CN204735290U - Continuous ball mill of step - Google Patents
Continuous ball mill of step Download PDFInfo
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- CN204735290U CN204735290U CN201520454248.5U CN201520454248U CN204735290U CN 204735290 U CN204735290 U CN 204735290U CN 201520454248 U CN201520454248 U CN 201520454248U CN 204735290 U CN204735290 U CN 204735290U
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- discharge end
- ball mill
- pipe
- continuous ball
- feeding end
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Abstract
The utility model belongs to the mechanical equipment field, in particular to continuous ball mill of step, including pan feeding end and discharge end, the pan feeding end all is equipped with the head with the discharge end, and the step barrel of compriseing the pipe more than two sections between pan feeding end and the discharge end, each section circle bore of pipe are followed the pan feeding and is held to the discharge end and decrease progressively in proper order, and the head of discharge end feeds through has the mud honeycomb duct, has goal stone device on the mud honeycomb duct. Structural configuration is reasonable, and the operation can be changed in batches to easy the realization, not only improves product quality, still can improve production efficiency, reduces artifical intensity of labour, and the energy can be saved practices thrift the cost.
Description
Technical field
The utility model relates to a kind of step continuous ball mill, belongs to technical field of mechanical equipment.
Background technology
The barrel diameter of tradition continuous ball mill is identical, when wanting increase yield and fineness, barrel lenght must increase, and cylindrical shell also will be made into two or more cabins body, artificial different size, the different ballstone of diameter puts into each cabin body, after using a period of time, ballstone wearing and tearing diminish, affect output again, manually again ballstone must be released, again ballstone is chosen, reload again in cylindrical shell, so not only little ballstone but also lost labor had been wasted, also waste electricity, be divided into many storehouses also to need to separate with compartment web plate, the two-sided wearing and tearing by ballstone of separation web plate, 1 year or will change more than a year, change separation web plate and also will have fee of material and labour cost, and the material worn and torn also pollutes ceramic raw material.Tradition continuous ball mill discharge end is filter formula, affects output.
Utility model content
The technical problems to be solved in the utility model is: provide a kind of simple and reasonable, can save time, laborsaving, power saving, the step continuous ball mill improved the quality of products.
Step continuous ball mill described in the utility model, comprise feeding end and discharge end, feeding end and discharge end are equipped with end socket, the step cylindrical shell be made up of the pipe of more than two sections between feeding end and discharge end, the internal diameter of each section of pipe successively decreases from feeding end successively to discharge end, the end socket of discharge end is communicated with mud mozzle, mud mozzle has goal stone device.
Cylindrical shell manufactures multistage not equal diameter cylindrical shell, equal diameter cylindrical shell is not different at the diameter of each fragment position of rectilinear direction, different-diameter cylindrical shell is in the process of rotating, because diameter is different, cylindrical shell each section of linear velocity of different-diameter is also just different, because linear velocity difference makes the different ballstone of the inner size diameter loaded distribute voluntarily, realize many storehouses object, the size distribution of ballstone reaches not worse than there being separation web plate effect, because output improves 40% than traditional continuous ball mill, the size of selection ballstone that also need not be artificial again, save time like this, laborsaving, power saving.The series connection of multiple stage cylindrical shell can be used, the mud mozzle of First connects the feeding end of second, and the mud of First flows out from mud mozzle, flow into, and stone device of can scoring from junction adds ballstone from the feeding end of second.
The end socket of described discharge end is arranged double layer hollow axle, arrange spiral block device in double layer hollow axle, double layer hollow axial outlet is communicated with mud mozzle.Discharge end adopts spiral block device to stop, and particulate material and ballstone flow out, each section is just equivalent to one section of separation of traditional continuous ball mill, hollow mandrel interior is made into bilayer, such structure just eliminates separation web plate, and output increases, also eliminate the maintenance cost that separation web plate is later, also do not pollute ceramic raw material.
The end socket of described feeding end is arranged spiral feed pipe, spiral feed pipe entrance connects porous feed device, and porous feed device connects hopper.
Described hopper arranges flowmeter.
Described feeding end and the end socket of discharge end all adopt ellipsoidal head.Solder joint is many, and good stability, life-span are long.
Mud water conservancy diversion transition conduit is set between described mud mozzle and goal stone device.
Described cylindrical shell is made up of 2 ~ 7 sections of pipes.
The inside diameter ranges of described first paragraph pipe is set to 2600mm ~ 3400mm; The inside diameter ranges of second segment pipe is set to 2580mm ~ 3380mm; The inside diameter ranges of the 3rd section of pipe is set to 2560mm ~ 3360mm; To successively decrease all successively 20mm from feeding end to the upper lower limit value of the internal diameter of discharge end adjacent segment pipe.
The beneficial effects of the utility model are:
Topology layout is reasonable, easily realizes, can batched operation, not only improves the quality of products, also can enhance productivity, reduce hand labor intensity, save the energy, cost-saving.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is the structural representation of two adjacent ball mill junctions.
Fig. 3 is the structural representation of double layer hollow axle in Fig. 1.
In figure: 1, flowmeter 2, hopper 3, porous feed device 4, end socket 5, cylindrical shell 6, double layer hollow axle 7, spiral block device 8, goal stone device 9, mud water conservancy diversion transition conduit 10, mud mozzle 11, spiral feed pipe.
Detailed description of the invention
Below in conjunction with accompanying drawing, the utility model is described further:
As shown in FIG. 1 to 3, step continuous ball mill described in the utility model, comprise feeding end and discharge end, feeding end and discharge end are equipped with end socket 4, the step cylindrical shell 5 be made up of the pipe of more than two sections between feeding end and discharge end, the internal diameter of each section of pipe successively decreases from feeding end successively to discharge end, and the end socket 4 of discharge end is communicated with mud mozzle 10, mud mozzle 10 has goal stone device 8.The end socket 4 of discharge end arranges double layer hollow axle 6, arranges spiral block device 7 in double layer hollow axle 6, double layer hollow axle 6 outlet has mud mozzle 10.The end socket 4 of feeding end arranges spiral feed pipe 11, and spiral feed pipe 11 entrance connects porous feed device 3, and porous feed device 3 connects hopper 2.Hopper 2 is arranged flowmeter 1.The end socket 4 of feeding end and discharge end all adopts ellipsoidal head.Mud water conservancy diversion transition conduit 9 is set between mud mozzle 10 and goal stone device 8.Cylindrical shell 5 is made up of 2 ~ 7 sections of pipes.The inside diameter ranges of first paragraph pipe is set to 2600mm ~ 3400mm; The inside diameter ranges of second segment pipe is set to 2580mm ~ 3380mm; The inside diameter ranges of the 3rd section of pipe is set to 2560mm ~ 3360mm; To successively decrease all successively 20mm from feeding end to the upper lower limit value of the internal diameter of discharge end adjacent segment pipe.
During use, can multiple stage series connection use, the mud mozzle 10 of First is connected with the porous feed device 3 of mud water conservancy diversion transition conduit 9 with second, and the mud mozzle 10 of second is connected with the porous feed device 3 of mud water conservancy diversion transition conduit 9 with the 3rd, the rest may be inferred, and adjacent two connect successively.Firing platform stepwise continuous ball mill, material from feeding end pan feeding, from discharge end discharging.
Claims (8)
1. a step continuous ball mill, comprise feeding end and discharge end, feeding end and discharge end are equipped with end socket (4), it is characterized in that: the step cylindrical shell (5) be made up of the pipe of more than two sections between feeding end and discharge end, the internal diameter of each section of pipe successively decreases from feeding end successively to discharge end, the end socket (4) of discharge end is communicated with mud mozzle (10), mud mozzle (10) has goal stone device (8).
2. step continuous ball mill according to claim 1, it is characterized in that: the end socket (4) of discharge end arranges double layer hollow axle (6), arrange spiral block device (7) in double layer hollow axle (6), double layer hollow axle (6) outlet has mud mozzle (10).
3. step continuous ball mill according to claim 1 and 2, it is characterized in that: the end socket (4) of feeding end arranges spiral feed pipe (11), spiral feed pipe (11) entrance connects porous feed device (3), and porous feed device (3) connects hopper (2).
4. step continuous ball mill according to claim 3, is characterized in that: hopper (2) is arranged flowmeter (1).
5. the step continuous ball mill according to any one of Claims 1 to 4, is characterized in that: the end socket (4) of feeding end and discharge end all adopts ellipsoidal head.
6. step continuous ball mill according to claim 1, is characterized in that: arrange mud water conservancy diversion transition conduit (9) between mud mozzle (10) and goal stone device (8).
7. step continuous ball mill according to claim 1, is characterized in that: cylindrical shell (5) is made up of 2 ~ 7 sections of pipes.
8. step continuous ball mill according to claim 1, is characterized in that: the inside diameter ranges of first paragraph pipe is set to 2600mm ~ 3400mm; The inside diameter ranges of second segment pipe is set to 2580mm ~ 3380mm; The inside diameter ranges of the 3rd section of pipe is set to 2560mm ~ 3360mm; To successively decrease all successively 20mm from feeding end to the upper lower limit value of the internal diameter of discharge end adjacent segment pipe.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520454248.5U CN204735290U (en) | 2015-06-29 | 2015-06-29 | Continuous ball mill of step |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520454248.5U CN204735290U (en) | 2015-06-29 | 2015-06-29 | Continuous ball mill of step |
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CN204735290U true CN204735290U (en) | 2015-11-04 |
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CN201520454248.5U Active CN204735290U (en) | 2015-06-29 | 2015-06-29 | Continuous ball mill of step |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105921223A (en) * | 2016-06-18 | 2016-09-07 | 江苏新春兴再生资源有限责任公司 | Separating bowl of separator for treating fine lead grids of waste lead-acid batteries |
-
2015
- 2015-06-29 CN CN201520454248.5U patent/CN204735290U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105921223A (en) * | 2016-06-18 | 2016-09-07 | 江苏新春兴再生资源有限责任公司 | Separating bowl of separator for treating fine lead grids of waste lead-acid batteries |
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