• 제목/요약/키워드: resistance to abrasion

검색결과 413건 처리시간 0.023초

Cavitation resistance of concrete containing different material properties

  • Kumar, G.B. Ramesh;Bhardwaj, Arjit;Sharma, Umesh Kumar
    • Advances in concrete construction
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    • 제6권1호
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    • pp.15-28
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    • 2018
  • In the present investigation, influence of various material parameters on the cavitation erosion resistance of concrete was investigated on the basis of laboratory experiments. As there is no well-established laboratory test method for evaluating the cavitation resistance of concrete, a test set up called 'cavitation jet' was specially established in the present study in order to simulate the cavitation phenomenon experienced in the hydraulic structures. Various mixtures of concrete were designed by varying the grade of concrete, type and quantity of pozzolana, type of aggregates and cement type to develop good cavitation resistant concrete constructed using marginal aggregates. Three types of aggregates having three different Los Angeles abrasion values (less than 30%, between 30% and 50% and more than 50%) were employed in this study. To evaluate the cavitation resistance a total of 60 cylindrical specimens and 60 companion cubes were tested in the laboratory respectively. The results indicate that cavitation resistance of concrete degrades significantly as the L.A. abrasion value of aggregates goes beyond the 30% value. Incorporation of pozzolanic admixtures was seemed to be beneficial to enhance the cavitation resistance of concrete. Influence of other material parameters on the cavitation resistance of concrete was also noted and important observations have been made in the paper.

Effect of Silica Contents on the Vulcanizates Structure and Physical Properties in ENR/BR Blend Compounds

  • Sanghoon Song;Junhwan Jeong;Donghyuk Kim;Kiwon Hwang;Sungwook Chung;Wonho Kim
    • Elastomers and Composites
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    • 제59권1호
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    • pp.8-16
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    • 2024
  • As regulations on greenhouse gas emission have strengthened globally, the demand for improved fuel efficiency in automobiles continues to rise. In response, the tire industry is actively conducting research to improve fuel efficiency by enhancing tire performance. In this study, silica-filled epoxidized natural rubber (ENR)/butadiene rubber (BR) blend compounds were manufactured according to ENR types and silica contents, and their physical properties and vulcanizate structure were evaluated. ENR-50, which has a higher epoxide content than ENR-25, exhibited stronger filler-rubber interaction, resulting in superior abrasion resistance. In addition, because of its high glass transition temperature (Tg), the wet grip performance of ENR-50 improved, even though the rolling resistance increased. Increasing the amount of silica had little effect on the abrasion resistance due to the increase in filler-rubber interaction and decrease in toughness. In addition, ENR-50 exhibited better wet grip performance; however, the rolling resistance increased. The results indicated that truck bus radial (TBR) tire tread compounds can be designed by applying ENR-50 to improve wear resistance and wet grip performance. In addition, by applying ENR-25 and reducing the silica contents improve fuel efficiency.

Surface Preparation and Activation Only by Abrasion and Its Effect on Adhesion Strength

  • Ali Gursel;Salih Yildiz
    • 접착 및 계면
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    • 제23권4호
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    • pp.101-107
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    • 2022
  • Adhesive joints have many advantages such as weight savings, corrosion and fatigue resistance and now developed even withstand of high impact and dynamic loads. However, an adhesion has cumbersome and complicated surface preparation processes. The surface preparation step is critical in adhesive joint manufacturing in order to obtain the prescribed strength for adhesive joints. In this study, it was attempted to simplify and reduce the number of surface preparation steps, and abrasion and rapid adhesive application (ARAA) process is developed for an alternative solution. The abrasion processes are performed only for creating surface roughness in standard procedures (SP), although the abrasion processes cause surface activation itself. The results showed that there is no need the long procedures in laboratory or chemical agents for adhesion. After the abrasion process, the attracted and highly reactive fresh surface layer obtained, and its effect on bonding success is observed and analyzed in this research, in light of the essential physic and adhesion theories. Al 6061 aluminum adherends and epoxy-based adhesives were chosen for bonding processes, which is mostly used in light vehicle parts. The adherends were cleaned, treated and activated only with abrasion, and after the adhesive application the specimens were tested under quasi-static loading. The satisfied ARAA results were compared with that of the specimens fabricated by the standard procedure (SP) of adhesion processes of high impact loads.

레이온 직물의 Wet-Fixation에 의한 DP가공에 관한 연구(I) - 일욕법과 이욕법의 비교 - (A Study on the Durable Press Finish by Wet-Fixation Processes for Rayon Fabrics (I) - One Bath and Two Bath Processes -)

  • 허윤숙;김은애
    • 한국의류학회지
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    • 제13권3호
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    • pp.242-251
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    • 1989
  • The purpose of this study was to investigate the changes in easy-care and strength properties of the wet fixation processed viscose rayon fabrics. Rayon fabrics were treated with mixed resins of melamine formaldehyde (MF) and DMDHEU by one bath and two bath wet fixation processes. The MF/DMDHEU mixed resin concentrations were 50/100, 50/150, 100/100, 100/150 and 150/100(g/1). Magnasium chloride was used as a catalyst. Treated fabrics were evaluated by nitrogen content, DP rating, wrinkle recovery angle, breaking strength, tearing strength and abrasion resistance. The properties were compared to the fabrics treated by conventional Pad-Dry-Cure (PDC) method. Wet fixation processed fabrics showed DP ratings of higher than 3 and higher than 275 degrees of wrinkle recovery angles in all the mixed resin concentrations. Wet fixation processed fabrics showed increase in breaking strength and tearing strength but decrease in abrasion resistance. However, the decrease in abrasion resistance was much less than the conventional PDC treated fabrics. The one bath wet fixation processed fabrics showed better physical properties than the two bath processed fabrics in general. The optimum treatment condition was the mixed resin concentration of MF/DMDHEU, 100/100 g/l in one bath wet fixation process.

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소수성 특성을 이용한 저점도 AP 표면처리재의 현장 적용성 연구 (A Study on Field Applicability Evaluation of the Hydrophobic - Low Viscosity Surface Treatment Material for Pavement Preventive Maintenance)

  • 최준성
    • 한국도로학회논문집
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    • 제16권1호
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    • pp.31-39
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    • 2014
  • PURPOSES : Surface treatment material for pavement preventive maintenance should be inspected field applicability. This study(Part II) aimed to checkup coating characteristics and performance analysis using lab and field tests. The hydrophobic - low viscosity filling material for pavement preventive maintenance is presented in Part I, which is a series of companion study. METHODS : Relative comparison between general asphalt mixtures and surface treatment asphalt mixtures are analyzed and measured for the field application such as indirect tensile strength ratio(TSR), abrasion resistance, crack propagation resistance, temperature resistance, coating thickness, permeability resistance and skid resistance in terms of british pendulum number(BPN). RESULTS : It is found that TSR, crack propagation resistance and permeability resistance is increased as against uncoated asphalt specimen. Abrasion resistance and temperature resistance is secured from the initial coating thickness point of view, which is about 0.2~0.3mm. Skid resistance on the surface treatment pavement is satisfied with the BPN criteria of national highway because of exposed aggregate and crack sill induced pavement deterioration and damage cracks. CONCLUSIONS : The hydrophobic - low viscosity surface treatment material for pavement preventive maintenance is validated on field applicability evaluation based on quantitative analysis of coating thickness and performance analysis using lab and field tests.

저응력하의 철/크롬 올버레이합금의 긁힘마모기구 (Low streee Abrasive Wer mechanism of the Iron/Chromium Hardfacing Alloy)

  • 백응률
    • Journal of Welding and Joining
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    • 제16권2호
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    • pp.73-83
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    • 1998
  • This study investigated the relationships between the microstructure and the wear resistance of hardfaced iron/chromium alloys to examine the low stress abrasive wear mechanism. The effects of volume fraction of reinforcing phases(chromium carbide and eutectic phase) were studied. The alloys were deposited once or twice on a mild steel plate using a self-shielding flux cored arc welding process. The low stress abrasion resistance of he alloys against dry sands was measured by the Dry Sand/Ruber Wheel Abrasion Tester (RWAT). The wear resistance of hypoeutectic alloys, below 0.36 volume fraction of chromium-carbide phase (VFC), behaved as Equal Pressure Mode (EPM) for the inverse rule of mixture whereas the wear resistance of hypereutectic alloys, above 0.36 VFC, represented Equal Wear Mode (EWM) for the linear rule of mixture.

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Effect of Molecular Weight of Epoxidized Liquid Isoprene Rubber as a Processing aid on the Vulcanizate Structure of Silica Filled NR Compounds

  • Ryu, Gyeongchan;Kim, Donghyuk;Song, Sanghoon;Hwang, Kiwon;Kim, Wonho
    • Elastomers and Composites
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    • 제56권4호
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    • pp.223-233
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    • 2021
  • In this study, epoxidized liquid isoprene rubber (E-LqIR) was used as a processing aid in a silica-filled natural rubber compound to improve the fuel efficiency, abrasion resistance, and oil migration problems of truck and bus radial tire tread. The wear resistance, fuel efficiency, and extraction resistance of the compound were evaluated according to the molecular weight of E-LqIR. Results of the evaluation showed that the E-LqIR compound had a lower chemical crosslink density than that of a treated distillate aromatic extract (TDAE) oil compound because of the sulfur consumption of E-LqIR. However, the filler-rubber interaction improved because of the reaction of E-LqIR with silica and crosslink with the base rubber by sulfur. As the molecular weight of E-LqIR increased, crosslink with sulfur was facilitated, and the filler-rubber interaction improved, resulting in improved abrasion resistance. The fuel efficiency performance of the E-LqIR compound was poorer than that of the TDAE oil compound because of the low chemical crosslink density and hysteresis loss at the free chain end of E-LqIR. However, the fuel efficiency performance improved as the molecular weight of E-LqIR increased.

재생 WC 분산형 Fe계 하드페이싱 용접재료의 마모저항성에 미치는 Mn과 C 첨가의 영향 (Effects of Mn and C Addition on the Wear Resistance for the Recycled WC Dispersed Fe-base Hardfacing Weld)

  • 강남현;채현병;김준기;최종하;김정한
    • 한국재료학회지
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    • 제13권12호
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    • pp.839-845
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    • 2003
  • The abrasion and impact wear resistance were investigated on the hardfacing weld dispersed with the recycled hard metal(HM). The HM was composed of the tungsten carbide(WC) reinforced metal matrix composite. The cored wire filled with the 25-35wt.% HM and 2-8wt.% of the alloying element, Fe-75Mn- 7C(FeMnC), was used for the gas metal arc(GMA) welding. By using the cored wire of the 25wt.% HM and FeMnC addition, the weld showed mostly constant wear loss for the abrasion as a function of the FeMnC content. This was due to the insufficient amount of the tungsten carbide formed during the GMA welding. The FeMnC addition to the 35wt.% HM did not improve the abrasion wear property since the amount of the tungsten carbide formed was decreased with respect to the FeMnC amount. The 6wt.% FeMnC addition to the 35wt.% HM exhibited the better impact wear resistance than the hardfacing weld by 40wt.% HM.

골재노출 콘크리트포장의 적정 골재 선정에 대한 연구 (A Study on the adequate Aggregate Selection of the Exposed Aggregate PCC Pavements)

  • 김영규;채성욱;이승우;유태석
    • 한국도로학회논문집
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    • 제9권4호
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    • pp.117-127
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    • 2007
  • 골재노출 콘크리트포장은 저소음 포장으로서 유럽, 일본등지에서 성공적으로 사용되어 왔다. 골재노출 콘크리트포장은 콘크리트 표면의 모르타르를 제거하여 표면에 굵은 골재를 노출시키기는 공법이다. 타이어-노면간의 소음을 저감시키는 표면특성도 중요하지만 포장표면이 공용중에 지속적으로 적정한 미끄럼저항을 확보하여야 한다는 점이 간과되어서는 안된다. 반복적인 타이어-노면간 마찰은 표면조직을 마모시켜서 미끄럼저항값을 감소시키게 된다. 골재노출 콘크리트포장의 경우 노면에 굵은 골재가 노출되어 타이어와 접촉되므로 노면에 노출된 굵은 골재의 암종과 형상이 노면마모에 지대한 영향을 미친다. 일반적으로 골재마모특성에 대한 평가시험은 로스앤젤레스시험기에 의한 마모시험과 Accelerated Polishing Machine에 의한 마모시험이 사용되고 있다. 본 연구에서는 다섯 가지 암종의 굵은 골재에 대하여 두 시험법으로 마모를 평가하였다. 실험결과 두 시험법은 실험골재특성뿐만 아니라 마모특성에 따라 상반된 마모저항결과를 도출하였다. 도로노면의 마모는 타이어와 반복된 마찰에 의해 발생하는데 로스앤젤레스에 의한 굵은 골재 마모시험은 굵은 골재의 전체표면과 철구간 충격에 인하여 마모감량이 나타나서 형상에 따라 마모에 대한 저항성을 평가하기 때문에 도로노면의 마모를 파악하기에는 적합하지 않다고 판단된다. 반면에 APM에 의한 굵은 골재 마모시험은 실험법 자체가 노출된 굵은 골재와 타이어의 반복 마찰로 인하여 마모에 대한 저항성을 평가하기 때문에 APM에 의한 굵은 골재 마모시험이 골재노출 콘크리트포장의 노면에 노출된 굵은 골재의 특성에 따른 마모에 대한 저항성을 파악하는데 보다 효과적이라고 사료된다. APM에 의한 마모저항 결과로부터 골재 암종, 비중, 하나 이상의 파쇄면을 가진 골재의 백분률, 편장석 함유율등이 골재의 마모에 중요한 영향을 미친다는 점을 파악할 수 있었다.을 나타냈으며, 그 중 물 추출물에서는 다호조생 품종이 지름 13mm의 저해환을, 알코올 추출물에서는 청목노상 품종이 지름 15mm의 저해환으로 효과가 가장 우수하여 천연 항균제 및 생리활성 물질로의 이용가능성을 추측할 수 있었다.이나 세포핵 및 동양모세혈관등에 병리학적인 변화가 관찰되지 않았으며 간세포대의 배열도 규칙적이었다. 따라서 돼지감자의 이눌린, 연잎분말, 허브의 쐐기풀분말 및 유칼립투스 잎의 분말을 사용한 병합다이어트식이 급여가 비정상적인 지방 축적으로 인한 비만을 효과적으로 예방하고 개선할 수 있는 것으로 나타났다.관리 영역의 평균은 1.7/2.0점(85%)으로 나타났고, 농산물이 가장 낮게 나타났다(p<0.05). 가장 취약한 항목은 '전처리'에서 '세척용수의 온도관리' 항목에서 0.7점이었고, 더욱이 농산물은 0.4점으로 평가되었다. 농산물 업체는 '세절시 이물 혼입방지'와 수산물의 '냉장 냉동식품의 절단시 품온관리'가 문제시되었다. 7. 용수관리 영역의 평균은 2.0/2.0점(100%)으로 가장 높았다. 개인위생관리 영역의 평균은 1.8/2.0점(90%)이며, 모든 항목이 잘 관리되고 있었다. 검사관리 영역은 평균 1.4/2.0점(70%)으로 가장 낮게 평가되었으며, '적정 검사시설 및 기구 구비' 항목은 공산품에서 평균 0.2점으로 평가되어 타품목에 비해 현저히 낮았고(p<0.01), 평가한 93개 항목 중 가장 불량한 상태로 관리되고 있음을 알 수 있었다. '검사용 장비 및 기구의 검교정' 항목은 농산물이 0.4점으로 관리상태의 개선이 필요하며, 품목별로 볼 때 낮은 점수로 평가되었다(p<0.05). 이상의 결과를 종합해볼 때, 원재료의 입고 및 반품관리와 검사관리는 가장 관리가 미비한 영역으로 규명되었다. 구입되는 원재료의 안전성을 위해서는 입고 및 반품 기준이 정확하게 설정되어야 하고, 검사관리를 통해 원재료와 최종제품의 안전성이

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폐자기를 사용한 마그네시아 인산염 세라믹(MPC) 인조석재의 내마모특성 (Abrasion Resistance Property of the Magnesia Phosphate Ceramics(MPC) Artificial Stone Using the Waste Porcelain)

  • 유용진;이상수;송하영
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2014년도 추계 학술논문 발표대회
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    • pp.51-52
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    • 2014
  • Recently, it is the global warming phenomenon because of the greenhouse gas exhaustion caused by and the environment problem is serious. And it is the situation where the problem of the exhaustion of resource because of the indiscriminate picking of the that is the raw material of the cement, limestone and natural aggregate are emphasized. In addition, thus the cement reduction amount of use and substitute material research is the urgent actual condition with the gas emission, which here it is generated in conducting compression molding in the building stone manufacturing process performance degradation phenomenon and fire resistance, and problem of the durability. Therefore, in this research, because of being the magnesia phosphate ceramics, the waste porcelain is applied and the anti-wearing character of the artificial stone according to it tries to be investigated.

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