• Title/Summary/Keyword: Needle Bending

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Effects of Mg and Si on Microstructure and Mechanical Properties of Al-Mg Die Casting Alloy (Al-Mg 계 다이캐스팅 합금의 미세조직 및 기계적 성질에 미치는 Mg 및 Si의 영향)

  • Cho, Jae-Ik;Kim, Cheol-Woo
    • Journal of Korea Foundry Society
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    • v.32 no.5
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    • pp.219-224
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    • 2012
  • The effects of Mg and Si contents on the microstructure and mechanical properties in Al-Mg alloy (ALDC6) were investigated. The results showed that phase fraction and size of $Mg_2Si$ and $Al_{15}(Fe,Mn)_3Si_2$ phase in the microstructure of Al-Mg alloy were increased as the Mg and Si contents were raised from 2.5 to 3.5 wt%. With Si content of 1.5 wt%, freezing range of the alloy was significantly reduced and solidification became more complex during the final stage of solidification. While there was no significant influence of Mg contents on mechanical properties, Si contents up to 1.5 wt%, strongly affected the mechanical properties. Especially elongation was reduced by about a half with more than 1.0 wt%Si in the alloy. The bending and impact strength were decreased with increased amount of Si in the alloy, as well. The lowered mechanical properties are because of the growth of particle shaped coarse $Mg_2Si$ phase and precipitation of the needle like $\beta$-AlFeSi in the microstructure at the last region to solidify due to presence of excess amount of Si in the alloy.

The behavior of Si During Sintering of Reaction Bonded Silicon Nitride (반응결합 질화수소의 소결시 규소의 거동에 관한 연구)

  • 김재룡;김종희
    • Journal of the Korean Ceramic Society
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    • v.23 no.5
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    • pp.67-74
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    • 1986
  • To investigate the effects of unreacted silicon on the $\alpha$/$\beta$transfornation variation of morphology and mechanical strength of Sintered Reaction Bonded Silicon Nitride the mixtures of $\alpha$-$Si_3N_4$ and Si powder and Reaction Bonded Silicon Nitride were heat treated. The heat-treatments were performed in Ar atmosphere in order to inhibit the nitridation of silicon. In the mixtures heat-trated at 1$700^{\circ}C$ the amount of $\beta$-TEX>$Si_3N_4$transformed from $\alpha$-TEX>$Si_3N_4$was sigmoidally increased and the equiaxed $\alpha$-TEX>$Si_3N_4$grains elongated with the amount of silicon and heat treating time. And large $\beta$-TEX>$Si_3N_4$grains grown into silicon were observed. On the other hand there was no change in the heat-treatment of pure $\alpha$-TEX>$Si_3N_4$In case of the heat-treatment of RBSN the same phenomena due to the silicon appearing from the decomposition of $\alpha$-Smatte and needle were observed. From the three point bending test the strength of the sintered specimens with the and without 5wt% silicon addition had 53Kg/$mm^2$ and 73Kg/$mm^2$ respectively.

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Manufacturing and characterization of tufted preform with complex shape

  • Gnaba, Imen;Wang, Peng;Legrand, Xavier;Soulat, Damien
    • Advances in aircraft and spacecraft science
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    • v.6 no.2
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    • pp.105-116
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    • 2019
  • An alternative to the multilayered preforming is to use structures reinforced through-the-thickness in order to manufacture thicker and more complex pieces. Stitching technology is developed to bind dry reinforcements together or to strengthen composites in thickness performance by inserting structural yarns. Tufting process represents the simplest one-sided sewing technology and it is specifically designed for dry preform/liquid composite molding process route. Currently, the tufting technology is getting more and more interest due to its simplest and efficient process where it involves the insertion of binder threads via a single needle through the fabric. This technique of reinforcement through-the-thickness requires only one access to the preform which makes it suitable for three-dimensional structures and complex shaped textile composites. This paper aims to improve the understanding of the mechanical performance of tufted structures. An experimental study was developed, which included tensile and bending behaviours of tufted and un-tufted preforms, in order to evaluate the effect of tufting on the mechanical performance of dry preforms. The influence of the process parameters (tufting density, loop length, tufting yarns${\ldots}$) on the mechanical performance ofthe final structure is also highlighted.

Studies on Laminated Wood(4) -Gluing faculties of laminated wood made of important species in our country- (집성재(集成材)에 관(關)한 연구(硏究)(제(第)4보(報)) -국내산(國內産) 주요수종(主要樹種) 집성재(集成材)의 접착성능(接着性能)-)

  • kim, Su-Chang
    • Journal of Forest and Environmental Science
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    • v.3 no.1
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    • pp.11-16
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    • 1983
  • Two species which belong to a needle-leaf tree, three species which belong to a broad-leaved tree and three resins were selected and made into samples. They were glued in the amount of spread-$200g/m^2$, clamping pressure-$10kg/cm^2$ and room temperature during 48 hrs. This experiment was carried out to investigate results on gluing faculty tests with examining block shear strength, wood failure, tensile strength and bending strength. The result obtained may be summarized as follows. 1. Strength values of each resin made not difference, but those of each species had difference. 2. The result which Picea Koraiensis Nakai had good wood failure reveals better resin strength than wood strength. 3. Pinus Koreaiensis sieb. et Zucc. had poor tensile strength regardless of resins. 4. A broad-leaf tree, Robinia pseudoacacia Linne had good bending strength.

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Anatomical and Physical Characteristics of Pinus densiflora Wood Damaged by Thecodiplosis japonensis Uchida et Inouye (솔잎혹파리 피해 소나무재의 해부 및 물리학적 특성)

  • Hwang, Won-Joong;Kwon, Goo-Joong;Lee, Chan-Young;Kim, Nam-Hun
    • Journal of Forest and Environmental Science
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    • v.17 no.1
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    • pp.37-46
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    • 2001
  • The objective of this work is to examine anatomical and physical characteristics of wood damaged by pine needle gall midge(PNGM, Thecodiplosis japonensis Uchida et Inouye) in Pinus densiflora. In anatomical characteristics, it was noted that the number of axial and radial resin canals in the damaged wood was higher than that in sound wood. In damaged wood, green moisture content of sapwood and swelling and shrinkage was higher than sound wood. Both longitudinal compressive strength and bending strength of the damaged wood were lower than those of sound wood. On the other hand, shearing strength of damaged wood was similar to that of sound wood.

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