Author: GUOLONG YU ; Type of thesis: Master Thesis
Abstract: 6 GHz spun seamless Superconducting Radio Frequency (SRF) cavities are a very useful tool for testing alternative surface treatments in the fabrication of TESLA cavity. However, the spinning technique has also some drawbacks like contamination, surface damage in internal part due to the collapsible mandrel line. The first important step of the surface treatments is the mechanical polishing. For this purpose, a new, cheap, easy and highly efficient tumbling approach based on vibration was developed.
Before this approach was conceived, a few other methods, such as Turbula,
Centrifugal Barrel Polishing (CBP), custom Zigzag tumbler and “flower brush” have been studied and tested. But the result was not so satisfactory neither for the low erosion rate nor for the unstableness of the system nor for the complicated polishing process. At last, a vibration system with a simple structure, working stably was created after two experiments.
Another important task of the thesis is to update the optical inspection system for 6 GHz cavities. 3 stepper motors motor was added to move and rotate the cavity and realized auto focus of the miniature camera. A software was developed to achieve a full cavity photographed by one key operation using LabVIEW. A high-efficiency mechanical polishing system is generally judged by two aspects: one is whether the surface property satisfies the demand after polishing; the other is whether the erosion rate can reach and be stabilized at a high value which is comparable or greater than the existing products. The Radio Frequency (RF) test result indicates that the vibration system is feasible. The latest erosion rate 1 gram/hour i.e. removing 13 microns depth of inner surface materials per hour exceeds the performance of CBP, which is widely used in other laboratories in the world. The mechanical polishing process is elaborated and cavities that have been polished are listed. Several influencing factors on the erosion rate, such as tumbling time, media, signal and multi-cavities and plate direction are discussed at the end. A preliminary design of 1.3 GHz vibration system as the future development is provided for the next plan. Continue reading
Author: Eduard Chyhyrynets
Study of hard coatings for steel protection fromLiquid Metal Embrittlement-Didactic Material Prof. Enzo Palmieri
Author: Prof. Enzo Palmieri ; Type of thesis: Didactic Material
Abstract:
Commissioning of the JLab Surface Impedance Characterization (SIC) System – Charles Reece – TFSRF-2010
Title: Commissioning of the JLab Surface Impedance Characterization (SIC) System
Author: Charles Reece
Institution: Jefferson Lab, Newport News (VA) USA
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Surface topography investigation for thin film SRF – Genfa Wu – TFSRF-2010
Title: Surface topography investigation for thin film SRF
Author: Genfa Wu
Institution: Fermilab
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Laminated Conductor Structure for RF in normal conducting case – Yoshihisa Iwashita – TFSRF-2010
Title: Laminated Conductor Structure for RF in normal conducting case
Author: Yoshihisa Iwashita
Institution: Kyoto University
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Probing the Nonlinear Meissner Effect and the Enhancement of the Field Onset of Penetration of Vortices in Dirty Nb Films Under RF and DC Fields – Alex Gurevich – TFSRF-2010
Title: Probing the Nonlinear Meissner Effect and the Enhancement of the Field Onset of Penetration of Vortices in Dirty Nb Films Under RF and DC Fields
Author: Alex Gurevich
Institution: National High Magnetic Field Laboratory
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Cylindrical Post-Magnetron sputtering for High Rate Niobium deposition – Cristian Pira – TFSRF-2010
Title: Cylindrical Post-Magnetron sputtering for High Rate Niobium deposition
Author: Cristian Pira
Institution: INFN-LNL
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Texture Analysis of Niobium Thin Films – Josh Spradlin – TFSRF-2010
Title: Texture Analysis of Niobium Thin Films
Author: Josh Spradlin
Institution: SRF Institute – jefferson Lab, Newport News (VA) USA
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Literature Review of Nb Electroplating – Dmytro Chirkov – TFSRF-2010
Title: Literature Review of Nb Electroplating
Author: Dmytro Chirkov
Institution: Legnaro National Laboratories of INFN
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RF and structural characterization of SRF thin films produced by energetic condensation – AnneMarie Valente – TFSRF-2010
Title: RF and structural characterization of SRF thin films produced by energetic condensation
Author: AnneMarie Valente
Institution: Jefferson Lab – Newport News (VA) USA
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