• 제목/요약/키워드: Silica sand particles

검색결과 29건 처리시간 0.026초

사질혼합토의 비배수 전단거동 특성 (Undrained Shear Behavior of Sandy Soil Mixtures)

  • 김욱기;안태봉
    • 한국지반환경공학회 논문집
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    • 제12권8호
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    • pp.13-24
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    • 2011
  • 지반공학에서 흙은 흙 입자에 의한 세립분 함유율($F_c$=50%)에 따라 모래와 점토로 분류되며, 그들의 역학적 거동에 의해 설계가 이루어진다. 그러나, 모래-점토 혼합토는 일반적으로 intermediate soils로 불리어, 모래나 점토로 쉽게 구분할 수 없다. 본 연구에서는 다양한 비율을 갖는 실리카모래 세립혼합토에 대하여 정적비배수 전단시험을 수행하였고, 미리 계산된 에너지의 다짐방법과 예압밀법을 이용하여 모래부터 점토에 이르는 폭넓은 범위의 흙 구조에 대해 공시체를 준비하였다. 한계 세립함유율 보다 작은 혼합토의 전단강도는 세립분이 증가할수록 증가하며 최대 축차응력비는 조밀한 시료에 대하여 감소하고 느슨한 시료에 대하여 증가한다. 그 후, 골격간극비의 개념을 이용하여 혼합토의 단조 전단강도를 평가하였으며. 이에, 혼합토의 전단강도는 모래입자가 이루는 골격구조에 밀접한 관계가 있음을 알았다.

Static and dynamic characteristics of silty sand treated with nano-silica and basalt fiber subjected to freeze-thaw cycles

  • Hamid Alizadeh Kakroudi;Meysam Bayat;Bahram Nadi
    • Geomechanics and Engineering
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    • 제37권1호
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    • pp.85-95
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    • 2024
  • This study investigates the influence of nano-silica and basalt fiber content, curing duration, and freeze-thaw cycles on the static and dynamic properties of soil specimens. A comprehensive series of tests, including Unconfined Compressive Strength (UCS), static triaxial, and dynamic triaxial tests, were conducted. Additionally, scanning electron microscopy (SEM) analysis was employed to examine the microstructure of treated specimens. Results indicate that a combination of 1% fiber and 10% nano-silica yields optimal soil enhancement. The failure patterns of specimens varied significantly depending on the type of additive. Static triaxial tests revealed a notable reduction in the brittleness index (IB) with the inclusion of basalt fibers. Specimens containing 10% nano-silica and 1% fiber exhibited superior shear strength parameters and UCS. The highest cohesion and friction angle were obtained for treated specimens with 10% nano-silica and 1% fiber, 90 kPa and 37.8°, respectively. Furthermore, an increase in curing time led to a significant increase in UCS values for specimens containing nano-silica. Additionally, the addition of fiber resulted in a decrease in IB, while the addition of nano-silica led to an increase in IB. Increasing nano-silica content in stabilized specimens enhanced shear modulus while decreasing the damping ratio. Freeze-thaw cycles were found to decrease the cohesion of treated specimens based on the results of static triaxial tests. Specimens treated with 10% nano-silica and 1% fiber experienced a reduction in shear modulus and an increase in the damping ratio under freeze-thaw conditions. SEM analysis reveals dense microstructure in nano-silica stabilized specimens, enhanced adhesion of soil particles and fibers, and increased roughness on fiber surfaces.

점토혼합모래의 반복전단특성에 대한 세립분 함유율의 영향 (Effect of Fines Content on the Cyclic Shear Characteristics of Sand-clay Mixtures)

  • 김욱기;효도 마사유키;안태봉
    • 한국지반공학회논문집
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    • 제24권1호
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    • pp.51-59
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    • 2008
  • 본 연구에서는 모래에서 점토에 이르는 넓은 범위의 혼합시료를 재성형하기 위하여 세립분으로 활성을 가지고 있는 자연점토와 조립분으로 규사를 혼합하여 실험에 이용하였다. 공시체는 세립분함유율이 낮은 범위 즉, 모래입자가 골격구조를 형성하고 있는 범위에 대해서는 다양한 간극비를 조성하기 위해 습윤 다짐방법을 이용하였으며, 활성을 나타내는 범위에 대해서는 정규압밀점토의 일정한 간극비를 조성하기 위해 예압밀방법을 이용하여 다양한 세립분함유율을 갖는 공시체를 제작하여 비배수 반복 전단실험을 수행하였다. 실험결과, 세립분함유율 20%미만의 시료에서 동일한 세립분함유율의 공시체에 대해 모래 골격간극비가 증가함에 따라 반복 전단강도는 감소하였으며 더욱이, 실험시료의 골격간극비가 규사의 최대간극비 이상의 범위에서는 흙의 구조가 다짐에너지의 영향을 거의 받지 않고 강도발현의 주체가 점토 매트릭스에 지배되는것을 알 수 있다. 모래점토 혼합토를 대상으로한 비배수 반복 전단실험에서 세립분 함유율이 20%미만의 낮은 영역에서 조립자의 구조는 반복 전단강도 특성에 큰 영향을 미치며 더욱이, 세립분함유율보다 모래구조의 밀도에 유의하는것이 더욱 적합한 것을 알 수 있다.

파쇄성이 큰 제주해사의 한계상태 특성 (Critical State of Crushable Jeju Beach Sand)

  • 이문주;배경두;안성모;이우진
    • 대한토목학회논문집
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    • 제30권2C호
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    • pp.133-140
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    • 2010
  • 본 연구에서는 제주해사에 대한 일련의 삼축압축시험을 수행하여 파쇄성이 큰 제주 탄산염 모래의 한계상태정수를 결정하였다. 제주해사는 입자의 모난 정도가 크고 입자표면과 내부에 다수의 공극이 발달되어 전형적인 탄산염 모래의 특성을 보인다. 제주해사는 큰 최대, 최소 간극비와 큰 압축성 때문에 전단 시 압축거동이 지배적이었다. 구속압이 증가할수록 입자가 파쇄되어 제주해사의 첨두마찰각이 다소 감소하였으나, 일반적인 규산염 모래의 마찰각보다는 다소 큰 것이 관찰되었다. 제주해사의 한계상태 마찰각은 평균유효응력이 증가할수록 점차 감소하였으나, 시료의 간극비가 제주해사의 한계상태에 미치는 영향은 미미하였다. 제주해사의 한계상태 정수는 여타의 탄산염 모래와 유사하였으나, 일반적인 규산염 모래보다는 매우 크게 결정되었다.

Assessment of flowing ability of self-compacting mortars containing recycled glass powder

  • Alipour, Pedram;Namnevis, Maryam;Tahmouresi, Behzad;Mohseni, Ehsan;Tang, Waiching
    • Advances in concrete construction
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    • 제8권1호
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    • pp.65-76
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    • 2019
  • This paper investigates the effect of recycled glass powder (RGP) on flowing properties of self-compacting mortars (SCMs) containing different ratios of fillers and superplasticizer dosages. Fly ash (FA), nano-silica (NS), micro-silica (MS), metakaolin (MK) and rice husk ash (RHA) are used as fillers and their synergistic effect with RFP is studied. The effects of fillers and high-range water reducer (HRWR) on flowing ability of mortars are primarily determined by slump flow and V-funnel flow time tests. The results showed that for composites with a higher RGP content, the mortar flowing ability increased but tended to decrease when the composites containing 10% MK or 5% RHA. However, the flowing ability of samples incorporating 5% RGP and 10% SF or 25% FA showed an opposite result that their slump flow spread decreased and then increased with increasing RGP content. For specimens with 3% NS, the influence of RGP content on flowing properties was not significant. Except RHA and MS, the fillers studied in this paper could reduce the dosage of HRWR required for achieving the same followability. Also, the mixture parameters were determined and indicated that the flowability of mixtures was also affected by the content of sand and specific surface area of cement materials. It is believed that excess fine particles provided ball-bearing effect, which could facilitate the movement of coarse particles and alleviate the interlocking action among particles. Also, it can be concluded that using fillers in conjunction with RGP as cementitious materials can reduce the material costs of SCM significantly.

Superhydrophobic Surfaces for condensation by using spray coating method

  • Oh, Seungtae;Seo, Donghyun;Lee, Choongyeop;Nam, Youngsuk
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.157.2-157.2
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    • 2016
  • Water repellent surfaces may enhance the condensation by efficiently removing the condensed droplets. However, such surfaces may lose their original performance as they are exposed to external mechanical stresses. In this work, we fabricated spray-coated mechanically robust superhydrophobic surfaces using treated titanium dioxide (Type 1) or silica particles (Type 2). Then we compared the mechanical robustness of such surfaces with the silane-coated superhydrophobic surface and PEEK coated surface using a controlled-sand blasting method. The results show that the spray-coated samples can maintain the same level of the contact angle hysteresis than silane-coated superhydorphobic surface after sand blasting at 2 bar. The spray-coating method was applied to the tube type condenser and the condensation behaviors were observed within the environmental chamber with controlled pressure, humidity and non-condensable gas. Previously-reported droplet jumping was observed in the early stage of the condensation event, but soon the droplet jumping stopped and only dropwise condensation was observed since the condensed droplets were pinned on the cracks at spray-coated surfaces. The static contact angle decreases from $158.0^{\circ}$ to $133.2^{\circ}$, and hysteresis increases from $3.0^{\circ}$ to $23.5^{\circ}$ when active condensation occurs on such surfaces. This work suggests the benefits and limitation of spray-coated superhydrophobic condensers and help develop advanced condensers for practical use.

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표면처리방법에 따른 전기성형금속의 도재결합강도 (SHEAH BOND STRENGTH OF VENEERING CERAMIC TO ELECTROFORMED GOLD WITH THREE DIFFERENT SURFACE TREATMENT)

  • 김철;임장섭;전영찬;정창모;정희찬
    • 대한치과보철학회지
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    • 제43권5호
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    • pp.599-610
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    • 2005
  • Purpose: The success of the bonding between electroformed gold and ceramic is dependent on the surface treatment of the pure gold coping. The purpose of this study was to evaluate the bonding strength between the electroformed gold and ceramic with varying surface treatment. Materials and methods: A total of 32 disks,8 were using conventional ceramometal alloy, 24 were using electroforming technique as recommended by manufacturer, were prepared. 24 electroformed disks were divided 3 groups according to surface treatment, i.e. 50 microns aluminium oxide sandblasting(GES-Sand), gold bonder treatment(GES-Bond) and $Rocatec^{TM}$ system(GES-Rocatec). For control group of conventional alloy 50 microns aluminium oxide treatment was done(V-Supragold). Energy dispersive x-ray analysis and scanning electron microscope image were observed. Using universal testing machine, shear bond strength and bonding failure mode at metal-porcelain interface were measured. Results and Conclusion: The following conclusions were drawn: 1. In the energy dispersive x-ray analysis, the Au was main component in electroformed gold(99.9wt%). After surface treatment, a little amount of $Al_2O_3(2.4wt%)$ were found in GES-Sand, and $SiO_2(4wt%)$ in GES-Bond. In GES-Rocatec, however, a large amount of $SiO_2(17.4wt%)$ were found. 2. In the scanning electron microscopy, similar pattern of surface irregu larities were observed in V-Supragold and GES-Sand. In GES-Bond, surface irregularities were increased and globular ceramic particles were observed. In GES-Rocatec, a large amount of silica particles attached to metal surface with increased surface irregularities were observed. 3. The mean shear bond strength values(MPa) in order were $22.9{\pm}3.7(V-Supragold),\;22.1{\pm}3.8(GES-Bond),\;20.1{\pm}2.8(GES-Rocatec)\;and\;13.0{\pm}1.4(GES-Sand)$. There was no significant difference between V-Supragold, GES-Bond, and GES-Rocatec. (P>0.05) 4. Most bonding failures modes were adhesive type in GES-Sand. However, in V-Supragold, GES-Bond and GES-Rocatec, cohesive and combination failures were commonly observed. From the result, with proper surface treatment method electroformed gold may have enough strength compare to conventional ceramometal alloy.

Durability of high performance sandcretes (HPS) in aggressive environment

  • Benamara, Dalila;Tebbal, Nadia;Rahmouni, Zine El Abidine
    • Advances in concrete construction
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    • 제8권3호
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    • pp.199-206
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    • 2019
  • High performance sandcretes (HPS) are new concretes characterized by particles having a diameter less than 5 mm, as well as very high mechanical strength and durability. This work consists in finding solutions to make sandcretes with good physico-mechanical and durability properties for this new generation of micro-concrete. However, upgrading ordinary sandcrete into high performance sandcrete (HPS) requires a thorough study of formulation parameters (equivalent water/binder ratio, type of cement and its dosage, kind and amount of super plasticizer, and gravel/sand ratio). This research study concerns the formulation, characterization and durability, in a sulphate environment, of a high performance sandcrete (HPS), made from local materials. The obtained results show that the rheological properties of fresh concrete and mechanical strength differ with the mineralogy, density and grain size distribution of sands and silica fume used.

수화 반응에 따른 MgO-모래 혼합물의 팽창 특성 및 전단 거동 변화 (Effect of Hydration on Swelling Properties and Shear Strength Behavior of MgO-sand Mixture)

  • 이지환;윤보영;추현욱;이우진;이창호
    • 한국지반공학회논문집
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    • 제36권11호
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    • pp.97-106
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    • 2020
  • 본 연구에서는 산화 마그네슘(MgO) 무게비에 따른 WMgO/WTotal=0, 30, 50, 70, 100%) MgO-모래 혼합물의 팽창특성과 수화 반응 전·후 전단거동을 비교하였다. 시료는 MgO 함량이 높은 내화벽돌을 파쇄하여 모래와 혼합하여 조성하였다. MgO는 수화반응 후 Mg(OH)2로 분화되어 비중 및 입자 크기가 감소하였다. 미세구조 관찰과 X선 회절분석을 통해 MgO는 정육면체 구조인 Periclase에서 수화반응 후에 육각형 결정 구조인 Brucite로 변화하는 것을 확인하였다. MgO 함량이 증가함에 따라 팽창압과 팽창량은 증가하는 것으로 나타났다. 생성된 Mg(OH)2가 모래 입자 사이의 공극을 주로 채우게되는 MgO 함량 30% 시료는 팽창압과 팽창량이 상대적으로 매우 낮게 측정되었고, MgO 50% 이상의 시료에서는 Mg(OH)2가 모래 입자 사이의 공극을 채우고 난 후 모래 입자 또는 다른 Mg(OH)2를 밀어내기 때문에 팽창압과 팽창량이 급격히 증가하는 양상을 보였다. 직접전단시험 결과 수화반응 전 혼합물은 높은 MgO 함량에서는 부피 팽창거동을 보였고 낮은 MgO 함량에서는 부피 수축거동을 보였다. 그러나 수화반응 후 혼합물은 모두 부피 수축거동을 보였다. 수화반응 후 정규화된 전단강도의 한계 세립질 함량 (Fth)은 약 60% Mg(OH)2 비율로 나타났다.

Shear bond strength of a new self-adhering flowable composite resin for lithium disilicate-reinforced CAD/CAM ceramic material

  • Erdemir, Ugur;Sancakli, Hande Sar;Sancakli, Erkan;Eren, Meltem Mert;Ozel, Sevda;Yucel, Taner;Yildiz, Esra
    • The Journal of Advanced Prosthodontics
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    • 제6권6호
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    • pp.434-443
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    • 2014
  • PURPOSE. The purpose of this study was to evaluate and compare the effects of different surface pretreatment techniques on the surface roughness and shear bond strength of a new self-adhering flowable composite resin for use with lithium disilicate-reinforced CAD/CAM ceramic material. MATERIALS AND METHODS. A total of one hundred thirty lithium disilicate CAD/CAM ceramic plates with dimensions of $6mm{\times}4mm$ and 3 mm thick were prepared. Specimens were then assigned into five groups (n=26) as follows: untreated control, coating with $30{\mu}m$ silica oxide particles ($Cojet^{TM}$ Sand), 9.6% hydrofluoric acid etching, Er:YAG laser irradiation, and grinding with a high-speed fine diamond bur. A self-adhering flowable composite resin (Vertise Flow) was applied onto the pre-treated ceramic plates using the Ultradent shear bond Teflon mold system. Surface roughness was measured by atomic force microscopy. Shear bond strength test were performed using a universal testing machine at a crosshead speed of 1 mm/min. Surface roughness data were analyzed by one-way ANOVA and the Tukey HSD tests. Shear bond strength test values were analyzed by Kruskal-Wallis and Mann-Whitney U tests at ${\alpha}=.05$. RESULTS. Hydrofluoric acid etching and grinding with high-speed fine diamond bur produced significantly higher surface roughness than the other pretreatment groups (P<.05). Hydrofluoric acid etching and silica coating yielded the highest shear bond strength values (P<.001). CONCLUSION. Self-adhering flowable composite resin used as repair composite resin exhibited very low bond strength irrespective of the surface pretreatments used.