{"id":13417,"date":"2019-07-20T16:43:59","date_gmt":"2019-07-20T14:43:59","guid":{"rendered":"https:\/\/sysmatec.ch\/2019\/07\/20\/resistance-a-la-pression-des-tuyaux-ptfe-fep-pfa\/"},"modified":"2020-05-10T09:32:42","modified_gmt":"2020-05-10T07:32:42","slug":"ptfe-fep-pfa-tubing-pressure-resistance","status":"publish","type":"post","link":"https:\/\/sysmatec.ch\/en\/ptfe-fep-pfa-tubing-pressure-resistance\/","title":{"rendered":"PTFE, FEP, PFA-Tubing Pressure Resistance"},"content":{"rendered":"\n<p class=\"wp-block-paragraph\">Source: BOLA (www.bola.de)<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Pressure Resistance &#8211; PTFE Tubing<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">The graph show the maximal recommended working pressure (approx. 0.25 x short time burst pressure) for PTFE tubing depending on the inner diameter and the wallthickness at 20 \u00b0C. For working temperatures above +20 \u00b0C the working pressures stated in this graph have to be multiplied by the corresponding reduction factor. For temperatures below +20 \u00b0C no reduction factors have to be considered.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Example: For PTFE tubing with inner diameter of 6 mm and a wall thickness of 1 mm the working pressure at +20 \u00b0C is about 8.8 bar. At a temperature of +50 \u00b0C, this value has to be reduced to 7.6 bar (pressure 8.8 bar x reduction factor 0.87 = 7.65 bar).<\/p>\n\n\n\n<figure class=\"wp-block-table\"><table><tbody><tr><td>Temperature (\u00b0C)<\/td><td>50<\/td><td>75<\/td><td>100<\/td><td>150<\/td><td>200<\/td><td>250<\/td><\/tr><tr><td>Reduction factor<\/td><td>0.87<\/td><td>077<\/td><td>0.68<\/td><td>0.53<\/td><td>0.39<\/td><td>0.28<\/td><\/tr><\/tbody><\/table><\/figure>\n\n\n\n<p class=\"wp-block-paragraph\"><\/p>\n\n\n\n<figure class=\"wp-block-image\"><img decoding=\"async\" src=\"https:\/\/sysmatec.ch\/Images\/BolaPTFETubeResitance.JPG\" alt=\"R\u00e9sistance \u00e0 la pression des tuyaux en PTFE\"\/><\/figure>\n\n\n\n<h2 class=\"wp-block-heading\">Pressure Resistance &#8211; FEP Tubing<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">The graph below show the maximal recommended working pressure (approx. 0.25 x short time burst pressure) for FEP tubing depending on the inner diameter and the wallthickness at 20 \u00b0C. For working temperatures from -50 \u00b0C to +150 \u00b0C the working pressures stated in this graph have to be multiplied by the corresponding reduction factor.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Example: For FEP tubing with inner diameter of 6 mm and a wall thickness of 1 mm the working pressure at +20 \u00b0C is about 7.8 bar. At a temperature of +50 \u00b0C, this value has to be reduced to 6.1 bar (pressure 7.8 bar x reduction factor 0.78 = 6.1 bar).<\/p>\n\n\n\n<p class=\"wp-block-paragraph\"><\/p>\n\n\n\n<figure class=\"wp-block-table\"><table><tbody><tr><td>Temperature (\u00b0C)<\/td><td>-50<\/td><td>0<\/td><td>20<\/td><td>50<\/td><td>100<\/td><td>150<\/td><\/tr><tr><td>Reduction factor<\/td><td>1.13<\/td><td>1.04<\/td><td>1<\/td><td>0.78<\/td><td>0.45<\/td><td>0.21<\/td><\/tr><\/tbody><\/table><\/figure>\n\n\n\n<p class=\"wp-block-paragraph\"><\/p>\n\n\n\n<figure class=\"wp-block-image\"><img decoding=\"async\" src=\"https:\/\/sysmatec.ch\/Images\/BolaFEPTubeResitance.JPG\" alt=\"\"\/><\/figure>\n\n\n\n<h2 class=\"wp-block-heading\">Pressure Resistance &#8211; PFA Tubing<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">The graph below show the maximal recommended working pressure (approx. 0.25 x short time burst pressure) for PFA tubing depending on the inner diameter and the wallthickness at 20 \u00b0C. For working temperatures above +20 \u00b0C the working pressures stated in this graph have to be multiplied by the corresponding reduction factor. For temperatures below +20 \u00b0C no reduction factors have to be considered.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Example: For PFA tubing with inner diameter of 4 mm and a wall thickness of 1 mm the working pressure at +20 \u00b0C is about 14 bar. At a temperature of +50 \u00b0C, this value has to be reduced to 12 bar (pressure 14 bar x reduction factor 0.86 = 12 bar).<\/p>\n\n\n\n<p class=\"wp-block-paragraph\"><\/p>\n\n\n\n<figure class=\"wp-block-table\"><table><tbody><tr><td>Temperature (\u00b0C)<\/td><td>50<\/td><td>100<\/td><td>200<\/td><td>250<\/td><\/tr><tr><td>Reduction factor<\/td><td>0.86<\/td><td>0.5<\/td><td>0.26<\/td><td>0.21<\/td><\/tr><\/tbody><\/table><\/figure>\n\n\n\n<p class=\"wp-block-paragraph\"><\/p>\n\n\n\n<figure class=\"wp-block-image\"><img decoding=\"async\" src=\"https:\/\/sysmatec.ch\/Images\/BolaPFATubeResitance.JPG\" alt=\"\"\/><\/figure>\n\n\n\n<h2 class=\"wp-block-heading\">Bending radius of PTFE, PFA and FEP tubing<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">To avoid buckling of the tubing with all its negative aspects, the following equation will be helpful to determine the smallest possible bending radius.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">smallest bending radius = (Aussendurchmesser x Aussendurchmesser) \/ Wandst\u00e4rke<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Beispiel: PTFE-Schlauch mit einem Au\u00dfendurchmesser von 14 mm und einer Wand von 2 mm ergibt den minimalen Radius von 98 mm.<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">Permeability of PTFE and PFA<\/h2>\n\n\n\n<p class=\"wp-block-paragraph\">Because of its special processing and the resulting structural conditions, PTFE has a higher permeability than other thermoplastics. PFA has at the same wall thickness a lower permeability than PTFE due to its tight molecular structure.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">You can visit the tube page <a href=\"https:\/\/sysmatec.ch\/en\/tube\/\">here<\/a>.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\"><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Source: BOLA (www.bola.de) Pressure Resistance &#8211; PTFE Tubing The graph show the maximal recommended working pressure (approx. 0.25 x short time burst pressure) for PTFE tubing depending on the inner diameter and the wallthickness at 20 \u00b0C. For working temperatures above +20 \u00b0C the working pressures stated in this graph have to be multiplied by [&hellip;]<\/p>\n","protected":false},"author":3,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_crdt_document":"","footnotes":""},"categories":[390],"tags":[],"class_list":["post-13417","post","type-post","status-publish","format-standard","hentry","category-nouvelle-en"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.4 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>PTFE, FEP, PFA-Tubing Pressure Resistance - Sysmatec<\/title>\n<meta name=\"description\" content=\"Maximal recommended working pressure (approx. 0.25 x short time burst pressure) for PTFE tubing depending on the inner diameter and the wallthickness at 20 \u00b0C. For working temperatures above +20 \u00b0C the working pressures stated in this graph have to be multiplied by the corresponding reduction factor.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/sysmatec.ch\/en\/ptfe-fep-pfa-tubing-pressure-resistance\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"PTFE, FEP, PFA-Tubing Pressure Resistance - Sysmatec\" \/>\n<meta property=\"og:description\" content=\"Maximal recommended working pressure (approx. 0.25 x short time burst pressure) for PTFE tubing depending on the inner diameter and the wallthickness at 20 \u00b0C. 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