What are you looking for?

Enter search term

We are sorry!

Unfortunately no results were found.

Login

Are you a new customer?

Register and get many benefits:

Checking the product availability
Fast reordering & order history
Personal product recommendation
Payment by invoice

Help & Contact

Your direct line to us

If you have any questions about the online store or our products, you can call our customer service at:

08:00 AM -12:00 AM 01:00 PM - 05:00 PM

Or use our FAQ

There you get answers to the most frequently asked questions.

Helping people help themselves
FAQs

AFS 112 ST

Flangia SAE 3" T.DE92,0 3000PSI

Flangia SAE 3" T.DE92,0 3000PSI

Dimensioni strutturali
3″ 
Pressione PB
160 bar
A
92 mm
Download PDF
Register now to get access to our online shop

Register now and access our complete product range and many exclusive services.

Product details for

AFS 112 ST

Dimensioni strutturali
3″
Pressione PB
160 bar
A
92 mm
Ø B
73 mm
C
106,4 mm
D
134 mm
E
61,9 mm
F
124 mm
G
50 mm
H
27 mm
L
17,5 mm
M metr.
M 16 x 50
M unc
UNC 5/8″ x 2″
Gewicht
2,322 kg
All characteristics

Characteristics

Elemento di fissaggio
  • Foro vite 
Forma costruttiva
  • diritto 
Materiale
  • S 355 J2 G3 
Norma
  • SAE J 518 C 
  • ISO 6162 
Protezione superficiale
  • oliato nero 
Serie di pressioni
  • 3.000 psi
Tipo
  • Flangia saldata SAE - in pollici 
Customs tariff number
  • 73079100 
All characteristics

Product description

Notes
La pressione d'esercizio massima è riportata sulla flangia! La pressione d'esercizio effettiva è determinata dal tubo (spessore della parete) e dalla buona qualità del tubo!
Le viti raccomandate sono elencate nella colonna M (metr.) o M (unc).
Delivery scope
solo flangia

Product variants

11 Results
Show dimensional drawing
Identifier
Dimensioni strutturali
Pressione PB (bar)
A (mm)
Ø B (mm)
PB = massima pressione d'esercizio

Shows 10 of 11

Column selection

Dimensioni strutturali
Pressione PB (bar)
A (mm)
Ø B (mm)
C (mm)
D (mm)
E (mm)
F (mm)
G (mm)
H (mm)
L (mm)
M metr.
M unc
Gewicht (kg)
PB = massima pressione d'esercizio