• Title/Summary/Keyword: 파괴/과열 평가

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Reliability Assessment of High Voltage Rotating Machine Stator Windings Through Off-line Diagnosis (고압회전기기 고정자권선의 Off-line 진단을 통한 신뢰성 평가)

  • Chang, Jeong-Ho;Lim, Jae-Il;Lee, Dong-Keun;Lee, Heung-Ho
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.1628-1629
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    • 2011
  • 산업현장에서는 회전기기의 고체절연시스템(solid insulation system)의 열화정도를 평가하기 위하여 일정 진단주기에 맞춰 Off-line 상태에서 직류시험 및 교류시험을 통하여 효과적으로 절연물에 대한 상태평가를 시행하고 있다. 직류시험으로는 절연저항, 성극지수(PI) 시험 등이 있으며 교류시험으로는 교류전류시험(${\Delta}I$), 유전정접시험(${\Delta}tan{\delta}$), 부분방전(PD)시험이 있다. 여기서 부분방전은 절연체의 국부적인 열화현상을 추정할 수 있는 중요한 파라미터로, 부분방전시험(PD test)을 통하여 고정자권선(stator winding)에 대한 절연특성을 효과적으로 진단할 수 있다. 고압 전동기는 기동정지의 빈번함과 장기간 운전에 의해 열적, 전기적, 기계적 스트레스를 받게 되고, 이로 인해 과열, 진동, 절연파괴에 이르는 문제점이 발생되어 결국 시스템의 운전정지를 초래하는 심각한 사고로 이어질 수 있다. 따라서 고압 전동기의 절연상태를 주기적으로 감시하고 사고 징후를 검출하여 시스템을 안정적으로 운영하기 위한 고압 전동기 Off-line 절연진단에 대하여 기술하고 수차발전기에 대한 절연상태진단 결과를 바탕으로 절연시스템의 신뢰성 평가 방법에 대하여 고찰하고자 한다.

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Development of In-tank Pressure Regulator and Solenoid Valve (내장형 레귤레이터 및 솔레노이드 개발)

  • Lee, Jun-Hyuk;Lim, Tae-Hoo;Kim, Kyung-Nam;Shim, Sang-Hak
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.11a
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    • pp.188-191
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    • 2007
  • This paper shows the Development of In-tank pressure regulator and Solenoid Valve used in FCV(Fuel Cell Vehicle). We have developed new type of Regulator and Solenoid through analysis of the structure and characteristics of component of FCS(Fuel Cell System) from the advanced technology. Now it is possible to localize the component by making use of the development of Regulator and Solenoid made by us. Regulator and Solenoid is a equipment to control hydrogen pressure supplied into a stack. Therefore, outlet pressure, a flow of fluid and temperature are important parameters according to a inlet pressure. And leak test, endurance test and burst test should be done to guarantee the performance and safety of Regulator and Solenoid used in the fuel of high pressure. Also, Hydrogen friendly materials are applied to inner parts of the Regulator, Solenoid and weight reduction is done to cost saving in part not related to performance. As a result, we have proven the good performance and reliability in endurance of Regulator, Solenoid and will make an development in performance as well as durability to ensure industrialization.

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Development of Evaluation Technique of High Temperature Creep Characteristics by Small Punch-Creep Test Method (I) - Boiler Superheater Tube - (SP-Creep 시험에 의한 고온 크리프 특성 평가 기술 개발(I) - 보일러 과열기 튜브 -)

  • Baek, Seung-Se;Na, Seong-Hun;Na, Ui-Gyun;Yu, Hyo-Seon
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.25 no.12
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    • pp.1995-2001
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    • 2001
  • In this study, a small punch creep(SP-Creep) test using miniaturized specimen(10${\times}$10${\times}$0.5mm) is described to develop the new creep test method for high temperature structural materials. The SP-Creep test is applied to 2.25Cr-lMo(STBA24) steel which is widely used as boiler tube material. The test temperatures applied for the creep deformation of miniaturized specimens are between 550∼600$^{\circ}C$. The SP-Creep curves depend definitely on applied load and creep temperature, and show the three stages of creep behavior like in conventional uniaxial tensile creep curves. The load exponent of miniaturized specimen decreases with increasing test temperature, and its behavior is similar to stress exponent behavior of uniaxial creep test. The creep activation energy obtained from the relationship between SP-Creep rate and test temperature decreases as the applied load increases. A predicting equation or SP-Creep rate for 2.25Cr-lMo steel is suggested. and a good agreement between experimental and calculated data has been found.

A study on the evaluation for material degradation of 0.0Cr-0.5Mo steel by a electrochemical polarization method (전기화학적 분극법에 의한 1.0Cr-0.5Mo강의 경년열화 평가에 관한 연구)

  • Na, Eui-Gyun;Kim, Hoon;Lee, Jong-Gi
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.22 no.1
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    • pp.177-189
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    • 1998
  • The contents of this paper include a non-destructive technique for evaluating the degradation of the boiler superheater tube in a fossil power plant through an electrochemical polarization test. Correlation between Ip of polarization parameter and SP-DBTT for the superheater tubes in long-term use was obtained. 1.0Cr-0.5Mo steel was degraded by softening, and the degree of degradation was dependent upon carbides with Cr and Mo elements. Since brittle fracture at low temperature and ductile fracture mode at high temperature were shown, similarity between standard Charpy and small punch tests could be found. In addition, SP-DBTT showing the degree of degradation was higher, as the time-in use of the materials got longer. Electrolyte including picric acid of 1.3 g in distilled water of 100ml at 25.deg. C temperature and sodium tridecylbenzene sulfonate with 1g could be applied to evaluate the degradation of 1.0Cr-0.5Mo steel by means of the electrochemical polarization test. Ip and Ipa values measured through the electrochemical test are the appropriate parameters for representing the degradation of the superheater tube(1.0Cr-0.5Mo steel) for the fossil power plant. It is poassible to evaluate the degradation of materials with different time histories electrochemically, by Ip value only, at field test.

Forensic Engineering Study on Damage Assessment of the Damage to the Internal Parts of a Vehicle Involved in a Fire Accident (차량 화재의 기계 부품 손상 평가에 관한 법공학적 연구)

  • Kim, Eui-Soo
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.34 no.3
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    • pp.255-261
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    • 2010
  • Forensic engineering is the area of expertise of those qualified to serve as engineering experts in courts of law or arbitration proceedings. Especially failure of internal parts during vehicle fire accidents causing injuries and damage to property almost always generates conflict between the automaker and customer. Hence, the investigation of such events generally involves an engineering analysis. One of the possible reasons for such accidents caused by vehicle fire is the failure of the piston and connecting rod. By formal inspections and engineering tests, this study shows the results of investigation and the cause of failure of the mechanical parts. For this purpose the failure mechanism is analyzed by using fractography methods and by applying an instrumented indentation technique to compare the material properties of the reference part with those of the malfunctioning part.