scholarly journals First Proof-of-Concept Prototype of an Additive Manufactured Radio Frequency Quadrupole

Instruments ◽  
2021 ◽  
Vol 5 (4) ◽  
pp. 35
Author(s):  
Toms Torims ◽  
Guntis Pikurs ◽  
Samira Gruber ◽  
Maurizio Vretenar ◽  
Andris Ratkus ◽  
...  

Continuous developments in additive manufacturing (AM) technology are opening up opportunities in novel machining, and improving design alternatives for modern particle accelerator components. One of the most critical, complex, and delicate accelerator elements to manufacture and assemble is the radio frequency quadrupole (RFQ) linear accelerator, which is used as an injector for all large modern proton and ion accelerator systems. For this reason, the RFQ has been selected by a wide European collaboration participating in the AM developments of the I.FAST (Innovation Fostering in Accelerator Science and Technology) Horizon 2020 project. The RFQ is as an excellent candidate to show how sophisticated pure copper accelerator components can be manufactured by AM and how their functionalities can be boosted by this evolving technology. To show the feasibility of the AM process, a prototype RFQ section has been designed, corresponding to one-quarter of a 750 MHz 4-vane RFQ, which was optimised for production with state-of-the-art laser powder bed fusion (L-PBF) technology, and then manufactured in pure copper. To the best of the authors’ knowledge, this is the first RFQ section manufactured in the world by AM. Subsequently, geometrical precision and surface roughness of the prototype were measured. The results obtained are encouraging and confirm the feasibility of AM manufactured high-tech accelerator components. It has been also confirmed that the RFQ geometry, particularly the critical electrode modulation and the complex cooling channels, can be successfully realised thanks to the opportunities provided by the AM technology. Further prototypes will aim to improve surface roughness and to test vacuum properties. In parallel, laboratory measurements will start to test and improve the voltage holding properties of AM manufactured electrode samples.

2020 ◽  
Vol 38 (9A) ◽  
pp. 1352-1358
Author(s):  
Saad K. Shather ◽  
Abbas A. Ibrahim ◽  
Zainab H. Mohsein ◽  
Omar H. Hassoon

Discharge Machining is a non-traditional machining technique and usually applied for hard metals and complex shapes that difficult to machining in the traditional cutting process. This process depends on different parameters that can affect the material removal rate and surface roughness. The electrode material is one of the important parameters in Electro –Discharge Machining (EDM). In this paper, the experimental work carried out by using a composite material electrode and the workpiece material from a high-speed steel plate. The cutting conditions: current (10 Amps, 12 Amps, 14 Amps), pulse on time (100 µs, 150 µs, 200 µs), pulse off time 25 µs, casting technique has been carried out to prepare the composite electrodes copper-sliver. The experimental results showed that Copper-Sliver (weight ratio70:30) gives better results than commonly electrode copper, Material Removal Rate (MRR) Copper-Sliver composite electrode reach to 0.225 gm/min higher than the pure Copper electrode. The lower value of the tool wear rate achieved with the composite electrode is 0.0001 gm/min. The surface roughness of the workpiece improved with a composite electrode compared with the pure electrode.


Author(s):  
Ramzi Boussaid ◽  
G. Ban ◽  
G. Quéméner ◽  
Y. Merrer ◽  
J. Lorry

2014 ◽  
Vol 85 (2) ◽  
pp. 02A745
Author(s):  
C. Gabor ◽  
J. J. Back ◽  
D. C. Faircloth ◽  
S. R. Lawrie ◽  
A. P. Letchford

2001 ◽  
Vol 15 (20) ◽  
pp. 1912-1921 ◽  
Author(s):  
Valeri V. Raznikov ◽  
Ilia V. Soulimenkov ◽  
Viatcheslav I. Kozlovski ◽  
Alexander R. Pikhtelev ◽  
Marina O. Raznikova ◽  
...  

2017 ◽  
Vol 12 (02) ◽  
pp. T02005-T02005 ◽  
Author(s):  
C. Das ◽  
S. Dechoudhury ◽  
H.K. Pandey ◽  
V. Naik ◽  
A. Chakrabarti

Pramana ◽  
2002 ◽  
Vol 59 (6) ◽  
pp. 957-962
Author(s):  
V Banerjee ◽  
Alok Chakrabarti ◽  
Arup Bandyopadhyay ◽  
T K Bhaumik ◽  
M Mondal ◽  
...  

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