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Multipore sintered paving material and manufacturing method thereof

A manufacturing method and porous technology, which can be used in manufacturing tools, on-site coagulation pavement, roads, etc., can solve the problems of low mechanical strength, unsuitable paving materials, slow dissolution of cement components, etc., and achieve excellent mechanical strength, Excellent water permeability, excellent water retention effect

Inactive Publication Date: 2005-03-23
株式会社堤士乐 +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] However, in this method, since the slag ash with a particle size of 1.5mm-10.0mm is used as the aggregate, there are pores of 100μm (0.1mm)-5000μm (5mm) between the aggregate particles, so the water absorption rate or water permeability coefficient is relatively high. , is excellent in water permeability or water retention, but the mechanical strength (bending strength) as a paving material is low, especially, it is not necessarily suitable as a promenade in a park where people climb on it when it is used. Paving materials laid on roads, etc.
[0008] In addition, since any of these conventional porous sintered bodies use relatively soft slag ash discharged from coal-fired power plants as the main aggregate component, the wear resistance is insufficient. , It is not suitable as a paving material for paving and other purposes. In addition, since hydraulic cement is used as a binder for the aggregate, there is a problem that the cement component dissolves slowly during use, and it is not suitable for the paving material. The problem of the so-called whitening phenomenon in which extremely white powdery residues appear on the surface and float out

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1-10

[0043] After screening, slag ash (with a water content of about 10 wt %) and slag cement type B and cullet (manufactured by Sanwa Chemical Co., Ltd.) with a particle size of 3 mm or less, which were cut to a particle size of more than 3 mm, was pulverized and produced. , the glass frit with a particle size of 0.6 mm or less cut over 0.6 mm was blended in the ratio shown in Table 1 as a raw material mixture for the porous water-retaining layer.

[0044] The raw material mixture for this porous water-retaining layer is packed into a countercurrent high-speed mixing mixer (Ellich type mixer) according to the ratio shown in Table 1. At first, no added water is added, after mixing, added water is slowly added to make the mixture containing The water content of the water in the molten slag ash was about 15% by weight, and they were thoroughly mixed to obtain a mixture for a porous water-retaining layer.

[0045] In addition, after screening, the porcelain-like ceramics with a partic...

Embodiment 11

[0055] The porous sintered paving material of Example 11 was obtained in the same manner as in Example 6 above except that slag ash was used with a particle diameter of 3 to 5 mm.

[0056] The obtained porous sintered paving material of Example 11 was evaluated for finding a white crystallization phenomenon while measuring its physical properties in the same manner as in the above-mentioned respective Examples.

[0057] The results are shown in Table 1.

[0058] Example No.

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PUM

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Abstract

Provided is a porous sintered paving material having excellent mechanical strength and resistance to wear as well as excellent water permeability and water holding property and being useful as a heat island phenomenon suppressing measure by providing or bonding it on a wall face, the rooftop, a road surface or the like in various buildings and civil engineering structures and to provide its manufacturing method. This porous sintered paving material has a multilayer structure in which a porous water holding layer constituted using clinker ash as an aggregate composed of the porous sintered paving material obtained by adding water to raw material mixture composed of aggregate, hydraulic cement, and glass powders, mixing and molding them, and baking the obtained moldings and having particle diameter of 7 mm or less and a porous reinforced layer constituted using porcelain ceramic crushed objects having particle diameter of 6 mm or less as aggregate are laminated using the porous reinforced layer as a surface layer. Its manufacturing method is provided.

Description

technical field [0001] The present invention relates to a porous sintered paving material and a method for producing the same, in particular to a porous sintered paving material which is excellent in water permeability or water retention and is suitable as a countermeasure against the so-called heat island phenomenon, and a method for producing the porous sintered paving material. Mainly in buildings, roads, parks, etc. in urban buildings or civil structures, laying or adhering the outside, such as the outer wall surface of the building, roof terrace and roof, etc., the protective wall of the expressway, etc., walking in the park road surface etc. Background technique [0002] In recent years, the so-called heat island phenomenon in which the temperature in urban areas is higher than that in surrounding areas has been observed, causing various problems in daily life in urban areas, such as heat stroke, crossed eyes or Effects on the human body such as respiratory organ obst...

Claims

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Application Information

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IPC IPC(8): E01C5/22C04B18/00C04B18/06C04B18/10C04B28/00C04B35/00C04B35/16C04B38/00C04B38/08E01C11/24
CPCY02W30/91Y02A30/60B28B1/265C04B14/42C04B14/4687C04B18/06C04B28/02C04B38/0041E01C7/26
Inventor 小山裕文落合广行关宏明森高准一
Owner 株式会社堤士乐