CN2822766Y - Grading double-boosting crushing type sands producing machine - Google Patents

Grading double-boosting crushing type sands producing machine Download PDF

Info

Publication number
CN2822766Y
CN2822766Y CN 200520022261 CN200520022261U CN2822766Y CN 2822766 Y CN2822766 Y CN 2822766Y CN 200520022261 CN200520022261 CN 200520022261 CN 200520022261 U CN200520022261 U CN 200520022261U CN 2822766 Y CN2822766 Y CN 2822766Y
Authority
CN
China
Prior art keywords
main shaft
tup
sieve bar
broken
double booster
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CN 200520022261
Other languages
Chinese (zh)
Inventor
缪文生
周光祥
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CN 200520022261 priority Critical patent/CN2822766Y/en
Application granted granted Critical
Publication of CN2822766Y publication Critical patent/CN2822766Y/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Landscapes

  • Crushing And Pulverization Processes (AREA)

Abstract

The present invention relates to a kind of by the graded crushing mode, in a machine, large-sized building stones (material) are broken for medium size building stones (material) earlier, the medium size building stones are broken for the graded crushing sand shaker of small size stone (material) again, simultaneously by being installed in two power-assisted wheels on the main shaft, increase broken sand shaker broken material efficient and inertia force, genus disintegrating machine, sand shaker are used the field.Longitudinal void position between each tup of upper rotor place, this device busy chamber and the adjacent tup, several sieve bars are housed, sieve bar installation site and rotor main shaft direction (laterally) are 90 °, the two ends of every sieve bar all are installed on the shell, all the sieve bar is formed screen jointly, and each tup all should stretch out the sieve bar during rotation; A power-assisted wheel respectively is housed on the main shaft of broken sand shaker shell both sides, on any one power-assisted wheel sidepiece or main shaft, a belt pulley is housed.This device has that structure is ingenious, the main shaft stress balance, required drive is little, more energy-conservation, the percentage of damage height, the advantage of free adjustment screen frame height externally, thoroughly changing the situation that long-term sand shaker can not broken large scale building stones (material), is the classifying sand breaker with double booster of two machines unification of new generation.

Description

Classifying sand breaker with double booster
Technical field: the present invention relates to a kind of by the graded crushing mode, in a machine, large-sized building stones (material) are broken for medium size building stones (material) earlier, the medium size building stones are broken for the graded crushing sand shaker of small size stone (material) again, by being installed in two power-assisted wheels on the main shaft, increase broken sand shaker broken material efficient and inertia force simultaneously.Genus disintegrating machine, sand shaker are used the field.
Background technology: sand shaker is by charging aperture, the shell of snail shape, main shaft, screen, rotor and tup are formed, need broken building stones (material) to enter into sand shaker inner chamber operating room during work from the heavy caliber charging aperture, the tup moment hammering building stones (material) that the rotor of high speed rotating drives, building stones must once be smashed by tup, otherwise the building stones of chunk sizes will be stuck between the tup and grating or tup and housing of rotor, the obstruction rotor is rotated further, cause the damage of main shaft or bearing, sand shaker can't be worked, therefore existing sand shaker can only broken size be 120 millimeters with interior building stones (material).As the material of the broken size of need greater than 120 millimeters, need are put into material the sand shaker hammering after carrying out fragmentation earlier with more powerful jaw crusher again, just can obtain the material of desired small grain size, and the workload that this increases production cost and workman expends the energy.
Summary of the invention: the shortcoming that the objective of the invention is to overcome prior art, invent a kind of in a machine, by the graded crushing mode, large-sized building stones (material) are broken for medium size building stones (material) earlier, the medium size building stones are broken for the classifying sand breaker with double booster of required small size stone (material) again.
Purpose of the present invention is invented a kind of broken sand shaker, casing outside main shaft respectively is symmetrically installed with a power-assisted wheel, and screen frame can pass through the outer bolt free adjustment, and every grating structure is different, rotor has self-energizing action, the classifying sand breaker with double booster that broken material efficient is higher.
Structure of the present invention is: the classifying sand breaker with double booster of being made up of heavy caliber charging aperture, shell, main shaft, screen frame, belt pulley, grating, tup and rotor, it is characterized in that the longitudinal void position between each tup of operating room's upper rotor place and adjacent tup, several sieve bars are housed, sieve bar installation site and rotor main shaft direction (laterally) are 90 ° ± 5 °, the two ends of every sieve bar all are installed on the shell, all the sieve bar is formed screen jointly, and each tup all should stretch out the sieve bar during rotation.
A power-assisted wheel respectively is housed on the main shaft of broken sand shaker shell both sides, on any one power-assisted wheel sidepiece or main shaft, a belt pulley is housed, sieve bar installation site and rotor main shaft direction (laterally) preferably are 90 °, and it is the 30-300 millimeter that each tup preferably stretches out the sieve bar.
Have at least an end upwards to bend in the described sieve bar, form one section pole, sieve bar two ends head has connection with screw thread or pin-and-hole or fixing cover; Sieve bar shape of cross section is circle, square, rectangle, hexagon, triangle or taper shape.
The lifting pitman is arranged on the described screen frame, and the slot that the lifting pitman passes on the shell is connected with adjusting screw(rod); Be placed with several gratings in the described screen frame arcuation notch, have two blocks on the every grating at least.
Described rotor is made up of main shaft, hammer carrier, tup and bearing pin, the wall thickness (S at its hammer carrier edge connecting hole (2) position 1) greater than the wall thickness (S of hammer frame plate 2), the hammer carrier profile is in-line, rhombus, triangle or quadrangle.
Described shell is a snail formula shell, and heavy caliber charging aperture (6) locates to be equipped with Adjustable device flitch or movable bounce-back plate, and striker plate has rigidity or flexibility, and movable bounce-back plate can be rigidity, flexibility or chain type.
The body of described classifying sand breaker with double booster can be made as a formula or portable two kinds, and portable body is installed on the frame, and the frame pin only is at least 4-6, also can adorn 2-4 wheel on every frame.The bore of described heavy caliber charging aperture is greater than 150 millimeters.
Operation principle is: because this device has particular structure, the longitudinal void position between each tup (1) and the adjacent tup (1) in rotor then, a sieve bar (8) respectively is housed, every sieve bar (8) installation site and rotor main shaft direction (laterally) are 90 ° ± 5 ° angles, preferably present 90 ° of angles, just can not make the sieve bar (8) of side like this with the tup of rotor rotation; Every sieve bar (8) one segment distances all should be stretched out in each tup end during rotation, and tup is possibility hammering material, and the distance that sieve bar (8) is stretched out in the tup end is preferably in 10-100 millimeter scope, and tup end outreach is oversize, and the entire machine required drive is just big; Tup end outreach is too short, and tup hammering material position is few, and crush efficiency is low.
During use, after large-sized building stones (material) enter broken sand shaker operating room from heavy caliber charging aperture (6), be positioned at the screen that several sieve bars (8) are formed between the tup and stop (perhaps lifting), large scale building stones (material) just can not be stuck in position between each tup of rotor, the tup (1) that rotates really can stretch out every sieve wiper hammer and hit material, smashing the building stones (material) that become middle size installs on the screen frame of broken sand shaker bottom by falling into this behind the screen earlier, the tup hammering that the large scale building stones (material) that are not crashed to pieces continue to be rotated, all being crashed to pieces up to whole large scale building stones (material) is middle size building stones (material); Falling into this installs the tup that the size building stones (material) on the screen frame of broken sand shaker bottom are rotated once more and impacts, smashed into required undersized building stones (material) and could fall into broken sand shaker bottom from grating, realize just large-sized material continuous crushing being become the desired small grain size material with machine is disposable, overcome above-mentioned twice (machine) broken operation, reach the effect of two machines unification.
In order to prevent that material is accumulated in an end or the two ends of broken sand shaker operating room screen upper cavity, this device will sieve the upwards bending of at least one end of bar (8), form one section pole (81), material stops down at pole (81), can tumble the medium position of heaping in the operating room, can not occur during hammering tup (1) hammering less than dead-space volume, improve percentage of damage.
This crust of the device is made the shell of snail shape, helps reducing cost of manufacture, and good looking appearance.Heavy caliber charging aperture (6) helps putting into the large scale material.
Inertia force when increasing this device rotor rotation, improve single power-assisted wheel to the stressed unbalanced influence of main shaft, on the main shaft of this crust of the device of the present invention both sides external, each symmetry is installed a power-assisted wheel (3), form the effect of two power-assisted wheels, improve the stressed imbalance problem of main shaft.Equally, the inertia force when rotating for increasing broken sand shaker inner rotator, this device rotor can use the wall thickness (S at hammer carrier edge connecting hole (2) position 1) greater than the wall thickness (S of hammer frame plate 2) from the power-assisted rotor, the energy-conservation hammer carrier of booster type respectively is equipped with in the rotor both sides, the light rotor core of being made up of yi word pattern hammer carrier, rhombus hammer carrier, triangle hammer carrier or tetragonal hammer carrier is equipped with in the centre, and inertia force is with the requirement of satisfying hammering large scale building stones (material) and energy-conservation when increase rotating.Composition can be different shapes such as in-line, rhombus, triangle or quadrangle from the hammer carrier profile of power-assisted rotor.
On the main shaft of this crust of the device of the present invention both sides external, each symmetry is installed a power-assisted wheel (3), because two power-assisted wheels are that symmetry is installed in both sides, forms the effect of two power-assisted wheels, has improved the inertia force of machine, improves the stressed imbalance problem of main shaft.Belt pulley can be mounted in it the sidepiece of any one power-assisted wheel, and belt pulley also can directly be contained on the main shaft.
In use for some time, tup (1) can shorten in wearing and tearing, gap between tup (1) and the screen frame increases, the broken material decrease in efficiency is regulated the position of screen frame for the convenience of the users, guarantees gap size between tup and the screen frame, keep broken material efficient, this device respectively is equipped with lifting pitman (4) at screen frame (8) two ends, after the lifting pitman passes slot on the broken sand shaker shell, and is installed in outside adjusting screw(rod) (41) and is connected.The user is from the direct adjusting screw(rod) of machine exterior (41), with regard to the screen frame of energy lifting machine intimate.
The present invention has that structure is ingenious, the main shaft stress balance, required drive is little, more energy-conservation, the percentage of damage height, can continue to be broken for the small size material with large scale building stones (material) are disposable, the advantage of free adjustment screen frame height externally thoroughly changes the situation that long-term sand shaker can not broken large scale building stones (material), is the classifying sand breaker with double booster of two machines unification of new generation.
Description of drawings:, structure of the present invention is described further, but protection domain is not limited thereto embodiment below in conjunction with the accompanying drawing illustrated embodiment.
Fig. 1 is the working state schematic representation of classifying sand breaker with double booster of the present invention.
Fig. 2 is the structural representation of classifying sand breaker with double booster of the present invention.The sieve bar of wherein being installed (8) is the straight-bar shape.
Fig. 3 is the structural representation of classifying sand breaker with double booster of the present invention.May find out that wherein the sieve bar of being installed (8) all has pole (81) for two ends.
Fig. 4 is an A-A direction partial sectional view of the present invention shown in Figure 3.
Fig. 5 has the structural representation of pole for classifying sand breaker with double booster of the present invention uses sieve bar two ends.Wherein sieving bar two ends poles (81) is broken line shape.
Fig. 6 has the another kind of structural representation of pole for classifying sand breaker with double booster of the present invention uses sieve bar two ends, and wherein sieving bar one end has pin-and-hole, and the other end has screw thread, and sieve bar two ends poles (81) are arc shape.
Fig. 7 has the another kind of structural representation of pole for classifying sand breaker with double booster of the present invention uses sieve bar two ends, and wherein sieving the bar two ends all has pin-and-hole, and wherein sieving bar two ends poles (81) is arc shape.
Fig. 8 sieves the another kind of structural representation that all there is pole bar one termination for classifying sand breaker with double booster of the present invention uses, wherein sieve bar and have only an end that pole (81) is arranged and have a pin-and-hole.
Fig. 9 classifying sand breaker with double booster of the present invention uses the structural representation of sieve bar.Wherein sieve the bar two ends pole (81) is all arranged.
Figure 10 classifying sand breaker with double booster of the present invention uses the structural representation of sieve bar as straight-bar.
Figure 11 is a kind of structural representation of grating that classifying sand breaker with double booster of the present invention uses.
Figure 12 is a B-B cut-away view shown in Figure 11.
Figure 13 is a kind of structural representation of grating that classifying sand breaker with double booster of the present invention uses.
Figure 14 is a C-C cut-away view shown in Figure 13.
Figure 15 is a kind of structural representation of grating that classifying sand breaker with double booster of the present invention uses.
Figure 16 is a D-D cut-away view shown in Figure 15.
Figure 17 is a kind of structural representation of grating that classifying sand breaker with double booster of the present invention uses.
Figure 18 is an E-E cut-away view shown in Figure 17.
Figure 19 is a kind of structural representation of grating that classifying sand breaker with double booster of the present invention uses.
Figure 20 is a F-F cut-away view shown in Figure 19.
Figure 21 uses a kind of schematic diagram of grating arrangement mode for classifying sand breaker with double booster of the present invention.
Figure 22 is a G-G cut-away view shown in Figure 21.
Figure 23 uses the schematic diagram of grating arrangement mode for classifying sand breaker with double booster of the present invention.
Figure 24 uses the another kind of schematic diagram of grating arrangement mode for classifying sand breaker with double booster of the present invention.
The specific embodiment: press Fig. 1 and structure shown in Figure 4, make the broken sanding of the two power-assisteds of classification, longitudinal void position between each tup of operating room's upper rotor place (1) and adjacent tup (1), several sieve bars (8) are housed, sieve bar (8) installation site and rotor main shaft direction laterally are 90 ° ± 5 °, the two ends of every sieve bar (8) all are installed on the shell, all sieve bar (8) and form screen jointly, and each tup all should stretch out sieve bar (8) during rotation.
A power-assisted wheel (3) respectively is housed on the main shaft of broken sand shaker shell both sides, on any one power-assisted wheel (3) sidepiece or main shaft a belt pulley is housed, sieve bar (8) installation site and rotor main shaft direction laterally preferably are 90 °.
Sieve bar (8) is selected structure shown in Figure 6 for use, and sieve bar (8) two ends head has connection with screw thread or pin-and-hole or fixing cover, and sieve bar (8) installation site preferably is 90 ° of angles with rotor main shaft direction (laterally), and each tup (1) preferably stretches out and sieves (8) 150 millimeters on bar.
Grating (5) adopts structure shown in Figure 11.Two power-assisted wheels (3) are installed in respectively on the casing outside main shaft (7), belt pulley directly is contained in power-assisted wheel (3) sidepiece by bolt, form by main shaft, hammer carrier, tup and bearing pin from the power-assisted rotor, the hammer carrier profile at its position, both sides is selected for use discoid, the hammer carrier profile of middle part is selected diamond shape for use, the wall thickness (S at hammer carrier edge connecting hole (2) position 1) all greater than the wall thickness (S of hammer frame plate 2), tup is selected common shape for use.Lifting pitman (4) on the inner screen frame of casing is connected with the adjusting screw(rod) (41) of casing outside.The body fuselage shape is selected snail shape (single pendulum line) for use, and the body of classifying sand breaker with double booster can be made movable type, and then body is installed on the frame, and the frame pin is at least 4, adorns 4 wheels on every frame.
The 1-tup; 2-hammer carrier edge connecting hole; 3-power-assisted wheel; 4-lifting pitman; The 41-adjusting screw(rod); The 5-grating; The 51-block; 6-heavy caliber charging aperture; The 7-main shaft; 8-sieves bar; The 81-pole.

Claims (10)

1, classifying sand breaker with double booster, form by heavy caliber charging aperture (6), shell, main shaft (7), screen frame, belt pulley, grating (5), tup (1) and rotor, it is characterized in that the longitudinal void position between each tup of operating room's upper rotor place (1) and adjacent tup (1), several sieve bars (8) are housed, sieve bar (8) installation site and rotor main shaft direction laterally are 90 ° ± 5 °, the two ends of every sieve bar (8) all are installed on the shell, all sieve bar (8) is formed screen jointly, and each tup all should stretch out sieve bar (8) during rotation.
2, classifying sand breaker with double booster according to claim 1, it is characterized in that on the main shaft of broken sand shaker shell both sides, respectively being equipped with a power-assisted wheel (3), on any one power-assisted wheel (3) sidepiece or main shaft, a belt pulley is housed, sieve bar (8) installation site and rotor main shaft direction laterally preferably are 90 °, and each tup (1) preferably stretches out sieve bar (8) 30-300 millimeter.
3, classifying sand breaker with double booster according to claim 1 and 2 is characterized in that having at least an end upwards to bend in the described sieve bar (8), forms one section pole (81), and sieve bar (8) two ends head has connection with screw thread or pin-and-hole or fixing cover.
4, classifying sand breaker with double booster according to claim 3 is characterized in that sieving bar (8) shape of cross section and is circle, square, rectangle, hexagon, triangle or taper shape.
5, classifying sand breaker with double booster according to claim 1 and 2 is characterized in that having on the screen frame lifting pitman (4), and the slot that lifting pitman (4) passes on the shell is connected with adjusting screw(rod) (41).
6, classifying sand breaker with double booster according to claim 1 and 2 is characterized in that being placed with several gratings (5) in the described screen frame arcuation notch, has two blocks (51) on the every grating (5) at least.
7, classifying sand breaker with double booster according to claim 1 and 2, it is characterized in that described rotor is made up of main shaft, hammer carrier, tup and bearing pin, the wall thickness (S1) at its hammer carrier edge connecting hole (2) position is greater than the wall thickness (S2) of hammer frame plate, and the hammer carrier profile is in-line, rhombus, triangle or quadrangle.
8, classifying sand breaker with double booster according to claim 1 and 2, it is characterized in that described shell is a snail formula shell, heavy caliber charging aperture (6) locates to be equipped with Adjustable device flitch or movable bounce-back plate, and striker plate has rigidity or flexibility, and movable bounce-back plate can be rigidity, flexibility or chain type.
9, classifying sand breaker with double booster according to claim 1 and 2, the body that it is characterized in that described classifying sand breaker with double booster can be made as a formula or portable two kinds, portable body is installed on the frame, the frame pin only is at least 4-6, also can adorn 2-4 wheel on every frame.
10, classifying sand breaker with double booster according to claim 1 and 2, the bore that it is characterized in that described heavy caliber charging aperture is greater than 150 millimeters.
CN 200520022261 2005-02-07 2005-02-07 Grading double-boosting crushing type sands producing machine Expired - Lifetime CN2822766Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200520022261 CN2822766Y (en) 2005-02-07 2005-02-07 Grading double-boosting crushing type sands producing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200520022261 CN2822766Y (en) 2005-02-07 2005-02-07 Grading double-boosting crushing type sands producing machine

Publications (1)

Publication Number Publication Date
CN2822766Y true CN2822766Y (en) 2006-10-04

Family

ID=37031878

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 200520022261 Expired - Lifetime CN2822766Y (en) 2005-02-07 2005-02-07 Grading double-boosting crushing type sands producing machine

Country Status (1)

Country Link
CN (1) CN2822766Y (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100391613C (en) * 2005-02-07 2008-06-04 缪文生 Classifying sand breaker with double booster
CN102921502A (en) * 2012-11-14 2013-02-13 铜陵市久泰重型工矿设备有限公司 Crushing component of hammer crusher

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100391613C (en) * 2005-02-07 2008-06-04 缪文生 Classifying sand breaker with double booster
CN102921502A (en) * 2012-11-14 2013-02-13 铜陵市久泰重型工矿设备有限公司 Crushing component of hammer crusher

Similar Documents

Publication Publication Date Title
CN209631306U (en) A kind of construction material recyclable device
CN2822766Y (en) Grading double-boosting crushing type sands producing machine
CN114308346A (en) Building engineering is with system sand device that has anti-clogging function
CN2827529Y (en) Double power-assisted grade disintegrating machine
CN1817462A (en) Classifying sand breaker with double booster
CN1817464A (en) Classifying sand breaker with double booster
CN2761269Y (en) Impact single-section beater disintegrater
CN113231182A (en) Production method of green building material recycled concrete
CN101058079A (en) Discharging unblocked grinder
CN117000333A (en) Sand crusher
CN2774635Y (en) High efficiency multifunction impact breaker
CN2156932Y (en) Drum type selective disintegrator
CN2749570Y (en) Strong counterattack fine crusher
CN113680423B (en) Ore crusher
CN105970788A (en) Quick crushing device for building concrete pavement
CN114798052B (en) Double-vibration-exciter vibration self-synchronization crusher
CN210700370U (en) Civil engineering grading stone crusher
CN112547193B (en) Breaker for cement manufacture
KR100931470B1 (en) Aggregate Shred Hammer Crusher
KR20140075132A (en) Hammer crusher for making recycling aggregate from concrete
CN2193771Y (en) Jaw-rotary combined cavity crusher
CN211755536U (en) Concrete block crusher
CN219291494U (en) Sand screening equipment with crushing function
CN220143539U (en) Stone crusher is used in road construction
CN212663826U (en) Garbage crushing device for building industry

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Effective date of abandoning: 20080604

AV01 Patent right actively abandoned

Effective date of abandoning: 20080604

C25 Abandonment of patent right or utility model to avoid double patenting