New microproducts need the utilization of a diversity of materials and have complicated three-dimensional (3D) microstructures with high aspect ratios. To date, many micromanufacturing processes have been developed but specific class of such processes are applicable for fabrication of functional and true 3D microcomponents/assemblies. The aptitude to process a broad range of materials and the ability to fabricate functional and geometrically complicated 3D microstructures provides the additive manufacturing (AM) processes some profits over traditional methods, such as lithography-based or micromachining approaches investigated widely in the past. In this paper, 3D micro-AM processes have been classified into three main groups, including sca...
Conventional microfabrication processes have been well established, but their capabilities are gener...
Additive manufacturing (AM) has first emerged in 1987 with the invention of stereolithography. The A...
This thesis presents two technologies with the potential to radically change the way we manufacture,...
Additive manufacturing (AM) technology has been researched and developed for almost three decades. M...
Additive manufacturing (AM) technology has been researched and developed for almost three decades. M...
Recently, additive manufacturing (AM) processes applied to the micrometer range are subjected to int...
Conventional microfabrication processes have been well established, but their capabilities are gener...
With the increased demand for highly customized products, Additive Manufacturing (AM) becomes one of...
With the increased demand for highly customized products, Additive Manufacturing (AM) becomes one of...
Additive manufacturing (AM) has first emerged in 1987 with the invention of stereolithography. The A...
Additive manufacturing, well known as 3D printing, is used to fabricate complex geometries and custo...
The use of conventional manufacturing methods is mainly limited by the size of the production run an...
Additive Manufacturing (AM) technology in 3-D printing has grown into a great field in today’s techn...
Additive manufacturing (AM), also known as threedimensional (3-D) printing, is the process of joinin...
The introduction of Hybrid Manufacturing, according to which multiple processing stages are combined...
Conventional microfabrication processes have been well established, but their capabilities are gener...
Additive manufacturing (AM) has first emerged in 1987 with the invention of stereolithography. The A...
This thesis presents two technologies with the potential to radically change the way we manufacture,...
Additive manufacturing (AM) technology has been researched and developed for almost three decades. M...
Additive manufacturing (AM) technology has been researched and developed for almost three decades. M...
Recently, additive manufacturing (AM) processes applied to the micrometer range are subjected to int...
Conventional microfabrication processes have been well established, but their capabilities are gener...
With the increased demand for highly customized products, Additive Manufacturing (AM) becomes one of...
With the increased demand for highly customized products, Additive Manufacturing (AM) becomes one of...
Additive manufacturing (AM) has first emerged in 1987 with the invention of stereolithography. The A...
Additive manufacturing, well known as 3D printing, is used to fabricate complex geometries and custo...
The use of conventional manufacturing methods is mainly limited by the size of the production run an...
Additive Manufacturing (AM) technology in 3-D printing has grown into a great field in today’s techn...
Additive manufacturing (AM), also known as threedimensional (3-D) printing, is the process of joinin...
The introduction of Hybrid Manufacturing, according to which multiple processing stages are combined...
Conventional microfabrication processes have been well established, but their capabilities are gener...
Additive manufacturing (AM) has first emerged in 1987 with the invention of stereolithography. The A...
This thesis presents two technologies with the potential to radically change the way we manufacture,...