CN212284333U - Combined type strikes grit breaker with damper - Google Patents

Combined type strikes grit breaker with damper Download PDF

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Publication number
CN212284333U
CN212284333U CN202020614890.6U CN202020614890U CN212284333U CN 212284333 U CN212284333 U CN 212284333U CN 202020614890 U CN202020614890 U CN 202020614890U CN 212284333 U CN212284333 U CN 212284333U
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CN
China
Prior art keywords
plate
grit
hole
crushing
edge
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Expired - Fee Related
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CN202020614890.6U
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Chinese (zh)
Inventor
周航
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Fushun Carbon Co ltd
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Fushun Carbon Co ltd
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Priority to CN202020614890.6U priority Critical patent/CN212284333U/en
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Publication of CN212284333U publication Critical patent/CN212284333U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a grit breaker is strikeed to combined type with damper, including supporting mechanism and broken mechanism, the grit that needs processing is placed in the breaker inner chamber, it gets into the processing agency inner chamber downwards through gathering the material cavity board, it is rotatory to drive the rotary drum through driving motor, the grit gets rid of to the counterattack board upper end through the drive of broken leaf, thereby reach broken purpose, get into downwards through broken grit and filter the swash plate upper end, unable grit through filtering the swash plate, outside through first discharge gate eduction gear, the grit that can pass through filtering the swash plate passes through second discharge gate eduction gear, discharge breaker's grit gets into flourishing material mechanism inner chamber through dividing the sieve board downwards, the grit separation that can't pass through is in the upper end of dividing the sieve, can collect it through lower silo through the grit.

Description

Combined type strikes grit breaker with damper
Technical Field
The utility model relates to a broken technical field of grit specifically is a combined type strikes grit breaker with damper.
Background
The hammer crusher mainly completes the operation of crushing materials by impact energy. When the hammer crusher works, the motor drives the rotor to rotate at a high speed, materials uniformly enter a crusher cavity, the high-speed rotary hammer head impacts and cuts and tears the materials to cause the materials to be crushed, meanwhile, the gravity action of the materials enables the materials to impact the inner baffle plate and the screen bars of the frame body from the high-speed rotary hammer head, the lower part of the rotor is provided with a screen plate, the grain fraction smaller than the size of the screen hole in the crushed materials is discharged through the screen plate, and the materials larger than the size of the screen hole are retained on the screen plate to continue to be struck and ground by the hammer.
At the in-process of carrying out the grit crushing, the grit breaker is indispensable equipment, and the grit breaker on the present market mostly has the poor, the device of the crushing effect of device to the grit poor, the relatively poor problem of stability of device of the shock attenuation effect of device.
In order to solve the problems, a combined impact gravel crusher with a damping mechanism is provided for improving the damping effect of the gravel crusher, the crushing effect of a device on gravel and the stability of the device.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a grit breaker is strikeed to combined type with damper, including supporting mechanism and broken mechanism, the grit that needs processing is placed in the breaker inner chamber, it gets into the processing agency inner chamber downwards through gathering the material chamber board, it rotates through driving motor drive rotary drum, the grit gets rid of to the counterattack board upper end through the drive of broken leaf, thereby reach broken purpose, get into downwards through broken grit and filter the swash plate upper end, can't pass through the grit that filters the swash plate, through first discharge gate eduction gear, the grit that can pass through the filtration swash plate passes through second discharge gate eduction gear, the grit that discharges breaker gets into flourishing material mechanism inner chamber downwards through dividing the sieve board, the grit separation that can't pass through is in the upper end that divides the sieve, can pass through the grit collect it through lower silo, the shock attenuation effect of device has been promoted, The device solves the problems in the background technology on the crushing effect of sand and stones and the stability of the device.
In order to achieve the above object, the utility model provides a following technical scheme: a combined type impact gravel crusher with a damping mechanism comprises a supporting mechanism and a crushing mechanism, wherein the crushing mechanism is installed at the upper end of the supporting mechanism, the supporting mechanism comprises a supporting base, a material containing mechanism, discharge holes, limiting blocks, a fixing plate, a connecting strip, a telescopic cylinder and a telescopic rod, the material containing mechanism is installed in an inner cavity of the supporting base, the discharge holes are formed in the side end of the supporting base, the limiting blocks are installed at the rear end of the supporting base, the fixing plate is installed at the upper end of the limiting blocks, the front end of the fixing plate is movably connected with the crushing mechanism through the connecting strip, the telescopic cylinder is installed at the edge of the upper end of the supporting base, the telescopic rod is installed in an inner cavity of the telescopic cylinder, the crushing mechanism comprises a first mounting plate, a material passing hole, a second mounting plate, a hollow hole, an edge hole, a material storage, the feed through hole has been seted up to the centre of first mounting panel, spacing post is installed at the edge of first mounting panel, first mounting panel is through spacing post and second mounting panel swing joint, well casement has been seted up to the middle-end of second mounting panel, the edge hole has been seted up to the side of well casement, the stock chest has been seted up to the side of second mounting panel, install breaker between feed through hole and the well casement, communicating pipe is installed to breaker's side, the other end and the edge hole swing joint of communicating pipe.
Further, the containing mechanism comprises a containing box, a discharging groove, a separating sieve plate, edge mounting columns and an internal connection cavity, the discharging groove is formed in the inner end of the containing box, the separating sieve plate is mounted at the upper end of the containing box, the edge mounting columns are mounted at the edges of the two ends of the containing box, and the internal connection cavity is formed in the top ends of the edge mounting columns.
Further, spacing post includes spacing cylinder, connecting rod and connects the piece on, the connecting rod is installed to the upper end of spacing cylinder, the top of connecting rod is installed and is connected the piece.
Further, breaker includes broken urceolus, places the swash plate, gathers material chamber board, counterattack board, first discharge gate, processing mechanism, filters the swash plate, built-in board and second discharge gate, the swash plate is placed to the inner chamber wall both ends of broken urceolus installation, the inner of placing the swash plate is installed and is gathered material chamber board, the counterattack board is installed at the inner chamber wall both ends of broken urceolus, first discharge gate has been seted up to the lower extreme of counterattack board, processing mechanism is installed to the centre of broken urceolus, the filtration swash plate is installed to the lower extreme of first discharge gate, filter the built-in board of installing in the inner of swash plate, the second discharge gate has been seted up to the bottom of broken urceolus.
Further, the processing mechanism comprises a driving motor, a rotating cylinder and crushing blades, the side end of the driving motor is movably connected with the rotating cylinder, and the crushing blades are arranged on the outer ring of the rotating cylinder in an annular mode.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. the utility model provides a combined type strikes grit breaker with damper, the grit that needs the processing is placed in the breaker inner chamber, it gets into the processing agency inner chamber downwards through gathering the material cavity board, it is rotatory to drive a rotatory section of thick bamboo through driving motor, the grit gets rid of to the counterattack board upper end through the drive of broken leaf, thereby reach broken purpose, get into the filtration swash plate upper end downwards through broken grit, can't pass through the grit that filters the swash plate, outside first discharge gate eduction gear, the grit that can pass through the filtration swash plate passes through second discharge gate eduction gear.
2. The utility model provides a combined type strikes grit breaker with damper, discharge breaker's grit gets into flourishing material mechanism inner chamber through dividing the sieve board downwards, and the grit separation that can't pass through is in the upper end of dividing the sieve, and the grit that can pass through is collected it through lower silo.
3. The utility model provides a combined type strikes grit breaker with damper, fixed plate and connecting strip can make the stability of device obtain promoting, can not lead to the device slope because of violently rocking that causes man-hour, and the phenomenon that collapses takes place, and telescopic cylinder and telescopic link can be to the high adjustment of overall arrangement, applicable processing work under the various condition.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic structural view of the material holding mechanism of the present invention;
FIG. 3 is a schematic structural view of the crushing mechanism of the present invention;
FIG. 4 is a schematic view of the structure of the spacing column of the present invention;
fig. 5 is a schematic structural diagram of the crushing device of the present invention.
In the figure: 1. a support mechanism; 11. a support base; 12. a material containing mechanism; 121. a material containing box; 122. a discharging groove; 123. separating the sieve plate; 124. an edge mounting post; 125. an inscribed cavity; 13. a discharge hole; 14. a limiting block; 15. a fixing plate; 16. a connecting strip; 17. a telescopic cylinder; 18. a telescopic rod; 2. a crushing mechanism; 21. a first mounting plate; 22. a feed through hole; 23. a second mounting plate; 24. a hollow bore; 25. an edge hole; 26. a storage tank; 27. a limiting column; 271. a limiting column body; 272. a communication rod; 273. an upper connecting block; 28. a crushing device; 281. crushing the outer barrel; 282. placing an inclined plate; 283. a polymer chamber plate; 284. a counterattack plate; 285. a first discharge port; 286. a processing mechanism; 2861. a drive motor; 2862. a rotary drum; 2863. crushing the leaves; 287. a filtering inclined plate; 288. a built-in plate; 289. a second discharge port; 29. a communication pipe is provided.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, a combined type impact sand crusher with a shock absorption mechanism comprises a supporting mechanism 1 and a crushing mechanism 2, wherein the upper end of the supporting mechanism 1 is provided with the crushing mechanism 2, the supporting mechanism 1 comprises a supporting base 11, a material containing mechanism 12, a discharge hole 13, a limit block 14, a fixing plate 15, a connecting strip 16, a telescopic cylinder 17 and a telescopic rod 18, the material containing mechanism 12 is arranged in an inner cavity of the supporting base 11, the material containing mechanism 12 comprises a material containing box 121, a material discharging groove 122, a material separating plate 123, an edge mounting column 124 and an internal connecting cavity 125, the inner end of the material containing box 121 is provided with the material discharging groove 122, the upper end of the material containing box 121 is provided with the material separating plate 123, the edges of the two ends of the material containing box 121 are provided with the edge mounting column 124, the top end of the edge mounting column 124 is provided with the internal connecting cavity 125, the discharge hole 13 is formed in the, the upper end of the limit block 14 is provided with a fixed plate 15, the front end of the fixed plate 15 is movably connected with the crushing mechanism 2 through a connecting strip 16, the upper end edge of the support base 11 is provided with a telescopic cylinder 17, the inner cavity of the telescopic cylinder 17 is provided with a telescopic rod 18, the crushing mechanism 2 comprises a first mounting plate 21, a material through hole 22, a second mounting plate 23, a hollow hole 24, an edge hole 25, a material storage tank 26, a limit column 27, a crushing device 28 and a communicating pipe 29, the middle of the first mounting plate 21 is provided with the material through hole 22, the edge of the first mounting plate 21 is provided with the limit column 27, the limit column 27 comprises a limit column body 271, a communicating rod 272 and an upper connecting block 273, the upper end of the limit column body 271 is provided with the communicating rod 272, the top end of the communicating rod 272 is provided with the upper connecting block 273, the first mounting plate 21 is movably connected with the second mounting plate 23, the side end of the hollow hole 24 is provided with an edge hole 25, the side end of the second mounting plate 23 is provided with a stock chest 26, a crushing device 28 is installed between the material passing hole 22 and the hollow hole 24, the crushing device 28 comprises a crushing outer cylinder 281, a placing inclined plate 282, a material gathering cavity plate 283, a counterattack plate 284, a first material outlet 285, a processing mechanism 286, a filtering inclined plate 287, an inner plate 288 and a second material outlet 289, the placing inclined plate 282 is installed at two ends of the inner cavity wall of the crushing outer cylinder 281, the material gathering cavity plate 283 is installed at the inner end of the placing inclined plate 282, the counterattack plate 284 is installed at two ends of the inner cavity wall of the crushing outer cylinder 281, the first material outlet 285 is installed at the lower end of the counterattack plate 284, the processing mechanism 286 is installed in the middle of the crushing outer cylinder 281, the processing mechanism 286 comprises a driving motor 2861, a rotary cylinder 2862 and crushing blades 2863, the side end of the driving motor 2861 is movably connected, a filtering sloping plate 287 is arranged at the lower end of the first discharge port 285, an internal plate 288 is arranged at the inner end of the filtering sloping plate 287, a second discharge port 289 is arranged at the bottom end of the crushing outer cylinder 281, gravels to be processed are placed in the inner cavity of the crushing device 28 and downwards enter the inner cavity of the processing mechanism 286 through the material gathering cavity plate 283, the rotary cylinder 2862 is driven to rotate by the driving motor 2861, the gravels are thrown to the upper end of the counterattack plate 284 through the driving of the crushing blade 2863, so that the crushing purpose is achieved, the gravels downwards enter the upper end of the filtering sloping plate 287 and cannot pass through the filtering sloping plate 287, the gravels which can pass through the filtering sloping plate 287 are discharged out of the device through the first discharge port 285, the gravels which can pass through the filtering sloping plate 287 pass through the second discharge port discharge device, a communicating pipe 29 is arranged at the side end of the crushing device 28, the other end of the, the grit separation that can't pass through is in the upper end of dividing the sieve plate 123, and the grit that can pass through is collected it through silo 122 down, and fixed plate 15 and connecting strip 16 can make the stability of device obtain promoting, can not lead to the device slope because of the acutely rocking that causes during processing, and the phenomenon of collapsing takes place, and telescopic cylinder 17 and telescopic link 18 can be to the high adjustment of overall installation, applicable processing work under the various conditions.
In summary, the following steps: the utility model provides a combined type strikes grit breaker with damper, the grit that needs processing is placed in breaker 28 inner chamber, it gets into the processing mechanism 286 inner chamber downwards through gathering material chamber plate 283, it is rotatory to drive rotary drum 2862 through driving motor 2861, the grit is thrown to counterattack board 284 upper end through the drive of crushing leaf 2863, thereby reach broken purpose, the grit through breakage gets into the upper end of filtering sloping plate 287 downwards, the grit that can't pass through filtering sloping plate 287, outside the discharge apparatus through first discharge gate 285, the grit that can pass through filtering sloping plate 287 passes through second discharge gate 289 discharge apparatus, the grit that discharges breaker 28 gets into flourishing material mechanism 12 inner chamber downwards through separating plate 123, the grit separation that can't pass through is in the upper end of separating plate 123, the grit that can't pass through is collected it through lower silo 122, fixed plate 15 and connecting strip 16 can make the stability of device promoted, the phenomenon that the device inclines and collapses due to violent shaking caused by machining can be avoided, and the telescopic cylinder 17 and the telescopic rod 18 can adjust the height of the whole device and can be suitable for machining work under various conditions.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. The utility model provides a combined type strikes grit breaker with damper, includes supporting mechanism (1) and broken mechanism (2), its characterized in that are installed to the upper end of supporting mechanism (1): the supporting mechanism (1) comprises a supporting base (11), a material containing mechanism (12), discharge holes (13), a limiting block (14), a fixing plate (15), connecting strips (16), a telescopic cylinder (17) and telescopic rods (18), the material containing mechanism (12) is installed in an inner cavity of the supporting base (11), the discharge holes (13) are formed in the side ends of the supporting base (11), the limiting block (14) is installed at the rear end of the supporting base (11), the fixing plate (15) is installed at the upper end of the limiting block (14), the front end of the fixing plate (15) is movably connected with the crushing mechanism (2) through the connecting strips (16), the telescopic cylinder (17) is installed at the edge of the upper end of the supporting base (11), the telescopic rod (18) is installed in the inner cavity of the telescopic cylinder (17), and the crushing mechanism (2) comprises a first mounting plate (21), a material through hole (22), A second mounting plate (23), a hollow hole (24), an edge hole (25), a storage tank (26), a limit column (27), a crushing device (28) and a communicating pipe (29), a material passing hole (22) is formed in the middle of the first mounting plate (21), a limiting column (27) is mounted at the edge of the first mounting plate (21), the first mounting plate (21) is movably connected with the second mounting plate (23) through a limiting column (27), the middle end of the second mounting plate (23) is provided with a hollow hole (24), the side end of the hollow hole (24) is provided with an edge hole (25), a storage trough (26) is arranged at the side end of the second mounting plate (23), a crushing device (28) is arranged between the through hole (22) and the hollow hole (24), a communicating pipe (29) is installed at the side end of the crushing device (28), and the other end of the communicating pipe (29) is movably connected with the edge hole (25).
2. The composite impact sand crusher with damping mechanism as set forth in claim 1, wherein: material containing mechanism (12) includes flourishing magazine (121), feed chute (122), divides sieve plate (123), edge erection column (124) and inscription chamber (125), flourishing magazine (121) the inner has seted up feed chute (122), the upper end of flourishing magazine (121) is installed and is divided sieve plate (123), edge erection column (124) are installed at the both ends edge of flourishing magazine (121), inscription chamber (125) have been seted up on the top of edge erection column (124).
3. The composite impact sand crusher with damping mechanism as set forth in claim 1, wherein: spacing post (27) connect piece (273) including spacing cylinder (271), connecting rod (272) and on, connecting rod (272) are installed to the upper end of spacing cylinder (271), connecting rod (272) are installed on the top of connecting rod (272), connect piece (273) on installing.
4. The composite impact sand crusher with damping mechanism as set forth in claim 1, wherein: the crushing device (28) comprises a crushing outer cylinder (281), a placing inclined plate (282), a material gathering cavity plate (283), a counterattack plate (284), a first discharge hole (285), a processing mechanism (286), a filtering inclined plate (287), a built-in plate (288) and a second discharge hole (289), two ends of the inner cavity wall of the crushing outer cylinder (281) are provided with placing sloping plates (282), a material gathering cavity plate (283) is arranged at the inner end of the placing sloping plate (282), counterattack plates (284) are arranged at two ends of the inner cavity wall of the crushing outer cylinder (281), a first discharge hole (285) is formed in the lower end of the impact plate (284), a processing mechanism (286) is installed in the middle of the crushing outer cylinder (281), a filtering sloping plate (287) is arranged at the lower end of the first discharge hole (285), an internal plate (288) is arranged at the inner end of the filtering sloping plate (287), and a second discharge hole (289) is formed in the bottom end of the crushing outer barrel (281).
5. The composite impact sand crusher with damping mechanism as set forth in claim 4, wherein: processing agency (286) include driving motor (2861), rotatory section of thick bamboo (2862) and broken leaf (2863), driving motor's (2861) side and rotatory section of thick bamboo (2862) swing joint, broken leaf (2863) are installed to the outer lane annular arrangement of rotatory section of thick bamboo (2862).
CN202020614890.6U 2020-04-22 2020-04-22 Combined type strikes grit breaker with damper Expired - Fee Related CN212284333U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020614890.6U CN212284333U (en) 2020-04-22 2020-04-22 Combined type strikes grit breaker with damper

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020614890.6U CN212284333U (en) 2020-04-22 2020-04-22 Combined type strikes grit breaker with damper

Publications (1)

Publication Number Publication Date
CN212284333U true CN212284333U (en) 2021-01-05

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ID=73973841

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020614890.6U Expired - Fee Related CN212284333U (en) 2020-04-22 2020-04-22 Combined type strikes grit breaker with damper

Country Status (1)

Country Link
CN (1) CN212284333U (en)

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Granted publication date: 20210105