-direction guide rod supports II 204; two Y-direction guide rods 202 are arranged in parallel between two pairs of Y-direction guide rod supports II 204, and two ends of each Y-direction guide rod 202 are fixed on the bracket 101 through a Y-direction guide rod support I203; two Y-direction guide rods 202 are arranged on two sides of the tool table 103 and are parallel to the Y-direction graduated scale 104; each Y-direction guide rod 202 is provided with a Y-direction adjusting block 201, and Y-direction supporting rods 211 which cross the Y-direction adjusting blocks 201 are arranged on the two Y-direction adjusting blocks 201; a pair of Y-direction positioning handles 205 are symmetrically arranged at the top of the Y-direction supporting rod 211; a Y-direction chute 212 is arranged on the Y-direction supporting rod 211, and a Y-direction positioning block I206, a Y-direction positioning block II 207, a Y-direction positioning block III 209 and a Y-direction positioning block IV 210 are respectively arranged in the Y-direction chute 212; y-direction positioning I401 and Y-direction positioning II 402 in the hanging bracket 4 are clamped between the Y-direction positioning block I206 and the Y-direction positioning block II 207; y-direction positioning III 403 and Y-direction positioning IV 404 in the hanging bracket 4 are clamped between the Y-direction positioning III 209 and the Y-direction positioning IV 210.
Both ends of the Y-direction support bar 211 are connected to the Y-direction guide bar 202 via Y-direction adjustment blocks 201.
The positions of the Y-direction positioning block I206, the Y-direction positioning block II 207 and the Y-direction positioning block III 209 can be adjusted on the Y-direction sliding groove 212, and the Y-direction positioning blocks I, II and III are respectively fixed on the Y-direction supporting rod 211 through the Y-direction locking nuts 208.
The Y-direction positioning block IV 210 is fixedly connected with the Y-direction supporting rod 211 so as to keep the position unchanged.
The X-direction positioning device 3 comprises two X-direction guide rods 306 which are arranged between two X-direction guide rod supports 307 and are arranged in parallel; an X-direction adjusting block 303 with a square groove and a puncher adjusting block 309 are respectively arranged on the X-direction guide rod 306; an X-direction supporting rod 302 in a shape of a Chinese character' is arranged on the X-direction adjusting block 303, and an X-direction positioning handle I304 is arranged on the X-direction supporting rod 302; one end of the X-direction supporting rod 302 is provided with an X-direction positioning block I301, and the other end is provided with an X-direction positioning handle II 305; the puncher adjusting block 309 is provided with a puncher guide rail 308, and the puncher guide rail 308 is provided with a sliding puncher mounting block 311; the hole puncher 310 is mounted on the hole puncher mounting block 311.
The X-direction supporting rod 302 is connected with one side of the bracket 101 through an X-direction positioning handle II 305.
The X-direction positioning handle I304 passes through the X-direction adjusting block 303 and is connected with the X-direction supporting rod 302 and is pressed tightly.
The Y-direction adjusting block 201 of the Y-direction positioning device 2 of the present utility model is a pull-wire device with a damper, which is similar in principle to a tape measure, and which is subjected to a portion of the damping force when pulled apart.
X-direction positioning block II 312 can be used for positioning X-direction positioning I406 and X-direction positioning II 407 in the hanging frame 4. Meanwhile, the X-direction positioning block II 312 and the base 1 together limit and position the X-direction positioning III 408.
The bracket 101 can position a fixed position 405 in the hanger 4.
Each positioning handle is a commercial product and can also be prepared by the method of linking the positioning handles (https:// mbd. Baidu. Com/newspage/data/videolandingnid =sv_118911684722627180 & sourceFrom=share).
According to the utility model, the Y-direction positioning device 2 and the X-direction positioning device 3 are adjusted according to the X-direction graduated scale 105 and the Y-direction graduated scale 104, so that the positioning of the Y-direction positioning I401, the Y-direction positioning II 402, the Y-direction positioning III 403, the Y-direction positioning IV 404, the X-direction positioning I406, the X-direction positioning II 407 and the X-direction positioning III 408 of the hanging frame 4 is realized.
In use, an operator pulls the Y-direction positioning device 2 away through the Y-direction positioning handle 205, adjusts the proper size against the Y-direction scale 104, and places two sections of Y-direction hanger material on the tooling table 103. Then, the X-direction adjusting block 303 on the X-direction positioning device 3 is moved, and the X-direction supporting rod 302 is positioned in a proper position against the X-direction graduated scale 105, and the X-direction positioning handle I304 and the X-direction positioning handle II 305 are locked. The tooling positioning of the hanger 4 is completed. The punch requirements are then completed by moving the punch adjustment block 309.
Claims (9)
1. The utility model provides a tool equipment of gallows preparation for engineering which characterized in that: the device comprises a base (1), a Y-direction positioning device (2) and an X-direction positioning device (3); the top of the base (1) is respectively provided with the Y-direction positioning device (2) and the X-direction positioning device (3); and a hanging bracket (4) is arranged on the Y-direction positioning device (2).
2. The tooling device for manufacturing the engineering hanger according to claim 1, wherein: the base (1) comprises a bracket (101) and connecting piece anchor fixing blocks (102) which are arranged at four corners of the bottom of the bracket (101) and fixed on the ground; a tooling table (103) is arranged on the bracket (101), and a Y-direction graduated scale (104), an X-direction graduated scale (105) and an X-direction positioning groove (106) are respectively arranged on the tooling table (103); the Y-direction positioning devices (2) are arranged on two sides of the Y-direction graduated scale (104); one side of the X-direction graduated scale (105) is provided with the X-direction positioning device (3); an X-direction positioning block II (312) is arranged in the X-direction positioning groove (106).
3. A tooling device for manufacturing an engineering hanger as claimed in claim 2, wherein: the Y-direction positioning device (2) comprises two pairs of Y-direction guide rod supports I (203) and two pairs of Y-direction guide rod supports II (204); two Y-direction guide rods (202) are arranged in parallel between two pairs of Y-direction guide rod supports II (204), and two ends of each Y-direction guide rod (202) are fixed on the bracket (101) through the Y-direction guide rod supports I (203); the two Y-direction guide rods (202) are arranged on two sides of the tool table (103) and are parallel to the Y-direction graduated scale (104); each Y-direction guide rod (202) is provided with a Y-direction adjusting block (201), and Y-direction supporting rods (211) crossing the Y-direction adjusting blocks (201) are arranged on the two Y-direction adjusting blocks (201); a pair of Y-direction positioning handles (205) are symmetrically arranged at the top of the Y-direction supporting rod (211); a Y-direction chute (212) is arranged on the Y-direction supporting rod (211), and a Y-direction positioning block I (206), a Y-direction positioning block II (207), a Y-direction positioning block III (209) and a Y-direction positioning block IV (210) are respectively arranged on the Y-direction chute (212); a Y-direction positioning I (401) and a Y-direction positioning II (402) in the hanging bracket (4) are clamped between the Y-direction positioning block I (206) and the Y-direction positioning block II (207); and a Y-direction positioning III (403) and a Y-direction positioning IV (404) in the hanging bracket (4) are clamped between the Y-direction positioning III (209) and the Y-direction positioning IV (210).
4. A tooling device for manufacturing an engineering hanger as claimed in claim 3, wherein: two ends of the Y-direction supporting rod (211) are connected with the Y-direction supporting rod (202) through the Y-direction adjusting block (201).
5. A tooling device for manufacturing an engineering hanger as claimed in claim 3, wherein: the Y-direction positioning block I (206), the Y-direction positioning block II (207) and the Y-direction positioning block III (209) are respectively fixed on the Y-direction supporting rod (211) through Y-direction locking nuts (208).
6. A tooling device for manufacturing an engineering hanger as claimed in claim 3, wherein: the Y-direction positioning block IV (210) is fixedly connected with the Y-direction supporting rod (211).
7. A tooling device for manufacturing an engineering hanger as claimed in claim 2, wherein: the X-direction positioning device (3) comprises two X-direction guide rods (306) which are arranged between two X-direction guide rod supports (307) and are arranged in parallel; an X-direction adjusting block (303) with a square groove and a puncher adjusting block (309) are respectively arranged on the X-direction guide rod (306); an X-direction supporting rod (302) in a shape is arranged on the X-direction adjusting block (303), and an X-direction positioning handle I (304) is arranged on the X-direction supporting rod (302); one end of the X-direction supporting rod (302) is provided with an X-direction positioning block I (301), and the other end is provided with an X-direction positioning handle II (305); the puncher adjusting block (309) is provided with a puncher guide rail (308), and the puncher guide rail (308) is provided with a puncher mounting block (311); and the puncher mounting block (311) is provided with a puncher (310).
8. The tooling device for manufacturing the engineering hanger according to claim 7, wherein: the X-direction supporting rod (302) is connected with one side of the bracket (101) through the X-direction positioning handle II (305).
9. The tooling device for manufacturing the engineering hanger according to claim 7, wherein: the X-direction positioning handle I (304) penetrates through the X-direction adjusting block (303) and is connected with the X-direction supporting rod (302) and is pressed tightly.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202322572176.1U CN221047811U (en) | 2023-09-21 | 2023-09-21 | Tooling device for manufacturing hanging bracket for engineering |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202322572176.1U CN221047811U (en) | 2023-09-21 | 2023-09-21 | Tooling device for manufacturing hanging bracket for engineering |
Publications (1)
Publication Number | Publication Date |
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CN221047811U true CN221047811U (en) | 2024-05-31 |
Family
ID=91225527
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202322572176.1U Active CN221047811U (en) | 2023-09-21 | 2023-09-21 | Tooling device for manufacturing hanging bracket for engineering |
Country Status (1)
Country | Link |
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CN (1) | CN221047811U (en) |
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2023
- 2023-09-21 CN CN202322572176.1U patent/CN221047811U/en active Active
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