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RHP Fitting

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PowerPoint presentation of our RHP fitting. Regards, ... Pall. Setra. Tem-Tech. Tescom. Unit. Veriflo. Millipore / Tylan / Span. Why IGS Systems ? ... – PowerPoint PPT presentation

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Title: RHP Fitting


1

PowerPoint presentation of our RHP fitting.
Regards, Eddy Mans
2
Titre
3

Eddy Mans International Sales Mgr.
Responsible For European Distribution Network
4

Flowmeca Created in 1994
Product invented _at_ IBM France 1992
5
Drawbacks of standard fittings
Dead Volume.
Parts Inventory
Gaskets
Welding
Particle Generation
Panel Design
Twisting of Tubes
Assembly
Male / Female
Footprint
6
The RHP Fitting

FLOWMECA
Patent protected
7
Ensemble
Flange
Protection ring
Centering ring
Gland
Flange
8
Gland
9
Gland Surface finish
Sealing surface
Ra 0.4 (10 Ra)
Interior surface
Ra 0.2 (5 Ra)
10
Protection Ring PTFE
Centering Ring
Gland
Leak Port
It's not a gasket
11
Centering Ring
Leak Port
12
Flanges
Screws Silver coated
13
Principle
14
Metal to metal contact
Axial tightening
15
Table of indicative values of tightening torque
Fitting Size 1/16 - 1/8 1/4 - 3/8 1/2 1 1
1/2 2 2 1/2
Flange Code 100058 100059 100060 100444 100452 10
0064 100450
Screw Size M-2.5 M-3.5 M-4 M-5 M-5 M-6 M-8
TT 0,6 1,7 2,0 4,1 4,1 7,0 17,0
TT Tightening Torque in Newton/Meter Note
The values indicated are for reference only.
Should leakage occur, a re-tightening
of the screw is recommended.
16
Standard versus RHP
17
Lighter
134 g
42 g
18
Smaller
50 mm
12 mm
80 mm
37 mm
24 mm
28 mm
19
Cleaner
No Gasket No Dead Volume
20
Clean Contact
21
No Twist on the tubes
22
Reduced parts inventory
Standard
RHP
10 part numbers
3 part numbers
23
Reduced parts inventory
Standard
RHP
No Male Female end fittings
24
Reduced footprint
Standard
RHP
50.8 mm
70.6 mm
25
Easy of assemblyEase ofmaintenance
Standard
RHP
Allen 2.5 mm
26
Proven Success
27
Vacuum leak measurementlt1.10-10 atm.cm /s
3
28
No leak detected on any sample
Vacuum and 200 bar pressure test at 300C
29
With protection rings
RHP 1/4 Vacuum tests
Leak lt1.10-10 atm.cm /s
3
Without protection rings
180C
550C
20C
20C
-100C
-100C
30
20 bar
Helium pressure tests
Leak lt1.10-10 atm.cm /s
3
80 bar
650 bar
180C
180C
20C
31
RHP 1/4
Oil high pressure tests
No detected leak
RHP 3/8
1,900 bar
1,600 bar
1,600 bar (burst pipe)
32
At1,600 bar pipe bursts
33
Comparative test
A VCR B S-VCR C Parker D RHP
34
Comparative test
35
250 assembly cycles
Leak rate lt1.10-10 atm.cm /s
3
36
RadioactiveIsotope Test
D (H ) T (H )
2
3
Tritium accumulation in a glove box at 16 bars No
leak after 16 days
37
Drawbacks of standard fittings
Dead Volume Gaskets Particle
Generation Twisting of Tubes Male /
Female
Parts Inventory Welding Panel Design
Assembly Footprint
?
?
38

Applications
UHP Gas Systems
UH Vacuum
High Pressure
Liquids
Semi Solids
High/Low Temperature
39

Product
Butt Weld 1/16 to 4
Tees, Crosses, Ells etc.
Click Pipe 1/8 to 1
And more to come!
40
RHP winner by technical KO
41
Weld
42
Weld
43
For a simple gas panel31 components and 110
welds
44
Problems related to welding
Testing Safety Contamination Personnel
Costs Maintain Tolerance
Number of Welds Deterioration of Tubing
Bulky Equipment Clean Area Contamination
Moisture Retention
?
?
45
Weld
Weld
Weld
46
Patented
47
Basic Idea
48
A tube
Click Groove
Sealing surface
Ra 0.4 (10 Ra)
49
Click pipe
50
A Click Pipe
51
Titre
52
Click Pipe Full
53
Two tubes
54
RHPClickPipePrepTool
55
Drawbacks of standard fitting
Dead Volume Gaskets Particle
Generation Twisting of Tubes Male /
Female
Parts Inventory Welding Panel Design
Assembly Footprint
?
?
56
Drawbacks of standard fitting
Parts Inventory Welding Panel Design
Assembly Footprint
Dead Volume Gaskets Particle
Generation Twisting of Tubes Male /
Female
?
?
57
Patented
58
Standard Gas Panel
59
With some ModularRHP components
60
With only 9 ModularRHP sub-components
Cross
Tee
Elbow
Click-Pipe
Straight
Flange
61
RHP Modular Grid 1 x 1
RHP Modular Grid 1 x 1
62
RHP Modular Grid 1 x 1
63
elbows and tees,
RHP Modular Grid 1 x 1
components,
64
tubes and click-pipes,
RHP Modular Grid 1 x 1
elbows and tees,
Components,
65
flanges.
RHP Modular Grid 1 x 1
elbows and tees,
Components,
tubes and click-pipes,
66
Modular gas panel
67
Reducedfootprint
-30 to -50
68
Reduced design time
-75
69
EasytoassembleEasytomaintain
70
Drawbacks of standard fitting
Dead Volume Gaskets Particle
Generation Twisting of Tubes Male /
Female
Parts Inventory Welding Panel Design
Assembly Footprint
?
?
71
Advantages of RHP solution
No dead volume No gaskets Clean
assembly Axial tightening No Male /
Female
Ease of assembly No weld Simple design
Reduced inventory Small footprint
72
Main References
Air Liquide Labeille Coca Cola Balzers
Argonne Nat Lab IBM L'Oréal
Motorola Trikon Siemens SGS Thomson
Rhône Poulenc Matra Marconi Space
73
Component Suppliers
AP Tech Flowlink GO Hale Hamilton
Ihara MKS
Pall Setra Tem-Tech Tescom Unit
Veriflo
Millipore / Tylan / Span
74
Why IGS Systems ?
  • Reduced connections.
  • Fewer welds.
  • Reduced Footprint.
  • Lower Cost.
  • Process improvement
  • Less dead volume.
  • ??????

75
Integrated Gas System
  • High cost
  • More Connections
  • Welding still required
  • Many different sealing systems
  • Completely new parts inventory

76
The Facts
  • 8 Component IGS Stick has 18
  • gasketed connections 36 seal planes.
  • Welds are still required.
  • Reduced Footprint. Yes BUT
  • Cost may be 3-4 X present.
  • Blocks Gaskets dead volume
  • Process improvement. ???

77
RHP Modular
gt Initial gt Replacement gt No Gasket gt No
dead volume gt Fewer Connections
  • Low cost
  • Easily modified
  • Same parts inventory
  • Connections
  • Weld free

78
The Facts
  • RHP Has 8 gasket free connections.
  • No welds required.
  • Reduced Footprint. Yes.
  • Cost same as present.
  • No Blocks No Gaskets No dead volume
  • Process improvement.

79
Direct Machined Components
RHP
Standard
54 mm
62.07 mm
80
FLOWMECA

The RHP Fitting
Patent protected
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