Short limb cantilever frame embedded part beam side template perforating and positioning device
Technical Field
The utility model relates to the technical field of building construction, in particular to a positioning device for a beam side template of a short limb cantilever frame embedded part.
Background
In the construction process of the short limb overhanging scaffold of the beam side embedded bolt, liang Ce embedded parts are required to be provided with embedded part holes on the beam side template according to a certain hole site interval, and a series of problems of inaccurate hole site positioning, inconsistent elevation among different hole sites, low hole site positioning efficiency and the like generally exist in the construction process of hole site positioning and embedded parts. In the perforating positioning, unreasonable positioning tools or methods are adopted, so that the cantilever frame I-shaped steel beam cannot be installed in the later stage of larger hole position deviation, or the elevation of embedded parts is inconsistent, so that the elevation of the I-shaped steel is uneven after installation, the overall appearance of the frame body is attractive, the construction efficiency is low, and the like. Based on this, it is desirable to provide a device that is convenient to use and that can be recycled.
Disclosure of utility model
The utility model aims to provide a positioning device for a beam side template of a short limb cantilever embedded part, which aims to solve the technical problems of inaccurate hole site positioning, inconsistent elevation among different hole sites and low hole site positioning efficiency in the prior art.
The technical scheme of the utility model is as follows: the utility model relates to a positioning device for a beam side template opening of a short limb cantilever embedded part, which is characterized in that: the positioning device comprises a positioning plate, positioning plate fixing screws, positioning plate fixing brackets, adjustable telescopic rod fixing bolts, adjustable telescopic rods and a bottom horizontal rod, wherein the positioning plate is connected with the positioning plate fixing brackets through the positioning plate fixing screws, the positioning plate fixing brackets comprise transverse brackets and vertical brackets which are perpendicular to each other, the centers of the vertical brackets are hollow structures, the adjustable telescopic rods extend into the vertical brackets, and are connected with the vertical brackets through the adjustable telescopic rod fixing bolts, and the bottom horizontal rod is arranged at the bottom of the adjustable telescopic rods.
Furthermore, the positioning plate is made of a template, and positioning holes are formed in the positioning plate according to the required hole site spacing.
Further, the locating plate is connected with the locating plate fixing bracket through a locating plate fixing screw.
Further, the locating plate fixed bolster is formed by horizontal support and vertical support vertical welding, horizontal support and vertical support are all made by 30x30x1mm square pipe, and adjustable telescopic link stretches into the square intraductal of vertical support, fixes through adjustable telescopic link fixing bolt.
Furthermore, the adjustable telescopic rod is made of square tubes with the diameter of 20x20x1mm, the bottom horizontal rod is made of square tubes with the diameter of 20x20x1mm,
Further, adjustable telescopic link and bottom horizon bar welded connection.
Further, the beam side template perforating and positioning device of the short limb cantilever embedded part further comprises a beam side template, and the positioning plate is connected with the beam side template through a positioning hole.
The utility model provides a beam side template perforating and positioning device for an embedded part of a short limb cantilever frame, which comprises a positioning plate, a positioning plate fixing screw, a positioning plate fixing support, an adjustable telescopic rod fixing bolt and a bottom horizontal rod, wherein a positioning hole is reserved on the positioning plate according to a perforating hole position, the positioning plate is connected with the positioning plate fixing support through the positioning plate fixing screw, the bottom horizontal rod is placed on a beam lifting steel pipe (the beam lifting steel pipe is used as an elevation positioning reference) of a beam supporting frame, and the elevation of the positioning plate is controlled by adjusting the adjustable telescopic rod, so that the consistency of the perforating on the beam side template is realized, and the position of the embedded part is ensured to be consistent with the hole position on a later-stage mounting plate.
Drawings
FIG. 1 is a schematic view of the front structure of the present utility model;
FIG. 2 is a schematic view of the rear construction of the present utility model;
FIG. 3 is a schematic view of the structure of the locating plate and the locating plate fixing screw of the present utility model;
FIG. 4 is a schematic view of the structure of the locating plate fixing bracket, the adjustable telescopic rod fixing bolt and the bottom horizontal rod of the present utility model;
fig. 5 is a schematic diagram of a specific application of the present utility model.
The reference numerals are explained as follows:
1. A positioning plate; 2. the positioning plate is used for fixing the screw; 3. the locating plate is fixed on the bracket; 4. an adjustable telescopic rod fixing bolt; 5. an adjustable telescopic rod; 6. a bottom horizontal bar; 7. a beam side form; 8. a hole drilling electric drill; 9. and lifting the beam steel tube by the beam support die frame.
Detailed Description
The technical scheme of the utility model is described in detail below with reference to the specification, the drawings and the specific embodiments.
Referring to fig. 1 and 2, the structure of the embodiment of the utility model comprises a locating plate 1, a locating plate fixing screw 2, a locating plate fixing bracket 3, an adjustable telescopic rod fixing bolt 4, an adjustable telescopic rod 5 and a bottom horizontal rod 6. Wherein the positioning plate 1 is connected with the positioning plate fixing bracket 3 through the positioning plate fixing screw 2; the adjustable telescopic rod 5 is welded with the bottom horizontal rod 6; the adjustable telescopic rod 5 stretches into the locating plate fixing support 3 and is fixed through the adjustable telescopic rod fixing bolt 4.
Referring to fig. 3, positioning holes are formed on a positioning plate 1 according to the distance between the holes, the positioning plate 1 can be made of steel plates or templates according to the site conditions, and the positioning plate is connected with a positioning plate fixing bracket 3 through positioning plate fixing screws 2.
Referring to fig. 4, the locating plate fixing bracket 3 of the utility model is formed by vertically welding a transverse bracket and a vertical bracket, wherein the transverse bracket and the vertical bracket are both manufactured by square pipes with the length of 30x30x1mm, the adjustable telescopic rod 5 is manufactured by square pipes with the length of 20x20x1mm, the bottom horizontal rod 6 is manufactured by square pipes with the length of 20x20x1mm, the adjustable telescopic rod 5 stretches into the square pipes of the vertical bracket, and after the adjustable telescopic rod 5 is adjusted to the required height, the adjustable telescopic rod fixing bolt 4 is screwed down for fixing.
Referring to fig. 5, when the utility model is specifically applied, the bottom horizontal rod 5 is placed on the beam support die frame beam lifting steel pipe 9 (the beam lifting steel pipe 9 is used as an elevation positioning reference), the elevation of the positioning plate is controlled by adjusting the adjustable telescopic rod 5, the position of the positioning plate is consistent with the position of an opening on the beam side die plate 7, and the position of an embedded part can be ensured to be consistent with the position of a hole on a later mounting plate. After the adjustable telescopic rod 5 is adjusted to the required height, the adjustable telescopic rod fixing bolt 4 is screwed to fix, and an electric drill 8 for punching holes is utilized to pass through the positioning holes to punch holes in the beam side templates 7.
The technical matters not specifically described in the foregoing embodiments are the same as those in the prior art.
The above is only a specific embodiment disclosed in the present utility model, but the scope of the present utility model is not limited thereto, and the scope of the present utility model should be defined by the claims.