Shazli Hasan Khan
Page No.: 12585 - 12602
Amit Vasantrao Deotale
Page No.: 12603 - 12611
Amit Vasantrao Deotale
Page No.: 12612 - 12626
Mrs. Taksha Shambharkar
Page No.: 12627 - 12640
Kavita N. Khobragade
Page No.: 12641 - 12666
Abhishek Kumar
Page No.: 12667 - 12673
Kavita N. Khobragade
Page No.: 12674 - 12687
Priti Khode
Page No.: 12688 - 12690
Prof. Prakash A. Jagtap
Page No.: 12691 - 12695
Brijesh Kumar Sharma
Page No.: 12696 - 12700
Shankar Singh, Prof. Rama Maikhuri & Anit Kaur
Page No.: 12701 - 12712
Mrs. Shobha Jadhav
Page No.: 12713 - 12721
Jashoda & Ratnesh Chandra Sharma
Page No.: 12722 - 12725
Prasamita Mohanty
Page No.: 12726 - 12741
A. M. Fartade & Sandhya Salunkhe
Page No.: 12742 - 12750
Ashu Roulet & Seema Dhawan
Page No.: 12751 - 12767
Rajeev Kumar
Page No.: 12768 - 12771
Sangeeta Pawar & Praveen Kumar Verma
Page No.: 12772 - 12779
Mia Walishah “Mia Khel” M.A.
Page No.: 12780 - 12785
Inuwa Mahmud & Rabiu Salisu Rabiu
Page No.: 12786 - 12796
Meenakshi & Jasim Ahmad
Page No.: 12797 - 12810
Fredrick Okeyo Ogilo
Page No.: 12811 - 12827
Sukanya P. Bhate
Page No.: 12828 - 12833
G. Sathi Reddy & Prof. L. K. M. Baburao Chowdary
Page No.: 12828 - 12833
Mr. Ajaydeep
Page No.: 12834 - 12839
Anthony, A. Nthangu, Kimiti, Richard Peter & Prof. Robert Arasa
Page No.: 12840 - 12846
Jacinta w. Nzina, Kimiti, Richard Peter & David M. Mulwa
Page No.: 12847 - 12857
Rose M. Kaindi & Kimiti Richard Peter
Page No.: 12858 - 12867
Priscillah Nduku Mutua, Richard Kimiti & David Mulwa
Page No.: 12868 - 12882
Paramjit Singh & Sukhwinder Singh
Page No.: 12883 - 12891
Vijay Dhamane
Page No.: 12892 - 12896
Kailas Sahebrao Daundkar
Page No.: 12897 - 12904
R. M. Bahlerao & Mr. Manikandan N. Iyer
Page No.: 12905 - 12917
Dheeraj Kumar
Page No.: 12918 - 12922
U. V. Singh
Page No.: 12923 - 12929
Kairo Kant Ujala
Page No.: 12930 - 12934
Shakera Parveen
Page No.: 12935 - 12941
Chetankumar, D. & N. P. Shahapur
Page No.: 12942 - 12949
Vijay Dhamane & Roshan More
Page No.: 12950 - 12961
Nisha Valvi & Prof. Sanjeev Sonawane
Page No.: 12962 - 12969
Geeta Shinde & Dipak Nade
Page No.: 12970 - 12987
Minakshi Biswal
Page No.: 12988 - 12997
D. S. Saklani
Page No.: 12998 - 13008
K. S. Khairnar
Page No.: 13009 - 13011
Ravindra Kalesha, Ravindra N. Kambaleb, Syed Habibuddin Syed Abed Alib & Vaishali Bamboleb
Page No.: 13012 - 13016
Prof. Hasina Shaikh & Anita Belapurkar
Page No.: 13017 - 13023
Vindeshwari Pawar & Ms. Smita Pati
Page No.: 13024 - 13033
Yasmin Bilal Attar, Neelima Tikhe & Geeta Shinde
Page No.: 13034 - 13042
Madhuri Sanjay Yadav
Page No.: 13043 - 13050
Asst. Prof. Dipali Mehakarkar & Prof. Sharad Vishawasrao
Page No.: 13051 - 13058
Asst. Prof. Vrushali H. Rokade & Mohan S. Kamble
Page No.: 13059 - 13064
Khagendra Sethi
Page No.: 13065 - 13071
Rachita Subrat Ratho
Page No.: 13072 - 13080
Saroj Bala, Shashikant Yadav & Shashi Yadav
Page No.: 13081 - 13088
Priya. T & Shamna Chandran
Page No.: 13017 - 13022
Dr. Manjeet Singh Bhandari
Recived Date: 2019-07-20 | Accepted Date: 2019-08-24 | Published Date: 2019-09-01
Page No.: 13089 - 13091
Mahesh M. Chudasama
Recived Date: 2019-07-20 | Accepted Date: 2019-08-24 | Published Date: 2019-09-01
Page No.: 13092 - 13102
Increasing demands for stricter emission norms, rising fuel prices, and the need for greater precision in vehicle emission standards are putting significant pressure on engine manufacturers to adopt technologies that reduce emissions and improve the efficiency of internal combustion engines. One such approach is the use of Thermal Barrier Coatings (TBCs), particularly ceramic coatings, to minimize frictional losses and wear in engine components. This study presents a comprehensive literature review on the application of ceramic TBCs in internal combustion engine chambers, aiming to identify suitable coating materials and evaluate their performance effects. The review highlights the impact of TBCs on brake specific fuel consumption, brake power, emission characteristics, pollutant levels, and the thermal fatigue life of engine components. Plasma thermal spray methods are commonly employed to apply ceramic layers to key engine parts such as pistons, cylinder heads, cylinder blocks, and intake/exhaust valves. The findings are based on an extensive survey of reference books, conference proceedings, and peer-reviewed research papers, with detailed discussions on coating materials, application techniques, and the conclusions drawn by various researchers. This work underscores the potential of ceramic coatings to enhance engine performance and longevity while contributing to emission reduction goals.
Dr. Kalpana Athalye
Recived Date: 2019-07-20 | Accepted Date: 2019-08-24 | Published Date: 2019-09-01
Page No.: 13103 - 13111