This paper deals with typical mechanical problems that are encountered in a solderless press-fit assembly process. First, the elastic-plastic properties of two types of press-fit pins and the friction coefficients of the pins in thin plated through holes are determined both experimentally and by three-dimensional finite element analysis. The elastic-plastic properties of the press-fit pins are determined by small-scale testing under three-point bending. The coefficients of friction of the pins in the through holes are successfully determined from the load-displacement relationships of the pins during press-fit assembly processes. The validity of the parameters that are determined is clarified by inserting the press-fit pins into holes of different diameters. By comparing the damaged areas of the printed circuit boards after assembly and the numerically obtained stress distributions, the failure stress of the boards is determined. Finally, both the retention force of the pins and the degree of damage to the printed circuit boards after assembly are predicted by numerical analysis.

1.
Scaminaci
,
J.
, Jr.
, 1977, “
Solderless Press-Fit Interconnections: A Mechanical Study of Solid and Compliant Contacts
,”
IEEE Trans. Manuf. Technol.
,
6
(
2
), pp.
23
30
.
2.
Goel
,
R. P.
, 1978, “
Analysis of Interface-Fit Pin Connection
,”
IEEE Trans. Compon., Hybrids, Manuf. Technol.
0148-6411,
1
(
3
), pp.
248
251
.
3.
Kanai
,
T.
,
Ando
,
Y.
, and
Inagaki
,
S.
, 1985, “
Design of a Compliant Press-Fit Pin Connection
,”
IEEE Trans. Compon., Hybrids, Manuf. Technol.
0148-6411,
8
(
1
), pp.
40
45
.
4.
Corman
,
N.
,
Myers
,
M.
, and
Charles
,
C.
, 2003, “
Friction Behavior of Press-Fit Applications: Test Apparatus and Methodology
,”
Proceedings of the 49th IEEE Holm Conference on Electrical Contacts
,
Washington, DC
, Sept. 8–10, pp.
38
44
.
5.
Tohmyoh
,
H.
,
Yamanobe
,
K.
,
Saka
,
M.
,
Utsunomiya
,
J.
,
Nakamura
,
T.
, and
Nakano
,
Y.
, 2006, “
Determination of Friction Coefficient of a Press-Fit Pin in Thin Plating
,”
JSME Int. J., Ser. A
1340-8046,
49
(
3
), pp.
363
369
.
6.
Tabor
,
D.
, 1959, “
Junction Growth in Metallic Friction: The Role of Combined Stresses and Surface Contamination
,”
Proc. R. Soc. London, Ser. A
1364-5021,
251
(
1266
), pp.
378
393
.
7.
Czichos
,
H.
, 1978,
Tribology: A Systems Approach to the Science and Technology of Friction, Lubrication, and Wear
,
Elsevier
,
Amsterdam
.
8.
Azzi
,
V. D.
, and
Tsai
,
S. W.
, 1965, “
Anisotropic Strength of Composites
,”
Exp. Mech.
0014-4851,
5
(
9
), pp.
283
288
.
9.
Amijima
,
S.
,
Fujii
,
T.
, and
Hamaguchi
,
M.
, 1991, “
Static and Fatigue Tests of a Woven Glass Fabric Composite Under Biaxial Tension-Torsion Loading
,”
Composites
0010-4361,
22
(
4
),
281
289
.
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