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Tin bath bottom brick hole sealing material formed by self-flow casting as well as preparation method and application of tin bath bottom brick hole sealing material
The invention discloses a tin bath bottom brick hole sealing material formed by self-flow casting and a preparation method and application thereof, and belongs to the technical field of tin bath bottom brick hole sealing materials. According to the technical scheme, the low-temperature and medium-temperature sintered brick comprises a main material, a low-temperature and medium-temperature binding agent, a sintering promoter, a water reducing agent and water, wherein the main material comprises the following components in percentage by mass: 45-55% of flint clay clinker particles; 5-15% of flint clay clinker powder; 10-20% of alumina powder; 15-25% of titanium-added zirconium silicate powder or a mixture of titanium-added zirconium silicate powder and fused alumina zirconia; 3-6% of silica powder; the mass of the low-medium temperature binding agent is 2-5% of the mass of the main material; the mass of the sintering promoter is 1-3% of the mass of the main material; the mass of the water reducing agent is 0.1-1% of the mass of the main material; and the mass of the water is 6-7.5% of the mass of the main material. The hole sealing material disclosed by the invention is suitable for a self-flowing pouring construction mode, is firmly combined with a tin bath bottom brick at normal temperature and high temperature, and can avoid glass defects caused by stripping of the hole sealing material.
本发明公开了自流浇注成型的锡槽底砖封孔料及其制备方法和应用,属于锡槽底砖封孔料技术领域。其技术方案为:包括主料、低中温结合剂、促烧结剂、减水剂和水,其中主料包括以下质量百分比的组分:焦宝石熟料颗粒45‑55%;焦宝石熟料粉5‑15%;氧化铝粉10‑20%;加钛硅酸锆粉或其与锆刚玉的混合物15‑25%;硅微粉3‑6%;低中温结合剂的质量为主料质量的2‑5%;促烧结剂的质量为主料质量的1‑3%;减水剂的质量为主料质量的0.1‑1%;水的质量为主料质量的6‑7.5%。本发明的封孔料适合自流浇注的施工方式,在常温及高温下均与锡槽底砖结合牢固,能避免封孔料剥落造成的玻璃缺陷。
Tin bath bottom brick hole sealing material formed by self-flow casting as well as preparation method and application of tin bath bottom brick hole sealing material
The invention discloses a tin bath bottom brick hole sealing material formed by self-flow casting and a preparation method and application thereof, and belongs to the technical field of tin bath bottom brick hole sealing materials. According to the technical scheme, the low-temperature and medium-temperature sintered brick comprises a main material, a low-temperature and medium-temperature binding agent, a sintering promoter, a water reducing agent and water, wherein the main material comprises the following components in percentage by mass: 45-55% of flint clay clinker particles; 5-15% of flint clay clinker powder; 10-20% of alumina powder; 15-25% of titanium-added zirconium silicate powder or a mixture of titanium-added zirconium silicate powder and fused alumina zirconia; 3-6% of silica powder; the mass of the low-medium temperature binding agent is 2-5% of the mass of the main material; the mass of the sintering promoter is 1-3% of the mass of the main material; the mass of the water reducing agent is 0.1-1% of the mass of the main material; and the mass of the water is 6-7.5% of the mass of the main material. The hole sealing material disclosed by the invention is suitable for a self-flowing pouring construction mode, is firmly combined with a tin bath bottom brick at normal temperature and high temperature, and can avoid glass defects caused by stripping of the hole sealing material.
本发明公开了自流浇注成型的锡槽底砖封孔料及其制备方法和应用,属于锡槽底砖封孔料技术领域。其技术方案为:包括主料、低中温结合剂、促烧结剂、减水剂和水,其中主料包括以下质量百分比的组分:焦宝石熟料颗粒45‑55%;焦宝石熟料粉5‑15%;氧化铝粉10‑20%;加钛硅酸锆粉或其与锆刚玉的混合物15‑25%;硅微粉3‑6%;低中温结合剂的质量为主料质量的2‑5%;促烧结剂的质量为主料质量的1‑3%;减水剂的质量为主料质量的0.1‑1%;水的质量为主料质量的6‑7.5%。本发明的封孔料适合自流浇注的施工方式,在常温及高温下均与锡槽底砖结合牢固,能避免封孔料剥落造成的玻璃缺陷。
Tin bath bottom brick hole sealing material formed by self-flow casting as well as preparation method and application of tin bath bottom brick hole sealing material
自流浇注成型的锡槽底砖封孔料及其制备方法和应用
ZHANG TONGJIAN (Autor:in) / ZHANG QISHAN (Autor:in) / LI ZHIJUN (Autor:in) / SUN WENLI (Autor:in) / YANG SHUQI (Autor:in) / DING WENSHENG (Autor:in) / WANG QIANQIAN (Autor:in) / ZHANG ZHEN (Autor:in) / CHEN SIXIN (Autor:in) / WANG XIFENG (Autor:in)
05.12.2023
Patent
Elektronische Ressource
Chinesisch
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