CN105753484B - 一种陶瓷led灯用陶瓷 - Google Patents

一种陶瓷led灯用陶瓷 Download PDF

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CN105753484B
CN105753484B CN201410780270.9A CN201410780270A CN105753484B CN 105753484 B CN105753484 B CN 105753484B CN 201410780270 A CN201410780270 A CN 201410780270A CN 105753484 B CN105753484 B CN 105753484B
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led lamp
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CN105753484A (zh
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黄更生
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Yancheng Silk Road Information Technology Service Co ltd
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Yin Jiaquan
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Abstract

本发明公开了一种陶瓷LED灯用陶瓷,由以下份数的组分经研磨后烧制而成:50‑60份加气铝粉,60‑70份氮化铝,30‑45份云母粉,40‑50份方解石粉,6‑8份三氧化二铅,8‑10份氧化钐,8‑10份氮化硼,12‑15份碳化硼,20‑25份硅微粉,25‑35份辉钼矿粉,5‑8份纳米氧化镁,8‑10份二氧化钛,8‑10份二氧化锆,12‑15份氮化硅。该陶瓷LED灯用陶瓷,能够有效解决现有陶瓷烧结出现的断裂、变形,废品率高的问题,可以缩短预烧和烧结时间,降低烧结温度,大大节约了能源和降低了能耗,而且环保,降低了生产成本,烧结物产品晶粒细小均匀,致密度高,陶瓷材料断裂韧性得到有效提高,很好地控制烧结变形,被烧结出的陶瓷材质整体均衡,大大减少了废品,提高了产品的质量。

Description

一种陶瓷LED灯用陶瓷
技术领域
本发明涉及一种陶瓷,尤其涉及一种陶瓷LED灯用陶瓷。
背景技术
目前,LED(发光二极管)的基本结构是一块电致发光的半导体材料,置于一个有引线的架子上,然后四周用环氧树脂密封,起到保护内部芯线的作用。LED 光源具有使用低压电源、耗能少、适用性强、稳定性高、响应时间短、对环境无污染、多色发光等的优点,虽然价格较现有照明器材昂贵,但将不可避免地替代现有照明器件。目前LED 灯的散热是该技术领域的一大难题,为了解决散热问题,逐渐地出现陶瓷材料替代现有LED 灯的玻璃材料,以能够更好地实现散热。
发明内容
本发明是为了要克服现有技术的缺陷,目的在于提供一种陶瓷LED灯用陶瓷,该陶瓷LED灯用陶瓷,能够有效解决现有陶瓷烧结出现的断裂、变形,废品率高的问题,可以缩短预烧和烧结时间,降低烧结温度,大大节约了能源和降低了能耗,而且环保,降低了生产成本,烧结物产品晶粒细小均匀,致密度高,陶瓷材料断裂韧性得到有效提高,很好地控制烧结变形,被烧结出的陶瓷材质整体均衡,大大减少了废品,提高了产品的质量。
本发明解决其技术问题所采用的技术方案是:一种陶瓷LED灯用陶瓷,由以下份数的组分经研磨后烧制而成:50-60份加气铝粉,60-70份氮化铝,30-45份云母粉,40-50份方解石粉,6-8份三氧化二铅,8-10份氧化钐,8-10份氮化硼,12-15份碳化硼,20-25份硅微粉,25-35份辉钼矿粉,5-8份纳米氧化镁,8-10份二氧化钛,8-10份二氧化锆,12-15份氮化硅。
进一步的,由以下份数的组分经研磨后烧制而成:50份加气铝粉,60份氮化铝,30份云母粉,40份方解石粉,6份三氧化二铅,8份氧化钐,8份氮化硼,12份碳化硼,20份硅微粉,25份辉钼矿粉,5份纳米氧化镁,8份二氧化钛,8份二氧化锆,12份氮化硅。
或者是,由以下份数的组分经研磨后烧制而成:60份加气铝粉,70份氮化铝,45份云母粉,50份方解石粉,8份三氧化二铅,10份氧化钐,10份氮化硼,15份碳化硼,25份硅微粉,35份辉钼矿粉,8份纳米氧化镁,10份二氧化钛,10份二氧化锆,15份氮化硅。
综上所述,本发明的陶瓷LED灯用陶瓷,能够有效解决现有陶瓷烧结出现的断裂、变形,废品率高的问题,可以缩短预烧和烧结时间,降低烧结温度,大大节约了能源和降低了能耗,而且环保,降低了生产成本,烧结物产品晶粒细小均匀,致密度高,陶瓷材料断裂韧性得到有效提高,很好地控制烧结变形,被烧结出的陶瓷材质整体均衡,大大减少了废品,提高了产品的质量。
具体实施方式
实施例1
本发明实施例1所描述的一种陶瓷LED灯用陶瓷,由以下份数的组分经研磨后烧制而成:50份加气铝粉,60份氮化铝,30份云母粉,40份方解石粉,6份三氧化二铅,8份氧化钐,8份氮化硼,12份碳化硼,20份硅微粉,25份辉钼矿粉,5份纳米氧化镁,8份二氧化钛,8份二氧化锆,12份氮化硅。
实施例2
本发明实施例2所描述的一种陶瓷LED灯用陶瓷,由以下份数的组分经研磨后烧制而成:60份加气铝粉,70份氮化铝,45份云母粉,50份方解石粉,8份三氧化二铅,10份氧化钐,10份氮化硼,15份碳化硼,25份硅微粉,35份辉钼矿粉,8份纳米氧化镁,10份二氧化钛,10份二氧化锆,15份氮化硅。
上述实施例仅为本发明的若干较佳实施例,并非依此限制本发明的保护范围,故:凡依照本发明的原理等所做的各种等效变化,均应涵盖在本发明的保护范围之内。

Claims (3)

1.一种陶瓷LED灯用陶瓷,其特征在于,由以下份数的组分经研磨后烧制而成:50-60份加气铝粉,60-70份氮化铝,30-45份云母粉,40-50份方解石粉,6-8份三氧化二铅,8-10份氧化钐,8-10份氮化硼,12-15份碳化硼,20-25份硅微粉,25-35份辉钼矿粉,5-8份纳米氧化镁,8-10份二氧化钛,8-10份二氧化锆,12-15份氮化硅。
2.根据权利要求1所述的一种陶瓷LED灯用陶瓷,其特征在于,由以下份数的组分经研磨后烧制而成:50份加气铝粉,60份氮化铝,30份云母粉,40份方解石粉,6份三氧化二铅,8份氧化钐,8份氮化硼,12份碳化硼,20份硅微粉,25份辉钼矿粉,5份纳米氧化镁,8份二氧化钛,8份二氧化锆,12份氮化硅。
3.根据权利要求1所述的一种陶瓷LED灯用陶瓷,其特征在于,由以下份数的组分经研磨后烧制而成:60份加气铝粉,70份氮化铝,45份云母粉,50份方解石粉,8份三氧化二铅,10份氧化钐,10份氮化硼,15份碳化硼,25份硅微粉,35份辉钼矿粉,8份纳米氧化镁,10份二氧化钛,10份二氧化锆,15份氮化硅。
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CN106565216A (zh) * 2016-10-31 2017-04-19 安徽江威精密制造有限公司 一种大功率led用耐火、可荧光的陶瓷基座及其制备方法
CN106565260A (zh) * 2016-11-01 2017-04-19 安徽江威精密制造有限公司 一种大功率led用硬度高、可荧光的陶瓷基座及其制备方法
CN106565218A (zh) * 2016-11-01 2017-04-19 安徽江威精密制造有限公司 一种抗压性能好的、大功率led用可荧光的陶瓷基座及其制备方法
CN106565217A (zh) * 2016-11-01 2017-04-19 安徽江威精密制造有限公司 一种烧结温度低、大功率led用可荧光的陶瓷基座及其制备方法
CN106565220A (zh) * 2016-11-07 2017-04-19 安徽中威光电材料有限公司 一种大功率led用光泽度好、可荧光的陶瓷基座及其制备方法
CN106587944A (zh) * 2016-11-07 2017-04-26 安徽中威光电材料有限公司 一种大功率led用可荧光的陶瓷基座及其制备方法
CN116874304B (zh) * 2023-06-29 2024-04-12 淄博职业学院 高散热性陶瓷材料及其制备方法和应用

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