Sigma Beams

Sigma Beams

Sigma beams from Weland Lagersystem AB are manufactured in several different heights and in different material thicknesses. The beams are designed so that all assembly is performed with screw joints, so any type of welding is unnecessary. We manufacture the Sigma beams at our factory in Gislaved. This means we have full control over the entire production chain, from the purchasing of the raw material to the final product. For this reason, we can guarantee high quality for all of our deliveries. The Sigma beams are hot dip galvanised as standard and can be used in most environments without any further treatment. The standard material grade has a yield strength of 250 N/mm² (yield strength of 350 N/mm² in special cases). We supply Sigma beams in lengths from 300 mm to 12,000 mm, in intervals of 50 mm.

Why you should choose Sigma beams

Easy assembly without welding

The beams are joined together by screw joints, which entails several advantages. The work is easy and fitters with welding qualifications are not required. Moreover, assembly can be carried out in sensitive environments where welding is not permitted. The corrosion protection also remains intact throughout the entire construction when welded joints are not used.

Prompt delivery direct from our warehouse

We stock Sigma beams with dimensions 300/2.5, in material with a yield strength of 250 N/mm² in 4.6 m, 5.2 m, 6.0 m and 7.2 m lengths for immediate delivery. We can also cut Sigma beams according to the customer's specific wishes.

Accessories

Beam joints (length 500 mm) and corner fittings are stocked for all Sigma beam heights. Steel railings, which are assembled without any welding, are also available as accessories.

Single beam (Material Grade S250)

Profile Cross-section dimensions (external dimensions) TP SC Gross cross-section, x axis Hole Gross cross-section, y axis Effective cross-section and char. bearing capacity Torsion Lateral buckling Lateral-torsional buckling Area and mass Lateral-torsional buckling
no. H W T R1 R2 eTP eSC A Ix Wx Zx rx Anet Iy Wy Zy ry Aeff ηxWx ηyWy Nk Mxk Myk Kv Wv C Kw WW CW k ip tX F g Io ωo
Σ200/2 200 58 2.0 2.0 4.0 20.0 -3.1 685 3.83 3.83 4.63 74.8 568 0.244 0.66 1.08 18.9 610 4.63 0.82 152 11.6 2.06 0.85 453 69 2.74 0.61 0.58 3.46 80.5 -114 0.722 5.55 860 0.288
Σ200/2.5 200 58 2.5 2.0 4.5 19.8 -2.7 864 4.79 4.79 5.81 74.5 715 0.301 0.82 1.34 18.7 768 5.81 1.02 192 14.5 2.55 1.73 723 140 3.37 0.76 0.71 4.44 80.1 -112 0.718 6.91 855 0.286
Σ200/3 200 58 3.0 2.0 5.0 19.6 -2.3 1040 5.73 5.73 6.98 74.2 861 0.355 0.96 1.60 18.5 924 6.89 1.21 231 17.2 3.01 3.06 1056 247 3.95 0.91 0.83 5.46 79.6 -110 0.714 8.24 852 0.283
Σ200/4 200 58 4.0 2.0 6.0 19.3 -1.5 1388 7.52 7.52 9.22 73.6 1144 0.451 1.23 2.09 18.0 1230 9.22 1.54 308 23.1 3.84 7.50 1909 606 4.97 1.17 1.04 7.62 78.6 -106 0.704 10.8 830 0.275
Σ200/5 200 58 5.0 2.0 7.0 18.9 -0.8 1724 9.19 9.19 11.1 73.0 1417 0.534 1.46 2.54 17.6 1526 11.4 1.83 381 28.5 4.56 14.8 2990 1195 5.83 1.41 1.22 9.88 77.7 -101 0.695 13.3 815 0.267
Σ300/2 300 58 2.0 2.0 4.0 21.1 10.9 874 10.3 6.89 8.53 109 670 0.248 0.69 1.12 16.8 692 8.53 0.69 173 21.3 1.73 1.09 578 88 6.52 1.01 1.37 2.54 111 -73.5 0.914 6.99 790 0.29
Σ300/2.5 300 58 2.5 2.0 4.5 20.9 11.2 1102 12.9 8.63 10.7 108 844 0.305 0.85 1.40 16.6 899 10.7 0.85 225 26.8 2.13 2.21 924 179 8.00 1.26 1.68 3.26 110 -68.3 0.909 8.69 780 0.287
Σ300/3 300 58 3.0 2.0 5.0 20.8 11.6 1327 15.5 10.3 12.9 108 1015 0.360 1.01 1.67 16.5 1109 12.9 1.01 277 32.3 2.53 3.90 1346 315 9.38 1.49 1.97 4.00 110 -63.0 0.904 10.4 773 0.288
Σ300/4 300 58 4.0 2.0 6.0 20.5 12.2 1780 20.5 13.7 17.1 107 1356 0.461 1.30 2.22 16.1 1544 17.1 1.30 386 42.8 3.25 9.62 2448 777 11.9 1.93 2.50 5.58 109 -51.8 0.896 13.7 760 0.285
Σ300/5 300 58 5.0 2.0 7.0 20.3 12.9 2219 25.3 16.8 21.2 107 1684 0.550 1.56 2.69 15.7 1922 21.0 1.95 480 52.5 4.88 19.0 3838 1535 14.0 2.32 2.94 7.22 108 -39.8 0.887 16.9 745 0.278
Σ400/2 400 58 2.0 2.0 4.0 17.3 7.1 1059 20.6 10.3 13.1 139 855 0.313 0.79 1.54 17.2 705 10.2 0.77 176 25.5 1.92 1.32 700 107 13.5 1.49 2.84 1.94 141 -135 1.110 8.51 920 0.291
Σ400/2.5 400 58 2.5 2.0 4.5 17.2 7.4 1341 26.0 13.0 16.6 139 1083 0.391 0.99 1.94 17.1 997 13.0 0.99 249 32.5 2.48 2.69 1125 217 17.0 1.88 3.57 2.47 141 -130 1.109 10.6 910 0.289
Σ400/3 400 58 3.0 2.0 5.0 17.1 7.8 1617 31.3 15.6 19.9 139 1304 0.462 1.17 2.32 16.9 1280 17.9 1.17 320 44.8 2.93 4.75 1639 384 19.9 2.23 4.18 3.03 140 -122 1.104 12.7 840 0.287
Σ400/4 400 58 4.0 2.0 6.0 16.8 8.4 2173 41.6 20.8 26.6 138 1750 0.597 1.53 3.07 16.6 1858 26.0 1.53 465 65.0 3.83 11.7 2978 945 25.4 2.90 5.33 4.21 140 -106 1.096 16.8 780 0.278
Σ400/5 400 58 5.0 2.0 7.0 16.6 9.0 2714 51.3 25.7 33.0 137 2180 0.717 1.84 3.78 16.3 2415 32.1 2.30 604 80.3 5.75 23.3 4707 1882 30.1 3.49 6.32 5.46 139 -87.6 1.087 20.8 770 0.277
Multiple                 106 104 104     106 104 104     104 104       103   106 109 106 1015 10-4            
Unit mm mm mm mm mm mm mm mm2 mm4 mm3 mm3 mm mm2 mm4 mm3 mm3 mm mm2 mm3 mm3 kN kNm kNm mm4 mm3 Nmm2 mm6 mm4 Nmm4 mm-1 mm mm m2/m kg/m mm  

Quick Guide Single beam

Span L (m) 1.2 1.5 1.8 2.1 2.4 2.7 3.0 3.3 3.6 4.8 6.0 7.2 8.4 9.6 10.8 12.0
Profile
Σ200/2 q 53.6 34.3 23.9 17.5 13.4 10.6 8.6 7.1 6.0 3.3
Sag f 1.8 2.8 4.1 5.5 7.2 9.1 11.0 13.6 16.3 28.4
Σ200/2.5 q 67.3 43.0 29.9 22.0 16.8 13.3 10.8 8.9 7.5 4.2 2.7
Sag f 1.8 2.8 4.1 5.5 7.2 9.2 11.0 13.6 16.3 28.9 45.0
Σ200/3 q 80.0 51.9 35.9 26.4 20.2 15.9 12.9 10.6 8.9 5.0 3.2
Sag f 1.8 2.8 4.1 5.5 7.2 9.2 11.4 13.6 16.2 28.8 45.0
Σ200/4 q 107.0 68.3 47.6 35.0 26.8 21.1 17.1 14.1 11.9 6.7 4.3
Sag f 1.8 2.8 4.1 5.6 7.3 9.2 11.4 13.8 16.5 29.3 46.0
Σ200/5 q 132.0 84.5 58.5 43.1 33.0 26.0 21.1 17.4 14.6 8.2 5.2
Sag f 1.8 2.9 4.1 5.6 7.4 9.3 11.5 13.9 16.6 29.4 45.5
Σ300/2 q 98.8 63.4 44.0 32.3 24.7 19.5 15.8 13.1 11.0 6.1 3.9
Sag f 1.2 1.9 2.8 3.8 4.9 6.2 7.7 9.3 11.1 19.4 30.4
Σ300/2.5 q 124.6 79.7 55.3 40.6 31.1 24.6 19.9 16.4 13.8 7.7 4.9
Sag f 1.2 1.9 2.8 3.8 4.9 6.3 7.7 9.3 11.1 19.6 30.4
Σ300/3 q 149.5 95.7 66.4 48.8 37.4 29.5 23.9 19.7 16.6 9.3 5.9 4.1
Sag f 1.2 1.9 2.8 3.8 4.9 6.3 7.7 9.3 11.1 19.8 30.6 44.1
Σ300/4 q 199.0 127.4 88.4 64.9 49.6 39.3 31.8 26.3 22.1 12.4 7.9 5.5 4.0
Sag f 1.3 1.9 2.8 3.8 4.9 6.3 7.7 9.4 11.2 19.9 30.9 44.6 60.1
Σ300/5 q 244.3 156.7 108.7 79.8 61.2 48.3 39.1 32.3 27.2 15.3 9.7 6.8 4.9
Sag f 1.2 1.9 2.8 3.8 5.0 6.3 7.8 9.4 11.2 20.0 30.9 44.9 59.9
Σ400/2 q 119.2 76.3 53.0 39.0 29.8 23.6 19.1 15.7 13.2 7.4 4.7 3.3 2.4
Sag f 0.7 1.2 1.7 2.3 3.0 3.7 4.6 5.6 6.6 11.7 18.2 26.5 35.7
Σ400/2.5 q 151.3 97.0 67.4 49.5 37.9 29.9 24.2 20.0 16.8 9.4 6.0 4.2 3.0
Sag f 0.7 1.2 1.7 2.3 3.0 3.8 4.7 5.6 6.7 11.9 18.5 26.9 35.5
Σ400/3 q 207.7 132.9 92.3 67.7 51.9 41.0 33.2 27.4 23.0 12.9 8.3 5.7 4.2 3.2
Sag f 0.9 1.3 1.9 2.6 3.4 4.3 5.3 6.5 7.7 13.6 21.3 30.4 41.5 53.9
Σ400/4 q 302.2 193.4 134.3 98.6 75.4 59.6 48.3 39.9 33.5 18.8 12.0 8.3 6.1 4.7 3.7
Sag f 0.9 1.5 2.1 2.9 3.7 4.7 5.8 7.1 8.4 14.9 23.2 33.3 45.3 59.6 75.1
Σ400/5 q 372.5 238.6 165.6 121.8 93.2 73.7 59.7 49.3 41.4 23.3 14.9 10.3 7.6 5.8 4.6 3.7
Sag f 0.9 1.5 2.1 2.9 3.7 4.7 5.8 7.1 8.4 14.9 23.3 33.4 45.7 59.5 75.6 92.7

Double beam (Material Grade S250)

Profile Cross-section dimensions (external dimensions) TP SC Gross cross-section, x axis Hole Gross cross-section, y axis Effective cross-section and char. bearing capacity Torsion Lateral buckling Lateral-torsional buckling Area and mass Lateral-torsional buckling
no. H W T R1 R2 eTP eSC A Ix Wx Zx rx Anet Iy Wy Zy ry Aeff ηxWx ηyWy Nk Mxk Myk Kv Wv C Kw WW CW k ip tX F g Io ωo
Σ200/2 200 58 2.0 2.0 4.0 0 0 1370 7.66 7.66 9.26 74.8 1136 1.09 1.88 2.87 28.2 1219 9.26 2.35 305 23.2 5.88 0.38 1.52 30.7 5.52 1.19 1.16 51 79.9 0 1.443 11.1 1910 0.129
Σ200/2.5 200 58 2.5 2.0 4.5 0 0 1727 9.58 9.58 11.6 74.5 1430 1.37 2.36 3.63 28.2 1536 11.6 2.95 384 29.1 7.38 0.50 1.96 40.5 6.76 1.49 1.42 53 79.7 0 1.436 13.8 1950 0.128
Σ200/3 200 58 3.0 2.0 5.0 0 0 2080 11.5 11.5 14.0 74.2 1722 1.64 2.83 4.39 28.1 1849 13.8 3.54 462 34.5 8.8 0.63 2.42 50.9 7.92 1.79 1.66 55 79.4 0 1.429 16.5 2000 0.127
Σ200/4 200 58 4.0 2.0 6.0 0 0 2775 15.0 15.0 18.4 73.6 2288 2.15 3.72 5.90 27.8 2461 18.4 4.65 615 46.1 11.6 0.91 3.39 73.8 9.94 2.36 2.09 59 78.7 0 1.408 21.6 2050 0.126
Σ200/5 200 58 5.0 2.0 7.0 0 0 3447 18.4 18.4 22.3 73.0 2834 2.65 4.57 7.38 27.7 3051 22.8 5.71 763 57.0 14.3 1.22 4.41 98.5 11.7 2.93 2.46 63 78.1 0 1.390 26.6 2120 0.125
Σ300/2 300 58 2.0 2.0 4.0 0 0 1748 20.6 13.8 17.1 109 1340 1.34 2.32 3.85 27.7 1384 17.1 2.28 346 42.7 5.70 1.23 3.48 99.3 16.0 3.25 3.36 54 112 0 1.827 14.0 2040 0.127
Σ300/2.5 300 58 2.5 2.0 4.5 0 0 2203 25.8 17.3 21.4 108 1688 1.69 2.92 4.88 27.7 1799 21.4 2.92 450 53.5 7.30 1.60 4.48 129 20.0 4.22 4.20 55 112 0 1.818 17.4 2080 0.126
Σ300/3 300 58 3.0 2.0 5.0 0 0 2654 31.0 20.6 25.8 108 2030 2.04 3.51 5.91 27.7 2218 25.8 3.51 555 64.5 8.78 1.98 5.49 160 24.0 5.22 5.04 56 112 0 1.809 20.7 2100 0.126
Σ300/4 300 58 4.0 2.0 6.0 0 0 3561 41.0 27.4 34.2 107 2712 2.73 4.71 8.02 27.7 3087 34.2 4.71 772 85.5 11.8 2.84 7.64 229 32.1 6.89 6.74 58 111 0 1.791 27.3 2190 0.125
Σ300/5 300 58 5.0 2.0 7.0 0 0 4437 50.6 33.6 42.4 107 3368 3.40 5.86 10.1 27.7 3843 42.0 7.33 961 105 18.3 3.76 9.86 304 40.0 8.45 8.40 60 110 0 1.774 33.8 2260 0.123
Σ400/2 400 58 2.0 2.0 4.0 0 0 2117 41.2 20.6 26.2 139 1710 1.33 2.30 3.87 25.1 1409 20.4 2.26 352 51.0 5.65 0.94 3.56 76.0 29.9 3.93 6.28 35 142 0 2.219 17.0 1630 0.141
Σ400/2.5 400 58 2.5 2.0 4.5 0 0 2682 52.1 26.0 33.2 139 2166 1.69 2.92 4.94 25.1 1994 26.0 2.92 499 65.0 7.30 1.24 4.59 100 37.8 5.07 7.94 36 142 0 2.218 21.3 1650 0.141
Σ400/3 400 58 3.0 2.0 5.0 0 0 3234 62.6 31.2 39.8 139 2608 2.04 3.52 6.00 25.1 2560 35.8 3.52 640 89.5 8.80 1.55 5.65 125 45.2 6.21 9.49 36 141 0 2.209 25.4 1500 0.144
Σ400/4 400 58 4.0 2.0 6.0 0 0 4347 83.2 41.6 53.2 138 3500 2.73 4.71 8.18 25.1 3717 52.0 4.71 929 130 11.8 2.26 7.93 183 59.9 8.66 12.6 38 141 0 2.191 33.6 1410 0.138
Σ400/5 400 58 5.0 2.0 7.0 0 0 5427 103 51.4 66.0 137 4360 3.41 5.88 10.3 25.1 4830 64.3 7.35 1207 161 18.4 3.05 10.3 246 74.0 11.3 15.5 40 140 0 2.174 41.6 1450 0.135
Multiple                 106 104 104     106 104 104     104 104       103   106 109 106 1015 10-4            
Unit mm mm mm mm mm mm mm mm2 mm4 mm3 mm3 mm mm2 mm4 mm3 mm3 mm mm2 mm3 mm3 kN kNm kNm mm4 mm3 Nmm2 mm6 mm4 Nmm4 mm-1 mm mm m2/m kg/m mm  

Quick Guide Double Beam

Span L (m)   1.2 1.5 1.8 2.1 2.4 2.7 3.0 3.3 3.6 4.8 6.0 7.2 8.4 9.6 10.8 12.0
Profile
Σ200/2 q 107.2 68.6 47.8 35.0 26.8 21.2 17.2 14.2 12.0 6.6 4.3
Sag f 1.8 2.8 4.1 5.5 7.2 9.1 11.0 13.6 16.3 28.4 45.1
Σ200/2.5 q 134.6 86.0 59.8 44.0 33.6 26.6 21.6 17.8 15.0 8.4 5.4 3.7
Sag f 1.8 2.8 4.1 5.5 7.2 9.2 11.0 13.6 16.3 28.9 45.0 64.5
Σ200/3 q 160.0 103.8 71.8 52.8 40.4 31.8 25.8 21.2 17.8 10.0 6.4 4.4
Sag f 1.8 2.8 4.1 5.5 7.2 9.2 11.4 13.6 16.2 28.8 45.0 64.2
Σ200/4 q 214.0 136.6 95.2 70.0 53.6 42.2 34.2 28.2 23.8 13.4 8.6 5.9
Sag f 1.8 2.8 4.1 5.6 7.3 9.2 11.4 13.8 16.5 29.3 46.0 65.4
Σ200/5 q 264.0 169.0 117.0 86.2 66.0 52.0 42.2 34.8 29.2 16.4 10.4 7.3
Sag f 1.8 2.9 4.1 5.6 7.4 9.3 11.5 13.9 16.6 29.4 45.5 66.2
Σ300/2 q 197.6 126.8 88.0 64.6 49.4 39.0 31.6 26.2 22.0 12.2 7.8 5.5
Sag f 1.2 1.9 2.8 3.8 4.9 6.2 7.7 9.3 11.1 19.4 30.4 44.4
Σ300/2.5 q 249.2 159.4 110.6 81.2 62.2 49.2 39.8 32.8 27.6 15.4 9.8 6.9
Sag f 1.2 1.9 2.8 3.8 4.9 6.3 7.7 9.3 11.1 19.6 30.4 44.4
Σ300/3 q 299.0 191.4 132.8 97.6 74.8 59.0 47.8 39.4 33.2 18.6 11.8 8.2 6.1
Sag f 1.2 1.9 2.8 3.8 4.9 6.3 7.7 9.3 11.1 19.8 30.6 44.1 60.8
Σ300/4 q 398.0 254.8 176.8 129.8 99.2 78.6 63.6 52.6 44.2 24.8 15.8 11.0 8.0 6.2
Sag f 1.3 1.9 2.8 3.8 4.9 6.3 7.7 9.4 11.2 19.9 30.9 44.6 60.1 79.5
Σ300/5 q 488.6 313.4 217.4 159.6 122.4 96.6 78.2 64.6 54.4 30.6 19.4 13.6 9.8 7.6
Sag f 1.2 1.9 2.8 3.8 5.0 6.3 7.8 9.4 11.2 20.0 30.9 44.9 59.9 79.2
Σ400/2 q 238.4 152.6 106.0 78.0 59.6 47.2 38.2 31.4 26.4 14.8 9.4 6.6 4.8 3.6
Sag f 0.7 1.2 1.7 2.3 3.0 3.7 4.6 5.6 6.6 11.7 18.2 26.5 35.7 46.6
Σ400/2.5 q 302.6 194.0 134.8 99.0 75.8 59.8 48.4 40.0 33.6 18.8 12.0 8.4 6.0 4.7
Sag f 0.7 1.2 1.7 2.3 3.0 3.8 4.7 5.6 6.7 11.9 18.5 26.9 35.5 47.5
Σ400/3 q 415.4 265.8 184.6 135.4 103.8 82.0 66.4 54.8 46.0 25.8 16.6 11.4 8.4 6.4 5.1
Sag f 0.9 1.3 1.9 2.6 3.4 4.3 5.3 6.5 7.7 13.6 21.3 30.4 41.5 53.9 68.8
Σ400/4 q 604.4 386.8 268.6 197.2 150.8 119.2 96.6 79.8 67.0 37.6 24.0 16.6 12.2 9.4 7.4 6.0
Sag f 0.9 1.5 2.1 2.9 3.7 4.7 5.8 7.1 8.4 14.9 23.2 33.3 45.3 59.6 75.1 92.8
Σ400/5 q 745.0 477.2 331.2 243.6 186.4 147.2 119.4 98.6 82.8 46.6 29.8 20.6 15.2 11.6 9.2 7.4
Sag f 0.9 1.5 2.1 2.9 3.7 4.7 5.8 7.1 8.4 14.9 23.3 33.4 45.7 59.5 75.6 92.7

Sigma beam cross section
Sigma beam cross section
Sigma beam hole pattern

Terms:

Anet

Aeff

Nk, Mxk, Myk

Kv

= average area through hole.

= effective area with regard to buckling.

= characteristic bearing capacity for normal force and moment.

= the torsional stiffness' cross-sectional factor, for double beams the values apply with a distance between screws of < = 200 mm.


The table gives the values:

q KN /m
f mm
q: Gives the beam's bearing capacity (loading capacity) including the beam's own weight. The value is valid for safety class 3 (n=1.2).
F or other safety classes, the bearing capacity is found by multiplying the table value by:
1.20 in safety class 1
1.09 in safety class 2
f: Gives the associated sag at the beam's middle for the respective q value.

No consideration is given to lateral-torsional buckling (ωbsub> = 1).

Distance between screws for double beams

  • 1000 mm if the beams are braced on the sides.
  • 500 mm on the side under pressure if the beams can buckle out to the side, 1000 mm on the side under tension.
  • 500 mm on both sides if the beams are under pressure or if it is not certain how the beams will be turned.

Reduction factor for lateral-torsional buckling:

ωb = 1.0

ωb = 1.0 - ωo(I/Io - 1)

if I <= Io

if I <= Io

Where I is the distance between bracing points and Io and ωo are as given in the table. The formula is on the safe side for long lengths (I > 2Io). This is valid for cases with constant moment between side braces and is on the safe side for most other cases.


References

  • StBK-N5, Swedish Code for Thin Gauge Steel Structures 79. Statens Stålbyggnadskommitté (National Swedish committee on regulations for steel) Stockholm 1980
  • BSK 99, The Swedish National Board of Housing, Building and Planning's handbook on steel constructions, December 2001

If values according to Eurocode 3 are needed, please contact Weland Lagersystem AB.

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Ljungby Maskin

Ljungby Maskin manufactures high quality loaders with reliable basic design, high comfort and great flexibility in use.

The company has eight Compact Lift units for managing its entire stock of spare parts. The vertical storage lifts create good order and control for stock handling. Furthermore, by extracting a balance via the business system Monitor, the spare part inventory is finished very quickly. Thanks to the equipment being so flexible, they have succeeded in reusing both pallet collars and plastic boxes from previous stores in the vertical storage lift, resulting in considerable savings.

Product:

Compact Lift

Customisations:

Optimisation:

TePe Munhygienprodukter

TePe Munhygienprodukter in Malmö manufactures, among other things, 11 million toothbrushes a year.

To cope with increased volumes, the production of toothbrushes has been moved to new premises designed for an improved flow. The store for the raw materials and semi-finished goods is placed next to toothbrush production and in between stands a Compact Lift.

The vertical storage lift is filled from the store side, and in the production area the operators fetch components according to an order specification. This saves time, since the operators don't need to look for parts in the store and the truck drivers, on the other side of the wall, can concentrate on handling the goods without any risk of incidents.

Product:

Compact Lift

Customisations:

Optimisation:

Tata Steel in Halmstad

Tata Steel delivers steel solutions to the construction and machine engineering sector, the car industry, the packaging industry, and other markets all over the world. Tata Steel also counts among the ten largest steel producers in the world.

The facility in Halmstad handles thin metal sheeting on 2,800-mm-wide loading pallets. The pallets are loaded with a forklift truck on one of the lift's sides and handled manually in the other opening. Customers order here sheet metal of a desired format and colour which is subsequently shaped in close proximity to the vertical storage lift.

The sheet metal that is not processed is returned and stored in the Compact Lift vertical storage lift.

Product:

Compact Lift

Optimisation:

SP Maskiner in Ljungby

In 1980, SP designed and built the world's first single-grip harvester head, SP21, which eventually led to a revolution in the professional forestry industry. SP Maskiner is currently the leading manufacturer of forestry machinery harvester heads, with a market all over the world.

SP Maskiner has a Compact Twin with double openings that allows two operators to work simultaneously. They also have a Compact Lift for small details for both production and spare parts management. This has made available large areas and created order in the management.

Product:

Compact LIFT Compact TWIN

Customisations:

Getinge AB in Växjö

Getinge Disinfection in Växjö has developed its stock handling using Compact Lift.

The first vertical storage lift was installed in 2009, and in 2014 this was moved and supplemented with two new Compact Lifts. At the same time, they connected their Movex ERP system to the Compact Store WMS system in order to further increase the efficiency of picking from the store.

Product:

Compact LIFT

Customisations:

Garo AB in Gnosjö

GARO AB is the parent company of the GARO Group and is in charge of the business areas of electric installation and systems.

Electric installation comprises DIN rail components, meter cabinets with distribution panels and blocks, power outlets for car parks, switchgear, CEE sockets, etc. The Systems business area specialises in marine power outlets, camping and comprehensive charging equipment solutions. The greater efficiency and place-saving made the investment in a Compact Vertical Storage Lift an obvious choice for Garo.

Product:

Compact Lift

Customisations:

Optimisation:

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