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Nov 26, 2018 -
The Selection of Magnesium alloys as Sacrificial Anode for the Cathodic Protection of Underground Steel Structure
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TABLE I CHEMICAL COMPOSITION OF VARIOUS MG SACRIFICIAL ANODES |
Nov 26, 2018 -
The Selection of Magnesium alloys as Sacrificial Anode for the Cathodic Protection of Underground Steel Structure
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TABLE IIIII CHEMICAL COMPOSITION OF MG RAW MATERIAL FOR MAKING MG ANODE[7] |
Nov 26, 2018 -
The Selection of Magnesium alloys as Sacrificial Anode for the Cathodic Protection of Underground Steel Structure
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TABLE III THE RESULT OF AVERAGE CLOSED POTENTIAL ON VARIOUS MG ANODES |
Nov 26, 2018 -
The Selection of Magnesium alloys as Sacrificial Anode for the Cathodic Protection of Underground Steel Structure
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TABLE IVV ALLOYING ELEMENT, COMPOSITION AND ELECTROCHEMICAL PROPERTIES FROM STANDARD MG SACRAFICIAL ANODE[16] |
Nov 26, 2018 -
The Selection of Magnesium alloys as Sacrificial Anode for the Cathodic Protection of Underground Steel Structure
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TABLE VI CAPACITY, CURRENT CAPACITY AND CONSUMPTION RATE OF VARIOUS MG ANODE |
Nov 26, 2018 -
The Selection of Magnesium alloys as Sacrificial Anode for the Cathodic Protection of Underground Steel Structure
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TABLE V TOTAL AVERAGE CURRENT-HOUR (AH) OF MG ANODE |
Nov 26, 2018 -
The Selection of Magnesium alloys as Sacrificial Anode for the Cathodic Protection of Underground Steel Structure
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Gambar 2. Strukturmikro dengan SEM dari baja tahan karat martensitik 13Cr3Mo3Ni hasil austenisasi selama 1 jam dan temper 650 °C dengan temperatur austenisasi (°C) (a) 950, (b) 1000, (c) 1050, dan (d) 1100. Struktur yang terbentuk yaitu martensit, karbida, dan δ ferrit. Etsa Kall... |
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Tabel 1. Komposisi kimia baja tahan karat martensitik 13Cr3Mo3Ni |