CN220480905U - Clamp for continuously processing tee pipe fitting of copper alloy drainer - Google Patents

Clamp for continuously processing tee pipe fitting of copper alloy drainer Download PDF

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Publication number
CN220480905U
CN220480905U CN202320744380.4U CN202320744380U CN220480905U CN 220480905 U CN220480905 U CN 220480905U CN 202320744380 U CN202320744380 U CN 202320744380U CN 220480905 U CN220480905 U CN 220480905U
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pipe fitting
groove
shaped
way pipe
circular
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CN202320744380.4U
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Chinese (zh)
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陈复旦
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Nixi Sanitary Ware Zhejiang Co ltd
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Nixi Sanitary Ware Zhejiang Co ltd
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Abstract

The utility model belongs to the technical field of clamps, and particularly relates to a clamp for continuously processing a three-way pipe fitting of a copper alloy drainer. The T-shaped blocks on two sides move towards the middle to drive the upper L-shaped clamp column fixedly connected by bolts to clamp the three-way pipe fitting, the vertical arc-shaped groove and the arc-shaped notch arranged in the L-shaped clamp column fix the three-way pipe fitting, the three-way pipe fitting is clamped on the circular polygonal body in the cylindrical base after moving, and the shallow groove arranged on the circular polygonal body is used for placing the bottom of the three-way pipe fitting.

Description

Clamp for continuously processing tee pipe fitting of copper alloy drainer
Technical Field
The utility model belongs to the technical field of clamps, and relates to a clamp for continuously processing a three-way pipe fitting of a copper alloy drainer.
Background
The machining of the flange end face is a key process of pipe fitting machining, and after the problem of a cutter is solved, the problem of installation and positioning of the special pipe is faced; the ordinary boring machine can easily realize that the straight pipe is arranged on the working platform, but the installation and the positioning of the special-shaped pipe such as the three-way pipe are difficult, the three-way pipe is widely used in pipe networks for conveying liquid and gas, and the three-way pipe is made of different materials due to different conveying mediums: cast iron, cast steel, cast copper, cast aluminum, plastic, glass, and the like. In the course of working of metal three-way pipe, there is the burr on the surface of tee pipe spare, need polish the burr and handle, need use anchor clamps to fix it in polishing processing, current three-way pipe machining anchor clamps in the use, can not carry out continuous processing to tee pipe spare, need accomplish the burring to a tee pipe spare through many times centre gripping adjustment, waste time and energy, consequently, propose a copper alloy drainer tee pipe spare anchor clamps for continuous processing to above-mentioned problem.
Disclosure of Invention
The utility model aims to solve the problems and provides a clamp for continuously processing a three-way pipe fitting of a copper alloy drainer.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
the utility model provides a anchor clamps are used in continuous processing of copper alloy drainer tee bend pipe fitting, includes the cylinder base, be equipped with T type recess and circular polygon recess in the cylinder base top, and circular polygon recess both sides are equipped with T type recess two, circular polygon recess other both sides are equipped with a plurality of cylinder type recesses, be equipped with circular polygon in the circular polygon recess, circular polygon top is equipped with tee bend pipe fitting, be equipped with T type piece in the T type recess, T type piece top is equipped with L type anchor clamps, be equipped with vertical arc groove in the L type anchor clamps vertical end, and be equipped with the arc breach on the vertical arc groove lateral wall, and all be equipped with tee bend pipe fitting in vertical arc groove and the arc breach.
The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer is characterized in that two T-shaped grooves are formed in the center line in the upper plane of the cylindrical base, the T-shaped grooves penetrate through the upper plane of the cylindrical base, a circular polygonal groove is formed in the middle of the upper plane of the cylindrical base, two sides of the circular polygonal groove are communicated with the two T-shaped grooves, and the bottom surfaces of the circular polygonal groove are consistent with the bottom surfaces of the T-shaped grooves.
The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer is characterized in that a cylindrical groove is formed in the upper plane of the cylindrical base, the cylindrical groove is formed in the other two sides of the circular polygonal groove, three cylindrical grooves are formed in one side of the cylindrical groove, and a distance is reserved between the cylindrical groove and the circular polygonal groove.
The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer is characterized in that a circular polygonal body is fixedly connected in the circular polygonal groove, the upper plane of the circular polygonal body is consistent with the upper plane of the cylindrical base, and the upper plane of the circular polygonal body is provided with the groove.
The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer is characterized in that a T-shaped block is connected in a sliding mode in the T-shaped groove, the upper plane of the T-shaped block is identical to the upper plane of the cylindrical base, second bolt holes are formed in the center line of the T-shaped block, two second bolt holes are formed in the center line of the T-shaped block, and a distance is reserved between the inner side of the T-shaped block and the outer circumferential surface of the circular polygon.
The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer is characterized in that the upper plane of the T-shaped block is fixedly connected with the L-shaped clamping column, a first bolt hole is formed in the L-shaped clamping column, a bolt is connected in the first bolt hole and the second bolt hole, and meanwhile the bottom surface of the L-shaped clamping column is tightly attached to the upper plane of the cylindrical base.
The clamp for continuously processing the three-way pipe fitting of the copper alloy drainer is characterized in that a vertical arc-shaped groove is formed in the inner side of the vertical end of the L-shaped clamp column, and the vertical arc-shaped grooves in the vertical ends of the two L-shaped clamp columns are opposite.
The clamp for continuously processing the three-way pipe fitting of the copper alloy drainer is characterized in that the three-way pipe fitting is clamped in the vertical arc-shaped groove, and the inner groove surface of the vertical arc-shaped groove is tightly attached to the outer surface of the three-way pipe fitting.
The clamp for continuously processing the three-way pipe fitting of the copper alloy drainer is characterized in that an arc notch is formed above the front face of the vertical end of the L-shaped clamp column, and a protruding end of the three-way pipe fitting is clamped in the arc notch.
The clamp for continuously processing the three-way pipe fitting of the copper alloy drainer is characterized in that the bottom of the three-way pipe fitting is placed in the groove.
Compared with the prior art, the utility model has the advantages that:
the T-shaped grooves and the circular polygonal grooves are arranged in the upper plane of the cylindrical base and are matched with each other to fix the clamp component above, the T-shaped blocks arranged in the T-shaped grooves slide inside, the T-shaped blocks at the two sides move towards the middle to drive the upper L-shaped clamp column fixedly connected by the bolts to clamp the three-way pipe fitting, the vertical arc grooves and the arc gaps arranged in the L-shaped clamp column fix the vertical arc surfaces and the protrusions of the three-way pipe fitting, the three-way pipe fitting is clamped right above the circular polygonal body in the cylindrical base after the two sides move, the grooves arranged on the circular polygonal body and the three-way pipe fitting are fixed in the grooves, so that the L-shaped clamp column can move back and forth under the pushing of the T-shaped blocks, the continuous processing effect can be achieved when the three-way pipe fitting is processed, the vertical arc grooves and the arc gaps arranged in the L-shaped clamp column just fix the parts of the three-way pipe fitting, repeated clamping is not needed, and time and labor are saved when people process the three-way pipe fitting.
Additional advantages, objects, and features of the utility model will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the utility model.
Drawings
FIG. 1 is an overall schematic of the present utility model;
FIG. 2 is a schematic view of a cylindrical base of the present utility model;
FIG. 3 is a schematic diagram of a T-block of the present utility model;
FIG. 4 is a schematic view of an L-clamp of the present utility model;
FIG. 5 is a schematic view of a three-way pipe fitting according to the present utility model
In the figure: 1. a cylindrical base; 11. a T-shaped groove; 12. a circular polygonal groove; 13. a cylindrical groove; 2. round polygonal body; 21. a groove; 3. an L-shaped clamping column; 31. a first bolt hole; 32. a vertical arc-shaped groove; 33. an arc-shaped notch; 4. a T-shaped block; 41. a second bolt hole; 5. and a three-way pipe fitting.
Detailed Description
The utility model is further described below with reference to the accompanying drawings.
As shown in fig. 1-5, a clamp for continuously processing a three-way pipe fitting of a copper alloy drainer comprises a cylindrical base 1, wherein a T-shaped groove 11 and a circular polygonal groove 12 are arranged in the upper part of the cylindrical base 1, two sides of the circular polygonal groove 12 are provided with the T-shaped groove 11, the other two sides of the circular polygonal groove 12 are provided with a plurality of cylindrical grooves 13, a circular polygonal body 2 is arranged in the circular polygonal groove 12, a three-way pipe fitting 5 is arranged above the circular polygonal body 2, a T-shaped block 4 is arranged in the T-shaped groove 11, an L-shaped clamping column 3 is arranged above the T-shaped block 4, a vertical arc groove 32 is arranged in the vertical end of the L-shaped clamping column 3, an arc notch 33 is arranged on the side wall of the vertical arc groove 32, and three-way pipe fittings 5 are arranged in the vertical arc groove 32 and the arc notch 33.
T-shaped grooves 11 are formed in the central line in the upper plane of the cylindrical base 1, two T-shaped grooves 11 are formed, meanwhile, the T-shaped grooves 11 penetrate through the upper plane of the cylindrical base 1, a circular polygonal groove 12 is formed in the middle of the upper plane of the cylindrical base 1, two sides of the circular polygonal groove 12 are communicated with the two T-shaped grooves 11, and the bottom surfaces of the circular polygonal grooves 12 are consistent with the bottom surfaces of the T-shaped grooves 11.
The T-shaped groove 11 and the circular polygonal groove 12 are formed above the cylindrical base 1 so that the components above the cylindrical base can slide on the surface, the center point after sliding is positioned at the center of the circular polygonal groove 12, and the three-way pipe fitting 5 to be processed is always processed at the original position.
Further, a cylindrical groove 13 is formed in the upper plane of the cylindrical base 1, the cylindrical groove 13 is formed in the other two sides of the circular polygonal groove 12, three cylindrical grooves 13 are formed in one side of the cylindrical groove 13, and a distance is reserved between the cylindrical groove 13 and the circular polygonal groove 12.
Six cylindrical grooves 13 are arranged on the other two sides of the circular polygonal groove 12, and three cylindrical grooves are arranged on one side of each circular polygonal groove, so that positioning parts are arranged on the cylindrical base 1, and the three-way pipe fitting 5 is conveniently positioned.
The circular polygonal body 2 is fixedly connected in the circular polygonal groove 12, the upper plane of the circular polygonal body 2 is consistent with the upper plane of the cylindrical base 1, and the upper plane of the circular polygonal body 2 is provided with a groove 21.
Through T type recess 11 sliding connection T type piece 4, and the plane is unanimous on the T type piece 4 and the cylinder base 1, second bolt hole 41 has been seted up on the 4 central lines of T type piece, and second bolt hole 41 is two, there is the distance between the inboard of T type piece 4 and the circular polygonal body 2 periphery face.
T-shaped blocks 4 clamped in the T-shaped grooves 11, the T-shaped blocks 4 can slide back and forth in the cylindrical base 1, round polygonal bodies 2 are arranged between the T-shaped blocks 4 on two sides, and when the T-shaped blocks 4 slide to the middle, the upper three-way pipe fitting 5 is fixed above the round polygonal bodies 2.
Further, the upper plane of the T-shaped block 4 is fixedly connected with the L-shaped clamping column 3, a first bolt hole 31 is formed in the L-shaped clamping column 3, a bolt is connected with the first bolt hole 31 and the second bolt hole 41, and meanwhile the bottom surface of the L-shaped clamping column 3 is tightly attached to the upper plane of the cylindrical base 1.
After the upper part of the T-shaped block 4 is connected with the first bolt hole 31 on the L-shaped clamping column 3 through the second bolt hole 41, the L-shaped clamping column 3 and the T-shaped block 4 are integrated, the bottom of the L-shaped clamping column 3 slides on the upper plane of the cylindrical base 1 through the movement of the T-shaped block 4, and thus the two L-shaped clamping columns 3 can clamp the three-way pipe fitting 5 when moving to the middle.
A vertical arc groove 32 is formed in the inner side of the vertical end of the L-shaped clamp column 3, and the vertical arc grooves 32 in the vertical ends of the two L-shaped clamp columns 3 are opposite.
Further, the vertical arc-shaped groove 32 is internally provided with the three-way pipe fitting 5 in a clamping manner, and the inner groove surface of the vertical arc-shaped groove 32 is tightly attached to the outer surface of the three-way pipe fitting 5.
The vertical arc surfaces of the three-way pipe fitting 5 are just clamped when the vertical arc grooves 32 arranged in the L-shaped clamping columns 3 at the two sides relatively move to the middle.
An arc notch 33 is formed above the front face of the vertical end of the L-shaped clamping column 3, and a protruding end of the three-way pipe fitting 5 is clamped in the arc notch 33.
There is also a through hole on the front of the three-way pipe fitting 5, and the arc notch 33 on the front of the L-shaped clamping column 3 is just used for clamping the front through hole bulge of the three-way pipe fitting 5.
Further, the bottom of the three-way pipe fitting 5 is placed in the groove 21.
After the L-shaped clamping column 3 moves in place and clamps the three-way pipe fitting 5, the bottom of the three-way pipe fitting 5 is just positioned in the groove 21 on the round polygonal body 2, so that the processing of the three-way pipe fitting is stabilized.
Working principle:
the T-shaped grooves 11 and the circular polygonal grooves 12 are arranged in the upper plane of the cylindrical base 1 and are matched with each other to fix the clamp component above, the T-shaped blocks 4 arranged in the T-shaped grooves 11 slide inside, the T-shaped blocks 4 on the two sides move towards the middle to drive the L-shaped clamp columns 3 fixedly connected by bolts above to clamp the three-way pipe fitting 5, when the T-shaped blocks 4 move to the middle, the T-shaped blocks can be blocked by the circular polygonal body 2 in the cylindrical base 1, at the moment, a distance is formed between the L-shaped clamp columns 3 on the two sides of the T-shaped blocks 4, the three-way pipe fitting 5 is placed and clamped at the distance, the vertical arc-shaped grooves 32 and the arc-shaped gaps 33 arranged in the L-shaped clamp columns 3 fix the vertical arc-shaped surfaces and the protrusions of the three-way pipe fitting 5, the grooves 21 are arranged on the circular polygonal body 2 after the two sides move, and the three-way pipe fitting 5 is clamped right above the circular polygonal body 2 in the cylindrical base 1, and the three-way pipe fitting 5 is fixed in the grooves 21.
The specific embodiments described herein are offered by way of example only to illustrate the spirit of the utility model. Those skilled in the art may make various modifications or additions to the described embodiments or substitutions thereof without departing from the spirit of the utility model.
Although 1, a cylindrical base is used more herein; 11. a T-shaped groove; 12. a circular polygonal groove; 13. a cylindrical groove; 2. round polygonal body; 21. a groove; 3. an L-shaped clamping column; 31. a first bolt hole; 32. a vertical arc-shaped groove; 33. an arc-shaped notch; 4. a T-shaped block; 41. a second bolt hole; 5. tee fittings, etc., but do not exclude the possibility of using other terms. These terms are only used to more conveniently describe and explain the nature of the utility model and should be construed in a manner consistent with their spirit and scope.

Claims (10)

1. The utility model provides a copper alloy drainer tee bend pipe fitting adds clamping apparatus for continuous processing, includes cylinder base (1), its characterized in that: be equipped with T type recess (11) and circular polygon recess (12) in cylinder base (1) top, and circular polygon recess (12) both sides are equipped with T type recess (11) two, circular polygon recess (12) other both sides are equipped with a plurality of cylinder type recess (13), be equipped with circular polygon (2) in circular polygon recess (12), circular polygon (2) top is equipped with tee bend pipe fitting (5), be equipped with T type piece (4) in T type recess (11), T type piece (4) top is equipped with L type anchor clamps (3), be equipped with perpendicular arc groove (32) in the perpendicular end of L type anchor clamps (3), and be equipped with arc breach (33) on perpendicular arc groove (32) lateral wall, and all be equipped with tee bend pipe fitting (5) in perpendicular arc inslot (32) and the arc breach (33).
2. The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer according to claim 1, wherein: t type recess (11) have been seted up on the central line in plane on cylinder base (1), and T type recess (11) are two, and T type recess (11) link up cylinder base (1) upper plane simultaneously, be equipped with circular polygon recess (12) in the middle of cylinder base (1) upper plane, and circular polygon recess (12) both sides and two T type recess (11) intercommunication, circular polygon recess (12) bottom surface and T type recess (11) bottom surface unanimity simultaneously.
3. The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer according to claim 2, wherein: the cylindrical base (1) is provided with a cylindrical groove (13) on the upper plane, the cylindrical groove (13) is arranged on the other two sides of the circular polygonal groove (12), three cylindrical grooves (13) are arranged on one side of the cylindrical base, and a distance is reserved between the cylindrical groove (13) and the circular polygonal groove (12).
4. The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer according to claim 3, wherein: the circular polygonal groove (12) is internally and fixedly connected with the circular polygonal body (2), the upper plane of the circular polygonal body (2) is consistent with the upper plane of the cylindrical base (1), and the upper plane of the circular polygonal body (2) is provided with a groove (21).
5. The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer according to claim 4, wherein: the T-shaped groove (11) is internally connected with the T-shaped block (4) in a sliding mode, the upper plane of the T-shaped block (4) is identical to the upper plane of the cylindrical base (1), second bolt holes (41) are formed in the central line of the T-shaped block (4), the number of the second bolt holes (41) is two, and a distance is reserved between the inner side of the T-shaped block (4) and the peripheral surface of the circular polygonal body (2).
6. The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer according to claim 5, wherein: the T-shaped block is characterized in that an upper plane of the T-shaped block is fixedly connected with the L-shaped clamping column (3), a first bolt hole (31) is formed in the L-shaped clamping column (3), the first bolt hole (31) is connected with a second bolt hole (41) in a connecting mode, and meanwhile the bottom surface of the L-shaped clamping column (3) is tightly attached to the upper plane of the cylindrical base (1).
7. The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer according to claim 6, wherein: a vertical arc-shaped groove (32) is formed in the inner side of the vertical end of the L-shaped clamping column (3), and the vertical arc-shaped grooves (32) in the vertical ends of the two L-shaped clamping columns (3) are opposite.
8. The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer according to claim 7, wherein: the vertical arc-shaped groove (32) is internally clamped with the three-way pipe fitting (5), and the inner groove surface of the vertical arc-shaped groove (32) is tightly attached to the outer surface of the three-way pipe fitting (5).
9. The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer according to claim 8, wherein: an arc notch (33) is formed above the front face of the vertical end of the L-shaped clamping column (3), and a protruding end of the three-way pipe fitting (5) is clamped in the arc notch (33).
10. The fixture for continuously processing the three-way pipe fitting of the copper alloy drainer according to claim 9, wherein: the bottom of the tee pipe fitting (5) is placed in the groove (21).
CN202320744380.4U 2023-04-06 2023-04-06 Clamp for continuously processing tee pipe fitting of copper alloy drainer Active CN220480905U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320744380.4U CN220480905U (en) 2023-04-06 2023-04-06 Clamp for continuously processing tee pipe fitting of copper alloy drainer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320744380.4U CN220480905U (en) 2023-04-06 2023-04-06 Clamp for continuously processing tee pipe fitting of copper alloy drainer

Publications (1)

Publication Number Publication Date
CN220480905U true CN220480905U (en) 2024-02-13

Family

ID=89839844

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320744380.4U Active CN220480905U (en) 2023-04-06 2023-04-06 Clamp for continuously processing tee pipe fitting of copper alloy drainer

Country Status (1)

Country Link
CN (1) CN220480905U (en)

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