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Banerjee, Simul
- Improving Grindability of Titanium Grade 1 Using a Pneumatic Barrier
Abstract Views :258 |
PDF Views:75
Authors
Affiliations
1 Department of Mechanical Engineering, Kalyani Government Engineering College, Kalyani-741235, IN
2 Department of Mechanical Engineering, Jadavpur University, Kolkata-700032, IN
1 Department of Mechanical Engineering, Kalyani Government Engineering College, Kalyani-741235, IN
2 Department of Mechanical Engineering, Jadavpur University, Kolkata-700032, IN
Source
Reason-A Technical Journal (Formerly Reason-A Technical Magazine), Vol 12 (2013), Pagination: 37-45Abstract
Grinding fluid application is important to control thermal related problems while grinding titanium alloys. Conventional fluid delivery systems are not able to deliver grinding fluid deep into the grinding zone because of the presence of a stiff air layer around a rotating grinding wheel. A newly developed pneumatic barrier system is used in this experimental investigation to penetrate the air layer so as to deliver fluid into grinding zone. Dry, flood cooling and flood cooling with pneumatic barrier conditions are used to explore the influence of these environmental conditions on grindability of titanium grade 1 workpiece. It is seen that under flood cooling using pneumatic barrier, better grinding performance is obtained than conventional flood cooling condition.Keywords
Grinding, Pneumatic Barrier, Grinding Fluid, Titanium Alloy, Air Layer.- Improving Grindability of Inconel-600
Abstract Views :326 |
PDF Views:3
Authors
Affiliations
1 Department of Mechanical Engineering, Kalyani Government Engineering College, Kalyani-741235, IN
2 Department of Mechanical Engineering, Jadavpur University, Kolkata- 700 032, IN
1 Department of Mechanical Engineering, Kalyani Government Engineering College, Kalyani-741235, IN
2 Department of Mechanical Engineering, Jadavpur University, Kolkata- 700 032, IN
Source
Journal of the Association of Engineers, India, Vol 85, No 3-4 (2015), Pagination: 15-26Abstract
Conventional fluid delivery system is not much effective to reduce heat generation due to presence of a stiff air layer covering the periphery of grinding wheel. Thermal damages in grinding a super alloy are stringent and problematic. In this paper, a report on the experimental investigation carried out on grinding a nickel based super alloy, Inconnel-600 is made. Different infeeds are considered with dry, wet and wet with pneumatic barrier conditions. To break the stiff air layer covering grinding wheel, high pressure air jet is employed just above the conventional grinding fluid nozzle to facilitate grinding fluid reach the wheel-workpiece interface area. This is termed as a pneumatic barrier. Grinding performance under these environmental conditions has been investigated. Results show better grinding performance with the application of pneumatic barrier in the wet condition as it tends to facilitate fluid reach deep inside the grinding zone effectively.Keywords
Surface Grinding, Grinding Fluid, Air Layer, Pneumatic Barrier; Grinding Chip, Surface Roughness, Grinding Forces, Flood Cooling Nozzle, Pneumatic Barrier Nozzle, Inconnel-600.- Grinding Performance Using a Compound Nozzle Characterised by Small Discharge of Fluid
Abstract Views :293 |
PDF Views:0
Authors
Affiliations
1 Department of Mechanical Engineering, Kalyani Government Engineering College, Kalyani-741235, IN
2 Department of Mechanical Engineering, Jadavpur University, Kolkata-700032, IN
1 Department of Mechanical Engineering, Kalyani Government Engineering College, Kalyani-741235, IN
2 Department of Mechanical Engineering, Jadavpur University, Kolkata-700032, IN