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Date AbstractIn this chapter, the design, fabrication and testing of CMC turbine blisk were investigated. The service performance analysis of the turbine blisk was at first analyzed. The spider web structure (SWS) fiber preform was adopted as the reinforcement elements of the turbine blisk. The BN interphase and SiC matrix were deposited on the SWS fiber preform, and during the fabrication, the on-line machining were conducted to control the shape and dimension of the blisk. The environmental barrier coatings (EBCs) were prepared on the surface of the SiC/SiC turbine blisk using the atmospheric plasma spraying (APS) method. The XCT scan was conducted to characterize the internal defects in the SiC/SiC turbine blisk. The mechanical performance evaluation, over rotation test and engine bench test were performed, respectively. Finally, the SiC/SiC turbine blisk was installed on an aircraft and completed the first flight testing, which verified the feasibility of the SiC/SiC turbine rotor for gas turbine engine application and accumulated valuable experience for the subsequent development of CMC hot-section components. ReferencesBhat BN (2018) Aerospace materials and applications. American Institute of Aeronautics and Astronautics Google Scholar Cranford SW, Tarakanova A, Pugno NM et al (2012) Nonlinear material behaviour of spider silk yields robust webs. Nature 482(7383):72–76CAS PubMed Google Scholar Freeman TJ, Engel TZ (2019) Turbine blisk including ceramic matrix composite blades and methods of manufacture. 10280768B2, US Google Scholar Li L (2020) Interfaces of ceramic-matrix composites. Design, characterization and damage effects. Wiley-VCH, Weinheim, Germany Google Scholar Liu X, Xu Y, Guo X, Luo X, Li L, Zeng Y, Liu C (2022) Fabrication and testing of spider web structure SiC/SiC turbine blisk. J Chin Ceram Soc 50(8):2205–2211CAS Google Scholar Liu X, Xu Y, Li J, Luo X, Guo X, Hu X, Cao X, Li L, Liu C, Dong N, Liu Y (2023) Design, fabrication and testing of ceramic-matrix composite turbine blisk. Acta Materiae Compositae Sinica 40:1702–1712 Google Scholar Nozhnitsky YA (2018) The problem of ensuring reliability of gas turbine engines. IOP Conf Ser: Mater Sci Eng 302:012082 Google Scholar Ogawa A, Hashimoto R, Zhou F (2001) Rotational test of C/C blisk rotors. In: The 13th international conference on composite materials. Beijing, China. Google Scholar Download references Author informationAuthors and AffiliationsSchool of Materials Science and Engineering, Northwestern Polytechnical University, Xi’an, Shaanxi, ChinaXiaochong LiuCollege of Civil Aviation, Nanjing University of Aeronautics and Astronautics, Nanjing, Jiangsu, ChinaLongbiao LiAuthorsXiaochong LiuYou can also search for this author in PubMed GoogleComments
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2025-04-23AbstractIn this chapter, the design, fabrication and testing of CMC turbine blisk were investigated. The service performance analysis of the turbine blisk was at first analyzed. The spider web structure (SWS) fiber preform was adopted as the reinforcement elements of the turbine blisk. The BN interphase and SiC matrix were deposited on the SWS fiber preform, and during the fabrication, the on-line machining were conducted to control the shape and dimension of the blisk. The environmental barrier coatings (EBCs) were prepared on the surface of the SiC/SiC turbine blisk using the atmospheric plasma spraying (APS) method. The XCT scan was conducted to characterize the internal defects in the SiC/SiC turbine blisk. The mechanical performance evaluation, over rotation test and engine bench test were performed, respectively. Finally, the SiC/SiC turbine blisk was installed on an aircraft and completed the first flight testing, which verified the feasibility of the SiC/SiC turbine rotor for gas turbine engine application and accumulated valuable experience for the subsequent development of CMC hot-section components. ReferencesBhat BN (2018) Aerospace materials and applications. American Institute of Aeronautics and Astronautics Google Scholar Cranford SW, Tarakanova A, Pugno NM et al (2012) Nonlinear material behaviour of spider silk yields robust webs. Nature 482(7383):72–76CAS PubMed Google Scholar Freeman TJ, Engel TZ (2019) Turbine blisk including ceramic matrix composite blades and methods of manufacture. 10280768B2, US Google Scholar Li L (2020) Interfaces of ceramic-matrix composites. Design, characterization and damage effects. Wiley-VCH, Weinheim, Germany Google Scholar Liu X, Xu Y, Guo X, Luo X, Li L, Zeng Y, Liu C (2022) Fabrication and testing of spider web structure SiC/SiC turbine blisk. J Chin Ceram Soc 50(8):2205–2211CAS Google Scholar Liu X, Xu Y, Li J, Luo X, Guo X, Hu X, Cao X, Li L, Liu C, Dong N, Liu Y (2023) Design, fabrication and testing of ceramic-matrix composite turbine blisk. Acta Materiae Compositae Sinica 40:1702–1712 Google Scholar Nozhnitsky YA (2018) The problem of ensuring reliability of gas turbine engines. IOP Conf Ser: Mater Sci Eng 302:012082 Google Scholar Ogawa A, Hashimoto R, Zhou F (2001) Rotational test of C/C blisk rotors. In: The 13th international conference on composite materials. Beijing, China. Google Scholar Download references Author informationAuthors and AffiliationsSchool of Materials Science and Engineering, Northwestern Polytechnical University, Xi’an, Shaanxi, ChinaXiaochong LiuCollege of Civil Aviation, Nanjing University of Aeronautics and Astronautics, Nanjing, Jiangsu, ChinaLongbiao LiAuthorsXiaochong LiuYou can also search for this author in PubMed Google
2025-03-29Capacity (cp), is the amount of heat required to raise the temperature of one pound of water by one degree Fahrenheit. The amount of heat required is expressed as BTU’s; the chart below shows the Specific Heat values of an ethylene glycol/water mixture expressed as BTU’s per pound per degree Fahrenheit (Btu/lb oF).E.G. Solution, wt.%-50°C (-58°F)-40°C (-40°F)-30°C (-22°F)-20°C (-4°F)-10°C (14°F)0°C (32°F)10°C (50°F)20°C (68°F)30°C (86°F)40°C (104°F)50°C (122°F)60°C (140°F)70°C (158°F)80°C (176°F)90°C (194°F)100°C (212°F)01.00381.00181.00040.999430.999020.999130.999781.00091.00261.00491.0076100.972360.974220.976190.978270.980470.982790.985210.987760.990410.993180.99607200.935760.939760.943750.947750.951750.955740.959740.963730.967730.971730.97572300.893730.898890.904050.909200.914360.919510.924670.929820.934980.940130.945290.95044400.846050.852320.858580.864840.871110.877370.883640.889900.896160.902430.908690.914960.92122500.792880.800210.807530.814850.822170.829490.836820.844140.851460.858780.866100.873430.880750.88807600.726030.734360.742690.751020.759350.767680.776010.784340.792670.801000.809330.817660.825990.834310.842640.85097700.670640.679920.689210.698500.707780.717070.726360.735640.744930.754220.763500.772790.782070.791360.800650.809931800.612080.622270.632460.642650.652850.663040.673230.683430.693620.703810.714010.724200.734390.744580.754780.76497900.583470.594520.605570.616620.627670.638720.649770.660820.671860.682910.693960.705010.716061000.532820.544670.556520.568380.580230.592090.603940.615790.627650.639500.651360.66321Thermal Conductivity Thermal conductivity is the rate at which heat passes through a material i.e., ethylene glycol & water mixture. Since water is seen as the “golden standard” in thermal conductivity, higher concentrations of ethylene glycol in a water solution will cause heat to pass through it slower, therefore, the lower the amount of ethylene glycol in the mixture, the more efficient it is at conducting heat.Viscosity, DynamicAn ethylene glycol/water mixture will be slightly viscous, though viscosity will vary depending on temperature and volume. The lower the temperature, the thicker and more viscous the solution will become, meaning it will be harder to pump and handle and may require larger pumps. However, note that solutions of ethylene glycol are less viscous at lower temperatures than solutions containing propylene glycol. Dynamic viscosity is useful to know when designing pumping systems. Here are values of dynamic viscosity, in centiPoise (cP), for ethylene glycol/water mixtures.E.G. Solution, Vol.%-17.8°C (0°F)4.4°C (40°F)26.7°C (80°F)48.9°C (120°F)71.1°C (160°F)93.3°C (200°F)2531.50.90.650.48303.51.710.70.540154.82.21.30.80.650226.52.81.50.950.7603593.821.30.881003104815.573.82.4
2025-03-28Start Download Now PriceFree Version19.1.122.126 Release DateOctober 26, 2022 PublisherBlisk - Publisher's DescriptionBlisk is a Chromium-based browser with essential tools for web development. Use it for simultaneous building and testing both desktop and mobile versions of your website.4 reasons to use Blisk:TIME SAVINGDevelop with a speed of light! Now you do not need to refresh pages all the time, to search and to scroll to the needed element. Blisk radically saves time of development and testing.PRODUCTIVITYBlisk browser will make you 200% productive. So you can do your work 2 times faster and spend your time for the things that really do matter for you. Or have a cup of coffee and relax.CODE GURUCode like a super developer. Blisk browser enables to write cross-device compatible code and monitor errors in the code. So your code will work for any device and look great everywhere.BEST PRACTICESUse best practices like test-driven development. With Blisk your workflow can be concentrated on writing the high quality code without hidden bugs. You can develop and test simultaneously.
2025-04-04Tools. Inspector shows information about most important CSS properties. Cloud storage: App creates secure cloud storage for screenshots, screen records, reports, etc. Cloud storage powers teamwork and team collaboration. Page analysis (coming soon): App analyses code quality, cross-browser compatibility, web page speed, web page performance and provides recommendations on how to improve it. Teamwork (coming soon): App provides additional features for team collaboration: notes, chats, and markers. Markers are used to show notes and discussions on top of the web page. Integrations (coming soon): App provides additional integrations with top bug tracking systems and project management tools to boost team performance. Steps report (coming soon): App generates a detailed report with the steps to reproduce bugs. App tracks and generates steps from user actions on the web page.Advantages: Simultaneous development on desktop and mobile We make developers more productive We provide developer specific features, needed to build the webIn general Chrome and Firefox were created to browse the web, Blisk was created to build the web.InfoQ: The emulator contains some of the major iOS and Android devices. Is it possible to add new devices or at least a generic device?Blisk: For now, users cannot add devices. However, we add more and more devices with each release.InfoQ: How does the auto-refresh feature work? (Do you monitor changes to the file system?)Blisk: Auto-refresh sets watcher for the selected folders and monitors changes of the files with needed extensions. It also works with CSS preprocessors and module bundlers.InfoQ: What are Blisk coins, how to get them and what can one spend them on?Blisk: Blisk coins is an internal currency. Users get Blisk coins once their friends or teammates sign up and start using Blisk. When the user earns 100 Blisk coins, he gets one month of Blisk premium for free.InfoQ: What is on
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