Female NPT Thread, 600 CWP (psig), Cold Non-Shock. 150 psig Saturated Steam. (See referenced P/T charts)
Vacuum Service to 29 inches Hg.
MSS SP-110 Compliant.
FEATU R ES
• Two-piece body
• Reinforced seats
• Blowout-proof stem design
• Adjustable packing gland
STANDARD MATERIAL LIST
PARTMATERIAL
Lever and gripSteel, zinc plated w/vinyl
1
Stem packingMPTFE
2
Stem bearingRPTFE
3
BallB16 Brass, chrome plated
4
Seat (2)RPTFE (1/4” to 3”); TFM (4”)
5
Retainer
6
Gland nutB16 Brass
7
StemB16 Brass
8
Lever nutSteel, zinc plated
9
Body sealPTFE (1 -1/4” to 4”)
10
BodyB584-C84400
11
B16 Brass (1/4” to 1”)
B584-C84400 (1-1/4” to 4”)
DIMENSIONS
PART NO.SIZEABCDEWT.
70-101-011/4 ”0.371.032.061.753.870.60
70-102-013/8”0.371.032.061.753.870.56
70-103-011/2”0.501.122.171.753.870.63
70-104-013/4 ”0.681.503.002.124.871.39
70-105-011”0.871.683.372.254.871.72
70-106-011-1/4 ”1.002.004.002.625.503.26
70-107-011-1/2”1.252.184.373.068.004.61
70-108-012”1.502.344.683.258.006.06
70-109-01A2-1/2”2.003.126.253.728.001 7.25
70-100-013”2.503.376.754.128.0018.60
70-10A-014”3.123.697. 375.259.9425.50
VAR I ATIONS AVAI L AB LE
• 70-140 Series (316 SS Ball & Stem)
• 70-190 Series (Locked Retainer)
OPTIONS AVAILABLE
(MORE INFORMATION IN SECTION J)
• Minimum quantities apply
• To specify an option, replace the “0 1” sta ndard sux with th e sux of the option.
• To specify multiple options, replace the “ 01” sux with the d esire d suxes i n the
numer ical order shown below. NOT E: Not all suxes c an be combined to gether.
(SUFFIX)OPTIONSIZES
-01Standard ConfigurationAll
-P -01 -BSPP (Parallel) Thread Connection1/4” to 3”
-T -01-BSPT (Tapered) Thread Connection1/4” to 3”
-02-Stem GroundedAll
-04-2-1/4” Stem Extension (Carbon Steel, Zinc Plated)1/4” to 3”
-05-Plain Ball1/4” to 3”
-07-Steel Tee Handle1/4” to 2”
-08-90º Reversed Stem1/4” to 3”
-10-SS Lever & Nut1/4” to 3”
-11-Therma-Seal™ Insulating Tee Handle1/4” to 2”
-14-Side Vented Ball (Uni-Directional)All
-15-Wheel Handle, Steel1/4” to 2”
-16-Chain Lever - Vertical 3/4” to 2”
-17-Rough Chrome Plated - Bronze Valves1/4” to 3”
-21-UHMWPE Trim (Non-PTFE)1/4” to 3”
-24-Graphite Packing1/4” to 3”
-27-SS Latch- Lock Lever & NutAll
-30-Cam-Lock and Grounded1/4” to 2”
-32-SS Tee Handle & Nut1/4” to 2”
-35-PTFE Trim1/4” to 3”
-36-SS Hi-Rise Round Handle, SS Nut1/4” to 2”
-39-SS Hi-Rise Locking Wheel Handle, SS Nut1/4” to 2”
-40-Cyl-Loc and Grounded1/4” to 2”
-41-Automatic Drain (+50°F to 200°F limit. 125 psig max.)1/4” to 2”
-45-Less Lever & Nut1/4” to 3”
-46-Latch Lock Lever - Lock in Closed Position Only1/4” to 3”
-47-SS Oval Latch-Lock Handle & Nut1/4” to 2”
-48-SS Oval Handle (No Latch) & Nut1/4” to 2”
-49-No Lubrication. Assembled Dry.All
-50-2-1/4” CS Locking Stem Extension1/4” to 3”
-56-Multifill Seats & Packing1/4” to 3”
-57-Oxygen CleanedAll
-58-Chain Lever - Horizontal3/4” to 2”
-60-Static Grounded Ball & Stem1/4” to 3”
-63-NPT x Solder/Socket Weld3/8” to 4”
-64-
-92-Balancing Stop1/4” to 3”
-94-2-1/4” Stem Extension, Balancing Stop1/4” to 3”
Customer Service (704) 841-6000industrial.apollovalves.comA-3
FLOW DATA
FLOW DATA
The listed Cv “factors” are derived from actual flow testing, at Apollo’s Pageland, South Carolina factory. These tests were completed using standard
“o the shelf” valves with no special preparation and utilizing standard schedule 40 pipe. It should be understood that these factors are for the valve
only and also include the connection configuration. The flow testing is done utilizing water as a fluid media and is a direct statement of the gallons of
water flowed per minute with a 1 psig pressure dierential across the valve/connection unit. Line pressure is not a factor. Because the C
formula can be used to estimate flow of most media for valve sizing.
is a factor, the
v
FLOW OF LIQUID
Q = C
or ∆P =
V
(Q)2 (SpGr)
WHERE:
• Q = Flow in US gpm
• ∆P = Pressure drop (psig)
• SpGr = Specific gravity at flowing temperature
• C
= Valve constant
v
√
(C
∆P
SpGr
2
)
v
FLOW OF GAS
Q = 1360 C
or ∆P =
V
5.4 x 10
(∆P) (P
(SpGr) (T)
√
-7
(SpGr) (T) (Q)
2)
(Cv)2 (P2)
WHERE:
• Q = Flow in SCFH
• ∆P = Pressure drop (psig)
• SpGr = Specific gravity (based on air = 1.0)
• P2 = Outlet pressure–psia (psig + 14.7)
• T = (temp. °F + 460)
• C
= Valve constant
v
CAUTION: The gas equation shown, is valid at very low pressure drop ratios.
The gas equation is NOT valid when the ratio of pressure drop (∆P) to inlet
NOTE: Only use the gas equation shown if (P1 -P2)/P1 is less than 0.02.