The Experts below are selected from a list of 58749 Experts worldwide ranked by ideXlab platform

S. Adjim - One of the best experts on this subject based on the ideXlab platform.

  • Parameters effects analysis of rotary ultrasonic machining on carbon fiber reinforced Plastic (CFRP) composite using an interactive RSM Method
    International Journal on Interactive Design and Manufacturing (IJIDeM), 2019
    Co-Authors: A. Slimane, S. Slimane, S. Kebdani, M. Chaib, S. Dahmane, B. Bouchouicha, N. Sardi, S. Adjim
    Abstract:

    The purpose of this work is indicated to study the influence of machining parameters on cutting force by the Response surface method (RSM), the effects of vibration amplitude and tool rotation speed with the feedrate on cutting force have been studied on the drilling of carbon fiber reinforced Plastic (CFRP) composites using rotary ultrasonic machining (RUM). This method allows us to have an integrated mix of variables to obtain an optimal value of cutting force in order to optimize the machining operation of carbon fiber reinforced Plastic (CFRP), as well as to choose the most influential parameters on the machining operation in order to obtain the right information as soon as possible and for the least cost.

Weilong Cong - One of the best experts on this subject based on the ideXlab platform.

D. E. Gusev - One of the best experts on this subject based on the ideXlab platform.

Fuda Ning - One of the best experts on this subject based on the ideXlab platform.

  • A novel printing strategy in additive manufacturing of continuous carbon fiber reinforced Plastic composites
    Manufacturing Letters, 2021
    Co-Authors: Fuji Wang, Jiaquan Zheng, Gongshuo Wang, Dayue Jiang, Fuda Ning
    Abstract:

    Abstract Additive manufacturing of continuous carbon fiber reinforced Plastic composites (C-CFRP) has raised considerable interest. Developing continuous printing trajectories to improve the mechanical properties of the as-built parts is of great significance. However, myriad jumping paths and gathered connection paths occur in the existing printing strategies causing inferior part quality. In this study, we present a novel continuous printing strategy to avoid jumping paths and achieve the unique dispersion of connection paths. Tensile and three-point bending tests are conducted to verify the enhanced mechanical performance. This work enables us to eliminate the cutting mechanism in the commercial C-CFRP printers.

  • additive manufacturing of carbon fiber reinforced Plastic composites using fused deposition modeling effects of process parameters on tensile properties
    Journal of Composite Materials, 2017
    Co-Authors: Fuda Ning, Yingbin Hu, Weilong Cong, Hui Wang
    Abstract:

    Carbon fiber-reinforced Plastic composites have been intensively used for many applications due to their attractive properties. The increasing demand of carbon fiber-reinforced Plastic composites is driving novel manufacturing processes to be in short manufacturing cycle time and low production cost, which is difficult to realize during carbon fiber-reinforced Plastic composites fabrication in common molding processes. Fused deposition modeling, as one of the additive manufacturing techniques, has been reported for fabricating carbon fiber-reinforced Plastic composites. The process parameters used in fused deposition modeling of carbon fiber-reinforced Plastic composites follow those in fused deposition modeling of pure Plastic materials. After adding fiber reinforcements, it is crucial to investigate proper fused deposition modeling process parameters to ensure the quality of the carbon fiber-reinforced Plastic parts fabricated by fused deposition modeling. However, there are no reported investigations o...

  • surface grinding of carbon fiber reinforced Plastic composites using rotary ultrasonic machining effects of tool variables
    Advances in Mechanical Engineering, 2016
    Co-Authors: Hui Wang, Fuda Ning, Z J Pei, Pksc Fernando, Weilong Cong
    Abstract:

    Carbon fiber–reinforced Plastic composites have many superior properties, including low density, high strength-to-weight ratio, and good durability, which make them attractive in many industries. However, due to anisotropic properties, high stiffness, and high abrasiveness of carbon fibers in carbon fiber–reinforced Plastic, high cutting force, high tool wear, and high surface roughness are always caused in conventional machining processes. This article reports an investigation using rotary ultrasonic machining in surface grinding of carbon fiber–reinforced Plastic composites in order to develop an effective and high-quality surface grinding process. In rotary ultrasonic machining surface grinding of carbon fiber–reinforced Plastic composites, tool selection is of great importance since tool variables will significantly affect output variables. In this work, the effects of tool variables, including abrasive size, abrasive concentration, number of slots, and tool end geometry, on machining performances, in...

A. Slimane - One of the best experts on this subject based on the ideXlab platform.

  • Parameters effects analysis of rotary ultrasonic machining on carbon fiber reinforced Plastic (CFRP) composite using an interactive RSM Method
    International Journal on Interactive Design and Manufacturing (IJIDeM), 2019
    Co-Authors: A. Slimane, S. Slimane, S. Kebdani, M. Chaib, S. Dahmane, B. Bouchouicha, N. Sardi, S. Adjim
    Abstract:

    The purpose of this work is indicated to study the influence of machining parameters on cutting force by the Response surface method (RSM), the effects of vibration amplitude and tool rotation speed with the feedrate on cutting force have been studied on the drilling of carbon fiber reinforced Plastic (CFRP) composites using rotary ultrasonic machining (RUM). This method allows us to have an integrated mix of variables to obtain an optimal value of cutting force in order to optimize the machining operation of carbon fiber reinforced Plastic (CFRP), as well as to choose the most influential parameters on the machining operation in order to obtain the right information as soon as possible and for the least cost.