360R-06 Design of Slabs-on-Ground


R-60 ACI COMMITTEE REPORT



tải về 2.35 Mb.
Chế độ xem pdf
trang92/107
Chuyển đổi dữ liệu11.08.2022
Kích2.35 Mb.
#52863
1   ...   88   89   90   91   92   93   94   95   ...   107
Design of Slabs-on-Ground

360R-60
ACI COMMITTEE REPORT
Neville, A. M., 1996, Properties of Concrete, 4th Edition,
Pearson Education Ltd., Harlow, UK, pp. 490-495.
Nicholson, L. P., 1981, “How to Minimize Cracking and
Increase Strength of Slabs-on-Ground,” Concrete Construction,
V. 26, No. 9, Sept., pp. 739-741.
Packard, R. G., 1976, “Slab Thickness Design for Industrial
Concrete Floors on Grade,” ISI95.01D, Portland Cement
Association, Skokie, Ill.
Park, P., and Paulay, T., 1975, Reinforced Concrete Struc-
tures, John Wiley & Sons, New York, pp. 457-461.
Pawlowski, H.; Malinowski, K; and Wenander, H., 1975,
“Effect of Vacuum Treatment and Power Trowelling on
Concrete Wear Resistance,” Report No. 75:10, Chalmers
University of Technology, Gothenburg, Sweden, Dec., 14 pp.
Pichaumani, 1973, “Finite Element Analysis of Pavement
Structures Using AFPAV Code,” Air Force Technical Report
No. AFWL-TR-72-186, Kirtland Air Force Base, N. Mex.
Portland Cement Association (PCA), 1988, Design of Heavy
Industrial Concrete Pavements, IS234.01P, Skokie, Ill.
Portland Cement Association (PCA), 1967, Volume
Changes of Concrete, 15018.02T, Skokie, Ill.
Portland Cement Association (PCA), 1988, Design of
Heavy Industrial Concrete Pavements, IS234.01P, Skokie, Ill.
Portland Cement Association (PCA), 2001, “Concrete
Floors on Ground,” Engineering Bulletin EB075, 3rd
Edition, Skokie, Ill.
Post-Tensioning Institute (PTI), 1996, Design and
Construction of Post-Tensioned Slabs-on-Ground, 2nd
Edition, Phoenix, Ariz.
Post-Tensioning Institute (PTI), 2000, “Specifications
for Unbonded Single Strand Tendons,” 2nd Edition,
Phoenix, Ariz.
Post-Tensioning Institute (PTI), 2004, Design and
Construction of Post-Tensioned Slabs-on-Ground, 3rd
Edition, Phoenix, Ariz.
Post-Tensioning Institute (PTI), 2006, Post-Tensioning
Manual, 6th Edition, Phoenix, Ariz.
Pawlowski, H.; Malinowski, K.; and Wenander, H., 1975,
“Effect of Vacuum Treatment and Power Trowelling on
Concrete Wear Resistance,” Report No. 75:10, Chalmers
University of Technology, Gothenburg, Sweden, Dec., 14 pp.
Ramakrishnan, V., and Josifek, C., 1987, “Performance
Characteristics and Flexural Fatigue Strength on Concrete
Steel Fiber Composites,” Proceedings of the International
Symposium on Fibre Reinforced Concrete, Madras, India,
Dec., pp. 2.73-2.84.
Ramakrishnan, V.; Oberling, G.; and Tatnall, P., 1987,
“Flexural Fatigue Strength of Steel Fiber Reinforced
Concrete,” Fiber Reinforced Concrete Properties and Appli-
cations, SP-105, S. P. Shah and G. B. Batson, eds., American
Concrete Institute, Farmington Hills, Mich., pp. 225-245.
Rice, P. F., 1957, “Design of Concrete Floors on Ground
for Warehouse Loadings,” ACI J
OURNAL
, Proceedings V. 54,
Aug., pp. 105-113.
Ringo, B. C., 1985, “Consideration in Planning and
Designing an Industrial Floor,” Concrete Construction,
Addison, Ill.
Ringo, B. C., 1986, “Design Workshop for Industrial
Slabs-on-Ground,” Seminar Booklet, World of Concrete,
Concrete Construction Publications, Addison, Ill.
Ringo, B. C., and Anderson, R. B., 1992, Designing Floor
Slabs-on-Ground: Step-by-Step Procedures, Sample Solutions,
and Commentary, The Aberdeen Group, Addison, Ill.
Robins, P. J., and Calderwood, R. W., 1978, “Explosive
Testing of Fibre-Reinforced Concrete,” Concrete (London),
V. 12, No. 1, Jan., pp. 26-28.
Russell, H. G., 1973, “Design of Shrinkage-Compensating
Concrete Slabs,” Klein Symposium on Expansive Cement
Concretes, SP-38, American Concrete Institute, Farmington
Hills, Mich., pp. 193-226. (also Research and Development
Bulletin RD034.01D, Portland Cement Association.)
Schrader, E. K., 1987, “A Proposed Solution to Cracking
by Dowels,” Concrete Construction, Dec., pp. 1051-1053.
Schrader, E. K., 1991, “A Solution to Cracking and
Stresses Caused by Dowels and Tie Bars,” Concrete Interna-
tional, V. 13, No. 7, July, pp. 40-45.
Shashaani, G.; Vahman, J.; and Valdez, E., 2000, “24
Steps to Successful Floor Slabs,” Concrete International, V. 22,
No. 1, Jan., pp. 45-50.
Spears, R., and Panarese, W. C., 1983, “Concrete Floors
on Ground,” EB075.02D, (Revised 1990), 2nd Edition, Port-
land Cement Association, Skokie, Ill.
Stevens, D. J.; Banthia, N.; Gopalaratnam, V. S.; and
Tatnall, P. C., eds., 1995, Testing of Fiber Reinforced
Concrete, SP-155, American Concrete Institute, Farmington
Hills, Mich., 254 pp.
Suaris, W., and Shah, S. P., 1981, “Test Method for Impact
Resistance of Fiber Reinforced Concrete,” Fiber Reinforced
Concrete—International Symposium, SP-81, G. C. Hoff, ed.
American Concrete Institute, Farmington Hills, Mich.,
pp. 247-260.
Thompson, H. P., and Anderson, R. B., 1968, “Analysis of
a Prestressed Post-Tensioned Slab Using the Kelly System,”
H. Platt Thompson Engineers, Jan. 31.
Timms, A. G., 1964, “Evaluating Subgrade Friction
Reducing Mediums for Rigid Pavements,” Report No. 60,
Highway Research Board, pp. 48-59.
Tremper, B., and Spellman, D. C., 1963, “Shrinkage of
Concrete—Comparison of Laboratory and Field Perfor-
mance,” Highway Research Record No. 3, pp. 30-61.
Trottier, J. F.; Morgan, D. R.; and Forgeron, D., 1997,
“The Influence of Fiber Type: Fiber Reinforced Concrete for
Exterior Slabs-on-Grade, Part I,” Concrete International,
V. 19, No. 6, June, pp. 35-39.
Walker, W. W., and Holland, J. A., 1998, “Plate Dowels
for Slabs-on-Ground,” Concrete International, V. 20, No. 7,
July, pp. 32-35.
Walker, W. W. and Holland, J. A., 1999, “The First
Commandment for Floor Slabs: Thou Shalt Not Curl Nor
Crack…(Hopefully),” Concrete International, V. 21, No. 1,
Jan., pp. 47.
Walker, W. W., and Holland, J. A., 2001, “Design of Unrein-
forced Slabs-on-Ground Made Easy,” Concrete International,
V. 23, No. 5, May, pp. 37-42.



tải về 2.35 Mb.

Chia sẻ với bạn bè của bạn:
1   ...   88   89   90   91   92   93   94   95   ...   107




Cơ sở dữ liệu được bảo vệ bởi bản quyền ©hocday.com 2024
được sử dụng cho việc quản lý

    Quê hương