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1.
Polymers (Basel) ; 14(9)2022 May 09.
Article in English | MEDLINE | ID: mdl-35567098

ABSTRACT

With the development and wide applicability of rubber materials, it is imperative to determine their performance under various conditions. In this study, the effect of cyclic shear fatigue on natural-rubber-based anisotropic magnetorheological elastomer (MRE) with carbonyl iron particles (CIPs) was investigated under a magnetic field. An anisotropic MRE sample was prepared by moulding under a magnetic field. Cyclic shear fatigue tests were performed using a modified electromechanical fatigue system with an electromagnet. The storage modulus (G') and loss factor in the absence or presence of a magnetic field were measured using a modified dynamic mechanical analysis system. Under a magnetic field, fatigue exhibited considerable effects to the MRE, such as migration and loss of magnetised CIPs and suppressed increase in stiffness by reducing the energy loss in the strain cycle. Therefore, the G' of the MRE after fatigue under a magnetic field was lower than that after fatigue in the zero field. The performance of the MRE, such as absolute and relative magnetorheological effects, decreased after subjecting to cyclic shear fatigue. In addition, all measured results exhibited strain-dependent behaviour owing to the Payne effect.

2.
Opt Express ; 20(23): 25432-40, 2012 Nov 05.
Article in English | MEDLINE | ID: mdl-23187360

ABSTRACT

We demonstrate high-speed terahertz (THz) reflection three-dimensional (3D) imaging based on electronically controlled optical sampling (ECOPS). ECOPS enables scanning of an axial range of 9 mm in free space at 1 kHz. It takes 80 s to scan a transverse range of 100 mm × 100 mm along a zigzag trajectory that consists of 200 lines using translation stages. To show applicability of the imaging system to nondestructive evaluation, a THz reflection 3D image of an artificially made sample is obtained, which is made of glass fiber reinforced polymer composite material and has defects such as delamination and inclusion, and is compared with an ultrasonic reflection 3D image of the sample.


Subject(s)
Terahertz Spectroscopy/methods , Electronics , Equipment Design , Glass/chemistry , Image Processing, Computer-Assisted , Imaging, Three-Dimensional/methods , Models, Statistical , Polymers/chemistry , Silicon/chemistry , Time Factors , Tomography, Optical Coherence/methods , Ultrasonics
3.
Ultrasonics ; 50(8): 790-7, 2010 Aug.
Article in English | MEDLINE | ID: mdl-20580050

ABSTRACT

This paper describes fabrication and comparison of PMN-PT single crystal, PZT, and PZT-based 1-3 composite ultrasonic transducers for NDE applications. As a front matching layer between test material (Austenite stainless steel, SUS316) and piezoelectric materials, alumina ceramics was selected. The appropriate acoustic impedance of the backing materials for each transducer was determined based on the results of KLM model simulation. Prototype ultrasonic transducers with the center frequencies of approximately 2.25 and 5MHz for contact measurement were fabricated and compared to each other. The PMN-PT single crystal ultrasonic transducer shows considerably improved performance in sensitivity over the PZT and PZT-based 1-3 composite ultrasonic transducers.

4.
Ultrasonics ; 42(1-9): 837-41, 2004 Apr.
Article in English | MEDLINE | ID: mdl-15047393

ABSTRACT

This paper describes a fiber optic sensor suitable for remote sensing and multi-point detection of ultrasound. This ultrasound sensor is based on the surface-bonded fiber optic Sagnac interferometer with the output fringe visibility of 1; it consists of a laser source, an ordinary single mode fiber delay line, a fiber coupler, a phase modulator and polarization controllers. For the validation of the sensor, surface acoustic waves and Lamb waves are excited by illuminating a steel specimen with an array of Q-switched Nd:YAG laser-generated line sources and the measurement of laser-generated ultrasonic waves are performed on the specimen surface using the surface-mounting fiber optic Sagnac sensor. The surface-bonded fiber optic sensor developed in this study has a simple configuration for detection of ultrasonic waves. Effectiveness of surface-bonded fiber optic Sagnac sensors for remote sensing of ultrasound and in situ monitoring of structures is investigated. The capability of multi-point detection of ultrasound by this Sagnac sensor is also discussed.

5.
Cancer Res Treat ; 35(4): 299-303, 2003 Aug.
Article in English | MEDLINE | ID: mdl-26680951

ABSTRACT

PURPOSE: This study was conducted to evaluate the efficacy and safety of combination chemotherapy, with docetaxel and cisplatin, as a first line treatment for advanced non-small cell lung cancer. MATERIALS AND METHODS: Between March 1998 and December 2001, 35 patients with advanced non-small cell lung cancer were enrolled in this study. The patients were treated at 3-week intervals, with one course of a regimen consisting of docetaxel (75 mg/m2 IV for 1 hours) on day 1 and cisplatin (60 mg/m2 IV) on day 2. RESULTS: The median age of the patients was 60.3 years. Of the 35 patients, 20 and 15 had stage IIIb and stage IV diseases, respectively. A complete response was observed in 1 patient and partial response in 15, with an overall response rate of 46%. The overall median survival duration was 40.3+/-25.2 weeks. The median time to progression and response duration were 21.6+/-5.5 and 15.1+/-5.9 weeks, respectively. The survival duration was statistically significantly longer in the response group (50.6 weeks) than in the non-response group (31.6 weeks) (p<0.05). Of the hematological side effects, grades III and IV leukopenia were observed in 4.8% of patients. Grades III and IV nausea and vomiting were observed in 48.5%, and grades I and II neuropathy in 11.4% of the treated patients. These toxicities were well tolerable and reversible. There were no hypersensitivity reactions. CONCLUSION: Docetaxel and cisplatin combination chemotherapy is relatively effective and safe in advanced non-small cell lung cancer patients.

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