• Tidak ada hasil yang ditemukan

Effect of heat treatment on microstructure and corrosion behavior of Az91d magnesium alloy Abstract

N/A
N/A
Protected

Academic year: 2024

Membagikan "Effect of heat treatment on microstructure and corrosion behavior of Az91d magnesium alloy Abstract"

Copied!
1
0
0

Teks penuh

(1)

Effect of heat treatment on microstructure and corrosion behavior of Az91d magnesium alloy

Abstract

An AZ91D ingot in the as-cast condition was homogenized by heat treatment process. Then, the microstructures produced and corrosion behaviour after heat treatment was studied in detail.

As-castAZ91D was recrystallize by solution treatment at 415°C and then aged at 175°C for various period of time. The corrosion resistance of all the different microstructures was studied in NaCl solution through weight loss measurement in immersion testing. The β phase was found to have a significant influence on the corrosion behaviour. In solution treatment, β phase dissolution decreased the cathode area leading to accelerated corrosion rate. After aging treatment, fine β phase precipitates between grain and microstructure recrystallize causing an increase in the corrosion resistances.

Keywords

Aging treatment; Corrosion resistance; Magnesium alloy; Solution treatment

Referensi

Dokumen terkait

Heat treatment is a combination of timed heating and cooling applied to a particular metal or alloy in the solid state to produce certain microstructure and

Heat treatment is a combination of heating and cooling that applied to a particular metal in order to produce a certain microstructure and obtain the desired

Figure 8 shows the fracture surface of fatigue crack propagation test specimens tested at R = 0.1 for solution treated AZ61 magnesium alloy.. The fracture surface

TAJUK: EFFECT OF CHROMIUM CARBIDE (Cr23C6) FORMATION ON MICROSTRUCTURE AND CORROSION PASSIVITY BEHAVIOR OF AISI 304 STAINLESS STEEL.. SESI PENGAJIAN:

In this chapter, it will present about properties of Aluminum and Aluminum Alloy 7075. We also discuss the effects of different types of heat treatment process that will involve on

Plastic straining and concomitant microstructure recrystallization of Ni-Cu alloy in the undercooled condition ABSTRACT Microstructure and microtexture of rapidly solidified

Experimental process parameter Samples Process Parameter Forming Temperature A1 Reference Billet - A2 T4 Heat Treatment - B1 T4 Heat Treatment 510°C B2 Induction heating + Forming

Microstructure studies on the effect of the alkaline activators of fly ash-based geopolymer at elevated heat treatment temperature Abstract Fly ash-based geopolymers are new