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Valve Automation
T h e m a t e r i a l s i n c l u d e d i n t h i s c o m p i l a t i o n a r e f o r t h e u s e o f D w y e r I n s t r u m e n t s , I n c .
p o t e n t i a l c u s t o m e r s a n d c u r r e n t e m p l o y e e s a s a r e s o u r c e o n l y . T h e y m a y n o t b e
r e p r o d u c e d , p u b l i s h e d , o r t r a n s m i t t e d e l e c t r o n i c a l l y f o r c o m m e r c i a l p u r p o s e s .
F u r t h e r m o r e , t h e C o m p a n y ’ s n a m e , l i k e n e s s , p r o d u c t n a m e s , a n d l o g o s , i n c l u d e d w i t h i n
t h e s e c o m p i l a t i o n s m a y n o t b e u s e d w i t h o u t s p e c i f i c , w r i t t e n p r i o r p e r m i s s i o n f r o m D w y e r
I n s t r u m e n t s , I n c . © C o p y r i g h t 2 0 1 5 D w y e r I n s t r u m e n t s , I n c .
Overview
 W E 0 1 / W E 3 1  W E 0 2  W E 0 3 / W E 3 3  W E 0 4 / W E 3 4
 W E 0 5  W E 0 6 / W E 0 7  W E 2 0  A C T  A R K / V R K
WE01/WE31
I n t r o d u c t i o n
 W E 0 1 : 2 - w a y N P T s t a i n l e s s s t e e l b a l l v a l v e
 W E 3 1 : 3 - w a y N P T s t a i n l e s s s t e e l b a l l v a l v e
 C a n b e p a c k a g e d w i t h a c t u a t o r s , p o s i t i o n e r s a n d l i m i t s w i t c h e s
WE01/WE31
S p e c i f i c a t i o n s
 Va l v e
 B o d y : W E 0 1 : 2 - w a y ; W E 3 1 : 3 - w a y
 C o n n e c t i o n s : F e m a l e N P T
 P r e s s u r e L i m i t s : 2 8 ” H g t o 1 0 0 0 p s i ( - 0 . 7 – 6 9 B a r )
 L i n e S i z e : ½ ” t o 3 ”
 W e t t e d M a t e r i a l s : C F 8 M , 3 1 6 S S , P T F E
 A c t u a t o r s
 T y p e : M a n u a l , E l e c t r i c o r P n e u m a t i c
WE01/WE31
F e a t u r e s
 B l o w o u t p r o o f s t e m
 V e n t e d b a l l s f o r l o w e r o p e r a t i n g t o r q u e s
 R e i n f o r c e d P T F E s e a l s
 F u l l p o r t b a l l d e s i g n t o r e d u c e p r e s s u r e d r o p
 O f f e r l i m i t s w i t c h e s m o u n t e d t o m a n u a l v a l v e s
 A v a i l a b l e w i t h a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
WE02
I n t r o d u c t i o n
 2 - w a y 3 - p i e c e N P T s t a i n l e s s s t e e l b a l l v a l v e
 3 - p i e c e d e s i g n i s i d e a l f o r h i g h c y c l e a p p l i c a t i o n s
WE02
S p e c i f i c a t i o n s
 Va l v e
 B o d y : 3 - p i e c e
 C o n n e c t i o n s : F e m a l e N P T
 P r e s s u r e L i m i t s : 2 8 ” H g t o 1 0 0 0 p s i ( - 0 . 7 – 6 9 b a r )
 L i n e S i z e s : ½ ” t o 3 ”
 W e t t e d M a t e r i a l s : C F 8 M , 3 1 6 S S , P T F E
 A c t u a t o r s
 T y p e s : M a n u a l , P n e u m a t i c o r E l e c t r i c
WE02
F e a t u r e s
 D e s i g n e d f o r h i g h c y c l e a p p l i c a t i o n s
 3 - p i e c e d e s i g n m a k e s i t e a s y t o r e p l a c e v a l v e s e a t s .
 R e i n f o r c e d P T F E s e a l s
 F u l l p o r t b a l l d e s i g n t o r e d u c e p r e s s u r e d r o p
 O f f e r l i m i t s w i t c h e s m o u n t e d t o m a n u a l v a l v e s
 A v a i l a b l e w i t h a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
WE03/WE33
I n t r o d u c t i o n
 W E 0 3 : 2 - w a y Tr i - C l a m p s t a i n l e s s s t e e l b a l l v a l v e
 W E 3 3 : 3 - w a y Tr i - C l a m p s t a i n l e s s s t e e l b a l l v a l v e
 Tr i - c l a m p p r o c e s s f o r f o o d a n d b e v e r a g e a p p l i c a t i o n s
WE03/WE33
S p e c i f i c a t i o n s
 Va l v e
 B o d y : W E 0 3 : 2 - w a y ; W E 3 1 : 3 - w a y
 C o n n e c t i o n s : Tr i - C l a m p
 P r e s s u r e L i m i t s : 2 0 ” H g t o 1 0 0 0 p s i ( - 0 . 7 – 6 9 b a r )
 L i n e S i z e : ½ ” t o 2 ”
 W e t t e d M a t e r i a l s : C F 8 M , 3 1 6 S S , P T F E
 A c t u a t o r s
 T y p e s : M a n u a l , P n e u m a t i c o r E l e c t r i c
WE03/WE33
F e a t u r e s
 Tr i - c l a m p p r o c e s s f o r f o o d a n d b e v e r a g e a p p l i c a t i o n s
 C a v i t y f i l l e d v a l v e f o r s a n i t a r y a p p l i c a t i o n s
 F u l l p o r t b a l l d e s i g n t o r e d u c e p r e s s u r e d r o p
 C o n f i g u r a b l e t o f i t a n y a p p l i c a t i o n
 A v a i l a b l e w i t h a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
WE04/WE34
I n t r o d u c t i o n
 W E 0 4 : 2 - w a y f l a n g e d s t a i n l e s s s t e e l b a l l v a l v e
 W E 3 4 : 3 - w a y f l a n g e d s t a i n l e s s s t e e l b a l l v a l v e
 1 5 0 # A N S I f l a n g e
WE04/WE34
S p e c i f i c a t i o n s
 Va l v e
 B o d y : W E 0 4 : 2 - w a y ; W E 3 4 : 3 - w a y
 C o n n e c t i o n s : 1 5 0 # A N S I f l a n g e
 P r e s s u r e L i m i t s : 2 0 ” H g t o 2 7 5 p s i ( - 0 . 7 – 1 9 b a r )
 L i n e S i z e s : ½ t o 3 ”
 W e t t e d M a t e r i a l s : C F 8 M , 3 1 6 S S , P T F E
 A c t u a t o r s
 T y p e s : M a n u a l , P n e u m a t i c o r E l e c t r i c
WE04/WE34
F e a t u r e s
 I n d u s t r i a l 1 5 0 # A N S I f l a n g e p r o c e s s c o n n e c t i o n
 R e i n f o r c e d P T F E s e a l s
 F u l l p o r t b a l l d e s i g n t o r e d u c e p r e s s u r e d r o p
 C o n f i g u r a b l e t o f i t a n y a p p l i c a t i o n
 V e n t e d b a l l s f o r l o w e r o p e r a t i n g t o r q u e s
 A v a i l a b l e w i t h a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
WE05
I n t r o d u c t i o n
 S o c k e t w e l d b a l l v a l v e
 W e l d e d i n t o t h e p r o c e s s l i n e
WE05
S p e c i f i c a t i o n s
 Va l v e
 B o d y : 3 - p i e c e
 C o n n e c t i o n s : S o c k e t w e l d
 P r e s s u r e L i m i t s : 2 0 ” H g t o 1 0 0 0 p s i ( - 0 . 7 – 6 9 b a r )
 L i n e S i z e s : ½ ” t o 3 ”
 W e t t e d M a t e r i a l s : C F 8 M , 3 1 6 S S , P T F E
 A c t u a t o r s
 T y p e s : M a n u a l , P n e u m a t i c o r E l e c t r i c
WE05
F e a t u r e s
 B l o w o u t p r o o f s t e m
 S o c k e t w e l d e n d c a p s f o r h i g h p r e s s u r e o r l e a k - p r o o f c o n n e c t i o n s
 R e i n f o r c e d P T F E s e a l s
 V e n t e d b a l l s f o r l o w e r o p e r a t i n g t o r q u e s
 A v a i l a b l e w i t h a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
V-Ball Advantages
 C o n t r o l v a l v e f l o w c h a r a c t e r i s t i c s i n a c o m p a c t
b a l l v a l v e p a c k a g e
 C a n w i t h s t a n d h i g h p r e s s u r e d r o p s a n d v e l o c i t i e s
 6 0 ° a n d 9 0 ° b a l l s o f f e r a n e q u a l p e r c e n t a g e f l o w c h a r a c t e r i s t i c
 V - b a l l v a l v e s o f f e r b i d i r e c t i o n a l b u b b l e t i g h t s h u t o f f
WE06/WE07
I n t r o d u c t i o n
 W E 0 6 : 2 - w a y N P T V - b a l l b a l l v a l v e
 W E 0 7 : 2 - w a y 1 5 0 # F l a n g e V - b a l l b a l l v a l v e
 C o n t r o l v a l v e f l o w c h a r a c t e r i s t i c s i n a c o m p a c t b a l l v a l v e
p a c k a g e
WE06/WE07
S p e c i f i c a t i o n s
 Va l v e
 B o d y : W E 0 6 : 3 - p i e c e ; W E 0 7 : 2 - p i e c e
 C o n n e c t i o n s : W E 0 6 : F e m a l e N P T; W E 0 7 : 1 5 0 # A N S I f l a n g e
 P r e s s u r e L i m i t s : 2 0 ” H g t o 1 0 0 0 p s i ( - 0 . 7 – 6 9 b a r )
 L i n e S i z e : ½ ” t o 3 ”
 W e t t e d M a t e r i a l s : C F 8 M , 3 1 6 S S , P T F E
 A c t u a t o r s
 T y p e s : M a n u a l , P n e u m a t i c o r E l e c t r i c
WE06/WE07
F e a t u r e s
 A v a i l a b l e w i t h 6 0 ° a n d 9 0 ° V - b a l l s
 U t i l i z e s a m a c h i n e d 3 1 6 S S V - b a l l
 R e i n f o r c e d P T F E s e a l s
 B u b b l e t i g h t s h u t o f f a t h i g h p r e s s u r e d r o p s
 C o n f i g u r a b l e t o a n y a p p l i c a t i o n
 A c c e p t s a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
WE20
I n t r o d u c t i o n
 B u t t e r f l y Va l v e
 A v a i l a b l e i n L u g o r W a f e r s t y l e m o u n t i n g
WE20
S p e c i f i c a t i o n s
 Va l v e
 B o d y : 2 - w a y, D u c t i l e c a s t i r o n
 L i n e s i z e s : 2 t o 1 2 ”
 C o n n e c t i o n s : W a f e r o r L u g
 P r e s s u r e L i m i t s : 2 2 5 p s i ( 1 5 . 5 b a r )
 L i n e r s : E P D M o r P T F E
 A c t u a t o r s
 T y p e s : M a n u a l , P n e u m a t i c o r E l e c t r i c
WE20
F e a t u r e s
 D e s i g n e d f o r f l o w c o n t r o l i n l a r g e r p i p e s i z e s
 M a c h i n e d f l a t s a t t a c h d i s c / s t e m – n o p i n s
 P h e n o l i c b a c k e d c a r t r i d g e s e a t d e s i g n f o r e x t e n d e d s e r v i c e
 C o n f i g u r a b l e t o a n y a p p l i c a t i o n
 A c c e p t s a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
ACT
I n t r o d u c t i o n
 P n e u m a t i c a n d e l e c t r i c a c t u a t o r s
 I S O 5 2 1 1 m o u n t i n g c o n f i g u r a t i o n f o r e a s y i n s t a l l a t i o n
ACT
S p e c i f i c a t i o n s
 P n e u m a t i c
 T y p e : D A : d o u b l e a c t i n g ; S R : S p r i n g R e t u r n
 E n c l o s u r e : A n o d i z e d A l u m i n u m b o d y a n d e p o x y c o a t e d e n d c a p s
 Te m p e r a t u r e L i m i t s : - 4 0 º C t o 8 0 º C
 A c c e s s o r y m o u n t i n g : N A M U R
 E l e c t r i c
 T y p e : T D , T I : Tw o p o s i t i o n ; M D , M I : M o d u l a t i n g
 P o w e r R e q u i r e m e n t s : 1 2 0 v a c , 2 2 0 v a c , 2 4 v a c o r 2 4 v d c
 E n c l o s u r e r a t i n g s : I P 6 7
ACT
F e a t u r e s
 I S O 5 2 1 1 o r N A M U R m o u n t i n g c o n f i g u r a t i o n f o r e a s y i n s t a l l a t i o n
 Tw o - p o s i t i o n e l e c t r i c a c t u a t o r s i n c l u d e a u x i l i a r y l i m i t s w i t c h e s
a n d p o s i t i o n i n d i c a t o r s
 E l e c t r i c a c t u a t o r c o m e w i t h e n c l o s u r e h e a t e r s t o p r e v e n t
c o n d e n s a t i o n i n t h e e n c l o s u r e
 M o d u l a t i n g a c t u a t o r s h a v e a n o u t p u t f o r p o s i t i o n m o n i t o r i n g
Repair Kits
 R e p l a c e a b l e s e a l s a n d s e a t s f o r a l l p n e u m a t i c a c t u a t o r s a n d b a l l
v a l v e s
S e r i e s A R K A c t u a t o r R e p a i r
K i t s
S e r i e s V R K V a l v e R e p a i r K i t s
Applications
C h i l l e r P l a n t
 H o t a n d c o l d w a t e r m i x t u r e c o n t r o l
Applications
I r r i g a t i o n S y s t e m s
 B y p a s s v a l v e s a n d i s o l a t i o n v a l v e s
Applications
Wa s t e Wa t e r Tr e a t m e n t P l a n t
 L a t e s t a g e c o n t r o l v a l v e s
Applications
T h e r m a l O x i d i z e r s
 A i r o r g a s f l o w c o n t r o l
Applications
M i d s t r e a m O i l Re f i n e r y
 O i l p r o d u c t i o n c o n t r o l v a l v e
Applications
C h e m i c a l Pr o c e s s i n g
 A i r o r g a s f l o w c o n t r o l a n d e m e r g e n c y s h u t d o w n

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W.E. Anderson® Valve Automation: Product Offerings & Applications

  • 1. Valve Automation T h e m a t e r i a l s i n c l u d e d i n t h i s c o m p i l a t i o n a r e f o r t h e u s e o f D w y e r I n s t r u m e n t s , I n c . p o t e n t i a l c u s t o m e r s a n d c u r r e n t e m p l o y e e s a s a r e s o u r c e o n l y . T h e y m a y n o t b e r e p r o d u c e d , p u b l i s h e d , o r t r a n s m i t t e d e l e c t r o n i c a l l y f o r c o m m e r c i a l p u r p o s e s . F u r t h e r m o r e , t h e C o m p a n y ’ s n a m e , l i k e n e s s , p r o d u c t n a m e s , a n d l o g o s , i n c l u d e d w i t h i n t h e s e c o m p i l a t i o n s m a y n o t b e u s e d w i t h o u t s p e c i f i c , w r i t t e n p r i o r p e r m i s s i o n f r o m D w y e r I n s t r u m e n t s , I n c . © C o p y r i g h t 2 0 1 5 D w y e r I n s t r u m e n t s , I n c .
  • 2. Overview  W E 0 1 / W E 3 1  W E 0 2  W E 0 3 / W E 3 3  W E 0 4 / W E 3 4  W E 0 5  W E 0 6 / W E 0 7  W E 2 0  A C T  A R K / V R K
  • 3. WE01/WE31 I n t r o d u c t i o n  W E 0 1 : 2 - w a y N P T s t a i n l e s s s t e e l b a l l v a l v e  W E 3 1 : 3 - w a y N P T s t a i n l e s s s t e e l b a l l v a l v e  C a n b e p a c k a g e d w i t h a c t u a t o r s , p o s i t i o n e r s a n d l i m i t s w i t c h e s
  • 4. WE01/WE31 S p e c i f i c a t i o n s  Va l v e  B o d y : W E 0 1 : 2 - w a y ; W E 3 1 : 3 - w a y  C o n n e c t i o n s : F e m a l e N P T  P r e s s u r e L i m i t s : 2 8 ” H g t o 1 0 0 0 p s i ( - 0 . 7 – 6 9 B a r )  L i n e S i z e : ½ ” t o 3 ”  W e t t e d M a t e r i a l s : C F 8 M , 3 1 6 S S , P T F E  A c t u a t o r s  T y p e : M a n u a l , E l e c t r i c o r P n e u m a t i c
  • 5. WE01/WE31 F e a t u r e s  B l o w o u t p r o o f s t e m  V e n t e d b a l l s f o r l o w e r o p e r a t i n g t o r q u e s  R e i n f o r c e d P T F E s e a l s  F u l l p o r t b a l l d e s i g n t o r e d u c e p r e s s u r e d r o p  O f f e r l i m i t s w i t c h e s m o u n t e d t o m a n u a l v a l v e s  A v a i l a b l e w i t h a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
  • 6. WE02 I n t r o d u c t i o n  2 - w a y 3 - p i e c e N P T s t a i n l e s s s t e e l b a l l v a l v e  3 - p i e c e d e s i g n i s i d e a l f o r h i g h c y c l e a p p l i c a t i o n s
  • 7. WE02 S p e c i f i c a t i o n s  Va l v e  B o d y : 3 - p i e c e  C o n n e c t i o n s : F e m a l e N P T  P r e s s u r e L i m i t s : 2 8 ” H g t o 1 0 0 0 p s i ( - 0 . 7 – 6 9 b a r )  L i n e S i z e s : ½ ” t o 3 ”  W e t t e d M a t e r i a l s : C F 8 M , 3 1 6 S S , P T F E  A c t u a t o r s  T y p e s : M a n u a l , P n e u m a t i c o r E l e c t r i c
  • 8. WE02 F e a t u r e s  D e s i g n e d f o r h i g h c y c l e a p p l i c a t i o n s  3 - p i e c e d e s i g n m a k e s i t e a s y t o r e p l a c e v a l v e s e a t s .  R e i n f o r c e d P T F E s e a l s  F u l l p o r t b a l l d e s i g n t o r e d u c e p r e s s u r e d r o p  O f f e r l i m i t s w i t c h e s m o u n t e d t o m a n u a l v a l v e s  A v a i l a b l e w i t h a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
  • 9. WE03/WE33 I n t r o d u c t i o n  W E 0 3 : 2 - w a y Tr i - C l a m p s t a i n l e s s s t e e l b a l l v a l v e  W E 3 3 : 3 - w a y Tr i - C l a m p s t a i n l e s s s t e e l b a l l v a l v e  Tr i - c l a m p p r o c e s s f o r f o o d a n d b e v e r a g e a p p l i c a t i o n s
  • 10. WE03/WE33 S p e c i f i c a t i o n s  Va l v e  B o d y : W E 0 3 : 2 - w a y ; W E 3 1 : 3 - w a y  C o n n e c t i o n s : Tr i - C l a m p  P r e s s u r e L i m i t s : 2 0 ” H g t o 1 0 0 0 p s i ( - 0 . 7 – 6 9 b a r )  L i n e S i z e : ½ ” t o 2 ”  W e t t e d M a t e r i a l s : C F 8 M , 3 1 6 S S , P T F E  A c t u a t o r s  T y p e s : M a n u a l , P n e u m a t i c o r E l e c t r i c
  • 11. WE03/WE33 F e a t u r e s  Tr i - c l a m p p r o c e s s f o r f o o d a n d b e v e r a g e a p p l i c a t i o n s  C a v i t y f i l l e d v a l v e f o r s a n i t a r y a p p l i c a t i o n s  F u l l p o r t b a l l d e s i g n t o r e d u c e p r e s s u r e d r o p  C o n f i g u r a b l e t o f i t a n y a p p l i c a t i o n  A v a i l a b l e w i t h a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
  • 12. WE04/WE34 I n t r o d u c t i o n  W E 0 4 : 2 - w a y f l a n g e d s t a i n l e s s s t e e l b a l l v a l v e  W E 3 4 : 3 - w a y f l a n g e d s t a i n l e s s s t e e l b a l l v a l v e  1 5 0 # A N S I f l a n g e
  • 13. WE04/WE34 S p e c i f i c a t i o n s  Va l v e  B o d y : W E 0 4 : 2 - w a y ; W E 3 4 : 3 - w a y  C o n n e c t i o n s : 1 5 0 # A N S I f l a n g e  P r e s s u r e L i m i t s : 2 0 ” H g t o 2 7 5 p s i ( - 0 . 7 – 1 9 b a r )  L i n e S i z e s : ½ t o 3 ”  W e t t e d M a t e r i a l s : C F 8 M , 3 1 6 S S , P T F E  A c t u a t o r s  T y p e s : M a n u a l , P n e u m a t i c o r E l e c t r i c
  • 14. WE04/WE34 F e a t u r e s  I n d u s t r i a l 1 5 0 # A N S I f l a n g e p r o c e s s c o n n e c t i o n  R e i n f o r c e d P T F E s e a l s  F u l l p o r t b a l l d e s i g n t o r e d u c e p r e s s u r e d r o p  C o n f i g u r a b l e t o f i t a n y a p p l i c a t i o n  V e n t e d b a l l s f o r l o w e r o p e r a t i n g t o r q u e s  A v a i l a b l e w i t h a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
  • 15. WE05 I n t r o d u c t i o n  S o c k e t w e l d b a l l v a l v e  W e l d e d i n t o t h e p r o c e s s l i n e
  • 16. WE05 S p e c i f i c a t i o n s  Va l v e  B o d y : 3 - p i e c e  C o n n e c t i o n s : S o c k e t w e l d  P r e s s u r e L i m i t s : 2 0 ” H g t o 1 0 0 0 p s i ( - 0 . 7 – 6 9 b a r )  L i n e S i z e s : ½ ” t o 3 ”  W e t t e d M a t e r i a l s : C F 8 M , 3 1 6 S S , P T F E  A c t u a t o r s  T y p e s : M a n u a l , P n e u m a t i c o r E l e c t r i c
  • 17. WE05 F e a t u r e s  B l o w o u t p r o o f s t e m  S o c k e t w e l d e n d c a p s f o r h i g h p r e s s u r e o r l e a k - p r o o f c o n n e c t i o n s  R e i n f o r c e d P T F E s e a l s  V e n t e d b a l l s f o r l o w e r o p e r a t i n g t o r q u e s  A v a i l a b l e w i t h a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
  • 18. V-Ball Advantages  C o n t r o l v a l v e f l o w c h a r a c t e r i s t i c s i n a c o m p a c t b a l l v a l v e p a c k a g e  C a n w i t h s t a n d h i g h p r e s s u r e d r o p s a n d v e l o c i t i e s  6 0 ° a n d 9 0 ° b a l l s o f f e r a n e q u a l p e r c e n t a g e f l o w c h a r a c t e r i s t i c  V - b a l l v a l v e s o f f e r b i d i r e c t i o n a l b u b b l e t i g h t s h u t o f f
  • 19. WE06/WE07 I n t r o d u c t i o n  W E 0 6 : 2 - w a y N P T V - b a l l b a l l v a l v e  W E 0 7 : 2 - w a y 1 5 0 # F l a n g e V - b a l l b a l l v a l v e  C o n t r o l v a l v e f l o w c h a r a c t e r i s t i c s i n a c o m p a c t b a l l v a l v e p a c k a g e
  • 20. WE06/WE07 S p e c i f i c a t i o n s  Va l v e  B o d y : W E 0 6 : 3 - p i e c e ; W E 0 7 : 2 - p i e c e  C o n n e c t i o n s : W E 0 6 : F e m a l e N P T; W E 0 7 : 1 5 0 # A N S I f l a n g e  P r e s s u r e L i m i t s : 2 0 ” H g t o 1 0 0 0 p s i ( - 0 . 7 – 6 9 b a r )  L i n e S i z e : ½ ” t o 3 ”  W e t t e d M a t e r i a l s : C F 8 M , 3 1 6 S S , P T F E  A c t u a t o r s  T y p e s : M a n u a l , P n e u m a t i c o r E l e c t r i c
  • 21. WE06/WE07 F e a t u r e s  A v a i l a b l e w i t h 6 0 ° a n d 9 0 ° V - b a l l s  U t i l i z e s a m a c h i n e d 3 1 6 S S V - b a l l  R e i n f o r c e d P T F E s e a l s  B u b b l e t i g h t s h u t o f f a t h i g h p r e s s u r e d r o p s  C o n f i g u r a b l e t o a n y a p p l i c a t i o n  A c c e p t s a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
  • 22. WE20 I n t r o d u c t i o n  B u t t e r f l y Va l v e  A v a i l a b l e i n L u g o r W a f e r s t y l e m o u n t i n g
  • 23. WE20 S p e c i f i c a t i o n s  Va l v e  B o d y : 2 - w a y, D u c t i l e c a s t i r o n  L i n e s i z e s : 2 t o 1 2 ”  C o n n e c t i o n s : W a f e r o r L u g  P r e s s u r e L i m i t s : 2 2 5 p s i ( 1 5 . 5 b a r )  L i n e r s : E P D M o r P T F E  A c t u a t o r s  T y p e s : M a n u a l , P n e u m a t i c o r E l e c t r i c
  • 24. WE20 F e a t u r e s  D e s i g n e d f o r f l o w c o n t r o l i n l a r g e r p i p e s i z e s  M a c h i n e d f l a t s a t t a c h d i s c / s t e m – n o p i n s  P h e n o l i c b a c k e d c a r t r i d g e s e a t d e s i g n f o r e x t e n d e d s e r v i c e  C o n f i g u r a b l e t o a n y a p p l i c a t i o n  A c c e p t s a c t u a t o r s , l i m i t s w i t c h e s a n d p o s i t i o n e r s
  • 25. ACT I n t r o d u c t i o n  P n e u m a t i c a n d e l e c t r i c a c t u a t o r s  I S O 5 2 1 1 m o u n t i n g c o n f i g u r a t i o n f o r e a s y i n s t a l l a t i o n
  • 26. ACT S p e c i f i c a t i o n s  P n e u m a t i c  T y p e : D A : d o u b l e a c t i n g ; S R : S p r i n g R e t u r n  E n c l o s u r e : A n o d i z e d A l u m i n u m b o d y a n d e p o x y c o a t e d e n d c a p s  Te m p e r a t u r e L i m i t s : - 4 0 º C t o 8 0 º C  A c c e s s o r y m o u n t i n g : N A M U R  E l e c t r i c  T y p e : T D , T I : Tw o p o s i t i o n ; M D , M I : M o d u l a t i n g  P o w e r R e q u i r e m e n t s : 1 2 0 v a c , 2 2 0 v a c , 2 4 v a c o r 2 4 v d c  E n c l o s u r e r a t i n g s : I P 6 7
  • 27. ACT F e a t u r e s  I S O 5 2 1 1 o r N A M U R m o u n t i n g c o n f i g u r a t i o n f o r e a s y i n s t a l l a t i o n  Tw o - p o s i t i o n e l e c t r i c a c t u a t o r s i n c l u d e a u x i l i a r y l i m i t s w i t c h e s a n d p o s i t i o n i n d i c a t o r s  E l e c t r i c a c t u a t o r c o m e w i t h e n c l o s u r e h e a t e r s t o p r e v e n t c o n d e n s a t i o n i n t h e e n c l o s u r e  M o d u l a t i n g a c t u a t o r s h a v e a n o u t p u t f o r p o s i t i o n m o n i t o r i n g
  • 28. Repair Kits  R e p l a c e a b l e s e a l s a n d s e a t s f o r a l l p n e u m a t i c a c t u a t o r s a n d b a l l v a l v e s S e r i e s A R K A c t u a t o r R e p a i r K i t s S e r i e s V R K V a l v e R e p a i r K i t s
  • 29. Applications C h i l l e r P l a n t  H o t a n d c o l d w a t e r m i x t u r e c o n t r o l
  • 30. Applications I r r i g a t i o n S y s t e m s  B y p a s s v a l v e s a n d i s o l a t i o n v a l v e s
  • 31. Applications Wa s t e Wa t e r Tr e a t m e n t P l a n t  L a t e s t a g e c o n t r o l v a l v e s
  • 32. Applications T h e r m a l O x i d i z e r s  A i r o r g a s f l o w c o n t r o l
  • 33. Applications M i d s t r e a m O i l Re f i n e r y  O i l p r o d u c t i o n c o n t r o l v a l v e
  • 34. Applications C h e m i c a l Pr o c e s s i n g  A i r o r g a s f l o w c o n t r o l a n d e m e r g e n c y s h u t d o w n