• Title/Summary/Keyword: 경질입자

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Flocculation behavior of PCC filler induced by cationic polymer (양이온성 고분자 첨가에 의한 경질탄산칼슘의 응집 현상)

  • Seo, Dong-Il;Lee, Hak-Rae
    • Proceedings of the Korea Technical Association of the Pulp and Paper Industry Conference
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    • 2010.04a
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    • pp.193-193
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    • 2010
  • 이전의 연구에서 우리는 선응집 기술을 적용한 중질탄산칼슘의 크기에 따른 수초지의 물성을 평가하였다. 이때 선응집 기술이 적용된 충전물의 입도와 분포를 측정하기 위해 light diffraction spectroscopy (LDS) 가 사용되었다. 경질탄산칼슘과 양이온성 고분자의 흡착 현상을 알아보기 위한 이번 연구에도 LDS가 사용되었으며, 일회성으로 입자의 크기와 분포를 측정하는 것에서 더 나아가 시간의 흐름에 따라 응집체의 형성과 파괴, 재성장을 관찰할 수 있는 도구로서 역할 하였다. 본 연구에서 우리는 세 가지 경우로 나누어 경질탄산칼슘의 응집 현상을 관찰하였다. 첫째로 경질탄산칼슘에 흡착되는 양이온성 고분자의 특성, 분자량과 전하밀도, 을 달리하여 응집체의 성장과 파괴를 관찰하였다. 둘째, 양이온성 고분자로 중질탄산칼슘을 응집시켜, 경질탄산칼슘 응집체의 경우와 입도와 전단 안정성 등을 비교하였다. 마지막으로 나노 크기의 실리카 투입이, 마이크로 크기의 경질탄산칼슘 응집체가 강한 전단에 의해 파괴되었을 때, 응집체의 전단 안정성이나 재성장 측면에 도움을 주는지 관찰하였다. 내첨용 충전물로써 경질탄산칼슘의 사용이 전 세계적으로 늘고 있는 시점에서 양이온성 고분자 첨가에 의한 경질탄산칼슘의 응집 현상을 관찰하는 것은 일반적인 제지 공정에서 경질탄산칼슘의 거동을 이해하는데 도움이 될 뿐만 아니라, 내첨용 충전물 첨가에 따른 종이의 강도 저하 방지를 위한 선응집 기술의 적용에도 도움이 될 수 있을 것으로 생각한다.

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Development of Flexible Tool for Curved Surface Finishing (곡면 다듬질용 유연공구 개발)

  • 조성산;유용균;이승영
    • Journal of the Korean Society for Precision Engineering
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    • v.17 no.7
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    • pp.141-146
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    • 2000
  • A flexible tool is developed for automatic finishing of curved surfaces without any complicated control technique on three-axes machining center. The tool is made of thermosetting polyurethane elastomer on the surface of which aluminum oxide abrasives are mounted. Performance and durability of the tool are examined by finishing ball-end milled surfaces of high-alloyed tool steel. It is demonstrated that the tool removes cusp successfully without changing overall surface shape in relatively short time.

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Sliding Contact Analysis between Rubber Seal, a Spherical Particle and Steel Surface (시일과 스틸면 사이에 구형 입자가 있는 미끄럼 접촉 해석)

  • Park, Tae-Jo;Lee, Jun-Hyuk
    • Tribology and Lubricants
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    • v.28 no.1
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    • pp.1-6
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    • 2012
  • In this paper, a three elastic body sliding contact problem is modeled to investigate more precise wear mechanisms related with the sealing surface. A 3-D finite element contact model, a small spherical elastic particle, PTFE seal and steel surface, is solved using a nonlinear finite element code MARC. The deformed seal and steel surface shapes, von-Mises and principal stress distributions are obtained for different seal sliding distances. The entrapped small particle within PTFE seal results in very high stresses on the steel surface which exceeded its yield strength and produce plastic deformation such as groove and torus. The sealing surface could also be worn down by sub-surface fatigue due to intervening small particles together with the well-known abrasive wear. Therefore the proposed contact model adopted in this paper can be applied in design of various sealing systems, and further studies are required.

Sliding Contact Analysis of a Spherical Particle between Rubber Seal and Coated Steel Counterface (시일과 코팅된 스틸면 사이의 구형 입자에 의한 미끄럼 접촉 해석)

  • Park, Tae-Jo;Lee, Jun-Hyuk
    • Tribology and Lubricants
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    • v.28 no.6
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    • pp.283-288
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    • 2012
  • In this study, a new sliding contact problem involving an elastomeric seal, a spherical particle and a hard coated steel counterface was modeled to investigate the detailed wear mechanisms related to the sealing surface. The model was also used to design the optimum coating conditions. A three-dimensional finite element contact problem was modeled and analyzed using the nonlinear finite element code, MARC. The deformed steel surface and stress distributions are presented for different coating layers and thicknesses. When the coating thickness is relatively small, the entrapped particle produces surface plastic deformations such as groove and torus. In addition, the sealing surface can be damaged by abrasive wear as well as fatigue wear. For a relatively thick and multi-layered coating, on the other hand, surface plastic deformation does not occur, and the amount of abrasive and fatigue wear is reduced. Therefore, the proposed contact model and results can be used in the design of various sealing systems, further intensive studies are required.

Contact Analysis Between Rubber Seal, a Spherical Particle and Coated Steel Surface (시일과 코팅된 스틸면 사이의 구형 입자에 의한 접촉해석)

  • Park, Tae-Jo;Jo, Hyeon-Dong
    • Tribology and Lubricants
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    • v.25 no.4
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    • pp.225-230
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    • 2009
  • Seals are very useful machine components in protection of leakage of lubricant or working fluid, and incoming of debris from outside. Various elastomer are widely used as sealing materials and the shaft surfaces are generally coated with high hardness material after heat treatment. It is generally known that the foreign debris and wear particles get stuck into sealing surface, the steel shaft surface can be damaged and worn by mainly abrasive wear. In this paper, using MARC, contact analysis are conducted to show the hard coated steel shaft surface can be fatigue failed by very small elastic particle intervened between seal and steel surface. Variations of contact and von-Mises stress distributions and contact half-widths with interference and coating thickness are presented. The maximum von-Mises stress occurs always in the coating layer or between coated layer/substrate interface. Therefore the coated sealing surface can be fatigued and then failed by very small particles. The results can be used in design of sealing surface and further studies are required.

Contact Analysis of a Spherical Particle Between Elastomeric Seal and Steel Surface (시일과 스틸면 사이에 구형입자가 있는 접촉문제의 해석)

  • Park, Tae-Jo;Jo, Hyeon-Dong
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.34 no.2
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    • pp.161-166
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    • 2010
  • Elastomeric seals are widely used in dynamic seal applications, and it is well known that the sealing surfaces can be gradually worn out. Abrasive wear is known to be the most dominant factor; however, little research has been carried out on this problem until now. In this study, a new contact problem related to elastomeric seals-a small spherical particle and steel surface-was modeled and analyzed using MARC. Variations of von-Mises and residual stress distributions as well as deformed seal and steel surface shapes with seal materials and interferences are presented. The stress distribution and surface deformation are highly affected by the elastic properties of seal. For PTFE, the maximum von-Mises stress exceeds the yield strength, and plastic deformation occurs on the steel surface. Therefore, the sealing surface can also be worn down by sub-surface fatigue due to intervening hard particles in the sealing surfaces together with the well-known abrasion.

The Analysis of Physical Characteristics and Raw Materials on Hard and Soft Whiteware at Excavated Kiln in Dudong-ri Gyeongsangnam-do, Korea (경남 두동리가마터 출토 경질과 연질백자에 대한 물성 및 원료 분석)

  • Koh, Min-Jeong;Kim, Ji-Tae;Koh, Kyong-Shin;Kim, Gyu-Ho
    • Journal of Conservation Science
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    • v.18 s.18
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    • pp.75-88
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    • 2006
  • This study tries to find out the properties of soft ind hard white wares of white wares from Dudong-ri in a scientific way, especially by meant of physical chemical analysis, microstructural observation. As a result, In the physical analysis, soft white wares are found to have higher absorption and porosity. In the composition analysis, the chemical property, of body and glaze, shows that the composition of them varies with excavation areas. However, no clear difference is identified between the soft and hard white wares which are from the ssme kiln. The microstructural observation visibly shows the difference of hard and soft white wares which it verified in the physical property Minerals with round pores and vitrified feldspar are observed in the body of hard white wares, but no vitrified particles but widely distributed pores with long and sharp irregular shapes are found in the body of soft white wares. In conclusion, the hard and soft white wares from Dudong-ri kiln are mainly influenced by physical property and microstructural rather than chemical composition and firing atmospheres. However, more and various comparative studies are needed since the resources with various physical properties vary among kilns of each production area.

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Physicochemical properties of powdered, soft and hard type rice flour by different milling methods (제분방법에 따른 분질, 연질 및 경질미 가루의 이화학적 특성)

  • Choi, Ok Ja;Jung, Hee Nam;Shim, Ki Hoon
    • Food Science and Preservation
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    • v.22 no.2
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    • pp.174-181
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    • 2015
  • This study investigated the physicochemical properties of three different types of rice flour prepared via dry and wet milling. The powder, soft, and hard-types of rice flour were Suwon No. 542, Suwon No. 541, and Unbong No. 30, respectively. The analysis of the proximate compositions of the different types of rice flour showed that their moisture content was 7.03~7.99%, their crude protein was 7.94~8.35%, their crude lipid was 0.71~1.49% and their crude ash was 0.25~0.82%. For the Hunter's color values, the L value was highest in the wet-milled rice flour, the a value was highest in the dry-milled rice flour, and the b value was highest in the dry-milled rice flour. All the samples showed distinctive rice starch particles in the particle analysis using scanning electron microscope. The dry-milled rice flour showed the greatest amount of irregular particles and the coarsest texture. The water absorption and water solubility indices were higher in the wet-milled soft- and hard-type rice flour. The crystallinities of the samples by X-ray diffractography were all A-type, but the crystallinity of the dry-milled hard-type rice flour was higher in diffraction degree. For the amylogram properties, the wet-milled soft-type rice flour showed the highest maximum viscosity, breakdown and setback. In the meanwhile, the dry-milled soft-type rice flour showed the highest initial pasting temperature, onset, peak, and end temperatures despite of the reverse enthalpy.

A Study on High Temperature Particles-Erosion of Hard Coatings (경질 코팅의 고온 입자침식 현상 연구)

  • 이의열;김종하
    • Journal of the Korean institute of surface engineering
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    • v.36 no.4
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    • pp.291-295
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    • 2003
  • Many steam turbine components encounter solid particle erosion damage. It has been reported that particle erosion damage is caused by oxide scale exfoliation from boiler tubes. One of the most effective solutions to combat the erosion damage is the application of erosion resistant coatings on the turbine components. In this study, particle erosion resistance for various hard coatings such as nitride, Cr carbide and boride coatings was evaluated under the simulated erosion conditions of steam turbines. Based on the particle erosion tests, the boride coating was found to be more superior to others.