Dust-free unloading device for a roller-sweeping dust collection vehicle
Through the dust-free unloading device of the rolling and sweeping vacuum truck, the filter net and exhaust fan are used to separate dust and garbage, which solves the problem of dust flying when the vacuum truck dumps garbage, and realizes dust-free unloading and efficient garbage disposal.
Patent Information
- Application Number
- CN202510159131.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2045-02-13
AI Technical Summary
Existing vacuum cleaners can easily cause dust to fly and secondary pollution when dumping garbage.
The dust-free unloading device of the rolling and sweeping vacuum truck is adopted to suck dust and garbage into the storage box through the vacuum pipe. The filter is used to separate the dust and garbage. The dust is discharged through the dust discharge pipe and the garbage is dumped through the discharging port. Combined with the exhaust fan, the filter mechanism and the linkage mechanism, the probability of dust flying is reduced.
It effectively reduces the probability of dust flying when garbage is dumped, improves air quality, reduces secondary pollution, and realizes dust-free unloading of garbage.
Smart Images

Figure CN119877436B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of municipal cleaning equipment, and in particular to a dust-free unloading device for a roller-sweeper type vacuum cleaner. Background Art
[0002] The vacuum truck is a new type of road sweeping sanitation vehicle that utilizes a dust removal and filtration system. It replaces the traditional rolling brush sweeping method of conventional road sweepers with a new, entirely negative pressure direct suction system. Through the vehicle's dust removal and filtration system and automatic pulse vibration dust removal system, it effectively reduces dust pollution and simultaneously filters inhalable particulate matter, improving air quality, reducing the amount of inhalable particulate matter in the air, and improving public respiratory health.
[0003] Existing vacuum trucks easily cause dust to fly when dumping garbage, and the flying dust easily causes secondary pollution to the garbage dumping area. Summary of the Invention
[0004] In order to reduce the probability of dust flying when dumping garbage, the present application provides a dust-free unloading device for a roller-sweeper type vacuum truck.
[0005] The present application provides a dust-free unloading device for a roller-sweeping dust collection vehicle adopts the following technical solution:
[0006] A dust-free unloading device of a roller-sweeping dust collection vehicle comprises a storage box, a dust collection pipe is connected to the storage box, an exhaust fan is installed on the storage box, a debris discharge port is opened on the storage box, a baffle is hingedly provided on the debris discharge port, the baffle is opened or closed by rotating the debris discharge port, a filter is provided in the storage box, the filter separates the storage box, a dust discharge pipe is connected and communicated with the storage box, the filter separates the dust discharge pipe and the dust collection pipe, and the exhaust fan is installed on the dust discharge pipe.
[0007] By adopting the above technical solution, the dust and garbage on the road are sucked into the storage box through the dust suction pipe, and then the dust and garbage are separated through the filter net, so that the dust falls to the bottom of the storage box and is discharged through the dust exhaust pipe to separate the dust, thereby reducing the probability of dust flying when the subsequent discharge port is opened to dump garbage.
[0008] Optionally, the debris discharge port is provided at one end of the storage box in the length direction, and the filter screen is hingedly arranged in the storage box at one end away from the debris discharge port, and the filter screen is tilted toward the debris discharge port by rotating.
[0009] Optionally, a linkage rod is provided between the baffle and the filter screen, one end of the linkage rod is fixedly connected to the baffle and the other end is slidably hinged to the filter screen.
[0010] Optionally, the filter screen includes a mounting frame, an elastic member and a mesh body. The mounting frame is hingedly arranged in the storage box. Several elastic members are respectively arranged on the circumference of the mounting frame. The mesh body is mounted on the mounting frame through the elastic member, and the mesh body slides toward or away from the mounting frame.
[0011] Optionally, a filtering mechanism is provided in the dust exhaust pipe, and the filtering mechanism includes a mounting ring and a filter bag. The mounting ring is installed in the dust exhaust pipe, and the filter bag is installed on the mounting ring. The filter bag covers the interior of the dust exhaust pipe.
[0012] Optionally, the mounting ring includes a mounting portion, an elastic portion and a vibrating portion, the mounting portion is mounted in the dust exhaust duct, the elastic portion is mounted on the mounting portion, the vibrating portion is mounted on the elastic portion, the vibrating portion slides toward or away from the mounting portion, and the filter bag is mounted on the vibrating portion.
[0013] Optionally, the dust exhaust pipe includes a fixed pipe, a connecting pipe and a disassembly pipe, the fixed pipe is fixedly arranged on the storage box, the connecting pipe is detachably arranged on the fixed pipe, the disassembly pipe is detachably arranged on the connecting pipe, and the filtering mechanism is installed on the connecting pipe.
[0014] Optionally, a linkage mechanism is provided between the exhaust fan and the filtering mechanism, and the linkage mechanism includes a driving gear, a linkage gear, a linkage shaft and an eccentric wheel. The driving gear is installed on the rotating shaft of the exhaust fan motor, and the linkage gear is rotatably set on the dust exhaust pipe. The linkage gear and the driving gear are connected, and the linkage shaft is fixed on the axis of the linkage gear. The eccentric wheel is installed at one end of the linkage shaft away from the linkage gear, and the eccentric wheel abuts against the vibrating part.
[0015] Optionally, a speed regulating gear is provided between the driving gear and the linkage gear, and the driving gear and the linkage gear are connected via the speed regulating gear.
[0016] Optionally, a hinged platform is provided at one end of the bottom of the storage box near the debris discharge port, and the hinged platform is used for hinged installation on the vacuum cleaner vehicle. A disassembly and assembly mechanism is provided at one end of the bottom of the storage box away from the debris discharge port, and the disassembly and assembly mechanism can be detachably installed on the vacuum cleaner vehicle. The disassembly and assembly mechanism includes a sliding plate, an elastic member, a mounting plate, an adjustment plate and an adjusting bolt. The sliding plate is slidably arranged at the bottom of the storage box, one end of the elastic member is fixed on the sliding plate, and the mounting plate is fixed at the end of the elastic member away from the sliding plate. The mounting plate is detachably hingedly installed on the vacuum cleaner vehicle, the adjustment plate is fixed on the storage box, and the adjusting bolt is threadedly connected to the end of the adjustment plate away from the storage box.
[0017] In summary, this application includes at least one of the following beneficial technical effects:
[0018] 1. The exhaust fan extracts the gas in the storage box through the dust exhaust pipe, creating a negative pressure in the storage box. The negative pressure sucks the garbage and dust at the dust suction pipe opening into the storage box. After entering the storage box, the garbage and dust are filtered through the filter, so that the garbage remains above the filter and the dust falls below the filter and is discharged through the dust exhaust pipe, thereby reducing the probability of dust flying when the dust discharge port is opened later to dump garbage.
[0019] 2. The inclination of the filter screen guides the garbage to the discharge port, thus facilitating the dumping and discharge of garbage. The inclination of the filter screen guides the garbage to the discharge port, thus facilitating the dumping and discharge of garbage.
[0020] 3. When garbage falls onto the net, the net slides due to the compression of the elastic parts, and then resets due to the elastic force of the elastic parts. The elastic parts can reduce the impact of large garbage falling, reducing the probability of damage to the net. At the same time, the sliding vibration of the net can reduce the probability of garbage blocking the mesh holes. When the exhaust fan is pumping air, the wind force can also drive the net to slide and vibrate, further reducing the probability of the net being blocked.
[0021] 4. The elastic force of the elastic part drives the vibrating part to slide and vibrate on the mounting part, thereby shaking off the dust blocked on the filter bag and discharging it into the dust collection box through the dust discharge port, facilitating subsequent centralized dust treatment. After being shaken off, the dust can enter the dust collection box through the gap between the side wall of the dust collection box and the baffle plate. The baffle plate can reduce the probability of the dust in the dust collection box being sucked out of the dust collection box by the exhaust fan.
[0022] 5. The fan rotates while driving the driving gear, which drives the linkage gear to drive the linkage shaft to rotate, thereby driving the eccentric wheel to rotate. The eccentric wheel intermittently hits the vibrating part, driving the vibrating part to slide, thereby driving the filter bag to vibrate, shaking off the dust on the filter bag, reducing the probability of dust adhering to the filter bag and affecting the filtering effect;
[0023] 6. By selecting different gear ratios, the fan speed and the eccentric wheel speed ratio can be adjusted to control the vibration frequency of the vibration part;
[0024] 7. The storage box can be disassembled and assembled on the vacuum truck through the articulated platform and the disassembly and assembly mechanism. At the same time, the articulated platform cooperates with the disassembly and assembly mechanism to achieve the effect of auxiliary unloading. The disassembly and assembly mechanism itself also has a vibration reduction effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present application.
[0026] Figure 2 It is a cross-sectional view of the overall structure of the embodiment of the present application.
[0027] Figure 3 yes Figure 2Magnified view of part A in the middle.
[0028] Figure 4 It is a structural diagram of the dust exhaust duct in an embodiment of the present application.
[0029] Figure 5 yes Figure 4 Magnified view of part B in the middle.
[0030] Figure 6 yes Figure 1 Magnified view of middle C.
[0031] In the figure, 1, storage box; 2, dust collection duct; 3, exhaust fan; 4, dust discharge port; 5, baffle; 6, filter screen; 61, mounting frame; 62, elastic member; 63, mesh body; 7, dust discharge duct; 71, fixed pipe; 72, connecting pipe; 73, disassembly and assembly pipe; 8, linkage rod; 9, filter mechanism; 91, mounting ring; 911, mounting part; 912, elastic part; 913, vibration part; 92, filter bag; 10, linkage mechanism; 1 01. Driving gear; 102. Linking gear; 103. Linking shaft; 104. Eccentric wheel; 11. Speed regulating gear; 12. Dust collecting box; 13. Blocking plate; 14. Synchronous shaft; 15. Cover body; 16. Articulated table; 17. Disassembly and assembly mechanism; 171. Sliding plate; 172. Elastic part; 173. Mounting plate; 174. Adjustment plate; 175. Adjustment bolt; 18. Driving gear; 19. Gear bar; 20. Adjustment motor. DETAILED DESCRIPTION
[0032] The following is combined with Figure 1-6 The present application is further described with reference to the following specific examples:
[0033] First of all, it should be noted that in the description of this application, if the terms "center", "up", "down", "left", "right", "vertical", "horizontal", "inside", "outside" and other directional words appear, the orientation or position relationship indicated is based on the orientation or position relationship shown in the accompanying drawings, which is only for the convenience of description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of this application; in addition, if the terms "first", "second", "third" and other numerical quantifiers appear, they are only used for descriptive purposes and cannot be understood as indicating or implying relative importance. In addition, in this application, unless otherwise clearly specified and limited, if the terms "installed", "connected", and "connected" appear, they should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, an interference fit, a transition fit and other limited connection, or an integral connection; it can be directly connected or indirectly connected through an intermediate medium; therefore, for ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to the specific circumstances.
[0034] The present application discloses a dust-free unloading device for a sweeping dust collection vehicle. Figure 1 and Figure 2 The dust collecting duct 2 is connected with the dust collecting duct 2 and the dust collecting duct 2 is connected with the dust collecting duct 2. The dust collecting duct 2 is connected with the dust collecting duct 1 and the dust collecting duct 2. The dust collecting duct 2 is connected with the dust collecting duct 1 and the dust collecting duct 2. The dust collecting duct 2 is connected with the dust collecting duct 1 and the dust collecting duct 2 is connected with the dust collecting duct 1. The dust collecting duct 2 is connected with the dust collecting duct 1 and the dust collecting duct 2 is connected with the dust collecting duct 1. The dust collecting duct 2 is connected with the dust collecting duct 1 and the dust collecting duct 2 is connected with the dust collecting duct 1. The dust collecting duct 2 is connected with the dust collecting duct 1 and the dust collecting duct 2 is connected with the dust collecting duct 1. The dust collecting duct 2 is connected with the dust collecting duct 1. The dust collecting filter 6 is the first filter screen 6 of the embodiment of the present invention, and the dust collecting filter 6 is the first filter screen 6 of the embodiment of the present invention.
[0035] Reference Figure 1 and Figure 2 The filter screen 6 is hinged at one end away from the discharge port 4 and is arranged in the storage box 1. The filter screen 6 is tilted toward the discharge port 4 by rotation. The garbage is guided to the discharge port 4 by the tilt of the filter screen 6, thereby facilitating the dumping and discharge of garbage. A linkage rod 8 is provided between the baffle 5 and the filter screen 6. One end of the linkage rod 8 is fixedly connected to the baffle 5 and the other end is slidingly hinged to the filter screen 6. The setting of the linkage rod 8 can tilt the filter screen 6 toward the discharge port 4 while opening the discharge port 4 to assist in the dumping of garbage. At the same time, it can reduce the probability of garbage accumulating at the discharge port 4 when the discharge port 4 is closed.
[0036] Reference Figure 1 、 Figure 2 and Figure 3The filter screen 6 includes a mounting frame 61, an elastic member 62 and a mesh body 63. The mounting frame 61 is hingedly arranged in the storage box 1. The mounting frame 61 is a rectangular frame that contacts the circumference of the storage box 1. The mounting frame 61 has rounded corners at both ends in the length direction to facilitate the rotation of the mounting frame 61 in the storage box 1. The length direction of the mounting frame is away from the impurity discharge port 4 and is hinged in the storage box 1 by installing the rotating shaft end. There are several elastic members 62 respectively arranged in the circumference of the mounting frame 61. In this embodiment, the elastic members 62 are springs, which are evenly distributed in the circumference of the mounting frame 61. The mesh body 63 is mounted on the mounting frame through the elastic member 62. 61. The mesh holes on the mesh body 63 in this embodiment are small for the passage of dust. The mesh body 63 slides toward or away from the mounting frame 61. When garbage falls onto the mesh body 63, the mesh body 63 accepts the sliding of the compression elastic member 62, and then resets by the elastic force of the elastic member 62. The elastic member 62 can alleviate the impact force of large garbage falling, and reduce the probability of damage to the mesh body 63. At the same time, the sliding vibration of the mesh body 63 can reduce the probability of garbage blocking the mesh holes on the mesh body 63; when the exhaust fan 3 is exhausting air, the wind force can also drive the mesh body 63 to slide and vibrate, thereby further reducing the probability of the mesh body 63 being blocked.
[0037] Reference Figure 1 、 Figure 3 and Figure 4The dust exhaust duct 7 includes a fixed pipe 71, a connecting pipe 72 and a disassembly pipe 73. The fixed pipe 71 is fixed on the storage box 1 and is connected to the storage box 1. The connecting pipe 72 is detachably arranged on the fixed pipe 71. The disassembly pipe 73 is detachably arranged on the connecting pipe 72. The fixed pipe 71 is a flexible hose that can be bent and deformed. The fixed pipe 71, the connecting pipe 72 and the disassembly pipe 73 are all connected by flanges, and the joints are all sealed. A filter mechanism 9 is provided in the connecting pipe 72, and the filter mechanism 9 includes The mounting ring 91 and the filter bag 92 are detachably mounted in the dust exhaust pipe by bolts, and the filter bag 92 is mounted on the mounting ring 91. The filter bag 92 covers the inside of the dust exhaust pipe 7. A dust exhaust port is provided at the bottom of the connecting pipe 72. The dust exhaust port is located directly below the filter bag 92. A dust collecting box 12 is detachably mounted at the dust exhaust port of the connecting pipe 72. The mounting ring 91 includes a mounting portion 911, an elastic portion 912 and a vibrating portion 913. The mounting portion 911 is detachably mounted in the dust exhaust pipe by bolts. 7, the elastic part 912 is installed on the mounting part 911. In this embodiment, the elastic part 912 is a spring, and the vibration part 913 is installed on the elastic part 912. The vibration part 913 slides toward or away from the mounting part 911. The filter bag 92 is installed on the vibration part 913. The elastic force of the elastic part 912 drives the vibration part 913 to slide and vibrate on the mounting part 911, thereby shaking off the dust blocked on the filter bag 92 and discharging it into the dust collecting box 12 from the dust outlet, which is convenient for dust removal. Continued centralized processing; a baffle plate 13 is provided at the dust box 12 toward the dust exhaust port, the baffle plate 13 is fixed to the end of the dust box 12 away from the disassembly tube 73 and inclined toward the bottom of the dust box 12, and the baffle plate 13 is provided with a gap between the end facing the disassembly tube 73 and the side wall of the dust box 12. After the dust is shaken off, it can enter the dust box 12 from the gap between the side wall of the dust box 12 and the baffle plate 13. The baffle plate 13 can reduce the probability of the dust in the dust box 12 being sucked out of the dust box 12 by the exhaust fan 3.
[0038] Reference Figure 1 、 Figure 3 and Figure 4A linkage mechanism 10 is provided between the exhaust fan 3 and the filter mechanism 9. The linkage mechanism 10 includes a driving gear 101, a linkage gear 102, a linkage shaft 103 and an eccentric wheel 104. The driving gear 101 is mounted on the rotating shaft of the exhaust fan 3 motor. The linkage gear 102 is rotatably arranged on the dust exhaust duct 7. The linkage gear 102 is connected to the driving gear 101. The linkage shaft 103 is fixed on the axis of the linkage gear 102. The eccentric wheel 104 is mounted on the linkage shaft 103 away from the linkage gear. At one end of the wheel 102, the eccentric wheel 104 abuts against the vibrating part 913. When the exhaust fan 3 rotates, the driving gear 101 is driven to rotate. The driving gear 101 drives the linkage shaft 103 to rotate by driving the linkage gear 102, thereby driving the eccentric wheel 104 to rotate. The eccentric wheel 104 rotates and intermittently hits the vibrating part 913, driving the vibrating part 913 to slide, thereby driving the filter bag 92 to vibrate, shaking off the dust on the filter bag 92, and reducing the probability of dust adhering to the filter bag 92 and affecting the filtering effect.
[0039] Reference Figure 1 、 Figure 3 and Figure 4 A speed regulating gear 11 is provided between the driving gear 101 and the linkage gear 102. In this embodiment, the speed regulating gear 11 is two gears coaxially arranged through the synchronization shaft 14. The number of teeth of the two gears is different. The two gears are respectively connected to the driving gear 101 and the linkage gear 102. The driving gear 101 and the linkage gear 102 are meshed with each other through the speed regulating gear 11. The rotation speed of the exhaust fan 3 is relatively fast, so that the eccentric wheel 104 hits the vibration part 913 at the rotation frequency of the exhaust fan 3. If the impact frequency is too fast, it is easy to cause damage to the mounting ring 91. By selecting the size of the different gear ratios to adjust the fan speed and the eccentric wheel 10 4, thereby controlling the vibration frequency of the vibration part 913, and reducing the impact frequency of the eccentric wheel 104, reducing the probability of damage to the mounting ring 91 due to excessively high impact frequency. In this embodiment, the driving gear 101, the linkage gear 102 and the gears at both ends of the synchronous shaft 14 are bevel gears, thereby realizing the conversion in the power direction. A cover 15 is provided between the exhaust fan 3 and the connecting pipe 72. The cover 15 is provided outside the driving gear 101, the linkage gear 102 and the speed regulating gear 11 to protect the gear structure. The synchronous shaft 14 is rotatably provided on the cover 15, and the cover 15 provides an installation space for the synchronous shaft 14.
[0040] Reference Figure 1 、 Figure 2 and Figure 6A hinged platform 16 is fixedly provided at one end of the bottom of the storage box 1 near the debris discharge port 4. The hinged platform 16 is used to hinge the storage box 1 on the vacuum cleaner. A disassembly mechanism 17 is provided at one end of the bottom of the storage box 1 away from the debris discharge port 4. The disassembly mechanism 17 can be detachably installed on the vacuum cleaner. The disassembly mechanism 17 includes a sliding plate 171 slidingly arranged at the bottom of the storage box 1, an elastic member 172 fixed at one end on the sliding plate 171, a mounting plate 173 fixed at one end of the elastic member 172 away from the sliding plate 171, and an adjustment plate 174 fixed on the storage box 1. The adjusting bolt 175 is threadedly connected to the adjusting plate 174 at one end away from the receiving box 1, and the mounting plate 173 is detachably hinged and mounted on the dust collection vehicle. The adjusting plate 174 is an L-shaped plate. When the receiving box 1 is mounted on the dust collection vehicle, the adjusting plate 174 is arranged at one end away from the receiving box 1 at the bottom of the dust collection vehicle, and the adjusting bolt 175 abuts against the bottom of the dust collection vehicle. The tilt angle of the receiving box 1 on the dust collection vehicle is adjusted by rotating the adjusting bolt 175. The receiving box 1 is mounted on the dust collection vehicle through the hinged platform 16 and the disassembly mechanism 17. When the receiving box 1 is in a horizontal state, the adjusting bolt 175 is adjusted. The joint bolt 175 is rotated until the elastic member 172 is in a semi-compressed state. In this state, the elastic member 172 has space to continue to compress. At this time, when the vacuum cleaner is driving on a steep road, the elastic member 172 can reduce the vibration of the storage box 1. Loosening the adjustment can tilt the storage box 1 toward the debris discharge port 4 on the vacuum cleaner through the elastic force of the elastic member 172, thereby assisting the storage box 1 in dumping the debris. The disassembly and assembly of the storage box 1 on the vacuum cleaner is realized by the articulated platform 16 and the disassembly and assembly mechanism 17. At the same time, the articulated platform 16 cooperates with the disassembly and assembly mechanism 17 to realize auxiliary unloading. In addition, the disassembly and assembly mechanism 17 itself also has a vibration reduction effect. In order to facilitate the rotation of the adjusting bolt 175, a rotating handle or a driving gear 18 can be installed on the adjusting bolt 175. In this embodiment, the driving gear 18 is installed on the adjusting bolt 175, and the adjusting motor 20 and the long gear bar 19 are installed on the adjusting plate 174. The gear bar 19 is engaged with the driving gear 18 to realize the electric drive of the adjusting bolt 175, thereby realizing electric control of the adjusting bolt 175, without manual drive, and convenient and automatic adjustment of the inclination angle of the storage box 1.
[0041] The implementation principle of the embodiment of the present application is as follows: the storage box 1 is installed on the dust collection vehicle, and a connecting pipe 72 is connected to the dust collection pipe 2 to extend the dust collection port of the dust collection pipe 2 to the sweeping mechanism of the dust collection vehicle. When the dust collection vehicle is working, the exhaust fan 3 is turned on, and the exhaust fan 3 extracts the gas in the storage box 1 through the dust discharge pipe 7, so that the storage box 1 forms a negative pressure, and the garbage and dust at the mouth of the dust collection pipe 2 are sucked into the storage box 1 through the negative pressure. After the garbage and dust enter the storage box 1, they are filtered through the filter 6 so that the garbage remains above the filter 6, and the dust falls below the filter 6 and is discharged through the dust discharge pipe 7. The garbage is left in the storage box 1 and is subsequently discharged by rotating the baffle 5 to open the impurity discharge port 4; the dust enters the dust discharge pipe 7, is blocked by the filter bag 92, and falls into the dust collection box 12, and the dust is subsequently uniformly processed by disassembling the dust collection box 12.
[0042] It should be noted that the above embodiments are only used to illustrate the present application and are not intended to limit the technical solutions described in the present application. Although this specification has described the present application in detail with reference to the above embodiments, ordinary technicians in this field should understand that technicians in the relevant technical field can still modify or replace the present application with equivalents, and all technical solutions and improvements that do not depart from the spirit and scope of the present application should be included in the scope of the claims of the present application.
Claims
1. A dust-free unloading device for a sweeping dust collection vehicle, comprising a storage box (1), a dust collection pipe (2) connected to the storage box (1), an exhaust fan (3) installed on the storage box (1), a debris discharge port (4) provided on the storage box (1), a baffle (5) hingedly provided on the debris discharge port (4), and the baffle (5) opening or closing the debris discharge port (4) by rotating, characterized in that: A filter (6) is provided in the storage box (1), the filter (6) separates the storage box (1), a dust exhaust pipe (7) is connected to and communicated with the storage box (1), the filter (6) separates the dust exhaust pipe (7) and the dust suction pipe (2), and the exhaust fan (3) is installed on the dust exhaust pipe (7); the impurity discharge port (4) is opened at one end of the storage box (1) in the longitudinal direction, the filter (6) is hingedly provided at one end away from the impurity discharge port (4) in the storage box (1), and the filter (6) is tilted toward the impurity discharge port (4) by rotation; a linkage rod (8) is provided between the baffle (5) and the filter (6), one end of the linkage rod (8) is fixedly connected to the baffle (5) and the other end is slidingly hinged to the filter (6).
2. The dust-free unloading device of a sweeping dust collection vehicle according to claim 1, characterized in that: The filter screen (6) comprises a mounting frame (61), an elastic member (62) and a mesh body (63); the mounting frame (61) is hingedly arranged in the storage box (1); the elastic member (62) has a plurality of circumferentially arranged portions of the mounting frame (61); the mesh body (63) is mounted on the mounting frame (61) via the elastic member (62); and the mesh body (63) slides toward or away from the mounting frame (61).
3. The dust-free unloading device of a sweeping dust collection vehicle according to claim 1, characterized in that: A filter mechanism (9) is provided in the dust exhaust pipe (7), the filter mechanism (9) comprising a mounting ring (91) and a filter bag (92), the mounting ring (91) being mounted in the dust exhaust pipe, the filter bag (92) being mounted on the mounting ring (91), and the filter bag (92) covering the interior of the dust exhaust pipe (7).
4. The dust-free unloading device of a sweeping dust collection vehicle according to claim 3, characterized in that: The mounting ring (91) comprises a mounting portion (911), an elastic portion (912), and a vibrating portion (913); the mounting portion (911) is mounted in the dust exhaust duct (7); the elastic portion (912) is mounted on the mounting portion (911); the vibrating portion (913) is mounted on the elastic portion (912); the vibrating portion (913) slides toward or away from the mounting portion (911); and the filter bag (92) is mounted on the vibrating portion (913).
5. The dust-free unloading device of a sweeping dust collection vehicle according to claim 4, characterized in that: The dust exhaust duct (7) comprises a fixed pipe (71), a connecting pipe (72) and a disassembly pipe (73); the fixed pipe (71) is fixedly arranged on the storage box (1); the connecting pipe (72) is detachably arranged on the fixed pipe (71); the disassembly pipe (73) is detachably arranged on the connecting pipe (72); and the filtering mechanism (9) is installed on the connecting pipe (72).
6. The dust-free unloading device of a sweeping dust collection vehicle according to claim 5, characterized in that: A linkage mechanism (10) is provided between the exhaust fan (3) and the filter mechanism (9), the linkage mechanism (10) comprising a driving gear (101), a linkage gear (102), a linkage shaft (103) and an eccentric wheel (104), the driving gear (101) being mounted on the rotating shaft of the exhaust fan (3) motor, the linkage gear (102) being rotatably mounted on the dust exhaust duct (7), the linkage gear (102) and the driving gear (101) being gear-connected, the linkage shaft (103) being fixed on the axis of the linkage gear (102), the eccentric wheel (104) being mounted on one end of the linkage shaft (103) away from the linkage gear (102), and the eccentric wheel (104) being in contact with the vibrating portion (913).
7. The dust-free unloading device of a sweeping dust collection vehicle according to claim 6, characterized in that: A speed regulating gear (11) is provided between the driving gear (101) and the linkage gear (102), and the driving gear (101) and the linkage gear (102) are gear-connected via the speed regulating gear (11).
8. The dust-free unloading device of a sweeping dust collection vehicle according to claim 7, characterized in that: A hinged platform (16) is provided at one end of the bottom of the storage box (1) near the debris discharge port (4), and the hinged platform (16) is used for hinged installation on the dust collection vehicle. A disassembly mechanism (17) is provided at one end of the bottom of the storage box (1) away from the debris discharge port (4), and the disassembly mechanism (17) can be detachably installed on the dust collection vehicle. The disassembly mechanism (17) includes a sliding plate (171), an elastic member (172), a mounting plate (173), an adjustment plate (174), and an adjustment bolt (175). ), the sliding plate (171) is slidingly arranged at the bottom of the storage box (1), one end of the elastic member (172) is fixed on the sliding plate (171), the mounting plate (173) is fixed on the end of the elastic member (172) away from the sliding plate (171), the mounting plate (173) is detachably hinged and mounted on the vacuum cleaner vehicle, the adjusting plate (174) is fixed on the storage box (1), and the adjusting bolt (175) is threadedly connected to the end of the adjusting plate (174) away from the storage box (1).
Citation Information
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