CN221337267U - Adjustable pile foundation auxiliary cage steel bar manufacturing rack - Google Patents

Adjustable pile foundation auxiliary cage steel bar manufacturing rack Download PDF

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Publication number
CN221337267U
CN221337267U CN202322409594.9U CN202322409594U CN221337267U CN 221337267 U CN221337267 U CN 221337267U CN 202322409594 U CN202322409594 U CN 202322409594U CN 221337267 U CN221337267 U CN 221337267U
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China
Prior art keywords
pile foundation
auxiliary cage
foundation auxiliary
adjusting
fixed
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Application number
CN202322409594.9U
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Chinese (zh)
Inventor
李刚
刘振川
班盛钧
王恒涛
郎键虎
范柳扬
李渊涛
顾芮萌
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Road and Bridge International Co Ltd
Road and Bridge South China Engineering Co Ltd
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Road and Bridge International Co Ltd
Road and Bridge South China Engineering Co Ltd
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Abstract

The utility model discloses an adjustable pile foundation auxiliary cage reinforcement manufacturing rack which comprises a rack main body formed by a bottom frame and a plurality of side beams, wherein the side beams and the bottom frame are fixed to form side support limit of a pile foundation auxiliary cage, a bottom positioning structure for limiting the position of a main rib is arranged on the bottom frame, a side positioning structure for limiting the position of the main rib is arranged on the side beams, the bottom of the pile foundation auxiliary cage can be contacted with the main rib placed in the limiting structure after the pile foundation auxiliary cage is placed in the rack main body, and the side parts of the pile foundation auxiliary cage can be contacted with the corresponding side limiting structure. To sum up, under the condition that the pile foundation auxiliary cage steel bars are processed without using a seam welder, the pile foundation auxiliary cage steel bars can be guaranteed to be processed in quality, and the seam welder can only be used for processing the pile foundation main cage steel bars. Therefore, the machining quality of the auxiliary cage reinforcing steel bars is ensured while the mechanical utilization rate of the seam welder is improved.

Description

Adjustable pile foundation auxiliary cage steel bar manufacturing rack
Technical Field
The utility model relates to an auxiliary welding device for auxiliary cage steel, in particular to an adjustable pile foundation auxiliary cage steel bar manufacturing rack.
Background
In the construction of the pile foundation reinforcement cage, the pile foundation reinforcement cage is generally machined by a seam welder or manually ground. The pile foundation auxiliary cage reinforcing steel bar is processed by the seam welder, so that the quality is good, the number of auxiliary cage reinforcing steel bars is small, welding pads of the pipe welder are required to be replaced when different pile diameters are met in the processing process, the process is time-consuming, the seam welder is used for processing the pile foundation auxiliary cage reinforcing steel bar, the mechanical utilization rate of the seam welder is low, and the cost is high. The manual direct processing speed is faster on the ground, and the defect is that the joint of the upper section and the lower section of the reinforcing steel bar of the auxiliary cage is easy to be in inaccurate butt joint, so that the joint quality can not be ensured when the field reinforcing steel bar cage is installed.
Disclosure of utility model
In order to overcome the defects in the prior art, the utility model provides an adjustable pile foundation auxiliary cage reinforcement manufacturing rack.
The technical scheme adopted for solving the technical problems is as follows:
adjustable stake base assists cage reinforcing bar preparation rack, its characterized in that: the pile foundation auxiliary cage comprises a bench main body composed of a bottom frame and a plurality of side beams, wherein the side beams and the bottom frame are fixed to form a side support limit of the pile foundation auxiliary cage, a bottom positioning structure for limiting the position of a main rib is arranged on the bottom frame, a side positioning structure for limiting the position of the main rib is arranged on the side beams, the bottom of the pile foundation auxiliary cage can be contacted with the main rib placed in a limiting structure after the pile foundation auxiliary cage is placed in the bench main body, and the side part of the pile foundation auxiliary cage can be contacted with a corresponding side limiting structure.
The side locating structure is a locating rod fixed on the side beam.
An adjusting and positioning structure for adjusting the position of the positioning rod is arranged between the side beam and the positioning rod.
The adjusting and positioning structure comprises a sliding sleeve arranged on the side beam, a side adjusting hole and a side adjusting nut, wherein the side adjusting hole and the side adjusting nut are arranged on one side of the sliding sleeve, the side adjusting screw is matched with the side adjusting nut and can penetrate through the side adjusting hole to tightly prop against the side beam so as to fix the position of the sliding sleeve, and the positioning rod is fixed on the sliding sleeve.
The bottom positioning structure comprises steel bars relatively fixed on the bottom frame.
The bottom frame comprises a bottom cross beam and a bottom longitudinal beam.
The bottom cross beam comprises a sliding beam and a fixed beam which are oppositely arranged, one end of the sliding beam is positioned in the fixed beam, and an adjusting and locking structure which enables the fixed beam to be fixed with the sliding beam is arranged on the fixed beam.
The adjusting and locking structure comprises a bottom adjusting hole and a bottom adjusting nut which are arranged on the fixed beam, and the bottom adjusting screw is matched with the bottom adjusting nut and can penetrate through the bottom adjusting hole to tightly prop against the sliding beam so as to fix the sliding beam and the fixed beam.
The bottom surface of the bottom frame is provided with supporting legs.
The positioning rod is bent to form a positioning groove.
The beneficial effects of the utility model are as follows: according to the utility model, the stand main body is formed by the bottom frame and the side beams, and is used for supporting and positioning the pile foundation auxiliary cage, and the positions of the main ribs are determined by the bottom positioning structure and the side positioning structure, so that the corresponding main ribs can form coaxial straight lines and are welded with the corresponding positions of the pile foundation auxiliary cage, the welding speed is high, the machining precision of the auxiliary cage is improved, the distance error of the main ribs of the reinforcement cage is small, the main ribs are straight, and the lines are smooth.
To sum up, under the condition that the pile foundation auxiliary cage steel bars are processed without using a seam welder, the pile foundation auxiliary cage steel bars can be guaranteed to be processed in quality, and the seam welder can only be used for processing the pile foundation main cage steel bars. Therefore, the machining quality of the auxiliary cage reinforcing steel bars is ensured while the mechanical utilization rate of the seam welder is improved.
Drawings
The utility model will be further described with reference to the drawings and examples.
FIG. 1 is an elevational schematic view of a gantry;
FIG. 2 is a schematic top view of the gantry;
FIG. 3 is a schematic view of a side positioning structure;
FIG. 4 is a schematic illustration of placement of a pile foundation auxiliary cage in a stand for welding.
Detailed Description
Advantages and features of the present disclosure, as well as methods of practicing the same, will be elucidated by the following embodiments described with reference to the accompanying drawings. This disclosure may, however, be embodied in different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art. Furthermore, the disclosure is limited only by the scope of the claims.
The shapes, sizes, proportions, angles, and numbers disclosed in the drawings for describing embodiments of the present disclosure are merely examples, and thus the present disclosure is not limited to the details shown. Like reference numerals refer to like elements throughout the specification. In the following description, when a detailed description of related known functions or configurations is determined to unnecessarily obscure the gist of the present disclosure, the detailed description will be omitted. Where the terms "comprising," "having," and "including" are used in this specification, other components may be added unless the term "only" is used. Unless indicated to the contrary, singular terms may include the plural.
In interpreting the elements, although not explicitly described, the elements are understood to include the scope of error.
In describing the positional relationship, for example, when the positional relationship is described as "on … …", "above … …", "below … …", and "adjacent to … …", unless "immediately" or "directly" is used, one or more portions may be arranged between two other portions.
In describing the temporal relationship, for example, when the temporal sequence is described as "after … …", "subsequent", "next", and "before … …", unless "just" or "direct" is used, a discontinuous condition may be included.
It will be understood that, although the terms "first," "second," etc. may be used herein to describe various elements, these elements should not be limited by these terms. These terms are only used to distinguish one element from another element. For example, a first element could be termed a second element, and, similarly, a second element could be termed a first element, without departing from the scope of the present disclosure.
As those skilled in the art will fully appreciate, the features of the different embodiments of the present disclosure may be partially or fully coupled or combined with each other and may cooperate and be technically driven in various ways. Embodiments of the present disclosure may be performed independently of each other or may be performed together in an interdependent relationship.
Referring to fig. 1 to 4, the utility model discloses an adjustable pile foundation auxiliary cage reinforcement manufacturing rack, which comprises a rack main body formed by a plurality of bottom frames 1 and eight side beams 2, wherein the rack main body is square, the bottom surface of the bottom frame 1 is provided with supporting legs 3 for supporting, so that the bottom frame 1 is prevented from being inclined and not being adjusted due to uneven ground, the bottom frame 1 is formed by four bottom cross beams 4 and two bottom longitudinal beams 5, the bottom longitudinal beams 5 are positioned below the bottom cross beams 4 and are welded with the bottom cross beams 4, the bottom cross beams 4 are square tubes, and the bottom longitudinal beams 5 are I-shaped steel. Both ends of the bottom cross beam 4 are welded with side beams 2, the side beams 2 are oppositely arranged to form two groups to form side support limiting of a pile foundation auxiliary cage 7, a bottom positioning structure for limiting the position of a main rib 6 is arranged on the bottom frame 1, a side positioning structure for limiting the position of the main rib 6 is arranged on the side beams 2, the bottom of the pile foundation auxiliary cage 7 can be contacted with the main rib 6 placed in a limiting structure after the pile foundation auxiliary cage 7 is placed in a rack main body, and the side parts of the pile foundation auxiliary cage 7 can be contacted with corresponding side limiting structures.
As shown in the figure, the bottom positioning structure is specifically characterized in that the bottom positioning structure is a steel bar 8 relatively fixed on the bottom frame 1, a clamping groove is formed between the two steel bars 8, when the main steel bar 6 is placed between the two steel bars 8, the main steel bar is positioned through the clamping groove, in order to be in contact with the pile foundation auxiliary cage 7, the top of the main steel bar 6 protrudes out of the clamping groove, the length of the main steel bar 6 is insufficient, a plurality of main steel bars 6 are required to be linearly arranged in the clamping groove, the main steel bars 6 are ensured to be linearly arranged through the positioning of the clamping groove, and the problem of inaccurate butt joint of joints of the upper and lower sections of the main steel bars 6 is avoided.
As shown in the figure, the side positioning structure is a positioning rod 9 fixed on the side beam 2, the positioning rod 9 adopts a short square tube, the main rib 6 is placed on the square tube, the square tube is bent into an arc shape for better positioning, a circular arc-shaped positioning groove is formed, the positioning grooves on the same side are coaxially arranged, the size of the positioning groove corresponds to the diameter of the main rib 6, the main rib 6 is clamped in the positioning groove, the main ribs 6 on the same side are correspondingly arranged in a straight line and are coaxial, and the problem of inaccurate butt joint of joints of the upper main rib 6 and the lower main rib 6 is avoided. As a further preferable structure, an adjusting and positioning structure for adjusting the height position of the positioning rod 9 is arranged between the side beam 2 and the positioning rod 9, and the width of the bottom frame can be adjusted, so that the pile foundation auxiliary cage 7 with different diameters can be adapted through the structure.
Specific: the adjusting and positioning structure comprises a sliding sleeve 10 arranged on the side beam 2, a side adjusting hole and a side adjusting nut 12 arranged on one side of the sliding sleeve 10, wherein the sliding sleeve 10 is formed by cutting a square pipe, the square pipe is sleeved on the side beam 2, the side adjusting nut 12 is communicated with the side adjusting hole and welded on the sliding sleeve 10, the side adjusting screw 11 is matched with the side adjusting nut 12 and can penetrate through the side adjusting hole to tightly prop against the side beam 2 so as to fix the position of the sliding sleeve 10, and the positioning rod 9 is fixed on the sliding sleeve 10, so that the height of the positioning rod 9 can be adjusted.
Specific: width adjustment structure of underframe: the bottom beam 4 comprises a sliding beam 13 and a fixed beam 14 which are oppositely arranged, one end of the sliding beam 13 is inserted into the fixed beam 14, the fixed beam 14 is provided with an adjusting locking structure for fixing the fixed beam 14 and the sliding beam 13, the width of the bottom frame is adjusted by adjusting the insertion depth of the sliding beam 13 into the fixed beam 14, and after the width is adjusted to a preset width, the bottom frame is locked and kept by adjusting the locking structure to serve as a specific structure: the adjusting and locking structure comprises a bottom adjusting hole and a bottom adjusting nut 15 which are arranged on the fixed beam 14, and the bottom adjusting screw 16 is matched with the bottom adjusting nut 15 and can tightly prop against the sliding beam 13 through the bottom adjusting hole to fix the sliding beam 13 and the fixed beam 14.
The specific welding process is briefly described, a fixed beam 14 is inserted into a sliding beam 13 to form a bottom frame, the width of the bottom frame is adjusted to be a preset width and locked, all sliding sleeves 10 are adjusted to be at required heights and then locked and fixed through side adjusting screws 11, then a main rib 6 is placed in a clamping groove, then an auxiliary cage reinforcing steel bar reinforcing ring is hoisted and placed in a rack main body, and the main rib 6 in the clamping groove and the auxiliary cage reinforcing steel bar reinforcing ring are welded together through manual welding; and then welding the main ribs 6 in the positioning grooves and the reinforcing rings of the auxiliary cage reinforcing steel bars together to finish the processing of the pile foundation auxiliary cage 7.
The foregoing has described in detail the construction of an adjustable pile foundation auxiliary cage reinforcement cage according to the embodiments of the present utility model, and specific examples have been used herein to illustrate the principles and embodiments of the present utility model, the above description of the examples being only for aiding in the understanding of the method and core concept of the present utility model; meanwhile, as those skilled in the art will have variations in the specific embodiments and application scope in accordance with the ideas of the present utility model, the present description should not be construed as limiting the present utility model in view of the above.

Claims (10)

1. Adjustable stake base assists cage reinforcing bar preparation rack, its characterized in that: the pile foundation auxiliary cage comprises a bench main body composed of a bottom frame and a plurality of side beams, wherein the side beams and the bottom frame are fixed to form a side support limit of the pile foundation auxiliary cage, a bottom positioning structure for limiting the position of a main rib is arranged on the bottom frame, a side positioning structure for limiting the position of the main rib is arranged on the side beams, the bottom of the pile foundation auxiliary cage can be contacted with the main rib placed in a limiting structure after the pile foundation auxiliary cage is placed in the bench main body, and the side part of the pile foundation auxiliary cage can be contacted with a corresponding side limiting structure.
2. The adjustable pile foundation auxiliary cage rebar making rack of claim 1, wherein: the side locating structure is a locating rod fixed on the side beam.
3. The adjustable pile foundation auxiliary cage rebar making rack of claim 2, wherein: an adjusting and positioning structure for adjusting the position of the positioning rod is arranged between the side beam and the positioning rod.
4. An adjustable pile foundation auxiliary cage rebar making stand according to claim 3, wherein: the adjusting and positioning structure comprises a sliding sleeve arranged on the side beam, a side adjusting hole and a side adjusting nut, wherein the side adjusting hole and the side adjusting nut are arranged on one side of the sliding sleeve, the side adjusting screw is matched with the side adjusting nut and can penetrate through the side adjusting hole to tightly prop against the side beam so as to fix the position of the sliding sleeve, and the positioning rod is fixed on the sliding sleeve.
5. The adjustable pile foundation auxiliary cage rebar making rack of claim 1, wherein: the bottom positioning structure comprises steel bars relatively fixed on the bottom frame.
6. The adjustable pile foundation auxiliary cage rebar making rack of claim 1, wherein: the bottom frame comprises a bottom cross beam and a bottom longitudinal beam.
7. The adjustable pile foundation auxiliary cage rebar making rack of claim 6, wherein: the bottom cross beam comprises a sliding beam and a fixed beam which are oppositely arranged, one end of the sliding beam is positioned in the fixed beam, and an adjusting and locking structure which enables the fixed beam to be fixed with the sliding beam is arranged on the fixed beam.
8. The adjustable pile foundation auxiliary cage rebar making rack of claim 7, wherein: the adjusting and locking structure comprises a bottom adjusting hole and a bottom adjusting nut which are arranged on the fixed beam, and the bottom adjusting screw is matched with the bottom adjusting nut and can penetrate through the bottom adjusting hole to tightly prop against the sliding beam so as to fix the sliding beam and the fixed beam.
9. The adjustable pile foundation auxiliary cage rebar making rack of claim 1, wherein: the bottom surface of the bottom frame is provided with supporting legs.
10. The adjustable pile foundation auxiliary cage rebar making rack of claim 2, wherein: the positioning rod is bent to form a positioning groove.
CN202322409594.9U 2023-09-05 Adjustable pile foundation auxiliary cage steel bar manufacturing rack Active CN221337267U (en)

Publications (1)

Publication Number Publication Date
CN221337267U true CN221337267U (en) 2024-07-16

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