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Magnetic Chuck
Permanent magnetic chuck with six face 120N/cm²
Distance between magnetic poles reach 1.5mm (1+0.5)mm
Usage: Used in in-surface grinder, tool grinder and electric sparks machine tools.
Features: When Turning magnetic force ON/OFF the flat faces' accuracy of magnetic force surface not changed. When processing to the six faces, the accuracy of right angles very high, which could be directly used for well-cut machine tool.
| Type |
B (mm) |
Le (mm) |
h1 (mm) |
h2 (mm) |
h (mm) |
H (mm) |
Weight (Kg) |
| YXS1503 |
150 |
300 |
15 |
15 |
18 |
63 |
18 |
| YXS1535 |
150 |
300 |
15 |
15 |
18 |
63 |
21 |
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Single sine permanent magnetic chuck
Distance between magnetic poles: reach1.5mm (1+0.5)mm
Usage: Used in angle grinding in high accuracy
Feature: When Turning magnetic force ON/OFF, the flat face's accuracy of magnetic force surface not changed. The angle could be arbitrarily adjusted at 0-46° according to the different height, processing into the workpiece with different angles. The smaller workpiece is held by the structure of magnet. Machining can be done between poles or anywhere in the top plate except where the screws securethe plate to the base. The magnetic circuit allows excellent holding of thin work as well as the power necessary to hold large work pieces.
| Type |
Le (mm) |
B (mm) |
H (mm) |
D (mm) |
H1 (mm) |
Weight (Kg) |
| YXCC1018 |
175 |
100 |
87 |
75 |
47 |
10 |
| YXCC1325 |
250 |
130 |
87 |
100 |
47 |
19 |
| YXCC1515 |
150 |
150 |
90 |
100 |
5305 |
13.5 |
| YXCC1530 |
300 |
150 |
90 |
100 |
50 |
26 |
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Technical parameters of ordinary rectangular permanent-magnetic chuck
High powered ceramic magnets are used for making standard pole permanent magnetic chucks. The magnetic and non magnetic stainless steel are furnace brazed, making a solid, one piece construction. The magnets can be drilled to a required depth. It is between the poles or anywhere in the top that drilling or machining is done. At the top plates there are no magnets. Handles on all permanent magnetic chucks are removable.
| Model |
B |
L1 |
L2 |
H |
h |
Polar distance |
| YXPC-1 |
100 |
200 |
220 |
60 |
20 |
10(2+8) |
| YXPC-2 |
100 |
220 |
240 |
60 |
20 |
10(2+8) |
| YXPC-3 |
100 |
260 |
280 |
60 |
20 |
10(2+8) |
| YXPC-4 |
120 |
254 |
274 |
60 |
20 |
10(2+8) |
| YXPC-5 |
125 |
250 |
270 |
60 |
20 |
10(2+8) |
| YXPC-6 |
125 |
300 |
320 |
60 |
20 |
10(2+8) |
| YXPC-7 |
150 |
300 |
320 |
60 |
20 |
10(2+8) |
| YXPC-8 |
150 |
350 |
370 |
60 |
20 |
10(2+8) |
| YXPC-9 |
150 |
400 |
420 |
60 |
20 |
10(2+8) |
| YXPC-10 |
150 |
450 |
470 |
60 |
20 |
10(2+8) |
| YXPC-11 |
150 |
460 |
480 |
60 |
20 |
10(2+8) |
| YXPC-12 |
200 |
400 |
420 |
65 |
20 |
10(2+8) |
| YXPC-13 |
200 |
460 |
480 |
65 |
20 |
10(2+8) |
| YXPC-14 |
200 |
500 |
520 |
65 |
20 |
10(2+8) |
| YXPC-15 |
200 |
560 |
580 |
65 |
20 |
10(2+8) |
| YXPC-16 |
250 |
600 |
620 |
80 |
20 |
10(2+8) |
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Technical parameters of fine-pole rectangular permanent-magnetic chuck
Rectangular magnetic chucks are designed for providing high performance work and holding capabilities, like circular magnetic chucks, they feature brass-and-steel top plates for coolant resistance. The chucks use ceramic magnets for maximum workholding and easy release. They come in two varieties- Standard pole chuck and Fine pole chuck
| Model |
B |
L1 |
L2 |
H |
h |
Polar distance |
|
Model |
B |
L1 |
L2 |
H |
h |
Polar distance |
| YXF-1 |
100 |
220 |
250 |
40 |
18 |
5(1+4) |
YXF-14 |
320 |
1000 |
1030 |
66 |
30 |
5(1+4) |
| YXF-2 |
125 |
250 |
280 |
40 |
18 |
5(1+4) |
YXF-15 |
125 |
250 |
280 |
40 |
18 |
1.5(1+4) |
| YXF-3 |
125 |
300 |
330 |
40 |
18 |
5(1+4) |
YXF-16 |
125 |
300 |
300 |
40 |
18 |
1.5(1+4) |
| YXF-4 |
125 |
315 |
350 |
40 |
18 |
5(1+4) |
YXF-17 |
125 |
315 |
350 |
40 |
18 |
1.5(1+4) |
| YXF-5 |
150 |
300 |
316 |
40 |
18 |
5(1+4) |
YXF-18 |
150 |
300 |
316 |
40 |
18 |
1.5(1+4) |
| YXF-6 |
150 |
350 |
380 |
40 |
18 |
5(1+4) |
YXF-19 |
150 |
350 |
380 |
40 |
18 |
1.5(1+4) |
| YXF-7 |
150 |
400 |
430 |
40 |
18 |
5(1+4) |
YXF-20 |
150 |
400 |
430 |
40 |
18 |
1.5(1+4) |
| YXF-8 |
150 |
450 |
480 |
40 |
18 |
5(1+4) |
YXF-21 |
150 |
450 |
480 |
40 |
18 |
1.5(1+4) |
| YXF-9 |
150 |
460 |
490 |
40 |
18 |
5(1+4) |
YXF-22 |
200 |
460 |
490 |
40 |
18 |
1.5(1+4) |
| YXF-10 |
200 |
400 |
430 |
50 |
22 |
5(1+4) |
YXF-23 |
200 |
400 |
430 |
50 |
22 |
1.5(1+4) |
| YXF-11 |
200 |
460 |
490 |
50 |
22 |
5(1+4) |
YXF-24 |
200 |
460 |
490 |
50 |
22 |
1.5(1+4) |
| YXF-12 |
200 |
500 |
530 |
50 |
22 |
5(1+4) |
YXF-25 |
200 |
500 |
530 |
50 |
22 |
1.5(1+4) |
| YXF-13 |
200 |
560 |
590 |
50 |
22 |
5(1+4) |
YXF-26 |
200 |
560 |
590 |
50 |
22 |
1.5(1+4) |
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Technical parameters of single of single-inclination, double-inclination rectangular permanent-magnetic chuck
Precise angular setups are quickly made with this permanent magnetic sine plates. Magnetic Chucks are made with high power Ceramic magnets which never lose power. Top plates are steel and stainless steel furnace brazed into a single solid plate.
| Model |
B |
B1 |
L |
L1 |
H |
H1 |
h |
Polar distance |
Tilting |
| YXI-1 |
125 |
134 |
315 |
355 |
96 |
40 |
18 |
1.5(0.5+1) |
0-45° |
| YXI-2 |
150 |
150 |
150 |
186 |
92 |
42 |
18 |
5(1+4) |
0-45° |
| YXI-3 |
150 |
150 |
300 |
336 |
92 |
42 |
18 |
5(1+4) |
0-45° |
| YXI-4 |
150 |
150 |
350 |
386 |
92 |
42 |
18 |
5(1+4) |
0-45° |
| YXI-5 |
200 |
200 |
560 |
640 |
124 |
65 |
20 |
10(2+8) |
0-45° |
| YXI-6 |
100 |
140 |
220 |
295 |
146 |
60 |
20 |
10(2+8) |
0-45° |
| YXI-7 |
125 |
165 |
300 |
370 |
155 |
60 |
20 |
10(2+8) |
0-45° |
| YXI-8 |
125 |
174 |
315 |
364 |
138 |
40 |
18 |
1.5(0.5+1) |
0-45° |
| YXI-9 |
150 |
150 |
300 |
336 |
118 |
42 |
18 |
5(1+4) |
0-45° |
| YXI-10 |
150 |
150 |
350 |
386 |
118 |
42 |
18 |
5(1+4) |
0-45° |
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