KR200433330Y1 - PDP plastic working furnace by using metal mixed liquid coating - Google Patents

PDP plastic working furnace by using metal mixed liquid coating Download PDF

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KR200433330Y1
KR200433330Y1 KR2020060025896U KR20060025896U KR200433330Y1 KR 200433330 Y1 KR200433330 Y1 KR 200433330Y1 KR 2020060025896 U KR2020060025896 U KR 2020060025896U KR 20060025896 U KR20060025896 U KR 20060025896U KR 200433330 Y1 KR200433330 Y1 KR 200433330Y1
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oxide
coating layer
chamber
pdp
kiln
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KR2020060025896U
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Korean (ko)
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한점열
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아프로시스템 주식회사
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01JELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
    • H01J9/00Apparatus or processes specially adapted for the manufacture, installation, removal, maintenance of electric discharge tubes, discharge lamps, or parts thereof; Recovery of material from discharge tubes or lamps
    • H01J9/24Manufacture or joining of vessels, leading-in conductors or bases
    • H01J9/241Manufacture or joining of vessels, leading-in conductors or bases the vessel being for a flat panel display

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  • Manufacturing & Machinery (AREA)
  • Furnace Housings, Linings, Walls, And Ceilings (AREA)

Abstract

본 고안은 피충전물질들이 형태성을 갖도록 가열작용으로 성형하는 소성로에 있어서, 상기 피충전물질을 포함하여 예열되면서 소성변형이 이루어지는 단열재(14)와 상기 단열재(14)의 내측에 이산화규소(SiO2) 50 내지 60 Wt%, 산화바륨(Ⅱ)(BaO) 15 내지 16 Wt%, 산화아연(ZnO) 9 내지 11 Wt%, 산화 스트론튬(Ⅱ)(SrO) 8 내지 10 Wt%, 산화알루미늄(Al2O3) 4.5 내지 6 Wt%, 산화칼슘(CaO) 2 내지 3 Wt%, 산화지르코늄(ZrO2) 2 내지 3 Wt%, 산화나트륨(Na20) 0.5 내지 1Wt%로 혼합하여 피티피 소성로에 코팅되는 챔버 외벽 코팅층(14-a)과상기 챔버 외벽 코팅층(14-a) 외측에 외벽부(25)를 형성하여 열을 차단하도록 이루어지는 것으로, 종래의 소성로에서 챔버를 생략하는 피디피(PDP) 소성로에 관한 것이다. The present invention is a firing furnace for molding the material to be filled in the form of a heating action, including the material to be preheated including the material to be subjected to plastic deformation and the silicon dioxide (SiO) inside the heat insulating material (14) 2 ) 50 to 60 Wt%, barium oxide (II) (BaO) 15 to 16 Wt%, zinc oxide (ZnO) 9 to 11 Wt%, strontium oxide (II) (SrO) 8 to 10 Wt%, aluminum oxide ( Al 2 O 3 ) 4.5-6 Wt%, calcium oxide (CaO) 2-3 Wt%, zirconium oxide (ZrO 2 ) 2-3 Wt%, sodium oxide (Na 2 0) 0.5-1 Wt% by mixing The chamber outer wall coating layer 14-a coated on the kiln and the outer wall portion 25 formed outside the chamber outer wall coating layer 14-a are formed to block heat, and the PD is omitted from the chamber in a conventional kiln (PDP). ) Relates to a kiln.

소성로, 챔버, PDP, 금속혼합액, 코팅 Firing Furnace, Chamber, PDP, Metal Mixture, Coating

Description

금속 혼합액으로 코팅된 피디피 소성로{PDP plastic working furnace by using metal mixed liquid coating}PDP plastic working furnace by using metal mixed liquid coating

도1은 종래의 소성로 구조를 나타낸 단면도이다. 1 is a cross-sectional view showing a conventional kiln structure.

도2는 본 고안에 따른 금속 혼합액의 사용량을 나타낸 구성표이다. Figure 2 is a configuration table showing the amount of the metal mixed solution according to the present invention.

도3은 본 고안에 따른 금속혼합액으로 코팅된 피디피 소성로의 구조를 나타낸 단면도이다. Figure 3 is a cross-sectional view showing the structure of the PDP burner coated with a metal mixture according to the present invention.

※도면의 주요 부분에 대한 부호의 설명※※ Explanation of code for main part of drawing ※

14 : 단열재 14-a: 단열재 내부 코팅층14: heat insulating material 14-a: heat insulating material inner coating layer

25: 외벽부25: outer wall

본 고안은 피디피 소성로에 있어서, 챔버를 쓰지 않고 단열재 내측에 금속혼합액을 코팅하여 열손실이 적고 파티클이 침입하지 않는 금속 혼합액으로 코팅된 피디피 소성로에 관한 것이다. The present invention relates to a PD burner in which a metal mixture is coated inside the heat insulator without using a chamber in the PD burner and is coated with a metal mixture in which heat loss is low and particles do not penetrate.

종래의 피디피 소성로는 도1에 도시된 바와 같이, 피소성체(100)를 소성하여 소성체를 제조하기 위한 것으로 밀폐용기로 사각상자 형상의 스테인레스강으로 이루어진 챔버(110)를 구비한다. As shown in FIG. 1, a conventional PD firing furnace is for manufacturing a fired body by firing the fired body 100 and includes a chamber 110 made of stainless steel having a rectangular box shape as a sealed container.

이러한 챔버(110) 내부에는 주 단열벽(260)과 주 단열벽(260) 내부에 보조 단열벽(270)이 배치되고, 소성실(160) 내부에 피소성체(100)를 배치하여 마이크로파를 챔버(110) 내로 입사시킨다. 상기 챔버(110) 내 입사된 마이크로파는 보조 단열벽(270) 및 주 단열벽(260)을 투과하여 내부챔버(250) 내에서 열에너지로 전환되어 내부챕버(250)의 온도를 상승시키고 피소성체(100)에 흡수된다.In the chamber 110, the main heat insulating wall 260 and the auxiliary heat insulating wall 270 are disposed in the main heat insulating wall 260, and the firing chamber 100 is disposed in the firing chamber 160 to emit microwaves. 110) incident. The microwave incident in the chamber 110 passes through the auxiliary heat insulating wall 270 and the main heat insulating wall 260, and is converted into thermal energy in the inner chamber 250 to raise the temperature of the inner chapter 250 and increase the temperature of the insulator ( 100).

또한, 상기 내부챕버(250) 내 온도는 피소성체(100)와 열평형을 유지하면서 가열되기 때문에 상기 피소성체(100)로부터 방사에 의해 손실되는 열에너지는 내측 표면으로부터 소성체에 방사되는 열 에너지에 의해서 상쇄된다. 이때, 피소성체(100)에 대하여 소성실(160)은 완전하게 단열된 폐공간이 되기 때문에 방사 냉각에 의한 열구배가 피소성체(100)에 있어서 발생 되는 것이 억제된다. In addition, since the temperature in the inner chapter 250 is heated while maintaining the thermal equilibrium with the object 100, the thermal energy lost by the radiation from the object 100 to the heat energy radiated to the plastic body from the inner surface Offset by At this time, since the firing chamber 160 becomes a completely insulated waste space with respect to the to-be-baked body 100, heat gradient by radiation cooling is suppressed in the to-be-baked material 100 is suppressed.

상기 종래의 피디피 소성 공정에 쓰이는 소성로에 있어서 내부챕버(250)와 히터를 제조하는데 비용이 많이 소요되는 단점이 있었다. In the kiln used in the conventional PDP firing process, there is a disadvantage in that it takes a lot of cost to manufacture the inner chapter 250 and the heater.

상기 문제점을 해결하기 위하여 본 고안은 가열작용으로 성형하는 소성로의 단열재 내부에 금속혼합액을 코팅하여 챔버를 사용하지 않으므로 저렴한 비용으로 제조 가능한 금속 혼합액으로 코팅된 피디피 소성로를 제공하는데 그 목적이 있다. In order to solve the above problems, the present invention has an object of providing a PDP kiln coated with a metal mixed solution which can be manufactured at low cost since the chamber is not used by coating the metal mixture inside the heat insulating material of the kiln formed by heating.

본 고안은 피충전물질들이 형태성을 갖도록 가열작용으로 성형하는 소성로에 있어서, The present invention is a firing furnace for molding the material to be charged by the heating action to have a form,

상기 피충전물질을 포함하여 예열되면서 소성변형이 이루어지는 단열재(14)와 상기 단열재(14)의 내측에 이산화규소(SiO2) 50 내지 60 Wt%, 산화바륨(Ⅱ)(BaO) 15 내지 16 Wt%, 산화아연(ZnO) 9 내지 11 Wt%, 산화 스트론튬(Ⅱ)(SrO) 8 내지 10 Wt%, 산화알루미늄(Al2O3) 4.5 내지 6 Wt%, 산화칼슘(CaO) 2 내지 3 Wt%, 산화지르코늄(ZrO2) 2 내지 3 Wt%, 산화나트륨(Na20) 0.5 내지 1Wt%로 혼합하여 피티피 소성로에 코팅되는 챔버 외벽 코팅층(14-a)과상기 챔버 외벽 코팅층(14-a) 외측에 외벽부(25)를 형성하여 열을 차단하도록 이루어지는 것을 특징으로 한다. 50 to 60 Wt% of silicon dioxide (SiO 2 ) and 15 to 16 Wt of barium (II) (BaO) inside the heat insulator 14 and plastic insulation that is preheated including the material to be filled. %, Zinc oxide (ZnO) 9-11 Wt%, strontium (II) oxide (SrO) 8-10 Wt%, aluminum oxide (Al 2 O 3 ) 4.5-6 Wt%, calcium oxide (CaO) 2-3 Wt %, Zirconium oxide (ZrO 2 ) 2 to 3 Wt%, sodium oxide (Na 2 0) 0.5 to 1 Wt% of the chamber outer wall coating layer (14-a) and the chamber outer wall coating layer (14-a) which is coated on the PTI firing furnace a) the outer wall portion 25 is formed on the outside to block heat;

상기 단열재(14)는 석영 또는 네오세라믹 재질로 벽돌 층을 형성하여 코팅층의 열팽창률이 12×10-6/℃ 내지 14×10-6/℃로 되도록 이루어진다. The heat insulating material 14 is formed of a brick layer of quartz or neoceramic material so that the thermal expansion coefficient of the coating layer is 12 × 10 -6 / ℃ to 14 × 10 -6 / ℃.

이하, 본 고안에 상세한 설명은 첨부된 도면과 함께 설명한다. Hereinafter, a detailed description of the present invention will be described with reference to the accompanying drawings.

도2는 본 고안에 따른 금속 혼합액의 사용량을 나타낸 구성표이다. Figure 2 is a configuration table showing the amount of the metal mixed solution according to the present invention.

상기 표에 나타난 바와 같이 코팅층에는 이산화규소(SiO2) 50 내지 60 Wt%, 산화바륨(Ⅱ)(BaO) 15 내지 16 Wt%, 산화아연(ZnO) 9 내지 11 Wt%, 산화 스트론튬(Ⅱ)(SrO) 8 내지 10 Wt%, 산화알루미늄(Al2O3) 4.5 내지 6 Wt%, 산화칼슘(CaO) 2 내지 3 Wt%, 산화지르코늄(ZrO2) 2 내지 3 Wt%, 산화나트륨(Na20) 0.5 내지 1Wt%를 혼합한 금속 혼합액을 코팅한다. As shown in the table above, the coating layer includes silicon dioxide (SiO 2 ) 50 to 60 Wt%, barium oxide (II) (BaO) 15 to 16 Wt%, zinc oxide (ZnO) 9 to 11 Wt%, strontium oxide (II) (SrO) 8 to 10 Wt%, aluminum oxide (Al 2 O 3 ) 4.5 to 6 Wt%, calcium oxide (CaO) 2 to 3 Wt%, zirconium oxide (ZrO 2 ) 2-3 Wt%, sodium oxide (Na 2 0) A metal mixed solution of 0.5 to 1 Wt% is coated.

도3은 본 고안에 따른 금속혼합액으로 코팅된 피디피 소성로의 냉각부 구조를 나타낸 단면도이다. Figure 3 is a cross-sectional view showing the structure of the cooling unit of the PDP burner coated with a metal mixture according to the present invention.

상기 피충전물질을 포함하여 예열되면서 소성변형이 이루어지는 단열재(14)와 상기 단열재(14)의 내측에 이산화규소(SiO2) 50 내지 60 Wt%, 산화바륨(Ⅱ)(BaO) 15 내지 16 Wt%, 산화아연(ZnO) 9 내지 11 Wt%, 산화 스트론튬(Ⅱ)(SrO) 8 내지 10 Wt%, 산화알루미늄(Al2O3) 4.5 내지 6 Wt%, 산화칼슘(CaO) 2 내지 3 Wt%, 산화지르코늄(ZrO2) 2 내지 3 Wt%, 산화나트륨(Na20) 0.5 내지 1Wt%로 혼합하여 피티피 소성로에 코팅되는 챔버 외벽 코팅층(14-a)과상기 챔버 외벽 코팅층(14-a) 외측에 외벽부(25)를 형성하여 열을 차단하고, 파티클의 침입을 막을 수 있도록 이루어진다. 50 to 60 Wt% of silicon dioxide (SiO 2 ) and 15 to 16 Wt of barium (II) (BaO) inside the heat insulator 14 and plastic insulation that is preheated including the material to be filled. %, Zinc oxide (ZnO) 9-11 Wt%, strontium (II) oxide (SrO) 8-10 Wt%, aluminum oxide (Al 2 O 3 ) 4.5-6 Wt%, calcium oxide (CaO) 2-3 Wt %, Zirconium oxide (ZrO 2 ) 2 to 3 Wt%, sodium oxide (Na 2 0) 0.5 to 1 Wt% of the chamber outer wall coating layer (14-a) and the chamber outer wall coating layer (14-a) which is coated on the PTI firing furnace a) The outer wall portion 25 is formed on the outside to block heat and prevent intrusion of particles.

상기 단열재(14)는 석영 또는 네오세라믹 재질로 벽돌 층을 형성하여 코팅층의 열팽창률이 12×10-6/℃ 내지 14×10-6/℃이다. The heat insulating material 14 is formed of a brick layer of quartz or neoceramic material so that the thermal expansion coefficient of the coating layer is 12 × 10 -6 / ℃ to 14 × 10 -6 / ℃.

이상의 본 고안의 바람직한 실시예를 설명하였지만, 본 고안의 범위는 상기에 기재된 실시예 및 하기의 청구범위에 한정되지 않으며, 본 고안에 속하는 분야에서 통상의 지식을 가진 자라면 본 고안으로부터 다양한 변경 및 균등한 실시가 가능하다.While the preferred embodiments of the present invention have been described above, the scope of the present invention is not limited to the embodiments described above and the claims below, and those skilled in the art belonging to the present invention have various changes and modifications from the present invention. Equal implementation is possible.

이상에서 설명한 바와 같이 본 고안에 의하여 피디피 소성로에 내부 챔버를 사용하지 않고 쓸 수 있으므로, 제조비용이 감소하는 효과 및 파티클의 침입과 열손실이 없는 효과가 있다. As described above, since the present invention can be used without using an internal chamber in the PD firing furnace, there is an effect of reducing the manufacturing cost and no particle intrusion and heat loss.

Claims (2)

피충전물질들이 형태성을 갖도록 가열작용으로 성형하는 소성로에 있어서, In the kiln which is formed by the heating action so that the materials to be charged have a form, 상기 피충전물질을 포함하여 예열되면서 소성변형이 이루어지는 단열재(14)와,Insulation material 14 and plastic deformation while preheating including the material to be charged, 상기 단열재(14)의 내측에 이산화규소(SiO2) 50 내지 60 Wt%, 산화바륨(Ⅱ)(BaO) 15 내지 16 Wt%, 산화아연(ZnO) 9 내지 11 Wt%, 산화 스트론튬(Ⅱ)(SrO) 8 내지 10 Wt%, 산화알루미늄(Al2O3) 4.5 내지 6 Wt%, 산화칼슘(CaO) 2 내지 3 Wt%, 산화지르코늄(ZrO2) 2 내지 3 Wt%, 산화나트륨(Na20) 0.5 내지 1Wt%로 혼합하여 피티피 소성로에 코팅되는 챔버 외벽 코팅층(14-a)과,50 to 60 Wt% of silicon dioxide (SiO 2 ), 15 to 16 Wt% of barium (II) (BaO), 9 to 11 Wt% of zinc oxide (ZnO), and strontium (II) oxide inside the heat insulating material 14 (SrO) 8 to 10 Wt%, aluminum oxide (Al 2 O 3 ) 4.5 to 6 Wt%, calcium oxide (CaO) 2 to 3 Wt%, zirconium oxide (ZrO 2 ) 2-3 Wt%, sodium oxide (Na 2 0) a chamber outer wall coating layer 14-a which is mixed at 0.5 to 1Wt% and coated on the PTI firing furnace, 상기 챔버 외벽 코팅층(14-a) 외측에 외벽부(25)를 형성하여 열을 차단하도록 이루어지는 것을 특징으로 하는 금속 혼합액으로 코팅된 피디피 소성로.The PDPC sintering furnace coated with a metal mixed liquid, characterized in that the outer wall portion 25 is formed outside the chamber outer wall coating layer 14-a to block heat. 제 1 항에 있어서, The method of claim 1, 상기 단열재(14)는 석영 또는 네오세라믹 재질로 벽돌 층을 형성하여 코팅층의 열팽창률이 12×10-6/℃ 내지 14×10-6/℃로 되도록 이루어지는 것을 특징으로 하는 금속 혼합액으로 코팅된 피디피 소성로.The heat insulating material 14 is formed of a brick layer of quartz or neoceramic material so that the thermal expansion coefficient of the coating layer is 12 × 10 −6 / ° C. to 14 × 10 −6 / ° C. Firing furnace.
KR2020060025896U 2006-09-26 2006-09-26 PDP plastic working furnace by using metal mixed liquid coating KR200433330Y1 (en)

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