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Motor Driven Plunger Metering Pumps

ORLITA PS Plunger Metering Pump

Plunger head with stuff box packing. The plunger oscillates in the cylinder and displaces the liquid. The packing adjustment is achieved by the front-sided adjusting screw, which is also possible during operation.

The lantern on the rear head end serves to drain the leakage or can be used as an area to flush, lubricate or seal the pump with suitable media.

The pump check valves are of cone type. This guarantees low wear, short pressure loss (NPSHR) and self-cleaning.

All wetted parts are fabricated from stainless steel and sealed by PTFE.

Highlights

  • best hydraulic efficiency
  • pressure up to 400 bar
  • temperature range -40 °C to +400 °C
  • accuracy ±0,5 %
  • easy to maintain by central packing adjustment

Options

  • special materials like Hastelloy, titanium, Alloy 20, ceramics
  • special seal materials
  • pump head with heating/cooling jacket
  • other type of valve arrangements e.g. double valves etc.
  • special nozzles on request
  • specified coating e.g. for offshore applications
  • Design acc. to API 675
  • other options e.g. electrical stroke adjustment on request

PS 15/x Ø = x VH Qth [l/h] at n [min-1] p
mm** cm³ 70* 88* 108* 140* 200* bar
5 0.29 1.2 1.6 1.9 2.5 3.5 200
6 0.42 1.8 2.2 2.7 3.6 5.1 200
7 0.58 2.4 3 3.7 4.8 6.9 200
8 0.75 3.2 4 4.9 6.3 9 200
10 1.18 4.9 6.2 7.6 9.9 14 171
12 1.70 7.1 9 11 14 20 119
16 3.02 13 16 20 25 36 67
20 4.71 20 25 31 40 57 42
25 7.36 31 39 48 62 88 27
30 10.60 45 56 69 89 127 19
36 15.27 64 81 99 128 183 13
40 18.85 79 100 122 158 226 10
50 29.45 124 156 191 247 353 6
65 49.77 209 263 323 418 597 4

 

PS 30/x Ø = x VH Qth [l/h] at n [min-1] p
mm** cm³ 93* 112* 140* 175* bar
8 1.01 5.6 6.8 8.4 11 250
10 1.57 8.8 11 13 16 250
12 2.26 13 15 19 24 250
16 4.02 22 27 34 42 156
20 6.28 35 42 53 66 100
25 9.82 55 66 82 103 64
30 14.14 79 95 119 148 44
36 20.36 114 137 171 214 30
40 25.13 140 169 211 264 25
50 39.27 219 264 330 412 16
65 66.37 370 446 557 697 9
80 100.53 561 676 844 1056 6
100 157.08 877 1056 1319 1649 4

 

PS 80/x Ø = x VH Qth [l/h] at n [min-1] p
mm** cm³ 85* 110* 124* 137* 157* 175* bar
20 6.28 32 41 47 52 59 66 250
25 9.82 50 65 73 81 92 103 250
30 14.14 72 93 105 116 133 148 178
36 20.36 104 134 151 167 192 214 123
40 25.13 128 166 187 207 237 264 100
50 39.27 200 259 292 323 370 412 64
60 56.55 288 373 421 465 533 594 40
65 66.37 338 438 494 546 625 697 37
80 100.53 513 664 748 826 947 1056 25
100 157.08 801 1037 1169 1291 1480 1649 16
125 245.44 1252 1620 1826 2017 2312 2577 10
140 307.88 1570 2032 2291 2531 2900 3233 8
160 402.12 2051 2654 2992 3305 3788 4222 6

 

PS 600/x Ø = x VH Qth [l/h] at n [min-1] p
mm** cm³ 92* 110* 137* 152* 167* 195* bar
30 28.27 156 187 232 258 283 331 400
36 40.72 225 269 335 371 408 476 353
40 50.27 277 332 413 458 504 588 286
50 78.54 434 518 646 716 787 919 183
54 91.61 506 605 753 835 918 1072 157
65 132.73 733 876 1091 1211 1330 1553 108
70 153.94 850 1016 1265 1404 1542 1801 93
80 201.06 1110 1327 1653 1834 2015 2352 71
94 277.59 1532 1832 2282 2532 2781 3248 51
125 490.87 2710 3240 4035 4477 4919 5743 29
140 615.75 3399 4064 5061 5616 6170 7204 23
160 804.25 4439 5308 6611 7335 8059 9410 17
200 1256.64 6937 8294 10330 11461 12592 14703 11

 

PS 1400/x Ø = x VH Qth [l/h] at n [min-1] p
mm** cm³ 88* 101* 116* 137* 151* 179* bar
40 75.40 398 457 525 620 683 810 400
50 117.81 622 714 820 968 1067 1265 275
60 169.65 896 1028 1181 1394 1537 1822 190
70 230.91 1219 1399 1607 1898 2092 2480 140
80 301.59 1592 1828 2099 2479 2732 3239 100
94 416.39 2199 2523 2898 3423 3772 4472 77
125 736.31 3888 4462 5125 6052 6671 7908 40
140 923.63 4877 5597 6428 7592 8368 9920 35
160 1206.37 6370 7311 8396 9916 10930 12956 25
200 1884.96 9953 11423 13119 15494 17078 20244 17
280 3694.51 19507 22389 25714 30369 33472 39679 8

*) stated stroke frequencies are selected standard values at 50 Hz.
Others on request.

**) stated plunger diameters are selected standard values.
Others on request.

Note: Qth is the theoretical flow of the pump.
The effective flow rate is lower depending on discharge pressure.

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