An environmentally friendly crushing trolley integrated equipment
By designing the main dust reduction mechanism and direct injection assembly in the integrated equipment of the crushing trolley, adjusting the angle of the spray pipe with a rotating frame and hydraulic rod, and combining the front dust reduction assembly, the problem of dust diffusion during crushing construction is solved, and a comprehensive dust reduction effect is achieved.
Patent Information
- Application Number
- CN202510659990.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-22
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2045-05-22
AI Technical Summary
The existing integrated crushing trolley equipment cannot adjust the dust reduction range according to the obstruction of the crushing construction location, resulting in the inability to effectively control the diffusion of dust.
An environmentally friendly crushing trolley integrated equipment is designed, using the main dust reduction mechanism and direct injection assembly. Through the cooperation of the rotating frame and the hydraulic rod, the angle deflection of the main spray pipe and direct injection assembly is realized, adapting to the diffusion of dust at different construction locations, and combining with the front dust reduction assembly to spray downward, achieving all-round dust reduction in the crushing area.
It realizes dynamic adjustment of dust reduction range according to the obstacles in the crushed area, effectively reducing dust diffusion, and improving the environmental protection of crushing construction.
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Figure CN120174936B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of environmentally friendly trolleys, and specifically relates to an environmentally friendly crushing trolley integrated device. Background Art
[0002] Integrated crushing trolley systems are commonly used in construction, rock face construction, and mining operations. Existing integrated crushing trolley systems are operated by driving the trolley to a designated location for demolition or rock crushing. However, this crushing process often results in the spread of dust. Therefore, integrated crushing trolley systems require dust suppression to meet environmentally friendly construction requirements.
[0003] After searching, Chinese patent publication number CN114482166A discloses an environmentally friendly integrated crushing trolley device. When using the environmentally friendly integrated crushing trolley device to crush and demolish buildings, a dust removal mechanism sprays water mist to remove dust in real time, reducing pollution. At the same time, a buffer platform weakens the vibration during the operation of the trolley, thereby protecting the health of the driver. The overall structure is simple, effectively suppresses the spread of dust, and is highly practical.
[0004] When in use, the above equipment uses a nozzle to crush and reduce dust in the crushing area, but it cannot adjust the dust reduction range according to the obstacles existing in the crushing construction location, and can only perform small-scale spray dust removal on the crushing area. Summary of the Invention
[0005] The purpose of the present invention is to provide an environmentally friendly crushing trolley integrated device to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: an environmentally friendly integrated crushing trolley device, comprising a trolley body and a water tank, wherein a water tank and a hydraulic arm are mounted above the trolley body, a mounting seat is movably connected to the top of the hydraulic arm, a No. 1 hydraulic rod is further connected between the mounting seat and the hydraulic arm, a breaker hammer is mounted on one side of the mounting seat, a water pump is mounted on the side of the water tank, and an output end of the water pump is connected to a water supply pipe;
[0007] A main dust reduction mechanism is provided on the outside of the mounting seat, and the main dust reduction mechanism includes a rotating frame movably connected to the mounting seat, an arc plate is fixed on one side of the rotating frame, and an arc guide rail is fixed on one side of the arc plate, the arc guide rail is welded to the arc tube of the main spray pipe, and the main spray pipe is connected by a horizontal pipe and an arc tube to form a square structure, the horizontal pipe of the main spray pipe and the outer wall of the arc pipe are connected with a main nozzle, and the horizontal pipe at the lower part of the main spray pipe is connected with a water supply pipe, and direct injection components for lateral dust reduction are provided on both sides of the breaker hammer, and the direct injection component includes a horizontal pipe fixed to the side of the breaker hammer, and a side spray pipe is hinged at one end of the horizontal pipe, and a No. 1 pressure-resistant hose is connected between the horizontal pipe and one of the horizontal pipes of the main spray pipe, and a front dust reduction component for downward spraying dust reduction is provided above the breaker hammer.
[0008] Preferably, a counterweight protrusion is fixed on a side of the rotating frame away from the arc-shaped plate.
[0009] Preferably, brackets are fixed to both side edges of the mounting seat, and a No. 2 hydraulic rod is connected between the brackets and the counterweight protrusion.
[0010] Preferably, an arc-shaped cavity is provided on the surface of the arc-shaped guide rail, and one end of the transverse tube passes through the arc-shaped cavity on the surface of the arc-shaped guide rail.
[0011] Preferably, an I-shaped moving wheel is sleeved on the outer side of the transverse tube, and an adjustment strip is welded on the outer arc surface of the arc-shaped plate of the rotating frame.
[0012] Preferably, the adjustment bar is a spiral structure, and the I-shaped moving wheel is slidably overlapped on one side of the adjustment bar.
[0013] Preferably, one side of the I-shaped moving wheel is rotatably connected to a push-pull arm, and one side of the side spray pipe is fixed with a shift rod movably connected to the push-pull arm.
[0014] Preferably, a support rod is fixed between the two arc-shaped guide rails located above the breaker hammer, an extrusion arm is sleeved on the outer side of the support rod, and an end of the extrusion arm away from the support rod is rotatably connected to a slide seat.
[0015] Preferably, the slide is slidably connected to the upper surface of the breaker hammer, the top of the slide is rotatably connected to a swing arm rail, and symmetrically distributed limit pins are also fixed to the upper surface of the breaker hammer.
[0016] Preferably, the limit pin is slidably connected to the middle part of the swing arm rail, an arc-shaped conduit is welded on one side of the swing arm rail, an auxiliary nozzle is installed downward at one end of the arc-shaped conduit, and a No. 2 pressure-resistant hose is connected upward at the other end of the arc-shaped conduit, and the No. 2 pressure-resistant hose is connected to one of the horizontal pipes of the main sprinkler pipe.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] When the main spray pipe of the main dust reduction mechanism of the present invention is adjusted at the construction position along with the rock wall crushing, it can adapt to the different diffusion positions of the dust through range spraying, and utilize the direct spray component to perform adaptive adjustment along with the angular deflection of the main spray pipe, so as to facilitate changing the direct spray angle according to the obstruction conditions at the top or bottom of the crushing area, ensuring that the area of crushing construction can be wetted in advance. At the same time, the angular deflection of the main spray pipe can drive the front dust reduction component to adjust the position of the downward direct spray water mist, so that the present invention can adaptively adjust the dust reduction spray range according to the needs of crushing construction. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention;
[0020] Figure 2 This is a schematic diagram of the three-dimensional structure of the middle part of the main spray pipe near the breaker hammer of the present invention;
[0021] Figure 3 Schematic diagram of the three-dimensional structure of the main spray pipe of the present invention;
[0022] Figure 4 It is a schematic diagram of the three-dimensional structure of the linkage between the rotating frame and the direct injection assembly of the present invention;
[0023] Figure 5 This is a schematic diagram of the first-perspective three-dimensional structure of the main dust reduction mechanism, direct injection assembly and front dust reduction assembly linked together in the present invention;
[0024] Figure 6 A schematic diagram of the second perspective three-dimensional structure of the main dust reduction mechanism, direct injection assembly and front dust reduction assembly of the present invention;
[0025] Figure 7 This is a schematic diagram of the third-perspective three-dimensional structure of the main dust reduction mechanism, direct injection assembly and front dust reduction assembly linked together in the present invention;
[0026] Figure 8 It is a schematic diagram of the third perspective of the linkage of the main dust reduction mechanism, direct injection assembly and front dust reduction assembly of the present invention.
[0027] Figure: 1. Trolley body; 2. Water tank; 201. Water pump; 202. Water supply pipe; 3. Hydraulic arm; 301. Hydraulic rod No. 1; 302. Mounting seat; 4. Breaker; 5. Main dust suppression mechanism; 501. Rotating frame; 502. Arc guide rail; 503. Main spray pipe; 504. Main nozzle; 505. Counterweight bump; 506. Hydraulic rod No. 2; 507. Bracket; 6. Direct injection assembly ; 601, horizontal pipe; 602, side spray pipe; 603, I-shaped moving wheel; 604, adjustment bar; 605, push-pull arm; 606, lever; 607, No. 1 pressure-resistant hose; 7, front dust reduction assembly; 701, support rod; 702, extrusion arm; 703, slide seat; 704, swing arm rail; 705, limit pin; 706, arc-shaped guide tube; 707, auxiliary nozzle; 708, No. 2 pressure-resistant hose. DETAILED DESCRIPTION
[0028] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0029] See also Figures 1-8 The present invention provides a technical solution: an environmentally friendly crushing trolley integrated equipment, comprising a trolley body 1 and a water tank 2. The water tank 2 and a hydraulic arm 3 are installed above the trolley body 1. The top of the hydraulic arm 3 is movably connected to a mounting seat 302. A No. 1 hydraulic rod 301 is further connected between the mounting seat 302 and the hydraulic arm 3. A breaker hammer 4 is installed on one side of the mounting seat 302. When the No. 1 hydraulic rod 301 is started to drive the mounting seat 302 to adjust the angle, the angle of the breaker hammer 4 can be changed to adapt to different crushing construction environments; a water pump 201 is installed on the side of the water tank 2, and the output end of the water pump 201 is connected to a water supply pipe 202;
[0030] The main dust reduction mechanism 5 is provided on the outside of the mounting seat 302. The main dust reduction mechanism 5 includes a rotating frame 501 movably connected to the mounting seat 302. An arc plate is fixed on one side of the rotating frame 501, and an arc guide rail 502 is fixed on one side of the arc plate. The arc guide rail 502 is welded to the arc tube of the main spray pipe 503. The main spray pipe 503 is connected to the horizontal pipe and the arc tube to form a square frame structure. The horizontal pipe of the main spray pipe 503 and the outer wall of the arc pipe are both connected to the main nozzle 5. 04. The horizontal pipe at the bottom of the main spray pipe 503 is connected to the water supply pipe 202. Direct spray components 6 for lateral dust reduction are set on both sides of the breaker 4. The direct spray component 6 includes a horizontal pipe 601 fixed on the side of the breaker 4. One end of the horizontal pipe 601 is hinged with a side spray pipe 602. The hinge between the horizontal pipe 601 and the side spray pipe 602 is connected through a hose. A No. 1 pressure-resistant hose 607 is connected between the horizontal pipe 601 and one of the horizontal pipes of the main spray pipe 503.
[0031] During specific implementation, the water inside the water tank 2 is extracted by starting the water pump 201 on one side of the water tank 2. The water is then transported into the lower horizontal pipe of the main spray pipe 503 through the water supply pipe 202. At this time, the water is evenly circulated through the main spray pipe 503 of the square frame structure, and a frame-shaped spray is generated in front of the breaker 4 through the main nozzle 504 on the main spray pipe 503. When the front end of the breaker 4 breaks the rock wall, the water mist sprayed through the main spray pipe 503 can diffusely cover the area of breaking construction;
[0032] While flowing, the water inside the main spray pipe 503 will enter the cross pipe 601 through the No. 1 pressure-resistant hose 607, and the cross pipe 601 uses the hose to guide the water flow into the side spray pipe 602, and then it is sprayed out in a straight line through the side spray pipe 602 near the straight nozzle in front of the crushing operation of the breaker 4. The direct spray water column can impact the rock wall and wet the rock on the rock wall surface in advance, which can reduce the amount of dust generated when the rock wall surface is broken and the rock vibrates. At the same time, the direct spray water flow can flush the horizontal position of the rock broken by the breaker 4, so that the water flow flows downward along the horizontal line of the rock wetting position, ensuring that the direct spray water flow can cover the area where the rock is broken.
[0033] See also Figure 2 、 Figure 4-Figure 8 A counterweight protrusion 505 is fixed on the side of the rotating frame 501 away from the curved plate. By setting the counterweight protrusion 505, the weight of the rotating frame 501 and the main spray pipe 503 can be balanced, and the pressure of the extension and contraction of the No. 2 hydraulic rod 506 can be reduced; brackets 507 are fixed on the two side edges of the mounting seat 302, and the No. 2 hydraulic rod 506 is connected between the bracket 507 and the counterweight protrusion 505.
[0034] In specific implementation, according to Figure 2It can be seen that when it is necessary to crush a rock wall without upper and lower obstacles, the second hydraulic rod 506 is started to drive the middle position of the main spray pipe 503 on the rotating frame 501 to rotate close to the side of the breaker 4. The middle part of the adjustment bar 604 on the arc plate will dock with the I-shaped moving wheel 603. At this time, the horizontal pipe 601 and the side spray pipe 602 are in a straight line. Therefore, the water flow directly sprayed by the side spray pipe 602 will directly hit the front position of the rock wall to be crushed. At the same time, the main spray pipe 503 will aim at the upper and lower sides of the crushing area to spray dust.
[0035] according to Figure 5 and Figure 6 The dust generated by the crushing will be blocked by the upper obstacle or the top surface of the rock wall, causing the dust to spread downward. At the same time, the crushed rock falls a long distance, and the falling crushed rock will cause the dust to spread laterally along the rock wall. At this time, the output end of the second hydraulic rod 506 is retracted to drive the counterweight protrusion 505 to deflect upward, and the counterweight protrusion 505 will drive the main spray pipe 503 on one side of the rotating frame 501 to rotate downward. The downwardly deflected main spray pipe 503 will spray dust at an inclined downward angle through the side and lower main nozzles 504. The dust spreading downward and toward the crushing trolley can be blocked by the spray tilted downward. At the same time, the main nozzle 504 on the upper part of the main spray pipe 503 will spray a small range of dust directly on the crushing area, ensuring that the small range of spray can cover the center of the crushing area, so that dust can be effectively reduced when the rock wall is crushed near the upper obstacle or the top surface of the rock wall.
[0036] according to Figure 7 and Figure 8 The main nozzle 504 at the lower part of the main spray pipe 503 will spray a small range of dust directly on the crushing area to prevent dust from spreading toward the direction of the crushing trolley, ensuring that the spray from the main spray pipe 503 can produce a concentrated dust reduction effect on the dust close to the lower obstacle or the bottom of the rock wall.
[0037] See also Figure 2-Figure 8The surface of the arc-shaped guide rail 502 is provided with an arc-shaped cavity, and one end of the horizontal tube 601 passes through the arc-shaped cavity on the surface of the arc-shaped guide rail 502; the outer side of the horizontal tube 601 is provided with an I-shaped moving wheel 603, and an adjustment bar 604 is welded on the outer arc surface of the arc plate of the rotating frame 501; the adjustment bar 604 is a spiral structure, and the I-shaped moving wheel 603 is slidably overlapped on one side of the adjustment bar 604;
[0038] One side of the I-shaped moving wheel 603 is rotatably connected to a push-pull arm 605 , and one side of the side spray pipe 602 is fixed with a shifting rod 606 movably connected to the push-pull arm 605 .
[0039] In specific implementation, according to Figure 5 and Figure 6 It can be seen that when the main spray pipe 503 drives the arc guide rail 502 to deflect downward, the spiral adjustment bar 604 on the arc plate will squeeze the I-shaped moving wheel 603 away from the main spray pipe 503, and the I-shaped moving wheel 603 will squeeze the lever 606 through the push-pull arm 605, so that the lever 606 drives the side spray pipe 602 to deflect horizontally in the direction away from the rock wall. At this time, the side spray pipe 602 will tilt the direct spray water flow to both sides, so that the direct spray water flow is away from the center of the rock wall crushing, ensuring that the direct spray water flow can impact the position farther away from the crushing center, and can wet the rock surface farther away from the crushing center in advance, so as to have an adsorption effect on the laterally diffused dust;
[0040] according to Figure 7 and Figure 8 It can be seen that when the main spray pipe 503 drives the arc guide rail 502 to deflect upward, the spiral adjustment bar 604 on the arc plate will squeeze and push the I-shaped moving wheel 603 to move close to the main spray pipe 503, so that the I-shaped moving wheel 603 pulls the lever 606 through the push-pull arm 605, and then the lever 606 drives the side spray pipe 602 to deflect horizontally in the direction close to the rock wall. At this time, the side spray pipe 602 will spray the direct water flow close to the center of the rock wall crushing, ensuring that the direct water flow can impact the position close to the crushing center, thereby wetting the rock surface close to the crushing center in advance, ensuring that the dust on the crushed rock surface is adsorbed, and at the same time, the rock wall of the crushing center can be wetted, so that the amount of dust generated on the crushed rock surface is less.
[0041] See also Figure 2 、 Figure 5-Figure 8 A front dust reduction assembly 7 for spraying dust downward is provided above the breaker hammer 4. A support rod 701 is fixed between the two arc-shaped guide rails 502 above the breaker hammer 4. An extrusion arm 702 is sleeved on the outer side of the support rod 701. The end of the extrusion arm 702 away from the support rod 701 is rotatably connected to a slide seat 703.
[0042] The slide 703 is slidably connected to the upper surface of the breaker 4. The top of the slide 703 is rotatably connected to the swing arm rail 704. The upper surface of the breaker 4 is also fixed with symmetrically distributed limit pins 705.
[0043] The limit pin 705 is slidably connected to the middle part of the swing arm rail 704. An arc-shaped conduit 706 is welded to one side of the swing arm rail 704. An auxiliary nozzle 707 is installed downward at one end of the arc-shaped conduit 706, and a No. 2 pressure-resistant hose 708 is connected upward at the other end of the arc-shaped conduit 706. The No. 2 pressure-resistant hose 708 is connected to one of the horizontal pipes of the main spray pipe 503.
[0044] In specific implementation, according to Figure 5 and Figure 6 When the crushing area is close to the upper obstacle or the top surface of the rock wall, the dust generated by the crushing will be blocked by the upper obstacle or the top surface of the rock wall, causing the dust to spread downward. At the same time, the crushed rock falls a long distance, and the falling crushed rock will cause the dust to spread laterally along the rock wall. When the main spray pipe 503 drives the arc guide rail 502 to deflect downward, the support rod 701 on the arc guide rail 502 will push the slide 703 to slide toward the front end of the breaker 4 through the squeezing arm 702. At this time, the slide 703 will drive the swing arm rail 704 to slide along the limit pin 705, thereby causing the arc guide pipe 706 to deflect and move toward the side of the breaker 4, causing the auxiliary nozzle 707 at one end of the arc guide pipe 706 to move away from the crushing center. At this time, the water inside the main spray pipe 503 will be introduced into the arc guide pipe 706 through the second pressure-resistant hose 708, and the water mist will be sprayed downward directly through the two distant auxiliary nozzles 707 to cover the dust that has spread laterally close to the rock wall.
[0045] according to Figure 7 and Figure 8 It can be seen that when the crushing area is close to the lower obstacle or the bottom of the rock wall, the dust generated by the crushing will be blocked by the lower obstacle or the bottom of the rock wall, causing the dust to spread upward. At the same time, the crushed rock falls a short distance, and the falling gravel will cause the dust to be more concentrated. When the main spray pipe 503 drives the arc guide rail 502 to deflect upward, the support rod 701 on the arc guide rail 502 will pull the slide 703 to slide toward the tail end of the breaker 4 through the squeezing arm 702. At this time, the slide 703 will drive the swing arm rail 704 to slide along the limit pin 705, thereby causing the arc guide pipe 706 to deflect and move toward the center position of the breaker 4, so that the auxiliary nozzle 707 at one end of the arc guide pipe 706 is close to the crushing center. At this time, the water inside the main spray pipe 503 will be introduced into the arc guide pipe 706 through the No. 2 pressure-resistant hose 708, and the two auxiliary nozzles 707 close to each other will directly spray water mist downward to cover the dust concentrated and diffused close to the rock wall.
[0046] To sum up, the trolley body 1 is moved by driving, and the hydraulic arm 3 is used to drive the breaker 4 to align with the position to be crushed. The water in the water tank 2 is extracted by the water pump 201 and transported into the main spray pipe 503 through the water supply pipe 202. At this time, water is sprayed as water mist through the main nozzle 504 on the main spray pipe 503 to diffusely cover the crushing construction area, and the side spray pipe 602 is used to spray in a straight line near the straight nozzle in front of the crushing operation of the breaker 4, and then the auxiliary nozzle 707 on the arc-shaped guide tube 706 directly sprays water mist downward to cover the dust, thereby ensuring that the crushing trolley integrated equipment has an efficient and environmentally friendly dust reduction effect during crushing construction. The content not described in detail in this description belongs to the existing technology known to professional and technical personnel in this field.
[0047] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. An environmentally friendly crushing trolley integrated device, comprising a trolley body (1) and a water tank (2), wherein a water tank (2) and a hydraulic arm (3) are mounted above the trolley body (1), a mounting seat (302) is movably connected to the top of the hydraulic arm (3), a No. 1 hydraulic rod (301) is further connected between the mounting seat (302) and the hydraulic arm (3), a breaker hammer (4) is mounted on one side of the mounting seat (302), a water pump (201) is mounted on the side of the water tank (2), and an output end of the water pump (201) is connected to a water supply pipe (202); the characteristics are: A main dust reduction mechanism (5) is provided on the outer side of the mounting seat (302), and the main dust reduction mechanism (5) comprises a rotating frame (501) movably connected to the mounting seat (302), an arc-shaped plate is fixed on one side of the rotating frame (501), and an arc-shaped guide rail (502) is fixed on one side of the arc-shaped plate, and the arc-shaped guide rail (502) is welded to the arc-shaped tube of the main spray pipe (503), and the main spray pipe (503) is formed by connecting a horizontal tube and an arc-shaped tube to form a square frame structure, and the outer wall of the horizontal tube and the arc-shaped tube of the main spray pipe (503) are both connected to the main spray head (504). The horizontal pipe at the lower part of the main spray pipe (503) is connected to the water supply pipe (202), and direct spray assemblies (6) for lateral dust reduction are provided on both sides of the breaker (4). The direct spray assembly (6) includes a horizontal pipe (601) fixed to the side of the breaker (4), and one end of the horizontal pipe (601) is hinged with a side spray pipe (602). A No. 1 pressure-resistant hose (607) is connected between the horizontal pipe (601) and one of the horizontal pipes of the main spray pipe (503). A front dust reduction assembly (7) for downward spraying dust reduction is provided above the breaker (4); A support rod (701) is fixed between the two arc-shaped guide rails (502) above the breaker hammer (4); a squeeze arm (702) is sleeved on the outer side of the support rod (701); and one end of the squeeze arm (702) away from the support rod (701) is rotatably connected to a slide seat (703); The slide (703) is slidably connected to the upper surface of the breaker hammer (4); the top of the slide (703) is rotatably connected to a swing arm rail (704); and symmetrically distributed limit pins (705) are also fixed to the upper surface of the breaker hammer (4); The limit pin (705) is slidably connected to the middle of the swing arm rail (704), and an arc-shaped conduit (706) is welded to one side of the swing arm rail (704). An auxiliary nozzle (707) is installed downward at one end of the arc-shaped conduit (706), and a second pressure-resistant hose (708) is connected upward at the other end of the arc-shaped conduit (706). The second pressure-resistant hose (708) is communicated with one of the horizontal pipes of the main spray pipe (503).
2. The environmentally friendly crushing trolley integrated equipment according to claim 1 is characterized by: A counterweight protrusion (505) is fixed on one side of the rotating frame (501) away from the arc-shaped plate.
3. The environmentally friendly crushing trolley integrated equipment according to claim 2, characterized in that: Brackets (507) are fixed to both side edges of the mounting seat (302), and a second hydraulic rod (506) is connected between the brackets (507) and the counterweight protrusion (505).
4. The environmentally friendly crushing trolley integrated equipment according to claim 1, characterized in that: An arc-shaped cavity is provided on the surface of the arc-shaped guide rail (502), and one end of the transverse tube (601) passes through the arc-shaped cavity on the surface of the arc-shaped guide rail (502).
5. The environmentally friendly crushing trolley integrated equipment according to claim 1, characterized in that: An I-shaped moving wheel (603) is sleeved on the outer side of the transverse tube (601), and an adjustment strip (604) is welded on the outer arc surface of the arc plate of the rotating frame (501).
6. The environmentally friendly crushing trolley integrated equipment according to claim 5, characterized in that: The adjustment bar (604) is a spiral structure, and the I-shaped moving wheel (603) is slidably overlapped on one side of the adjustment bar (604).
7. The environmentally friendly crushing trolley integrated equipment according to claim 6, characterized in that: One side of the I-shaped moving wheel (603) is rotatably connected to a push-pull arm (605), and one side of the side spray pipe (602) is fixed with a shifting rod (606) movably connected to the push-pull arm (605).
Citation Information
Patent Citations
Environment-friendly crushing trolley integrated equipment
CN114482166A
Vehicle-mounted construction device for land improvement and ecological restoration
CN114250816A
Dust falling device of breaking and removing equipment
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Dust falling device of hydraulic breaking hammer
CN221118623U