• 제목/요약/키워드: cements

검색결과 570건 처리시간 0.025초

반복하중(反復荷重)을 받는 Soil-Cement의 변형특성(變形特性) (Deformation Characteristics of Soil-Cement Mixtures under Repeated load)

  • 천병식;박흥규
    • 대한토목학회논문집
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    • 제9권3호
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    • pp.125-131
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    • 1989
  • 도로포장(道路鋪裝)은 그 수명기간내(壽命其間內)에 다수(多數)의 반복하중(反復荷重)을 받는 데, 이 반복된 재하(재하)에 의해 영구변형(永久變形)과 피로파괴(疲勞破壞)가 발생하여, 포장(鋪裝) 공용성(供用性)이 저하(低下)된다. 따라서 높은 공용성(供用性)을 유지(維持)하려면, 포장(鋪裝)의 각부(各部)에서 이와 같은 문제(問題)의 발생(發生)을 막고, 포장(鋪裝)의 안정성(安定性)을 향상(向上)시키기 위해서는 노반(路盤), 노상(路床)에 대해서 반복재하에 따른 영구변형(永久變形)이나 피로파괴(疲勞破壞)의 문제(問題)를 해결하는 것이 중요하다. 이와 같은 관점(觀點)에서 본(本) 연구(硏究)는 $20kg/cm^2$의 7일 강도를 갖는 각각 시멘트량 92%와 18.3%인 사질토 soil-cement와 점성토 soil-cement에 있어서 반복하중(反復荷重)을 가하였을 때의 변형특성(變形特性)에 대해서 검토(檢討)하였다. 연구 결과, 사질토 soil-cement의 탄성계수는 점성토 soil-cementt 보다 크며, 반복횟수 $1{\times}10^3$회(回)까지 탄성계수가 감소하고, 그 후 $1{\times}10^5$회(回)까지는 증가하였다. 또한 일축압축강도(一軸壓縮强度)는 약 30% 정도의 강도증가(强度增加) 나타냈다.

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Glass-ionomer Cement 이장재의 세포독성에 관한 연구 (THE CYTOTOXIC EFFECTS OF GLASS-IONOMER CEMENT LINERS ON FIBROBLASTS IN HUMAN PULP)

  • 나영민;민병순;최호영;박상진;최기운
    • Restorative Dentistry and Endodontics
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    • 제18권2호
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    • pp.261-276
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    • 1993
  • The purpose of this study was to evaluate for the cytotoxicity of glass-ionomer cement liners(GC liningcement, Ketac-bond, Vitrebond and Fuji lining LC) on the fibroblasts cultured from human pulp. The fibroblasts were cultured in DMEM-10% FBS medium. The measurement of pH, succinate dehydrogenase (SDH) activity test and $^{51}Chromium$ release test were performed. Viable cell count and $^{14}C$-leucine incorporation rate were evaluated following culture time of 2, 4 and 6 days. The results of this study were as follows : 1. The pH in all cements was to be neutralized as time elapsed, and Fuji lining LC was the lowest pH value among them. 2. SDH activity was more inhibited in GC lining cement and Vitrebond than Ketac-bond and Fuji lining LC with the setting process, and GC lining cement and Ketac-bond were reduced after 5 minute's setting and then elevated as time elapsed. 3. In SDH activity test following exposure time, the activity in Vitrebond, GC lining cement and Fuji lining LC was inhibited with increased exposure time, but it was fairly constant in Ketac-bond. 4. Overall the liquid component was more inhibited than the powder component of glass-ionomer cement in SDH activity test. 5. In $^{51}Cr$-release test, Fuji lining LC was the most released of all the cements tested and followed by : Vitrebond, Ketac-bond, GC lining cement. 6. In viable cell count, the number of cells increased as the culture day proceeded in Ketac-bond, but they decreased in GC lining cement. Fuji lining LC was only observed after 2 days culture and there was not observed the whole culture days in Vitrebond. 7. In $^{14}C$-leucine incorporation rate test, protein synthesis was decreased with the number of culture days in GC lining cement, Vitrebond and Fuji lining LC, but it was followed that of control in Ketacbond.

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상아질 표면상태에 따른 광중합형 글래스아이오노머 시멘트의 전단결합강도에 관한 연구 (A STUDY ON THE SHEAR BOND STRENGTH OF LIGHT CURED GLASS IONOMER CEMENTS TO CONTAMINATED DENTIN)

  • 김경화;박상진
    • Restorative Dentistry and Endodontics
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    • 제22권2호
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    • pp.609-621
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    • 1997
  • The purpose of this study was to evaluate the shear bond strength of three light-cured glass ionomer cements to blood contaminated bovine dentin. The materials used in this study were Fuji II LC, Dyract and Variglass VLC. The dentin conditioners were 10% polyacrylic acid, 10% maleic acid and 10% phosphoric acid. 180 lower anterior bovine teeth were selected in this study. The teeth were embedded in acrylic resin and were grounded with 320 to 600 grit silicon carbide paper to create a flat dentin surface. The teeth were divided into SIX groups. The experimental procedures in six groups were as follows; Group l(GF) : Samples bonded to dentin surface with Fuji II LC after 10% polyacrylic acid treatment. Group 2(BGF) : Samples bonded to dentin surface with Fuji II LC after 10% polyacrylic acid treatment and blood contamination. Group 3(MD) : Samples bonded to dentin surface with Dyract after 10% maleic acid treatment. Group 4(BMD) : Samples bonded to dentin surface with Dyract after 10% maleic acid treatment and blood contamination. Group 5(PV) : Samples bonded to dentin surface with Variglass VLC after 10% phosphoric acid treatment. Group 6(BPV) : Samples bonded-to dentin surface with Variglass VLC after 10% phosphoric acid treatment and blood contamination. Group 1,3 and 5 were classified into the control groups, while group 2,4 and 6 were classified into the experimental groups. Each group contained 30 samples. After 24 hours water storage at $37^{\circ}C$, all smples were subjected to a shear load to fracture at a cross head speed of 1.0 mm/min with Instron universal testing machine(No. 4467). Debonded surfaces were observed under Scanning Electron Microscope(Hitachi S-2300) at 20kvp. The data were evaluated statistically at the 95% confidence level with Student's t-test. The following results obtained; 1. Shear bond strengths were higher in the control groups(1,3,5 group) than in the experimental groups(2,4,6 group). 2. The shear bond strength of group 5(PV) was the highest in the control groups, and the group 5 was significantly higher than the group l(GF) on the shear bond strength. 3. The group 4(BMD) was the highest on the shear bond strength, and the group 2(BGF) was the lowest in the experimental groups. The group 4(BMD) and 6(BPV) showed a significant difference with the group 2 on the shear bond strength. 4. All the groups showed an adhesive-cohesive failure. except the group 2(BGF) showing adhesive failure.

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온도 및 습도가 Glass-ionomer cement와 Composite resin의 접착강도에 미치는 변화에 관한 연구 (A STUDY ON THE EFFECTS OF THE TEMPERATURE AND HUMIDITY TO THE TENSILE BOND STRENGTH BETWEEN GLASS-IONOMER CEMENT AND COMPOSITE RESIN)

  • 정인교;민병순
    • Restorative Dentistry and Endodontics
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    • 제16권1호
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    • pp.60-73
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    • 1991
  • The purpose of this study is to evaluate the effects of etching time, environmental temperature and humidity on the adhesion of composite resin to glass-ionomer cement. Two chemical cure composite resins (Clearfil F II and Microrest AP) and two glass-ionomer cements (Fuji ionomer Type I and KET AC-CEM) were used as the experimental materials. The experiment is performed in 3 stages: The first stage is to bond composite resins to glass-ionomer cements, and the surface was not etched, and etched for 20 seconds, 40 seconds, and 60 seconds. Then specimens are stored in distilled water at $37^{\circ}C$ for 24 hours to measure tensile strength. The second stage is to choose the one group that had the highest tensile strength from the first stage and prepare two experimental groups: One group with composite resin bonded to glass-ionomer cement without etching and bonding agent application and the other with composite resin bonded to glass-ionomer cement with etching but without any bonding agent application. The specimens are stored in distilled water at $37^{\circ}C$ for 24 hours and tensile strength is measured. The third stage is to choose group that had the highest tensile strength from the first stage experiment, and bond composite resin to glass-ionomer cement at $24^{\circ}C$ 44%, $30^{\circ}C$ 44%, $30^{\circ}C$ 80%, and $32^{\circ}C$ 92%. The storage time of specimens is to bond immediately after storage, then changed to 30 sec., 60 sec., and 120 sec.. Specimens are stored in distilled water at $37^{\circ}C$ for 24 hours and their tensile strength are measured again. The following results were obtained: 1. As the etching time increases, the tensile bond strength between glass-ionomer cement and composite resin increase, and the tensile bond strength is the highest when acid etched for 60 minutes (P < 0.05). 2. After acid etching for 60 minutes, the tensile strength of the group with bonding agent was stronger than that without bonding agent application (P < 0.05). 3. The tensile strength of Clearfil F II was stronger than that of Microrest AP. 4. It was observed that the tensile bond strength is not affected by different storage time with different temperature and humidity. 5. As the humidity was increased, the tensile bond strength between glass-ionomer cement and composite resin decreased (P < 0.05).

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순환유동층 플라이 애시를 사용한 혼합시멘트의 포졸란 반응성과 역학적 성질에 관한 연구 (A Study on the Pozzolan Reactivity and Mechanical Characteristic of Blended Portland Cements using CFBC Fly Ash)

  • 박종탁;오홍섭
    • 한국건설순환자원학회논문집
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    • 제6권3호
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    • pp.207-213
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    • 2018
  • 최근 환경오염물질의 배출을 감소시킬 수 있는 순환유동층 보일러가 화력발전시설로서 점차 많이 사용되고 있다. 그러나 순환유동층보일러에서 발생하는 플라이 애시는 낮은 $SiO_2$와 상대적으로 높은 MgO와 $SO_3$ 함유량을 갖고 있으며, 또한 플라이 애시에 포함된 free CaO는 시멘트의 초기팽창 또는 급격한 초기응결을 발생시킬 수 있는 위험이 있다. 따라서 기존의 미분탄연소 (PCC) 플라이 애시와 순환유동층(CFBC) 플래이애시를 콘크리트분야에서 같이 활용할 수 있도록 KSL5405가 개정 발표되었다. 본 연구에서는 PCC와 CFBC 플라이 애시를 사용한 혼합시멘트를 제조하여 화학적성질과 역학적 성질을 분석하였다. CFBC 플라이 애시만을 혼합된 시멘트의 경우에는 OPC와 비교하여 강도는 낮아지는 반면, 높은 경시변화 특성을 나타내었으나, PCC와 CFBC를 혼합한 시멘트의 경우에는 PCC 플라이 애시만을 사용한 경우와 비교하여 강도가 높은 것으로 분석되었다. 실험결과로부터 CFBC 플라이 애시는 재료안전성과 요구되는 재료성능을 확보하기 위해 PCC와 같이 사용하여야 하는 것으로 판단된다.

디지털방사선촬영술을 이용한 합착용 시멘트의 방사선불투과성 평가 (Evaluation of the Radiopacity of Contemporary Luting Cements by Digital Radiography)

  • 안서영;이두형;이규복
    • 구강회복응용과학지
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    • 제29권4호
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    • pp.377-383
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    • 2013
  • 이 연구의 목적은 치과임상에서 사용되는 8종의 합착용 시멘트의 방사선불투과성을 디지털 방사선 촬영술로 평가하는 것이었다. BisCem, Clearfil SA Luting, Duolink, Maxcem Elite, Multilink Speed, Panavia F 2.0, RelyX Unicem Clicker, V-link의 8종의 재료를 5개의 원형 시편 (직경: 4 mm, 두께: 1 mm)으로 제작하였고 사람 치아의 법랑질과 상아질 시편을 1 mm 두께로 준비하여 알루미늄 스텝 웨지와 함께 촬영하였다. 관전압 70kVP, 관전류 4 mA, 노출시간 0.156초, 초첨 필름간 거리는 30 cm으로 영상판을 이용하여 촬영하였으며, ImageJ 소프트웨어를 이용하여 평균 회색조 수치를 측정하고, 이를 흡수계수로 환산한 후 검량선(calibration curve)을 이용하여 각 합착용 시멘트의 등가 알루미늄 두께를 구하였다. 합착용 시멘트의 평균 방사선불투과성은 알루미늄 두께 0.71 ~ 5.66 mm로, RelyX Unicem Clicker (0.71 mm Al)을 제외하고는 등가 알루미늄 두께 보다 높은 방사선불투과성을 보여 ISO 규격을 만족하였으며, 법랑질은 1.79 mm, 상아질은 0.19 mm 두께의 알루미늄에 해당하는 방사선불투과성을 나타내었다.

합착 술식에 따른 레진 합착제의 상아질에 대한 미세전단결합강도의 비교 연구 (Comparative evaluation of micro-shear bond strength between two different luting methods of resin cement to dentin)

  • 이윤정;박상진;최경규
    • Restorative Dentistry and Endodontics
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    • 제30권4호
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    • pp.283-293
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    • 2005
  • 본 연구는 합착 술식에 따른 레진 합착제의 상아질에 대한 미세전단결합강도를 비교 연구하여 이중 접착 술식의 유용성을 평가하고자 시행되었다. 합착 술식은 전통 합착 술식과 이중 접착 술식, 임시 합착제는 Propac과 Freegenol, 상아질 접착제는 All-Bond 2, One-Step, Clearfil SE Bond를 사용하였다. 이중 접착 술식을 적용한 군에서만 상아질 접착제 처리 후, 모든 시편에 임시 합착제를 도포하였다. 이후 임시 합착제를 제거하고 상아질 접착제 적용 후 유리봉에 레진 합착제를 도포하여 상아질 면에 접착하였다. 미세전단결합 강도를 측정하고 접착 계면을 주사전자현미경으로 관찰하였다. 1. 전통 합착 술식이 이중 접착 술식보다 높은 미세전단결합강도를 보였으나 통계학적 유의 차가 없었다. 2. Freegenol이 Propac보다 높은 미세전단결합강도를 보였으나 유의차가 없었다. 3. 미세전단결합강도는 이중 접착 술식 을 적용한 경우 Clearfil SE Bond가 One-step, All-Bond 2보다 유의성 있게 높았으나(p<0.05) One-step, All-Bond 2 간 유의차는 없었다. 4. 전자현미경 소견에서 All-Bond 2와 One-Step을 사용한 군은 길고 수많은 resin tag가 관찰되었다. 본 연구 결과 전통 합착 술식과 비교하여 이중 접착 술식의 우수함을 확인하지 못하였다.

상아질표면처리에 따른 글래스아이오노머 및 Compomer의 전단결합강도의 비교 (COMPARISON OF THE SHEAR BOND STRENGTH OF GLASS IONOMER CEMENTS AND COMPOMER ACCORDING TO DENTIN SURFACE TREATMENT)

  • 정현숙;이회주;허복
    • Restorative Dentistry and Endodontics
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    • 제24권2호
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    • pp.416-425
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    • 1999
  • The purpose of this study was to evaluate shear bond strength of glass ionomer cements and compomer according to dentin surface treatment method. The materials used in this study were dentin conditioner and cavity conditioner for dentin treatment: Ketacfil, Fuji II LC, and Dyract for restoration. In this study, 90 sound bovine teeth were selected and then the teeth were embeded in improved stone and were grounded with 400 to 600 grit silicon carbide paper to create a flat dentin surfaces. The teeth were divided into nine groups as follows ; Group 1A : Samples bonded to dentin surface with Ketacfil after no treatment Group 1B : Samples bonded to dentin surface with Ketacfil after applicating dentin conditioner Group 1C : Samples bonded to dentin surface with Ketacfil after applicating cavity conditioner Group 2A : Samples bonded to dentin surface with Fuji II LC after no treatment Group 2B : Samples bonded to dentin surface with Fuji II LC after applicating dentin conditioner Group 2C : Samples bonded to dentin surface with Fuji II LC after applicating cavity conditioner Group 3A : Samples bonded to dentin surface with Dyract after no treatment Group 3B : Samples bonded to dentin surface with Dyract after applicating dentin conditioner Group 3C : Samples bonded to dentin surface with Dyract after applicating cavity conditioner Treated dentin surfaces were observed under SEM. After filling of each materials, shear bond strenth was evaluated and then debonded surfaces were observed under SEM. The following results were obtained; 1. The shear bond strengths obtained were decreased as Fuji II LC, Dyract, Ketacfil in that order and there was statistically significant difference(p<0.05). 2. About Group 1. the shear bond strengths were decreased as 1C, 1B and 1A in that order. But there was no significant difference between group 1B and 1C (p<0.05). 3. About Group 2, the shear bond strengths were decreased as group 2B, 2A and 2C in that order. And there was significant difference between group 2B and 2C (p<0.05). 4. About Group 3, the shear bond strengths were decreased as group 3A, 3C and 3B in that order. And there was signicant difference between group 3A and 3B (p<0.05). 5. As a result of observation under SEM, the fracture patterns of Fuji II LC and Dyract were adhesive failures, but those of Ketacfil were cohesive failure of material and mixture of cohesive and adhesive failure.

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광중합형과 자가중합형 글라스 아이오노머 시멘트의 변연 접합성에 관한 연구 (A STUDY ON THE ADAPTATION OF LIGHT-CURED AND SELF-CURED GLASS-IONOMER CEMENTS TO TOOTH STRUCTURE)

  • 박일윤;조영곤;허승면
    • Restorative Dentistry and Endodontics
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    • 제19권1호
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    • pp.148-158
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    • 1994
  • The purpose of this study was to compare the adaptation to tooth structure of light - cured glass ionomer cement with that of self -cured glass ionomer cement. In this study, class V cavities were prepared on the buccal surfaces of 10 extracted human premolar teeth, and teeth were randomly assigned 2 groups of 5 teeth each. The cavities of self-curing glass ionomer cement group were restored with the Fuji n. and the cavities of lightcuring glass ionomer cement group were restored with the Fuji II LC. The surfaces of glass ionomer cements were applied with All-Bond 2 adhesive, and cured with visible light. The restored teeth were stored in 100% relative humidity at $37^{\circ}C$ for 24 hours. And then. the roots of the teeth were removed with the tapered fissure bur and the remaining crowns were sectioned occlusogingivally through the center of glass ionomer restorations. Adaptation at tooth-restoration interface was assessed occlusally. axially, and gingivally by scanning electron microscope. The results were as follows : 1. On the occlusal margin, the group of self - curing glass ionomer cement showed closer adaptation to both enamel and dentin than the group of light-curing glass ionomer cement showing 5/lm gap between cement and tooth structure. 2. On the axial wall. the group of light-curing glass ionomer cement showing 5-$7{\mu}m$ gap between cement and dentin showed closer adaptation to dentin than the group of self -curing glass ionomer cement showing 10-$15{\mu}m$ gap between cement and dentin. 3. On the gingival margin, the group of light-curing glass ionomer cement showing 2-$5{\mu}m$ gap between cement and dentin(X 1200) showed closer adaptation to dentin than the group of self-curing glass ionomer cement showing 20pm gap between cement and dentin(X 600). 4. The group of self -curing glass ionomer cement showed closer adaptation on the occlusal margin than on the gingival margin, and the group of light-curing glass ionomer cement showed similar adaptation on both occlusal and gingival margins.

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초기 방습이 글래스아이오노머 시멘트의 색안정성 및 투명도 변화에 미치는 영향 (Effect of Early Waterproof on Color Stability and Translucency Change of Glass-ionomer Cement)

  • 정선와;김선헌;오원만
    • Restorative Dentistry and Endodontics
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    • 제19권1호
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    • pp.124-134
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    • 1994
  • The shade of restorative materials is very important for successful restoration esthetically harmonized with the natural tooth. The purpose of this study was to evaluate the color stability and the opacity change of conventional chemical setting and visible light curing glass-ionomer cements for restorative esthetic filling. Specimens of each brand (GC Fuji II and Fuji II LC) were uniformly prepared and divided into three groups: In group l(control group), the specimens received no surface treatment; in group 2, the specimens were coated with varnish and the excess gently blown off; and in group 3. the specimens were coated with light-cured bonding resin and irradiated by a visible light curing unit for 20 seconds on both sides. All specimens were stored in distilled water at $37^{\circ}C$ and checked after for 24 hours. 2 months. 4 months, 6 months. and 8 months. The color characteristics($L^*,\;a^*,\;b^*$) and the opacity(Y%) of all the samples were measured by a spectrocolorimeter and the total color differences(${\Delta}E^*$) and opacity changes(${\Delta}Y%$) were computed. The following results were obtained : 1. The total tolor differences in all groups increased with time. 2. The total color differences of the LC groups after immersion for 8 months in distilled water at $37^{\circ}C$ were lower than those of GC groups(p<0.01), and the total color differences of the varnish or the light-cured bonding resin coated groups were lower than those of the control group with glass-ionomer cements which had no surface treatment(p<0.01). 3. In all groups the translucency decreased with time. 4. In the control group and the varnish coating group. the opacity changes of the GC groups were lower than those of the LC groups(p<0.01) and in the light-cured bonding resin coated group, there was no significant difference between the GC group and the LC group. 5. The opacity changes of the varnish or the light-cured bonding resin coated groups were lower than those of the control group(p<0.01). These results suggest that color change and opacity of conventional chemical setting and light cured glass-ionomer cement were increased with time, and the color changes and the opacity changes of a control group after immersion for 8 months in distilled water at $37^{\circ}C$ were greater than those of the varnish or the light-cured bonding resin coated groups.

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