Thermal Barrier Coatings
#1

Definition

Heat engines are based on considering various factors such as durability, performance and efficiency with the objective of minimizing the life cycle cost. For example, the turbine inlet temperature of a gas turbine having advanced air cooling and improved component materials is about 1500oC. Metallic coatings were introduced to sustain these high temperatures. The trend for the most efficient gas turbines is to exploit more recent advances in material and cooling technology by going to engine operating cycles which employ a large fraction of the maximum turbine inlet temperature capability for the entire operating cycle. Thermal Barrier Coatings (TBC) performs the important function of insulating components such as gas turbine and aero engine parts operating at elevated temperatures. Thermal barrier coatings (TBC) are layer systems deposited on thermally highly loaded metallic components, as for instance in gas turbines. TBC's are characterized by their low thermal conductivity, the coating bearing a large temperature gradient when exposed to heat flow. The most commonly used TBC material is Yttrium Stabilized Zirconia (YSZ), which exhibits resistance to thermal shock and thermal fatigue up to 1150oC. YSZ is generally deposited by plasma spraying and electron beam physical vapour deposition (EBPVD) processes. It can also be deposited by HVOF spraying for applications such as blade tip wear prevention, where the wear resistant properties of this material can also be used. The use of the TBC raises the process temperature and thus increases the efficiency.

Structure Of Thermal Barrier Coatings

Thermal Barrier Coating consists of two layers (duplex structure). The first layer, a metallic one, is called bond coat, whose function is to protect the basic material against oxidation and corrosion. The second layer is an oxide ceramic layer, which is glued or attached by a metallic bond coat to the super alloy. The oxide that is commonly used is Zirconia oxide (ZrO2) and Yttrium oxide (Y2O3). The metallic bond coat is an oxidation/hot corrosion resistant layer. The bond coat is empherically represented as MCrAlY alloy where

M - Metals like Ni, Co or Fe.
Y - Reactive metals like Yttrium.
CrAl - base metal.

Coatings are well established as an important underpinning technology for the manufacture of aeroengine and industrial turbines. Higher turbine combustion temperatures are desirable for increased engine efficiency and environmental reasons (reduction in pollutant emissions, particularly NOx), but place severe demands on the physical and chemical properties of the basic materials of fabrication.

In this context, MCrAlY coatings (where M = Co, Ni or Co/Ni) are widely applied to first and second stage turbine blades and nozzle guide vanes, where they may be used as corrosion resistant overlays or as bond-coats for use with thermal barrier coatings. In the first and second stage of a gas turbine, metal temperatures may exceed 850?C, and two predominant corrosion mechanisms have been identified:

Accelerated high temperature oxidation (>950?C) where reactions between the coating and oxidants in the gaseous phase produce oxides on the coating surface as well as internal penetration of oxides/sulphides within the coating, depending on the level of gas phase contaminants

Type I hot corrosion (850 - 950?C) where corrosion occurs through reaction with salts deposited from the vapour phase (from impurities in the fuel). Molten sulphates flux the oxide scales, and non-protective scales, extensive internal suplhidation and a depletion zone of scale-forming elements characterize the microstructure.
Reply

Important Note..!

If you are not satisfied with above reply ,..Please

ASK HERE

So that we will collect data for you and will made reply to the request....OR try below "QUICK REPLY" box to add a reply to this page
Popular Searches: thermal curtains, performance test on diesel engine with thermal barrier coating ppt, thermal barrier definition, seminar report on verbal communication barrier pdf, concrete bridge coatings, hits thermal, ppt on noise barrier,

[-]
Quick Reply
Message
Type your reply to this message here.

Image Verification
Please enter the text contained within the image into the text box below it. This process is used to prevent automated spam bots.
Image Verification
(case insensitive)

Possibly Related Threads...
Thread Author Replies Views Last Post
  IMPROVEMENT OF THERMAL EFFICIENCY BY RECOVERY OF HEAT FROM IC ENGINE EXHAUST full rep project report tiger 7 8,619 18-10-2014, 10:35 PM
Last Post: jaseela123d
  THERMAL POWER PLANT seminar surveyer 5 9,509 31-08-2013, 05:55 PM
Last Post: Guest
  DIAMOND CUTTING TOOL AND COATINGS Computer Science Clay 2 5,177 29-11-2012, 02:24 PM
Last Post: seminar details
  PREDICTIVE MAINTENANCE USING THERMAL IMAGING project report tiger 7 6,761 28-11-2012, 01:40 PM
Last Post: seminar details
Thumbs Up Ocean thermal energy conversion computer science crazy 7 11,505 19-11-2012, 02:30 PM
Last Post: seminar details
  Solar Thermal Power Plant sd_barry 6 6,837 23-02-2012, 05:08 PM
Last Post: seminar paper
  thermal power generation full report computer science topics 9 21,210 06-02-2012, 12:52 PM
Last Post: seminar addict
  thermal barrier coating full report computer science technology 1 6,006 29-08-2011, 10:44 AM
Last Post: smart paper boy
  A REPORT ON THERMAL POWER STATION ppt seminar surveyer 5 12,174 05-08-2011, 10:02 AM
Last Post: seminar addict
Tongue Thermal Barrier Coatings Computer Science Clay 1 2,425 01-04-2011, 11:49 AM
Last Post: seminar class

Forum Jump: