Javascript must be enabled to continue!
Study of the polishing slurry dispersant for chemical mechanical polishing of 304 stainless steel
View through CrossRef
To further clarify the effect of the polishing slurry dispersant on the chemical mechanical polishing (CMP) performance of 304 stainless steel, a series of tests were carried out. The correlation between the material removal rate (MRR), surface roughness of 304 stainless steel, dispersant composition, and their content was investigated under two kinds of polishing slurry (hydrogen peroxide oxidant and ferric chloride oxidant) conditions. The experimental results indicated that the MRR and surface roughness of 304 stainless steel arrived at the maximum when the content of sodium hexametaphosphate dispersant was 1.2% (wt) under the hydrogen peroxide–oxalic acid polishing slurry condition. The values of MRR and surface roughness were 146 nm/min and 10 nm, respectively. The MRR and surface roughness of 304 stainless also reached the maximum value as the content of the propanetriol dispersant was 1.2% (wt) under the ferric chloride–oxalic acid polishing slurry condition. However, the values of MRR and surface roughness were 457 nm/min and 22 nm, respectively. Therefore, sodium hexametaphosphate was recommended as the dispersant of hydrogen peroxide–oxalic acid polishing, and propanetriol was recommended as the dispersant of ferric chloride–oxalic acid polishing slurry condition, according to the above analysis. This study lays a theoretical foundation for the improvement of 304 stainless steel CMP performance.
World Scientific Pub Co Pte Ltd
Title: Study of the polishing slurry dispersant for chemical mechanical polishing of 304 stainless steel
Description:
To further clarify the effect of the polishing slurry dispersant on the chemical mechanical polishing (CMP) performance of 304 stainless steel, a series of tests were carried out.
The correlation between the material removal rate (MRR), surface roughness of 304 stainless steel, dispersant composition, and their content was investigated under two kinds of polishing slurry (hydrogen peroxide oxidant and ferric chloride oxidant) conditions.
The experimental results indicated that the MRR and surface roughness of 304 stainless steel arrived at the maximum when the content of sodium hexametaphosphate dispersant was 1.
2% (wt) under the hydrogen peroxide–oxalic acid polishing slurry condition.
The values of MRR and surface roughness were 146 nm/min and 10 nm, respectively.
The MRR and surface roughness of 304 stainless also reached the maximum value as the content of the propanetriol dispersant was 1.
2% (wt) under the ferric chloride–oxalic acid polishing slurry condition.
However, the values of MRR and surface roughness were 457 nm/min and 22 nm, respectively.
Therefore, sodium hexametaphosphate was recommended as the dispersant of hydrogen peroxide–oxalic acid polishing, and propanetriol was recommended as the dispersant of ferric chloride–oxalic acid polishing slurry condition, according to the above analysis.
This study lays a theoretical foundation for the improvement of 304 stainless steel CMP performance.
Related Results
Recent Patents for Optical Component Polishing Technology
Recent Patents for Optical Component Polishing Technology
Background:
Fluid jet polishing, Airbag polishing, Magnetorheological polishing, and Ion beam polishing are all emerging polishing technologies commonly used for processing optical...
Comportamiento de la Resistencia al desgaste erosivo de recubrimientos de alúmina
Comportamiento de la Resistencia al desgaste erosivo de recubrimientos de alúmina
En este artículo se presentan los resultados de la investigación relacionada con el comportamiento experimental de recubrimientos de alúmina, obtenidos a partir de partículas de t...
Selection of Abrasive for Chemical Mechanical Polishing of the 304 Stainless Steel
Selection of Abrasive for Chemical Mechanical Polishing of the 304 Stainless Steel
Abstract
Chemical mechanical polishing (CMP) technology is widely used in ultra-precision machining of various materials, and the abrasive are an important component...
The effect of process parameters on chemical mechanical polishing of quartz glass
The effect of process parameters on chemical mechanical polishing of quartz glass
The effects of polishing pressure, polishing speed and pH value of the polishing slurry on the chemical activity of quartz glass, the material removal rate (MRR) and surface roughn...
Image processing based material removal rate analysis of morphable polishing tools with labyrinth and dimple textures
Image processing based material removal rate analysis of morphable polishing tools with labyrinth and dimple textures
Abstract
Morphable polishing tools are capable of finishing diamond turned surfaces with roughness in the nanometre range. The material removal rate of morphable tools poli...
Duplex hardening on SUS 304 with pack carburizing – nitriding process
Duplex hardening on SUS 304 with pack carburizing – nitriding process
The object of research: The object of research in this study is Austenic Sus 304 stains that are subject to surface treatment through the duplex hardening process using a combinati...
Performance Experiment of Ultra high Temperature Cementing Slurry System
Performance Experiment of Ultra high Temperature Cementing Slurry System
Abstract
The continuous development of oil and gas exploration and development to deep and ultra deep wells in China, the formation temperature is also getting higher and h...
Subsea Dispersant Injection: How to Assess Oil Droplets Behavior in the Water Column from Pilot-Scale Experiments
Subsea Dispersant Injection: How to Assess Oil Droplets Behavior in the Water Column from Pilot-Scale Experiments
<p>Every aspects of a hydrocarbon release in deep waters are accompanied by uncertainties. Theses releases can occur from leaking wrecks, pipeline ruptures, or even b...


