Wood Handbook, Wood as an Engineering Material

(Wang) #1

Chapter 8 Fastenings


Literature Cited


Johansen, K.W. 1949. Theory of timber connections. Zurich,
Switzerland: Publication of International Association for
Bridge and Structural Engineering. 9: 249–262.


Additional References


AF&PA. 2005. National design specification for wood con-
struction. Washington, DC: American Forest & Paper As-
sociation.


Anderson, L.O. 1959. Nailing better wood boxes and crates.
Agric. Handb. 160. Washington, DC: U.S. Department of
Agriculture.


Anderson, L.O. 1970. Wood-frame house construction.
Agric. Handb. 73 (rev.). Washington, DC: U.S. Department
of Agriculture.


ASCE. 1996. Mechanical connections in wood structures.
Washington, DC: American Society of Civil Engineers.


ASTM. [Current edition]. West Conshohocken, PA:
American Society for Testing and Materials.


ASTM D 1761–88. Standard test methods for mechanical
fasteners in wood.


ASTM D 2555–96. Standard methods for establishing clear
wood strength values.


ASTM D 5652–95. Standard test methods for bolted con-
nections in wood and wood-base products.


ASTM D 7147–05 Standard specifications for testing and
establishing allowable loads of joist hangers.


ASTM F 547. Standard terminology of nails for use with
wood and wood-base materials.


ASTM F 1575–03 Standard test method for determining
bending yield moment of nails.


ASTM F 1667. Specification for driven fasteners: nails,
spiker, staples.


Cramer, C.O. 1968. Load distribution in multiple-bolt ten-
sion joints. Proc. Pap. 5939. Journal of Structural Division,
American Society of Civil Engineers. 94(ST5): 1101–1117.


Doyle, D.V.; Scholten, J.A. 1963. Performance of bolted
joints in Douglas-fir. Res. Pap. FPL 2. Madison, WI: U.S.
Department of Agriculture, Forest Service, Forest Products
Laboratory.


Eckelman, C.A. 1975. Screw holding performance in
hardwoods and particleboard. Forest Products Journal.
25(6): 30–35.


Fairchild, I.J. 1926. Holding power of wood screws. Tech-
nol. Pap. 319. Washington, DC: U.S. National Bureau of
Standards.


Folz, B.; Filiatrault, A. 2001. Cyclic analysis of wood shear
walls. ASCE Journal of Structural Engineering. 127(4):
433–441.
FPL. 1962. General observations on the nailing of wood.
FPL Tech. Note 243. Madison, WI: U.S. Department of
Agriculture, Forest Service, Forest Products Laboratory.
FPL. 1964. Nailing dense hardwoods. Research Note FPL–


  1. Madison, WI: U.S. Department of Agriculture, Forest
    Service, Forest Products Laboratory.
    FPL. 1965. Nail withdrawal resistance of American woods.
    Res. Note FPL–RN–033. Madison, WI: U.S. Department of
    Agriculture, Forest Service, Forest Products Laboratory.
    Goodell, H.R.; Philipps, R.S. 1944. Bolt-bearing strength
    of wood and modified wood: effect of different methods of
    drilling bolt holes in wood and plywood. FPL Report 1523.
    Madison, WI: U.S. Department of Agriculture, Forest Ser-
    vice, Forest Products Laboratory.
    Jordan, C.A. 1963. Response of timber joints with metal
    fasteners to lateral impact loads. FPL Rep. 2263. Madison,
    WI: U.S. Department Agriculture, Forest Service, Forest
    Products Laboratory.
    Kuenzi, E.W. 1951. Theoretical design of a nailed or bolted
    joint under lateral load. FPL Rep. 1951. Madison, WI: U.S.
    Department of Agriculture, Forest Service, Forest Products
    Laboratory.
    Kurtenacker, R.S. 1965. Performance of container fasteners
    subjected to static and dynamic withdrawal. Res. Pap. FPL

  2. Madison, WI: U.S. Department of Agriculture,
    Forest Service, Forest Products Laboratory.
    Lantos, G. 1969. Load distribution in a row of fasteners sub-
    jected to lateral load. Madison, WI: Wood Science.
    1(3): 129–136.
    Markwardt, L.J. 1952. How surface condition of nails af-
    fects their holding power in wood. FPL Rep. D1927. Madi-
    son, WI: U.S. Department of Agriculture, Forest Service,
    Forest Products Laboratory.
    Markwardt, L.J.; Gahagan, J.M. 1930. Effect of nail points
    on resistance to withdrawal. FPL Rep. 1226. Madison, WI:
    U.S. Department of Agriculture, Forest Service, Forest
    Products Laboratory.
    Markwardt, L.J.; Gahagan, J.M. 1952. Slant driving of nails.
    Does it pay? Packing and Shipping. 56(10): 7–9,23,25.
    McLain, T.E. 1975. Curvilinear load-slip relations in
    laterally-loaded nailed joints. Fort Collins, CO: Department
    of Forestry and Wood Science, Colorado State University.
    Ph.D. dissertation.
    Newlin, J.A.; Gahagan, J.M. 1938. Lag screw joints: their
    behavior and design. Tech. Bull. 597. Washington, DC:
    U.S. Department of Agriculture.

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