AbstractThe design of coronary stents imposes high demands in terms of dimensional tolerance and surface finish. These devices are manufactured by laser microcutting of miniature tubes in materials such as stainless steel, cobalt chromium alloys and Nitinol. The work presented here is focused on fiber laser microcutting for coronary struts in AISI 316L stainless steel. This work studies the influence of gases such compressed air and argon passing through the tube in order to drag molten material while laser microcutting is performed. The experimental work studies the influence of beam spot overlap and pulse energy on back wall dross and average surface roughness, using response surface methodology. The results indicate that the introduction...
Manufacturing of cardiovascular stents most commonly involve the use of tubular precursors and laser...
Coronary stents are thin-walled and mesh-structured metallic implants, which are made generally by ...
Cardiovascular stent is a kind of mechanical device, which is chronically implanted into arteries in...
AbstractThe design of coronary stents imposes high demands in terms of dimensional tolerance and sur...
Laser cutting is a key technology for the medical devices industry, providing the flexibility, and p...
Cobalt chromium (CoCr) alloy tubes have been widely used in manufacturing of vascular stents, due to...
The coronary stent fabrication requires a high-precision profile cut. Fibre lasers present a solutio...
Magnesium alloys constitute an attractive solution for cardiovascular stent applications due to thei...
Stents are commonly inserted into coronary arteries for treating cardiovascular diseases. Nonetheles...
Magnesium alloys are of increasing interest in the medical industry due to their biodegradability pr...
For biomedical devices, cardiovascular stents in particular, the employed material plays a crucial r...
The medical device industry has created a big demand for laser micro machining. Flash-lamp pump soli...
Cardiovascular stents are biomedical devices for the treatment of stenosis problem in the vascular s...
This paper gives an overview of the laser cutting equipment developed for stent cutting: Nd:YAG, fi...
Manufacturing of cardiovascular stents most commonly involve the use of tubular precursors and laser...
Coronary stents are thin-walled and mesh-structured metallic implants, which are made generally by ...
Cardiovascular stent is a kind of mechanical device, which is chronically implanted into arteries in...
AbstractThe design of coronary stents imposes high demands in terms of dimensional tolerance and sur...
Laser cutting is a key technology for the medical devices industry, providing the flexibility, and p...
Cobalt chromium (CoCr) alloy tubes have been widely used in manufacturing of vascular stents, due to...
The coronary stent fabrication requires a high-precision profile cut. Fibre lasers present a solutio...
Magnesium alloys constitute an attractive solution for cardiovascular stent applications due to thei...
Stents are commonly inserted into coronary arteries for treating cardiovascular diseases. Nonetheles...
Magnesium alloys are of increasing interest in the medical industry due to their biodegradability pr...
For biomedical devices, cardiovascular stents in particular, the employed material plays a crucial r...
The medical device industry has created a big demand for laser micro machining. Flash-lamp pump soli...
Cardiovascular stents are biomedical devices for the treatment of stenosis problem in the vascular s...
This paper gives an overview of the laser cutting equipment developed for stent cutting: Nd:YAG, fi...
Manufacturing of cardiovascular stents most commonly involve the use of tubular precursors and laser...
Coronary stents are thin-walled and mesh-structured metallic implants, which are made generally by ...
Cardiovascular stent is a kind of mechanical device, which is chronically implanted into arteries in...