Rust samples obtained from the region just below the decorative bell capital of the Delhi iron pillar (DIP) have been analyzed by x-ray diffraction (XRD). The identification of iron hydrogen phosphate hydrate in the crystalline form was unambiguous. The stability and formation of crystalline iron hydrogen phosphate hydrate is briefly addressed. Very weak diffraction from the oxyhydroxides/oxides of iron was found. These phases are most likely present in the amorphous form in the rust. The present XRD analysis of rusts obtained from an inaccessible area of the DIP are compared with earlier analysis of DIP rust obtained from the region accessible to the public
International audienceFerrous hydroxysalts are found in corrosion layers of archaeological ferrous o...
International audienceThe deterioration after excavation of archaeological artefacts buried in soil ...
Abstract*The corrosion product formed on an ancient 0499!year old non!corroded iron clamp was studie...
Rust samples from the region just below the decorative bell capital of the Delhi iron pillar have be...
The oldest rust from the Delhi iron pillar was characterized by Fourier transform infrared spectrosc...
For the first time, insitu corrosion investigations were carried out over the 1600 years old Delhi i...
Physical characteristic and historical background of the Delhi Iron Pillar are review. Discussing th...
The characteristics of ancient iron metal have been studied by many but few data are available on th...
We discuss results obtained on nondestructive evaluation of the Delhi iron pillar using various non-...
Last progresses in synchrotron radiation focusing allow the characterisation on microscopic samples....
The 1600-year old Delhi iron pillar (DIP) has attracted the attention of metallurgists and corrosio...
The Delhi iron pillar has long been considered a corrosion resistant structure. Recently, a fast gro...
This paper outlines the results of metallurgical examination of the ancient Delhi Iron Pillar and th...
Surface morphology and chemical analysis of 2400 year old sickle-blade excavated in early 1940s from...
Corrosion reactions on the iron surface are complicated because transfer phenomena of electron and s...
International audienceFerrous hydroxysalts are found in corrosion layers of archaeological ferrous o...
International audienceThe deterioration after excavation of archaeological artefacts buried in soil ...
Abstract*The corrosion product formed on an ancient 0499!year old non!corroded iron clamp was studie...
Rust samples from the region just below the decorative bell capital of the Delhi iron pillar have be...
The oldest rust from the Delhi iron pillar was characterized by Fourier transform infrared spectrosc...
For the first time, insitu corrosion investigations were carried out over the 1600 years old Delhi i...
Physical characteristic and historical background of the Delhi Iron Pillar are review. Discussing th...
The characteristics of ancient iron metal have been studied by many but few data are available on th...
We discuss results obtained on nondestructive evaluation of the Delhi iron pillar using various non-...
Last progresses in synchrotron radiation focusing allow the characterisation on microscopic samples....
The 1600-year old Delhi iron pillar (DIP) has attracted the attention of metallurgists and corrosio...
The Delhi iron pillar has long been considered a corrosion resistant structure. Recently, a fast gro...
This paper outlines the results of metallurgical examination of the ancient Delhi Iron Pillar and th...
Surface morphology and chemical analysis of 2400 year old sickle-blade excavated in early 1940s from...
Corrosion reactions on the iron surface are complicated because transfer phenomena of electron and s...
International audienceFerrous hydroxysalts are found in corrosion layers of archaeological ferrous o...
International audienceThe deterioration after excavation of archaeological artefacts buried in soil ...
Abstract*The corrosion product formed on an ancient 0499!year old non!corroded iron clamp was studie...