CHSG32-PS CHSG40-PS CHSG50-PS CHSG63-PS CHSG80-PS CHSG100-PS Seal kit consists of items @1 to @6 and #0, and can be ordered by using the seal kit number for each bore size. 346 CHSG Series ISO Standard Hydraulic Cylinder 16 MPa Dimensions Basic: CHSGB Z + Stroke PJ + Stroke MM J GB Y 2 x RcP GA CHQ CHK D E CHN V V CHM F K A MA G Air release C Cushion valve NB NA SS CHS CHS B ZZ + Stroke
PS Applied pressure error Supply pressure is below the minimum regulating pressure.
MBB50-PS MBB50-PS-W Cushion ring nut 20 Chromium molybdenum steel Quench hard chrome plated MBB63-PS MBB63-PS-W Hexagon socket head cap screw 21 Chromium molybdenum steel Black zinc chromated MBB80-PS MBB80-PS-W Rubber cap 22 Chloroprene rubber MBB100-PS MBB100-PS-W Cap A 23A Black coated Aluminum casting The seal kits consist of items #0, #1, #2, #4 and #6.
CV3N40-PS CV3N50-PS CV3N63-PS CV3N80-PS CV3N100-PS Data Contents Set of nos. above @1, @2, @4, @5, @7, @8 Rod retracted when energized (2) Rod extended when energized (1) No. of solenoids Single No. Description Seal kit includes @1, @2, @4, @5, @7, @8. Order the seal kit, based on each bore size. (The parts indicated with numbers @3 and @6 are not replaceable.)
CGIA20-PS CGIA25-PS CGIA32-PS CGIA40-PS CGIA50-PS Contents Matt nickel plated Matt nickel plated Set of above $1, $2, $3, $4 and $5. Note 1) Common with cushion ring A: Except standard 20 and 25 Note 2) Common with cushion packing A: Except standard 20 and 25 Seal kit includes rod seal $1, piston seal $2, tube gasket $3, valve seal $4 and gasket for valve retainer $5.
Determination of load's kinetic energy (E) bore size E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 8-16-8.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 8-16-8.)
Drain port TS PS Temp. sensor (Ref. suction Compressor Refrigerating circuit Circulating fluid circuit Fig. 8-3 Flow diagram(HRS100/150-A-20/40/46-) 8.3 Flow diagram HRS Series 8-10 HRX-OM-S004 Chapter 8 Documents 8.3.2 HRS100/150-W-20/40/46Facility water outlet port Over flow port Dryer Press. sensor Temp. sensor Automatic fluid-fill port PS Water-cooled (Ref. high press.)
8 Nickel plated * * * * Replacement Parts: Seal Kits Bore (mm) Contents Kit No. 32 40 50 63 80 100 MBQ32-PS MBQ40-PS MBQ50-PS MBQ63-PS MBQ80-PS MBQ100-PS Set of the No. !3, !4, !5, and !
Applied unit Contents 8 GR-S-005 (5 g) MXP8-PS 10 GR-S-010 (10 g) MXP10-PS Guide unit 2 pieces of no. !8 and !
Contents CK1A40-PS CK1A50-PS CK1A63-PS 40 50 63 Set of nos. above @9, #0, #1. Component Parts No. Description Material Qty Note No.
0 e New PFA q Body New PFA w Sensor Super PFA e Tube PPS r Housing A PPS t Housing B PPS y Housing C POM u Bushing PPS i Cap FKM o Gasket FKM !0 O-ring Stainless steel 304 !1 Thread PVC !2 Lead wire !1 q t i PF2D540 o !0 u !0 !2ywr e !
PS PS TS TS Press.. sensor Temp. sensor Circulating fluid outlet port Temp. sensor (Ref. suction (Outlet) (Outlet) Compressor Pump Refrigerating circuit Drain port Fig. 9-3 Flow diagram(HRS090-A-20/40/46) 9.3.2 HRS090-W-20/40/46 Regulation valve Air exhaust valve for facility water draining WPR Facility water outlet port Circulating fluid Dryer circuit Press. sensor PS Circulating fluid return
PS PS TS TS Press.. sensor Temp. sensor Circulating fluid outlet port Temp. sensor (Ref. suction (Outlet) (Outlet) DC inverter compressor Inverter pump Refrigerating circuit Tank drain port Fig. 9-3 Flow diagram(HRSH090-A-20/40-) 9.3.2 HRSH090-W-20/40Regulation valve Air exhaust valve for facility water draining WPR Facility water outlet port Circulating fluid Dryer circuit Press. sensor
Determination of load's kinetic energy (E) E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 1548.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 1548.)
M ount t he w at er separat or t o t he pl ace w i t h l ow est t em perat ure i n used pneum ati c ci rcui t. ( Low er tem perature hel ps l i qui di ze the m oi sture. ) O ne of w ays t o l ow er t he t em perature i s to m ake t he pi pi ng at t he i nl et si de of t he w at er separat or l onger.
physical property values by circulating uid. m x C x (Tt T0) x V x C x T Q = = t t 1 x 150 x 4.186 x 103 x 10 900 = = 6977 [J/s] 7.0 [kW] m x C x (Tt T0) t x 860 x V x 60 x C x T t x 860 Q = = Cooling capacity = Considering a safety factor of 20%, 7.0 [kW] x 1.2 = 1 x 150 x 60 x 1.0 x 103 x 10 15 x 860 8.4 [kW] = Q x t: Heat capacity [kJ] Thermo-chiller 6977 [W] = 7.0 [kW] Water bath
P3318303 P3318304 MHK16-PS MHK-A1601 P3318203 P3318204 MHK12-PS MHK-A1201 P3318103 P3318104 wyu !