Anti-Oxidation Graphite Electrode Plate hmanga siam a ni

Anti-Oxidation Graphite Electrode Plate hmanga siam a ni
Kimchang:
Anti-oxidation graphite electrode plate 99.9%+ thianghlimna nei, conductivity/thermal transfer-a thiam, ±0.01mm precision, high temp/corrosion do thei, metallurgy/electronics nena inmil, customization support.
MOQ:100pc a ni
Thil hman tur:natural graphite a ni
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Anti-Oxidation Graphite Electrode Plate hi graphite electrode plate chi khat a ni a, temperature sang-temperature oxidation environment-a a stability tihchangtlun nan a bik taka siam a ni. Graphite-a electrical conductivity ṭha tak, temperature sang-temperature resistance leh chemical stability a vawng reng mai bakah oxidation resistance pawh nasa takin a tichangtlung a, industrial scene rei tak-term high-temperature operation-a hman atan a tha hle.

 

Performance ziarang hrang hrang

 

  • Antioxidant performance: Temperature sang-temperature range tarlan chhungah hian antioxidant coating hian graphite electrode plate leh oxygen emaw oxygen{1}}containing substances inkara reaction chu nasa takin a tihtlem thei a, an service life a ti rei thei a ni.
  • Consumption tihtlem: Oxidation-resistant graphite electrode plate hman hian electrode consumption chu 24% atanga 50% in a tihtlem thei a, hei hi coating formula, process condition leh operating environment a zirin a ni.
  • Efficiency tihchangtlun: Electrode hman tlem avangin oxidation-resistant graphite electrode plate hian production efficiency tihchangtlunna kawngah a pui a, chutih rualin operator-te hnathawh leh risk a tihziaawm bawk.
  • Energy humhalh leh boruak humhalh: Electrode thlak tam lutuk tihtlem leh power hman tlem avangin anti-oxidation graphite electrode plate hian energy save leh emission tihtlem a pui a, hei hi tuna boruak humhalh dan nen a inmil hle.

Technical Parameter hrang hrang te

 

Parameter chi hrang hrang a awm

Parameter (Unit) bik a ni.

A tlangpuiin Range a ni

Core Material a ni

Carbon thianghlimna (%) 1.1.

99.90–99.97 (Industrial Grade) a ni a; 99.99 aia tam emaw, a tlukpui emaw (Precision Grade) .

Density (g/cm3) a ni.

1.85–1.92

Ash awm zat (ppm) 1.1.

150 aia tlem emaw, a tlukpui emaw (Industrial Grade); 50 aia tlem emaw, a tlukpui emaw (Precision Grade) .

Particle lian zawng (μm) 1.1.

5–15 (Standard) a ni a; 3–8 (Buhfai tha tak) .

Anti-Oxidation hnathawh dan

Coating chi hrang hrang

Silicon Carbide (SiC)/Borosilicate Glass/Phosphate hmanga siam a ni

Anti-Oxidation Temperature Range (℃) a awm a, a chhuahna tur hmun leh a hmanna tur hmun chu a inthlau hle.

800–1400 (SiC Coating) a ni a; 600–1000 (Glass hmanga khuh) a ni.

Oxidation Rate (g/m2·h) a ni a, a chhuahna tur hmun a awm lo.

0.008 aia tlem emaw, a tlukpui emaw (Air Environment at 1000℃); 0.015 aia tlem emaw a tlukpui emaw (Inert Atmosphere at 1200℃) .

Rawngbawlna Nun Tichangtlung Multiples

Vawi 3–5 (Vs. Graphite Electrode pangngai ang lo takin) .

Mechanical lama hnathawh dan

Flexural chakna (MPa) 1.1.

40–65

Compressive chakna (MPa) a ni.

80–120

Shore Harsatna (HS) 1.1.

55–80

Thermal Performance hmanga hnathawh dan

A hnathawhna hmun sang ber (℃) .

1400–1600 (Coating laka invenna nen)

A chhuahna tur hmun (W/m·K) .

120–180 (Room lum leh vawt) .

Thermal Shock laka inven theihna (℃) .

600 aia tam emaw, a tlukpui emaw (Temperature Difference) .

Electrical lama hnathawh dan

Volume Resistivity (μΩ·m) a ni.

6–10

Machining hman dan dik tak

A rilru a buai em em a, a rilru a hah em em bawk a.

±0.05 (A sei zawng/A zau zawng); ±0.02 (A thuk zawng) .

A chunglam a hring (Ra, μm) .

0.4–1.0

Environment laka invenna

Acid Corrosion Mass hloh (%) 100 a ni.

0.2 aia tlem emaw, a tlukpui emaw (pH 2–4, 1000h) .

A sang-Temperature sang tak Anti-Oxidation Cycle (h) a ni.

3000 aia tam emaw, a tlukpui emaw (Continuous Operation at 1200℃) .

Products hian personalized customization a support (coating type, size, leh performance parameter te chu a tul angin siamthat theih a ni)

Antioxidant hmanga enkawlna technology hmanga enkawl a ni

 

  • Surface coating technology hmanga siam a ni

(1) Silicon carbide coating -- Electrode chung lamah SiC venhimna layer a siam a, temperature resistance chu 1400℃thleng a ni a, oxidation resistance chu vawi 3-5 a ni. Electric arc furnace leh mineral hot furnace ang chi temperature sang tak oxidation environment atan a tha hle.

(2)Borosilicate glass coating -- Temperature sang taka a hmin hnuah oxygen infiltration block turin glass layer dense tak a lo awm a. Lithium anode sintering furnace leh photovoltaic single crystal furnace-ah te hman a ni fo.

  • Immersion hmanga enkawl a ni

(1)Phosphate immersion -- Graphite pores a tikhat a, oxidation contact area a ti tlem a, temperature 1000℃thleng a tuar thei bawk . (2) Metal salt immersion -- Oxide venhimna film chu temperature sang takah siam a ni a, chu chuan oxidation resistance a tichak a ni.

  • Material siam danglam

(1)Add antioxidant -- Temperature sang takah chuan protective layer a lo awm thin.

(2)High-density graphite -- porosity a ti tlem a, oxidation penetration a ti hniam bawk.

 

Nakin lawka hmasawnna tur awm dan tur

 

Environment humhalh leh energy-saving mamawhna khauh zawk ngaih pawimawh a nih chhoh zel avangin Anti-Oxidation Graphite Electrode Plates hian hman theihna zau tak a lantir mek a ni. Hmalam hun thlir chuan coating technology leh process optimization lama thil thar chhuah chhunzawm zel chuan an performance a ti sang zual ang a, industrial application hrang hranga hman theih a ni ang.

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