Such a steel is identified by inserting the letter “L” between the second and third numerals of the AISI number, e.g., 10 L 45. SAI Global Standards, Partis House, Ground Floor Davy Avenue It also contains the use of AISI 1010,such as it is commonly used in bars, sheet,plates, steel coils, steel pipes,forged and other materials application. JIS UNI Automatenstähle EN 10087 (DIN 1651) 9 SMn 28 1.0715 11SMn30 1213 (SAE) 11SMn30; S 250 230 M 07 SUM 22 CF 9 SMn28 9 SMnPb 28 1.0718 11SMnPb30 12L13 (SAE) 11SMnPb30, SUM 22 L, 23L, 24L CF 9 SMnPb 28 S 250 Pb 9 SMn 36 1.0736 11SMn37 1215 (SAE) S 300 SUM 25 CF 9 SMn 36 9 S MnPb 36 1.0737 11SMnPb37 12L14 … IDR Similarly, methods for affording protection from lightning are not included, as these are given in AS/NZS 1768, nor does this standard include the earthing systems of patient treatment areas in hospitals and the like.NOTE: Examples of the solving of some practical problems resulting from static are given in Appendix A. -and by email Phosphorous, P: ≤ 0.040 % Introduction AISI 1020 is a low hardenability and low tensile carbon steel with Brinell hardness of 119 – 235 and tensile strength of 410-790 MPa. Welcome to JB Steel. If you would like to add additional copies of this product please adjust the quantity in the cart. ASTM A730 Grade B. ASTM A730 Grade A236, Grade B. ASTM A787 Grade MT1020. standard steel, a range of 0.15 to 0.35%, inclusive, is generally used. Steel Framing — Prescriptive Method for One - and Two -Family Dwellings. NZD Both ASTM A36 carbon steel and SAE-AISI 1020 steel are iron alloys. AISI 1020 steel ( JIS S20C steel) is resistant to induction hardening or flame hardening due to its low carbon content. AISI SAE Steel Numbering System Engineering ToolBox. It is generally available in round rod, square bar, and rectangle bar. Appendices provide information about the hazards caused by static electricity in the vicinity of flammable mixtures, on minimum ignition energies for a range of chemicals and give examples of solving problems resulting from static electricity. JPY Revision of: AISI S230-07 With Supplements 2 and 3 (Reaffirmed 2012) AISI S230-15 . 1F, Building B, Sanfang Industrial Area, Xiansha, Gaobu Town, BAR DATA HANDBOOK AISI SAE Steel Dynamics. For each property being compared, the top bar is SAE-AISI 1010 steel and the bottom bar is SAE-AISI 1020 steel. SGD Home. 1018, 1020 (HR,CF) - Low carbon steel.Has good hardening properties, fair machinability.Readily brazed and welded.Alloy 1018 is the most commonly available of the cold-rolled steels. Please contact our. The team typically replies in a few minutes. Characterised by excellent weldability, very good machinability with reasonable strength and very good ductility. Invalid username/password. 040 A 20 , B.S. ZAR. You are being redirected because this document is part of your ASTM Compass® subscription. 05-03-1995, Available Formats:  teel is arguably world’s most “advanced” material. Please contact our Customer Service team on Email: This product cannot be added to your cart right now. For more than 20 copies, please contact our Customer Support team on +44 (0)203 327 3140. Dongguan City, Guangdong Province, P.R. This page is mainly introduced the AISI 1010 Datasheet, including chemical information,mechanical properties, physical properties, mechanical properties, heat treatment, and Micro structure, etc. 3. The questions will be reply in 24 hours. 0.40 0.55 max. Please try again. Please change the currency. AISI … 1020 is a general purpose low tensile low hardenability carbon steel generally supplied in the cold drawn or turned and polished condition, with a typical tensile strength range 410 - 790 Mpa, and Brinell hardness range 119 - 235. Copper: Can be added to a standard steel. There are 31 material properties with values for both materials. PACS numbers: 62.20. Modifications were made to align the provisions of 40 with AISI S2 AISI S400, as follows: The applicability of AISI S240 for seismic design was limited to applications when specific seismic detailing is not required. Effects of Common Alloying Elements in Steel. Despite many huge merger deals in the industry, we remain a friendly, family business. Otai Special Steel was established in 1999 to provide a wide range of high quality steel to the global market. 0.10 max. Page 2 of 9 relation to the microstructure in a point of a certain distance from the quenched end. CHF CNY If you would like to add additional copies of this product please adjust the quantity in the cart. China. 20.2.1 General57 - 20.2.1 General58 - 20.2.2 Electrometers58 - 20.2.3 Induction electric field strength meters59 - 20.2.4 Radioactive ionization field strength meters59 - 20.3 CALIBRATION OF NON-CONTACTING ELECTRONIC INSTRUMENTS60 - 20.4 MEASUREMENTS IN HAZARDOUS AREAS60 - 20.4.1 General60 - 20.4.2 Using an electrostatic or electronic voltmeter64 - 20.4.3 Using non-contacting instruments65 - SECTION 21 DETERMINATION OF CAPACITANCE65 - 21.1 CALCULATION OF CAPACITANCE65 - 21.2 CAPACITANCE MEASUREMENT65 - 21.2.1 General65 - 21.2.2 Elimination of errors due to earthing the Cx terminal66 - 21.2.3 Elimination of error due to lead capacitance67 - SECTION 22 MEASUREMENT OF CHARGES67 - 22.1 MEASUREMENT OF STATIC CHARGE68 - SECTION 23 MEASUREMENT OF RESISTANCE OR CONDUCTANCE68 - 23.1 GENERAL68 - 23.2 RESISTANCE OF EARTHING CIRCUITS68 - 23.3 RESISTANCE OF MATERIALS AND PRODUCTS68 - 23.4 PERSONNEL RESISTANCE TESTER69 - 23.5 LIQUID CONDUCTIVITY71 - APPENDIX A - EXAMPLES OF SOLVING PRACTICAL PROBLEMS RESULTING FROM STATIC71 - A1 EXAMPLE WITH DRIVING BELT71 - A1.1 Problem71 - A1.2 Solution71 - A2 EXAMPLE WITH CONDUCTING SHOES71 - A2.1 Problem71 - A2.2 Solution72 - A3 EXAMPLE WITH STATIC COMB72 - A3.1 Problem72 - A3.2 Solution72 - A4 EXAMPLE WITH INSULATING SHEET CHARGED BY CONTACT AND SEPARATION WITH ANOTHER BODY72 - A4.1 Problem72 - A4.2 Solution73 - A5 EXAMPLES WITH LIQUIDS AND RELAXATION SECTIONS73 - A5.1 Problem73 - A5.2 Solution73 - A5.3 Problem73 - A5.4 Solution74 - A6 EXAMPLE WITH FILM CHARGED BY PASSING THROUGH A MACHINE74 - A6.1 Problem74 - A6.2 Investigation74 - A6.3 Calculation75 - A6.4 Evaluation of results75 - A6.5 Solution76 - APPENDIX B - FLAMMABLE AND COMBUSTIBLE LIQUIDS76 - B1 VAPOURS76 - B1.1 Vapour pressure76 - B1.2 Flammable limits77 - B1.3 Mists and foams77 - B2 REDUCING THE HAZARDS OF FLAMMABLE LIQUIDS77 - B2.1 General precautions77 - B2.2 Reducing quantity of flammable liquids78 - B2.3 Enclosure of flammable mixtures78 - B2.4 Preventing formation of flammable mixture.80 - APPENDIX C - METHOD FOR LAYING AND EARTHING CONDUCTING FLOORING82 - APPENDIX E - CONDUCTING COATINGS FOR DRIVE AND CONVEYOR BELTS82 - E1 INTRODUCTION82 - E2 GENERAL COATING82 - E3 COATING FOR RUBBER BELTS. For more than 20 copies, please contact our Customer Support team on +44 (0)203 327 3140. You have already saved 6 Quotes. It is normally used in turned and polished or cold drawn condition. MXN Any redistribution is prohibited. aisi/sae chemical compositions and metallurgical data 8000 north county road 225 east | pittsboro, indiana 46167 (877) 683-2277 | f: (317) 892-7005 second edition. Please contact our Customer Service team on Email: standards@saiglobal.comPhone: +44 0203 327 3140. A1020/A1020M-02(2012) Standard Specification for Steel Tubes, Carbon and Carbon Manganese, Fusion Welded, for Boiler, Superheater, Heat Exchanger and Condenser Applications (Withdrawn 2017) Products and Services / Standards & Publications / Standards Products. It has low carbon content and can be easily welded and has high strength and ductility. 1020. the first digit indicates that this is plain carbon steel. Iron, Fe: 99.08 – 99.53 % Standard for Cold -Formed . Microstructural characteristics of these steels were parameterized by the pearlite volume (dark region) fraction. 1020 mild steel round bar and flat sections can be cut to your required sizes. EUR KRW 0.63 Description C22 is one of the very commonly used plain carbon steels. 1020 steel is also available as Ground Flat Stock / Gauge Plate, in standard and nonstandard sizes. ASTM A575 Grade M1020. You have already added this product in the cart. AISI 1020 has low hardenability properties and is a low tensile carbon steel with a Brinell hardness of 119 – 235, and a tensile strength of 410-790 MPa. SAE-AISI 1010 (S10C, G10100) Carbon Steel SAE-AISI 1020 (S20C, G10200) Carbon Steel. Manganese, Mn: 0.30 – 0.60 % 2. Specific control methods are given for some industries.The provisions of the standard should not be regarded as overriding statutory requirements, but may be construed as working recommendations to be used in conjunction with such requirements.Methods for minimizing the risk of static causing a fire or explosion arising from the use of flammable medical agents are not included, as they are given in AS 1169. You have selected more than three (3) trainings. ASTM A653 SS Grade 37. The AISI 1020 steel sample J.N.Astoveza. Core strength will remain as it has been supplied for all the sections. we can provide cold drawn, cold rolled, hot rolled, forged Grade Aisi 1020 mild steel material. It is normally used in turned and polished or cold drawn condition. First pubished in New Zealand as NZS/AS 1020:1984.Jointly revised and designated as Joint Standard AS/NZS 1020:1995. Knowlhill Milton Keynes MK5 8HJ Please contact our Customer Service team.Please contact our Customer Service team on Email: sales@saiglobal.com Phone: 131 242 (Within Australia). The World Material is a website mainly provides the information of worldwide material grades, including US ASTM AISI SAE, European EN, British BS, Germany DIN, France NF; Japanese JIS and Chinese GB Standard, so you can learn and compare the material datasheet and specification of the major countries. Grade 304 is the standard "18/8" stainless; it is the most versatile and most widely used stainless steel, available in a wider range of products, forms and finishes than any other. AISI 1020 Steel is low hardenability and low tensile carbon steel carbon steel. Abbreviation Material-No. USD Call: +44 (0) 203 327 3140, ©  SAI Global Australia Pty Ltd ABN 14 144 974 087. Roger has been instrumental in the successes of the Committee on Specifications. Aco AISI 1020 pdf Hardness Ultimate Tensile Strength. 4. For each property being compared, the top bar is ASTM A36 carbon steel and the bottom bar is SAE-AISI 1020 steel. It has high machinability, high strength, high ductility and good weldability. ASTM 1020 mild steel, we can supply the round bar, flat bar, plate, hexagonal and square block. Results and Discussion A table summarizing the data obtained from the experiment is presented in Table 1 of the Appendices. AISI / SAE / ASTM 1020 steel Related Specifications ASTM A29/29M-1999, 1. The following AISI standards are for use with the 2012 I-codes. Ground tool steel bar can be supply, providing a quality precision finish bar to tight tolerances. The Nextgen Steel & Alloys are having a good name in supplying the steel sheets and plates. 1 - AS/NZS 1020:1995 - THE CONTROL OF UNDESIRABLE STATIC ELECTRICITY 4 - PREFACE 5 - CONTENTS 9 - SECTION 1 SCOPE AND GENERAL 9 - 1.1 SCOPE 9 - 1.2 PURPOSE 9 - 1.3 REFERENCED DOCUMENTS 9 - 1.3.1 Standards 10 - 1.3.2 Other publications 11 - 1.4 DEFINITIONS 11 - 1.4.1 Antistatic (used as adjective) 11 - 1.4.2 Bonding 11 - 1.4.3 Earthing (Grounding) 11 - 1.4.4 Conductors 12 - 1.4.5 … 070 M 20 United States: AMS 5032 , AMS 5032B , AMS 5045 , AMS 5045C , ASTM A108 , ASTM A29 , ASTM A510 , ASTM A519 , ASTM … What’s more, it will not response to nitriding because its lack of alloy metal element. Carbon steel SAE 1020 SubsTech. You have already added a product with different Currency. Pending Revision indicates that as a result of the Aged Standards review process, the document needs updating. JIS S20C Steel; In steam turbine and boiler manufacturing for more pressure or less 6N/㎡, the temperature of 450 ℃ or less corrupt media work of pipes, flanges, header, and various kinds of fasteners; On the railway and locomotive vehicles used in the manufacture of the crosshead and piston castings. 1020 carbon steel is one of the most commonly used plain carbon steels, has good machinability and weldability. Such a steel is identified by inserting the letter “L” between the second and third numeral of the AISI number. Cross Reference of Steel Standards KEI USA. ASTM A659 Grade 1020. Carbon, C: 0.17 – 0.230 % AISI 1020 steel is also known as C1020 steel in cold worked (cold rolled and cold drawn) condition. More Info on product formats, 1 - AS/NZS 1020:1995 - THE CONTROL OF UNDESIRABLE STATIC ELECTRICITY4 - PREFACE5 - CONTENTS9 - SECTION 1 SCOPE AND GENERAL9 - 1.1 SCOPE9 - 1.2 PURPOSE9 - 1.3 REFERENCED DOCUMENTS9 - 1.3.1 Standards10 - 1.3.2 Other publications11 - 1.4 DEFINITIONS11 - 1.4.1 Antistatic (used as adjective)11 - 1.4.2 Bonding11 - 1.4.3 Earthing (Grounding)11 - 1.4.4 Conductors12 - 1.4.5 Non-conductors (insulators)12 - 1.4.6 Ignitable materials and mixtures12 - 1.4.7 Intrinsically safe circuit12 - 1.4.8 Static electricity12 - 1.4.9 Static discharge12 - 1.4.10 Resistivity13 - SECTION 2 GENERATION, INDUCTION AND DANGERS BASIC CONSIDERATIONS13 - 2.1 GENERATION OF STATIC13 - 2.2 INDUCTION OF STATIC13 - 2.3 COMMON SOURCES OF GENERATION14 - 2.4 FIRE AND EXPLOSION DANGERS14 - 2.5 REMOVAL OF FIRE AND EXPLOSION DANGERS14 - 2.6 WORKING SURFACES AND FLOOR SURFACE COVERINGS16 - SECTION 3 STATIC DISCHARGES16 - 3.1 NATURE OF STATIC DISCHARGES16 - 3.2 ENERGY OF A STATIC DISCHARGE18 - SECTION 4 SOLID OBJECTS18 - 4.1 SELECTION OF AN APPROPRIATE CONTROL METHOD18 - 4.2 CONDUCTING OBJECTS18 - 4.2.1 General18 - 4.2.2 Earthing19 - 4.2.3 Bonding19 - 4.2.4 Earthing and bonding conductors19 - 4.2.5 Mobile apparatus19 - 4.2.6 Rotating shafts19 - 4.3 NON-CONDUCTING OBJECTS19 - 4.3.1 General20 - 4.3.2 Increasing the conductivity of non-conducting objects20 - 4.3.3 Increasing the humidity of the air20 - 4.3.4 Ionization of the air23 - SECTION 5 PERSONS23 - 5.1 GENERAL23 - 5.2 WEARING APPAREL (OTHER THAN FOOTWEAR)23 - 5.3 EARTHING OF PERSONS BY FOOTWEAR24 - 5.4 OTHER MEANS OF EARTHING PERSONS25 - SECTION 6 LIQUIDS25 - 6.1 INTRODUCTION25 - 6.1.1 Generation of static25 - 6.1.2 Fire and explosion dangers25 - 6.1.3 Factors affecting static generation27 - 6.1.4 Tendency of particular liquids to generate static27 - 6.2 SELECTION AND APPLICATION OF AN APPROPRIATE CONTROL METHOD28 - 6.3 DISSIPATING CHARGE FROM INSTALLATIONS28 - 6.4 DISSIPATING CHARGE FROM LIQUIDS28 - 6.4.1 Conducting liquids28 - 6.4.2 Non-conducting liquids28 - 6.5 CONDUCTIVITY IMPROVERS (ANTISTATIC ADDITIVES)28 - 6.6 REDUCING THE LIKELIHOOD OF STATIC DISCHARGES ABOVE A LIQUID SURFACE29 - 6.7 AVOIDANCE OF TURBULENCE29 - 6.8 AVOIDANCE OF CONTAMINANTS29 - 6.9 AVOIDANCE OF HIGH FLOW VELOCITIES29 - 6.9.1 General29 - 6.9.2 Hydrocarbons30 - 6.9.3 Liquids other than hydrocarbons30 - 6.10 USE OF RELAXATION SECTIONS31 - 6.11 STATIC CHARGE REDUCERS31 - 6.12 METALLIC PIPING32 - 6.13 HOSES AND COUPLINGS33 - 6.14 FILLING OF VESSELS33 - 6.15 NON-CONDUCTING VESSELS33 - 6.15.1 General33 - 6.15.2 Lined vessels33 - 6.15.3 Road tankers33 - 6.16 TRANSFER OF SMALL QUANTITIES33 - 6.17 BLENDING AND MIXING33 - 6.18 SAMPLING FROM HIGH PRESSURE SOURCES33 - 6.19 PNEUMATIC TRANSFER OF LIQUIDS34 - 6.20 SPRAYING34 - 6.21 SWITCH LOADING35 - SECTION 7 GASES35 - 7.1 INTRODUCTION35 - 7.2 MINIMIZING STATIC GENERATION35 - 7.3 PREVENTION OF STATIC ACCUMULATION35 - 7.4 REMOVAL OF IGNITABLE MATERIALS AND MIXTURES36 - SECTION 8 DUSTS36 - 8.1 INTRODUCTION36 - 8.1.1 General36 - 8.1.2 Generation of static36 - 8.1.3 Factors influencing static generation and accumulation37 - 8.2 MINIMIZING STATIC GENERATION37 - 8.3 DISSIPATING CHARGE FROM EQUIPMENT37 - 8.3.1 Outlet nozzles37 - 8.3.2 Objects in dust streams37 - 8.3.3 Sampling37 - 8.3.4 Bags and containers for collecting and transporting dust38 - SECTION 9 POWDERED OR GRANULAR SOLIDS38 - 9.1 INTRODUCTION38 - 9.2 HANDLING38 - 9.3 CONTROL OF STATIC39 - SECTION 10 DRIVE AND CONVEYOR BELTS39 - 10.1 GENERATION OF STATIC39 - 10.2 CONTROL OF STATIC39 - 10.2.1 Replacement of drive39 - 10.2.2 Belts40 - 10.2.3 Pulleys, idler rollers and shafting40 - 10.2.4 Safety guards41 - 10.2.5 Materials discharged from conveyors42 - SECTION 11 EXPLOSIVES42 - 11.1 INTRODUCTION42 - 11.2 ASSESSING THE HAZARD42 - 11.3 MINIMIZING THE HAZARD42 - 11.3.1 Materials of construction43 - 11.3.2 The application of suitable surface coating43 - 11.3.3 Radioactive ionizers43 - 11.3.4 Relative humidity43 - 11.3.5 Bonding and earthing43 - 11.3.6 Plant arrangement43 - 11.3.7 Clothing and footwear43 - 11.3.8 Drive belts and conveyor belts44 - SECTION 12 PRINTING PROCESSES44 - 12.1 INTRODUCTION44 - 12.1.1 General44 - 12.1.2 Generation of static44 - 12.1.3 Factors influencing static generation44 - 12.2 MINIMIZING STATIC GENERATION45 - 12.3 PREVENTION OF STATIC ACCUMULATION45 - 12.4 REMOVAL OF IGNITABLE MIXTURES46 - SECTION 13 COATING, SPREADING AND IMPREGNATING46 - 13.1 INTRODUCTION46 - 13.2 CONTROL OF STATIC AND REMOVAL OF IGNITABLE MIXTURES47 - SECTION 14 PROCESSING AND CONVERSION OF PLASTICS AND RUBBER MATERIALS47 - 14.1 INTRODUCTION47 - 14.2 GENERATION OF STATIC47 - 14.2.1 Flexible web processes47 - 14.2.2 Extrusion processes47 - 14.2.3 Moulding processes47 - 14.3 CONTROL OF STATIC48 - 14.4 SOLUTION CASTING OF FILM48 - 14.4.1 General48 - 14.4.2 Prevention of static accumulation during film casting48 - 14.4.3 Dissolving film waste (Spoil)48 - 14.4.4 Removal of flammable mixtures48 - 14.5 END-USE APPLICATIONS50 - SECTION 15 DRYCLEANING50 - 15.1 INTRODUCTION50 - 15.2 CONTROL OF STATIC50 - 15.2.1 Earthing and bonding50 - 15.2.2 Solvent conductivity50 - 15.2.3 Humidification50 - 15.2.4 Persons51 - SECTION 16 SUNDRY PROCESSES INVOLVING FLAMMABLE AND COMBUSTIBLE LIQUIDS51 - 16.1 LOADING AND UNLOADING ROAD TANKERS51 - 16.2 RAIL TANK WAGONS51 - 16.3 FUELLING AND DEFUELLING AIRCRAFT51 - 16.4 LOADING AND UNLOADING TANKERS AND BARGES51 - 16.5 FUELLING MOTOR VEHICLES51 - 16.6 TRANSFER OF ETHER AND CARBON DISULPHIDE52 - SECTION 17 SUNDRY PROCESSES INVOLVING PRESSURIZED GAS52 - 17.1 DISCHARGE OF CARBON DIOXIDE52 - 17.2 MIXTURES OF HYDROGEN OR ACETYLENE WITH AIR52 - 17.3 TRANSFER OF LIQUEFIED PETROLEUM GAS (LPG)52 - 17.4 STEAM JETS52 - 17.5 SPRAY PAINTING53 - SECTION 18 HANDLING OF ELECTROSTATIC SENSITIVE DEVICES53 - 18.1 INTRODUCTION53 - 18.2 BASIC PROTECTION PRINCIPLES53 - 18.3 LABELLING53 - 18.4 TYPES OF PACKAGES AVAILABLE53 - 18.4.1 Polymer bags with thin metal coating53 - 18.4.2 Coloured polymer bags54 - 18.4.3 Polymer bags with high carbon content55 - SECTION 19 DETECTION OF ELECTRIC POTENTIAL OR ELECTRIC FIELD STRENGTH55 - 19.1 GENERAL55 - 19.2 NEON LAMPS55 - 19.3 ELECTROSCOPES55 - 19.4 OTHER METHODS56 - SECTION 20 MEASUREMENT OF ELECTRIC POTENTIAL OR ELECTRIC FIELD STRENGTH56 - 20.1 MEASUREMENT OF ELECTRIC POTENTIAL WITH CONTACTING INSTRUMENTS56 - 20.1.1 Electrostatic voltmeters57 - 20.1.2 Electronic voltmeters57 - 20.2 MEASUREMENT OF ELECTRIC POTENTIAL AND ELECTRIC FIELD STRENGTHWITHNON-CONTACTINGINSTRUMENTS. 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