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          Spiral plate heat exchanger


          Product description:
          The spiral plate heat exchanger is simple and precise in structure. It is made up of two or four long metal sheets wound around the same center. The plate is welded with a fixed distance column to form two or four completely independent ones. Spiral flow path with a rectangular cross section.

          The spiral plate heat exchanger can be manufactured from any metal material with good welding and cold bending properties. The metal materials used in the production of spiral plate heat exchangers include carbon steel, stainless steel and alloy steel. The heat exchanger can withstand an operating pressure of 4.0 MPa and an operating temperature of 400 °C. The width of the spiral plate ranges from 300 mm to 2000 mm: the flow path spacing is from 5 mm to 30 mm.

          As a professional manufacturer of spiral plate heat exchangers in China, ARD has excellent design solutions, rich manufacturing experience, qualified tooling equipment and a wide range of application fields.

          1, Heat exchanger plate material:
          Q235B, SUS304, 316, 316L, 321
          2, The width of the heat exchanger plate (mm):
          Carbon steel is: 500, 630, 750, 1260, 1500, 2000
          Stainless steel: 610, 750, 1220, 1500, 2000
          3, Channel spacing (mm):
          5.0—30.0 optional
          4, pressure level:
          Non-removable spiral plate heat exchanger: 4.5Mpa
          Detachable spiral plate heat exchanger: 1.0Mpa
          5, the use of temperature:
          Non-removable spiral plate heat exchanger: 400℃
          Detachable spiral plate heat exchanger: 300℃

          The spiral plate heat exchanger is a heat transfer device with high heat transfer efficiency which realizes heat transfer by spiral passage, and is widely used in chemical production. The working principle is that when two fluids with different temperatures flow into the passage of the heat exchanger from both sides of the pipe wall, the two fluids are in countercurrent contact through the pipe wall. Heat is transferred from the hot fluid to the pipe wall and then from the pipe wall to the cold fluid to achieve structural features that allow the fluid to reach a turbulent state at a lower velocity, thereby enhancing heat transfer. The equipment is made of sheet metal, so it can reduce costs when mass production is organized.

          Structure and performance:
          1. The equipment is made up of two rolls, forming two uniform spiral channels. The two heat transfer media can carry out full countercurrent flow, which greatly enhances the heat transfer effect, even if the two small temperature difference media can reach the appropriate Heat transfer effect.
          2. The connecting pipe on the casing adopts a tangential structure, and the local resistance is small. Since the curvature of the spiral passage is uniform, the liquid does not have a large steering in the device, and the total resistance is small, so that the design flow rate can be improved to make it more comparable. High heat transfer capacity.
          3. The end face of the spiral passage of the type I non-removable spiral plate heat exchanger is welded and sealed, thus having a high sealing property.
          4. The structure principle of the Type II detachable spiral plate heat exchanger is basically the same as that of the non-removable heat exchanger, but one of the channels can be disassembled and cleaned, especially for heat exchange with viscous and precipitated liquid.
          5. The structure principle of the type III detachable spiral plate heat exchanger is basically the same as that of the non-removable heat exchanger, but the two channels can be disassembled and cleaned, and the scope of application is wide.
          6. When a single device cannot meet the requirements for use, it can be used in combination, but the combination must meet the following requirements: parallel combination, series combination, equipment and channel spacing are the same. Hybrid combination: one channel is connected in parallel and one channel is connected in series.

          Some specifications of heat exchangers are listed below:
          Stainless acid-resistant steel non-removable (I type) spiral plate heat exchanger carbon steel non-removable (type I) spiral plate heat exchanger
          Nominal heat exchange area m2 Channel spacing mm Calculate heat exchange area m2
          Flow rate 1m/ces Processing capacity m3/h
          Take over the nominal diameter Model Weight(kg)
          I 6B type I 16B type
          1 6 1.0 3.89 40 I 6,I 16B1-0.2/300-6 44 50
          2 6 2.1 3.89 40 I 6,I 16B2-0.2/400-6 78 85
          4 6 4.4 8.2 50 I 6,I 16B4-0.4/400-6 131 135
          10 4.5 17.3 80 I 6,I 16B4-0.5/450-10 129 133
          10 4.8 13.7 70 I 6,I 16B4-0.4/500-10 161 205
          8 6 7.3 8.21 50 I 6,I 16B8-0.4/500-6 212 215
          10 7.85 17.3 80 I 6,I 16B8-0.5/550-10 235 273
          10 7.3 20.90 80 I 6,I 16B8-0.6/500-10 237 275
          10 6 11.1 8.21 50 I 6,I 16B10-0.4/600-6 295 355
          10 11.5 17.3 80 I 6,I 16B10-0.5/650-10 315 405
          10 11.2 20.90 80 I 6,I 16B10-0.6/600-10 305 395
          15 6 16.9 12.54 70 I 6,I 16B15-0.6/600-6 415 490
          10 14.72 17.3 80 I 6,I 16B15-0.5/760-10 405 575
          10 15.0 28.1 80 I 6,I 16B15-0.8/600-10 400 570
          14 15.6 39.3 100 I 6,I 16B15-0.8/700-14 505 680
          20 6 21.7 8.21 50 I 6,I 16B20-0.4/800-6 540 710
          10 21.0 20.90 80 I 6,I 16B20-0.6/800-10 555 735
          14 20.9 39.30 100 I 6,I 16B20-0.8/800-14 660 830
          25 10 26.6 29.90 80 I 6,I 16B25-0.6/900-10 610 950
          14 26.9 39.20 100 I 6,I 16B25-0.8/900-14 720 1060
          30 10 28.2 28.10 100 I 6,I 16B30-0.8/800-14 750 1180
          14 32.2 39.20 100 I 6,I 16B30-0.8/1000-14 980 1370
          40 10 45.4 35.30 100 I 6,I 16B40-1.0/900-10 1130 1515
          14 40.2 19.4 125 I 6,I 16B40-1.0/1000-14 1200 1630
          50 10 53.9 35.3 100 I 6,I 16B50-1.0/1000-14 1360 1755
          60 10 61.05 35.3 100 I 6,I 16B60-1.0/1100-10 1920 2112
          14 60.08 49.40 125 I 6,I 16B60-1.0/1200-14 2000 2200
          80 10 81.83 35.3 100 I 6,I 16B80-1.0/1200-10 2560 2816
          14 80.9 49.40 125 I 6,I 16B80-1.0/1400-14 2667 1934
          100 10 101.9 35.3 100 I 6,I 16B100-1.0/1300-10 3200 3520
          14 100.06 49.40 125 I 6,I 16B100-1.0/1500-14 3333 3666
          120 10 115.5 35.3 100 I 6,I 16B120-1.0/1500-10 3870 4257
          14 119.0 49.40 125 I 6,I 16B120-1.0/1700-14 4020 4422
          130 14 128.80 49.4 125 I 6,I 16B130-1.0/1750-14 4241 4665
          18 129.09 63.5 150 I 6,I 16B130-1.0/1967-18 4462 4908
          150 14 148.1 49.4 125 I 6,I 16B150-1.0/1890-14 4702 5172
          18 148.2 63.5 150 I 6,I 16B150-1.0/2010-18 4962 5458
           

          Nominal heat exchange area m2
          Channel spacing mm Calculate heat exchange area m2 Flow rate 1m/ces Processing capacity m3/h Take over the nominal diameter Model Weight(kg)
          I 6T type I 16T type
          6 6 6.5 8.2 50 I 6, I 16T6-0.4/500-6 230 280
          10 5.8 13.7 70 I 6, I 16T6-0.4/600-10 285 350
          8 6 8.7 8.2 50 I 6, I 16T8-0.4/600-6 370 430
          10 7.7 17.3 80 I 6, I 16T8-0.5/660-10 395 454
          10 8.7 13.7 70 I 6, I 16T8-0.4/700-10 405 465
          10 6 9.9 12.5 70 I 6, I 16T10-0.6/500-6 335 395
          10 9.2 17.30 80 I 6, I 16T10-0.5/660-10 472 543
          10 8.8 20.9 80 I 6, I 16T10-0.6/600-10 410 495
          15 6 12.5 8.2 50 I 6, I 16T15-0.4/700-6 510 580
          10 14.64 17.30 80 I 6, I 16T15-0.5/800-10 679 781
          10 13.3 20.9 80 I 6, I 16T15-0.6/700-10 575 680
          14 13.8 29.2 100 I 6, I 16T15-0.6/800-14 640 755
          20 6 19.0 12.5 70 I 6, I 16T20-0.6/700-6 730 845
          10 18.3 28.1 80 I 6, I 16T20-0.8/800-10 735 870
          14 18.5 39.3 100 I 6, I 16T20-0.8-800-14 810 960
          25 10 23.1 28.1 100 I 6, I 16T25-0.8/800-10 935 1120
          14 23.3 49.4 125 I 6, I 16T25-1.0/800-14 1000 1165
          30 10 29.0 35.3 100 I 6, I 16T30-1.0/800-10 1190 1470
          14 28.1 59.4 125 I 6, I 16T30-1.2/800-14 1170 1425
          40 10 40.9 20.9 80 I 6, I 16T40-0.6/1200-10 1725 1885
          14 42.3 39.3 100 I 6, I 16T40-0.8/1200-14 1845 2110
          18 44.9 63.5 150 I 6, I 16T40-1.0/1200-18 2075 2405
          50 10 46.2 35.5 100 I 6, I 16T50-1.0/1000-10 1800 2085
          14 53.2 49.4 125 I 6, I 16T50-1.0/1200-14 2490 2595
          18 54.0 76.3 150 I 6, I 16T50-1.2/1200-18 2435 2820
          60 10 56.8 20.9 80 I 6, I 16T60-0.6/1400-10 2330 2635
          14 60.7 39.3 100 I 6, I 16T60-0.8/1400-14 2595 2850
          18 59.6 63.5 150 I 6, I 16T60-1.0/1400-18 2730 3150
          80 10 76.4 28.1 100 I 6, I 16T80-0.8/1400-10 2970 4060
          14 78.6 39.3 100 I 6, I 16T80-0.8/1600-14 3120 3605
          18 82.0 63.5 150 I 6, I 16T80-1.0/1600-18 3580 4205
          100 10 101.4 28.1 100 I 6, I 16T100-0.8/1600-10 3905 4330
          14 98.8 49.4 125 I 6, I 16T100-1.0/1600-14 4040 4585
          18 98.8 76.3 150 I 6, I 16T100-1.2/1600-18 4200 4930
          120 10 115.5 42.5 125 I 6, I 16T120-1.2/1400-10 4350 4980
          14 119.0 59.4 125 I 6, I 16T120-1.2/1600-14 4770 5440
          150 14 149.15 59.4 125 I 6, I 16T150-1.2/1800-14 6431 7396
          18 149.86 76.3 150 I 6, I 16T150-1.2/2000-18 6643 7639
          20 147.6 83.81 150 I 6, I 16T150-1.2/2050-20 6769 7784 
           

          Related Products

          Record number : Su ICP No. 18066847-1

          Copy right ? 2019 ARID HEAT EXCHANGER (JIANGSU) CO., LTD.

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