Design
D - 31
Notes‚
1.These are short term allowable pull out loads for bolts embedded
in as shown in the diagram above.
2.The concrete design characteristic strength is taken to be
F
C
=17.6N/mm
2
.
3.When the dimensions differ from the above diagram, or if the
concrete design characteristic strength differs, then the pull out
load may be calculated in accordance with the formulae for bolts
on a strong foundation, on the left. However, the allowable pull
out strength of one bolt may not exceed 11,760N.
4.It is desirable that ‚L 6d. The parts indicated by "-" in the above
table are not desirable.
5.If type 1 or type 2 lightweight concrete is used, allow 10% margin.
The short term allowable pull out load of a bolt is obtained from the
following formula. However, if the shear stress in the bolt exceeds
44.1N/mm
2
(for SS400), bolt strength verification must be carried out,
and verification that the allowable tensile stresses are not exceeded
must also be carried out.
Ta=
π
. d
.
.
fc
Here,
Ta : Foundation bolt short term allowable pull out load (N)
d : Foundation bolt nom. Dia. (mm)
l : Foundation bolt effective embedded length (mm)
(the length from 20mm below the surface of the concrete
foundation)
fc : Short term allowable bond stress in the reinforced concrete
(From "Standards for RC structures design", published by the
Architectural Institute of Japan)
Fc: Concrete design characteristic strength (N/mm
2
)
(Normally, 17.6N/mm
2
is taken.)
For foundation bolts positioned in the corner or near the edge of the
foundation, the short term allowable pull out strength shall be taken to
be the minimum of the values from formulae (b) below and (a).
Ta=6
π
. C
2
. p ...(b)
Here,
C : Distance from the center of the foundation bolt to the edge of the
foundation (mm).
However,
C 4d, and
p: Correction factor for the concrete design characteristic strength
Notes‚
It is desirable that L 6d (d=nominal diameter of foundation bolt)
If type 1 or type 2 lightweight concrete is used, allow 10% margin.
Installation location: a) Solid foundations
b) Upper surface of normal floor slab
c) Bottom surface of normal ceiling slab
, concrete wall surface
(Notes)
1.These are long term allowable pull out loads for bolts embedded in
as shown in the diagram above.
2.The concrete design characteristic strength is taken to be
F
C
=17.6N/mm
2
.
3.When the dimensions differ from the above diagram, or if the
concrete design characteristic strength differs, then the pull out
load may be calculated in accordance with the formulae for bolts
on a strong foundation, on the left, and divide the result by 1.5 to
obtain the allowable pull out load. However, for foundation bolts
provided in the bottom surface of ceiling slabs and on the surface
of the concrete walls, the allowable pull out load may not exceed
7,840N per bolt.
4.It is desirable that ‚ L 6d. The parts indicated by "-" in the above
table are not desirable.
5.It is necessary to investigate the short term pull out strength of
normal supports due to an earthquake provided in the bottom
surface of ceiling slabs and on concrete walls for supporting heavy
objects. 6.For this short term pull out load, see Item b) short term
pull out loads.
6.If type 1 or type 2 lightweight concrete is used, allow 10% margin.
fc= fc
100
9
C - 50mm
2
d
P= Min , 0.49 +
6
1
30
Fc
100
Fc
(2) Allowable pull out load of embedded L type and LA type bolts
Short term pull out load (N)
Long term allowable pull out load (N)
Mortar finish
7. Center of gravity position and earthquake resistant design
Содержание SGP-E120J2GU2
Страница 19: ...Outdoor Unit B 14 290 Type Performance characteristics of SGP E90J2GU2 5 Performance characteristics ...
Страница 20: ...Outdoor Unit B 15 3120 Type Performance characteristics of SGP E120J2GU2 5 Performance characteristics ...
Страница 21: ...Outdoor Unit B 16 4150 Type Performance characteristics of SGP E150J2GU2 5 Performance characteristics ...
Страница 22: ...Outdoor Unit B 17 5190 Type Performance characteristics of SGP E190J2GU2 5 Performance characteristics ...
Страница 49: ...Design D 5 2 Operating temperature ranges for heating and cooling Cooling Heating ...
Страница 87: ...Design D 43 8 Salt resistant specification ...
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Страница 124: ...Construction E 37 4 Outdoor unit installation and construction ...
Страница 127: ...Construction E 40 5 Commissioning ...
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Страница 135: ...Construction E 48 5 Commissioning ...
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Страница 137: ...Construction E 50 5 Commissioning ...
Страница 138: ...Construction E 51 5 Commissioning ...
Страница 139: ...Construction E 52 5 Commissioning ...
Страница 140: ...Construction E 53 5 Commissioning ...
Страница 141: ...Construction E 54 5 Commissioning ...
Страница 142: ...Construction E 55 5 Commissioning ...
Страница 143: ...Separately Contents 1 Parts for the outdoor unit 1 Exhaust extension kit F 2 F 1 ...
Страница 150: ...Periodicinspection G 3 1 Periodic maintenance contract 70 90 Type 120 150 190 Type ...
Страница 154: ...Water heat exchange unit H 4 2 System characteristics Water heat exchanger unit connection limitations ...
Страница 155: ...Water heat exchange unit H 5 3 External view ...
Страница 158: ...Water heat exchange unit H 8 4 Specification 2 External dimension diagram ...
Страница 160: ...Water heat exchange unit H 10 4 Specification 4 Power characteristics 1Performance characteristics graph ...
Страница 161: ...Water heat exchange unit H 11 4 Specification ...