CN217687006U - Tool for rapidly checking casting size - Google Patents

Tool for rapidly checking casting size Download PDF

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Publication number
CN217687006U
CN217687006U CN202220710126.8U CN202220710126U CN217687006U CN 217687006 U CN217687006 U CN 217687006U CN 202220710126 U CN202220710126 U CN 202220710126U CN 217687006 U CN217687006 U CN 217687006U
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rod piece
body rod
piece
measuring
tool
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CN202220710126.8U
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Chinese (zh)
Inventor
刘涛
于彦夫
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MCC Tiangong Group Corp Ltd
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MCC Tiangong Group Corp Ltd
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Priority to CN202220710126.8U priority Critical patent/CN217687006U/en
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Abstract

The utility model provides an examine instrument of school foundry goods size fast, measure the member including first body member, second body member, third body member, fourth body member, first measurement member, second. The first body rod piece and the second body rod piece are arranged in parallel; the third body rod piece and the fourth body rod piece are respectively and vertically arranged between the first body rod piece and the second body rod piece and are respectively connected with one end of the first body rod piece and one end of the second body rod piece; one end of the first measuring rod is rotationally connected with the upper surface of the third body rod and can move along the third body rod; the second measuring rod is vertically arranged between the first body rod and the second body rod and can move along the first body rod and the second body rod. The beneficial effects of the utility model are that improved measurement accuracy, reduced the measurement cost, improved work efficiency.

Description

Tool for rapidly checking casting size
Technical Field
The utility model belongs to the technical field of the engineering construction, especially, relate to an instrument of proofreading and correct foundry goods size fast.
Background
Along with the continuous improvement of living standard, the aesthetic ability of urban residents is continuously improved, and more symbolic landscape buildings form different building elements through casting and processing, so that urban impression and national features are increased. These architectural elements are different from conventional standard cylinder, mostly are the variable nonstandard cylinder foundry goods of diameter size and component from top to bottom, can't carry out accurate measurement to the diameter of these foundry goods and component and radian isoparametric in the construction, have increased very big degree of difficulty for the construction.
In the prior art, because castings and components are large in size, small-sized measuring equipment cannot be used for accurate and comprehensive measurement, and the measurement error is large. Meanwhile, the upper diameter and the lower diameter of the casting and the component are changeable, different measuring tools are needed, the operation is complicated, the workload is large, and the danger degree of high-speed work is increased. If a high-precision instrument is used, the measurement period is long, the cost is high, and the project cost is easy to exceed the budget.
SUMMERY OF THE UTILITY MODEL
For solving the technical problem, the utility model provides an examine instrument of school foundry goods size fast, the effectual building work progress of having solved, the measuring error that nonstandard foundry goods and component exist when measuring diameter, radian is big, and operating procedure is numerous and diverse, and work load is big, and the cost exceeds a grade problem, has overcome the shortcoming among the prior art.
The utility model adopts the technical proposal that: a tool for rapidly calibrating the dimensions of a casting, comprising:
the first body rod piece and the second body rod piece are arranged in parallel;
the third body rod piece is vertically arranged between the first body rod piece and the second body rod piece, and two ends of the third body rod piece are respectively connected with one ends of the first body rod piece and the second body rod piece;
a first measuring rod, one end of which is rotatably connected with the upper surface of the third body rod and can move along the third body rod;
and the second measuring rod piece is vertically arranged between the first body rod piece and the second body rod piece, and two ends of the second measuring rod piece are respectively movably connected with the side surfaces of the first body rod piece and the second body rod piece and can move along the first body rod piece and the second body rod piece.
And the two ends of the fourth body rod piece are respectively connected with the other ends of the first body rod piece and the second body rod piece, which are far away from the third body rod piece.
Furthermore, the first body rod piece, the second body rod piece, the third body rod piece and the fourth body rod piece are all provided with horizontal pipes.
Furthermore, the connecting ends of the first body rod piece, the second body rod piece, the third body rod piece and the fourth body rod piece are all provided with corner connecting pieces.
Furthermore, a first groove is formed in the connecting surface of the third body rod piece and the first measuring rod piece, and the connecting end of the first measuring rod piece and the third body rod piece can move along the first groove.
Furthermore, a rotary connecting piece is arranged at the connecting end of the third body rod piece and the first measuring rod, the first measuring rod piece can move along the first groove through the rotary connecting piece, and the first measuring piece can rotate by taking the rotary connecting piece as a shaft.
Furthermore, the first body rod piece and the second body rod piece are respectively provided with a second groove at corresponding positions on the inner side of a frame formed by the first body rod piece, the second body rod piece and the third body rod piece, and two ends of the second measuring rod piece can move along the second grooves.
Further, be equipped with first inboard connecting piece on the second recess, first inboard connecting piece is established one side that the second measures the member and keeps away from third body member is used for right the second measures the member and fixes a position.
Furthermore, second inner side connecting pieces are arranged at two ends of the second measuring rod piece, and the second measuring rod piece can move along the second groove through the second inner side connecting pieces.
The utility model has the advantages and positive effects that: due to the adoption of the technical scheme, the measurement precision is improved, the measurement cost is reduced, the operation is simple, and the working efficiency is improved.
Drawings
Fig. 1 is a schematic structural diagram of a tool for rapidly calibrating the size of a casting according to an embodiment of the invention.
Fig. 2 is a schematic structural diagram of a body frame of a tool for rapidly checking the size of a casting according to an embodiment of the invention.
Fig. 3 is a schematic view of the inner side of a first body member of a tool for rapidly calibrating the size of a casting according to an embodiment of the present invention.
In the figure:
1. a body frame 11, a first body bar 12, a second body bar
13. Third body bar 14, fourth body bar 15, first groove
16. Corner connecting piece 17, second groove 2, first measuring rod piece
3. Second measuring rod 4, horizontal pipe 5 and rotary connecting piece
6. First inner side connecting piece 7, measuring ruler 8 and measuring body
Detailed Description
The embodiment of the utility model provides an examine instrument of school foundry goods size fast, it is right below to combine the figure the embodiment of the utility model provides an explanation.
As shown in fig. 1, 2 and 3, a tool for rapidly checking the size of a casting according to an embodiment of the present invention includes a body frame 1, a first measuring rod 2, a second measuring rod 3, a horizontal tube 4, a rotary connecting member 5, and a first inner connecting member 6, wherein the body frame 1 is composed of a first body rod 11, a second body rod 12, a third body rod 13, a fourth body rod 14, and a corner connecting member 16.
The first body bar 11 and the second body bar 12 are arranged in parallel; the third body bar 13 is vertically arranged between the first body bar 11 and the second body bar 12, and two ends of the third body bar 13 are respectively connected with one ends of the first body bar 11 and the second body bar 12; one end of the first measuring rod 2 is rotationally connected with the upper surface of the third body rod 13 and can move along the third body rod 13; the second measuring rod 3 is vertically arranged between the first body rod 11 and the second body rod 12, and two ends of the second measuring rod 3 are movably connected with the side surfaces of the first body rod 11 and the second body rod 12 respectively and can move along the first body rod 11 and the second body rod 12.
Preferably, for convenience of installation and measurement, a fourth body bar 14 is further provided in the embodiment, and two ends of the fourth body bar 14 are respectively connected to the other ends of the first body bar 11 and the second body bar 12 and are arranged perpendicular to the first body bar 11 and the second body bar 12. In this embodiment, the first body bar 11, the second body bar 12, the third body bar 13, and the fourth body bar 14 are made of square steel, or other materials, which are straight and not bent.
Preferably, the surfaces of the first body bar 11, the second body bar 12, the third body bar 13 and the fourth body bar 14 are all provided with a horizontal pipe 4 for adjusting levelness during measurement. The level tube is a device which directly displays angular displacement by a level bubble by utilizing the principle of liquid level and measures the deviation degree of a measured surface relative to the horizontal position, the vertical position and the inclined position. For easy observation and accurate measurement, the horizontal tube 4 is disposed at an intermediate position of the upper surfaces of the first body bar 11, the second body bar 12, the third body bar 13, and the fourth body bar 14 in this embodiment.
Preferably, corner connectors 16 are provided at the corners of the body frame 1 formed by the first body bar 11, the second body bar 12, the third body bar 13 and the fourth body bar 14 to ensure that the whole frame is not deformed during the measurement process. In this embodiment, the upper and lower sides of the ends of the first, second, third and fourth body bars 11, 12, 13, 14 are provided with through holes to facilitate the assembly of corner connectors 16 on the upper and lower surfaces of the corner positions. The right-angle corner connecting pieces are fixed on the upper side and the lower side of the corner position of the body frame 1 by bolts.
Preferably, the connecting surface of the third body rod 13 and the first measuring rod 2 is provided with a first groove 9, the connecting surface of the third body rod 13 and the first measuring rod 2 is provided with a rotating connecting piece 5, the first measuring rod 2 can move along the first groove 15 through the rotating connecting piece 5, and the first measuring rod 2 can rotate by taking the rotating connecting piece 5 as an axis. The first measuring rod 2 is provided with scales. In this embodiment, the first measuring pin 2 is a measuring ruler. The rotary connecting piece 5 is a connecting piece formed by combining a bolt, a nut and a gasket, a through hole is formed in the connecting end of the measuring ruler and the third body rod piece 13, the through hole is in clearance fit with the external thread of the bolt, and the measuring ruler can rotate around the bolt.
Preferably, the first body bar 11 and the second body bar 12 are respectively provided with a second groove 17 at corresponding positions inside the body frame 1 composed of the first body bar 11, the second body bar 12, the third body bar 13 and the fourth body bar 14. Install first inboard connecting piece 6 on the second recess 17, first inboard connecting piece 6 can be followed second recess 17 and removed, and first inboard connecting piece 6 is established in the second and is measured one side of member 3 keeping away from third body member 13, and first inboard connecting piece 6 is the connecting piece that bolt, nut, gasket make up, and the chucking bolt of screwing up on first inboard connecting piece 6 can be fixed first inboard connecting piece 6 on second recess 17 for measure member 3 and fix a position to the second. The second measuring rod 3 is provided with second inner connecting members at both ends thereof, and the second measuring rod 3 can move along the second groove 17 through the second inner connecting members. The second measuring rod 3 is provided with scales. In this embodiment the second measuring rod 3 is a square steel with a measuring ruler mounted on the upper surface. Second inner side connecting pieces (the same as the first inner side connecting pieces, not shown in the figure) are welded at both ends of the square steel and are clamped in the second grooves 17.
When in use, the inner sides of the non-movable ends of the first body rod piece 11 and the third body rod piece 13 are tightly attached to the edge of the measuring body 8 and temporarily fixed; the horizontal pipe 4 is used for integral leveling; moving the second measuring rod 3 and rotating the first measuring rod 2, and tightly attaching the second measuring rod 3 and one side of the first measuring rod 2 close to the measuring body 8 for diameter size verification; and finally, manually measuring the distance between the arc top ends at the opposite angles by using the ruler 7, and checking whether the measuring body 8 meets the radian requirement.
The tool material adopted in the embodiment is convenient for local materials, can be manufactured by utilizing leftover materials and waste materials and can be repeatedly used, so that the measurement cost is reduced; the measuring steps are simple, and the working efficiency of measuring personnel is improved; the calibration of different diameters of a single component can be met, the diameter and the radian of the measuring body are comprehensively measured, and the measuring precision is improved.
The embodiments of the present invention have been described in detail, but the description is only for the preferred embodiments of the present invention and should not be construed as limiting the scope of the present invention. All the equivalent changes and improvements made according to the application scope of the present invention should still fall within the patent coverage of the present invention.

Claims (9)

1. A tool for rapidly checking and correcting the dimensions of a casting, comprising:
the first body rod piece and the second body rod piece are arranged in parallel;
the third body rod piece is vertically arranged between the first body rod piece and the second body rod piece, and two ends of the third body rod piece are respectively connected with one ends of the first body rod piece and the second body rod piece;
a first measuring rod, one end of which is rotatably connected with the upper surface of the third body rod and can move along the third body rod;
and the second measuring rod piece is vertically arranged between the first body rod piece and the second body rod piece, and two ends of the second measuring rod piece are respectively movably connected with the side surfaces of the first body rod piece and the second body rod piece and can move along the first body rod piece and the second body rod piece.
2. A tool for rapidly calibrating the dimensions of castings according to claim 1, wherein: the two ends of the fourth body rod piece are respectively connected with the other ends, far away from the third body rod piece, of the first body rod piece and the second body rod piece.
3. A tool for rapid calibration of casting dimensions according to claim 1 or 2, wherein: the first body rod piece, the second body rod piece, the third body rod piece and the fourth body rod piece are all provided with horizontal pipes.
4. A tool for rapid calibration of casting dimensions according to claim 1 or 2, wherein: the connecting ends of the first body rod piece, the second body rod piece, the third body rod piece and the fourth body rod piece are all provided with corner connecting pieces.
5. A tool for rapidly calibrating the dimensions of castings according to claim 1, wherein: the connection surface of the third body rod piece and the first measuring rod piece is provided with a first groove, and the connection end of the first measuring rod piece and the third body rod piece can move along the first groove.
6. A tool for rapidly checking the size of castings according to claim 5, wherein: the third body rod piece and the first measuring rod are connected through a rotating connecting piece, the first measuring rod piece can move along the first groove through the rotating connecting piece, and the first measuring piece can rotate by taking the rotating connecting piece as an axis.
7. A tool for rapidly calibrating the dimensions of castings according to claim 1, wherein: and the first body rod piece and the second body rod piece are respectively provided with a second groove at corresponding positions on the inner side of a frame consisting of the first body rod piece, the second body rod piece and the third body rod piece, and two ends of the second measuring rod piece can move along the second grooves.
8. A tool for rapidly checking the size of castings according to claim 7, wherein: and a first inner side connecting piece is arranged on the second groove and is arranged on one side, away from the third body rod piece, of the second measuring rod piece and is used for positioning the second measuring rod piece.
9. A tool for rapidly calibrating the dimensions of castings according to claim 7, wherein: and second inner side connecting pieces are arranged at two ends of the second measuring rod piece, and the second measuring rod piece can move along the second groove through the second inner side connecting pieces.
CN202220710126.8U 2022-03-30 2022-03-30 Tool for rapidly checking casting size Active CN217687006U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220710126.8U CN217687006U (en) 2022-03-30 2022-03-30 Tool for rapidly checking casting size

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220710126.8U CN217687006U (en) 2022-03-30 2022-03-30 Tool for rapidly checking casting size

Publications (1)

Publication Number Publication Date
CN217687006U true CN217687006U (en) 2022-10-28

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ID=83733850

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220710126.8U Active CN217687006U (en) 2022-03-30 2022-03-30 Tool for rapidly checking casting size

Country Status (1)

Country Link
CN (1) CN217687006U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114688939A (en) * 2022-03-30 2022-07-01 中冶天工集团有限公司 Tool and method for rapidly checking and correcting size of casting

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114688939A (en) * 2022-03-30 2022-07-01 中冶天工集团有限公司 Tool and method for rapidly checking and correcting size of casting

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