{"id":20,"count":27,"description":"<div style=\"margin: 36px 0 44px 0;padding: 28px 32px;background: #f5f8f6;border-left: 4px solid #1f6f5b;border-radius: 0 18px 18px 0;max-width: 980px\">\r\n\r\n  <div style=\"font-size: 13px;letter-spacing: .12em;text-transform: uppercase;color: #1f6f5b;font-weight: 700;margin: 0 0 10px 0\">\r\n    NEW \u00b7 Hub page\r\n  <\/div>\r\n\r\n  <h2 style=\"font-size: 28px;line-height: 1.25;margin: 0 0 14px 0;color: #16221f\">\r\n    New polyamide selection tools on the PA6 GF30 page\r\n  <\/h2>\r\n\r\n  <p style=\"margin: 0 0 18px 0;font-size: 17px;line-height: 1.65;color: #222\">\r\n    We have built a dedicated technical page for glass-filled PA6 GF30 polyamides: a comparison radar of 13 grades, interactive selection by application, an injection-moulding machine diagram with 7 temperature zones, and a full TDS table for Examid\u00ae PA6 GF30 \/ HI \/ LM \/ 62100i.\r\n  <\/p>\r\n\r\n  <a href=\"https:\/\/materialwizard.com.ua\/pa6-gf30\/\" style=\"font-size: 16px;font-weight: 700;color: #1f6f5b;text-decoration: none\">\r\n    Go to the PA6 GF30 hub page \u2192\r\n  <\/a>\r\n\r\n<\/div>\n\n<div style=\"margin: 36px 0 44px 0;padding: 28px 32px;background: #f5f8f6;border-left: 4px solid #1f6f5b;border-radius: 0 18px 18px 0;max-width: 980px\">\n\n  <div style=\"font-size: 13px;letter-spacing: .12em;text-transform: uppercase;color: #1f6f5b;font-weight: 700;margin: 0 0 10px 0\">\n    NEW \u00b7 Hub page\n  <\/div>\n\n  <h2 style=\"font-size: 28px;line-height: 1.25;margin: 0 0 14px 0;color: #16221f\">\n    New polyamide selection tools on the PA6 GF50 page\n  <\/h2>\n\n  <p style=\"margin: 0 0 18px 0;font-size: 17px;line-height: 1.65;color: #222\">\n    We have built a dedicated technical page for glass-filled PA6 GF50 polyamide (50% glass fibre, modulus \u224816 500 MPa): a comparison radar, interactive selection by application, comparison with PA66 GF50 \/ PA66 CF30 \/ PA6 LGF40 and a full TDS table for Examid\u00ae PA6 GF50 R10.\n  <\/p>\n\n  <a href=\"https:\/\/materialwizard.com.ua\/pa6-gf50\/\" style=\"font-size: 16px;font-weight: 700;color: #1f6f5b;text-decoration: none\">\n    Go to the PA6 GF50 hub page \u2192\n  <\/a>\n\n<\/div>\r\n\r\n<p><strong>Glass-filled polyamides (PA GF)<\/strong> are engineering thermoplastics based on the polyamides PA6, PA66, PA610, PA612 and PA12, reinforced with 10\u201350% glass fibre. Adding glass fibre increases the modulus of elasticity by a factor of 3\u20134, raises tensile strength by 80\u2013120%, lifts the HDT\/A heat resistance from 60 \u00b0C to 200\u2013250 \u00b0C, and lowers linear moulding shrinkage from 1,4\u20131,8% to 0,3\u20130,6%. This makes PA-GF the material of choice for metal replacement in the automotive industry, thermal insulation of aluminium profiles, power-tool housings and load-bearing furniture-fitting components.<\/p>\r\n\r\n<p><strong>Material Wizard<\/strong> manufactures and supplies the <strong>Examid\u00ae<\/strong> line of glass-filled polyamides (PA6 GF10\u2013GF50, PA66 GF30\/GF50, specialised HI \/ LM \/ FR \/ cold-resistant \/ LGF modifications) and <strong>Armamid<\/strong>, and also imports BASF Ultramid, DuPont Zytel, Lanxess Durethan, DSM Akulon, Solvay Technyl, EMS-Grivory, Evonik Vestamid, Akro-Plastic Akromid and RadiciGroup Radilon grades. We select the material to match your drawing, the part's temperature regime and the parameters of your injection-moulding machine.<\/p>\r\n\r\n<h2>Key technical properties of PA6-GF30 and PA66-GF30<\/h2>\r\n\r\n<p><em>The figures are given for standard compounds in the dry-as-moulded (DAM) state. Actual lot values are stated in the material's technical data sheet.<\/em><\/p>\r\n\r\n<table>\r\n<thead>\r\n<tr><th>Property<\/th><th>PA6-GF30<\/th><th>PA66-GF30<\/th><th>Method<\/th><\/tr>\r\n<\/thead>\r\n<tbody>\r\n<tr><td>Density<\/td><td>1,36 g\/cm\u00b3<\/td><td>1,37 g\/cm\u00b3<\/td><td>ISO 1183<\/td><\/tr>\r\n<tr><td>Tensile modulus of elasticity<\/td><td>9 500 MPa<\/td><td>10 000 MPa<\/td><td>ISO 527<\/td><\/tr>\r\n<tr><td>Tensile strength<\/td><td>175 MPa<\/td><td>185 MPa<\/td><td>ISO 527<\/td><\/tr>\r\n<tr><td>Elongation at break<\/td><td>3,5%<\/td><td>3,0%<\/td><td>ISO 527<\/td><\/tr>\r\n<tr><td>Flexural modulus of elasticity<\/td><td>9 000 MPa<\/td><td>9 500 MPa<\/td><td>ISO 178<\/td><\/tr>\r\n<tr><td>Charpy notched impact strength (23 \u00b0C)<\/td><td>11 kJ\/m\u00b2<\/td><td>12 kJ\/m\u00b2<\/td><td>ISO 179\/1eA<\/td><\/tr>\r\n<tr><td>Heat deflection temperature (HDT\/A, 1,8 MPa)<\/td><td>200 \u00b0C<\/td><td>250 \u00b0C<\/td><td>ISO 75<\/td><\/tr>\r\n<tr><td>Melting temperature<\/td><td>220 \u00b0C<\/td><td>260 \u00b0C<\/td><td>ISO 11357<\/td><\/tr>\r\n<tr><td>Processing temperature (melt)<\/td><td>260\u2013290 \u00b0C<\/td><td>280\u2013310 \u00b0C<\/td><td>TDS<\/td><\/tr>\r\n<tr><td>Mould temperature<\/td><td>80\u2013100 \u00b0C<\/td><td>80\u2013120 \u00b0C<\/td><td>TDS<\/td><\/tr>\r\n<tr><td>Water absorption over 24 h at 23 \u00b0C<\/td><td>1,3%<\/td><td>1,1%<\/td><td>ISO 62<\/td><\/tr>\r\n<tr><td>Water absorption at equilibrium (23 \u00b0C \/ 50% RH)<\/td><td>2,6%<\/td><td>2,2%<\/td><td>ISO 62<\/td><\/tr>\r\n<tr><td>Linear shrinkage along the flow<\/td><td>0,3\u20130,5%<\/td><td>0,4\u20130,6%<\/td><td>ISO 294-4<\/td><\/tr>\r\n<tr><td>Linear shrinkage across the flow<\/td><td>0,8\u20131,2%<\/td><td>0,9\u20131,3%<\/td><td>ISO 294-4<\/td><\/tr>\r\n<tr><td>Volume resistivity<\/td><td>10\u00b9\u2074 Ohm\u00b7cm<\/td><td>10\u00b9\u2074 Ohm\u00b7cm<\/td><td>IEC 60093<\/td><\/tr>\r\n<tr><td>Limiting oxygen index LOI (without flame retardants)<\/td><td>23%<\/td><td>25%<\/td><td>ISO 4589<\/td><\/tr>\r\n<\/tbody>\r\n<\/table>\r\n\r\n<h2>How to choose a glass-filled polyamide \u2014 methodology<\/h2>\r\n\r\n<h3>Step 1. Part operating temperature<\/h3>\r\n\r\n<table>\r\n<thead><tr><th>Operating temperature<\/th><th>Recommended grade<\/th><\/tr><\/thead>\r\n<tbody>\r\n<tr><td>Up to 90 \u00b0C, no contact with hot liquids<\/td><td><strong>PA6-GF30<\/strong> (Examid\u00ae PA6 GF30, Armamid PA6 GF30-1T)<\/td><\/tr>\r\n<tr><td>90\u2013130 \u00b0C, intermittent heating<\/td><td>PA6-GF30 with a heat stabiliser or <strong>PA66-GF30<\/strong><\/td><\/tr>\r\n<tr><td>130\u2013170 \u00b0C, continuous load<\/td><td><strong>Examid\u00ae PA66 GF30<\/strong> with HSL stabilisation, analog of Zytel 70G30HSLR<\/td><\/tr>\r\n<tr><td>170\u2013230 \u00b0C, under-hood area<\/td><td><strong>PPA-GF (polyphthalamide)<\/strong> \u2014 a separate category, not a GF polyamide<\/td><\/tr>\r\n<\/tbody>\r\n<\/table>\r\n\r\n<h3>Step 2. Level of mechanical load<\/h3>\r\n\r\n<table>\r\n<thead><tr><th>Application<\/th><th>Recommended filler level<\/th><\/tr><\/thead>\r\n<tbody>\r\n<tr><td>Decorative and lightly loaded parts<\/td><td><strong>GF10\u2013GF15<\/strong> (low abrasiveness, better surface)<\/td><\/tr>\r\n<tr><td>Device housings, medium-load brackets<\/td><td><strong>GF20\u2013GF25<\/strong><\/td><\/tr>\r\n<tr><td>Standard structural parts (most cases)<\/td><td><strong>GF30<\/strong> \u2014 the optimum of stiffness, mouldability and price<\/td><\/tr>\r\n<tr><td>Metal replacement, high-modulus parts<\/td><td><strong>GF40\u2013GF50<\/strong> (Examid\u00ae PA66 GF50, Examid\u00ae PA6 GF50 R10)<\/td><\/tr>\r\n<tr><td>Load-bearing parts with maximum impact strength<\/td><td><strong>LGF<\/strong> \u2014 long glass fibre (Examid\u00ae PA6 LGF30)<\/td><\/tr>\r\n<\/tbody>\r\n<\/table>\r\n\r\n<h3>Step 3. Special requirements<\/h3>\r\n\r\n<table>\r\n<thead><tr><th>Requirement<\/th><th>Modification<\/th><\/tr><\/thead>\r\n<tbody>\r\n<tr><td>Impact resistance without loss of stiffness<\/td><td><strong>HI<\/strong> \u2014 Examid\u00ae PA6 GF30-I<\/td><\/tr>\r\n<tr><td>Laser marking of the housing<\/td><td><strong>LM<\/strong> \u2014 Examid\u00ae PA6 GF30 LM<\/td><\/tr>\r\n<tr><td>Self-extinguishing V-0 (UL 94)<\/td><td><strong>FR<\/strong> \u2014 Examid\u00ae PA6 GF30 LM<\/td><\/tr>\r\n<tr><td>Operation at -40 \u00b0C and below<\/td><td><strong>cold-resistant<\/strong> \u2014 Examid\u00ae PA6 GF30 62100i<\/td><\/tr>\r\n<tr><td>Improved surface (visible parts)<\/td><td><strong>GFGB<\/strong> with mineral filler \u2014 Examid\u00ae PA6 GFGB30-6231<\/td><\/tr>\r\n<tr><td>Thermal break for aluminium profiles<\/td><td><strong>PA66 GF25<\/strong> for thermal breaks<\/td><\/tr>\r\n<tr><td>Contact with fuel, oils, biofuel<\/td><td><strong>PA610-GF, PA612-GF<\/strong><\/td><\/tr>\r\n<\/tbody>\r\n<\/table>\r\n\r\n<h2>Analogs of imported grades<\/h2>\r\n\r\n<table>\r\n<thead><tr><th>Imported grade<\/th><th>Material Wizard analog<\/th><th>Purpose<\/th><\/tr><\/thead>\r\n<tbody>\r\n<tr><td>BASF Ultramid B3WG6<\/td><td><strong>Examid\u00ae PA6 GF30<\/strong><\/td><td>Standard PA6-GF30, housings, brackets<\/td><\/tr>\r\n<tr><td>BASF Ultramid A3WG6<\/td><td><strong>Examid\u00ae PA66 GF30<\/strong><\/td><td>PA66-GF30, heat-stable parts<\/td><\/tr>\r\n<tr><td>BASF Ultramid A3WG10<\/td><td><strong>Examid\u00ae PA66 GF50<\/strong><\/td><td>High-modulus PA66, metal replacement<\/td><\/tr>\r\n<tr><td>DuPont Zytel 70G30HSLR<\/td><td><strong>Examid\u00ae PA66 GF30<\/strong> (HSL)<\/td><td>Long-term service at 150 \u00b0C<\/td><\/tr>HSL)<\/td><td>Long-term service at 150 \u00b0C<\/td><\/tr>\r\n<tr><td>DuPont Zytel 70G50HSLR<\/td><td><strong>Examid\u00ae PA66 GF50<\/strong><\/td><td>High-modulus, heat-resistant<\/td><\/tr>\r\n<tr><td>Lanxess Durethan BKV30H1.0<\/td><td><strong>Examid\u00ae PA6 GF30<\/strong><\/td><td>PA6-GF30 with improved flow<\/td><\/tr>\r\n<tr><td>DSM Akulon K224-G6<\/td><td><strong>Examid\u00ae PA6 GF30<\/strong><\/td><td>Standard PA6-GF30<\/td><\/tr>\r\n<tr><td>Solvay Technyl A218V30<\/td><td><strong>Examid\u00ae PA66 GF30<\/strong><\/td><td>Standard PA66-GF30<\/td><\/tr>\r\n<tr><td>Akro-Plastic Akromid B3 GF30 1<\/td><td><strong>Examid\u00ae PA6 GF30<\/strong><\/td><td>PA6-GF30 economy segment<\/td><\/tr>\r\n<tr><td>RadiciGroup Radilon S RV300W<\/td><td><strong>Examid\u00ae PA6 GF30<\/strong><\/td><td>PA6-GF30 for automotive<\/td><\/tr>\r\n<tr><td>GOST PA6-211 KS<\/td><td><strong>PA6 210 KS premium grade<\/strong> (OST 6-11-498-79)<\/td><td>Tender supplies<\/td><\/tr>\r\n<tr><td>GOST PA66 KS<\/td><td><strong>PA66 KS premium grade<\/strong> (OST 6-11-498-79)<\/td><td>Tender supplies<\/td><\/tr>\r\n<tr><td>GOST PA610 KS<\/td><td><strong>PA610 KS<\/strong> (GOST 17648-83)<\/td><td>Aviation, defence, high-reliability products<\/td><\/tr>\r\n<\/tbody>\r\n<\/table>\r\n\r\n<h2>Fields of application<\/h2>\r\n\r\n<p><strong>Automotive.<\/strong> Intake manifolds, thermostat housings, levers, engine-mount brackets, fan shrouds, pedal assemblies, junction-box housings, air-filter housings. The standard is PA66-GF30 with HSL stabilisation for the under-hood area, and PA6-GF30 for interior brackets.<\/p>\r\n\r\n<p><strong>Aluminium building systems.<\/strong> Thermal breaks (thermal-insulating strips) in the profiles of warm windows and fa\u00e7ade systems. The standard is <strong>PA66 GF25 for thermal breaks<\/strong>: low thermal conductivity (about 0,30 W\/m\u00b7K), high dimensional stability under -40\u2026+80 \u00b0C temperature swings, resistance to creep under installation load.<\/p>\r\n\r\n<p><strong>Furniture fittings.<\/strong> Five-star bases for office chairs (static load up to 1200 kg per EN 1335-3), load-bearing frames for convertible furniture, fastening elements. The standard is PA6-GF30 (Examid\u00ae PA6 GF30, Armamid PA6 GF30-1T), in black with 2% carbon black for UV stability.<\/p>\r\n\r\n<p><strong>Electrical engineering and power tools.<\/strong> Housings for rotary hammers, angle grinders, drills and jigsaws; terminal blocks, connector housings, dielectric bushings. The standard is PA6-GF30 for load-bearing elements, and PA6-GF20 FR \/ GF25-FR for parts requiring UL 94 V-0. Laser marking of serial numbers uses the <strong>LM<\/strong> modification.<\/p>\r\n\r\n<p><strong>Rail transport and heavy machinery.<\/strong> Bearing cages, insulating bushings, housings for contact-network connections. The standard is PA610 KS (weather resistance, low moisture absorption); for cold-resistant applications \u2014 Examid\u00ae PA6 GF30 62100i (serviceable at -50 \u00b0C).<\/p>\r\n\r\n<p><strong>Aerospace and defence.<\/strong> Structural elements made of PA12-GF, PA610-GF, PA612-GF \u2014 low moisture absorption is critical for dimensional stability in humid operating conditions. For tender supplies \u2014 grades to OST\/GOST.<\/p>\r\n\r\n<p><strong>Sporting firearms, agricultural and mining equipment.<\/strong> Housings, stocks, guides \u2014 Examid\u00ae PA6 GF modifications for two-component moulding with elastomer (soft grips); gearbox brackets \u2014 Examid\u00ae PA6 GF30, PA66 GF30 with UV stabilisers.<\/p>\r\n\r\n<h2>Processing technology for glass-filled polyamides<\/h2>\r\n\r\n<p><strong>Drying before moulding is mandatory.<\/strong> Residual moisture in the granulate above 0,2% causes hydrolysis during processing \u2192 a loss of 30\u201360% of mechanical properties, surface defects and bubbles. Regime: 80 \u00b0C, 4\u20136 hours for PA6-GF; 80 \u00b0C, 4\u20138 hours for PA66-GF.<\/p>\r\n\r\n<p><strong>Typical injection-moulding machine zone temperatures:<\/strong><\/p>\r\n\r\n<table>\r\n<thead><tr><th>Zone<\/th><th>PA6-GF30<\/th><th>PA66-GF30<\/th><\/tr><\/thead>\r\n<tbody>\r\n<tr><td>Feed<\/td><td>80\u201390 \u00b0C<\/td><td>85\u201395 \u00b0C<\/td><\/tr>\r\n<tr><td>Zone 2<\/td><td>240\u2013250 \u00b0C<\/td><td>270\u2013280 \u00b0C<\/td><\/tr>\r\n<tr><td>Zone 3<\/td><td>255\u2013270 \u00b0C<\/td><td>285\u2013295 \u00b0C<\/td><\/tr>\r\n<tr><td>Zone 4<\/td><td>265\u2013280 \u00b0C<\/td><td>290\u2013305 \u00b0C<\/td><\/tr>\r\n<tr><td>Nozzle<\/td><td>270\u2013290 \u00b0C<\/td><td>295\u2013310 \u00b0C<\/td><\/tr>\r\n<tr><td>Mould temperature<\/td><td>80\u2013100 \u00b0C<\/td><td>80\u2013120 \u00b0C<\/td><\/tr>\r\n<\/tbody>\r\n<\/table>\r\n\r\n<p>Exceeding a melt temperature of 300 \u00b0C for PA6 and 320 \u00b0C for PA66 leads to thermal degradation of the matrix and brittleness of the part.<\/p>\r\n\r\n<p><strong>Mould.<\/strong> Mould steels should be nitrided or have a hardness of at least HRC 52: glass fibre is abrasive, and soft steels such as P20 wear out within 50 000\u2013200 000 cycles. Hot runners require bushings with carbide or titanium-nitride coatings. Sprues and runners should be of full cross-section, with no sharp corners (to preserve glass-fibre length).<\/p>\r\n\r\n<p><strong>Shrinkage and fibre orientation.<\/strong> Glass fibre orients along the melt flow, so shrinkage along and across the flow differs by a factor of 2\u20133. This is the main cause of warpage in flat parts. Solutions: balanced mould cooling, gating-system optimisation, symmetrical gates; where necessary \u2014 adding a mineral filler (GFGB grades) to reduce shrinkage anisotropy.<\/p>\r\n\r\n<h2>Glossary of abbreviations<\/h2>\r\n\r\n<table>\r\n<thead><tr><th>Abbreviation<\/th><th>Full form<\/th><th>Meaning<\/th><\/tr><\/thead>\r\n<tbody>\r\n<tr><td><strong>GF<\/strong><\/td><td>Glass Fiber<\/td><td>Glass fibre as filler<\/td><\/tr>\r\n<tr><td><strong>GF30<\/strong><\/td><td>30% glass fibre<\/td><td>Mass content of glass fibre in the compound (%)<\/td><\/tr>\r\n<tr><td><strong>LGF<\/strong><\/td><td>Long Glass Fiber<\/td><td>Long glass fibre (&gt;5 mm in the granulate, versus 0,2\u20130,5 mm in standard GF)<\/td><\/tr>\r\n<tr><td><strong>HI<\/strong><\/td><td>High Impact<\/td><td>Impact-resistant modification (with an elastomeric modifier)<\/td><\/tr>\r\n<tr><td><strong>HSL \/ HSLR<\/strong><\/td><td>Heat Stabilized Long-term<\/td><td>Long-term heat stabilisation for 5+ years of service at 150\u2013170 \u00b0C<\/td><\/tr>\r\n<tr><td><strong>LM<\/strong><\/td><td>Laser Marking<\/td><td>Readiness for high-contrast laser marking<\/td><\/tr>\r\n<tr><td><strong>FR<\/strong><\/td><td>Flame Retardant<\/td><td>Flame-retardant modification (UL 94 V-0\/V-2)<\/td><\/tr>\r\n<tr><td><strong>GFGB<\/strong><\/td><td>Glass Fiber + Glass Bead<\/td><td>Combined filler to reduce warpage<\/td><\/tr>\r\n<tr><td><strong>DAM<\/strong><\/td><td>Dry As Molded<\/td><td>Material state immediately after moulding (before conditioning)<\/td><\/tr>\r\n<tr><td><strong>CON<\/strong><\/td><td>Conditioned<\/td><td>Material state after conditioning (23 \u00b0C \/ 50% RH)<\/td><\/tr>\r\n<tr><td><strong>MFR \/ MFI<\/strong><\/td><td>Melt Flow Rate \/ Index<\/td><td>Melt flow rate indicator<\/td><\/tr>\r\n<tr><td><strong>HDT\/A<\/strong><\/td><td>Heat Deflection Temperature (1,8 MPa)<\/td><td>Heat deflection temperature under a 1,8 MPa load<\/td><\/tr>\r\n<tr><td><strong>LOI<\/strong><\/td><td>Limiting Oxygen Index<\/td><td>Limiting oxygen index (a flammability indicator)<\/td><\/tr>\r\n<\/tbody>\r\n<\/table>\r\n\r\n<h2>Historical background<\/h2>\r\n\r\n<p><em>Before 1991, Ukraine held a leading position in the production and consumption of glass-filled polyamides (including the automotive sector): the republic was home to the monopolist compounding plant \"Skloplastyk\" and specialised research institutes. The disruption of logistics chains in the chemical industry and mechanical engineering in the 1990s dealt a fatal blow to the giant, but it also gave impetus to new participants in the polyamide-compound market. This same shift opened the CIS market to international chemical concerns \u2014 BASF, DuPont, DSM, Lanxess. Material Wizard continues the Ukrainian engineering tradition of producing glass-filled polyamides of its own formulation under the Examid\u00ae brand, combining this technological heritage with modern international quality standards.<\/em><\/p>","link":"https:\/\/materialwizard.com.ua\/en\/category\/polyamides\/glass-filled\/","name":"Glass-filled polyamides","slug":"glass-filled","taxonomy":"category","parent":6,"meta":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.7 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Glass-Filled Polyamide PA6\/PA66 GF30 Supplier \u2014 Examid\u00ae | MW<\/title>\n<meta name=\"description\" content=\"Glass-filled PA6\/PA66 GF20\u2013GF50 for metal replacement: stiffness, heat stability, low creep. 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