Garbage incinerator
A waste incinerator and incinerator technology, applied in incinerators, combustion methods, combustion types, etc., can solve the problems affecting incineration exhaust volume and furnace pressure load degree, cylinder explosion and pipeline aerodynamic plugging, tar and other fluid treatment It can improve the efficiency of pollution-free efflux, ensure the degree of degradation, and improve the efficiency.
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Embodiment 1
[0035] see Figure 1-Figure 8 , the present invention provides a garbage incinerator, the structure of which comprises: an exhaust elbow 1, a short flange sleeve 2, a pressure flow exhaust valve tank 3, a trapezoidal cover platform groove 4, an incinerator groove 5, and a flip door panel 6, The pressure flow exhaust valve tank 3 is nested in the upper right corner of the trapezoidal cover platform groove 4 and is perpendicular to each other. The incinerator tank 5 is mechanically connected with the flip door panel 6 through a hinge, and the trapezoidal cover platform groove 4 is nested in the On the top of the incinerator tank 5 and on the same vertical plane, the exhaust elbow 1 is inserted on the top of the flange short sleeve 2 and communicates with each other, and the flange short sleeve 2 is nested in the press On the top of the flow exhaust valve tank 3 and the axes are collinear, the pressure flow exhaust valve tank 3 is provided with a wheel pressure strip frame 3A, an...
Embodiment 2
[0043] see Figure 1-Figure 8 , the present invention provides a kind of refuse incinerator, other respects are identical with embodiment 1, and difference is:
[0044] see image 3 The trapezoidal cover platform groove 4 is made up of a gland plate seat 41 and a trapezoidal shell cover 42. The gland plate seat 41 is installed in the inside of the trapezoidal shell cover 42 and is on the same horizontal plane. The gland plate seat 41 and the The trapezoidal casing 42 adopts an interference fit, and the upper row of butt joint dredging operation effect of combustion steam is formed on the top of the trapezoidal casing 42 through the cover plate seat 41 .
[0045] see Figure 6 , the gland plate seat 41 is composed of a plate groove 411, a rod support block 412, and a concave buckle block 413. The plate groove 411 and the rod support block 412 adopt clearance fit and are on the same horizontal plane. The concave buckle block 413 is provided with two and respectively nested on...
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