Yuwei Automatic Membrane Filter Press With 1.8 Mpa Pressure Second
Queezing
The main difference between the diaphragm filter press and the
ordinary box filter press is that a layer of elastic membrane
diaphragm plate is installed between the filter plate and the
filter cloth. During the operation, when the feeding is finished,
the high-pressure fluid medium can be injected between the filter
plate and the diaphragm. At this time, the entire diaphragm * will
bulge to compress the filter cake, so as to achieve further
dehydration of the filter cake, which is the pressing filtration.
The first is positive pressure dehydration, also known as slurry
dehydration, that is, a number of filter plates are closely
arranged in a row under the action of strong mechanical force, and
a filter chamber is formed between the filter plate surface and the
filter plate surface, and the filter material is in a strong
positive pressure. The solid part of the filter material entering
the filter chamber is retained by the filter medium (such as filter
cloth) to form a filter cake, and the liquid part passes through
the filter medium and is discharged from the filter chamber, so as
to achieve the purpose of solid-liquid separation. As the positive
pressure increases, the solid-liquid separation is more thorough,
but from the perspective of energy and cost, excessive positive
pressure is not cost-effective.
After slurry feeding and dehydration, a filter press equipped with
a rubber extrusion membrane, the compression medium (such as gas,
water) enters the back of the extrusion membrane to push the
extrusion membrane to further dehydrate the extrusion filter cake,
which is called extrusion dehydration. After slurry feeding
dehydration or extrusion dehydration, the compressed air enters the
filter cake side of the filter chamber to penetrate the filter
cake, and carries the liquid water from the other side of the
filter cake through the filter cloth to discharge the filter
chamber for dehydration, which is called wind blowing dehydration.
If both sides of the filter chamber are covered with filter cloths,
the liquid part can evenly pass through the filter cloths on both
sides of the filter chamber and be discharged from the filter
chamber to dewater the filter chamber on both sides.
Model | | Filter press | Plate size | Cake thickness | Filter chamber volume | Plate NO | Filtration pressure | Motor power | Weight | Dimensions L*W*H(mm) | Foundation Size(mm) |
| L | B | D | H |
X_M^AG30/870−U_K^B | | 30 | 870*870 | ≤35 | 498 | 23 | ≥0.8 | 2.2 | 3046 | 3880*1250*1300 | 2920 | 700 | 1270 | 785 |
X_M^AG40/870−U_K^B | | 40 | 623 | 29 | 3593 | 4270*1250*1300 | 3300 |
X_M^AG50/870−U_K^B | | 50 | 789 | 37 | 4057 | 4790*1250*1300 | 3820 |
X_M^AG60/870−U_K^B | | 60 | 955 | 45 | 4597 | 5310*1250*1300 | 4340 |
X_M^AG70/870−U_K^B | | 70 | 1121 | 53 | 5136 | 5830*1250*1300 | 4860 |
X_M^AG80/870−U_K^B | | 80 | 1287 | 61 | 5636 | 6350*1250*1300 | 5380 |
X_M^AG50/1000−U_K^B | | 50 | 1000*1000 | 776 | 27 | 4 | 4352 | 4270*1500*1400 | 3350 | 780 | 1400 | 870 |
X_M^AG60/1000−U_K^B | | 60 | 943 | 33 | 4480 | 4700*1500*1400 | 3780 |
X_M^AG70/1000−U_K^B | | 70 | 1109 | 39 | 5263 | 5130*1500*1400 | 4210 |
X_M^AG80/1000−U_K^B | | 80 | 1275 | 45 | 5719 | 5560*1500*1400 | 4640 |
X_M^AG100/1000−U_K^B | | 100 | 1608 | 57 | 6555 | 6410*1500*1400 | 5490 |
X_M^AG120/1000−U_K^B | | 120 | 1941 | 69 | 7466 | 7260*1500*1400 | 6340 |
X_M^AG80/1250−U_K^B | | 80 | 1250*1250 | ≤40 | 1560 | 29 | 5.5 | 10900 | 4830*1800*1600 | 3960 | 850 | 1740 | 995 |
X_M^AG100/1250−U_K^B | | 100 | 1975 | 37 | 11750 | 5440*1800*1600 | 4570 |
X_M^AG120/1250−U_K^B | | 120 | 2391 | 45 | 12600 | 6060*1800*1600 | 5180 |
X_M^AG150/1250−U_K^B | | 150 | 2911 | 55 | 13620 | 6820*1800*1600 | 5950 |
X_M^AG160/1250−U_K^B | | 160 | 3119 | 59 | 14470 | 7130*1800*1600 | 6255 |
X_M^AG200/1250−U_K^B | | 200 | 3847 | 73 | 15320 | 8200*1800*1600 | 7325 |
X_M^AG240/1250−U_K^B | | 240 | 4679 | 89 | 16170 | 9420*1800*1600 | 8550 |
X_M^AG250/1250−U_K^B | | 250 | 4783 | 91 | 17020 | 9570*1800*1600 | 8700 |
X_M^AG200/1500−U_K^B | | 200 | 1500*1500 | 3809 | 49 | 11 | 26120 | 7140*2200*1820 | 5870 | 1170 | 1990 | 1070 |
X_M^AG250/1500−U_K^B | | 250 | 4723 | 61 | 26930 | 7730*2200*1820 | 6860 |
X_M^AG300/1500−U_K^B | | 300 | 5637 | 73 | 28160 | 8720*2200*1820 | 7850 |
X_M^AG350/1500−U_K^B | | 350 | 6551 | 85 | 29600 | 10110*2200*1820 | 9090 |
X_M^AG400/1500−U_K^B | | 400 | 7618 | 99 | 31500 | 11260*2200*1820 | 10240 |
X_M^AG450/1500−U_K^B | | 450 | 8532 | 111 | 33400 | 12250*2200*1820 | 11230 |
X_M^AG500/1500−U_K^B | | 500 | 9446 | 123 | 33380 | 13240*2200*1820 | 12220 |
X_M^AG600/2000−U_K^B | | 600 | 2000*2000 | 11901 | 85 | 15 | 54164 | 13030*3000*2500 | 10610 | 1660 | 2000 | 1050 |
X_M^AG700/2000−U_K^B | | 700 | 13838 | 99 | 58300 | 14390*3000*2500 | 11920 |
X_M^AG800/2000−U_K^B | | 800 | 14945 | 107 | 62460 | 15770*3000*2500 | 13240 |
X_M^AG900/2000−U_K^B | | 900 | 17713 | 127 | 66620 | 17150*3000*2500 | 14560 |
X_M^AG1000/2000−U_K^B | | 1000 | 19651 | 141 | 70780 | 18530*3000*2500 | 15880 |
Service
Working principle
The suspension is pumped into each closed filter chamber of the
filter machine. Under the action of the working pressure, the
filtrate penetrates the filter membrane or other filter materials,
and is discharged through the liquid outlet, and the filter residue
remains in the frame to form a filter cake, so as to achieve
Solid-liquid separation.
Scope of application
Membrane filter press is used for solid-liquid separation of various
suspensions, and has a wide range of applications. It is suitable
for industrial fields such as medicine, food, chemical industry,
environmental protection, and water treatment.
