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Magnesium-chromium dry-type anti-seepage ramming material
The invention relates to a magnesium-chromium dry type anti-seepage ramming material belonging to the technical field of refractory material production; the refractory ramming material is used as an amorphous refractory material; according to the magnesium-chromium dry-type anti-seepage ramming material, a hydraulic binding agent is adopted to generate strength, moisture in the water-containing binding agent can generate hydration reaction on the furnace lining to reduce the use effect; in the embodiment 1, the ramming material binding agent without water is adopted to generate high strength,no moisture is brought in the furnace building construction process, the use effect of the furnace lining can be improved, and the service life of the furnace is prolonged.
本发明涉及一种镁铬质干式防渗捣打料,属于耐火材料生产技术领域,耐火捣打料作为一种不定型耐火材料,所述镁铬质干式防渗捣打料采用水硬性结合剂产生强度,含水结合剂中的水分会对炉衬产生水化反应而降低使用效果,实施例1采用不含水的捣打料结合剂能产生较大强度,在筑炉施工中不带入水分,能提高炉衬使用效果,延长炉窑使用寿命。
Magnesium-chromium dry-type anti-seepage ramming material
The invention relates to a magnesium-chromium dry type anti-seepage ramming material belonging to the technical field of refractory material production; the refractory ramming material is used as an amorphous refractory material; according to the magnesium-chromium dry-type anti-seepage ramming material, a hydraulic binding agent is adopted to generate strength, moisture in the water-containing binding agent can generate hydration reaction on the furnace lining to reduce the use effect; in the embodiment 1, the ramming material binding agent without water is adopted to generate high strength,no moisture is brought in the furnace building construction process, the use effect of the furnace lining can be improved, and the service life of the furnace is prolonged.
本发明涉及一种镁铬质干式防渗捣打料,属于耐火材料生产技术领域,耐火捣打料作为一种不定型耐火材料,所述镁铬质干式防渗捣打料采用水硬性结合剂产生强度,含水结合剂中的水分会对炉衬产生水化反应而降低使用效果,实施例1采用不含水的捣打料结合剂能产生较大强度,在筑炉施工中不带入水分,能提高炉衬使用效果,延长炉窑使用寿命。
Magnesium-chromium dry-type anti-seepage ramming material
一种镁铬质干式防渗捣打料
ZHU WEIZHONG (Autor:in) / LI JIANGPING (Autor:in) / WANG CHUNHUA (Autor:in) / LIU DAFANG (Autor:in) / SHU BO (Autor:in) / YU BIN (Autor:in) / YUE XIAOHUA (Autor:in) / ZHANG XIN (Autor:in) / CHEN XITANG (Autor:in) / WANG ENZHI (Autor:in)
07.08.2020
Patent
Elektronische Ressource
Chinesisch
IPC:
C04B
Kalk
,
LIME
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