FX-Screw Conveyors
Ferro designs screw conveyors by properly selecting material, optimizing construction, and utilizing industry-leading fabrication methods to increase structural integrity while maximizing wear resistance.
- Efficient conveying of dry bulk materials
- Designed for horizontal and inclined conveying
- Standard and Heavy-duty trough or tube conveyors are available
Key Features
Standard and Heavy-duty trough with accurate screw pitch, provide accurate feed rate.
Robust torque-optimized gearbox enables efficient power transfer with reduced energy usage.
Hanger bearings replace traditional babbitt bearings, using advanced materials and designs that minimize wear and extend service life. This results in reduced downtime, lower maintenance costs, and improved overall operational efficiency.
Compliance with Safety Standards, Fully Enclosed Casing, Safety Guards & Covers, Emergency Stop Mechanism, Overload Protection, Interlocked Access Panels, Automated Sensors & Alarms etc.
| Technical Specification | ||||||||||||||||
|
Model |
Conveying Speed |
Unit |
||||||||||||||
|
0.1 |
0.15 |
0.2 |
0.25 |
0.3 |
0.35 |
0.4 |
0.45 |
0.5 |
0.55 |
0.6 |
0.65 |
0.70 |
0.75 |
m/s |
||
|
FX-SC4 |
Q |
0.8 |
1.2 |
1.6 |
2.0 |
2.4 |
- |
- |
- |
- |
- |
- |
- |
- |
- |
m3/h |
|
N |
60 |
90 |
120 |
150 |
180 |
- |
- |
- |
- |
- |
- |
- |
- |
- |
1/min |
|
|
Vn |
0.31 |
0.47 |
0.63 |
0.79 |
0.94 |
- |
- |
- |
- |
- |
- |
- |
- |
- |
m/s |
|
|
FX-SC5 |
Q |
1.3 |
1.9 |
2.5 |
3.2 |
3.8 |
4.5 |
5.1 |
- |
- |
- |
- |
- |
- |
- |
m3/h |
|
N |
48 |
72 |
96 |
120 |
144 |
168 |
192 |
- |
- |
- |
- |
- |
- |
- |
1/min |
|
|
Vn |
0.31 |
0.47 |
0.63 |
0.79 |
0.94 |
1.10 |
1.26 |
- |
- |
- |
- |
- |
- |
- |
m/s |
|
|
FX-SC7 |
Q |
2.1 |
3.2 |
4.3 |
5.4 |
6.4 |
8 |
9 |
10 |
11 |
- |
- |
- |
- |
- |
m3/h |
|
N |
38 |
56 |
75 |
94 |
113 |
131 |
150 |
169 |
188 |
- |
- |
- |
- |
- |
1/min |
|
|
Vn |
0.31 |
0.47 |
0.63 |
0.79 |
0.94 |
1.10 |
1.26 |
1.41 |
1.57 |
- |
- |
- |
- |
- |
m/s |
|
|
FX-SC8 |
Q |
3.4 |
5.0 |
6.7 |
8.4 |
10.1 |
12 |
13 |
15 |
17 |
18 |
20 |
- |
- |
- |
m3/h |
|
N |
30 |
45 |
60 |
75 |
90 |
105 |
120 |
135 |
150 |
165 |
180 |
- |
- |
- |
1/min |
|
|
Vn |
0.31 |
0.47 |
0.63 |
0.79 |
0.94 |
1.10 |
1.26 |
1.41 |
1.57 |
1.73 |
1.88 |
- |
- |
- |
m/s |
|
|
FX-SC10 |
Q |
5.5 |
8.2 |
10.9 |
13.6 |
16.4 |
19 |
22 |
25 |
27 |
30 |
33 |
35 |
38 |
- |
m3/h |
|
N |
24 |
36 |
48 |
60 |
72 |
84 |
96 |
108 |
120 |
132 |
144 |
156 |
168 |
- |
1/min |
|
|
Vn |
0.31 |
0.47 |
0.63 |
0.79 |
0.94 |
1.10 |
1.26 |
1.41 |
1.57 |
1.73 |
1.88 |
2.04 |
2.20 |
- |
m/s |
|
|
FX-SC12 |
Q |
8.7 |
13.1 |
17.4 |
21.8 |
26.2 |
31 |
35 |
39 |
44 |
48 |
52 |
57 |
61 |
65 |
m3/h |
|
N |
20 |
30 |
40 |
50 |
60 |
70 |
80 |
90 |
100 |
110 |
120 |
130 |
140 |
150 |
1/min |
|
|
Vn |
0.33 |
0.49 |
0.66 |
0.82 |
0.99 |
1.15 |
1.32 |
1.48 |
1.65 |
1.81 |
1.98 |
2.14 |
2.31 |
2.47 |
m/s |
|
|
FX-SC16 |
Q |
14 |
21 |
28 |
35 |
43 |
50 |
57 |
64 |
71 |
78 |
85 |
92 |
99 |
106 |
m3/h |
|
N |
17 |
26 |
34 |
43 |
51 |
60 |
69 |
77 |
86 |
94 |
103 |
111 |
120 |
129 |
1/min |
|
|
Vn |
0.36 |
0.54 |
0.72 |
0.90 |
1.08 |
1.26 |
1.44 |
1.62 |
1.80 |
1.97 |
2.15 |
2.33 |
2.51 |
2.69 |
m/s |
|
|
FX-SC18 |
Q |
22 |
33 |
44 |
56 |
67 |
78 |
89 |
100 |
111 |
122 |
133 |
145 |
156 |
167 |
m3/h |
|
N |
15 |
23 |
30 |
38 |
45 |
53 |
60 |
68 |
75 |
83 |
90 |
98 |
105 |
113 |
1/min |
|
|
Vn |
0.39 |
0.59 |
0.79 |
0.98 |
1.18 |
1.37 |
1.57 |
1.77 |
1.96 |
2.16 |
2.36 |
2.55 |
2.75 |
2.95 |
m/s |
|
|
FX-SC25 |
Q |
35 |
53 |
71 |
88 |
106 |
124 |
142 |
159 |
177 |
195 |
212 |
230 |
248 |
265 |
m3/h |
|
N |
13 |
20 |
27 |
30 |
40 |
47 |
53 |
60 |
67 |
73 |
80 |
87 |
93 |
100 |
1/min |
|
|
Vn |
0.44 |
0.66 |
0.88 |
1.10 |
1.32 |
1.54 |
1.76 |
1.98 |
2.20 |
2.42 |
2.64 |
2.86 |
3.08 |
3.30 |
m/s |
|
|
FX-SC32 |
Q |
57 |
86 |
115 |
143 |
172 |
201 |
229 |
258 |
287 |
315 |
344 |
373 |
401 |
430 |
m3/h |
|
N |
12 |
18 |
24 |
30 |
36 |
42 |
48 |
54 |
60 |
66 |
72 |
78 |
84 |
90 |
1/min |
|
|
Vn |
0.50 |
0.75 |
1.01 |
1.26 |
1.51 |
1.76 |
2.01 |
2.26 |
2.51 |
2.76 |
3.02 |
3.27 |
3.52 |
3.77 |
m/s |
|
|
FX-SC40 |
Q |
90 |
135 |
180 |
225 |
270 |
315 |
360 |
405 |
450 |
494 |
539 |
584 |
629 |
674 |
m3/h |
|
N |
11 |
16 |
21 |
27 |
32 |
38 |
43 |
48 |
54 |
59 |
64 |
70 |
75 |
80 |
1/min |
|
|
Vn |
0.56 |
0.84 |
1.12 |
1.40 |
1.68 |
1.96 |
2.24 |
2.52 |
2.80 |
3.09 |
3.37 |
3.65 |
3.93 |
4.21 |
m/s |
|
|
FX-SC50 |
Q |
141 |
212 |
283 |
354 |
424 |
495 |
566 |
636 |
707 |
778 |
849 |
919 |
990 |
1061 |
m3/h |
|
N |
10 |
14 |
19 |
24 |
29 |
33 |
38 |
43 |
48 |
52 |
57 |
62 |
67 |
71 |
1/min |
|
|
Vn |
0.62 |
0.93 |
1.25 |
1.56 |
1.87 |
2.18 |
2.49 |
2.80 |
3.12 |
3.43 |
3.74 |
4.05 |
4.36 |
4.67 |
m/s |
|
Quick Enquiry About This Product
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Specify a screw conveyor for your process
A rotating screw moves material through a trough or tube. For a project buyer, the first distinction is whether the duty is transfer between equipment or controlled feeding into a process. Meals, powders and other compatible bulk solids need to be assessed for flowability, moisture, temperature and the risk of buildup before selecting the arrangement.
Information for equipment selection
Provide the normal and peak throughput, measured bulk density, particle size, horizontal distance, incline and inlet conditions. State whether the inlet is flood-fed, whether several outlets are needed, and how the conveyor connects to weighing, mixing, extraction or meal handling. Construction, seals, access and cleanout provisions should follow the actual product and operating environment.
Related equipment and process stages
Bulk material handling system designer | Bucket elevators | Redler and bulk-flow conveyors | Pneumatic conveying | Oilseed preparation | Solvent extraction
Project questions
Can a transfer screw also serve as a feeder?
A feeding duty needs a specific review of inlet loading and discharge control. Do not assume that a conveyor selected only for transfer will also deliver the required feed rate.
How should I specify capacity?
Send both the required mass flow and the measured bulk density. Route, incline, material behaviour and duty determine the final selection; the published model data are not a universal throughput guarantee.

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