Dòng Nội dung
1
Building code requirements for structural concrete (ACI 318-11) and commentary / ACI Committee 318
MI, Farmington Hills : American Concrete Institute, 2011
503 pages. : illustrations ; 28 cm.
Ký hiệu phân loại (DDC): 693.54
Số bản sách: (1) Tài liệu số: (0)
2
Kết cấu bêtông ứng lực trước căng sau trong nhà nhiều tầng /Lê Thanh Huấn (Chủ biên), Nguyễn Hữu Việt, Nguyễn Tất Tâm.
Hà Nội :Xây dựng,2011.
165 tr. ;24 cm.
Ký hiệu phân loại (DDC): 691.3
Số bản sách: (10) Tài liệu số: (0)
3
Kết cấu bêtông ứng lực trước căng sau trong nhà nhiều tầng /Lê Thanh Huấn chủ biên, Nguyễn Hữu Việt, Nguyễn Tất Tâm.
Hà Nội : Xây dựng, 2017
165 tr. : minh hoạ ;24 cm.
Ký hiệu phân loại (DDC): 691.3
Nghiên cứu những vấn đề về tính toán, thiết kế, cấu tạo và thi công các kết cấu dầm, sàn nhà nhiều tầng theo công nghệ căng sau trên bê tông đổ tại chỗ
Số bản sách: (20) Tài liệu số: (0)
4
Reinforced concrete mechanics and design / James K. Wight
Upper Saddle River : Pearson, 2016
1166 pages. : illustrations ; 25 cm.
Ký hiệu phân loại (DDC): 624
Reinforced Concrete: Mechanics and Design uses the theory of reinforced concrete design to teach students the basic scientific and artistic principles of civil engineering. The text takes a topic often introduced at the advanced level and makes it accessible to all audiences by building a foundation with core engineering concepts.
Số bản sách: (0) Tài liệu số: (1)
5
Steel fiber reinforced concrete : behavior, modeling and design / Harvinder Singh
Singapore : Springer Verlag, Singapore, 2017
xi, 172 pages. : illustrations ; 25 cm.
Ký hiệu phân loại (DDC): 690
This book discusses design aspects of steel fiber-reinforced concrete (SFRC) members, including the behavior of the SFRC and its modeling. It also examines the effect of various parameters governing the response of SFRC members in detail. Unlike other publications available in the form of guidelines, which mainly describe design methods based on experimental results, it describes the basic concepts and principles of designing structural members using SFRC as a structural material, predominantly subjected to flexure and shear. Although applications to special structures, such as bridges, retaining walls, tanks and silos are not specifically covered, the fundamental design concepts remain the same and can easily be extended to these elements. It introduces the principles and related theories for predicting the role of steel fibers in reinforcing concrete members concisely and logically, and presents various material models to predict the response of SFRC members in detail. These are then gradually extended to develop an analytical flexural model for the analysis and design of SFRC members. The lack of such a discussion is a major hindrance to the adoption of SFRC as a structural material in routine design practice. This book helps users appraise the role of fiber as reinforcement in concrete members used alone and/or along with conventional rebars. Applications to singly and doubly reinforced beams and slabs are illustrated with examples, using both SFRC and conventional reinforced concrete as a structural material. The influence of the addition of steel fibers on various mechanical properties of the SFRC members is discussed in detail, which is invaluable in helping designers and engineers create optimum designs. Lastly, it describes the generally accepted methods for specifying the steel fibers at the site along with the SFRC mixing methods, storage and transport and explains in detail methods to validate the adopted design. This book is useful to practicing engineers, researchers, and students.
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