• Title/Summary/Keyword: fracture mechanism

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The Experience of Open Reduction and Internal Fixation of Mandible Fracture by Acupuncture Method (Acupuncture를 이용한 하악골 골절수술경험 -증례 보고-)

  • Khil, Hong-Mo;Kwak, Ho-Sung;Ro, Shik
    • The Korean Journal of Pain
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    • v.9 no.1
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    • pp.195-199
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    • 1996
  • Based on points of neuroendocrine physiology, stimulus developed at the acupuncture site can pass to the pituitary gland through somatosensory and activated descending inhibitory mechanism which originated in raphe magnus of midbrain. For the operation of mandible fracture, acupuncture anesthesia was performed at 6 points of both forearm and both feet by method taking point on distant segment. Acupuncture anesthesia deals with central analgesic mechanism and the theory of diffuse noxious inhibitory control.

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A Study on Failure Analysis of Low Pressure Turbine Blade Subject to Fatigue Load (피로하중을 받은 저압 터빈 블레이드의 파손해석에 관한 연구)

  • 홍순혁;이동우;조석수;주원식
    • Journal of Welding and Joining
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    • v.19 no.3
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    • pp.298-304
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    • 2001
  • Turbine blade is subject to force of three types ; the torsional force by torsional mount, the centrifugal force by the rotation of rotor and the cyclic bending force by steam pressure. The cyclic bending force was a main factor on fatigue strength. SEM fractography in root of turbine blade showed micro-clack width was not dependent on stress intensity factor range. Especially, fatigue did not exist on SEM photograph in root of turbine blade. To clear out the fracture mechanism of turbine blade, nanofractography was needed on 3-dimensional crack initiation and crack growth with high magnification. Fatigue striation partially existed on AFM photograph in root of turbine blade. Therefore, to find a fracture mechanism of the torsion-mounted blade in nuclear power plant, the relation between stress intensity factor range and surface roughness measured by AFM was estimated, and then the load amplitude ΔP applied to turbine blade was predicted exactly by root mean square roughness.

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Microstructural Wear Mechanism of $Al_2O_3-5$ vol% SiC nanocomposite and $Si_3N_4$Ceramics

  • Riu, Doh-Hyung;Kim, Yoon-Ho;Lee, Soo-Wohn;Koichi Niihara
    • Journal of Powder Materials
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    • v.8 no.3
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    • pp.179-185
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    • 2001
  • Through the observation of wear scar of two ceramic materials, microstructural wear mechanisms was investigated. As for the $Al_2O_3$-5 vol% SiC nanocomposite, the grain boundary fracture was suppressed by the presence of SiC nano-particles. The intragranular SiC particles have inhibited the extension of plastic deformation through the whole grain. Part of plastic deformation was accommodated around SiC particles, which made a cavity at the interface between SiC and matrix alumina. On the other hand, gas-pressure sintered silicon nitride showed extensive grain boundary fracture due to the thermal fatigue. The lamination of wear scar was initiated by the dissolution of grain boundary phase. These two extreme cases showed the importance of microstructures in wear behavior.

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Shearing Mechanism in Hydro-Mechanical Punching Process (하이드로 메카니컬 펀칭공정의 전단 메커니즘)

  • Kim, Seung-Soo;Kim, Chang-Hoon
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.5 no.3
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    • pp.51-57
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    • 2006
  • Hydro-mechanical punching was developed for preventing burr formation. Circular hole punching and Finite element method(FEM) analysis were conducted to investigate shearing characteristics of this process in comparison with conventional and mechanical counter punching. In this process hydrostatic pressing with appropriate medium was utilized instead of counter punch, which resulted in the delay of the point that the fracture is initiated and clean shearing surface was obtained. FEM analysis was utilized to find out optimum processing parameters and shearing mechanism for burr-free hole punching.

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Seymour's Fracture of the Base of the Distal Phalanx in a Child (소아 원위지골 기저부에서 발생한 Seymour씨 골절의 치험례)

  • Kim, Cheol Hann;Tark, Min Sung
    • Archives of Plastic Surgery
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    • v.33 no.6
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    • pp.776-779
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    • 2006
  • Purpose: Prior to closure of the epiphysis of the distal phalanx, fracture usually occurs through the growth plate, Salter-Harris type I or II, or through the juxtaepiphyseal region 1 to 2 mm distal to the growth plate. The terminal tendon of extensor inserts into the epiphysis only, while insertion site of the flexor digitorum profundus spans both the epiphysis and metaphysis. Because of the difference between these tendon insertions, this injury mimics a mallet deformity. But, this type of injury does not involve a tear or avulsion of the extensor, unlike mallet finger of adults. Seymour was the first to describe this type of injury in children and called after his name, Seymour's fracture. This fracture is prone to infection or remain the residual deformity unless adequate treatment. Methods: We report a case of Seymour's fracture. A 9-year-old boy presented a laceration of the nail matrix, with the nail lies degloved from the nail fold on the right middle finger gotten from an impact against a door. An X-ray examination showed the fracture line lying 1 mm distal to the growth plate. The injury was treated with debridement and the fracture was reduced by applying hyperextension force. Under the C-arm, a single 0.7 mm K-wire was used to immobilize the distal interphalangeal joint. Intravenous antibiotics were applied for 5 days after surgery. Results: The K-wire was removed in the 3rd week. No infection or significant deformity was found until follow-up of 12 months. Conclusions: Seymour's fracture may be at first classically mallet deformity by its appearance. But it is anatomically different and more problematic injury. If it isn't corrected at the time of injury, derangement of the extensor mechanism, and growth deformity of the distal phalanx may occur. The fracture site should be debrided, removed of any interposed soft tissue, and the patient should be given appropriate antibiotics. Reduction should be maintained by K-wire fixation. We experienced no infection or premature epiphyseal closure.

A Study on Deformation and Strength of High-Strength Polymer Composites Using Automobiles (자동차용 고강도 폴리머 복합재료의 변형과 강도에 관한 연구)

  • Im, Jae-Gyu;Sin, Jae-Hun;Park, Han-Ju;Shoji, T.;Takeda, H.
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.25 no.7
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    • pp.1082-1088
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    • 2001
  • Nowadays study on recycling disused plastics for automobiles was lively progressed. Rubber and talcum powder was added to retrieve degradation of physical properties caused by recycling disused polypropylene. The effect of the temperature, the fatigue load and the loading speed on DEN(double edged notch) specimen which was made by the pp-rubber composites during fracture was studied by. DEN specimen was made on PP-rubber composites through the injection molding. With increasing temperature the fracture strength was linearly decreased and the fracture energy was increased by $0^{\circ}C$ and after that decreased. In the same temperature the fracture strength during increasing the notch radius was hardly increased. The fracture behaviour at low and high loading speed was different entirely. At high loading speed plastic region was small and fracture behaviour was seen to brittle fracture tendency. With increasing fatigue load fracture energy was first rapidly decreased and subsequently steady when radius of notch tip was 2mm, but Maximum load during fracture scarcely varied. The deformation mechanism of polypropylene-rubber composites during fracture was studied by SEM fractography. A strong plastic deformation of the matrix ahead of the notch/crack occurred. The deformation seem to be enhanced by a thermal blunting of the notch/crack.

The Risk Factors Associated with Nonunion after Surgical Treatment for Distal Fibular Fractures (원위 비골 골절의 수술 후 발생한 불유합의 관련 인자)

  • Lee, Jun Young;Choi, Kwi Youn;Kang, Sinwook;Ko, Kang Yeol
    • Journal of Korean Foot and Ankle Society
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    • v.22 no.3
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    • pp.95-99
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    • 2018
  • Purpose: The purpose of this study was to evaluate the radiologic outcomes of distal fibular fractures and to analyze the risk factors associated with nonunion. Materials and Methods: Between January 2009 and March 2016, 13 patients who had final nonunion with ankle fracture were included. In the control group, 370 patients who had undergone bony union and removed metal implants were included. All patients underwent the same surgical procedure and had the same treatment method, ultimately achieving satisfactory open reduction results with less than 2 mm fracture gap. Surgical treatment of fracture was considered to have the same effect on nonunion, and factors that might be associated with nonunion were evaluated. SPSS ver. 13.0 (SPSS Inc., USA) was used for all statistical analyses. Pearson's chi-square test and multi-variate regression analysis were performed to determine the factors affecting nonunion of distal fibular fracture. A p-value less than 0.05 was considered statistically significant, and relative risk was assessed. Results: The mean age of 13 patients was 46.9 years (range, 16~57 years); there were 8 men and 5 women. Among the 13 patients with nonunion, atrophic was the most common (12 cases). The association between the injury mechanism and the Lauge-Hansen classification and diabetes mellitus was not statistically significant. Distal fibular fractures with tibia shaft fracture (p=0.015) and Danis-Weber type C fracture (p=0.023), open fracture (p=0.011), and smoking (p=0.023) were significantly associated with nonunion. Conclusion: In this study, the combined injury of the ipsilateral tibia shaft fracture, open fracture, and Danis-Weber type C fracture may increase the possibility of nonunion. Therefore, caution is advised to prevent nonunion.