(D)Outer diameter
|
Segment Size
|
inch
|
mm
|
L * W * H |
10
|
250
|
40*2.8*13/14
|
12
|
300
|
40*3.0(3.2)*13/14
|
14
|
350
|
40*3.0(3.2)*13/14
|
16
|
400
|
40*3.4(3.6)*13/14
|
18
|
450
|
40*3.8*13/14
|
20
|
500
|
40*4.2*13/14
|
22
|
550
|
40*4.4*13/14
|
24
|
600
|
40*4.8*13/14
|
26
|
650
|
40*5.0*13/14
|
28
|
700
|
40*5.2*13/14
|
32
|
800
|
40*5.8*13/14
|
36
|
900
|
24*7.0/6.4*13/14
|
40
|
1000
|
24*7.4/6.8*13/14
|
48
|
1200
|
24*7.8/7.2*13/14
|
52
|
1300
|
24*8.4/7.8*13/14
|
64
|
1600
|
24*9.2/8.6*13/14
|
72
|
1800
|
24*10.0/9.4*13/14
|
80
|
2000
|
24*10.8/10.2*13/14
|
86
|
2200
|
24*10.8/10.2*13/14
|
100
|
2500
|
24*11.8/11.2*13/14
|
120
|
3000
|
24*13.0/12.0*13/14
|
140
|
3500
|
24*13.0/12.0*13/14
|
Special Specifications Are Also Available.
Why choose us ?
1. We are a professional and experienced manufacturer of stone cutting tools and stone machinery.
2. High-quality products and fantastic cutting performance.
3. High cost performance.
4. Longer lifespan.
5. Good and customized after-sales service.
Why Arrayed diamond segments can replace traditional diamond segments?
In the manufacturing process of traditional diamond saw blades, most of them adopt diamond-coated granulation and three-dimensional mixing process of pre-alloyed matrix powder. In order to prevent diamond segregation, methods such as adding infiltrate liquid paraffin or distilled water are used. But none of these can fundamentally solve the problem of the random distribution of diamonds in the matrix. The randomly distributed diamonds in the matrix are prone to accumulation and segregation. In the diamond accumulation area, diamonds cannot be effectively used, resulting in waste, especially the zero-distance multi-grain diamonds, which hardly work during the cutting process and fall off by themselves due to the weak holding force; Under heavy working load, the impact force becomes larger, and the diamond particles are crushed by the impact and fall off prematurely. The arrayed diamond paricles technology can automatically arrange diamonds evenly with optimal spacing in the production of diamond segments. The design of the orderly arrangement of diamond particles in the diamond segment makes the above-mentioned problems affecting the performance of diamond tools preliminarily solved. It can keep the diamonds in the segment from sharpening and cutting out continuously, and reasonably adjust the diamond parameters and arrangement mode in the segment. Also can effectively improve the cutting performance of the saw blade.
The technology and process of orderly arrangement of diamonds in the cutting segment can make the diamonds fully and effectively utilized in the tool, which can not only improve the efficiency of the saw blade, but also prolong the life of the tool, and at the same time save diamonds and reduce production cost.
How to select segment ( basic guide for selecting segment ) (Part A)
a) So called segment, it refers to diamond segment. In masonry, sawing, cutting, grinding, and polishing work areall making use of the nature of diamond, including its
high hardness, high intensity, and high wearability. The blank is used as upholder. Diamond segments usually cost 12.5% of the cutted-stone cost,and for the sake of their high cost,reasonably using and choosing them is more important.
b) The width of segment can be grouped by the error band .The error band shoud be controlled within 0.05mm in a same blade.
c) When cutting stone, what s really working on the stone are diamond crystals, while the metal bond is used to hold them together. Diamond crystals would be exposed at a certain height, generally at the 20%-60% height of the crystal, it depends on the stone. Different stone has the different requirement for the lowest height exposed.
d) The kerf cutted by the blade is the result integrated by all of the diamond crystals' cut.
e) What is blade durability, namely blade lifespan? It is the final acreage ( square meter ) of the stone cutted by the blade from the its first cutting to its last cutting ( when its diamond layer wear off.