Sludge resourceful treatment mechanism

By combining screening frames, shaking components, and multi-directional mixing components, the problems of high energy consumption and low efficiency in sludge treatment equipment are solved, achieving efficient and energy-saving sludge resource utilization treatment.

CN223921279UActive Publication Date: 2026-02-17QUZHOU TONGYUAN ENVIRONMENTAL CONSTR CO LTD
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Patent Information

Application Number
CN202520119529.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2026-02-17
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Existing sludge treatment equipment is energy-intensive and inefficient. Separating screw conveyors and agitators require separate power sources, and the separation screen is prone to clogging, affecting treatment efficiency.

Method used

The system employs a screening frame, a shaking component, and a multi-directional mixing component. A power connection component synchronously drives the shaking component and the multi-directional mixing component to screen out sand and gravel from the sludge, preventing clogging, and the multi-directional mixing component improves mixing efficiency.

Benefits of technology

It reduces energy consumption, improves the efficiency of sludge resource utilization, reduces the probability of clogging, and enhances the overall efficiency of sludge treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a sludge resourceful treatment mechanism which comprises a treatment frame shell and a feeding channel, and the feeding channel is used for guiding sludge into the treatment frame shell; the screening net frame is used for screening the sludge; the shaking assembly is used for shaking the screening net frame; the multidirectional mixing assembly is used for mixing the materials in the treatment frame shell; and the power connecting assembly is used for providing driving force for the shaking assembly and the multi-directional mixing assembly. Large hard solids such as gravel in sludge can be screened out through the screening net frame, subsequent sludge treatment is prevented from being affected, the screening net frame can be shaken through the shaking assembly, the probability that the screening net frame is blocked is reduced, materials in the treatment frame shell can be mixed through the multi-direction mixing assembly, and the sludge treatment efficiency is improved. The sludge treatment efficiency is improved, and the shaking assembly and the multidirectional mixing assembly can be synchronously driven by utilizing one driving source power connecting assembly.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of sludge treatment, especially to sludge resource treatment mechanism. BACKGROUND

[0002] Sludge resource treatment is an important environmental protection strategy, aiming at converting sludge, a potential pollution source, into valuable resources. Sludge resource refers to extracting valuable components from sludge through various physical, chemical and biological processes according to different use occasions, recombining or converting them into other energy forms to obtain reuse value and eliminate secondary pollution. Stabilized sludge is used as fertilizer or soil conditioner for land resources improvement and restoration in farmland, garden, grassland, etc. This method can fully utilize the nutrients in sludge and improve soil structure and fertility; sludge is used as raw material to produce building materials such as ceramsite, bricks, cement, etc. This method can reduce dependence on traditional raw materials and reduce production cost; sludge is incinerated or anaerobically fermented to produce biogas as energy. Incineration of sludge can release high heat, which can be used for power generation and heating; biogas produced by anaerobic fermentation can be used as fuel. This method can reduce the volume and mass of sludge, and also recover energy, etc.

[0003] In the field of municipal housing construction, sludge is generated. To avoid resource waste, sludge is generally treated for resource utilization. In the authorized Chinese utility model patent "Publication No. CN221370959U, Name: Sludge Resource Treatment Device", the sludge is added from the inlet bin through the setting of the separation device. The rotation of the separation auger driven by the starting separation motor will transport the sludge from left to right. The sludge will pass through the separation net during the transmission process. The separation net has the effect of separating stones and dry branches in the sludge. The rotation of the separation auger will apply pressure to the sludge to make the separation effect of the sludge on the separation net better. The rotating mixer fully mixes the treatment chemicals and sludge to purify the sludge. However, in the above-mentioned application, the separation auger and the mixer need separate power sources, which consumes a lot of energy. Moreover, the separation net is prone to blockage during use, which requires downtime for cleaning, affecting the efficiency of sludge treatment. UTILITY MODEL CONTENTS

[0004] The technical problem to be solved by the utility model is to overcome the defects of large energy consumption and low sludge treatment efficiency in the prior art, and to provide a sludge resource treatment mechanism.

[0005] The utility model solves the above technical problems by the following technical solutions:

[0006] The utility model provides a sludge resource treatment mechanism, which comprises a treatment frame shell,

[0007] The feeding channel is connected with two symmetrical feeding channels on the top of the processing frame shell, and the feeding channels are used to guide the sludge into the processing frame shell.

[0008] The screening net frame is arranged in the feeding channel, and the screening net frame is used for screening the sludge.

[0009] The shaking assembly is connected with the screening net frame, and the shaking assembly is used for shaking the screening net frame.

[0010] The multi-directional mixing assembly is arranged at the inner cavity of the processing frame shell, and the multi-directional mixing assembly is used for mixing the materials in the processing frame shell.

[0011] The power connection assembly is connected with the shaking assembly and the multi-directional mixing assembly respectively, and the power connection assembly is used for providing driving force for the shaking assembly and the multi-directional mixing assembly.

[0012] In the technical solution, the screening net frame can screen the sludge to filter out the large and hard solids such as sand and gravel in the sludge, prevent the subsequent treatment of the sludge, and shake the screening net frame by the shaking assembly to reduce the probability of the screening net frame being blocked, thereby improving the efficiency of the sludge resource treatment, mix the materials in the processing frame shell by the multi-directional mixing assembly to improve the efficiency of the sludge treatment, and drive the shaking assembly and the multi-directional mixing assembly by the power connection assembly of one driving source to reduce energy consumption.

[0013] Preferably, the shaking assembly comprises a support frame connected to the top of the screening net frame, and a plurality of connecting columns are connected to one side of the support frame.

[0014] The ends of the plurality of connecting columns away from the support frame are connected with a connecting plate, one side of the connecting plate is connected with a plurality of elastic return members, and one end of the elastic return member is connected with the outside of the feeding channel.

[0015] The side of the connecting plate away from the elastic return member is provided with a plurality of eccentric wheels.

[0016] In the technical solution, the shaking assembly can periodically shake the screening net frame.

[0017] Preferably, the side of the connecting plate away from the elastic return member is rotatably connected with a plurality of rolling balls, and the rolling balls are in contact with the side surface of the eccentric wheel.

[0018] In the technical solution, the rolling balls can reduce the friction between the eccentric wheel and the connecting plate, so that the rotation of the eccentric wheel is more smooth.

[0019] Preferably, a plurality of connecting belts are connected to the top of the support frame, and the top side of the connecting belts is connected to the inner wall of the top surface of the feeding channel.

[0020] In the technical solution, the connecting belts can prevent the sludge from deviating from the screen frame when being added.

[0021] Preferably, two fixed shafts are connected to the inner wall of the feeding channel in a symmetrical manner, and a plurality of sliding blocks are connected to the two sides of the support frame, and the sliding blocks on the two sides are respectively and slidably penetrated into the surface of the fixed shafts.

[0022] In the technical solution, the fixed shafts and the sliding blocks can limit the moving track of the screen frame.

[0023] Preferably, the multi-directional mixing assembly comprises a stirring shaft, a plurality of stirring shafts are arranged in the inner cavity of the processing frame shell, and one end of the stirring shaft is connected to the inner wall of the processing frame shell.

[0024] A plurality of longitudinal stirring blades are connected to the surface of the stirring shaft.

[0025] A plurality of transverse stirring blades are arranged in the inner cavity of the processing frame shell.

[0026] In the technical solution, the multi-directional mixing assembly can mix the materials in the feeding channel from multiple directions, so as to reduce the stirring dead angle and improve the efficiency of material mixing.

[0027] Preferably, the power connection assembly comprises a bidirectional power source, the bidirectional power source is installed on the top of the processing frame shell, and two output ends of the bidirectional power source are respectively connected with a transmission shaft and a rotating shaft.

[0028] The transmission shaft is connected with the eccentric wheel through an upper transmission component, and the rotating shaft is connected with the multi-directional mixing assembly through a lower transmission component.

[0029] In the technical solution, the power connection assembly can provide driving force for the operation of the shaking assembly and the multi-directional mixing assembly.

[0030] Preferably, the upper transmission component comprises a shielding plate, the two sides of the shielding plate are respectively connected with the side surfaces of the feeding channel, a plurality of transmission shafts are rotatably connected to the bottom of the shielding plate, a plurality of main gears and a plurality of driven gears are respectively connected to the surfaces of the plurality of transmission shafts, the plurality of main gears and the plurality of driven gears are spaced apart, and adjacent main gears and driven gears are in transmission connection.

[0031] The upper side of one of the transmission shafts is connected with a main gear, and the lower end is connected with the output end of the bidirectional power source.

[0032] The upper side of the main gear is connected with the eccentric wheel.

[0033] In the technical solution, the uploading component is used to connect the eccentric wheel and the transmission shaft.

[0034] Preferably, the downward transmission component comprises a central bevel gear, the rotating shaft surface is connected with a plurality of central bevel gears, the central bevel gears are connected with a plurality of edge bevel gears in an annular array on the side surface, and one side of the edge bevel gears is connected with one end of the stirring shaft.

[0035] The central bevel gears and the edge bevel gears are arranged at the inner cavity of the protective shell, and the protective shell is connected to the inner wall of the processing frame shell.

[0036] The rotating shaft surface is rotatably penetrated and connected to one side of the protective shell, and the rotating shaft surface is connected with a plurality of transverse stirring blades.

[0037] In the technical solution, the downward transmission component is used to connect the rotating shaft and the multidirectional mixing assembly.

[0038] Preferably, a plurality of moving wheels are installed at the bottom of the processing frame shell.

[0039] In the technical solution, the moving wheels are used to facilitate the movement of the processing mechanism.

[0040] On the basis of common sense in the art, the above-mentioned preferred conditions can be combined arbitrarily, that is, the preferred examples of the present application are obtained.

[0041] The positive progress effect of the present application is that:

[0042] The present application uses the screening net frame to screen the sludge, screens out the larger hard solids such as sand and gravel in the sludge, prevents the influence on the subsequent treatment of the sludge, and uses the shaking assembly to shake the screening net frame, reduces the probability of the screening net frame being blocked, thereby improving the efficiency of the sludge resource treatment, uses the multidirectional mixing assembly to mix the materials in the processing frame shell, improves the efficiency of the sludge treatment, and uses one driving source power connection assembly to synchronously drive the shaking assembly and the multidirectional mixing assembly, reduces the energy consumption, and is more energy-saving and environment-friendly. BRIEF DESCRIPTION OF DRAWINGS

[0043] Figure 1 It is a structural schematic view of the sludge resource treatment mechanism of the present application.

[0044] Figure 2 It is Figure 1 It is a whole internal structure schematic view of the sludge resource treatment mechanism.

[0045] Figure 3 It is Figure 1 It is a top view structural schematic view of the feeding channel of the sludge resource treatment mechanism.

[0046] Figure 4For Figure 2 The partial enlarged structure schematic view of the sludge resource treatment mechanism is shown.

[0047] Figure 5 For Figure 1 The upper component structure schematic view of the sludge resource treatment mechanism is shown.

[0048] Figure 6 For Figure 1 The lower component structure schematic view of the sludge resource treatment mechanism is shown.

[0049] Explanation of reference numerals

[0050] 1, treatment frame shell;

[0051] 2, feeding channel;

[0052] 3, screening net frame;

[0053] 4, shaking assembly; 41, support frame; 42, connecting column; 43, connecting plate; 44, elastic reset member; 45, eccentric wheel; 46, rolling ball; 47, connecting belt; 48, fixed shaft; 49, sliding block;

[0054] 5, multidirectional mixing assembly; 51, stirring shaft; 52, longitudinal stirring blade; 53, transverse stirring blade;

[0055] 6, power connection assembly; 61, bidirectional power source; 62, transmission shaft; 63, main gear; 64, from gear; 65, rotating shaft; 66, center bevel gear; 67, edge bevel gear; 68, protective shell; 69, shielding plate;

[0056] 7, moving wheel;

[0057] 8, scraping assembly; 81, mounting frame; 82, fixed scraper; 83, support shaft; 84, fixing frame. DETAILED DESCRIPTION

[0058] The utility model will be further illustrated by the way of embodiment below, but the utility model will not be limited in the embodiment range by this.

[0059] Figures 1 to 6 The structure schematic view of the embodiment of the sludge resource treatment mechanism of the utility model is shown. The sludge resource treatment mechanism comprises a treatment frame shell 1,

[0060] A feeding channel 2 is connected with two symmetrical feeding channels 2 on the top of the treatment frame shell 1, and the feeding channel 2 is used to guide the sludge into the treatment frame shell 1;

[0061] A screening net frame 3 is arranged in the feeding channel 2, and the screening net frame 3 is used to screen the sludge.

[0062] A shaking assembly 4 is connected with the screening mesh frame 3, and the shaking assembly 4 is used for shaking the screening mesh frame 3.

[0063] A multi-directional mixing assembly 5 is arranged at the inner cavity of the processing frame shell 1, and the multi-directional mixing assembly 5 is used for mixing the materials in the processing frame shell 1.

[0064] A power connection assembly 6 is connected with the shaking assembly 4 and the multi-directional mixing assembly 5 respectively, and the power connection assembly 6 is used for providing driving force for the shaking assembly 4 and the multi-directional mixing assembly 5.

[0065] In the technical solution, the screening mesh frame 3 can screen the sludge to screen out the larger hard solids such as sand in the sludge, so as to prevent the sludge from affecting the subsequent treatment, the shaking assembly 4 can shake the screening mesh frame 3 to reduce the probability of the screening mesh frame 3 being blocked, thereby improving the efficiency of the sludge resource treatment, the multi-directional mixing assembly 5 can mix the materials in the processing frame shell 1 to improve the efficiency of the sludge treatment, and one driving source, i.e., the power connection assembly 6, can synchronously drive the shaking assembly 4 and the multi-directional mixing assembly 5, thereby reducing energy consumption.

[0066] The shaking assembly 4 comprises a support frame 41 connected to the top of the screening mesh frame 3, and a plurality of connecting columns 42 connected to one side of the support frame 41.

[0067] The plurality of connecting columns 42 are connected with a connecting plate 43 at the ends away from the support frame 41, the connecting plate 43 is connected with a plurality of elastic reset members 44 at one side, and the elastic reset members 44 are connected with the outer side of the feeding channel 2 at one end.

[0068] The connecting plate 43 is provided with a plurality of eccentric wheels 45 at the side away from the elastic reset members 44.

[0069] In the technical solution, the shaking assembly 4 can periodically shake the screening mesh frame 3.

[0070] The connecting plate 43 is rotatably connected with a plurality of rolling balls 46 at the side away from the elastic reset members 44, and the rolling balls 46 are in contact with the side surface of the eccentric wheels 45.

[0071] In the technical solution, the rolling balls 46 can reduce the friction between the eccentric wheels 45 and the connecting plate 43, so that the rotation of the eccentric wheels 45 is smoother.

[0072] The support frame 41 is connected with a plurality of connecting belts 47 at the top, and the connecting belts 47 are connected with the inner wall of the top surface of the feeding channel 2 at the top side.

[0073] In the technical solution, the connecting belt 47 can avoid the sludge from deviating from the screening net frame 3 when the sludge is added.

[0074] The inner wall of the feeding channel 2 is connected with two fixed shafts 48 which are symmetrically distributed, and the support frame 41 is connected with a plurality of sliding blocks 49 on both sides, and the sliding blocks 49 on both sides are respectively and slidably penetratedly connected with the surface of the fixed shaft 48.

[0075] In the technical solution, the fixed shaft 48 and the sliding block 49 can limit the moving track of the screening net frame 3.

[0076] In use, the sludge is added into the screening net frame 3 from the feeding channel 2, and the screening net frame 3 is used for pre-screening treatment of the sludge, at this time, the eccentric wheel 45 can be driven to rotate by the power connection assembly 6, so that the connecting plate 43 can move with the rotation of the eccentric wheel 45 under the action of the elastic reset member 44, and then the connecting column 42 moves in the same direction, at this time, the support frame 41 and the screening net frame 3 can be driven to move, so that the screening net frame 3 can periodically shake to assist the screening treatment of the sludge.

[0077] When the screening net frame 3 moves, the sliding block 49 can move along the fixed shaft 48, and the fixed shaft 48 and the sliding block 49 can limit the moving track of the screening net frame 3.

[0078] The multi-direction mixing assembly 5 comprises stirring shafts 51, and the inner cavity of the processing frame shell 1 is provided with a plurality of stirring shafts 51, one end of the stirring shaft 51 is connected with the inner wall of the processing frame shell 1.

[0079] The surface of the stirring shaft 51 is connected with a plurality of longitudinal stirring blades 52.

[0080] The inner cavity of the processing frame shell 1 is provided with a plurality of transverse stirring blades 53.

[0081] In the technical solution, the multi-direction mixing assembly 5 can mix the materials in the feeding channel 2 from multiple directions, which can reduce the stirring dead angle and improve the efficiency of material mixing.

[0082] In use, the sludge after the screening treatment of the screening net frame 3 enters the processing frame shell 1, at this time, sludge treatment agents can be added into the processing frame shell 1, and the stirring shaft 51 and the transverse stirring blade 53 can be driven to rotate by the power connection assembly 6, the stirring shaft 51 can drive the longitudinal stirring blade 52 to rotate when rotating, and the longitudinal stirring blade 52 and the transverse stirring blade 53 can mix the sludge and other liquids in the feeding channel 2 when rotating.

[0083] The power connection assembly 6 comprises a bidirectional power source 61, the bidirectional power source 61 is installed on the top of the processing frame shell 1, and the two output ends of the bidirectional power source 61 are respectively connected with a transmission shaft 62 and a rotating shaft 65.

[0084] The transmission shaft 62 is connected with the eccentric wheel 45 through an upper transmission component, and the rotating shaft 65 is connected with the multi-direction mixing assembly 5 through a lower transmission component.

[0085] In the technical solution, the power connection assembly 6 can provide driving force for the running of the shaking assembly 4 and the multi-direction mixing assembly 5.

[0086] The upper transmission component comprises a shielding plate 69, the two sides of the shielding plate 69 are connected with the side of the feeding channel 2 respectively, a plurality of transmission shafts 62 are rotationally connected to the bottom of the shielding plate 69, a plurality of main gears 63 and a plurality of driven gears 64 are connected to the surfaces of the transmission shafts 62 respectively, the main gears 63 and the driven gears 64 are spaced apart respectively, and adjacent main gears 63 and driven gears 64 are in transmission connection.

[0087] One of the transmission shafts 62 is connected with a main gear 63 on the upper side, and the lower end is connected with the output end of the bidirectional power source 61.

[0088] The main gear 63 is connected with the eccentric wheel 45 on the upper side.

[0089] In the technical solution, the upper transmission component can be connected with the eccentric wheel 45 and the transmission shaft 62.

[0090] The lower transmission component comprises a central bevel gear 66, a plurality of central bevel gears 66 are connected to the surface of the rotating shaft 65, a plurality of edge bevel gears 67 arranged in a ring array are meshingly connected to the side of the central bevel gear 66, and one side of the edge bevel gear 67 is connected with one end of the stirring shaft 51.

[0091] The central bevel gear 66 and the edge bevel gear 67 are arranged at the inner cavity of the protective shell 68, and the protective shell 68 is connected to the inner wall of the processing frame shell 1.

[0092] The surface of the rotating shaft 65 is rotatably penetrated and connected with one side of the protective shell 68, and a plurality of transverse stirring blades 53 are connected to the surface of the rotating shaft 65.

[0093] In the technical solution, the lower transmission component can be connected with the rotating shaft 65 and the multi-direction mixing assembly 5.

[0094] In use, the bidirectional power source 61 can drive the corresponding transmission shaft 62 and the rotating shaft 65 to rotate simultaneously.

[0095] When the transmission shaft 62 rotates, the main gear 63 can be driven to rotate, and then the driven gear 64 can be driven to rotate, at this time, other transmission shafts 62 can be driven to rotate, and the eccentric wheel 45 can be driven to rotate simultaneously.

[0096] When the rotating shaft 65 rotates, the horizontal stirring blade 53 and the central bevel gear 66 can be driven to rotate, and the central bevel gear 66 can drive a plurality of edge bevel gears 67 to rotate, thereby driving the stirring shaft 51 to rotate.

[0097] A plurality of moving wheels 7 are mounted at the bottom of the processing frame 1.

[0098] In the technical scheme, the moving wheels 7 can facilitate the movement of the processing mechanism.

[0099] The inside of the screening net frame 3 is provided with a scraping assembly 8, which comprises a mounting frame 81, and a plurality of fixed scrapers 82 are connected to the bottom of the mounting frame 81 and in contact with the inside of the bottom surface of the screening net frame 3.

[0100] A supporting shaft 83 is connected to the top of the mounting frame 81, and the top end of the supporting shaft 83 is connected to the inside of a fixed frame 84, which is connected to the top of the feeding channel 2.

[0101] In use, the screening net frame 3 shakes, and the fixed scrapers 82 remain fixed, thereby cleaning the screening net frame 3 by the fixed scrapers 82, so as to avoid the clogging of the screening net frame 3 and affect the use.

[0102] The bidirectional power source 61 is a double-shaft motor or other equipment capable of outputting bidirectional rotary kinetic energy.

[0103] The elastic reset member 44 is a spring or other component with an elastic reset function.

[0104] Although the specific embodiments of the present application are described above, those skilled in the art should understand that this is only an example, and the protection scope of the present application is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the present application, and these changes and modifications all fall within the protection scope of the present application.

Claims

1. A sludge resource treatment mechanism comprising a treatment frame housing (1), characterized in that, The sludge resource treatment mechanism further comprises: a feeding channel (2), two symmetrically distributed feeding channels (2) are connected to the top of the treatment frame shell (1), and the feeding channels (2) are used for guiding the sludge into the treatment frame shell (1); A screening net frame (3) is arranged in the feeding channel (2), and the screening net frame (3) is used for screening the sludge; A shaking assembly (4) is connected with the screening net frame (3), and the shaking assembly (4) is used for shaking the screening net frame (3); A multi-directional mixing assembly (5) is arranged at the inner cavity of the treatment frame shell (1), and the multi-directional mixing assembly (5) is used for mixing the materials in the treatment frame shell (1); A power connection assembly (6) is connected with the shaking assembly (4) and the multi-directional mixing assembly (5), and the power connection assembly (6) is used for providing driving force for the shaking assembly (4) and the multi-directional mixing assembly (5).

2. The sludge resource recovery processing mechanism according to claim 1, characterized by: The shaking assembly (4) comprises a support frame (41) connected to the top of the screening net frame (3), and a plurality of connecting columns (42) are connected to one side of the support frame (41); The ends of the plurality of connecting columns (42) away from the support frame (41) are connected with a connecting plate (43), one side of the connecting plate (43) is connected with a plurality of elastic reset members (44), and one end of the elastic reset member (44) is connected with the outside of the feeding channel (2); A plurality of eccentric wheels (45) are arranged on the side of the connecting plate (43) away from the elastic reset member (44).

3. The sludge resource recovery processing mechanism according to claim 2, characterized by: A plurality of rolling balls (46) are rotatably connected to the side of the connecting plate (43) away from the elastic reset member (44), and the rolling balls (46) are in contact with the side surface of the eccentric wheel (45).

4. The sludge resource recovery processing mechanism according to claim 2, characterized by: A plurality of connecting belts (47) are connected to the top of the support frame (41), and the top side of the connecting belt (47) is connected with the inner wall of the top surface of the feeding channel (2).

5. The sludge resource recovery processing mechanism of claim 2, wherein: Two symmetrically distributed fixed shafts (48) are connected to the inner wall of the feeding channel (2), and a plurality of sliding blocks (49) are connected to the two sides of the support frame (41), and the sliding blocks (49) on the two sides are respectively and slidably penetratedly connected with the surface of the fixed shaft (48).

6. The sludge resource recovery processing mechanism of claim 1, wherein: The multi-directional mixing assembly (5) comprises a stirring shaft (51), a plurality of stirring shafts (51) are arranged at the inner cavity of the treatment frame shell (1), and one end of the stirring shaft (51) is connected with the inner wall of the treatment frame shell (1); A plurality of longitudinal stirring blades (52) are connected with the surface of the stirring shaft (51); A plurality of transverse stirring blades (53) are arranged at the inner cavity of the treatment frame shell (1).

7. The sludge resource recovery processing mechanism of claim 1, wherein: The power connection assembly (6) comprises a bidirectional power source (61), the bidirectional power source (61) is installed at the top of the treatment frame shell (1), and the two output ends of the bidirectional power source (61) are respectively connected with a transmission shaft (62) and a rotating shaft (65); The transmission shaft (62) is connected with the eccentric wheel (45) through an upper transmission component, and the rotating shaft (65) is connected with the multi-directional mixing assembly (5) through a lower transmission component.

8. The sludge resource recovery processing mechanism as claimed in claim 7, characterized by: The uploading component includes a baffle (69), both sides of the baffle (69) are connected with the side of the feeding channel (2), the bottom of the baffle (69) is rotatably connected with a plurality of transmission shafts (62), the surfaces of the plurality of transmission shafts (62) are respectively connected with a plurality of main gears (63) and a plurality of driven gears (64), the plurality of main gears (63) and the plurality of driven gears (64) are respectively spaced, and the adjacent main gears (63) and driven gears (64) are drivingly connected; One of the transmission shafts (62) is connected with a main gear (63) on the upper side, and the lower end is connected with the output end of the bidirectional power source (61); The main gear (63) is connected with an eccentric wheel (45) on the upper side.

9. The sludge resource recovery processing mechanism as claimed in claim 7, wherein: The lower transmission component includes a central bevel gear (66), the surface of the rotating shaft (65) is connected with a plurality of central bevel gears (66), the side of the central bevel gear (66) is meshingly connected with a plurality of edge bevel gears (67) arranged in an annular array, and one side of the edge bevel gear (67) is connected with one end of the stirring shaft (51); The central bevel gear (66) and the edge bevel gear (67) are arranged in the inner cavity of the protective shell (68), and the protective shell (68) is connected to the inner wall of the processing frame shell (1); The surface of the rotating shaft (65) is rotatably penetrated and connected with one side of the protective shell (68), and the surface of the rotating shaft (65) is connected with a plurality of transverse stirring blades (53).

10. The sludge resource recovery processing mechanism of claim 1, wherein: A plurality of moving wheels (7) are installed at the bottom of the processing frame shell (1).

Citation Information

Patent Citations

  • Sludge recycling processor

    CN221370959U