• Title/Summary/Keyword: 초음파 가공

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Effects of Ultrasonic Vibration on Machined Surface of Aluminium 6061 in Endmill Cutting Process (Al6061의 엔드밀 절삭가공에서 초음파 진동이 가공 표면에 미치는 영향)

  • Jung, Myung-Won;Kwak, Tae-Soo;Kim, Myeong-Kyu;Kim, Geon-Hee
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.13 no.3
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    • pp.96-102
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    • 2014
  • This study focused on the effects of ultrasonic vibration on a machined surface of Al6061 material in the endmill cutting process. It is known that ultrasonic vibration greatly increases the efficiency of the machining process when cutting or grinding. An ultrasonic vibration table was developed for application to ultrasonic vibration endmill machining experiments.Inthisstudy,the surface roughness and actual depth of the cut measured confirm the effects of ultrasonic vibration. As a result of the experiments, the actual depth of the cut increased during endmill machining when using ultrasonic vibration. The surface roughness was improved with increases in the amplitude of the vibration and the depth of the cut.

Compatibilization of PC/SAN Blends via Ultrasound-irradiated Melt Mixing (초음파가 조사되는 용융 혼합에 의한 폴리카보네이트/스티렌-아크릴로니트릴 혼합물의 상용화)

  • 김형수
    • Polymer(Korea)
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    • v.28 no.3
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    • pp.225-231
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    • 2004
  • High intensity ultrasound was irradiated to induce mechano-chemical degradation during melt processing of polycarbonate (PC) and styrene-co-acrylonitrile (SAN) in an intensive mixer. It was found that macroradicals of PC and SAM can be generated during ultrasound assisted melt processing; which, in turn, provides a useful route to achieve in-situ compatibilization for the blends of PC and SAM by their mutual coupling. Effectiveness of compatibilization was assessed by investigating phase morphology and mechanical properties of the blends. It was observed that domain size was reduced and the stability of morphology was well maintained even after annealing treatment of the blends. In audition, the enhancement of mechanical properties such as elongation at break and tensile strength was evident, which added further confirmation on the desirable feature that sonication of melt-blends is able to enhance intermolecular interaction by promoting chemical bonds between dissimilar polymers without use of any compatibilizers.

A Study on the Ultrasonic Machining Characteristics of Alumina Ceramics (알루미나 세라믹의 초음파가공 특성 연구)

  • Kang, Ik-Soo;Kang, Myung-Chang;Kim, Jeong-Suk;Kim, Kwang-Ho;Seo, Yong-Wie
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.2 no.1
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    • pp.32-38
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    • 2003
  • Engineering ceramics have many unique characteristics both in mechanical and physical properties such as high temperature hardness, high thermal, chemical and electrical resistance. However, its machinability is very poor in conventional machining due to its high hardness and severe tool wear. In the current experimental study alumina($Al_2O_3$) was ultrasonically machined using SiC abrasives under various machining conditions to investigate the material removal rate and surface quality of the machined samples. Under the applied amplitude of 0.02mm, 27kHz frequency, three slurry ratios (abrasives water by weight) of 11, 13 and 15 with different tool shapes and applied pressure levels, the machining was conducted. Using the mesh number of 240 abrasive, slurry ratio of 11 and static pressure of $25kg/cm^2$, maximum material removal rate of $18.97mm^3/mm$ was achieved with mesh number of 600 SiC abrasives and static pressure of $30kg/cm^2$, best surface roughness of $0.76{\mu}m$ Ra was obtained.

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A Study on the Development of Rotary Ultrasonic Machining Spindle (회전 초음파가공 주축 개발에 관한 연구)

  • Li, Chang-Ping;Kim, Min-Yeop;Park, Jong-Kweon;Ko, Tae-Jo
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.14 no.4
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    • pp.160-166
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    • 2015
  • Ultrasonic machining (USM) has been considered a new, cutting-edge technology that presents no heating or electrochemical effects, with low surface damage and small residual stresses on brittle workpieces. However, nowadays, many researchers are paying careful attention to the disadvantages of USM, such as low productivity and tool wear. On the other hand, in this study, a high-performance rotary ultrasonic drilling (RUD) spindle is designed and assembled. In this system, the core technology is the design of an ultrasonic vibration horn for the spindle using finite element analysis (FEA). The maximum spindle speed of RUM is 9,600 rpm, and the highest harmonic displacement is $5.4{\mu}m$ noted at the frequency of 40 kHz. Through various drilling experiments on glass workpieces using a CVD diamond-coated drill, the cutting force and cracking of the hole entrance and exit side in the glass have been greatly reduced by this system.

제 1장. 연삭가공의 기초

  • Korea Optical Industry Association
    • The Optical Journal
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    • s.105
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    • pp.49-56
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    • 2006
  • 한국광학기기협회에서는‘한·일 광산업 기술협력’을 보다 효율적으로 추진하기 위하여 해마다 일본 연수기관 및 기업에 대한 현장연수를 실시하고 있는 가운데, 올해는 처음으로 지난 8월에 일본정밀공학회(JSPE)에서 주최하는‘차세대 초정밀광학부품 나노가공기술연수’를 실시했다. 연수기관은 일본 센다이 소재의 동북대학(Tohoku University)으로 구리야가와 츠네모토 교수가 교육을 담당했다. 주요 연수 내용으로는 마이크로 광학부품가공/초정밀 비구면 렌즈 가공/전기점성유체를 이용한 비구면 렌즈 코아 연마/특수광학렌즈 SPDT 가공/초고속 가공/마이크로 AJM 가공/마이크로 초음파가공이며 본 고에서는 직접 연수에 참가 못한 독자들을 위해 연수내용을 번역 게재하고자 한다. 이달에는 제1장 연삭가공의 기초 게재를 시작으로 11월호에 이어서 나머지 2,3,4장 교육과정내용을 게재할 예정이다.

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전해수 특성 및 전해수와 초음파를 이용한 PET의 가수분해

  • 최용철;홍영기;채경수;배기서
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2003.04a
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    • pp.144-148
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    • 2003
  • 현재 섬유 분야에서 많은 부분을 차지하고 있는 폴리에틸렌테레프탈레이트(Polyethylene terephthalate, PET) 섬유는 강도, 혼방성, 내열성 등이 우수한 반면, 염색성, 필링성, 흡습성, 대전성 등의 결점들을 가지고 있어 이러한 단점들을 개선하려는 연구가 현재까지 지속적으로 진행되어 오고 있다 PET의 개질 방법 가운데 촉감개선을 위한 알칼리 감량 가공은 영국에서 처음으로 시도되었고, 1970년대 중반 이후 일본에서 공업화시켰으며 현재에도 가장 널리 사용되고 있는 방법 중의 하나이다. (중략)

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Fabrication of Glass Microstructure Using Laser-Induced Backside Wet Etching (레이저 습식 후면 식각공정을 이용한 미세 유리 구조물 제작)

  • Kim, Bo Sung;Park, Min Soo
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.38 no.9
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    • pp.967-972
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    • 2014
  • The good light permeability and hardness of glass allow it to be used in various fields. Non-conventional machining methods have been used for glass machining because of its brittle properties. As one non-contact machining method, a laser has advantages that include a high machining speed and the fact that no tool making is required. However, glass has light permeability. Thus, the use of a laser to machine glass has limitations. A nanosecond pulse laser can be used at low power for laser-induced backside wet etching, which is an indirect method. In previous studies, a short-wave laser that had good light absorption but a high price was used. In this study, a near-infrared laser was used to test the possibility of glass micro-machining. In particular, when deeper machining was conducted on a glass structure, more problems could result. To solve these problems, microstructure manufacturing was conducted using ultrasonic vibration.

A Study on Micro Ultrasonic machining for Brittle Material Using Ultrasonic vibration (초음파 진동을 이용한 취성재료 가공기술에 관한 연구)

  • 이석우;최헌종;이봉구
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1997.10a
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    • pp.969-972
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    • 1997
  • Ultrasonic machining technology has been developed over recent years for he manufacture of cost-effective and quality-assured precision parts for several industrial application such as optics, semiconductors, aerospace, and automobile application. The past decade has seen a tremendous in the use of ceramic in structural application. The excellent thermal, chemical and wear resistance of these material can be realized because of recent improvement in the overall strength and uniformity of advanced ceramics. Ultrasonic machining, in which abrasive particles in slurry with water are presented to the work surface in the presence of an ultrasonic-vibrating tool, is process which should be of considerable interest, as its potential is not limited by he electrical or chemical characteristics of the work material, making it suitable for application to ceramics. In order to improve the currently used ultrasonic machining using ultrasonic energy, technical accumulation is needed steadily through development of exciting device of ultrasonic machine composed of piezoelectric vibrator and horn. This paper intends to further the understanding of the basic mechanism of ultrasonic machining for brittle material and ultrasonic machining of ceramics based in the fracture-mechanic concept has been analyzed.

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