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Original Articles

Mineral fillers for wood–plastic composites

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Pages 34-40 | Received 16 Sep 2009, Accepted 25 Dec 2009, Published online: 10 Jun 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Taneli Väisänen, Jorma Heikkinen, Laura Tomppo & Reijo Lappalainen. (2016) Softwood Distillate as a Bio-Based Additive in Wood-Plastic Composites. Journal of Wood Chemistry and Technology 36:4, pages 278-287.
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Ossi Martikka, Tiina Huuhilo, Svetlana Butylina & Timo Kärki. (2012) The effect of mineral fillers on the thermal properties of wood-plastic composites. Wood Material Science & Engineering 7:2, pages 107-114.
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Articles from other publishers (22)

Mustafa AslanKalusuraman Gananiar, Kenan Büyükkaya, Ashkan EzzatkhahÜmit AlverThirumalai Kumaran Sundaresan. (2023) Physio-mechanical Characterization and Thermal Property Evaluation of Polylactic Acid/Waste Hazelnut Shell Flour Composite with Inorganic Additives. Journal of Testing and Evaluation 51:5, pages 20220435.
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Tianyuan Chen, Qichao Ma, Yudong Li & Guoliang Li. (2023) Preparation and Characterization of Wood Composites for Wood Restoration. Forests 14:9, pages 1743.
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Mahdi Khamseh, Mahshid Maroufkhani, Sajjad Moghanlou, Alireza Lotfi, Behzad Pourabbas & Mir Karim Razavi Aghjeh. (2023) Development of sustainable cellulose‐based composite of polypropylene reinforced by recycled microfibrillar poly (ethylene terephthalate). Polymer Composites.
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Jakub Kawalerczyk, Joanna Walkiewicz, Dorota Dziurka & Radosław Mirski. 2023. Emerging Nanomaterials. Emerging Nanomaterials 65 96 .
Sodagudi Francis XavierS.F. Xavier. 2022. Thermoplastic Polymer Composites. Thermoplastic Polymer Composites 887 977 .
João Cura D'Ars de Figueiredo Junior, Hudson Diniz Pereira Marques & Glaura Goulart Silva. (2022) Expanded vermiculite and polyvinyl acetate composite as gap filler for wooden objects conservation. Journal of Cultural Heritage 55, pages 88-94.
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Aujchariya Chotikhun, Jitralada Kittijaruwattana, Wa Ode Muliastuty Arsyad, Emilia-Adela Salca, Yusuf Sudo Hadi & Salim Hiziroglu. (2022) Some Properties of Wood Plastic Composites Made from Rubberwood, Recycled Plastic and Silica. Forests 13:3, pages 427.
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Magdalena Broda, Paulina Kryg & Graham Alan Ormondroyd. (2021) Gap-Fillers for Wooden Artefacts Exposed Outdoors—A Review. Forests 12:5, pages 606.
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T. Ozyhar, F. Baradel & J. Zoppe. (2020) Effect of functional mineral additive on processability and material properties of wood-fiber reinforced poly(lactic acid) (PLA) composites. Composites Part A: Applied Science and Manufacturing 132, pages 105827.
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Anna Keskisaari, Timo Kärki & Tommi Vuorinen. (2019) Mechanical Properties of Recycled Polymer Composites Made from Side-Stream Materials from Different Industries. Sustainability 11:21, pages 6054.
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Nasır Narlıoğlu, Tufan Salan, Eyyüp Karaoğul & Mehmet Hakkı Alma. (2018) Evaluation of potassium humate material in wood-plastic composite productionAhşap-plastik kompozit üretiminde potasyum humat maddesinin değerlendirilmesi. Kastamonu Üniversitesi Orman Fakültesi Dergisi 18:2, pages 189-202.
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Anna Keskisaari & Timo Kärki. (2017) Utilization of Industrial Wastes from Mining and Packaging Industries in Wood-Plastic Composites. Journal of Polymers and the Environment 26:4, pages 1504-1510.
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Svetlana Butylina. 2018. Polypropylene‐Based Biocomposites and Bionanocomposites. Polypropylene‐Based Biocomposites and Bionanocomposites 113 144 .
P. M. Visakh. 2018. Polypropylene‐Based Biocomposites and Bionanocomposites. Polypropylene‐Based Biocomposites and Bionanocomposites 1 22 .
Taneli Väisänen, Jorma Heikkinen, Laura Tomppo & Reijo Lappalainen. (2016) Improving the properties of wood–plastic composite through addition of hardwood pyrolysis liquid. Journal of Thermoplastic Composite Materials 29:11, pages 1587-1598.
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Olli Väntsi & Timo Kärki. (2015) Different coupling agents in wood-polypropylene composites containing recycled mineral wool: A comparison of the effects. Journal of Reinforced Plastics and Composites 34:11, pages 879-895.
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Olli Väntsi & Timo Kärki. (2014) Utilization of recycled mineral wool as filler in wood–polypropylene composites. Construction and Building Materials 55, pages 220-226.
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Irina Turku & Timo Kärki. (2013) The effect of carbon fibers, glass fibers and nanoclay on wood flour-polypropylene composite propertiesDer Einfluss von Karbonfasern, Glasfasern und Nanoton auf die Eigenschaften von Holz-Polypropylen-Verbundwerkstoffen. European Journal of Wood and Wood Products 72:1, pages 73-79.
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Marina Nikolaeva & Timo Kärki. (2012) Influence of mineral fillers on the fire retardant properties of wood‐polypropylene composites. Fire and Materials 37:8, pages 612-620.
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Olli Väntsi & Timo Kärki. (2013) Heat Build-Up and Fire Performance of Wood-Polypropylene Composites Containing Recycled Mineral Wool. Advanced Materials Research 849, pages 269-276.
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Min Xu & Jian Li. (2012) Effect of adding rubber powder to poplar particles on composite properties. Bioresource Technology 118, pages 56-60.
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Adriana Gregorova, Michal Machovsky & Rupert Wimmer. (2012) Viscoelastic Properties of Mineral-Filled Poly(lactic acid) Composites. International Journal of Polymer Science 2012, pages 1-6.
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