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A high-pressure grouting device for ceramic grouting

A high-pressure grouting and grouting technology, which is applied in infrastructure engineering, construction, etc., can solve the problems of extended construction period, troublesome and cumbersome precise positioning of the floating operation platform, etc., so as to reduce the operation period, operation cost and correction The effect of times

Active Publication Date: 2021-03-16
徐州博创建设发展集团有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] In the process of processing ceramic blanks, a grouting process is required for reinforcement. The existing underwater grouting methods are extremely cumbersome. In the grouting process, most of the platform will be built, or a floating operating platform will be used. Compared with the fixed platform, the advantage of the floating working platform is that it is easy to move and the cost is low. However, the precise positioning of the floating working platform is more troublesome when performing grouting, and it needs to be corrected many times to determine the most suitable one. location, resulting in an extension of the construction period;

Method used

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  • A high-pressure grouting device for ceramic grouting
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  • A high-pressure grouting device for ceramic grouting

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0032] Embodiment one, please emphatically refer to the attached figure 1 , 2As shown in and 4, a high-pressure grouting device for ceramic grouting processing includes a floating work platform 1, and a semicircular arc-shaped mud box 5 is arranged on the platform surface of the floating work platform 1, and the semicircle The arc-shaped mud box 5 is located at the center of the floating work platform 1, and the outer arc wall of the semi-circular arc-shaped mud box 5 is symmetrically connected with a horizontal mud mixing tank 6, and the two horizontal mud mixing tanks 6. A diesel generator set 7 is provided at one end away from the semi-arc mud tank 5, the bottom of the diesel generator set 7 is fixedly connected to the platform surface of the floating work platform 1, and two horizontal mud tanks One end of the mixing tank 6 near the diesel generator set 7 is connected with a stirring motor 61, and the bottoms of the two stirring motors 61 are fixed with shock absorbing su...

Embodiment 2

[0033] Embodiment two, please emphatically refer to the attached figure 1 , 3 As shown in and 5, a fixed base device 2 is provided on the platform surface of the floating working platform 1 far away from the diesel generator set 7, and the fixed base device 2 includes a circular fixed plate 22, and the circular The bottom of the fixed plate 22 extends through the top shell of the fixed base device 2 to the inside of the fixed base device 2 and is connected with a horizontal bevel gear plate 22a, and the bottom of the horizontal bevel gear plate 22a is connected with a rotating bearing 22b , and the rotating bearing 22b is clamped in the inner casing of the fixed base device 2, and the circular fixed plate 22 is provided with a driving motor 21 at one end close to the semicircular-arc mud box 5, and the driving motor The output end of 21 extends through the side wall shell of the fixed base device 2 through the shaft to the inside of the fixed base device 2 and is connected wi...

Embodiment 3

[0034] Embodiment three, please emphatically refer to the attached figure 1 , 6 As shown in and 7, the end of the support connecting rod 4 away from the semicircular-arc mud tank 5 extends to the outer end parallel to the edge of the floating operating platform 1 and is connected vertically downward with a grouting pipe assembly 8 through a pipe. The grouting tube assembly 8 includes a steel flower tube 83, the outer wall of the steel flower tube 83 is covered with a sleeve 81, and the sleeve 81 is detachable, and the inner wall of the steel flower tube 83 is distributed with injection A grouting hole 82 , the grouting hole 82 extends outward along the inner wall of the steel flower tube 83 through the shell of the steel flower tube 83 and the shell of the sleeve 81 to the outer wall of the sleeve 81 . In this embodiment, the grouting environment of the steel flower tube 83 is effectively protected by the steel flower tube 83 in the grouting pipe assembly 8 cooperating with t...

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Abstract

The invention discloses a high-pressure grouting device for ceramic grouting processing, and an operation method of the high-pressure grouting device. The high-pressure grouting device comprises a floating operation platform, a semi-circular-arc-shaped grout box is arranged on the platform surface of the floating operation platform and located at the center of the floating operation platform, horizontal grout stirring tanks are symmetrically connected to one end of the semi-circular-arc-shaped grout box, diesel power generating sets are arranged at the end, away from the semi-circular-arc-shaped grout box, of the two horizontal grout stirring tanks, a fixed base device is arranged at the end, away from the diesel power generating sets, of the platform surface of the floating operation platform, a hydraulic support lifting column is arranged at the upper end of the fixed base device, a mounting seat is fixedly connected to the top of the hydraulic support lifting column through bolts, and a supporting connecting rod is horizontally mounted on the mounting seat. Angle conversion can be conducted by the designed high-pressure grouting device, thus fine adjusting of the floating operation platform on the position nearby the grouting position is assisted, accurate positioning can be quickly conducted, and the number of correction times is decreased.

Description

technical field [0001] The invention mainly relates to the technical field of underwater grouting of bridge foundations, in particular to a high-pressure grouting device for ceramic grouting processing. Background technique [0002] Grouting method is divided into ceramic process grouting and construction engineering grouting. Ceramic technology grouting is a process of injecting prepared mud into ceramic production. [0003] In the process of processing ceramic blanks, a grouting process is required for reinforcement. The existing underwater grouting methods are extremely cumbersome. In the grouting process, most of the platform will be built, or a floating operating platform will be used. Compared with the fixed platform, the advantage of the floating working platform is that it is easy to move and the cost is low. However, the precise positioning of the floating working platform is more troublesome when performing grouting, and it needs to be corrected many times to dete...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E02D15/06
CPCE02D15/06
Inventor 程鹏
Owner 徐州博创建设发展集团有限公司