CN212263522U - Conveying device for crusher - Google Patents

Conveying device for crusher Download PDF

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Publication number
CN212263522U
CN212263522U CN202020352004.7U CN202020352004U CN212263522U CN 212263522 U CN212263522 U CN 212263522U CN 202020352004 U CN202020352004 U CN 202020352004U CN 212263522 U CN212263522 U CN 212263522U
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shock attenuation
pillar
sleeve
frame
damping spring
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CN202020352004.7U
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Chinese (zh)
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贡焱
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Yangzhou Mingtai Machinery Co ltd
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Yangzhou Mingtai Machinery Co ltd
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Abstract

The utility model discloses a conveyor for breaker relates to conveyor technical field, for solving current conveyor for breaker simple structure, leads to the relatively poor problem of its functionality. Conveying mechanism is installed to the top of frame, the shock attenuation stabilizer blade is installed to the bottom of frame, six are installed to the shock attenuation stabilizer blade, and six shock attenuation stabilizer blades distribute in proper order, the shock attenuation stabilizer blade passes through bolted connection with the frame, the shock attenuation stabilizer blade includes anti-skidding callus on the sole, shock attenuation sleeve, shock attenuation pillar, first damping spring and second damping spring, the upper end of anti-skidding callus on the sole is provided with shock attenuation sleeve, shock attenuation pillar is installed to shock attenuation sleeve's top, and shock attenuation pillar's lower extreme extends to shock attenuation sleeve's inside, install first damping spring between shock attenuation pillar and the shock attenuation sleeve, shock attenuation sleeve's internally mounted has second damping spring.

Description

Conveying device for crusher
Technical Field
The utility model relates to a conveyor technical field specifically is a conveyor for breaker.
Background
The crusher is also called a stone crusher, and is widely applied to various departments such as mines, smelting, building materials, highways, railways, water conservancy, chemical industry and the like. Crushers generally handle larger pieces of material with coarser product sizes, such as ore, rock, etc. The larger materials are crushed and refined, so that the later use and processing are facilitated. When the crusher works, non-working personnel need to continuously feed materials into the crusher, so that the continuous work of the crusher is ensured. The manual feeding has high labor intensity and low working efficiency, the problem is not solved, the conveying device for the crusher appears, and the conveying device can continuously feed the crusher into the crusher, so that the labor intensity of workers is greatly reduced.
However, the existing conveying device for the crusher has a simple structure, so that the functionality of the existing conveying device for the crusher is poor, and therefore the existing requirements are not met.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a conveyor for breaker to the conveyor for breaker simple structure who provides in solving above-mentioned background art leads to the relatively poor problem of its functionality.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a conveyor for breaker, includes the frame, conveying mechanism is installed to the top of frame, the shock attenuation stabilizer blade is installed to the bottom of frame, six are installed to the shock attenuation stabilizer blade, and six shock attenuation stabilizer blades distribute in proper order, the shock attenuation stabilizer blade passes through bolted connection with the frame.
Preferably, the shock attenuation stabilizer blade includes anti-skidding callus on the sole, shock attenuation sleeve, shock attenuation pillar, first damping spring and second damping spring, the upper end of anti-skidding callus on the sole is provided with shock attenuation sleeve, shock attenuation pillar is installed to shock attenuation sleeve's top, and shock attenuation pillar's lower extreme extends to shock attenuation sleeve's inside, install first damping spring between shock attenuation pillar and the shock attenuation sleeve, and first damping spring is located shock attenuation pillar's outside, shock attenuation sleeve's internally mounted has second damping spring, and second damping spring is located shock attenuation pillar's below.
Preferably, the inside of frame top is provided with the mounting groove, and conveying mechanism's one end extends to the inside of mounting groove, install the shock pad between conveying mechanism and the mounting groove, the shock pad all splices with conveying mechanism and mounting groove and is connected.
Preferably, conveying mechanism includes casing, conveying motor, feeder hopper, main shaft, auger delivery piece and feed opening, conveying motor is installed to one side of casing, the internally mounted of casing has the main shaft, and the main shaft passes through the bearing with the casing and is connected, the one end of main shaft passes through the shaft coupling transmission with conveying motor and is connected, the externally mounted of main shaft has the auger delivery piece, the top of casing one end is provided with the feeder hopper, the below of the casing other end is provided with the feed opening.
Preferably, the outside of conveying motor and casing all is installed the clamping sleeve, and the lower extreme and the frame of clamping sleeve pass through rivet connection.
Preferably, the inside of frame one side is provided with the dead slot, the internally mounted of dead slot has the enhancement pillar, and strengthens the pillar and install a plurality of, strengthen pillar and frame welded connection.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses an installation shock pad between mounting groove and conveying mechanism, the shock pad adopts the rubber material, utilizes rubber to have hysteresis, damping and can carry out the characteristics of reversible big deformation, can play good shock attenuation effect. Simultaneously, a plurality of damping support legs are arranged at the bottom of the rack, and the damping purpose is achieved by mainly utilizing the good elasticity and the capability of restoring deformation of the first damping support leg and the second damping support leg. Through the arrangement of the damping parts at the two positions, the vibration generated in the running process of the device can be effectively reduced, the condition that the device is influenced by the vibration after long-term use can be avoided, and the service life of the device is prolonged. Thereby increasing the functionality and utility of the device.
2. The utility model discloses a conveying mechanism adopts screw feed's mode to carry the material, this mechanism simple structure, operation, easy maintenance, low in manufacturing cost, and can make totally closed, can prevent that the dust from flying upward, and sanitation is good, can guarantee the homogeneity of unloading simultaneously. Thereby increasing the functionality and utility of the device.
3. The utility model discloses an inside of frame one side sets up the dead slot, is favorable to reducing the material that the device used, and then alleviates the device's weight. Meanwhile, the reinforcing support columns are arranged inside the empty slots and provide support, so that the structural strength of the empty slots is guaranteed, and the service life of the rack is prolonged. The practicability of the device is improved.
Drawings
Fig. 1 is a sectional view of a conveyor for a crusher according to the present invention;
FIG. 2 is a sectional view of the shock absorbing leg of the present invention;
fig. 3 is a front view of the conveying device for a crusher of the present invention.
In the figure: 1. a frame; 11. mounting grooves; 12. an empty groove; 2. a conveying mechanism; 21. a housing; 22. a conveying motor; 23. a feed hopper; 24. a main shaft; 25. a spiral conveying sheet; 26. a feeding port; 3. a shock pad; 4. shock absorption support legs; 41. anti-skid foot pads; 42. a shock-absorbing sleeve; 43. a shock strut; 44. a first damping spring; 45. a second damping spring; 5. a clamping sleeve; 6. the struts are reinforced.
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.
Referring to fig. 1-3, the present invention provides an embodiment: the utility model provides a conveyor for breaker, includes frame 1, and conveying mechanism 2 is installed to the top of frame 1 for the transport of material, shock attenuation stabilizer blade 4 is installed to the bottom of frame 1, has good shock attenuation effect, and six shock attenuation stabilizer blades 4 are installed, and six shock attenuation stabilizer blades 4 distribute in proper order, guarantee the stability of support, and shock attenuation stabilizer blade 4 passes through bolted connection with frame 1, simple structure, and the practicality is strong, connects reliably.
Further, shock attenuation stabilizer blade 4 includes anti-skidding callus on the sole 41, shock attenuation sleeve 42, shock strut 43, first damping spring 44 and second damping spring 45, anti-skidding callus on the sole 41 has good anti-skidding effect, guarantee the stability that the device placed, anti-skidding callus on the sole 41's upper end is provided with shock attenuation sleeve 42, shock strut 43 is installed to shock attenuation sleeve 42's top, and shock attenuation strut 43's lower extreme extends to shock attenuation sleeve 42's inside, install first damping spring 44 between shock attenuation strut 43 and the shock attenuation sleeve 42, have good elasticity and the ability of resumeing deformation, and first damping spring 44 is located shock attenuation strut 43's outside, shock attenuation sleeve 42's internally mounted has second damping spring 45, have good elasticity and the ability of resumeing deformation, and second damping spring 45 is located shock attenuation strut 43's below.
Further, the inside of frame 1 top is provided with mounting groove 11, and conveying mechanism 2's one end extends to the inside of mounting groove 11, installs shock pad 3 between conveying mechanism 2 and the mounting groove 11, and shock pad 3 and conveying mechanism 2 are connected with mounting groove 11 all splices, and joint strength is high, and the junction is frivolous stealthy, has good fatigue resistance, leakproofness, insulating nature and corrosion resistance.
Further, conveying mechanism 2 includes casing 21, conveying motor 22, feeder hopper 23, main shaft 24, auger delivery piece 25 and feed opening 26, conveying motor 22 is installed to one side of casing 21, through rotary power, the internally mounted of casing 21 has main shaft 24, and main shaft 24 passes through the bearing with casing 21 and is connected, the rotation of main shaft 24 of being convenient for, the one end of main shaft 24 passes through the shaft coupling transmission with conveying motor 22 and is connected, make it rotatory jointly and transmit the moment of torsion, the externally mounted of main shaft 24 has auger delivery piece 25, provide thrust, the top of casing 21 one end is provided with feeder hopper 23, the below of the casing 21 other end is provided with feed opening 26.
Further, the clamping sleeve 5 is installed outside the conveying motor 22 and the shell 21, the lower end of the clamping sleeve 5 is connected with the rack 1 through rivets, and therefore the connecting strength is high, the sealing performance is good, and the compression resistance effect is good.
Further, the inside of frame 1 one side is provided with dead slot 12, alleviates the device's weight, and the internally mounted of dead slot 12 has strengthening support 6, guarantees the structural strength of dead slot 12, and strengthens support 6 and install a plurality of, guarantees the stability of support, strengthens support 6 and frame 1 welded connection, and the installation is firm, and structural rigidity is big, and structural integrity is good.
The working principle is as follows: when the device is used, the conveying motor 22 is started, the output end of the conveying motor 22 drives the main shaft 24 to rotate, and the spiral conveying piece 25 outside the main shaft 24 rotates along with the main shaft. Meanwhile, the material is poured into the interior of the shell 21 through the feeding hopper 23, and due to the gravity of the material and the friction force generated between the material and the inner wall of the shell 21, the material can only move forward along the bottom of the shell 21 under the pushing of the spiral conveying piece 25, and finally moves to the discharging opening 26 and enters the interior of the crusher through the discharging opening 26. The mode can ensure the uniformity of blanking. When the device works, certain vibration can be generated, the shock absorption pad 3 is arranged between the installation groove 11 and the shell 21, the shock absorption pad 3 is made of rubber, and the characteristics of hysteresis, damping and reversible large deformation of rubber are utilized, so that a good shock absorption effect can be achieved. Simultaneously at a plurality of shock attenuation stabilizer blades 4 of the bottom installation of frame 1, the shaking force is transmitted to shock attenuation stabilizer blade 4 by frame 1, shock attenuation stabilizer blade 4 receives when vibrations, shock attenuation pillar 43 is to shock attenuation sleeve 42 internal motion, meanwhile first damping spring 44 and second damping spring 45 are compressed, first damping spring 44 and second damping spring 45 can produce certain reaction force when being compressed, the image of kick-backing takes place, and then consume the shaking force that receives at this in-process, thereby reach the shock attenuation effect, be favorable to prolonging the device's life. The hollow groove 12 is arranged in one side of the frame 1, which is beneficial to reducing the weight of the device. Meanwhile, the reinforcing strut 6 is arranged inside the empty groove 12, and the reinforcing strut 6 ensures the structural strength of the empty groove 12.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. The utility model provides a conveyor for breaker, includes frame (1), its characterized in that: conveying mechanism (2) are installed to the top of frame (1), shock attenuation stabilizer blade (4) are installed to the bottom of frame (1), six are installed in shock attenuation stabilizer blade (4), and six shock attenuation stabilizer blade (4) distribute in proper order, shock attenuation stabilizer blade (4) pass through bolted connection with frame (1).
2. The conveying device for the crusher according to claim 1, characterized in that: shock attenuation stabilizer blade (4) are including anti-skidding callus on the sole (41), shock attenuation sleeve (42), shock attenuation pillar (43), first damping spring (44) and second damping spring (45), the upper end of anti-skidding callus on the sole (41) is provided with shock attenuation sleeve (42), shock attenuation pillar (43) are installed to the top of shock attenuation sleeve (42), and the lower extreme of shock attenuation pillar (43) extends to the inside of shock attenuation sleeve (42), install first damping spring (44) between shock attenuation pillar (43) and shock attenuation sleeve (42), and first damping spring (44) are located the outside of shock attenuation pillar (43), the internally mounted of shock attenuation sleeve (42) has second damping spring (45), and second damping spring (45) are located the below of shock attenuation pillar (43).
3. The conveying device for the crusher according to claim 1, characterized in that: the inside of frame (1) top is provided with mounting groove (11), and the one end of conveying mechanism (2) extends to the inside of mounting groove (11), install shock pad (3) between conveying mechanism (2) and mounting groove (11), shock pad (3) and conveying mechanism (2) and mounting groove (11) all splice and be connected.
4. The conveying device for the crusher according to claim 1, characterized in that: conveying mechanism (2) are including casing (21), conveying motor (22), feeder hopper (23), main shaft (24), auger delivery piece (25) and feed opening (26), conveying motor (22) are installed to one side of casing (21), the internally mounted of casing (21) has main shaft (24), and main shaft (24) is connected through the bearing with casing (21), the one end and the conveying motor (22) of main shaft (24) are connected through the shaft coupling transmission, the externally mounted of main shaft (24) has auger delivery piece (25), the top of casing (21) one end is provided with feeder hopper (23), the below of the casing (21) other end is provided with feed opening (26).
5. The conveying device for the crusher according to claim 4, wherein: the clamping sleeve (5) is arranged outside the conveying motor (22) and the shell (21), and the lower end of the clamping sleeve (5) is connected with the rack (1) through rivets.
6. The conveying device for the crusher according to claim 1, characterized in that: the inside of frame (1) one side is provided with dead slot (12), the internally mounted of dead slot (12) has reinforced pillar (6), and strengthens pillar (6) and install a plurality of, strengthen pillar (6) and frame (1) welded connection.
CN202020352004.7U 2020-03-19 2020-03-19 Conveying device for crusher Active CN212263522U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020352004.7U CN212263522U (en) 2020-03-19 2020-03-19 Conveying device for crusher

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020352004.7U CN212263522U (en) 2020-03-19 2020-03-19 Conveying device for crusher

Publications (1)

Publication Number Publication Date
CN212263522U true CN212263522U (en) 2021-01-01

Family

ID=73874251

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020352004.7U Active CN212263522U (en) 2020-03-19 2020-03-19 Conveying device for crusher

Country Status (1)

Country Link
CN (1) CN212263522U (en)

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