• 제목/요약/키워드: Polymer Lubricants

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폴리(부틸렌 테레프탈레이트)의 물성에 대한 윤활제의 효과 (Effect of Lubricants on the Physical Properties of Poly(butylene terephthalnte))

  • 김효갑;김준경;임순호;이건웅;박민;강호종
    • 폴리머
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    • 제28권3호
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    • pp.239-244
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    • 2004
  • 윤활제 첨가에 따른 폴리(부틸렌 테레프탈레이트) [PBT]의 유변 특성 및 열 안정성 변화에 대하여 살펴보았다. 윤활제로 칼슘 스테아레이트 (CaST)와 아디프산 글리콜 폴리에스터 (AhGP)를 PBT에 첨가하는 경우 1 wt% 첨가만으로도 용융 점도가 현저히 감소함을 알 수 있었다. 이러한 정도 감소는 AAGP의 경우, PBT 주사슬에 내부 윤활제로 그리고 CaST는 가공 기기 표면과의 윤활 특성을 향상시키는 외부 윤활제로 작용하여 발현되며, 아울러 윤활제에 의한 PBT분자량 감소에도 기인됨을 확인할 수 있었다. 또한 본 연구에서 사용한 윤활제는 PBT의 열 안정성을 저하시키는 요인으로 작용함을 알 수 있었으나 3 wt% 이하의 CaST를 PBT에 적용하는 경우 열 안정성의 감소를 최소화 할 수 있었다. 이러한 결과로 부터 분자량 감소와 열 안정성 저하를 최소화하면서 동시에 점도를 낮출 수 있는 PBT윤활제로는 내부 윤활제보다는 외부 윤활제인 CaST가 적절함을 알 수 있었다.

폴리머 윤활베어링의 특성과 응용 (Characteristics and Application of Polymer Lubricating Bearings)

  • 김상근;박창남;한종대
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2002년도 제35회 춘계학술대회
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    • pp.105-110
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    • 2002
  • The use of microporous polymer lubricants (MPLs) can eliminate the storage, sealing, and pumping problems associated with liquid lubricants, This paper discusses the use of MPLs for a component as rolling-element bearings. An MPL composed of 40% HDPE and 60% ester oil was synthesized and the MPL was applied to a ball bearing. The MPL ball bearing, filled with the MPL instead of the usual grease pack, tested and compared with the usual grease sealed ball bearing. The MPL applied to a ball bearing showed lubricant properties as good as usual grease, and showed higher performance in bearing oil leakage test, rotating torque test and thermal test at high speed running than usual grease.

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고온용 폴리머 윤활 베어링의 특성 연구 (Preparation and Characterization of Polymer Lubricating Bearings)

  • 한종대;김상근;김병관
    • Tribology and Lubricants
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    • 제24권4호
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    • pp.179-185
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    • 2008
  • Microporous polymer lubricants(MPLs) are solid polymer materials containing micropores which are filled with liquid lubricants, and which are molded or formed to suit rolling bearings or other machine parts requiring lubrication. MPLs can be effectively applied to provide long-term, maintenance-free lubrication of a variety of machine elements without fully replacing of oils and greases. The application of rolling bearings packed fully with an MPL could reduce or eliminate the problems such as grease deterioration, leakage, under-lubrication caused by insertion of water or foreign matters under severe operation conditions. This paper discuss the application of MPLs for lubrication of rolling ball bearings. Two different MPLs were synthesized and the features of MPLs were tested. Characteristics of the bearings which are packed fully with synthesized MPLs were investigated using SEM, TG/DSC, extents of oil leakage, OIT, and life time test. After these preliminary tests twelve MPLs were synthesized and evaluated by measuring extents of oil leakage and OIT values. Then synthesis conditions for the optimum MPL were selected by SSRED(Six Sigma Robust Engineering Design) pro gram using extents of oil leakage and OIT values respectively. The optimum MPL by means of OIT value showed higher performance such as long life time and application at higher temperature of $140^{\circ}C$ than previous temperature of $100^{\circ}C$.

온도 조건에 따른 폴리머 소재의 트라이볼로지 특성 연구 (Effects of Temperature on Tribological Properties of Polymer Material)

  • 안치윤;김대은
    • Tribology and Lubricants
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    • 제39권6호
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    • pp.262-267
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    • 2023
  • Research to replace metal mechanical elements with polymer materials has recently accelerated. However, polymers exhibit less favorable mechanical properties than metal materials, and are often easily worn-out owing to frictional heat when their mechanical elements contact while in relative motion. Therefore, research on the polymer tribological properties is required to employ polymer materials in mechanical elements operating under harsh conditions. In this study, we examine the effect of mechanical part operating temperatures on the material friction and wear characteristics of polymer materials. We conduct ball-on-disk friction tests under dry conditions at various temperatures, using a metal ball with high hardness and a polymer as the counter surface. Each test is repeated at least three times to ensure the reliability of the test results. Before the friction test, we analyze the surface hardness and roughness of each polymer specimen; after the friction test, we use a three-dimensional confocal microscope to compare and analyze the polymer specimen wear characteristics. Based on this study, we systematically elucidate the polymer material tribological characteristics. This information should be useful for selecting and utilizing polymer materials at various temperatures.

Role of Charges of the Surface-grafted Polymer Chains for Aqueous Lubrication at a Nonpolar Interface

  • Ron, Troels;Madsen, Jan Busk;Nikorgeorgos, Nikolaos;Lee, Seunghwan
    • Tribology and Lubricants
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    • 제30권5호
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    • pp.247-255
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    • 2014
  • Charged polymer chains, i.e., polyelectrolytes, are known to show superior aqueous lubricating properties compared to those of neutral polymer chains, especially in brush conformation. This is primarily because of the incorporation of a large amount of counterions within the polymer layers and the consequently increased osmotic pressure. However, this effect is active only when the polymer chains remain immobilized even under tribostress, which is not realistic for high-contact pressure tribological applications, especially when they are irreversibly immobilized on tribopair surfaces. In contrast, with free polymers, which can be included as surface-active additives in the base lubricant (water), long-term lubricating performance based on "self-healing" properties is readily expected. In order to assess whether the superior aqueous lubricating properties of polyelectrolyte chains are valid for free polymers too, this study reviews recent studies on the tribological properties of many charged biopolymer and synthetic copolymers at a nonpolar, hydrophobic interface. In contrast to the irreversibly immobilized polyelectrolyte chains, free polyelectrolyte chains show inferior aqueous lubricating properties compared to their neutral counterparts owing to charge accumulation and the consequently impeded surface adsorption on the nonpolar surface. Nevertheless, bovine submaxillary mucin (BSM), a representative biopolymer, shows a sufficiently effective surface adsorption and aqueous lubricating capabilities even at neutral pH without losing the polyanionic characteristics.

고체윤활용 $MoS_2$Bonded Film의 마찰마모 특성에 관한 실험적 고찰 (Experimental Studies on Friction and Wear of the Solid Lubricating $MoS_2$ Bonded Films)

  • 공호성;윤의성;한홍구;권오관
    • Tribology and Lubricants
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    • 제12권1호
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    • pp.15-21
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    • 1996
  • Friction and wear properties of MoS$_2$ bonded films were studied using the Falex testing machine, and their properties were evaluated in terms of the life and the load carrying capacity of the films. MoS$_2$ bonded films were formulated from the mixtures of MoS$_2$ solid particles and epoxyphenol resin, and they were applied onto AISI 4130 steel surface by dipping method to form lubricating bonded films. The results of the life and the load carrying capacity of the films showed that films were mainly affected by the surface temperature arisen from the frictional heat at the contact surface. To obtain enhanced tribological properties of the films, various combinations of solid lubricants and additives with a basic polymer resin were attempted and evaluated. The effects of surface pretreatment, such as sand blast or Zn-phosphating, were also investigated.

열 나노임프린트 리소그래피에서 사용되는 스탬프와 폴리머 재료 사이의 점착 특성 (Adhesion Characteristics between Stamp and Polymer Materials Used in Thermal Nanoimprint Lithography)

  • 김광섭;강지훈;김경웅
    • Tribology and Lubricants
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    • 제22권4호
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    • pp.182-189
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    • 2006
  • In this paper, the adhesion characteristics between a fused silica without or with an anti-sticking layer and a thermoplastic polymer film used in thermal NIL were investigated experimentally in order to identify the release performance of the anti-sticking layer. The anti-sticking layers were derived from fluoroalkylsilanes, (1H, 1 H, 2H, 2H-perfluorooctyl)trichlorosilane ($F_{13}-OTS$) and (3, 3, 3-trifluoropropyl)trichlorosilane (FPTS), and coated on the silica surface in vapor phase. The commercial polymers, mr-I 7020 and 8020 (micro resist technology, GmbH), for thermal NIL were spin-coated on Si substrate with a rectangular island which was fabricated by conventional microfabrication process to achieve small contact area and easy alignment of flat contact sur- faces. Experimental conditions were similar to the process conditions of thermal NIL. When the polymer film on the island was separated from the silica surface after imprint process, the adhesion force between the silica surface and the polymer film was measured and the surfaces of the silica and the polymer film after the separation were observed. As a result, the anti-sticking layers remarkably reduced the adhesion force and the surface damage of polymer film and the chain length of silane affects the adhesion characteristics. The anti-sticking layers derived from FPTS and $F_{13}-OTS$ reduced the adhesion force per unit area to 38% and 16% of the silica sur-faces without an anti-sticking layer, respectively. The anti-sticking layer derived from $F_{13}-OTS$ was more effective to reduce the adhesion, while both of the anti-sticking layers prevented the surface damages of the polymer film. Finally, it is also found that the adhesion characteristics of mr-I 7020 and mr-I 8020 polymer films were similar with each other.

열 나노임프린트 리소그래피에서의 몰드와 열가소성 폴리머 필름 사이의 응착 특성 (Adhesion Characteristics between Mold and Thermoplastic Polymer Film in Thermal Nanoimprint Lithography)

  • 김광섭;강지훈;김경웅
    • Tribology and Lubricants
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    • 제24권5호
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    • pp.255-263
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    • 2008
  • Adhesion tests were conducted to investigate the adhesion characteristics between mold and thermoplastic polymer film. Coating of anti-sticking layer (ASL), a kind of polymer material, imprint pressure, and separation velocity were considered as the process conditions. A piece of fused silica without patterns on its surface was used as a mold and the thermoplastic polymer films were made on Si substrate by spin-coating the commercial polymer solution such as mr-I PMMA and mr-I 7020. The ASL was derived from (1H, 1H, 2H, 2H - perfluorooctyl) trichlorosilane($F_{13}$-OTS) and coated on the fused silica mold in vapor phase. The pull-off force was measured in various process conditions and the surfaces of the mold and the polymer film were observed after separation. It was found that the adhesion characteristics between the mold and the thermoplastic polymer film and the release performance of ASL were changed according to the process conditions. The ASL was effective to reduce the pull-off force and the damage of polymer film. In cases of the mold coated with ASL, the pull-off force did not depend on imprint pressure and separation velocity.

복합소재 O-링의 압축변형 특성에 관한 연구 (A Study on the Compression Characteristics of Bi-polymer O-rings)

  • 김도현;김청균
    • Tribology and Lubricants
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    • 제21권4호
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    • pp.171-176
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    • 2005
  • O-ring seal is an essential component in various mechanical apparatuses for a sealing of oil container and pressure vessels. This paper presents the sealing pressure and compressive contact behaviors of hi-polymer O-rings, which is made by an outer shell of FFKM material and an inner solid ring of FKM one. The contact normal pressure and its ratios are measured by experimental method with an automatic control system of the working temperature and analyzed numerically by using the non-linear Marc FEM program. The results show reasonably good agreements between the computed FEM results and measured ones when the operating temperature is kom normal temperature of $18^{\circ}C$ and a high temperature of $300^{\circ}C$ But the compared values between the computed and tested results show a little difference because of the increased temperature, which is related to the non-linear parameter of the O-ring material. Bi-polymer 0-ring shows a good contact normal stress and compression behavior for a given operation temperature and compression ratio.