Academic literature on the topic 'Baitinger Electric Co., Inc'

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Journal articles on the topic "Baitinger Electric Co., Inc"

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HIGUCHI, Takahiro. "An Approach for Technical Skill Development & Succession in Kyushu Electric Power Co., Inc." Journal of JSEE 55, no. 3 (2007): 181–85. http://dx.doi.org/10.4307/jsee.55.3_181.

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Matsuzawa, K., M. Suzuki, Y. Okuhara, Y. Kishida, Y. Kudo, and T. Yamashita. "New energy management system for central dispatching center of Tokyo Electric Power Co., Inc." IEEE Transactions on Power Systems 5, no. 4 (1990): 1112–17. http://dx.doi.org/10.1109/59.99360.

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Shoji, Nobuyuki. "Tepco's educational institute." Industry and Higher Education 1, no. 2 (December 1987): 137–39. http://dx.doi.org/10.1177/095042228700100210.

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The Tokyo Electric Power Co Inc (TEPCO) has established a comprehensive and forward-looking training programme to fully exploit the resources of its personnel. In this it aims not only to develop technical and managerial skills in its employees but also to generally widen their intellectual horizons. TEPCO sees a social role in its electric business and aims to develop the creativity and personal qualities of its staff, to secure the future of the corporation and to guarantee a motivated workforce.
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Ito, Shunichi, and Tetsuo Akiyama. "A Historical and Engineering View of Power Transmission Systems in Kansai Electric Power Co., Inc." IEEJ Transactions on Fundamentals and Materials 128, no. 3 (2008): 127–40. http://dx.doi.org/10.1541/ieejfms.128.127.

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AKASHI, Toyou. "E223 Safety measures taken at the Ikata Power Station of SHIKOKU ELECTRIC POWER CO.,INC." Proceedings of the National Symposium on Power and Energy Systems 2013.18 (2013): 415–16. http://dx.doi.org/10.1299/jsmepes.2013.18.415.

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Ford, Gary T. "The Impact of the Daubert Decision on Survey Research Used in Litigation." Journal of Public Policy & Marketing 24, no. 2 (September 2005): 234–52. http://dx.doi.org/10.1509/jppm.2005.24.2.234.

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The opinions issued by the U.S. Supreme Court in Daubert v. Merrell Dow Pharmaceuticals Inc., General Electric Co. v. Robert K. Joiner, Kumho Tire Co. Ltd. v. Carmichael, and Weisgram v. Marley changed the ground rules for whether a survey is admissible as evidence into a trial. This article provides a history of the criteria used to determine the admissibility of expert reports before Daubert and summarizes Daubert and the three other relevant opinions. It provides examples of how the Daubert criteria are being applied in cases involving survey research and provides recommendations for conducting surveys that are likely to survive a Daubert challenge.
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Sato, Kiyoshi. "A Study on Social Responsibility of Engineers and Managers." Journal of Disaster Research 8, sp (September 1, 2013): 730–36. http://dx.doi.org/10.20965/jdr.2013.p0730.

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After the accident at the Fukushima Daiichi Nuclear Power Plant following the Great East Japan Earthquake, the future promotion of nuclear power generation has been discussed from various points of view. Ensuring national security requires down-toearth policies on energy as well as on defense and food supplies, together with diplomatic efforts and technologies that realize these policies. In the author’s opinion, in view of Japan’s poor fossil fuel resources and a worldwide increase in energy demand, particularly among emerging countries, nuclear power generation should be maintained with all possible measures taken to ensure safety until alternative power generation methods are developed that provide excellent safety, stability, and economy. Therefore, in light of the lessons learned from the experience of the Fukushima accident, the problems identified should be carefully examined and improvements should be made to revitalize nuclear power generation in Japan. With this awareness in mind, this article discusses the concept of the social responsibility of engineers and managers, i.e., the meaning of a sense of responsibility and compliance with laws and norms for business personnel, through personnel at Tohoku Electric Power Co., Inc., (Tohoku Electric) at the time of the Great East Japan Earthquake and achievements by the late Yanosuke Hirai, a former vice president of the company, who greatly influenced decisions on the premise height of the Onagawa Nuclear Power Plant. Nowadays, the statements of engineers, policymakers, and managers are viewed less reliable than before. In such circumstances, reviewing the words and deeds of Mr. Susumu Yoda, a former vice president of Tokyo Electric Power Co., Inc., (Tepco) who was involved in promoting nuclear power generation, we discuss the concept of the social responsibility of those involved in megatechnology. Finally, the author highlights a current question involving a basic problem regarding the concept of decision making in relation to problems including scientific uncertainty, and discuss the direction in which to proceed.
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EBARA, Hisao. "Development of TRITN: in-house technical information network of technical research institute in The Chugoku Electric Power Co., Inc." Journal of Information Processing and Management 33, no. 6 (1990): 506–19. http://dx.doi.org/10.1241/johokanri.33.506.

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Suzuki, Shigekazu, Hiroha Toba, Takumi Takeda, Yuta Togashi, and Takahiro Akao. "Development of Robot Simulating Fuel Debris Retrieval." Journal of Robotics and Mechatronics 34, no. 3 (June 20, 2022): 537–43. http://dx.doi.org/10.20965/jrm.2022.p0537.

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A creative robot contest for decommissioning was held as part of human resources development for decommissioning of the Fukushima Daiichi Nuclear Power Station of Tokyo Electric Power Co., Inc. In the 5th creative robot contest for decommissioning, robots were developed for fuel-debris retrieval from the lower part of the pedestal. Fukushima KOSEN developed a robot consisting of a primary robot that moves to an access port on the platform while a secondary robot is stored inside the main body. The robot collects fuel debris by lowering the secondary robot 3.2 m downward. Fukushima KOSEN also developed a graphical user interface (GUI) to visually express the motion of the robot.
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Takahashi, Narumi. "Message from the Winner." Journal of Disaster Research 18, no. 2 (February 1, 2023): 82. http://dx.doi.org/10.20965/jdr.2023.p0082.

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We are very honored to receive the prestigious JDR Award for the Most Cited Paper 2022. The winning paper, “Real-Time Tsunami Prediction System Using DONET,” discusses a system that uses data from the Dense Oceanfloor Network system for Earthquakes and Tsunamis (DONET), which was installed in the rupture areas of the 1944 Tonankai and 1946 Nankai earthquakes in order to instantly generate and visualize tsunami prediction information. The forecast information from this system consists of tsunami arrival time, maximum tsunami height, tsunami inundation area, and inundation depth distribution. The system, which visualizes and distributes forecast information for areas where users need it as a supplement to the tsunami information provided nationwide by the Japan Meteorological Agency, has been introduced in Wakayama Prefecture, Mie Prefecture, Chiba Prefecture, and the city of Owase, as well as by Chubu Electric Power Co., Inc. After DONET was installed in the Tonankai rupture area, we were considering the possibility of using DONET data regionally, and we developed the system as results of discussions with Wakayama Prefecture and Chubu Electric Power Co., Inc. Under the concept that the users themselves would be operating the system, we intended to make the system as simple and easy to understand as possible, and to reduce costs by minimizing the number of hardware units. We also considered making the system flexible and scalable, recognizing that each user has a different way of how to use the tsunami forecast information. We were able to receive this award thanks to the cooperation of the people who were involved in many discussions with us during the process of establishing the concept. We will not become complacent going forward, but will continue to improve our system in ways that reflect the opinions of the users. We would like to thank everyone who has cited this paper with their interests.
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Books on the topic "Baitinger Electric Co., Inc"

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Waltersdorf, John M. Tristate Electrical Supply Co., Inc.: Systems, solutions, and services. New York: Newcomen Society of the United States, 1995.

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San Francisco (Calif.). Office of the Controller. Audits Division. Human Rights Commission: Barri Electric Company, Inc., met the objectives for women business enterprise participation in its contract with the Airport. San Francisco: Office of the Controller, 2002.

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Division, San Francisco (Calif ). Office of the Controller Audits. Human Rights Commission: Compliance audit of the Airport Commission contract with Lawrence Construction Co./West Bay Builders, Inc., A Joint Venture. San Francisco: Office of the Controller, 2001.

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Co, Business Communications, ed. The plastics/electronics connection: The prospects for plastics in evolving electronic equipment designs for the 1990s : proceedings of the 1992 conference sponsored by Business Communications Co., Inc., held in Stamford, Connecticut, November 9-10, 1992 : highlighting design desiderata, economic issues, environmental issues, material selections, technological changes, trade patterns. Norwalk, CT (25 Van Zant St., Norwalk 06855): Business Communications Co., Inc., 1992.

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Division, San Francisco (Calif ). Office of the Controller Audits. Human Rights Commission: Compliance audit of the Department of Public Works with Ranger Pipelines, Inc./D'Arcy & Harty Construction, a JV. San Francisco: Office of the Controller, 2001.

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Division, San Francisco (Calif ). Office of the Controller Audits. Human Rights Commission: Compliance audit of the Port of San Francisco contract with Kin Wo Construction, Inc. San Francisco: Office of the Controller, 2000.

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Division, San Francisco (Calif ). Office of the Controller Audits. Human Rights Commission: Compliance audit of the Department of Public Works contract with Treadwell & Rollo, Inc./Olivia Chen Consultants, JV. San Francisco: Office of the Controller, 2000.

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San Francisco (Calif.). Office of the Controller. Audits Division. Human Rights Commission: The joint venture of Stacy and Witback/Esquivel met the minority business enterprise participation goals in its contract with the Department of Public Works. San Francisco: Office of the Controller, 2003.

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San Francisco (Calif.). Office of the Controller. Audits Division. Human Rights Commission: In its contract with the Public Utilities Commission, the Joint Venture of CET Environmental Services, Inc./Gabewell did not fully meet the objectives for participation by minority or women business enterprises. San Francisco: Office of the Controller, 2003.

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San Francisco (Calif.). Office of the Controller. Audits Division. Human Rights Commission: The joint venture of DeSilva Gates/Ramirez met the objectives for minority business enterprise participation in its contract with the Airport. San Francisco: Office of the Controller, 2002.

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Conference papers on the topic "Baitinger Electric Co., Inc"

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Inoue, Takashi, Katsumi Fushiki, Akifumi Oka, and Kouichi Murayama. "Application of the Advanced Construction Technologies to Shimane Nuclear Power Station Unit No.3 of the Chugoku Electric Power Co., Inc." In 18th International Conference on Nuclear Engineering. ASMEDC, 2010. http://dx.doi.org/10.1115/icone18-30156.

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Shimane Nuclear Power Station Unit No.3 (hereinafter NS-3) with 1,373 MW of maximum electric power being supplied to The Chugoku Electric Power Co., Inc. (Hereafter The Chugoku EPCO) is now under construction together with Hitachi-GE Nuclear Energy (HGNE). The groundbreaking (first establishment in construction business permission) was held in Dec. 2005, and is aimed at starting operation in Dec. 2011. HGNE finished installing the Reactor Pressure Vessel (RPV), the heaviest equipment in the plant in July 2009. HGNE also installed the shroud, one of the most important equipment in Aug. and a giant crawler crane was used for the installation. Regarding electrical equipment, HGNE installed a central control panel into the Control Building (C/B). The installation of main products moves ahead one after another, and the construction is going smoothly. Currently, the main construction has been proceeded to mechanical and electrical work by HGNE from building one by the building contractors. This paper reports the construction status of NS-3 and introduces applied construction technologies and construction management methods.
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Aoki, S., Y. Tsukuda, E. Akita, Y. Iwasaki, R. Tomat, M. Rosso, and C. Schips. "Development of the Next Generation 1500°C Class Advanced Gas Turbine for 50Hz Utilities." In ASME 1996 International Gas Turbine and Aeroengine Congress and Exhibition. American Society of Mechanical Engineers, 1996. http://dx.doi.org/10.1115/96-gt-314.

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The 701G1 50Hz Combustion Turbine continues a long line of large heavy-duty single-shaft combustion turbines by combining the proven efficient and reliable concepts of the 501F and 701F. The output of the 701G1 is 255MW with combined cycle net efficiency of over 57%. A pan of component development was conducted under the joint development program with Tohoku Electric Power Co., Inc. and a part of the design work was carried out under the cooperation with Westinghouse Electric Corporation in the U.S.A. and Fiat Avio in Italy. This gas turbine is going to be installed to “Higashi Niigata Power Plants NO.4” of Tohoku Electric Power Co., Inc. in Japan. This plant will begin commercial operation in 1999. This paper describes some design results and new technologies in designing and developing this next generation 1500°C class advanced gas turbine.
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Uchiyama, Junichi. "World’s First PWR Reactor Internals Replacement." In 14th International Conference on Nuclear Engineering. ASMEDC, 2006. http://dx.doi.org/10.1115/icone14-89233.

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Mitsubishi Heavy Industries, Ltd. (MHI) completed replacement work of the upper and lower reactor internals of the 566 MW Ikata Unit No.1 of Shikoku Electric Power Co., Inc. The event marks the world’s first all-in-one-piece extraction and replacement work of its kind in a pressurized water reactor. The author wishes to introduce an outline and features of this milestone.
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Sumikura, Yuya. "High Pressure Gas Pipeline Installation Inside a Long Length and Small Cross-Section Mountain Tunnel." In 2012 9th International Pipeline Conference. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/ipc2012-90196.

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The gas pipeline called “Mie-Shiga Pipeline” (60km total length, 610mm diameter, 7MPa maximum pressure, grade L450 (X65)) is under joint construction between Chubu Electric Power Co., Inc. and Osaka Gas Co., Ltd. This pipeline is planned to start supplying gas in 2014. Since the main part of our construction area is in a mountainous area called Suzuka Mountains, the mountain tunneling method is adopted in part of the mountainous area (about 7.5km in length) for gas pipeline installation to shorten the construction period. This paper discusses the design concept and the highly efficient technique for installing pipeline inside a long length and small cross-section mountain tunnel, as well as the application of an internal watertight wall, which is a task specific to the mountain tunnel.
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Sato, M., H. Matsuzakl, T. Yamaura, S. Aoki, K. Suanaga, E. Ito, and Y. Tomita. "High Temperature Demonstration Unit for a 1500°C Class Gas Turbine." In ASME 1994 International Gas Turbine and Aeroengine Congress and Exposition. American Society of Mechanical Engineers, 1994. http://dx.doi.org/10.1115/94-gt-412.

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Tohoku Electric Power Co., Inc. and Mitsubishi Heavy Industries, Ltd. have begun a joint development program on key technologies for a next generation gas turbine which aims for a combined cycle efficiency over 55%. Under the program, advanced cooling technologies, better heat resistant materials and thy low NOx (DLN) combustion technologies are being developed. For verifying high temperature technologies, turbine testing is going to be performed using the HTDU (High Temperature Demonstration Unit) at Takasago Machinery Works, Mitsubishi Heavy Industries, Ltd. This paper describes the general description of the HTDU facility and plans for testing a turbine at a firing temperature of 1500°C.
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Sato, M., Y. Kobayashi, H. Matsuzaki, S. Aoki, Y. Tsukuda, and E. Akita. "Final Report of the Key Technology Development Program for a Next Generation High Temperature Gas Turbine." In ASME 1995 International Gas Turbine and Aeroengine Congress and Exposition. American Society of Mechanical Engineers, 1995. http://dx.doi.org/10.1115/95-gt-407.

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There is a strong demand for efficient and clean power generating systems to meet recent energy saving requirements and environmental regulations. A combined cycle power plant is one of the best solutions to the above. Tohoku Electric Power Co., Inc. and Mitsubishi Heavy Industries, Ltd. have jointly developed three key technologies for a next generation 1,500°C class gas turbine. The three key technologies consist of (1) high temperature low NOx combustion system, (2) row I turbine vane and blade with advanced cooling schemes, and (3) advanced heat resistant materials, verified by HTDU (High Temperature Demonstration Unit). This paper describes the results of the above mentioned 6 year joint development.
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Sasaki, Yoshiki, Yoshimitsu Tsumita, Masahiro Torii, and Yuusuke Mori. "Operation Results of IHI Flue Gas Desulfurization System for Unit 1(1,000MW) at Hitachinaka Power Station and Unit 1 at Mizue Power Station." In ASME 2005 Power Conference. ASMEDC, 2005. http://dx.doi.org/10.1115/pwr2005-50353.

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Unit 1 at Hitachinaka Power Station, which is the newest 1,000MW coal fired power station of Tokyo Electric Power Co., Inc., entered into the commercial operation in December 2003. IHI (Ishikawajima-Harima Heavy Industries Co., Ltd.) constructed the flue gas treatment system with the state-of-the-art technology and low emission values. To meet demands for both reducing construction cost and high performance, IHI applied a single rectangular Absorber based on the simultaneous desulfurization and oxidation method, Nonleakage type Gas-Gas Heater (GGH) and Electrostatic Precipitator (ESP) at low-low temperature position. Unit 1 at Mizue Power Station of GENEX Co., Ltd., which is one of the independent power produces, entered into the commercial operation in June 2003. In this plant, IHI applied a high performance spray tower Absorber and wet type Electrostatic Precipitator (ESP) to meet the high desulfurization efficiency for vacuum residue oil firing and extremely rigorous regulation owing to location near the metropolitan area.
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Nomoto, H., A. Koga, S. Ito, Y. Fukuyama, F. Otomo, S. Shibuya, M. Sato, Y. Kobayashi, and H. Matsuzaki. "The Advanced Cooling Technology for the 1500 °C Class Gas Turbines: The Steam Cooled Vanes and the Air Cooled Blades." In ASME 1996 International Gas Turbine and Aeroengine Congress and Exhibition. American Society of Mechanical Engineers, 1996. http://dx.doi.org/10.1115/96-gt-016.

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It is very essential to raise the thermal efficiency of combined cycle plants from the viewpoint of energy saving and environmental protection. Tohoku Electric Power Co., Inc. and Toshiba Corporation in Japan have jointly studied the next generation of combined cycle system using 1500 °C class gas turbine. A promising cooling technology for the vanes using steam was developed. The blades are cooled by air, adopting the impingement cooling, the film cooling and so on. The cooling effectiveness was confirmed both for the vanes and the blades using hot wind tunnel. This paper describes the design features of the vanes and the blades, and the results of the verification tests using hot wind tunnel.
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Nishimura, Yoshiaki, Tomoyuki Sugawara, Kazuyuki Tada, Junichiro Masada, Toshishige Ai, and Tatsuya Iwasaki. "Application of Latest Gas Turbine Technologies and Verification Results." In ASME Turbo Expo 2016: Turbomachinery Technical Conference and Exposition. American Society of Mechanical Engineers, 2016. http://dx.doi.org/10.1115/gt2016-56520.

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Utility companies and gas turbine manufacturer alike are working diligently to improve Gas Turbine Combined Cycle (GTCC) efficiency in order to reduce fossil fuel consumption as well as CO2 emissions. Tohoku Electric Power Co., Inc. started operating large size GTCC in 1984 with Mitsubishi D series gas turbines. Since then, the company has lead the application of first of class Mitsubishi gas turbines. The company applied the first M701G gas turbine in 1999 and this successful experience was followed in 2010 with the single-shaft Sendai GTCC featuring the first M701F4. The M701F5 was introduced in 2011 by Mitsubishi Hitachi Power Systems, LTD. (MHPS) and Tohoku Electric pioneered one more time its application at the No.3 Shin-Sendai Power Plant in 2015. The M701F5 features the combination of technologies verified in other gas turbine frames. This paper introduces the feature of the M701F5 gas turbine including its technologies and verification results.
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Watanabe, Hajime, Akihiro Kanaya, Junichi Kusumoto, and Takafumi Tsurui. "Development of Compact Small Punch Creep Testing Equipment." In ASME 2011 Pressure Vessels and Piping Conference. ASMEDC, 2011. http://dx.doi.org/10.1115/pvp2011-57491.

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Japan has many aged thermal power plant facilities and some boilers in such facilities have been in operation for more than 100,000 hours, so the importance of creep residual life evaluation of components exposed to severe conditions has been increasing. Although creep residual life of such components can be evaluated by destructive methods relatively accurately, they significantly affect the component to be sampled, take a long time to carry out and are high-cost. To solve these problems, Kobe Material Testing Laboratory Co., Ltd. and Kyushu Electric Power Co., Inc. have jointly developed compact-sized and less expensive small punch creep testing equipment for accurate creep residual life evaluation. Outer dimensions of developed equipment are 660W × 335D × 807H (mm); weight is 130kg. Small punch creep test can be conducted by this testing equipment, in order to identify creep property using 8mm diameter and 0.5mm thickness specimens taken from tubes or pipes of thermal power plant facilities, and evaluate remaining life. The testing equipment is expected to improve efficiency and reduce costs to evaluate material characteristics and creep residual life for facilities in power plants and various industries.
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Reports on the topic "Baitinger Electric Co., Inc"

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Armstrong, Mazana. PR675-203601-R01 Minimum Separation Between Underground Pipelines and Electric Supply Line Structures. Chantilly, Virginia: Pipeline Research Council International, Inc. (PRCI), March 2022. http://dx.doi.org/10.55274/r0012217.

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