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MANUFACTURING METHOD OF SINTERED POROUS BODY, AND SINTERED POROUS BODY
To efficiently and stably manufacture and obtain a sintered porous body using a soil material as a base material.SOLUTION: A manufacturing method of a sintered porous body for manufacturing a granular sintered porous body using a soil material as a base material comprises a molding step of mixing the base material with a powdery or granular void-forming material that disappears upon heating to obtain a molded body, and a sintering step of stepwise increasing the temperature to sinter the molded body, in which the molded body is molded by granulating the mixture of the void-forming material and the base material.SELECTED DRAWING: Figure 1
【課題】土質材料を母材として、効率よくかつ安定的に焼結多孔質体を製造し取得することである。【解決手段】土質材料を母材とする粒体状の焼結多孔質体を製造するための、焼結多孔質体の製造方法であって、加熱により消失する粉粒体状の空隙形成材と前記母材とを混合し、成形体を取得する成形工程と、段階的に昇温して前記成形体を焼成する焼成工程と、を備え、前記成形体は、前記空隙形成材と前記母材の混合物を造粒することにより成形されることを特徴とする。【選択図】図1
MANUFACTURING METHOD OF SINTERED POROUS BODY, AND SINTERED POROUS BODY
To efficiently and stably manufacture and obtain a sintered porous body using a soil material as a base material.SOLUTION: A manufacturing method of a sintered porous body for manufacturing a granular sintered porous body using a soil material as a base material comprises a molding step of mixing the base material with a powdery or granular void-forming material that disappears upon heating to obtain a molded body, and a sintering step of stepwise increasing the temperature to sinter the molded body, in which the molded body is molded by granulating the mixture of the void-forming material and the base material.SELECTED DRAWING: Figure 1
【課題】土質材料を母材として、効率よくかつ安定的に焼結多孔質体を製造し取得することである。【解決手段】土質材料を母材とする粒体状の焼結多孔質体を製造するための、焼結多孔質体の製造方法であって、加熱により消失する粉粒体状の空隙形成材と前記母材とを混合し、成形体を取得する成形工程と、段階的に昇温して前記成形体を焼成する焼成工程と、を備え、前記成形体は、前記空隙形成材と前記母材の混合物を造粒することにより成形されることを特徴とする。【選択図】図1
MANUFACTURING METHOD OF SINTERED POROUS BODY, AND SINTERED POROUS BODY
焼結多孔質体の製造方法及び焼結多孔質体
TAJIMA TAKATOSHI (author) / JINNO TOMOKO (author) / ISHIKAWA YOJI (author) / KAWAKAMI YOSHIHIRO (author) / NISHIDA KOHEI (author) / NISHIDA RYOYA (author)
2023-05-29
Patent
Electronic Resource
Japanese
IPC:
C04B
Kalk
,
LIME
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