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Một phần của tài liệu LUẬN VĂN THẠC SĨ: NGHIÊN CỨU NÂNG CAO CHẤT LƯỢNG BÊ TÔNG HẠT MỊN BẰNG CỐT SỢI THÉP HỖN HỢP (Trang 90 - 96)

Kết quả nghiên cứu ảnh hưởng của thành phần hạt mịn đến tính chất của bê tơng cốt sợi cĩ thể dùng để áp dụng cho các kết cấu tấm mỏng, cơng trình giao thơng tại địa phương. Nghiên cứu sẽ triển khai và đánh giá khả năng ứng dụng cho các cơng trình cần khả năng chịu va đập và cần khả năng chống uốn cao.

TÀI LIU THAM KHO

[1]. Nguyễn Văn Chánh và Trần Văn Miền (2010), “Nghiên cứu chế tạo bê

tơng cốt sợi trên nền vật liệu xây địa phương”, Hội thảo KHCN 11-ĐHBK.

[2]. Hollis N. Walker, D. Stephen Lane, and Paul E. Stutzman, (2004),

Petrographic Methods of Examining Hardened Concrete: A Petrographic Manual, FHWA-HRT-04-150, America.

[3]. Sounthararajan VallarasuManoharan and Sivakumar Anandan, (2014),

Steel Fibre Reinforcing Characteristics on the Size Reduction of Fly Ash

Based Concrete, Advances in Civil Engineering Volume 2014, Article ID

217473, 11 pages.

[4]. Romualdi, J.P. & Batson, G.B. (1963), “Mechanics of crack arrest in concrete M. Tech.”, Proceedings of ASCE, Vol-89, EM 3, June 1963, pp. 147-168.

[5]. Swamy, R.N. (1974), “Fibre reinforced concrete: Mechanics, properties, and applications”, Indian Concrete Journal, January 1974, pp. 7-16.

[6]. Charles, H., Henage & Doberty, T.J. (1976), “Fibrous concrete”, Journal

of ASCE, Structural Division, Vol-2, No.S T.1, Jan. 1976, pp.177-188.

[7]. Naaman, A.E. and Shah, S.P. (1976), “Pull Out Mechanism in Steel- Fibre Reinforced Concrete”, Proceedings ASCE, Vol.102, S T.8, August 1976, pp. 1537-1548.

[8]. Hughes, B.P., and Fattuhi, N.I. (1976), “The Steel Fibre- Reinforced Concrete”, Magazine of Concrete Research, Vol.28, No.96. Sept. 1976, pp. 157-161.

[9]. Indian Krishna Raju, N. et al. (1977), “Compressive strength and Bearing strength of steel fibre reinforced concrete”, Indian Concrete Journal, June 1977, pp.183-188

[10]. Ramakrishanan, V. et al. (1980), “A comparative evaluation of concrete reinforced with straight steel fibres and fibres with deformed ends glued together in to bundles”, ACI journal, May - June 1980, pp. 135-143.

[11]. Kukreja, C.B., Kaushik, S.K., Kanchi M.B., and Jain, O.P. (1980), “Flexural characteristics of steel fibre reinforced concrete”, Concrete

Journal, July 1980, pp.184-188.

[12]. Narayanan, R., & Kareem-Palanjian., A.S. (1982), “Factors Influencing the workability of steel fibre reinforced concrete part-1”, Indian Concrete

Journal, October 1982, pp. 45- 48.

[13]. Ghosh, S.et al. (1989), “Tensile strength of steel fibre reinforced concrete”, Journal of the Institution of Engineers (India), Vol.69, January 1989, pp. 222-227.

[14]. Gopalaratnam, V.S., & Shah, S.P. (1986), “Properties of steel fibre reinforced concrete subjected to impact loading”, ACI Journal, January- February 1986, pp. 117-126.

[15]. Nagarkar, P.K., Tambe, S.K. and Pazare, D.G. (1987), “Study of fibre reinforced concrete”, Proceedings of the International symposium on fibre

reinforced concrete, Dec. 16-19, 1987, Madras, India, pp.2.131-2.141.

[16]. H.Nakagawa, Suenaga T., and S. Akihama. (1989), “Mechanical properties of various types of fibre reinforced cement and concrete”, paper presented at International conference held on Sept. 18-20, University of wales college of Cardiff; Ed. By R.N.Swamy and B.Barr, Elsevierapplied science, London, 1989, pp.523-532.

[17]. Saluja, S.K. et al. (1992), “Compressive strength of fibrous concrete”,

Indian Concrete Journal, February 1992, pp.99-102.

[18]. P.N. Balaguru and S.P. Shah. “Fibre reinforced cement composites”, Mc- Graw-Hill, New York, 1992, Xii, 530-pp.

[19]. Faisal, Wafa & Samir, et al. (1992), “Mechanical properties of high strength fibre reinforced concrete”, ACI Materials Journal, September - October 1992, pp. 449-454.

[20]. Agarwal, R., Singh, A.K. & Singhal, D. (1996), “Effect of fibre reinforcing index on compressive and bond strength of steel fibre reinforced concrete”, Journal of the Institution of Engineers (India), Vol. 77, May 1996, pp. 37-40.

[21]. Singh. A.P. & Singhal, D. (1998), “Effect of fibre shapes on compressive and bond strength of steel reinforced concrete”, Journal of the Institution of

Engineers (India), Vol 79, December 1998, pp. 136-139.

[22]. Bindiganavalie V., et al. (1002), “Some Studies on the Impact Response of Fibre Reinforced Concrete”, Indian Concrete Institute Journal, October- December, 2002 pp. 23-28.

[23]. O.Kayali, M.N. Haque, B.Zhu (2003) “Some characteristics of high strength fibre reinforced light weight aggregate concrete”, Cement &

Concrete Composites- 25, 2003, pp. 207 – 213.

[24]. Kolhapure. B.K. (2006), “Study of Recron 3S fibre –reinforced concrete with super plasticizer with reduction in cement”, Proceedings of the National Conference on Concrete Technology for the Future at Kongu Engineering

College, Erode, pp. 449-455.

[25]. A.M. Shende1, A.M. Pande2, M. Gulfam Pathan3 (2012), “Experimental Study on Steel Fiber Reinforced Concrete for M-40 Grade”, International

Refereed Journal of Engineering and Science (IRJES) ISSN (Online) 2319-

183X, (Print) 2319-1821 Volume 1, Issue 1 (September 2012), pp. 043-048. [26]. Patil Shweta1and Rupali Kavilkar2 (2014), “Study of Flexural Strength

in Steel Fibre Reinforced Concrete”, Website: www.ijrdet.com (ISSN 2347 - 6435 (Online) Vol. 2, Issue 5, May 2014, 13.

[27]. Zemei Wua, b, Caijun Shi a,c,, Wen He a, Linmei (2016) “Effects of steel fiber content and shape on mechanical properties of ultra high performance concrete”, Construction and Building Materials, Vol. 103, pp. 8-14.

[28]. Juan Navarro-Gregori, Eduardo J. Mezquida-Alcaraz, Pedro Serna-Ros, Javier Echegaray-Oviedo (2016), “Experimental study on the steel-fibre contribution to concrete shear behavior”, Construction and Building

Materials, Vol. 112, pp. 100-111.

[29]. Yaghoub Mohammadi & Kaushik, S.K. (2003), “Investigation on mechanical properties of steel fibre reinforced concrete with mixed aspect ratio of fibres”, Journal of Ferrocement, Vol. 33, No.1, January 2003, pp.1- 14.

[30]. Vinod B Shikhare and L. G. Kalurkar (2013), “Effect of Different Types of Steel Fibers with Metakaolin & Fly Ash on Mechanical Properties of High Strength Concrete”. International Journal of Civil Engineering and

Technology (IJCIET), Vol. 4, No.3, 2013, pp.73-79.

[31]. Peter H.Bischoff (2003), “Tension stiffening and cracking of steel fibre reinforced concrete”, Journal of Materials in Civil Engineering, ASCE, March / April, 2003.

[32]. I. Siva Kishore and Ch. Mallika Chowdary (2016), “Influence of Steel Fibers as Admix in Normal Concrete Mix”. International Journal of Civil

Engineering and Technology (IJCIET), Vol. 7, No. 1, 2016, pp.93-103.

[33]. F.B.A. Beshara, I.G. Shaaban and T.S. Mustafa (2009), “Nominal Flexural Strength of High Strength Fiber Reinforced CConcrete Beams”,

11th Arab Structural Engineering Conference, 25-27 October 2009.

[34]. Johnston C.D. (1996), “Proportioning, mixing and placement of fibre- reinforced cements and concretes, Production Methods and Workability of Concrete”, Edited by Bartos, Marrs and Cleland, E&FN Spon, London, (1996) pp. 155-179.

[35]. Sini Pavithran, D. Elavarasi and Dr.K.Saravana Raja Mohan (2015), “Study on Flexural Behaviour of Fly AshBased Slurry Infiltrated Fibrous”,

International Journal of ChemTech Research CODEN (USA): IJCRGG

ISSN: 0974-4290 Vol.8, No.2, pp 661-668.

[36]. Annadurai1* and Ravichandran2 (2015), “Study on Strength Prediction of Hybrid Fiber Reinforced HighStrength Concrete”, International Journal

of ChemTech Research CODEN (USA): IJCRGG ISSN: 0974- 4290 Vol.8,

No.12 pp 675-681.

[37]. Elavarasi.D1* and Saravana Raja Mohan.K1 (2015), “Study on Structural behaviour of High Strength SteelFibre Reinforced Concrete (HS-SFRC) block pavement”, International Journal of ChemTech Research CODEN (USA): IJCRGG ISSN: 0974-4290 Vol.7, No.4, pp 1790-1794.

[38]. S.S.Vivek* and G.Dhinakaran (2015), “Study on Effect of Silica Fume in Flow Properties and Compressive Strength of Self Compacting Concrete”,

International Journal of ChemTech Research, CODEN (USA): IJCRGG

ISSN: 0974-4290 Vol.8, No.1, pp 01-05.

[39]. P. Bhuvaneshwari*, S.Vijay mannaar, and K. SaravanaRajaMohan (2015), “Study on Numerical Analysis of Strengthening of Fire Damaged RC columns using GFRP and ppFibre based Cementitious Composites”,

International Journal of ChemTech Research, CODEN (USA): IJCRGG

ISSN: 0974-4290. Vol 8, No.3, pp 1296-1303.

[40]. Hedda Vikan, (2007), Concrete workability and fiber content, Sintef report, project 3D005920, Norway.

[41]. GS. Phạm Duy Hữu và cộng sự, (2008), “Betong cường độ cao và chất

lượng cao”, Hà Nội.

[42]. GS.TS. Nguyễn Viết Trung (2005), “Bê tơng cốt sợi thép”, Hà Nội: NXB Xây Dựng.

[43]. Trần Bá Việt (2005), “Nghiên cứu chế tạo bê tơng cốt sợi thép phân

[44]. Nguyễn Thanh Bình và Trần Bá Việt (2006), “Ảnh Hưởng của sợi thép

phân tán đến tính chất của bê tơng mác cao trong điều kiện khí hậu nĩng ẩm Việt Nam”, Viện Khoa Học- Cơng Nghệ Xây Dựng.

[45]. Nguyễn Thanh Bình (2007), Nghiên cứu chế tạo bê tơng cốt sợi thép

cường độ chịu uốn cao trong điều kiện Việt Nam”, Luận án TSKT, Viện KHCN Xây dựng, Hà Nội.

[46]. Trần Bá Việt (2015), “Bê tơng cốt sợi hỗn hợp: tính năng cao phù hợp

với khí hậu Việt Nam”, Đề tài NCKH, Viện Khoa Học- Cơng Nghệ Xây

Một phần của tài liệu LUẬN VĂN THẠC SĨ: NGHIÊN CỨU NÂNG CAO CHẤT LƯỢNG BÊ TÔNG HẠT MỊN BẰNG CỐT SỢI THÉP HỖN HỢP (Trang 90 - 96)

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