CN220780541U - Edulcoration reaction formula breaker - Google Patents

Edulcoration reaction formula breaker Download PDF

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Publication number
CN220780541U
CN220780541U CN202322411201.8U CN202322411201U CN220780541U CN 220780541 U CN220780541 U CN 220780541U CN 202322411201 U CN202322411201 U CN 202322411201U CN 220780541 U CN220780541 U CN 220780541U
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China
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fixedly connected
edulcoration
crushing
storage cabin
cabin body
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CN202322411201.8U
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Chinese (zh)
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季彩华
王啟荣
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Changshu Fangcheng Heavy Machinery Manufacturing Co ltd
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Changshu Fangcheng Heavy Machinery Manufacturing Co ltd
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Abstract

The utility model provides a edulcoration reaction crusher, relates to breaker edulcoration crushing technical field, includes: the auxiliary mechanism is provided with a crushing mechanism at one side, and a impurity removing mechanism at one side. According to the utility model, through the mutual matching between the auxiliary mechanism, the crushing mechanism and the impurity removing mechanism, in the process of not influencing the feeding of materials, through the mutual matching between the crushing roller, the connecting rod, the connecting gear and the driven wheel and the belt which are arranged in the impurity removing mechanism, the impact plate and the screening groove which are arranged in the crushing mechanism are mutually matched, so that the materials can be crushed in a screening way, and then crushed for the second time, the situation that the crushed finished products are poor due to single crushing can be prevented, and through the mutual matching between the pressurized water pump, the water tank and the water sprinkling pipe which are arranged in the impurity removing mechanism, the normal discharging is not influenced, the dust and the impurity of the discharged materials are reduced, and the stability and the safety of the mechanism are improved to a certain extent.

Description

Edulcoration reaction formula breaker
Technical Field
The utility model relates to the technical field of impurity removal and crushing of crushers, in particular to an impurity removal impact crusher.
Background
Impact crushers are a common crushing apparatus for handling the crushing of medium hardness and brittle materials.
When the existing part crusher is used, the materials are contacted with the impact plate through the internal rotating wheels and the other components, but in the actual use process, the materials are crushed by adopting the established rotating wheels and the impact plate, and the part of materials possibly directly leak from the discharging position in the crushing process, cannot be screened, namely, cannot be subjected to size classification on the produced materials. This means that the discharge particle size cannot be adjusted according to the requirements, but can only be indirectly influenced by adjusting the particle size of the feed material. This may cause inconvenience in some application scenarios requiring strict control of the granularity of the finished product, and when the material is discharged, because the material itself has certain soil or other sand and stones, and causes a large amount of dust discharge in the crushing process, if the surface is not decontaminated in the process of discharging the material, the possibility of the worker getting more contaminated with pneumoconiosis may be caused, and the material has certain instability and unsafe to a certain extent, and has certain technical defects.
Disclosure of Invention
The utility model aims to solve the defects in the prior art, and provides a impurity removal impact crusher which can not classify granularity and cause larger dust of discharged materials because a screening and impurity removal component is not arranged on the crusher when impact crushing is carried out on crushed stones.
In order to achieve the above purpose, the present utility model adopts the following technical scheme: an impurity-removing impact crusher, comprising: the auxiliary mechanism is characterized in that a crushing mechanism is arranged at one side of the auxiliary mechanism, a impurity removing mechanism is arranged at one side of the auxiliary mechanism, a motor cabinet is arranged on the impurity removing mechanism, a crushing roller is fixedly connected to the middle part of one end of the motor cabinet, a driving wheel is fixedly connected to the circumference of the outer side of one end of the crushing roller, a belt is connected to the position of the groove on the inner side of the middle part of the driving wheel in a meshed mode, and a driven wheel is connected to the circumference of the inner side of the other end of the belt in a meshed mode.
As a preferred implementation mode, the circumference of the middle part of the driven wheel is movably connected with a connecting rod, one end head of the connecting rod is movably connected with a connecting gear, and the connecting rod is fixedly connected to the opposite part of the bottom end of the storage cabin.
As a preferred implementation mode, the two sides of the storage cabin body are connected with crushing rollers in a penetrating manner, the two opposite sides of the storage cabin body are connected with a sprinkler pipe in a penetrating manner, and one end head of the sprinkler pipe is fixedly connected with a pressurizing pump head.
As a preferable implementation mode, the outer side of the bottom end of the pressurizing pump head is fixedly connected with a water tank, the inner side of the water tank is arranged at the middle part of one side of the storage cabin, and the middle part of one end of the storage cabin is fixedly connected with a hopper.
As a preferred implementation mode, a diversion cabin is arranged at two sides of the bottom end of the storage cabin body in a slotting mode, a rotating shaft is connected to one end of the storage cabin body in a penetrating mode, and four striking rods are fixedly connected to the outer side of the rotating shaft.
As a preferred implementation mode, a servo motor is fixedly connected to one end of the rotating shaft, a storage cabin body is fixedly connected to the inner side of the servo motor, and a counterattack plate is fixedly connected to one end of the storage cabin body.
As a preferable implementation mode, screening grooves are formed in opposite positions of the two sides of the bottom end of the impact plate, and four striking rods are arranged at the inner side of the impact plate.
Compared with the prior art, the utility model has the advantages and positive effects that:
according to the utility model, through the mutual matching between the auxiliary mechanism, the crushing mechanism and the impurity removing mechanism, in the process of not influencing the feeding of materials, through the mutual matching between the crushing roller, the connecting rod, the connecting gear and the driven wheel and the belt which are arranged in the impurity removing mechanism, the materials can be crushed for the second time after being screened according to the mutual matching between the impact plate and the screening groove which are arranged in the crushing mechanism, so that the situation that the crushed finished products are poor due to single crushing can be prevented, and through the mutual matching between the pressurized water pump, the water tank and the water sprinkling pipe which are arranged in the impurity removing mechanism, the normal discharging is not influenced, and the dust and impurity are removed for the discharged materials, thereby improving the stability and the safety of the mechanism to a certain extent.
Drawings
Fig. 1 is a schematic perspective view of an external overall side structure of a trash removal impact crusher according to the present utility model.
Fig. 2 is a schematic perspective view of another overall side structure of the external impact breaker for removing impurities.
Fig. 3 is a schematic perspective view of the internal overall structure of the external overall section of the impurity-removing impact crusher.
Fig. 4 is a schematic perspective view of the overall structure of the external part of the impurity removing mechanism of the impurity removing impact crusher.
Legend description:
1. an auxiliary mechanism; 11. a storage cabin body; 12. a hopper; 13. a diversion cabin;
2. a crushing mechanism; 21. a servo motor; 22. a rotation shaft; 23. a striking rod; 24. a counterattack plate; 25. a sieving groove;
3. a impurity removing mechanism; 31. a motor compartment; 32. a crushing roller; 33. a driving wheel; 34. a belt; 35. driven wheel; 36. a connecting rod; 37. a connecting gear; 38. a water tank; 39. a pressurizing pump head; 310. and a sprinkler pipe.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Example 1
As shown in fig. 1-3, the present utility model provides a technical solution: an impurity-removing impact crusher, comprising: the auxiliary mechanism 1 can provide stable object placement and diversion effects through the arranged auxiliary mechanism 1, the crushing mechanism 2 is arranged at one side of the auxiliary mechanism 1, screening type crushing effects can be provided through the arranged crushing mechanism 2, the impurity removing mechanism 3 is arranged at one side of the auxiliary mechanism 1, stable crushing and impurity removing effects can be provided through the arranged impurity removing mechanism 3, the impurity removing mechanism 3 is provided with a motor cabin 31, a crushing roller 32 is fixedly connected to the middle part of one end of the motor cabin 31, the motor cabin 31 provides rotatable acting force for the crushing roller 32, a driving wheel 33 is fixedly connected to the outer circumference of one end of the crushing roller 32, the crushing roller 32 provides retention and rotation effects for the driving wheel 33, a belt 34 is connected to the inner circumference of the middle part of the driving wheel 33 in a meshed manner, a driven wheel 35 is connected to the inner circumference of the other end of the belt 34 in a meshed manner, the driving wheel 33 and the driven wheel 35 provide operational effects for the belt 34, and when the driving wheel 33 rotates, the belt 34 is driven to operate through the driven wheel 35.
Example 2
As shown in fig. 1-3, a connecting rod 36 is movably connected to the circumference of the middle of the driven wheel 35, the connecting rod 36 provides a rotatable effect at a predetermined position for the driven wheel 35, a connecting gear 37 is movably connected to an end of one end of the connecting rod 36, the connecting rod 36 provides a rotatable effect at a predetermined position for the connecting gear 37, the connecting rod 36 is fixedly connected to the opposite position of the bottom end of the storage compartment 11, the storage compartment 11 provides a retention effect for the connecting rod 36, crushing rollers 32 are connected to the two sides of the storage compartment 11 in a penetrating manner, the crushing rollers 32 can rotate in predetermined slots formed in the storage compartment 11, sprinkler pipes 310 are connected to the opposite positions of the two sides of the storage compartment 11 in a penetrating manner, a pressurizing pump head 39 is fixedly connected to the end of one end of the sprinkler pipe 310, the pressurizing pump head 39 provides a retention effect for the sprinkler pipes 310, a water tank 38 is fixedly connected to the outer side of the bottom end of the pressurizing pump head 39, the inner side of the water tank 38 provides a retention effect for the pressurizing pump head 39, the middle of one side of the storage compartment 11 is fixedly connected to a hopper 12, and the middle of one end of the storage compartment 11 provides a retention effect for the hopper 12.
Example 3
As shown in fig. 1-4, a diversion cabin 13 is slotted at two sides of the bottom end of a storage cabin 11, a rotating shaft 22 is connected at one end of the storage cabin 11 in a penetrating manner, the rotating shaft 22 can rotate in a set slot formed in the storage cabin 11, four striking rods 23 are fixedly connected at the outer side of the rotating shaft 22, when the rotating shaft 22 rotates, the four striking rods 23 are driven to rotate, a servo motor 21 is fixedly connected at one end of the rotating shaft 22, the servo motor 21 provides rotatable acting force for the rotating shaft 22, the storage cabin 11 is fixedly connected at the inner side of the servo motor 21, the storage cabin 11 provides a retention effect for the servo motor 21, a striking plate 24 is fixedly connected at one end of the storage cabin 11, the storage cabin 11 provides a retention effect for the striking plate 24, screening slots 25 are formed at opposite positions of two sides of the bottom end of the striking plate 24, broken stones which are mutually matched with the four striking rods 23 through the striking plate 24 can leak out with the screening slots 25, and four striking rods 23 are arranged at the inner side of the striking plate 24.
Working principle:
as shown in fig. 1-4, when the materials need to be crushed, the materials can be placed in the storage cabin 11 through the hopper 12, after the placement, the materials fall into the impact plate 24, the servo motor 21 drives the rotary shaft 22 to rotate at the moment, the striking rod 23 is driven to drive the materials to move when the rotary shaft 22 rotates, in the process of moving the materials, the materials are contacted with the impact plate 24 and crushed, the materials after the crushing of the impact plate 24 at the moment meet the size of the screening groove 25 and fall into the two-side diversion cabin 13, the materials which do not meet the size stay in the impact plate 24 to continuously perform crushing treatment, the crushed stone falling into the diversion cabin 13 is accumulated and slides to the crushing roller 32, the motor cabin 31 drives the crushing roller 32 at one side to rotate at the moment, the belt 34 is driven by the driving wheel 33 to operate, the driven wheel 35 is driven to rotate when the belt 34 rotates, the connecting gears 37 at the two sides are driven to contact and reversely rotate, the connecting gears 37 are driven to rotate, the materials at the other side are driven to rotate, the other side of the crushing roller 33 is driven to rotate, and the water is discharged to the crushing roller 32 along with the rotation of the crushing roller 32, and the water is pumped into the water channel 310 along with the rotation of the crushing roller 33.
The present utility model is not limited to the above-mentioned embodiments, and any equivalent embodiments which can be changed or modified by the technical content disclosed above can be applied to other fields, but any simple modification, equivalent changes and modification made to the above-mentioned embodiments according to the technical substance of the present utility model without departing from the technical content of the present utility model still belong to the protection scope of the technical solution of the present utility model.

Claims (7)

1. An impurity removal impact crusher, comprising: the auxiliary mechanism (1), auxiliary mechanism (1) one side department is equipped with broken mechanism (2), auxiliary mechanism (1) one side department is equipped with edulcoration mechanism (3), edulcoration mechanism (3) are equipped with motor cabinet (31), motor cabinet (31) one end middle part department fixedly connected with crushing roller (32), crushing roller (32) one end outside circumference department fixedly connected with action wheel (33), action wheel (33) middle part inboard trench department meshing is connected with belt (34), belt (34) other end inboard circumference department meshing is connected with from driving wheel (35).
2. The edulcoration impact crusher of claim 1, wherein: the middle circumference of the driven wheel (35) is movably connected with a connecting rod (36), one end head of the connecting rod (36) is movably connected with a connecting gear (37), and the connecting rod (36) is fixedly connected to the opposite position of the bottom end of the storage cabin body (11).
3. The edulcoration impact crusher of claim 2, wherein: crushing rollers (32) are connected to two sides of the storage cabin body (11) in a penetrating manner, a sprinkler pipe (310) is connected to two opposite sides of the storage cabin body (11) in a penetrating manner, and a pressurizing pump head (39) is fixedly connected to one end head of the sprinkler pipe (310).
4. A edulcoration impact crusher according to claim 3, characterized in that: the pressurizing pump is characterized in that a water tank (38) is fixedly connected to the outer side of the bottom end of the pressurizing pump head (39), the inner side of the water tank (38) is arranged at the middle part of one side of the storage cabin body (11), and a hopper (12) is fixedly connected to the middle part of one end of the storage cabin body (11).
5. The edulcoration impact crusher of claim 4, wherein: the two sides of the bottom end of the storage cabin body (11) are provided with a split cabin (13) in a slotting mode, one end of the storage cabin body (11) is connected with a rotating shaft (22) in a penetrating mode, and four striking rods (23) are fixedly connected to the outer side of the rotating shaft (22).
6. The edulcoration impact crusher of claim 5, wherein: one end of the rotating shaft (22) is fixedly connected with a servo motor (21), the inner side of the servo motor (21) is fixedly connected with a storage cabin body (11), and one end of the storage cabin body (11) is fixedly connected with a counterattack plate (24).
7. The edulcoration impact crusher of claim 6, wherein: screening grooves (25) are formed in the opposite positions of the two sides of the bottom end of the impact plate (24), and four striking rods (23) are arranged at the inner side of the impact plate (24).
CN202322411201.8U 2023-09-06 2023-09-06 Edulcoration reaction formula breaker Active CN220780541U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322411201.8U CN220780541U (en) 2023-09-06 2023-09-06 Edulcoration reaction formula breaker

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322411201.8U CN220780541U (en) 2023-09-06 2023-09-06 Edulcoration reaction formula breaker

Publications (1)

Publication Number Publication Date
CN220780541U true CN220780541U (en) 2024-04-16

Family

ID=90629936

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322411201.8U Active CN220780541U (en) 2023-09-06 2023-09-06 Edulcoration reaction formula breaker

Country Status (1)

Country Link
CN (1) CN220780541U (en)

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