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FIBER-REINFORCED HYDRAULIC MOLDED BODY
PROBLEM TO BE SOLVED: To efficiently obtain a hydraulic molded body combining strength and designability, particularly, to efficiently obtain a hydraulic molded body, even in the use of a hydraulic composition reduced in free water and substantially free from the generation of bleeding, thus low in fluidity, excellent in strength and satisfactory in appearance.SOLUTION: Provided is a hydraulic molded body including alkali-resistant fiber satisfying all the conditions of the following (1) to (3): (1) the condition that fiber size is 50 μm or lower; (2) the condition that aspect ratio is 50 to 2,000; and (3) the number of buckling parts is 3 pieces/fiber or less.SELECTED DRAWING: Figure 1
【課題】強度と意匠性を兼ね備えた水硬性成型体を効率よく得る。特に、実質的にブリーディングが生じないような、自由水が少なく、流動性の低い水硬性組成物を用いた場合であっても、強度が高く、外観が良好な水硬性成型体を効率的に得る。【解決手段】下記(1)〜(3)の条件を全て満足する耐アルカリ性繊維を含む水硬性成型体。(1)繊維径が50μm以下であること(2)アスペクト比が50〜2000であること(3)座屈部が3個/本以下であること【選択図】図1
FIBER-REINFORCED HYDRAULIC MOLDED BODY
PROBLEM TO BE SOLVED: To efficiently obtain a hydraulic molded body combining strength and designability, particularly, to efficiently obtain a hydraulic molded body, even in the use of a hydraulic composition reduced in free water and substantially free from the generation of bleeding, thus low in fluidity, excellent in strength and satisfactory in appearance.SOLUTION: Provided is a hydraulic molded body including alkali-resistant fiber satisfying all the conditions of the following (1) to (3): (1) the condition that fiber size is 50 μm or lower; (2) the condition that aspect ratio is 50 to 2,000; and (3) the number of buckling parts is 3 pieces/fiber or less.SELECTED DRAWING: Figure 1
【課題】強度と意匠性を兼ね備えた水硬性成型体を効率よく得る。特に、実質的にブリーディングが生じないような、自由水が少なく、流動性の低い水硬性組成物を用いた場合であっても、強度が高く、外観が良好な水硬性成型体を効率的に得る。【解決手段】下記(1)〜(3)の条件を全て満足する耐アルカリ性繊維を含む水硬性成型体。(1)繊維径が50μm以下であること(2)アスペクト比が50〜2000であること(3)座屈部が3個/本以下であること【選択図】図1
FIBER-REINFORCED HYDRAULIC MOLDED BODY
繊維補強水硬性成型体
IMAGAWA AKIRA (Autor:in) / INADA SHINYA (Autor:in)
11.07.2016
Patent
Elektronische Ressource
Japanisch
IPC:
C04B
Kalk
,
LIME
Europäisches Patentamt | 2016
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