• 제목/요약/키워드: core material

검색결과 1,793건 처리시간 0.034초

샌드위치 패널의 외부 색상과 내부 심재에 따른 이면 온도 변화 (The Back Side Temperature Variation According to Color of Sandwich Panel and Internal Core Material)

  • 박준서;김봉주
    • 한국건축시공학회:학술대회논문집
    • /
    • 한국건축시공학회 2023년도 가을학술발표대회논문집
    • /
    • pp.25-26
    • /
    • 2023
  • The internal core material and external color of a sandwich panel have a significant impact on the performance of the sandwich panel. For use on roofs and walls, the internal core material and external color must be considered. Therefore, the surface and back side temperatures were measured for each exterior color and inner core material type. For the internal core materials, urethane foam and Expanded Poly Styrene(EPS), which are core materials mainly used in sandwich panels, were selected. As colors, black and ivory were selected according to brightness, and a total of five colors were selected: red, blue, and green, which are the three primary colors of light. As a result, there were differences in surface and temperature depending on the external color and type of internal core material. Regardless of the color, the temperature was measured lower for panels with urethane foam than for panels with an internal core of EPS. This is believed to have been influenced by the difference in thermal conductivity of urethane foam being 0.023W/(m·K) and that of EPS being 0.032W/(m·K). In addition, panels with a black exterior color were found to have higher surface and back temperatures than panels of other colors, and ivory-colored panels had lower back temperatures regardless of the core material. This is proportional to the brightness and light-absorbing characteristics.

  • PDF

FRACTURE TOUGHNESS OF VARIOUS CORE MATERIALS

  • Lee Shin-Won;Lee Sun-Hyung;Yang Jae-Ho;Han Jung-Suk;Lee Jai-Bong
    • 대한치과보철학회지
    • /
    • 제39권6호
    • /
    • pp.682-697
    • /
    • 2001
  • This investigation evaluated the fracture toughness($K_{IC}$) of eight currently available core materials, and relate the fracture toughness value to fractography analysis and surface characteristics using a atomic force microscope (AFM). Single-edge notched (SEN) test specimens (n=10) and compact tension (CT) test specimens (n=10) were prepared conforming to the ASTM Standard E-399 for a high copper amalgam, three composite core materials (Core-Max II, Core Paste, Bisfil Core), two reinforced composite core materials (Ti-Core, Ti-Core Natural), a resin-modified glass ionomer core material (Vitremer), and a conventional glass ionomer core material (Ketac-Molar). The specimens were tested with an Instron Universal Testing Machine. The maximum loads were measured to calculate the fracture toughness ($K_{IC}$). Thereafter, fracture surfaces of SEN specimens of each material were investigated for fractography analysis using scanning electron microscope. And, disc-shaped specimens with 1mm thickness were fabricated for each material and were investigated under AFM for surface morphology analysis. The results were as follows: 1. Bisfil Core showed the highest mean fracture toughness regardless of test methods. 2. For the tooth-colored materials, Ti-Core Natural exhibited the highest fracture toughness. 3. Ketac Molar showed a significantly low fracture toughness when compared with the amalgam and the composite resin core materials(p<0.05). 4. The fracture toughness values obtained with the single-edge notched test, except Ketac Molar, were higher than those obtained in the compact tension test. 5. SEM revealed that the fracture surface of high fracture toughness material was rougher than that of low fracture toughness material. 6. AFM revealed that the surface particles of the composite resins were smaller in size, with a lower surface roughness than the glass ionomer core materials.

  • PDF

S Foam Core를 적용한 자전거 사용 편의성에 중점을 둔 모듈형 자전거 액세서리 디자인 연구 (Module-type bicycle accessory design research focusing on bicycle user convenience by applying S Foam Core)

  • 박유진;송성일;강승민
    • 한국결정성장학회지
    • /
    • 제29권1호
    • /
    • pp.32-38
    • /
    • 2019
  • 서비스디자인 방법론을 통해 사용 편의성에 중점을 둔 신개념의 모듈형 자전거 액세서리를 탄소 소재를 이용하여 개발하였다. 기존의 탄소 재질을 사용할 경우 자전거 주행 중 충격에 견디지 못하거나, 파손 현상이 발생하였으며, 이러한 문제점을 해결하고자 새로운 소재(S Foam Core 소재)를 적용 하였다. 기존 탄소 재질과 S Foam Core 소재의 강도, 뒤틀림 강도, 충격흡수 및 진동감쇄 측정을 하였고, S Foam Core가 적용된 제품이 기존 탄소 소재 보다 더 우수한 결과를 얻었다. 본 연구에서는 S Foam Core 소재로 프로토 타입을 제작하여, 자체 실험을 통해 검증하였고, 이를 보고하고자 한다.

SCP-1재료 적용을 위한 초경재료 펀치의 내마모성에 대한 연구 (A study on the abrasion resistance of punching carbide material of die for the application of SCP-1 material)

  • 김승수;이민;이춘규
    • Design & Manufacturing
    • /
    • 제13권2호
    • /
    • pp.44-48
    • /
    • 2019
  • Motor core products are used as materials for electrical steel sheets and cold-rolled steel sheets according to the performance of motors. The cemented carbide material of the mold punch applied to the motor core material causes many troubles due to abrasion and burr problem. The selection of these materials has a great effect on the production life, mass production, product quality as well as mold life. The cemented carbide applied to the products of the motor core is recognized as a very important part. In this study, cold rolled steel sheet was applied to motor core SCP-1 steel 1.0mm, and The effects of abrasion and punching oil on the shear process were investigated for the selection of cemented carbide. Experiments were conducted to select and apply cemented carbide only for the motor core punch optimized for cold rolled steel. The results showed that the cemented carbide material of $CDK3^{***}$ produced the least wear and burrs.

EPS Bead와 유리섬유를 혼입한 샌드위치 패널 심재의 단열 특성 (Thermal Insulation Properties of Sandwich Panel Core with EPS Bead and Glass Wool)

  • 전은영;이창우;황우준;이상수
    • 한국건축시공학회:학술대회논문집
    • /
    • 한국건축시공학회 2022년도 가을 학술논문 발표대회
    • /
    • pp.77-78
    • /
    • 2022
  • To improve the fire vulnerability of the organic insulation sandwich panel core, which is the main culprit of the large-scale fire disaster, an experiment was conducted to examine the thermal conductivity properties of the core material mixed with the organic insulation material EPS Bead and the inorganic insulation material glass wool. As the Additional ratio of glass wool increased, the thermal conductivity decreased, and it was determined that the replacement of glass wool of 3% or more had little effect on the decrease in thermal conductivity. In addition, it can be seen that the most ideal thermal conductivity is exhibited when 1% Replacement ratio of EPS and 3% glass wool are added. The core material of such organic and inorganic insulation materials is judged to be a core material that can compensate for the fire vulnerability of existing insulation materials. Therefore, in order to determine whether it is used as a core material for sandwich panels, additional studies such as fire resistance experiments and sound absorption experiments are needed in the future.

  • PDF

균열 자기치유를 위한 캡슐용 무기계 코어재료의 시멘트 복합체 성능에 미치는 영향에 관한 기초적 연구 (A Fundamental Study on the Influence of Performance of Cementitious Composites of Inorganic Core Material for Self-Healing Capsule of Cracks)

  • 최연왕;오성록;최병걸;김철규
    • 한국구조물진단유지관리공학회 논문집
    • /
    • 제21권1호
    • /
    • pp.74-82
    • /
    • 2017
  • 본 연구에서는 시멘트 복합체의 균열을 자기치유 할 수 있는 자기치유 캡슐을 제조하기 위한 일환의 기초 연구로써 자기치유 캡슐용 코어재료에 무기계 기반 코어재료를 적용하기 위하여 액상형태의 무기 소재를 기반으로한 코어재료를 제조하였다. 제조된 무기계 기반 코어재료는 캡슐화를 진행하기 전에 무기계 기반 코어재료를 직접 시멘트 복합체에 적용하여 균열부의 균열수복 성능뿐만 아니라 시멘트 복합체의 성능에 미치는 영향을 검토하였다. 평가결과, 무기계 기반 코어재료는 압축 및 부착강도 향상효과가 있는 것을 확인하였으며, 부착, 내흡수, 내투수 및 동결융해 저항 성능을 가진 것으로 판단된다. 본 논문의 결과를 통하여 자기치유 캡슐용 무기계 기반 코어재료를 적용할 경우에 얻을 수 있는 시멘트 복합체의 성능 및 차후 진보화된 자기치유 캡슐기술의 기반 자료로써 활용하고자 한다.

LVDT의 출력 특성에 미치는 공정 및 재료 변수의 영향에 관한 유한요소해석 (Finite Element Analysis of the Effects of Process and Material Parameters on the LVDT Output Characteristics)

  • 양영수;배강열
    • 한국기계가공학회지
    • /
    • 제20권9호
    • /
    • pp.11-19
    • /
    • 2021
  • Linear variable differential transformer (LVDT) is a displacement sensor and is commonly used owing to its wide measurement range, excellent linearity, high sensitivity, and precision. To improve the output characteristics of LVDT, a few studies have been conducted to analyze the output using a theoretical method or a finite element method. However, the material properties of the core and the electromagnetic force acting on the core were not considered in the previous studies. In this study, a finite element analysis model was proposed considering the characteristics of the LVDT composed of coils, core, magnetic shell and electric circuit, and the core displacement. Using the proposed model, changes in sensitivity and linear region of LVDT according to changes in process and material parameters were analyzed. The outputs of the LVDT model were compared with those of the theoretical analysis, and then, the proposed analysis model was validated. When the electrical conductivity of the core was high and the relative magnetic permeability was low, the decrease in sensitivity was large. Additionally, an increase in the frequency of the power led to further decrease in sensitivity. The electromagnetic force applied on the core increased as the voltage increased, the frequency decreased, and the core displacement increased.

기존댐 해체 조사를 통한 댐 코어 재료의 정적·동적 물성 및 Aging 특성 연구 (Static and Dynamic Material Properties and Aging Characteristics of Dam Core Material)

  • 김신일;김동수;염경택;추연욱
    • 대한토목학회논문집
    • /
    • 제31권6C호
    • /
    • pp.221-229
    • /
    • 2011
  • 필댐의 코어죤은 차수 기능을 담당하는 댐의 중요한 요소이다. 따라서 코어죤의 물성 및 거동 특성은 댐의 안정성 해석에 있어서 아주 중요한 요소이나, 지금까지 실제 댐 코어의 물성에 대한 연구는 아주 드물었다. 댐 코어의 물성은 표면파 탐사 또는 경험식과 같은 간접적인 방법에 의해 획득되거나 추정되어 왔다. 본 연구에서는 기존 댐의 해체 과정에서 수행된 현장 및 실내시험 결과의 분석을 통하여, 댐 건설 후 코어죤 물성의 시간적 변화와 깊이별 특성에 대해 직접적으로 조사를 수행하였다. 실제 댐 코어의 전단파 속도와 전단탄성계수가 측정되었고, 기존의 경험식과 비교하였다. 아울러, 일련의 실내실험을 통하여 동적물성의 에이징 특성도 연구하였다.

Improvement in the Super Low Core-loss Soft Magnetic Materials

  • Maeda, Toru;Sato, Atsushi;Mochida, Yasushi;Toyoda, Haruhisa;Mimura, Koji;Nishioka, Takao
    • 한국분말야금학회:학술대회논문집
    • /
    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part2
    • /
    • pp.1284-1285
    • /
    • 2006
  • We reported a P/M soft magnetic material with core loss value of $W_{10/1k}=68W/kg$, which is lower than that of 0.35mm-thick laminated material, by using high purity gas-atomized iron powder. Lack of mechanical strength and high cost of powder production are significant issues for industrial use. In order to achieve both low core loss and high strength by using inexpencive powder, the improvement of powder shape and surface morphology and binder strength was conducted. As the result, the material based on water-atomized powder with 80 MPa of TRS and 108 W/kg of core loss (W10/1k) was achieved.

  • PDF

Designing of a Novel Core-Shell-Structured Co-free Cathode Material with Enhanced Thermal and Structural Stability for Lithium Ion Batteries

  • Shin, Ji-Woong;Nam, Yun-Chae;Son, Jong-Tae
    • 전기화학회지
    • /
    • 제22권4호
    • /
    • pp.172-176
    • /
    • 2019
  • The first commercialized cathode material, $LiCoO_2$, suffers from disadvantages such as high cost and toxicity and also possesses safety problems. The nickel-rich $LiNi_{0.9}Mn_{0.1}O_2$ cathode material, used as an alternative to $LiCoO_2$, has highly reversible capacity and high energy density. So, the nickel-rich $LiNi_{0.9}Mn_{0.1}O_2$ cathode material is widely used as an alternative to $LiCoO_2$ due to its highly reversible capacity and high energy density. However, $LiNi_{0.9}Mn_{0.1}O_2$ has several disadvantages as well, such as poor cycle performance and poor thermal instability. To address these problems, we synthesized a new material, $LiNi_{0.5}Mn_{0.5}O_2$, as a shell on the surface of a core to suppress the surface degradation. The new material showed high structural and thermal stabilities and could also maintain a high capacity. The capacity retention of the core-shell cathode (87.7%) was better than that of the core cathode (76.9%) after 50 cycles. Analysis using differential scanning calorimetry revealed that the heat generation in the core-shell cathode ($65.9Jg^{-1}$) was lower than that in the core cathode ($559.7Jg^{-1}$).