Combined antiwearing blades
A combined, impeller technology, applied in non-variable volume pumps, components of pumping devices for elastic fluids, machines/engines, etc., can solve problems such as high cost and difficult impellers, and achieve high production efficiency and cost. The effect of increasing less and reducing the frequency of damage
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Embodiment 1
[0027] Embodiment 1: Referring to Figures 1-5, the impeller web core 1 is cast in metal, and the surface is processed with grooves 2 for embedding the blades according to the arc shape of the blades. Using wear-resistant ceramics (such as silicon carbide, Al 2 o 3 The impeller blade 3 is made of high-purity alumina, zirconia), wear-resistant alloy, and glass-ceramics with a content of more than 95%. The blade is inserted into the groove of the impeller core, put into the mold, and the hardenable resin 4 is poured on the peripheral surface of the web core of the metal impeller, so as to obtain the combined wear-resistant impeller with auxiliary blades 5 .
[0028] In addition, the surrounding surface of the metal core can also be injection molded plastics, or other organic polymer materials, and 30-90%wt mineral particles can be added in the polymer materials, or poplar-free fibers (such as ceramic fibers, glass fibers), to Improve the wear resistance of the web.
[0029] In...
Embodiment 2
[0031] Embodiment 2: Referring to Figures 6 and 7, the combined wear-resistant impeller of the present invention has a cast metal impeller web 8, and an additionally cast wear-resistant alloy blade 7 is fixed on the web by welding 9.
Embodiment 3
[0032] Embodiment 3: Referring to Figures 8, 9, and 10, the combined wear-resistant impeller of the present invention, its wear-resistant blade 10 can also be a blade part, that is, the web and part of the blade are made into one (leaving the most easily worn angle of attack position ), the wear-resistant blade 10 is welded or embedded in the default position of the blade.
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