Double-shaft crushing and crushing all-in-one machine capable of forcibly and continuously feeding

By designing a dual-shaft crushing and pulverizing integrated machine with forced continuous feeding, the crushing and pulverizing functions are integrated, solving the problems of large footprint, low feeding efficiency, and frequent jamming of traditional equipment. This enables efficient and stable wood processing production, meeting the diverse needs of the market.

CN223948110UActive Publication Date: 2026-02-27HENAN HEYIGONG MASCH EQUIP CO LTD
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Patent Information

Application Number
CN202520087444.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-02-27
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

In traditional wood processing, the step-by-step processing of crushers and hammer mills results in large equipment footprints, low feeding efficiency, frequent jamming, and poor production flexibility, failing to meet the requirements of high-efficiency production and stable product quality.

Method used

Design a dual-shaft crusher and pulverizer with forced continuous feeding, integrating crushing and pulverizing functions. It adopts a dual-shaft processing component and a forced feeding component, combined with an intelligent control system, to realize continuous material feeding and automatic parameter adjustment.

Benefits of technology

It improves production efficiency and equipment lifespan, reduces equipment investment and maintenance costs, ensures production continuity and product quality stability, and meets diversified market demands.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of crushers, and discloses a double-shaft crushing and crushing all-in-one machine capable of forcibly and continuously feeding, which comprises a crushing and crushing bin body and a forcible feeding shell, a double-shaft processing component is arranged on the crushing and crushing bin body and is used for sequentially crushing and crushing materials, and the forcible feeding shell is arranged on the crushing and crushing bin body. According to the double-shaft crushing and crushing all-in-one machine capable of forcibly and continuously feeding, operation parameters can be automatically adjusted according to the feeding speed and material characteristics, it is ensured that materials uniformly and stably enter the crushing and crushing cavity, the phenomenon that the machine is blocked due to the uneven feeding speed, the material viscosity and the irregular shape is avoided, and after the double-shaft crushing and crushing all-in-one machine is used, the working efficiency is greatly improved. The shutdown time of an enterprise caused by machine jamming is almost reduced to zero, and the continuity and stability of production are greatly guaranteed, so that the production loss caused by shutdown is reduced, the service life of equipment is prolonged, the maintenance risk of the equipment is reduced, and the production operation of the enterprise is smoother and more efficient.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a double-shaft breaking and smashing integrated machine with forced continuous feeding. BACKGROUND

[0002] In the wood processing process, the traditional crusher is used for wood breaking operation, and then the hammer crusher is used for smashing treatment. This step-by-step processing method of the crusher gradually exposes a series of problems in the long-term operation of the enterprise, affecting the production efficiency, cost control and stability of product quality.

[0003] First, the equipment occupies a large area. The traditional crusher and the hammer crusher are independent, which requires a large workshop space. This not only increases the site rental cost of the enterprise, but also makes it difficult to place the equipment and plan the material flow channel in the limited workshop layout, which is not conducive to the optimization of production process and overall management.

[0004] Second, the feeding efficiency is low. During the feeding process of the traditional crusher, the next feeding can only be carried out after the hydraulic device returns. This process seriously affects the continuity of feeding, resulting in a significant reduction in overall work efficiency. Especially in large-scale wood processing production, this feeding method cannot meet the needs of efficient production. Frequent stoppage for feeding prolongs the production cycle and limits the production capacity.

[0005] Third, the machine is frequently jammed. Due to the differences in shape, size and texture of wood raw materials, especially some wood with high moisture content or viscosity or irregular shape, the machine is easily jammed in the traditional crusher and hammer crusher. Once the machine is jammed, the equipment must be stopped for cleaning and maintenance, which not only wastes a lot of production time, but also increases the maintenance cost of the equipment and the labor intensity of the workers. Moreover, frequent jamming can also damage the key components of the equipment, shortening the service life of the equipment.

[0006] Fourth, the production flexibility is poor. The traditional processing equipment has poor adjustment adaptability when facing different types, different hardness and different shapes of wood. The feeding amount and the operating parameters of the equipment cannot be quickly and accurately adjusted according to the production requirements, resulting in difficulty in maintaining stable and consistent particle fineness when processing different batches of wood, which cannot meet the quality requirements of market diversified wood processing products.

[0007] Therefore, a double-shaft breaking and smashing integrated machine with forced continuous feeding is needed. CONTENT OF THE UTILITY MODEL

[0008] (I) Technical problems solved

[0009] The double-shaft breaking and smashing integrated machine capable of forced continuous feeding solves the problem that the traditional breaking machine needs to wait for the hydraulic device to return to the original position before the next feeding in the feeding process, which seriously affects the continuity of feeding and causes the overall work efficiency to be greatly reduced.

[0010] (II) Technical solutions

[0011] To achieve the above object, the utility model provides the following technical scheme: a double-shaft breaking and smashing integrated machine capable of forced continuous feeding, which comprises a breaking and smashing bin body and a forced feeding shell, the double-shaft breaking and smashing integrated machine is characterized in that a double-shaft processing assembly is arranged on the breaking and smashing bin body, the double-shaft processing assembly is used for sequentially breaking and smashing the material, the double-shaft processing assembly comprises a breaking motor, a discharge port, a smashing motor, a first motor, a smashing rotor and a breaking rotor; a forced feeding assembly is arranged on the forced feeding shell, the forced feeding assembly is used for forcibly feeding the material to the working area of the double-shaft processing assembly, and the forced feeding assembly comprises a fixed plate, a movable frame, a first chain transmission assembly, a hydraulic rod and a fixed seat.

[0012] Both the fixed plates in the forced feeding assembly are fixedly connected to the shell surface of the forced feeding shell, and the movable frame is rotatably connected between the two fixed plates.

[0013] The inlet of the movable frame is fixedly provided with a conveying belt assembly, three lower wolf tooth roller shafts are rotatably connected in the fixed plate, three upper wolf tooth roller shafts are rotatably connected in the movable frame, and the first chain transmission assembly is arranged between the two upper wolf tooth roller shafts close to the conveying belt assembly.

[0014] Preferably, the same first chain transmission assembly is arranged between the two upper wolf tooth roller shafts close to the breaking and smashing bin body, and the two ends of the middle upper wolf tooth roller shaft are respectively connected to the other two upper wolf tooth roller shafts through the corresponding first chain transmission assemblies.

[0015] Preferably, the same first chain transmission assembly is arranged between the two lower wolf tooth roller shafts close to the conveying belt assembly, the same first chain transmission assembly is arranged between the two lower wolf tooth roller shafts close to the breaking and smashing bin body, and the transmission structure of the lower wolf tooth roller shaft and the upper wolf tooth roller shaft is the same.

[0016] Preferably, the first motor is fixedly installed on the outer surface of the forced feeding shell, the output shaft of the first motor is fixedly inserted into the corresponding lower wolf tooth roller shaft, and the same first motor is fixedly installed on the outer surface of the movable frame.

[0017] Preferably, the output shaft of the first motor is fixedly inserted into the corresponding upper wolf tooth roller shaft, the fixed seat is fixedly connected to the upper surface of the movable frame, the hydraulic rod is rotatably connected to the outer surface of the forced feeding shell, the output shaft of the hydraulic rod is rotatably connected with the fixed seat, and the plurality of upper wolf tooth roller shafts and the plurality of lower wolf tooth roller shafts are arranged in a < shape as a whole.

[0018] Preferably, the crushing rotor in the double-shaft processing assembly is rotatably connected in the crushing and pulverizing chamber, the pulverizing rotor is rotatably connected in the crushing and pulverizing chamber, the pulverizing motor is fixedly installed on the crushing and pulverizing chamber, the discharge port is fixedly connected to the crushing and pulverizing chamber, the crushing and pulverizing chamber is provided with a discharging assembly, and the crushing and pulverizing chamber is provided with an intelligent control assembly, and the intelligent control assembly comprises a sensor assembly and a controller assembly.

[0019] Preferably, the output shaft of the pulverizing motor is connected with the pulverizing rotor through a synchronous belt transmission, the crushing motor is fixedly installed in the conveying belt assembly, and the output shaft of the crushing motor is connected with the crushing rotor through a synchronous belt transmission.

[0020] (Three) beneficial effects

[0021] Compared with the prior art, the double-shaft crushing and pulverizing all-in-one machine can force continuous feeding, and has the following beneficial effects:

[0022] 1. The double-shaft crushing and pulverizing all-in-one machine can force continuous feeding, solve the problem of machine jamming, ensure the continuity of production, and combine the speed induction control function to become an effective weapon for solving the problem of wood jamming. When facing various wood with different characteristics, such as wood with high humidity and high viscosity, or irregularly shaped wood with branches, the all-in-one machine can automatically adjust the operating parameters according to the feeding speed and material characteristics to ensure that the material enters the crushing and pulverizing cavity uniformly and stably, and avoid the phenomenon of machine jamming caused by uneven feeding speed, material viscosity and irregular shape. Since the double-shaft crushing and pulverizing all-in-one machine is used, the downtime caused by machine jamming has been almost reduced to zero, the continuity and stability of production have been greatly guaranteed, which not only reduces the production loss caused by downtime, but also improves the service life of the equipment, reduces the equipment maintenance risk, and makes the production and operation of the enterprise more smooth and efficient.

[0023] 2、The double-shaft breaking and crushing integrated machine with forced continuous feeding has the advantages of compact structure, and the land occupation is reduced by about 50% compared with the traditional breaker and the hammer crusher, so that the space of the enterprise workshop is more reasonably utilized, and more possibilities are provided for the layout of other production links or equipment, and the enterprise saves a large amount of funds in equipment investment, and the equipment purchase cost is reduced by 60,000 yuan, the annual maintenance cost is reduced by 30,000 yuan, and the labor cost is reduced by 50%, so that the production cost of the enterprise is effectively reduced, and the profit ability of the enterprise is improved.

[0024] 3、The double-shaft breaking and crushing integrated machine with forced continuous feeding has the advantages of compact structure, and the land occupation is reduced by about 50% compared with the traditional breaker and the hammer crusher, so that the space of the enterprise workshop is more reasonably utilized, and more possibilities are provided for the layout of other production links or equipment, and the enterprise saves a large amount of funds in equipment investment, and the equipment purchase cost is reduced by 60,000 yuan, the annual maintenance cost is reduced by 30,000 yuan, and the labor cost is reduced by 50%, so that the production cost of the enterprise is effectively reduced, and the profit ability of the enterprise is improved. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 It is a whole structure schematic view of the utility model;

[0026] Figure 2 It is a forced feeding shell structure schematic view of the utility model;

[0027] Figure 3 It is a fixed seat structure schematic view of the utility model;

[0028] Figure 4 It is a lower wolf tooth roller shaft structure schematic view of the utility model.

[0029] In the drawing: 1, breaking and crushing bin body; 2, forced feeding shell; 3, fixed plate; 4, movable frame; 5, conveying belt assembly; 6, lower wolf tooth roller shaft; 7, upper wolf tooth roller shaft; 8, first chain transmission assembly; 9, first motor; 10, breaking motor; 11, hydraulic rod; 12, fixed seat; 13, discharge port; 14, crushing motor; 15, crushing rotor; 16, breaking rotor. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the utility model will be apparently and completely described in connection with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.

[0031] Please refer to Figures 1-4 The utility model provides a new technical scheme: a double-shaft breaking and crushing integrated machine capable of forced continuous feeding, comprising a breaking and crushing bin body 1 and a forced feeding shell 2, the breaking and crushing bin body 1 is provided with a double-shaft processing assembly, the double-shaft processing assembly comprises a breaking motor 10, a discharge port 13, a crushing motor 14, a first motor 9, a crushing rotor 15 and a breaking rotor 16;

[0032] The forced feeding shell 2 is provided with a forced feeding assembly, the forced feeding assembly is used for forcedly conveying materials to the working area of the double-shaft processing assembly, and the forced feeding assembly comprises a fixed plate 3, a movable frame 4, a first chain transmission assembly 8, a hydraulic rod 11 and a fixed seat 12;

[0033] The two fixed plates 3 in the forced feeding assembly are fixedly connected to the shell surface of the forced feeding shell 2, and the movable frame 4 is rotatably connected between the two fixed plates 3.

[0034] The movable frame 4 is fixedly provided with a conveying belt assembly 5 at the inlet, the fixed plate 3 is rotatably connected with three lower wolf tooth roller shafts 6, the movable frame 4 is rotatably connected with three upper wolf tooth roller shafts 7, and the first chain transmission assembly 8 is arranged between the two upper wolf tooth roller shafts 7 close to the conveying belt assembly 5.

[0035] Further, the same first chain transmission assembly 8 is arranged between the two upper wolf tooth roller shafts 7 close to the breaking and crushing bin body 1, and the two ends of the middle upper wolf tooth roller shaft 7 are respectively connected with the other two upper wolf tooth roller shafts 7 through the corresponding first chain transmission assemblies 8.

[0036] Further, the same first chain transmission assembly 8 is arranged between the two lower wolf tooth roller shafts 6 close to the conveying belt assembly 5, the same first chain transmission assembly 8 is arranged between the two lower wolf tooth roller shafts 6 close to the breaking and crushing bin body 1, and the transmission structure of the lower wolf tooth roller shaft 6 and the upper wolf tooth roller shaft 7 is the same.

[0037] Further, the first motor 9 is fixedly installed on the outer surface of the forced feeding shell 2, the output shaft of the first motor 9 is fixedly inserted into the corresponding lower wolf tooth roller shaft 6, and the same first motor 9 is fixedly installed on the outer surface of the movable frame 4. Further, the first motor 9 is fixedly installed on the outer surface of the forced feeding shell 2, the output shaft of the first motor 9 is fixedly inserted into the corresponding lower wolf tooth roller shaft 6, and the same first motor 9 is fixedly installed on the outer surface of the movable frame 4.

[0038] Further, the output shaft of the first motor 9 is fixedly inserted into the corresponding upper wolf tooth roller shaft 7, the fixed seat 12 is fixedly connected to the upper surface of the movable frame 4, the hydraulic rod 11 is rotatably connected to the outer surface of the forced feeding shell 2, the output shaft of the hydraulic rod 11 is rotatably connected to the fixed seat 12, and the plurality of upper wolf tooth roller shafts 7 and the plurality of lower wolf tooth roller shafts 6 are arranged in a < shape as a whole.

[0039] Further, the crushing rotor 16 in the double-shaft processing assembly is rotatably connected in the crushing and pulverizing bin body 1, the pulverizing rotor 15 is rotatably connected in the crushing and pulverizing bin body 1, the pulverizing motor 14 is fixedly installed on the crushing and pulverizing bin body 1, the discharge port 13 is fixedly connected to the crushing and pulverizing bin body 1, the crushing and pulverizing bin body 1 is provided with a discharging device, and the crushing and pulverizing bin body 1 is provided with an intelligent control assembly, which includes a sensor assembly and a controller assembly.

[0040] Further, the output shaft of the pulverizing motor 14 is connected to the pulverizing rotor 15 through a synchronous belt transmission, the crushing motor 10 is fixedly installed in the conveying belt assembly 5, and the output shaft of the crushing motor 10 is connected to the crushing rotor 16 through a synchronous belt transmission.

[0041] Further, when in use, the conveying belt assembly 5 can convey the materials to be processed to the inlet of the forced feeding shell 2 by starting the conveying belt assembly 5, and then the two first motors 9 can drive the lower wolf tooth roller shaft 6 and the upper wolf tooth roller shaft 7 to rotate respectively, the three lower wolf tooth roller shafts 6 and the three upper wolf tooth roller shafts 7 can rotate simultaneously and in the same direction through the plurality of first chain transmission assemblies 8, so that the rotating lower wolf tooth roller shaft 6 and the upper wolf tooth roller shaft 7 can roll the materials conveyed by the conveying belt assembly 5 into the working area of the crushing rotor 16, when the forced feeding assembly is running, the materials enter the forced feeding assembly and are pushed to the working area of the crushing rotor 16 stably and forcibly under the action of the lower wolf tooth roller shaft 6 and the upper wolf tooth roller shaft 7, the crushing motor 10 and the pulverizing motor 14 adjust the rotating speed under the cooperation of the feeding speed regulator to adapt to the feeding requirements of different materials and production processes according to the instructions of the intelligent control system, for example, when processing materials with high viscosity, the feeding speed is reduced and the pressure of the lower wolf tooth roller shaft 6 and the upper wolf tooth roller shaft 7 is increased; when the production efficiency needs to be improved, the feeding speed is appropriately increased.

[0042] The materials enter the crushing rotor cavity for crushing after passing through the forced hydraulic feeding system, and the crushed materials are directly thrown into the pulverizing rotor for pulverizing operation by the inertia of the rotor, so that the materials do not need to be transferred between the crusher and the pulverizer, and the working efficiency is greatly improved.

[0043] The pulverizing structure adopts high-speed rotating hammer heads or blades (made of high-quality wear-resistant materials such as high manganese steel or hard alloy) as the pulverizing components, which are installed on the rotating shaft driven by the motor and the speed reducer, and the rotating speed can be as high as several thousand revolutions per minute, which can quickly and effectively pulverize the crushed materials to the required particle size. During the entire operation process, the intelligent control system plays a key role. Through the sensor device installed on the machine, the intelligent control system controls the feed amount, the crushing and pulverizing load, and the particle size of the discharged material, and automatically adjusts the hydraulic cylinder pressure of the forced feeding system, the rotating speed of the crushing shaft, and the operating parameters of the pulverizing structure according to the preset program and process requirements, to ensure that the equipment is always in a high-efficiency and stable working state, and realizes the integrated operation of continuous forced feeding, crushing, and pulverizing of the materials.

[0044] The newly introduced double-shaft crushing and pulverizing all-in-one machine adopts a unique forced feeding system, which effectively solves the problem that the traditional equipment needs to be returned by hydraulic pressure before feeding again. In the wood processing process, whether it is a log or a wood section after preliminary cutting, continuous feeding can be realized, greatly improving the overall working efficiency of the equipment. Compared with the traditional processing method, the production efficiency is improved by more than 50%, significantly shortening the production cycle of wood processing, enabling enterprises to produce more qualified products in the same time, and enhancing the market competitiveness of enterprises.

[0045] The all-in-one machine has a double-shaft design integrating crushing and pulverizing functions, which fully utilizes its compact structure. Compared with the previously used traditional crusher and hammer pulverizer, the land occupation area is reduced by about 50%, which makes the space of the enterprise workshop more reasonably utilized, providing more possibilities for the layout of other production links or equipment. At the same time, due to the reduction of the purchase cost of one equipment and the subsequent maintenance cost (including equipment part replacement, maintenance labor cost, etc.), the enterprise saves a lot of money in equipment investment. According to statistics, the equipment purchase cost is reduced by 60,000 yuan, the annual maintenance cost is reduced by 30,000 yuan, and the labor cost is reduced by 50%. The above effectively reduces the production cost of enterprises and improves the profitability of enterprises.

[0046] And solve the card machine and other problems, to ensure the continuity of production, forced continuous feeding system combined with speed sensing control function, become the effective weapon to solve the wood card machine problem, in the face of various different characteristics of wood, such as high humidity, high viscosity of wood, or irregular shape, with branches of wood, the integrated machine can automatically adjust the operating parameters according to the feeding speed and material characteristics, ensure that the material enters the crushing and pulverizing cavity uniformly and stably, avoid the card machine phenomenon caused by uneven feeding speed, material viscosity and irregular shape, since the use of double shaft crushing and pulverizing integrated machine, the downtime caused by card machine of enterprise almost reduced to zero, the continuity and stability of production has been greatly guaranteed, which not only reduces the production loss caused by downtime, but also improves the service life of equipment, reduces the equipment maintenance risk, makes the production and operation of enterprise more smooth and efficient.

[0047] With precise control to improve product quality and flexibility, intelligent control system is a big highlight of double shaft crushing and pulverizing integrated machine, in the process of wood processing, enterprises can adjust the feeding amount and the operating parameters of each structure accurately through intelligent control system according to different wood species, product specification requirements and production process standards, for example, when processing high hardness wood, appropriately increase the rotating speed and torque of the crushing shaft; When producing fine particle size of wood powder, accurately adjust the gap of the crushing structure and the rotating speed of the crushing knife, this precise control ability enables enterprises to produce uniform particle size, stable quality of wood processing products, which meets the strict requirements of different customers on wood product quality, at the same time, also greatly improves the production flexibility of enterprises, can quickly respond to the changes of market demand, timely adjust the production process and product specification, provides strong support for enterprises to develop new markets and launch new products.

[0048] Structure description:

[0049] Crushing and pulverizing chamber 1: main component, used for accommodating double shaft processing assembly, crushing and pulverizing materials.

[0050] Forced feeding shell 2: used for installing forced feeding assembly, forcibly conveying materials to the working area of double shaft processing assembly.

[0051] Fixed plate 3: part of forced feeding assembly, fixedly connected to the surface of forced feeding shell 2, used for supporting and fixing other components.

[0052] Movable frame 4: part of forced feeding assembly, rotatably connected between two fixed plates 3, used for installing upper wolf tooth roller shaft 7 and other components.

[0053] Conveying belt assembly 5: used for conveying materials to the inlet of forced feeding shell 2.

[0054] Lower wolf tooth shaft 6: part of the forced feeding assembly, rotationally connected in the fixed plate 3, used to cooperate with the upper wolf tooth shaft 7 to force the material to push to the working area of the crushing rotor 16.

[0055] Upper wolf tooth shaft 7: part of the forced feeding assembly, rotationally connected in the movable frame 4, and works with the lower wolf tooth shaft 6.

[0056] First chain transmission assembly 8: used to connect and drive multiple upper wolf tooth shafts 7 and lower wolf tooth shafts 6, so that they can rotate simultaneously and in the same direction.

[0057] First motor 9: drive motor, fixedly installed on the outer surface of the forced feeding shell 2 and the movable frame 4, used to drive the lower wolf tooth shaft 6 and the upper wolf tooth shaft 7 to rotate.

[0058] Crushing motor 10: drive motor, fixedly installed in the conveyor belt assembly 5, used to drive the crushing rotor 16 to rotate.

[0059] Hydraulic rod 11: used to increase the pressure of the upper wolf tooth shaft 7, so that the material is forced and stably pushed to the working area of the crushing rotor 16.

[0060] Fixed seat 12: fixedly connected to the upper surface of the movable frame 4, used to rotationally connect with the output shaft of the hydraulic rod 11.

[0061] Discharge port 13: part of the crushing and crushing bin body 1, used to discharge the processed material.

[0062] Pulverizing motor 14: drive motor, fixedly installed on the crushing and crushing bin body 1, used to drive the pulverizing rotor 15 to rotate.

[0063] Pulverizing rotor 15: part of the double-shaft processing assembly, rotationally connected in the crushing and crushing bin body 1, used for pulverizing the material.

[0064] Crushing rotor 16: part of the double-shaft processing assembly, rotationally connected in the crushing and crushing bin body 1, used for crushing the material.

[0065] Sensor assembly: digital current sensor, load sensor are respectively installed on the feeding device, crushing structure and pulverizing structure, used for real-time monitoring of feeding amount, crushing and pulverizing load and discharge particle size.

[0066] Controller component: the core is a controller (such as PLC or single-chip microcomputer), which receives sensor data, controls the pressure of the hydraulic cylinder of the forced feeding device, the driving motor, the motor of the double-shaft crushing structure and the motor of the crushing structure according to the preset program and process requirements. For example, when the material flow is too large and the crushing structure is overloaded, the controller automatically reduces the feeding speed; when the discharge particle size does not meet the requirements, the crushing speed can be adjusted to meet the requirements of different crushing fineness of the material.

[0067] Discharge component: the discharge component is located at the bottom of the machine body, and there are two main discharge modes:

[0068] 1. The crushed material is sucked out by a fan, and this device is suitable for relatively dry materials;

[0069] 2. Belt discharge, this device is suitable for materials with high moisture content. The discharge mode can be adjusted according to the actual production needs, and the discharge speed can be adjusted fast or slow according to the discharge amount to ensure that the material is output in time and smoothly.

[0070] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A twin-shaft crushing and pulverizing integrated machine capable of forced continuous feeding, characterized in that: Including broken crushing bin (1) and forced feed shell (2), broken crushing bin (1) is provided with double shaft processing assembly, double shaft processing assembly is used to carry out crushing and crushing in turn to material, double shaft processing assembly includes crushing motor (10), discharge port (13), pulverizing motor (14), first motor (9), pulverizing rotor (15) and crushing rotor (16); The forced feed shell (2) is provided with a forced feed assembly, the forced feed assembly is used for forcedly conveying the material to the working area of the double shaft processing assembly, the forced feed assembly includes a fixed plate (3), a movable frame (4), a first chain transmission assembly (8), a hydraulic rod (11) and a fixed seat (12); The two fixed plates (3) in the forced feed assembly are fixedly connected to the surface of the forced feed shell (2), and the movable frame (4) is rotatably connected between the two fixed plates (3). The inlet of the movable frame (4) is fixedly provided with a conveying belt assembly (5), three lower wolf tooth roller shafts (6) are rotatably connected in the fixed plate (3), three upper wolf tooth roller shafts (7) are rotatably connected in the movable frame (4), and the first chain transmission assembly (8) is arranged between the two upper wolf tooth roller shafts (7) close to the conveying belt assembly (5).

2. The dual-shaft crushing and pulverizing all-in-one machine capable of forced continuous feeding according to claim 1, characterized in that: The same first chain transmission assembly (8) is arranged between the two upper wolf tooth roller shafts (7) close to the broken crushing bin (1), and the two ends of the middle upper wolf tooth roller shaft (7) are respectively connected to the other two upper wolf tooth roller shafts (7) through the corresponding first chain transmission assembly (8).

3. The dual shaft shredder and compactor all-in-one of claim 2, wherein: The same first chain transmission assembly (8) is arranged between the two lower wolf tooth roller shafts (6) close to the conveying belt assembly (5), and the same first chain transmission assembly (8) is arranged between the two lower wolf tooth roller shafts (6) close to the broken crushing bin (1), and the transmission structure of the lower wolf tooth roller shaft (6) and the upper wolf tooth roller shaft (7) is the same.

4. The dual shaft shredder and composter of claim 3, wherein: The first motor (9) is fixedly installed on the outer surface of the forced feed shell (2), the output shaft of the first motor (9) is fixedly inserted into the corresponding lower wolf tooth roller shaft (6), and the outer surface of the movable frame (4) is fixedly provided with the same first motor (9).

5. The dual shaft shredder and compactor all-in-one of claim 4, wherein: The output shaft of the first motor (9) is fixedly inserted into the corresponding upper wolf tooth roller shaft (7), the fixed seat (12) is fixedly connected to the upper surface of the movable frame (4), the hydraulic rod (11) is rotatably connected to the outer surface of the forced feed shell (2), the output shaft of the hydraulic rod (11) is rotatably connected to the fixed seat (12), and the plurality of upper wolf tooth roller shafts (7) and the plurality of lower wolf tooth roller shafts (6) are arranged in a < shape.

6. The dual shaft crushing and pulverizing all-in-one machine capable of forced continuous feeding according to claim 1, characterized in that: The crushing rotor (16) in the double shaft processing assembly is rotatably connected in the broken crushing bin (1), the pulverizing rotor (15) is rotatably connected in the broken crushing bin (1), the pulverizing motor (14) is fixedly installed on the broken crushing bin (1), the discharge port (13) is fixedly connected to the broken crushing bin (1), the broken crushing bin (1) is provided with a discharge assembly, and the broken crushing bin (1) is provided with an intelligent control assembly, the intelligent control assembly includes a sensor assembly and a controller assembly.

7. The dual shaft shredder and compactor all-in-one of claim 6, wherein: The output shaft of the pulverizing motor (14) is connected with the pulverizing rotor (15) through a synchronous belt transmission, the crushing motor (10) is fixedly installed in the conveying belt assembly (5), and the output shaft of the crushing motor (10) is connected with the crushing rotor (16) through a synchronous belt transmission.