• 제목/요약/키워드: Microstructure development

검색결과 654건 처리시간 0.032초

Si and Mg doped Hydroxyapatite Film Formation by Plasma Electrolytic Oxidation

  • Park, Seon-Yeong;Choe, Han-Cheol
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2016년도 추계학술대회 논문집
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    • pp.195-195
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    • 2016
  • Titanium and its alloys are widely used as implants in orthopedics, dentistry and cardiology due to their outstanding properties, such as high strength, high level of hemocompatibility and enhanced biocompatibility. Hence, recent works showed that the synthesis of new Ti-based alloys for implant application involves more biocompatible metallic alloying element, such as, Nb, Hf, Zr and Mo. In particular, Nb and Hf are one of the most effective Ti ${\beta}-stabilizer$ and reducing the elastic modulus. Plasma electrolyte oxidation (PEO) is known as excellent method in the biocompatibility of biomaterial due to quickly coating time and controlled coating condition. The anodized oxide layer and diameter modulation of Ti alloys can be obtained function of improvement of cell adhesion. Silicon (Si) and magnesium (Mg) has a beneficial effect on bone. Si in particular has been found to be essential for normal bone and cartilage growth and development. In vitro studies have shown that Mg plays very important roles in essential for normal growth and metabolism of skeletal tissue in vertebrates and can be detected as minor constituents in teeth and bone. The aim of this study is to research Si and Mg doped hydroxyapatite film formation by plasma electrolytic oxidation. Ti-29Nb-xHf (x= 0, 3, 7 and 15wt%, mass fraction) alloys were prepared Ti-29Nb-xHf alloys of containing Hf up from 0 wt% to 15 wt% were melted by using a vacuum furnace. Ti-29Nb-xHf alloys were homogenized for 2 hr at $1050^{\circ}C$. Each alloy was anodized in solution containing typically 0.15 M calcium acetate monohydrate + 0.02 M calcium glycerophosphate at room temperature. A direct current power source was used for the process of anodization. Anodized alloys was prepared using 270V~300V anodization voltage at room. A Si and Mg coating was produced by RF-magnetron sputtering system. RF power of 100W was applied to the target for 1h at room temperature. The microstructure, phase and composition of Si and Mg coated oxide surface of Ti-29Nb-xHf alloys were examined by FE-SEM, EDS, and XRD.

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Fatigue Life of the Repair TIG Welded Hastelloy X Superalloy

  • SIHOTANG, Restu;CHOI, Sang-Kyu;PARK, Sung-Sang;BAEK, Eung-Ryul
    • Journal of Welding and Joining
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    • 제33권5호
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    • pp.26-30
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    • 2015
  • Hastelloy X in this study was applied in jet engine F-15 air fighter as shroud to isolate the engine from outer skin. After 15 years operation at elevated temperature the mechanical properties decreased gradually due to the precipitation of continues second phases in the grain boundaries and precipitated inside the grain. The crack happened at the edge of the shroud due to the thermal and mechanical stress from jet engine. Selective TEM analysis found that the grain boundaries consist of $M_{23}C_6$ carbide, $M_6$ Ccarbide and small percentage of sigma(${\sigma}$) phase. Furthermore, it was confirmed the nano size of ${\sigma}$ and miu (${\mu}$) phase inside the grain. In this study, it was investigated the microstructure of the degraded shroud component and HAZ of repair welded shroud. In the HAZ, it was observed the dissolution of the $M_{23}C_6$ carbides and smaller precipitates, the migration of the undissolved larger $M_{23}C_6$ carbide and $M_6$ Ccarbide. It is also observed the liquation due to the simply melt of the segregated precipitates in the grain boundaries. Interestingly, the segregated second phases which simply melt in the grain boundaries more easily happened at higher heat input welding condition. High temperature tensile test was done at $300^{\circ}C$, $700^{\circ}C$ and $900^{\circ}C$. It was obtained that the toughness of welded sample is lower compare to the non-welded sample. The solution heat treatment at $1170^{\circ}C$ for 5 minutes was suggested to obtain a better mechanical properties of the shroud. The high cycle fatigue number of the repair welded shroud shows a much lower compare to the shroud. In addition, the high cycle fatigue number at room temperature after solution heat treatment was almost double compare to the before solution heat treatment under 420-500MPa stress amplitude. However, the high cycle fatigue number of repaired welded sample was shown a much lower compare to the non- welded shroud and solution treated shroud. One of the main reasons to decrease the tensile strength and the high cycle fatigue properties of the repair welded shroud is the formation of the liquid phase in HAZ.

Hydrogenation and Electrochemical Characteristics of Amorphous-nanostructured Mg-based Alloys

  • Gebert, A.;Khorkounov, B.;Schultz, L.
    • 한국분말재료학회지
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    • 제13권5호
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    • pp.327-335
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    • 2006
  • In the development of new hydrogen absorbing materials for a next generation of metal hydride electrodes for rechargeable batteries, metastable Mg-Ni-based compounds find currently special attention. Amor phous-nanocrystalline $Mg_{63}Ni_{30}Y_7$ and $Mg_{50}Ni_{30}Y_{20}$ alloys were produced by mechanical alloying and melt-spinning and characterized by means of XRD, TEM and DSC. On basis of mechanically alloyed Mg-Ni-Y powders, complex hydride electrodes were fabricated and their electrochemical behaviour in 6M KOH (pH=14,8) was investigated. The electrodes made from $Mg_{63}Ni_{30}Y_7$ powders, which were prepared under use of a SPEX shaker mill, with a major fraction of nanocrystalline phase reveal a higher electrochemical activity far hydrogen reduction and a higher maximum discharge capacity (247 mAh/g) than the electrodes from alloy powder with predominantly amorphous microstructure (216 mAh/g) obtained when using a Retsch planetary ball mill at low temperatures. Those discharge capacities are higher that those fur nanocrystalline $Mg_2Ni$ electrodes. However, the cyclic stability of those alloy powder electrodes was low. Therefore, fundamental stability studies were performed on $Mg_{63}Ni_{30}Y_7$ and $Mg_{50}Ni_{30}Y_{20}$ ribbon samples in the as-quenched state and after cathodic hydrogen charging by means of anodic and cathodic polarisation measurements. Gradual oxidation and dissolution of nickel governs the anodic behaviour before a passive state is attained. A stabilizing effect of higher fractions of yttrium in the alloy on the passivation was detected. During the cathodic hydrogen charging process the alloys exhibit a change in the surface state chemistry, i.e. an enrichment of nickel-species, causing preferential oxidation and dissolution during subsequent anodization. The effect of chemical pre-treatments in 1% HF and in $10\;mg/l\;YCl_3/1%\;H_2O_2$ solution on the surface degradation processes was investigated. A HF treatment can improve their anodic passivation behavior by inhibiting a preferential nickel oxidation-dissolution at low polarisation, whereas a $YCl_3/H_2O_2$ treatment has the opposite effect. Both pre-treatment methods lead to an enhancement of cathodically induced surface degradation processes.

합금 조성 및 소결 조건에 따른 9MM 탄자의 파쇄성에 관한 연구 (A Study of Frangibility of 9MM Bullet Related to Material Composition and Sinter Condition)

  • 김보람;서정화;정희철;김규영
    • 한국산학기술학회논문지
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    • 제21권5호
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    • pp.615-622
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    • 2020
  • 파쇄 탄두는 목표물에 충격시 탄두가 파쇄되어 사격 연습이나 댐, 핵발전소, 문화재 등 중요 시설에서 이루어지는 작전에서 파편의 도비로 인한 2차적인 피해를 줄일 수 있다. 최근에는 납(Lead)이 함유된 탄두로 인하여 사격장에서 발생하는 환경 유해물질을 줄이는 것이 정부와 환경단체에서 중요한 이슈로 부각되고 있다. 본 연구에서는 파쇄 탄두의 국내 개발 확대를 위해 파쇄탄의 효율적인 탄두 형상을 설계하였으며, 안전성과 신뢰성 확인을 위한 시험 진행 및 공정 조건별 실사격을 통한 실제 파편의 크기 확인을 진행하였다. 또한 소결된 파쇄탄자의 미세조직 사진 분석을 통해 공정별 압축강도, 밀도 및 파쇄성 등 물리적인 특성을 비교하였다. 본 실험을 통해 조성 성분 Cu-Sn 에서 조성 비율 - 85:15/소결온도 : 600℃/ 소결시간 : 1시간 조건에서 탄두의 정상적인 발사 및 목표물에 충격 후 최소의 파편으로 분쇄되는 최적의 결과를 나타내는 것을 확인했다. 본 연구를 기반으로 공정 조건 및 실험 방법 등을 더 발전시켜 향후 파쇄탄자의 성능개량 및 환경 개선 등에 기여할 수 있을 것이라 생각한다.

경남 두동리가마터 출토 경질과 연질백자에 대한 물성 및 원료 분석 (The Analysis of Physical Characteristics and Raw Materials on Hard and Soft Whiteware at Excavated Kiln in Dudong-ri Gyeongsangnam-do, Korea)

  • 고민정;김지태;고경신;김규호
    • 보존과학회지
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    • 제18권
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    • pp.75-88
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    • 2006
  • 경상남도 진해시 두동리가마터 출토 백자를 중심으로 물리 화학적 분석, 미세구조관찰을 실시하여 경질과 연질백자의 특성을 과학적으로 고찰해보았다. 물리적 특성은 연질백자가 높은 흡수율과 기공률을 갖는 것을 확인하였다. 화학적 조성은 태토와 유약의 지역적 특성은 나타났으나 경질과 연질의 구분은 확인되지 않았다. 미세구조는 물리적 특성으로 확인되는 경질과 연질의 차이를 가시적으로 확인할 수 있다. 경질백자는 기공의 형태가 둥글고 유리질화된 장석과 같은 광물이 관찰되나 연질백자는 기공도 부정형으로 분포정도가 매우 크며 유리질화된 입자를 확인할 수 없다. 이와같은 분석 결과에서 두동리의 경질과 연질백자는 화학적 조성 및 번조조건에 따라 나타나는 차이보다는 물리적 특성이 크게 좌우하는 것으로 확인된다. 그러나 물리적 특성에 따른 사용 원료는 제작된 지역에 따라 가마별로 차이를 보일 수 있으므로 다양한 비교 연구가 필요하다.

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유기클레이의 선택적 분산에 의한 폴리프로필렌/아이오노머/클레이 나노복합체의 유변학 및 형태학적 특성 연구 (Rheology and Morphology of PP/ionomer/clay Nancomposites Depending on Selective Dispersion of Organoclays)

  • 김두현;옥현근;안경현;이승종
    • Korean Chemical Engineering Research
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    • 제53권6호
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    • pp.709-716
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    • 2015
  • 본 연구에서는 폴리프로필렌/아이오노머/클레이 삼상 복합체에서 클레이의 분산 및 위치에 따른 복합체의 구조변화와 물성을 연구하였다. 폴리프로필렌 90 wt%, 아이오노머 10 wt%의 블렌드에 클레이를 0~10 wt% 첨가하면서 물성변화를 관찰하였다. 클레이 함량 3%이하의 복합체에서 클레이는 아이오노머 상의 내부에 존재하는 반면, 클레이 함량이 증가하면서 분산상에 클레이가 채워져 견고한 구조가 형성되며 추가적인 클레이는 계면에 존재하게 된다. 이에 따라 계면에서의 상호작용은 폴리프로필렌과 아이오노머로부터 폴리프로필렌-클레이와 아이오노머-클레이의 상호작용으로 변화하며 이에 따라 미세구조 및 유변물성이 변화한다. 복합체의 저장 모듈러스(G')는 클레이가 분산상의 내부에 존재할 때는 거의 영향을 받지 않지만 클레이가 계면에 위치하면서부터 크게 증가한다. 또한 파단면의 모폴로지 역시 클레이가 복합체의 내부에만 존재할 경우에는 분산상의 상 경계가 뚜렷하게 관찰되고 분산상의 크기가 증가하지만, 클레이가 계면에 위치할 때는 분산상의 크기가 줄어들고 파단면의 모폴로지 역시 상의 경계가 뚜렷하게 관찰되지 않는 상용화된 모폴로지를 보인다. 우리는 복합체의 유변물성의 변화를 통하여 분산상 내부구조의 변화에 따른 클레이의 위치변화와 계면에서의 상호작용의 변화를 정량화 하였다. 또한 고체상태에서의 계면 접착량 측정을 통하여 계면에서의 상호작용의 증가함에 따라 접착력이 증가하고, 미세구조상 클레이 입자가 계면에 존재할 때 결정화도가 낮아짐을 확인하였다.

국산(國産)스테인레스강선계(鋼線系) 교정용선재(矯正用線材)의 개발(開發)과 물리적(物理的) 성질(性質)에 관(關)한 연구(硏究) (A STUDY ON DEVELOPMENT AND PHYSICAL PROPERTIES OF STAINLESS STEEL ORTHODONTIC WIRES MADE IN KOREA)

  • 성재현;권오원;경희문;이기대
    • 대한치과교정학회지
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    • 제19권2호
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    • pp.7-24
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    • 1989
  • The physical properties of seven sizes of control groups and experimental group in stainless steel orthodontic wires were studied in tension, hardness, bending, torsion and observation of microstructure. The wires (0.40-0.90mm dia.) of round type were tested in the as-received condition. The wires of control groups were TRU-CHROME and REMANIUM, and experimental group was SK wire which was developed by ourselves and made in Korea. The results were as follows; 1. The chemical compositions of control groups and experimental group were austenite stainless steel wires of SOS 304. 2. Higher values of tensile and yield strength in tension were control group I, experimental group, control group II. Maximum tensile and yield strength of experimental group were $203.63{\pm}1.41kg/mm^2$ in 0.70mm diameter and $148.96{\pm}4.88kg/mm^2$ in 0.60mm diameter, and maximum elongation was $5.20{\pm}0.57%$ in 0.45mm diameter. 3. Hardness values of experimental group were similar to control groups. Maximum hardness values were $596.2{\pm}13.66Hv$ in 0.45mm diameter wire of control group I, $590.5{\pm}20.08Hv$ in 0.50mm diameter wire of control group II, and $563.6{\pm}5.35Hv$ in 0.70mm diameter wire of experimental group. 4. Torsion properties of experimental group were similar to control group I and more than control group II. Maximum torsion cycles were $31.8{\pm}2.48$ in 0.45mm diameter of control group I, $17.4{\pm}4.84$ in 0.60mm diameter of control group II, and $24.6{\pm}3.04$ in 0.45mm diameter of experimental group. 5. Maximum bending cycles of experimental group were smaller than control groups. Maximum bending cycles were $9.00{\pm}0.00$ in 0.50mm diameter wire of control group I, $10.0{\pm}0.82$ in 0.40mm diameter wire of control group II, and $8.0{\pm}1.26$ in 0.50mm diameter wire of experimental group. 6. Microstructures of experimental and control groups co-existed with martensited austenite structure and elongated austenite structure. 7. The direction of wire fracture was propagated parallel to torsion direction typically and there was no probability showing wire fracture at inclusions and surface scratches. 8. The type of wire fracture was brittle fracture at initiation site and ductile fracture at core.

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Laser crystallization in active-matrix display backplane manufacturing

  • Turk, Brandon A.;Herbst, Ludolf;Simon, Frank;Fechner, Burkhard;Paetzel, Rainer
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2008년도 International Meeting on Information Display
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    • pp.1261-1262
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    • 2008
  • Laser-based crystallization techniques are ideally-suited for forming high-quality crystalline Si films on active-matrix display backplanes, because the highly-localized energy deposition allows for transformation of the as-deposited a-Si without damaging high-temperature-intolerant glass and plastic substrates. However, certain significant and non-trivial attributes must be satisfied for a particular method and implementation to be considered manufacturing-worthy. The crystallization process step must yield a Si microstructure that permits fabrication of thin-film transistors with sufficient uniformity and performance for the intended application and, the realization and implementation of the method must meet specific requirements of viability, robustness and economy in order to be accepted in mass production environments. In recent years, Low Temperature Polycrystalline Silicon (LTPS) has demonstrated its advantages through successful implementation in the application spaces that include highly-integrated active-matrix liquid-crystal displays (AMLCDs), cost competitive AMLCDs, and most recently, active-matrix organic light-emitting diode displays (AMOLEDs). In the mobile display market segment, LTPS continues to gain market share, as consumers demand mobile devices with higher display performance, longer battery life and reduced form factor. LTPS-based mobile displays have clearly demonstrated significant advantages in this regard. While the benefits of LTPS for mobile phones are well recognized, other mobile electronic applications such as portable multimedia players, tablet computers, ultra-mobile personal computers and notebook computers also stand to benefit from the performance and potential cost advantages offered by LTPS. Recently, significant efforts have been made to enable robust and cost-effective LTPS backplane manufacturing for AMOLED displays. The majority of the technical focus has been placed on ensuring the formation of extremely uniform poly-Si films. Although current commercially available AMOLED displays are aimed primarily at mobile applications, it is expected that continued development of the technology will soon lead to larger display sizes. Since LTPS backplanes are essentially required for AMOLED displays, LTPS manufacturing technology must be ready to scale the high degree of uniformity beyond the small and medium displays sizes. It is imperative for the manufacturers of LTPS crystallization equipment to ensure that the widespread adoption of the technology is not hindered by limitations of performance, uniformity or display size. In our presentation, we plan to present the state of the art in light sources and beam delivery systems used in high-volume manufacturing laser crystallization equipment. We will show that excimer-laser-based crystallization technologies are currently meeting the stringent requirements of AMOLED display fabrication, and are well positioned to meet the future demands for manufacturing these displays as well.

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A STUDY ON THE RESPONSES OF OSTEOBLASTS TO VARIOUS SURFACE-TREATED TITANIUM

  • Lee Joung-Min;Kim Yung-Soo;Kim Chang-Whe;Jang Kyung-Soo;Lim Young-Jun
    • 대한치과보철학회지
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    • 제42권3호
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    • pp.307-326
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    • 2004
  • Statement of problem. The long-term success of implants is the development of a stable direct connection between bone and implant surface, which must be structural and functional. To improve a direct implant fixation to the bone, various strategies have been developed focusing on the surface of materials. Among them, altering the surface properties can modify cellular responses such as cell adhesion, cell motility and bone deposition. Purpose. This study was to evaluate the cellular behaviors on the surface-modified titanium by morphological observation, cellular proliferation and differentiation. Material and methods. Specimens were divided into five groups, depending on their surface treatment: electropolishing(EP) anoclizing(AN), machining(MA), blasting with hydroxyapatite particle(RBM) and electrical discharge machining(EDM). Physicochemical properties and microstructures of the specimens were examined and the responses of osteoblast-like cells were investigated. The microtopography of specimens was observed by scanning electron microscopy(SEM). Surface roughness was measured by a three-dimensional roughness measuring system. The microstructure was analyzed by X-ray diffractometer(XRD) and scanning auger electron microscopy(AES). To evaluate cellular responses to modified titanium surfaces, osteoblasts isolated from neonatal rat were cultured. The cellular morphology and total protein amounts of osteoblast-like cell were taken as the marker for cellular proliferation, while the expression of alkaline phosphatase was used as the early differentiation marker for osteoblast. In addition, the type I collagen production was determined to be a reliable indicator of bone matrix synthesis. Results. 1. Each prepared specimen showed specific microtopography at SEM examination. The RBM group had a rough and irregular pattern with reticulated appearance. The EDM-treated surface had evident cracks and was heterogeneous consisting of broad sheet or plate with smooth edges and clusters of small grains, deep pores or craters. 2. Surface roughness values were, from the lowest to the highest, electropolished group, anodized group, machined group, RBM group and EDM group. 3. All groups showed amorphous structures. Especially anodized group was found to have increased surface oxide thickness and EDM group had titaniumcarbide(TiC) structure. 4. Cells on electropolished, anodized and machined surfaces developed flattened cell shape and cells on RBM appeared spherical and EDM showed both. After 14 days, the cells cultured from all groups were formed to be confluent and exhibited multilayer proliferation, often overlapped or stratified. 5. Total protein amounts were formed to be quite similar among all the group at 48 hours. At 14 days, the electropolished group and the anodized group induced more total protein amount than the RBM group(P<.05). 6. There was no significant difference among five groups for alkaline phosphatase(ALP) activity at 48 hours. The AN group showed significantly higher ALP activity than any other groups at 14 days(P<.05). 7. All the groups showed similar collagen synthesis except the EDM group. The amount of collagen on the electropolished and anodized surfaces were higher than that on the EDM surface(P<.05).

ANXA2 Regulates the Behavior of SGC-7901 Cells

  • Sun, Meng-Yao;Xing, Rui-Huan;Gao, Xiao-Jie;Yu, Xiang;He, Hui-Min;Gao, Ning;Shi, Hong-Yan;Hu, Yan-Yan;Wang, Qi-Xuan;Xu, Jin-Hui;Hou, Ying-Chun
    • Asian Pacific Journal of Cancer Prevention
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    • 제14권10호
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    • pp.6007-6012
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    • 2013
  • ANXA2, a member of the annexin family, is overexpressed and plays important roles in tumor development. However, the significance of ANXA2 expression in gastric carcinoma has not been clarified.To elucidate its roles in growth of gastric cancer, ANXA2 expression in SGC-7901 cells was inhibited with a designated siRNA, then cell proliferation, cell cycling, apoptosis and motility were determined by MTT assay, flow cytometry, Hoechst 33342 staining and wound healing assay, respectively. To further assess the behavior of ANXA2 deleted SGC-7901 cells, changes of microstructures were observed under fluorescence microscopy, laser scanning confocal microscopy and electron microscopy. We found that inhibition of ANXA2 expression caused cell proliferation to decrease significantly with G1 arrest, motility to be reduced with changes in pseudopodia/filopodia structure and F-actin and ${\beta}$-tubulin expression, and apoptosis to be enhanced albeit without significance. At the same time, ANXA2 deletion resulted in fewer pseudopodia/filopodia, non-stained areas were increased, contact inhibition among cells reappeared, and expression of F-actin and ${\beta}$-tubulin was decreased, with induction of polymerized disassembled forms. Taken together, these data suggest that ANXA2 overexpression is important to maintain the malignancy of cancer cells, and this member of the annexin family has potential to be considered as a target for the gene therapy of gastric carcinoma.