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MICE- AFC Unit Mechanical Design of the Cold Mass Support System Oxford University Rohan Senanayake.

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Presentation on theme: "MICE- AFC Unit Mechanical Design of the Cold Mass Support System Oxford University Rohan Senanayake."— Presentation transcript:

1 MICE- AFC Unit Mechanical Design of the Cold Mass Support System Oxford University Rohan Senanayake

2 Complete Assembly

3 General Arrangement of the cold mass support system

4 An Overview of AFC Unit 1.Cold Mass –Bobbin –G10 Insulation –Focusing Coils –Cover Plate/Mounting brackets for Cold Mass 2.Copper Shield 3.End Plates and Cylindrical Core 4.Cold Mass Support System 5.Warm Vessel

5 BobbinG10 InsulationFocusing Coil Bobbin with G10 Insulation and Focusing Coils Coil Cover Plate with Cold Mass Support Brackets Cold Mass

6

7 Copper Shield

8 End Plates and Cylindrical Core

9 Cold Mass, Support System and the Warm Vessel

10 Section View of the Complete Assembly

11 Cold Mass Support System 4 sets of Links anchored to the Cold Mass and Outer Casing to carry an Axial load on Cold Mass of 200 KN. Each link is pre- tensioned to 50 KN when cold. Each pair of links is skewed relative to each other to provide torsional stiffness Each Link is made of 2 Glass fiber Epoxy (E-Glass) links and one stainless steel link cooled to 50 0 K. All the links and the cold mass support system are linked through stainless steel pins. Anchor point on the outer casing includes a mechanism to pre-tension the links and help to align the cold mass accurately

12 Arrangement of the links to provide Torsional Stiffness Vertical Plane 45 0 Plane

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14

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16 Warm Vessel/ Outer Casing

17 Components of the Cold Mass Support System E-Glass Straps Stainless Steel Block Stainless Steel Shear Pins Integrated Tensioning Device/ Anchor on warm vessel End Cap Mounting Bracket for Cold Mass Support

18 Complete Link

19 E Glass Strap Stainless Steel Block

20 Components of the Integrated Tensioning Device/ Anchor on warm vessel The device also prevents twisting of the link during the tensioning operation.

21 Mounting Brackets on the Cold Mass

22 Integrated Tensioning Device/ Anchor on warm vessel End Cap welded to form a vacuum tight joint.

23 Pre -Tension Control T = 0.2 F i d p T – Torque in N-m F i – Tension in support link KN d p – pitch diameter of thread mm Tension KNTorque N-m 37.5300 50.0400 62.5500 Example

24 One turn of the nut moves the screw (cold mass) through one pitch. Pitch of screw = 2 mm Therefore one turn of the nut moves the corresponding mounting point of the cold mass through 2 mm Position Control of Cold Mass A table showing the relationships between angular and radial positions of the cold mass centre line and rotation of the adjustment nuts will be compiled. This can be used during the assembly/ setup

25 Summary statement The design on the Cold Mass support system is adequate to take on the imbalance magnet force while allowing independent adjustment of the position of cold mass Further work Dip in the vessel shell under tension load: Manual calculations indicate a deflection of 0.5mm. A FE analysis will be done and the anchor points will be strengthened locally if necessary Shrinkage during vacuum: Would this shrinkage reduces the pre-tension load? Table of the adjustment of the individual cold mass support link to the positioning / alignment of the magnet. These will be ready by the next collaboration meeting in October.


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