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Pile-forming method of prefabricated pile body

A technology of prefabricated piles and piles, which is applied in the direction of sheet pile walls, buildings, and foundation structure engineering, can solve the problems of bearing capacity attenuation, difficult quality control, and difficult quality assurance, etc. Pile foundation engineering cost and effect of improving utilization rate

Inactive Publication Date: 2009-04-01
王国奋
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

These two points are quite unfavorable to multi-bearing plate (multi-level bottom expansion) piles. In other words, it brings two problems. 1) The national building code stipulates that the end bearing of the base of the pile expansion bottom using the positive and negative circulation method The force has to be multiplied by a factor of 0.45, because there is mud and the sediment at the bottom of the pile cannot be cleaned up. (The standard in Zhejiang Province is 0.24 discount). However, the construction conditions cannot be protected. In addition, the positive and negative circulation method works underwater, so the bottom expansion construction cannot be seen, and it is difficult to measure and record. It also often happens that a piece of upper soil falls off when the bottom is expanded underwater. Occurrence, also because the multi-stage piles of the prior art all use cast-in-place concrete for the whole body, and the strength of cast-in-place concrete is not high, and the quality is difficult to guarantee, and the quality is difficult to control when pouring concrete in water, plus multiple bases The bearing capacity of the piles is relatively large, the diameter of the pile body must be made larger due to the above factors, and this kind of multiple bases is most afraid of a large diameter of the pile body. Research and tests have shown that as the diameter of the pile body increases, its bearing capacity will be greatly attenuated.

Method used

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  • Pile-forming method of prefabricated pile body
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  • Pile-forming method of prefabricated pile body

Examples

Experimental program
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Embodiment 1

[0016] Embodiments of the present invention are described in detail with reference to Figures 1a-1g.

[0017] The pile-forming method of the prefabricated pile body of the present invention comprises the following process steps: a, sinking the immersed tube 2 with the metal pile head into the hard soil layer to the design elevation; b, taking out the metal pile head; c, Put emulsified oil or ammonium antimony explosives, every 0.5m 3 The dosage is 1-5 kg. After the explosive is detonated, the mouth of the immersed tube is sealed. After the explosion of the explosive is completed, the article that seals the mouth of the immersed tube is opened to take clean broken soil, and the bottom of the bottom is expanded with mechanical bottom expansion equipment to form the lower base space 1. The broken soil Use soil suction equipment to remove the broken soil; d, pour it into the immersed tube 2 or hoist it into the flowable concrete in a bucket to pour the lower base; e, put it into t...

Embodiment 2

[0021] Its operation a to g is the same as embodiment 1, and operation h is put into reinforcing bar 7 and extends into the upper part of lower prefabricated hollow pile body from sinking tube mouth, pours upper base and cast-in-situ steel concrete upper pile body 5 with flowing concrete; Out of the immersed tube 2, cement slurry is injected into the gap. Cast-in-place pile body 5 as shown in Figure 2.

Embodiment 1

[0022] The lower and upper prefabricated pile bodies described in Embodiment 1 and Embodiment 2 are one or a combination of prefabricated hollow pile bodies and solid prefabricated pile bodies.

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Abstract

The invention relates to a construction method for building pile foundation engineering, in particular to a pile forming method of a precast pile body, which is the preferred construction method of a multi-stage base large-bearing-capacity pile. The pile forming method of the invention comprises the following process steps: an immersed tube with a metal pile head is sunk to a hard soil layer for designing elevation; the metal pile head is drawn out; a lower base space is formed and kept free from remained fine earth; a lower base is cast; a precast pile body and dowels are put into and anchored with the lower base; the immersed tube is pulled upward to a preset height H; an upper base space is formed and kept free from remained fine earth; flowing concrete is drained into from the opening of the immersed tube to cast an upper base, and then the recast pile body with dowels is put into the immersed tube and anchored with the upper base; and the immersed tube is pulled out, and concrete slurry is injected into the gap. The construction method has the advantages that: the bearing capacity and the reduction factor of a single pile are enhanced, the utilization rate of the material strength is improved, and the construction method is safe and stable, and the construction cost of the pile base is reduced, therefore, the designed expected effect is reached.

Description

technical field [0001] The invention relates to a construction method of building pile foundation engineering, in particular to a pile forming method of a prefabricated pile body. It is the preferred construction method for large load-bearing piles with multi-level foundations. Background technique [0002] According to the national standard, the whole body is cast-in-place (that is, the pile body is cast-in-place concrete, and the base is also cast-in-place concrete). The maximum diameter ratio of the base of the expanded bottom pile is limited to 3-3.5, while the immersed tube prefabricated steel concrete expanded bottom pile, this kind of pile It is prefabricated concrete for the pile body and cast-in-place concrete for the base. Obviously, the ratio of 3-3.5 is broken, and generally can reach 3.5-5. Although the bearing capacity is greater, it still cannot meet the needs of the project, especially when the diameter of the expanded bottom is greater than 1.5 meters. , th...

Claims

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Application Information

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IPC IPC(8): E02D5/22E02D5/44E02D5/48E02D5/50
Inventor 王国奋
Owner 王国奋
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