• 제목/요약/키워드: alternative adhesives

검색결과 24건 처리시간 0.022초

도전성 접착제에서의 솔더입자의 젖음 특성 (Wetting Characteristic of Solder Particle for Electrically Conductive Adhesive)

  • 양경천;조상현;조윤성;이선병;이성혁;신영의;김종민
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2006년 추계학술발표대회 개요집
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    • pp.175-177
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    • 2006
  • Electrically Conductive Adhesives(ECAs) with solderable particles have been developed as an alternative to Pb-free solders. Our previous study proved that good wettability of solder particle is a prerequisite for the establishment of conduction paths. In this paper, two types of ECAs were formulated and the wetting characteristic low-melting-point Sn-In solder on Cu and Ni/Au pads was investigated. It was found that Sn-In solder in the developed resin material with reduction capability shows good wettability, especially on Cu pad.

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Comparing intra-oral wound healing after alveoloplasty using silk sutures and n-butyl-2-cyanoacrylate

  • Suthar, Pratik;Shah, Sonal;Waknis, Pushkar;Limaye, Gandhali;Saha, Aditi;Sathe, Pranav
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제46권1호
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    • pp.28-35
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    • 2020
  • Objectives: The need for proper wound closure is of paramount importance after any intra-oral surgery. Various wound closure techniques have been described in literature using traditional non-absorbable suture materials. These include like synthetic absorbable sutures, surgical staples and tissue adhesives. Cyanoacrylates are among the most commonly used biocompatible tissue adhesives. To evaluate and compare intraoral wound healing using 3-0 silk sutures and n-butyl-2-cyanoacrylate after alveoloplasty. Materials and Methods: A total of 20 patients requiring bilateral alveoloplasty in the same arch (upper or lower) were included in this study. Patients with any pre-existing pathology or systemic disease were excluded. After alveoloplasty was performed, the wound was closed using 3-0 braided silk sutures on one side, and using n-butyl-2-cyanoacrylate bio adhesive on the other side. Patients were evaluated based on the following parameters: time required to achieve wound closure; the incidence of immediate and postoperative hemostasis; the time to the use of the first rescue medication; the side where pain first arises; and the side where wound healing begins first. Results: Compared to 3-0 silk sutures, cyanoacrylate demonstrated better hemostatic properties, reduced operative time, reduced postoperative pain and better wound healing. Conclusion: These data suggest that cyanoacrylate glue is an adequate alternative to conventional sutures to close the surgical wound after alveoloplasty, and better than are 3-0 silk sutures.

유채박의 효소 가수분해물로 조제한 접착제를 사용한 합판의 접착특성 (Properties of Plywood Bonded with Adhesive Resins Formulated with Enzymatically-Hydrolyzed Rapeseed Flour)

  • 양인;한규성;최인규;김용현;안세희;오세창
    • Journal of the Korean Wood Science and Technology
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    • 제40권3호
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    • pp.164-176
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    • 2012
  • 본 연구는 현재 사용되고 있는 석유화학계 접착제를 대체하기 위하여 바이오 디젤 부산물인 유채박을 세 종류(cellulase, pectinase, protease)의 효소를 단독 또는 조합하여 개량한 후 phenol formaldehyde (PF) prepolymer와 혼합하여 접착제를 제조하였으며, 이렇게 조제된 접착제를 적용시킨 합판의 접착능 및 포름알데히드 방산량을 조사함으로써 유채박의 합판용 접착제를 위한 원료화 가능성을 확인하고자 하였다. 유채박 접착제는 효소의 종류와 PF prepolymer의 몰비에 따라 6.26~8.81의 pH와 2,980~4,610 cps 점도를 보였으며, 고형분 함량은 33% 내외인 것으로 조사되었다. 유채박 접착제로 제조된 합판의 접착능 및 포름알데히드 방산량을 조사한 결과, cellulase 또는 cellulase와 pectinase를 이용하여 순차적으로 가수분해한 유채박 가수분해물과 1.8-F/P PF prepolymer로 조제한 접착제를 적용시킨 합판의 건조 및 준내수 인장강도가 가장 높았으며, 그 값은 KS F 3101의 보통합판에 관한 최소 규정치인 0.6 N/$mm^2$를 초과하는 것으로 나타났다. 한편 유채박 접착제로 제조된 합판의 포름알데히드 방산량은 전반적으로 1.0 mg/${\ell}$를 초과하지 않았으며, 대조구인 요소수지 접착제로 제조된 합판의 포름알데히드 방산량(2.69 mg/${\ell}$)과 비교하여 상당히 낮았다. 본 연구 결과로부터 유채박 접착제가 합판용 접착제로써 사용될 수 있다는 가능성을 제시할 수 있었으며, 유채박의 가수분해에 사용된 효소의 양 및 가수분해 시간을 조절하거나, 고형분 함량을 증가시켜 열압온도와 시간을 줄이는 방안 등이 유채박 접착제의 상용화를 위하여 향후 추가 연구가 되어야 할 것으로 생각한다.

Soybean-based Green Adhesive for Environment-friendly Furniture Material

  • Jeon, Ji-Soo;Lee, Jeong-Hun;Kim, Su-Min
    • 한국가구학회지
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    • 제22권3호
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    • pp.174-182
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    • 2011
  • Over the last decade, Sick Building Syndrome has become a significant social issue in Korea and many methods have been considered to maintain comfortable indoor air quality. To reduce toxic substances emitted from wood composite products, the source control is an efficient method through the reduction of formaldehyde content by using natural material-based adhesives for composite wood products production. Among alternative materials, soybean protein is considered an appropriate natural material to replace formaldehyde-based resin and many efforts have been made to produce new products, such as soap, shampoo, ink, resin, adhesive and textile through changing the chemical or physical properties of soybean. To process soybeans into these useful products, the beans are dehulled and the oil is removed by crushing at very high pressure or by solvent extraction. For use soybean as an adhesive, it is processed at temperatures below $70^{\circ}C$ to preserve the alkaline solubility of the proteins. In addition, soybean-based adhesive is undergone treatment process to improve mechanical properties using urea, urease inhibitor N-(n-butyl) thiophosphoric triamide and sodium dodecyl sulfate. The modified soybean-based adhesive exhibited sufficient mechanical properties to use as an adhesive for composite wood products. This paper is a review article to discuss the possibilities of soybean-based adhesive for environment-friendly furniture materials.

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Polysaccharides Obtained from Vegetables: an effective source of alternative excipient

  • Ananta Choudhury;Satyabrat Sarma;Snehashis Sarkar;Madhusmita Kumari;Biplab Kumar Dey
    • 대한약침학회지
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    • 제25권4호
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    • pp.317-325
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    • 2022
  • Polymers are the major constructive material of pharmaceutical formulations that play a prime role in designing effective drug-delivery systems and releasing drugs at their sites of application. Polymers are composed of multiple repeating units of high molecular mass components with attendant properties. Most synthetic polymers are non-biocompatible, expensive, and extremely inclined to deliver adverse impacts. Meanwhile, edible polymers obtained from natural sources have gained remarkable recognition for their promising use in modern medicine. Moreover, polymers derived from natural sources are generally preferred due to certain of their unique features such as abundant availability, biocompatibility, nontoxicity, economical, safe, and effective functions that fit the purpose. Polysaccharides including starch, cellulose, hemicellulose, pectin, and mucilage are identified as a major class of naturally obtained molecules that have a substantial role as functional polymers. This review summarizes the potential role of polysaccharides derived from vegetable sources such as adhesives, anticaking agents, binders, disintegrants, emulsifiers, film-framing agents, and thickeners. This is simply an opportunity to abandon synthetic excipients that hurt our bodies and think back to nature from where we originate.

Surface Preparation and Activation Only by Abrasion and Its Effect on Adhesion Strength

  • Ali Gursel;Salih Yildiz
    • 접착 및 계면
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    • 제23권4호
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    • pp.101-107
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    • 2022
  • Adhesive joints have many advantages such as weight savings, corrosion and fatigue resistance and now developed even withstand of high impact and dynamic loads. However, an adhesion has cumbersome and complicated surface preparation processes. The surface preparation step is critical in adhesive joint manufacturing in order to obtain the prescribed strength for adhesive joints. In this study, it was attempted to simplify and reduce the number of surface preparation steps, and abrasion and rapid adhesive application (ARAA) process is developed for an alternative solution. The abrasion processes are performed only for creating surface roughness in standard procedures (SP), although the abrasion processes cause surface activation itself. The results showed that there is no need the long procedures in laboratory or chemical agents for adhesion. After the abrasion process, the attracted and highly reactive fresh surface layer obtained, and its effect on bonding success is observed and analyzed in this research, in light of the essential physic and adhesion theories. Al 6061 aluminum adherends and epoxy-based adhesives were chosen for bonding processes, which is mostly used in light vehicle parts. The adherends were cleaned, treated and activated only with abrasion, and after the adhesive application the specimens were tested under quasi-static loading. The satisfied ARAA results were compared with that of the specimens fabricated by the standard procedure (SP) of adhesion processes of high impact loads.

Shear bond strength of composite resin to high performance polymer PEKK according to surface treatments and bonding materials

  • Lee, Ki-Sun;Shin, Myoung-Sik;Lee, Jeong-Yol;Ryu, Jae-Jun;Shin, Sang-Wan
    • The Journal of Advanced Prosthodontics
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    • 제9권5호
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    • pp.350-357
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    • 2017
  • PURPOSE. The object of the present study was to evaluate the shear bonding strength of composite to PEKK by applying several methods of surface treatment associated with various bonding materials. MATERIALS AND METHODS. One hundred and fifty PEKK specimens were assigned randomly to fifteen groups (n = 10) with the combination of three different surface treatments (95% sulfuric acid etching, airborne abrasion with $50{\mu}m$ alumina, and airborne abrasion with $110{\mu}m$ silica-coating alumina) and five different bonding materials (Luxatemp Glaze & Bond, Visio.link, All-Bond Universal, Single Bond Universal, and Monobond Plus with Heliobond). After surface treatment, surface roughness and contact angles were examined. Topography modifications after surface treatment were assessed with scanning electron microscopy. Resin composite was mounted on each specimen and then subjected to shear bond strength (SBS) test. SBS data were analyzed statistically using two-way ANOVA, and post-hoc Tukey's test (P<.05). RESULTS. Regardless of bonding materials, mechanical surface treatment groups yielded significantly higher shear bonding strength values than chemical surface treatment groups. Unlike other adhesives, MDP and silane containing self-etching universal adhesive (Single Bond Universal) showed an effective shear bonding strength regardless of surface treatment method. CONCLUSION. Mechanical surface treatment behaves better in terms of PEKK bonding. In addition, self-etching universal adhesive (Single Bond Universal) can be an alternative bonding material to PEKK irrespective of surface treatment method.

기존의 창상봉합과 Histoacryl Blue®를 이용한 창상봉합의 비교 분석: 전향적 무작위 임상실험 (Comparing Conventional Suture Method Versus Wound Closure Using Tissue Glue(Histoacryl Blue®): a Prospective Randomized Clinical Trial)

  • 최종우;현경배;김용욱;박병윤
    • Archives of Plastic Surgery
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    • 제32권1호
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    • pp.19-23
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    • 2005
  • Tissue adhesives have gained popularity for quicker and painless closure of lacerations. The use of tissue glue is currently popular for the closure of superficial lacerations, especially in children. Histoacryl $Blue^{(R)}$(2-N-butylcyanoacrylate) is a topical wound closure that precludes the need for foreign bodies to close wounds. The purpose of this study was to compare the applications of Histoacryl $Blue^{(R)}$(HAB) and conventional suture, regarding cosmetic outcome. To compare the short term and long term results of various repair methods, we designed the prospective, randomized, blind study. Patients with laceration undergoing repair were randomly allocated to conventional suture, subcutaneous suture plus HAB, and HAB only groups. The exclusion criterions were large wound that require large tension for repair or avulsion wound. An independent, blinded observer assessed cosmetic result at 7-10 days after repair and 3-9 months postoperatively. Physician's satisfaction with wound appearance was recorded on 100 mm Visual Analogue Scale(VAS)(0=worst, 100=best). The difference in VAS score between conventional suture method and subcutaneous suture plus HAB methods were not significant. Tissue glue being easy to use with no complications and still resulting in equivalent cosmetic outcomes has several benefits. Especially in the case of children, the wound closure with Histoacryl $Blue^{(R)}$ could be a good alternative for repair of laceration in emergency room.

Enamel pretreatment with Er:YAG laser: effects on the microleakage of fissure sealant in fluorosed teeth

  • Memarpour, Mahtab;Kianimanesh, Nasrin;Shayeghi, Bahareh
    • Restorative Dentistry and Endodontics
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    • 제39권3호
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    • pp.180-186
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    • 2014
  • Objectives: The purpose of this in vitro study was to evaluate the microleakage and penetration of fissure sealant in permanent molar teeth with fluorosis after pretreatment of the occlusal surface. Materials and Methods: A total of 120 third molars with mild dental fluorosis were randomly divided into 6 groups (n = 20). The tooth surfaces were sealed with an unfilled resin fissure sealant (FS) material. The experimental groups included: 1) phosphoric acid etching (AE) + FS (control); 2) AE + One-Step Plus (OS, Bisco) + FS; 3) bur + AE + FS; 4) bur + AE + OS + FS; 5) Er:YAG laser + AE + FS; and 6) Er:YAG laser + AE + OS + FS. After thermocycling, the teeth were immersed in 0.5% fuchsin and sectioned. Proportions of mircoleakage (PM) and unfilled area (PUA) were measured by digital microscope. Results: Overall, there were significant differences among all groups in the PM (p = 0.00). Group 3 showed the greatest PM, and was significantly different from groups 2 to 6 (p < 0.05). Group 6 showed the lowest PM. Pretreatment with Er:YAG with or without adhesive led to less PM than bur pretreatment. There were no significant differences among groups in PUA. Conclusions: Conventional acid etching provided a similar degree of occlusal seal in teeth with fluorosis compared to those pretreated with a bur or Er:YAG laser. Pretreatment of pits and fissures with Er:YAG in teeth with fluorosis may be an alternative method before fissure sealant application.

FLIP CHIP ON ORGANIC BOARD TECHNOLOGY USING MODIFIED ANISOTROPIC CONDUCTIVE FILMS AND ELECTROLESS NICKEL/GOLD BUMP

  • Yim, Myung-Jin;Jeon, Young-Doo;Paik, Kyung-Wook
    • 마이크로전자및패키징학회지
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    • 제6권2호
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    • pp.13-21
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    • 1999
  • Flip chip assembly directly on organic boards offers miniaturization of package size as well as reduction in interconnection distances resulting in a high performance and cost-competitive Packaging method. This paper describes the investigation of alternative low cost flip-chip mounting processes using electroless Ni/Au bump and anisotropic conductive adhesives/films as an interconnection material on organic boards such as FR-4. As bumps for flip chip, electroless Ni/Au plating was performed and characterized in mechanical and metallurgical point of view. Effect of annealing on Ni bump characteristics informed that the formation of crystalline nickel with $Ni_3$P precipitation above $300^{\circ}C$ causes an increase of hardness and an increase of the intrinsic stress resulting in a reliability limitation. As an interconnection material, modified ACFs composed of nickel conductive fillers for electrical conductor and non-conductive inorganic fillers for modification of film properties such as coefficient of thermal expansion(CTE) and tensile strength were formulated for improved electrical and mechanical properties of ACF interconnection. The thermal fatigue life of ACA/F flip chip on organic board limited by the thermal expansion mismatch between the chip and the board could be increased by a modified ACA/F. Three ACF materials with different CTE values were prepared and bonded between Si chip and FR-4 board for the thermal strain measurement using moire interferometry. The thermal strain of ACF interconnection layer induced by temperature excursion of $80^{\circ}C$ was decreased with decreasing CTEs of ACF materials.

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