by in Uncategorized

Fatigue crack growth testing in chlorinated water at elevated temperatures – Test equipment and test procedure

Joerg Fischer, Patrick R. Bradler, Reinhold W. Lang Papers # 2018 Las-Vegas In the present paper, a novel test system for conducting fatigue crack growth (FCG) experiments under superimposed mechanical-environmental conditions is presented. FCG experiments were performed on a polypropylene (PP) grade and a short-glass fiber reinforced polyamide 66 (PA-GF) grade as model materials. The […]

by in Uncategorized

Effect of beta-nucleation on aging and crack growth resistance of polypropylene exposed to chlorinated water

Joerg Fischer, Paul J. Freudenthaler, Patrick R. Bradler, Reinhold W. Lang, Susan C. Mantell Papers # 2018 Las-Vegas This research addresses the effect of nucleation on the global aging behavior and the fatigue crack growth (FCG) resistance of commercial alpha- and beta-nucleated polypropylene random copolymer pipe grades (PP-R) when exposed to chlorinated water (5 mg/l […]

by in Uncategorized

SLOW CRACK GROWTH IN POLYETHYLENE PIPES: FRACTURE SURFACE EVIDENCE FOR THE SLOW CRACK GROWTH MECHANISM IN ACCELERATED TESTS

Mark Boerakker, Rudy Deblieck, a Harm Caelers, Arno Wilbers, Tine Boonen a DSM, Britta Gerets, Mirko Wenzel # 2021 Amsterdam Components made of plastic are facing ever-increasing demands with respect to their production, use and durability. This also holds for gas and drinking water pressure pipes made of high-density polyethylene (PE-HD), where service lifetimes of […]

by in Uncategorized

DRAINAGE HANDBOOK STRUCTURAL DESIGN PROCEDURE FOR CORRUGATED POLYOLEFIN PIPE

Joe Babcanec, P.E., Dan Currence, P.E. # 2021 Amsterdam The newly released Drainage Handbook provides complete guidance on corrugated polyolefin pipe. Perhaps the biggest contribution this new handbook makes to the advancement of both HDPE and PP corrugated plastic pipe is the design procedure presented. The design procedure reflects the industry’s recommended practice for using the American […]

by in Uncategorized

RESTRAINED MECHANICAL JOINING DEVICES FOR HDPE PIPE: PERFORMANCE CHARACTERISTICS AND TEST PROTOCOL

Justin Brandt, Mike Griffin, Tony Cuvo # 2021 Amsterdam As plastic pipe gains share in new markets and applications, additional joining methods add further value, enabling continued growth for plastic pipes. To date, definitions of a “fit-for-purpose” mechanical joint for High Density Polyethylene (HDPE) pressure piping systems can vary significantly. As such, mechanical joints are typically undifferentiated […]

by in Uncategorized

USABILITY OF THE STRAIN HARDENING TEST AS A COMPONENT TEST FOR POLYETHYLENE PIPES

Britta Gerets, Mirko Wenzel, Kurt Engelsing # 2021 Amsterdam The strain hardening test (SHT, ISO 18488 [1]) becomes increasingly important for the characterization of high-density polyethylene (HDPE) grades and pipes made thereof. With regard to small pipe diameters, a smaller test specimen than the one defined in ISO 18488 has been developed. SHT results were […]

by in Uncategorized

GROWTH IN THE USE OF POLYETHYLENE PIPES IN MEA FOR NATURAL GAS UTILITY DISTRIBUTION

Sultan Alkendi, Mohamed Jaber, Ahed Atef Helal # 2021 Amsterdam The current push to reduce governmental energy subsidies has moved the need to adapt utility gas distribution networks toward the top of Middle Eastern governmental near-term agendas. Egypt is at the forefront of this push towards gasification. The United Arab Emirates has started on the […]

by in Uncategorized

FIELD TEST OF GLASS FIBER REINFORCED POLYEHYLENE PIPE SYSTEM AT SOFTEN GROUND

Mitsuaki Tokiyoshi, Gentaro Takahara, Joji Hinobayashi, Toshinori Kawabata, Takashi Kuriyama Papers # 2018 Las-Vegas Glass fiber reinforced polyethylene pipes and fittings are controlled for bending characteristics (Strength and stiffness) for vertical and axial directions of pipe by spiral cross winding method. Generally, to use this method, it takes much stronger for vertical strength than axials […]

Switch The Language
    × Contact Us!

    PT SHUANGLIN PIPE INDONESIA is a joint venture subsidiary of Zhejiang Shuanglin Environment Co., Ltd. Our factory is located in CIKARANG, Indonesia. The plant covers an area of 4,000 square meters. Our company has introduced advanced production line and a professional production management team. The company mainly produces municipal and residential building water supply and drainage, sewage pipes and complete sets of systems. The product line includes HDPE/PP double-wall corrugated pipe and inspection wells for pipeline connection and other accessories.

    ADDRESS

    KAWASAN INDUSTRI DELTA SILICON 5 JL.KENARI BLOCK G.1 NO.28A-B LIPPO CIKARANG CIBATU CIKARANG SELATAN KAB BEKASI JAWA BARAT

    ADDRESS

    PT SHUANGLIN PIPE INDONESIA
    (NEW PLANT KITIC)
    Jl. Anggrek VII, Kavling No.26 Kawasan Industri Terpadu Indonesia China (KITIC ) Deltamas, Desa Nagasari. Kec. Serang Baru. Kabupaten Bekasi. Jawa Barat 17330

    PHONE

    (021) 89915151

    EMAIL

    info@shuanglinpipe.co.id