Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Influence of Manufacturing Parameters on the Properties of 3D Printed Polylactic Acid Carbon Fiber Components

View through CrossRef
This study investigates the impact of printing parameters on fused filament fabrication parts using Polylactic acid and polylactic acid carbon fibre filament. It aims to determine the ideal conditions for 3dprinter to increase the strength of these materials. The study uses to find the effects of infill density, orientation, and layer height on the mechanical characteristics of the materials. Polylactic acid Carbon Fiber is found to be more rigid and have higher tensile strength than Polylactic acid. The most significant parameter influencing results is polylactic acid, despite its more apparent effect. The study suggests that the manufacturing parameters to print the part and can result in higher polylactic acid carbon fibre strength than polylactic acid filament, providing valuable insights for model design and manufacturing. Infill density impact less compare to other two parameter of layer height and orientation. Compare to polylactic acid composite polylactic acid carbon fibre influence the parameters to increase of strength.
Title: Influence of Manufacturing Parameters on the Properties of 3D Printed Polylactic Acid Carbon Fiber Components
Description:
This study investigates the impact of printing parameters on fused filament fabrication parts using Polylactic acid and polylactic acid carbon fibre filament.
It aims to determine the ideal conditions for 3dprinter to increase the strength of these materials.
The study uses to find the effects of infill density, orientation, and layer height on the mechanical characteristics of the materials.
Polylactic acid Carbon Fiber is found to be more rigid and have higher tensile strength than Polylactic acid.
The most significant parameter influencing results is polylactic acid, despite its more apparent effect.
The study suggests that the manufacturing parameters to print the part and can result in higher polylactic acid carbon fibre strength than polylactic acid filament, providing valuable insights for model design and manufacturing.
Infill density impact less compare to other two parameter of layer height and orientation.
Compare to polylactic acid composite polylactic acid carbon fibre influence the parameters to increase of strength.

Related Results

Acid Fracturing Technique for Carbonate Reservoirs Using Nitric Acid Powder
Acid Fracturing Technique for Carbonate Reservoirs Using Nitric Acid Powder
Abstract The length of the etched fracture is rather limited utilizing traditional acid fracturing techniques, especially in a high-temperature carbonate reservoi...
Exploration of the Potential for Efficient Fiber Degradation by Intestinal Microorganisms in Diqing Tibetan Pigs
Exploration of the Potential for Efficient Fiber Degradation by Intestinal Microorganisms in Diqing Tibetan Pigs
In order to study the potential for efficient fiber degradation by intestinal microorganisms in Diqing Tibetan pigs, we first investigated the dietary structure of Diqing Tibetan p...
E-Press and Oppress
E-Press and Oppress
From elephants to ABBA fans, silicon to hormone, the following discussion uses a new research method to look at printed text, motion pictures and a te...
Carbon export in the land-to-ocean aquatic continuum (LOAC) of China
Carbon export in the land-to-ocean aquatic continuum (LOAC) of China
It has long been recognized that terrestrial ecosystems are not isolated from other earth systems with all the absorbed carbon being permanently sequestered on land. Inland water s...
Fiber and Nutritional Health
Fiber and Nutritional Health
Populations that consume more dietary fiber have less chronic disease. According to the 2002 Dietary Reference Intakes (DRIs), dietary fiber includes carbohydrates and lignin that ...
Hybridization of Hemp Fiber and Recycled-Carbon Fiber in Polypropylene Composites
Hybridization of Hemp Fiber and Recycled-Carbon Fiber in Polypropylene Composites
In recent years there has been a substantial growth in the use of natural fiber reinforced composite in more advanced applications. However, high strength applications require high...
Progressive damage for 3D printed composites with variable fiber volume content and ply location
Progressive damage for 3D printed composites with variable fiber volume content and ply location
At present, 3D printed continuous carbon fiber reinforced composites (CCFRCs) are widely used in aviation and automotive fields. Most of the existing research on 3D printed CCFRCs ...
Preparation and evaluation of artificial bone complex material: chitosan/ polylactic complex braids
Preparation and evaluation of artificial bone complex material: chitosan/ polylactic complex braids
Polymer has been widely applied in the biomedical field. In this study, degradable polylactic complex yarns are twisted and braided by a 16-spindle braid machine; therefore, a poly...

Back to Top