Motion control for uniaxial rotational molding

被引:7
|
作者
Adams, Jonathan [1 ]
Jin, Yan [1 ]
Barnes, David [2 ]
Butterfield, Joseph [1 ]
Kearnes, Mark [3 ]
机构
[1] Queens Univ Belfast, Sch Mech & Aerosp Engn, Belfast, Antrim, North Ireland
[2] Queens Univ Belfast, Sch Math & Phys, Belfast, Antrim, North Ireland
[3] Queens Univ Belfast, Polymer Proc Res Ctr, Belfast, Antrim, North Ireland
关键词
manufacturing; mechanical properties; molding; polyolefins; thermoplastics; HEAT-TRANSFER; POLYMER POWDERS; CYCLE TIME; SIMULATION; FLOW; PARTICLES; DENSITY;
D O I
10.1002/app.49879
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Motion control parameters of rotational molding can affect process efficiency and product quality. Different motion control schemes will lead to varied powder flow regimes exhibiting different levels of mixing and temperature uniformity. The change in nature of powder flow during a molding cycle suggests that varying the rotational speed could improve the powder mixing and temperature uniformity, therefore potentially reducing processing time and energy consumption. Experiments completed investigating powder flow under uniaxial rotation show that savings of up to 2.5% of the heating cycle time can be achieved. This validates the hypothesis that altering the rotational speed to maintain the ideal powder flow throughout the heating cycle can be utilized to reduce the time taken for all the polymer powder to adhere to the mold wall. The effect of rotational speed on wall thickness uniformity and impact strength were investigated and discussed. Results show a strong influence of rotational speed (and powder flow) on the wall thickness uniformity of the moldings with wall thickness uniformity deviations of up to 50% found (within the 2-35 RPM speed range tested).
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Rotational hot Brownian motion
    Rings, D.
    Chakraborty, D.
    Kroy, K.
    NEW JOURNAL OF PHYSICS, 2012, 14
  • [22] EllipsoidalFiberFoam, a novel Eulerian-Lagrangian solver for resolving translational and rotational motion dynamics of ellipsoidal fibers
    Reza-Asl, Kazem
    Rad, Ebrahim Goshtasbi
    Abouali, Omid
    COMPUTER PHYSICS COMMUNICATIONS, 2025, 309
  • [23] Phosphorous Antioxidants Against Polypropylene Thermal Degradation During Rotational Molding-Kinetic Modeling
    Sarrabi, Salah
    Lacrampe, Marie-France
    Krawczak, Patricia
    JOURNAL OF APPLIED POLYMER SCIENCE, 2015, 132 (03)
  • [24] Heat Transfer during Rotational Molding of a Single Axis Device
    He, Yuelong
    Ding, Yumei
    ADVANCED POLYMER PROCESSING, 2010, 87-88 : 116 - 118
  • [25] Adhesion Improvement between PE and PA in Multilayer Rotational Molding
    Sezemsky, Jan
    Spatenka, Petr
    POLYMERS, 2021, 13 (03) : 1 - 13
  • [26] Combined effect of polymer sintering and heat transfer in rotational molding
    Bellehumeur, CT
    ANTEC '99: PLASTICS BRIDGING THE MILLENNIA, CONFERENCE PROCEEDINGS, VOLS I-III: VOL I: PROCESSING; VOL II: MATERIALS; VOL III: SPECIAL AREAS;, 1999, : 1446 - 1450
  • [27] Rotational molding of compatibilized PA6/LLDPE blends
    Lopez GonzalezNunez, Rosa Gabriela
    Vazquez-Fletes, Roberto Carlos
    Ortega-Gudino, Pedro
    Vazquez-Lepe, Milton Oswaldo
    Rodrigue, Denis
    Gonzalez-Nunez, Ruben
    POLYMER ENGINEERING AND SCIENCE, 2021, 61 (04): : 1007 - 1017
  • [28] Morphology copolymers development for single-site in rotational molding
    Xu, H.
    Bellehurneur, C. T.
    JOURNAL OF APPLIED POLYMER SCIENCE, 2008, 107 (01) : 236 - 245
  • [29] Rotational molding of biodegradable composites obtained with PLA reinforced by the wooden backbone of opuntia ficus indica cladodes
    Greco, Antonio
    Maffezzoli, Alfonso
    JOURNAL OF APPLIED POLYMER SCIENCE, 2015, 132 (48)
  • [30] Study on Molding Rate with Segmented Control in Glass Molding Process
    Zhu, Kejun
    Zhu, Xiaolong
    2019 2ND WORLD CONFERENCE ON MECHANICAL ENGINEERING AND INTELLIGENT MANUFACTURING (WCMEIM 2019), 2019, : 571 - 574