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procedures:cfoils:carbon_foils [2010/06/29 07:59] rhodges |
procedures:cfoils:carbon_foils [2014/12/05 12:41] (current) rhodges |
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//Note: Remember, carbon foils are extremely delicate. Handle carefully in every step, the foils tear easily.// | //Note: Remember, carbon foils are extremely delicate. Handle carefully in every step, the foils tear easily.// | ||
- | === I. | + | === I. |
Prewarm the oven to 200 C. Check the temperature with a thermometer –there is a digital one in the Detector Lab that can be borrowed, ask John Yurkon. | Prewarm the oven to 200 C. Check the temperature with a thermometer –there is a digital one in the Detector Lab that can be borrowed, ask John Yurkon. | ||
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===II. | ===II. | ||
- | The edges of the carbon are the points most likely to crack, and harder to float. | + | The edges of the carbon are the points most likely to crack, and harder to float. |
+ | |||
+ | Where the foil will be held by the clamp, a small amount will have to be cut off. Using a straight edge, cover the area of the foil that has to be removed. | ||
Figure 3. Cut foil with scalpel. | Figure 3. Cut foil with scalpel. | ||
+ | |||
{{: | {{: | ||
- | Figure 4. Carbon foil after cutting. Lines can be seen close to the edges of the foil. | + | Figure 4. Carbon foil after cutting. Lines can be seen close to the edges of the foil. |
+ | *Note: This is a photo of a foil in 2010. As of 2014, only one cut was made to the foil. | ||
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* Lab jack | * Lab jack | ||
* Tub filled with deionized water (DI water; found in the Detector Lab), deep enough to submerge a vertical MCP frame, leaving about an inch of room from the top. | * Tub filled with deionized water (DI water; found in the Detector Lab), deep enough to submerge a vertical MCP frame, leaving about an inch of room from the top. | ||
- | * Ringstand: See Figure 5. Attach a clamp that can hold the slide at a shallow angle (~20⁰) with clearance over the side of the tub. To get the angle, | + | * Ringstand: See Figure 5. Attach a clamp that can hold the slide at a shallow angle (~20⁰) with clearance over the side of the tub. To get the angle, |
- | * Tweezers with a good grip. I found it best to use the scissors-style tweezers with lock feature—but do not lock the tweezers! The impact of unlocking can break the carbon foil | + | * Tweezers with a good grip. If possible, |
* Box of Kimwipes or other gentle tissues for drying. | * Box of Kimwipes or other gentle tissues for drying. | ||
+ | |||
Figure 5. Ringstand with clamp held over the tub of DI water | Figure 5. Ringstand with clamp held over the tub of DI water | ||
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Raise the lab jack slowly to bring the water level up to meet the bottom of the slide. When the two first meet, stop and proceed extremely slowly. | Raise the lab jack slowly to bring the water level up to meet the bottom of the slide. When the two first meet, stop and proceed extremely slowly. | ||
- | Figure 6. Raise the lab jack slowly. | + | Figure 6. Raise the lab jack slowly. |
- | {{: | + | {{: |
- | Adjust the jack so the water just barely spills over the lip onto the slide. | ||
- | The trimmed edge will float up first, and may break off into pieces. The front edge of the carbon will lift next, check to see that it is floating on the surface before proceeding. | + | Adjust the jack so the water just barely spills over onto the slide. |
+ | |||
+ | After the water has broken the front of the slide, slowly raise the jack. The front edge of the carbon will lift, check to see that it is floating on the surface before proceeding. | ||
+ | |||
+ | Continue to raise the lab jack slowly, allow the water to seep between the foil and the slide. | ||
- | Continue to raise the lab jack slowly, pausing to allow the water to seep between the foil and the frame. | ||
Troubleshooting: | Troubleshooting: | ||
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When the foil detaches from the slide, blow gently onto the surface of the water to push the carbon away from the slide. Do not blow directly onto the foil, it may break. | When the foil detaches from the slide, blow gently onto the surface of the water to push the carbon away from the slide. Do not blow directly onto the foil, it may break. | ||
- | The slide is difficult to see in the water. | + | |
+ | The slide is difficult to see in the water. | ||
=== V. | === V. | ||
- | First practice moving the MCP frame in the water away from the carbon foil. Hold the frame by the corner with the tweezers, with the Aluminized side towards yourself, the side where the carbon will be deposited. | + | First practice moving the MCP frame in the water away from the carbon foil. Hold the frame by the corner with the tweezers, with the Aluminized side towards yourself, the side where the carbon will be deposited. |
Figure 8. Practice raising the frame in the water. | Figure 8. Practice raising the frame in the water. | ||
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When ready to lift the carbon, position the submerged frame underneath the carbon foil, so the short edge of the carbon foil lines up with the top edge of the frame. | When ready to lift the carbon, position the submerged frame underneath the carbon foil, so the short edge of the carbon foil lines up with the top edge of the frame. | ||
- | Slowly and evenly, raise the frame and allow the carbon to drape over the aperture. | + | In an even motion, raise the frame and allow the carbon to drape over the aperture. Do not move the slide laterally, it will rip the carbon foil. Try not to make any sudden starts or stops in the raising motion. |
+ | |||
+ | Carefully dry the edges of the frame by dabbing with a Kimwipe. | ||
- | Carefully dry the edges of the frame with a Kimwipe. Do not apply pressure to the carbon foil or the mylar. | ||
Figure 10. Completed frame. Dry edges with Kimwipe. | Figure 10. Completed frame. Dry edges with Kimwipe. | ||
- | {{: | + | {{: |
[[procedures: | [[procedures: |