Macalloy Tensile Structure Systems - 16 Pages

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Catalogue excerpts

ETA-07/0215 Jun 10 Macalloy Tensile Structure Systems: Macalloy 460 Macalloy 520 Macalloy S460 Macalloy Architectural Compression Strut Macalloy Standard Compression Strut Macalloy SC460 EXPERIENCE INNOVATION QUALITY QUALITY SYSTEMS IISSOO 99000011::22000008

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2 EXPERIENCE INNOVATION QUALITY Since the 1940’s Macalloy has been leading the way in the design, manufacture and supply of threaded bar systems. Macalloy’s traditional ethos of consistently serving its markets with experience, innovation and quality, has strengthened the company’s reputation as the leading threaded bar manufacturer in the world. With innovation at the heart of the company’s brand, Macalloy developed and introduced the concept of Tensile Structures in the early 1980’s, leading to new systems and technology that were to change traditional principles forever. In recognition of this,...

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3 EXPERIENCE INNOVATION QUALITY Macalloy Tensile Structures Macalloy is continually introducing new products to meet the demands of the civil and architectural markets. The following systems form part of Macalloy’s range: • Macalloy 460 (carbon steel bar system) • Macalloy 520 (carbon steel bar system) • Macalloy S460 (stainless steel bar system) • Macalloy Architectural and Standard Compression Strut • Macalloy SC460 (stainless steel cable system) • Macalloy Connection Discs In addition to the above, Macalloy can offer other bar and cable systems, to suit a specific application. For further information,...

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4 EXPERIENCE INNOVATION QUALITY Macalloy 460 Bar System Table 1 - Tendon Capacities for Carbon Macalloy 460 Thread Units M10 M12 M16 M20 M24 M30 M36 M42 M48 M56 M64 M76 M85 M90 M100 Nominal Bar Dia. mm 10 11 15 19 22 28 34 39 45 52 60 72 82 87 97 Min. Yield Load kN 25 36 69 108 156 249 364 501 660 912 1204 1756 2239 2533 3172 Min. Break Load kN 33 48 91 143 207 330 483 665 875 1209 1596 2329 2969 3358 4206 Design Resistance to EC3 kN 24 35 66 103 149 238 348 479 630 870 1149 1677 2138 2418 3029 Nominal Bar Weight (kg/m) 0.5 0.75 1.4 2.2 3.0 4.8 7.1 9.4 12.5 16.7 22.2 32 41.5 46.7 58 Table 2 -...

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5 EXPERIENCE INNOVATION QUALITY Macalloy 520 Bar System Table 3 - Tendon Capacities for Carbon Macalloy 520 Thread Units M10 M12 M16 M20 M24 M30 M36 M42 M48 M56 M64 M76 M85 M90 M100 Nominal Bar Dia. mm 10 11 15 19 22 28 34 39 45 52 60 72 82 87 97 Min. Yield Load kN 28 41 77 122 176 284 411 566 746 1030 1360 1985 2531 2862 3585 Min. Break Load kN 35 52 98 155 223 360 522 719 946 1308 1727 2520 3212 3633 4551 Design Resistance to EC3 kN 26 38 71 112 161 257 376 518 682 942 1244 1814 2313 2616 3277 Nominal Bar Weight (kg/m) 0.5 0.75 1.4 2.2 3 4.8 7.1 9.4 12.5 16.7 22.2 32 41.5 46.7 58 Table 4 - Macalloy...

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6 EXPERIENCE INNOVATION QUALITY Macalloy S460 Bar System Table 5 - Tendon Capacities for Macalloy S460 Thread Units M10 M12 M16 M20 M24 M30 M36 M42 M48 M56 M64 M76 Nominal Bar Dia. mm 10 11 15 19 22 28 34 39 45 52 60 72 Min. Yield Load kN 25 36 69 108 156 249 364 501 660 912 1204 1756 Min. Break Load kN 33 48 91 143 207 330 483 665 875 1209 1596 2329 Design Resistance to EC3 kN 24 35 66 103 149 238 348 479 630 870 1149 1677 Nominal Bar Weight (kg/m) 0.50 0.75 1.40 2.20 3.00 4.80 7.10 9.40 12.50 16.70 22.20 32.00 Table 7 – Isolation Dimensions for Macalloy S460 M10 M12 M16 M20 M24 M30 M36 M42 M48...

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7 EXPERIENCE INNOVATION QUALITY Table 8 – Diameter and Maximum Compressive Capacity of Fork Fork Size Units M12 M16 M20 M24 M30 M36 M42 M48 M56 M64 M76 M85 M90 M100 CHS OD mm 33.7 42.2 48.3 60.3 76.1 88.9 114.3 139.7 168.3 193.7 219.1 244.5 273.0 323.9 CHS Wall Thickness mm 4 4 5 5 5 5 6.3 10 10 10 12.5 16 16 16 Maximum compressive capacity to EC3 kN 12.8 28 46.3 66.2 124.6 202.8 286.2 397 564.8 775.8 1167.9 1634.5 1871.3 2419 Macalloy Architectural and Standard Compression Strut Macalloy Compression Strut Macalloy offers 2 types of Compression Struts. There is the existing Architectural Strut...

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8 EXPERIENCE INNOVATION QUALITY Components for Macalloy 460, S460 and 520 Bar Systems. Standard Components Macalloy offers a range of standard components, including forks, spades, pins, couplers and turnbuckles. These components are designed and tested to exceed the tensile capacity of the bar, which itself is based upon the cross sectional area of the thread form. The design and geometric dimensions are the same for all the systems, enabling the designer to go from one system to another, without making any design changes. Forks are designed to be connected to a BS EN 10025 grade S355 plate (Grade...

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10 EXPERIENCE INNOVATION QUALITY Macalloy Connection Plate Solutions Connection plate solutions for Macalloy 460, 520 and S460 Standard Connection Plates Forks may be connected to either carbon steel or stainless steel connection plates, using material with an equivalent strength to BS EN 10025 grade S355. If carbon steel connection plates are used with stainless forks or vice versa, isolation sleeves and washers may be required to prevent bi-metallic corrosion. Coupler Connector Available in all sizes, these couplers are supplied with a welded lug to create a hanger connection, removing sag in...

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11 EXPERIENCE INNOVATION QUALITY Macalloy SC460 Stainless Cable System Table 11 – Tendon Capacity for the Macalloy SC460 Cable Dia. mm 3 4 5 6 7 8 10 12 14 16 19 22 26 Break Load kN 7.1 12.6 19.6 28.2 34.8 45.5 71.1 102.0 139.0 182.0 212.0 285.0 398.0 Table 12 – Components Dimensions – Macalloy SC460 Stainless Cable Systems Cable Dia. mm 3 4 5 6 7 8 10 12 14 16 18 22 26 Fork Required M10 M10 M12 M12 M16 M16 M20 M24 M24 M30 M30 M42 M42 L1 90 90 112 122 149 149 201 235 235 288 288 367 383 L2 168.5 168.5 206 233.9 275.7 287.6 378.6 443 461 539 573 689 749.5 Dia 1 17 17 19 19 25 25 29 35 35 44 44...

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12 EXPERIENCE INNOVATION QUALITY Macalloy 460, S460 and 520 Bar System Assembly Fork Assembly The fork offers an efficient end termination for the bar, allowing easy assembly to a gusset plate via a pinned joint. 1. Establish the thread size of the tendon together with its orientation i.e. left hand or right hand. Note all left hand bars are marked with paint. 2. Screw a lock cover onto the threaded end of the bar with the taper pointing along the bar. Screw the lock cover all the way along the thread length. 3. Screw the fork onto the threaded end of the bar for a distance approximately 1.5 times...

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