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Heated by a heat-resistant heat-sensitive coating viewable ceramic coating and ceramic coatings and the coating method and the heating mechanism using a coating method

机译:用耐热的热敏涂层加热可见的陶瓷涂层和陶瓷涂层以及使用该涂层方法的涂层方法和加热机理

摘要

The present invention relates to a sanding layer formed on all or a part of a surface of a heating mechanism; A heat resistant printing layer formed on the entire surface or a part of the surface of the heating mechanism by a pad printing method using a heat-resistant ink at a temperature of 250 C to 300 C; And a thermally sensitive coating layer formed by applying a ceramic paint containing a heat resistant chrysolite pigment on the entire surface of the heating mechanism and heating the resultant at 150 C to 180 C for 15 to 20 minutes.Therefore, in the present invention, the heat-sensitive coating layer changes from the original hue to the transparent state upon application of heat to the heating mechanism, whereby the heat-resistant printed layer printed on the surface of the heating mechanism in the form of a logo, It is possible to identify the state where the heat is applied.Further, by the effect of emitting the far-infrared rays and the anion from the exothermic surface of the heating mechanism, it is possible to exhibit antibacterial action while minimizing thermal deformation and nutrition loss of the object to be heated, and can also release vitamins useful for the human body.;
机译:本发明涉及在加热机构的全部或一部分表面上形成的磨削层。通过在250℃至300℃的温度下使用耐热油墨通过移印法在加热机构的整个表面或部分表面上形成的耐热印刷层;并且,通过在加热机构的整个表面上涂布包含耐热性蓝晶石颜料的陶瓷涂料并在150℃至180℃下将所得物加热15至20分钟而形成的热敏涂层。因此,在本发明中,通过对加热机构施加热,热敏涂层从原来的色调变为透明状态,从而以徽标的形式印刷在加热机构的表面上的耐热印刷层,可以识别此外,通过从加热机构的放热表面发射远红外线和阴离子的作用,可以发挥抗菌作用,同时使物体的热变形和营养损失最小化。加热后,还可以释放对人体有用的维生素。

著录项

  • 公开/公告号KR101686414B1

    专利类型

  • 公开/公告日2016-12-14

    原文格式PDF

  • 申请/专利权人 이동열;

    申请/专利号KR20150100068

  • 发明设计人 이동열;

    申请日2015-07-14

  • 分类号B05D5/06;A45D24;A47J36/02;B05D7;B41M1/26;B41M5;C09D11;G01K11/12;

  • 国家 KR

  • 入库时间 2022-08-21 13:28:29

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