Environment-friendly box body structure of building energy-saving thermal insulation material wall body

The wind is guided through the arc-shaped guide plate and the T-shaped friction plate, combined with the green plant box to absorb gas and prevent accumulation devices to divert the flow, solving the stability and gas treatment problems of the environmentally friendly box in storm weather, and achieving the improvement of safety and comfort.

CN120367436AInactive Publication Date: 2025-07-25SHANGHAI RUITUO MACHINERY TECHNOLOGY CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202510587835.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2025-07-25
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing environmentally friendly box is difficult to evacuate wind in harsh storms, resulting in loss of load-bearing capacity, deformation or deviation of the box, shortening its service life, and increasing housing risks.

Method used

The arc-shaped guide plate, arc-shaped plate and T-shaped friction plate are used to guide the wind and enhance stability through the transmission rod, telescopic plate and vibration plate; the green planting box and round hole pipe absorb harmful gases, the anti-stacking device evacuates the gas circulation, and the anti-infection device purifies the air.

Benefits of technology

Effectively reduce box offset and loss, improve stability, extend service life, reduce harmful gas emissions, and improve living safety and happiness.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120367436A_ABST
    Figure CN120367436A_ABST
Patent Text Reader

Abstract

The invention discloses an environment-friendly box body structure of a building energy-saving thermal insulation material wall body, and relates to the technical field of environment-friendly wall bodies. The device comprises a device body, heat preservation assemblies are arranged on the left side and the right side of the outer wall of the device body, a sound insulation assembly is arranged above the heat preservation assemblies, and the device further comprises anti-damage devices, and the anti-damage devices are arranged on the left side and the right side of the device body and comprise arc-shaped guide plates, arc-shaped pieces and T-shaped friction plates; the arc-shaped piece is fixedly installed between the top of the arc-shaped guide plate and the top edge of the device body, the left side of the T-shaped friction plate is hinged to the arc face of the arc-shaped piece, and the bottom of the T-shaped friction plate makes contact with the top of the device body. The contact area of the device body and the ground is enlarged through the telescopic plates, the overall stability of the device body is improved, the self-bearing capacity loss of the box body is further reduced, and the living safety of residents is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of environmental protection walls, and specifically relates to an environmental protection box structure for a building energy-saving, heat-insulating and sound-insulating material wall. Background Art

[0002] With the continuous development of society, people's awareness of environmental protection has been greatly improved. As an important component device for containing items, there are a wide variety of such devices on the current market, which can basically meet people's usage requirements.

[0003] The patent with the patent announcement number CN211622090U discloses an environmental protection box structure for an environmental protection wall, including a decorative layer, a groove body, a support plate, a first environmental protection box, a connecting column, a cylinder, a handle and a first limiting groove. Horizontally arranged on the outer surface of the decorative layer are a support plate and a first environmental protection box. Both ends of the support plate penetrate into the inside of the groove body and are provided with gears, and the gears are engaged with racks. The bottom of the first environmental protection box is installed on the top of the support plate. Symmetrically installed at the bottom of the support plate are connecting columns, and a handle is installed at the bottom of the connecting columns. A cylinder is fixedly installed on the outer surface of the connecting columns. A first limiting groove is formed on the outer surface of the groove body. When it is necessary to take or place plants in the first environmental protection box, pull the handle. Under the action of the gear and the rack, the first environmental protection box moves up and down. When it moves to a certain position, drive the piston rod of the cylinder to extend, so that the piston rod is stuck into the first limiting groove to realize the limitation of the first environmental protection box, facilitating users to take and place landscape plants and saving the time and energy of users.

[0004] However, this device still has deficiencies: This device can isolate noise and keep warm, but in severe stormy weather, it is difficult to conduct the wind directly facing the box body, increasing the loss of the bearing capacity of the box body itself. If this continues for a long time, it is easy to cause the box body to deform or shift, increasing the living risk of residents, and at the same time, it also shortens the service life of the environmental protection box. Summary of the Invention

[0005] Aiming at the deficiencies of the prior art, the present invention provides an environmental protection box structure for a building energy-saving, heat-insulating and sound-insulating material wall, solving the problems proposed in the above background art that in severe stormy weather, it is difficult to conduct the wind directly facing the box body, increasing the loss of the bearing capacity of the box body itself. If this continues for a long time, it is easy to cause the box body to deform or shift, increasing the living risk of residents, and at the same time, it also shortens the service life of the environmental protection box.

[0006] To achieve the above objectives, the present invention is realized through the following technical solutions: An environment-friendly box structure for a wall of a building energy-saving thermal insulation material, comprising a device main body. Heat insulation components are arranged on the left and right sides of the outer wall of the device main body. The device main body is heat-insulated through the heat insulation components to reduce heat loss, reduce energy consumption and protect resources. A sound insulation component is arranged above the heat insulation component. The sound insulation component provides good sound insulation treatment, reduces noise transmission and strengthens the implementation of the environmental protection project. It also includes an anti-damage device, an anti-pollution device, an anti-accumulation device and an anti-infection device. The anti-damage device is arranged on the left and right sides of the device main body. The anti-pollution device is arranged on the front of the device main body. The anti-accumulation device is arranged inside the anti-pollution device. The anti-infection device is arranged above the anti-pollution device. The anti-damage device includes an arc-shaped guide plate, an arc-shaped piece and a T-shaped friction plate. The right side of the bottom of the arc-shaped guide plate is hinged to the left side of the device main body. The arc-shaped guide plate is used to guide the wind force, reducing the direct wind force blowing on the device main body. The arc-shaped piece is fixedly installed between the top of the arc-shaped guide plate and the top edge of the device main body. When the arc-shaped guide plate approaches the device main body due to the wind force, the arc-shaped piece is extruded and deformed at the same time. The arc-shaped piece pushes the T-shaped friction plate to slide and rub along the top of the device main body. The left side of the T-shaped friction plate is hinged to the arc surface of the arc-shaped piece, and the bottom of the T-shaped friction plate contacts the top of the device main body, reducing the deviation amplitude of the arc-shaped guide plate and preventing the arc-shaped guide plate from bumping against the heat insulation component and causing damage.

[0007] According to the above technical solution, the anti-damage device further includes a transmission rod, a telescopic plate, an L-shaped vibration plate and a vibration ball. The top of the transmission rod is hinged to the outer arc surface of the arc-shaped guide plate. When the arc-shaped guide plate deviates, it drives the transmission rod to move away from the device main body. The transmission rod drives the telescopic end of the telescopic plate to extend synchronously. The right side of the telescopic plate is fixedly installed on the left side of the device main body, and the top of the telescopic end of the telescopic plate is hinged to the bottom of the transmission rod. The telescopic plate expands the contact area between the device main body and the ground and improves the overall stability of the device main body. The back of the L-shaped vibration plate is fixedly installed on the front of the telescopic end of the telescopic plate. When the telescopic end of the telescopic plate extends, it drives the L-shaped vibration plate to move synchronously. The L-shaped vibration plate impacts the arc surface of the vibration ball to generate vibration. The back of the vibration ball is slidably installed on the front of the telescopic plate through a spring, and the arc surface of the vibration ball is located on the movement track of the L-shaped vibration plate. The vibration ball is urged to contract by the repulsive force and then reset through the spring. The L-shaped vibration plate vibrates off the dirt existing at the connection of the telescopic end through the vibration force.

[0008] According to the above technical scheme, the anti-pollution device includes a green plant box, a pumping component and a circular hole tube. The right side of the green plant box is fixedly installed on the left side of the device body, and the green plant box is connected to the device body. The inside of the green plant box is convenient for planting a large number of green plants, providing planting space for people who love greening. The right side of the pumping component is fixedly installed on the left side of the green plant box. The pumping component replaces the turbid gas inside the device body and guides the gas through the circular hole tube. The circular hole tube is fixedly installed inside the green plant box, and discharges to the surroundings of the green plant box through the circular hole. The gas is absorbed by the green plants, thereby reducing carbon dioxide and harmful gas emissions.

[0009] According to the above technical scheme, the anti-pollution device also includes an arc groove column, a round rod, a convex ball and a mesh plate. The left side of the arc groove column passes through and is fixedly installed on the right side of the rotating shaft of the pulling component. The rotating shaft of the pulling component drives the arc groove column to rotate, and the arc groove column drives the round rod to rotate. The right side of the round rod is fixedly installed on the outer wall surface of the arc groove column. The round rod drives the convex ball to rotate. The convex ball rotates and guides the turbid gas through its own arc surface. The inside of the convex ball passes through and is fixedly installed on the outer wall surface of the round rod, which promotes uniform dispersion of the gas when passing through the inside of the circular hole tube, and promotes the green plants to uniformly absorb harmful gases. The inside of the mesh plate passes through and is fixedly installed on the outer wall surface of the round rod. The round rod drives the mesh plate to rotate, and the mesh plate captures the dust carried in the gas to prevent the simultaneous transportation and emission of the dust from causing harm to the green plants.

[0010] According to the above technical scheme, the anti-accumulation device includes a connecting rod, a sliding ring and a scraper. The top of the connecting rod is slidably installed inside the arc groove of the arc groove column. When the arc groove column rotates, the arc groove restricts the connecting rod, causing the connecting rod to slide left and right, and the connecting rod drives the sliding ring to move synchronously. The outer wall of the sliding ring is slidably installed on the inner wall of the circular hole tube, and the bottom of the inner wall of the sliding ring is fixedly installed on the bottom of the connecting rod. The sliding ring scrapes the inner wall of the circular hole tube back and forth to increase the internal pressure of the circular hole tube and accelerate the gas circulation and discharge speed inside the circular hole tube. The right side of the scraper is fixedly installed on the left side of the sliding ring. The sliding ring drives the scraper to move synchronously, and the scraper scrapes off the dirt attached to the inner wall of the circular hole tube.

[0011] According to the above technical solution, the anti-accumulation device further includes a guiding block, a hinge piece, an inclined rod and a rubber ring. The back of the guiding block is slidably installed on the outer wall of the sliding ring through a spring, and the outer wall of the guiding block contacts the inner wall of the circular hole in the circular hole pipe. The sliding ring drives the guiding block to move synchronously, and the guiding block guides the inner wall of the circular hole in the circular hole pipe. The front of the bottom of the hinge piece is hinged to the outer wall surface of the guiding block through a torsion spring. When the guiding block pops out by spring contraction, it drives the hinge piece to move synchronously. The hinge piece increases the smoothness of the guiding block through the arc surface. The bottom of the inclined rod is hinged to the concave surface of the hinge piece. When the hinge piece offsets due to the contact force with the inner wall of the circular hole pipe, it drives the inclined rod to move up and down. The inclined rod drives the rubber ring to move synchronously along the outer wall of the guiding block. The outer wall of the rubber ring is hinged to the top of the inclined rod, and the inside of the rubber ring contacts the outer wall surface of the guiding block. The rubber ring removes a small amount of dirt on the outer wall of the guiding block to prevent the dirt on the surface of the guiding block from solidifying and causing damage to the outer wall of the guiding block.

[0012] According to the above technical solution, the anti-infection device includes an air delivery component, an air delivery pipe and a filter plate. The right side of the air delivery component is fixedly installed on the left side of the device main body. When the air delivery component is started, the air delivery component conveys fresh air into the device main body through the air delivery pipe. The right side of the air delivery pipe penetrates and is fixedly installed inside the air delivery component. The outer wall of the filter plate is fixedly installed on the right side of the inner wall of the air delivery pipe. Through the setting of the filter plate, external dirt is prevented from entering the device main body, and the supplies inside the device main body are prevented from being adhered by dirt.

[0013] According to the above technical solution, the anti-infection device further includes an electric telescopic rotating column, an elliptical piece, a pressing rod and a purification sac. The right side of the electric telescopic rotating column is rotatably installed at the center of the left side of the filter plate. When the electric telescopic rotating column is started, the telescopic end of the electric telescopic rotating column drives the elliptical piece to rotate and move left and right. The arc surface of the elliptical piece is hinged to the outer wall surface of the telescopic end of the electric telescopic rotating column through a torsion spring. The elliptical piece guides the dirt carried when the air delivery component delivers air. At the same time, the rotational centrifugal force causes the elliptical piece to rotate at an angle perpendicular to the ground. The left side of the pressing rod is fixedly installed on the right side of the telescopic end of the electric telescopic rotating column. The telescopic end of the electric telescopic rotating column drives the pressing rod to move left and right. The pressing rod repeatedly presses the purification sac to deform and generate a spraying force. The inner wall of the purification sac is fixedly installed on the outer wall of the electric telescopic rotating column, and the left side of the purification sac is fixedly installed on the right side of the pressing rod. The purification sac sprays the purified gas into the air delivery pipe to purify the conveyed gas, avoiding the phenomenon of respiratory infection of the residents.

[0014] The present invention provides an environmental protection box structure for a building energy-saving thermal insulation material wall. It has the following beneficial effects: (1) The present invention sets an anti-damage device, and cooperates with an arc guide plate, an arc sheet and a T-shaped friction plate, so that the arc guide plate can guide the wind, reduce the device body from being blown directly by the wind, and prevent the device body from being eroded by the wind and deflected; at the same time, the T-shaped friction plate slides and rubs along the top of the device body, reducing the deflection amplitude of the arc guide plate and preventing the arc guide plate from hitting the insulation component; and the arc sheet prevents the device body from being eroded by rain for a long time and shortening its service life; through the cooperation of the transmission rod, the telescopic plate, the L-shaped vibration plate and the vibration ball, the telescopic plate expands the contact area between the device body and the ground, improves the overall stability of the device body, further reduces the loss of the box's own bearing capacity, and improves the safety of residents' lives; at the same time, the vibration ball is caused to shrink by the resistance force and then reset by the spring, and the L-shaped vibration plate shakes off the dirt at the connection of the telescopic end by the vibration force, so as to prevent the telescopic plate from being stuck and difficult to extend.

[0015] (2) The present invention sets an anti-pollution device, and cooperates with a green plant box, a pumping assembly and a round hole tube to facilitate the planting of a large number of green plants inside the green plant box, thereby providing a planting space for people who love greening. At the same time, the gas is guided through the round holes of the round hole tube and absorbed by the green plants, thereby reducing the emission of carbon dioxide and harmful gases. The arc groove column, round rod, convex ball and mesh plate are coordinated to enable the convex ball to rotate and guide the turbid gas through its own arc surface, so that the gas is evenly dispersed when passing through the inside of the round hole tube, and the green plants are evenly absorbed by the harmful gas, thereby avoiding increasing the loss of the green plants. At the same time, the mesh plate captures the dust carried in the gas to prevent the simultaneous transmission and emission of the dust from causing harm to the green plants, thereby realizing centralized collection, facilitating centralized cleaning by residents, and saving sorting and maintenance time.

[0016] (3) The present invention sets an anti-accumulation device, and cooperates with the arc groove column, connecting rod, sliding ring and scraper to make the sliding ring scrape the inner wall of the circular hole tube reciprocatingly, thereby increasing the internal pressure of the circular hole tube, thereby accelerating the gas flow and discharge speed inside the circular hole tube and avoiding the accumulation of harmful gases; at the same time, the scraper scrapes off the dirt attached to the inner wall of the circular hole tube to prevent the dirt residue from reducing the gas discharge and transmission rate; through the cooperation of the drainage block, hinge plate, inclined rod and rubber ring, the drainage block dredges the inner wall of the circular hole of the circular hole tube to prevent the occurrence of blockage of the circular hole tube; at the same time, the hinge plate expands the scraping area of the inner wall of the circular hole, and adds dynamic drainage on the basis of static drainage to improve the anti-blocking effect; it also enables the rubber ring to remove a small amount of dirt on the outer wall of the drainage block to prevent the dirt on the surface of the drainage block from solidifying and causing the outer wall of the drainage block to be damaged, thereby extending the replacement cycle of parts.

[0017] (4) The present invention provides an anti-infection device, and cooperates with the gas delivery component, gas delivery pipe and filter plate, so that the gas delivery component delivers fresh air to the inside of the device body through the gas delivery pipe, thereby improving the living happiness of the residents; the filter plate is provided to prevent external dirt from entering the inside of the device body, thereby improving the cleanliness of the inside of the device body and reducing the cleaning time of the residents; the electric telescopic rotating column, elliptical sheet, extrusion rod and purification capsule are coordinated to make the elliptical sheet rotate at a perpendicular angle to the ground, so that the dirt is evenly dispersed and circulated to the filter plate, and the dirt is prevented from surging in the center and clogging the filter plate, which makes it difficult to transport the gas; at the same time, the purification capsule sprays the purified gas into the gas delivery pipe to purify the transported gas, thereby preventing the irritating components in the gas from causing respiratory infections of the residents, thereby improving the living experience of the residents. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 A schematic diagram of the present invention as a whole; Figure 2 It is a cross-sectional schematic diagram of the present invention as a whole; Figure 3 It is a schematic diagram of the anti-damage device of the present invention; Figure 4 It is a schematic diagram of an enlarged structure at position A in the anti-damage device of the present invention; Figure 5 It is a schematic diagram of the anti-pollution device of the present invention; Figure 6 It is a schematic cross-sectional view of a part of the structure of the anti-pollution device of the present invention; Figure 7 It is a schematic diagram of the anti-accumulation device of the present invention; Figure 8 It is an enlarged schematic diagram of the structure at position B in the anti-accumulation device of the present invention; Figure 9 It is a schematic diagram of the anti-infection device of the present invention.

[0019] In the figure: 1. device body; 2. heat preservation component; 3. sound insulation component; 4. anti-damage device; 41. arc guide plate; 42. arc sheet; 43. T-shaped friction plate; 44. transmission rod; 45. telescopic plate; 46. L-shaped vibration plate; 47. vibration ball; 5. anti-pollution device; 51. green plant box; 52. pumping component; 53. round hole tube; 54. arc groove column; 55. round rod; 56. convex ball; 57. mesh plate; 6. anti-accumulation device; 61. connecting rod; 62. sliding ring; 63. scraper; 64. drainage block; 65. hinged sheet; 66. inclined rod; 67. rubber ring; 7. anti-infection device; 71. gas supply component; 72. gas supply pipe; 73. filter plate; 74. electric telescopic rotating column; 75. elliptical sheet; 76. extrusion rod; 77. purification capsule. DETAILED DESCRIPTION

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0021] Please refer to Figures 1-9 , an embodiment of the present invention is: an environmental protection box structure for a wall of a building energy-saving heat-insulating material, including a device main body 1. Heat-insulating components 2 are arranged on the left and right sides of the outer wall of the device main body 1. A sound-insulating component 3 is arranged above the heat-insulating component 2. It also includes an anti-damage device 4 and an anti-pollution device 5. The anti-damage device 4 is arranged on the left and right sides of the device main body 1, and the anti-pollution device 5 is arranged on the front of the device main body 1. The anti-damage device 4 includes an arc-shaped guide plate 41, an arc-shaped piece 42, and a T-shaped friction plate 43. The right side of the bottom of the arc-shaped guide plate 41 is hinged to the left side of the device main body 1. The arc-shaped piece 42 is fixedly installed between the top of the arc-shaped guide plate 41 and the top edge of the device main body 1. The left side of the T-shaped friction plate 43 is hinged to the arc surface of the arc-shaped piece 42, and the bottom of the T-shaped friction plate 43 contacts the top of the device main body 1. The heat-insulating component 2 is used to perform heat insulation treatment on the device main body 1 to reduce heat loss, reduce energy consumption, and protect resources. The sound-insulating component 3 provides good sound insulation treatment, reduces noise transmission, and strengthens the implementation of environmental protection projects. The arc-shaped guide plate 41 is used to guide the wind force, reduce the direct wind force blowing on the device main body 1. When the arc-shaped guide plate 41 approaches the device main body 1 due to the wind force, it squeezes the arc-shaped piece 42 and deforms at the same time. The arc-shaped piece 42 pushes the T-shaped friction plate 43 to slide and rub along the top of the device main body 1, reducing the offset amplitude of the arc-shaped guide plate 41 and preventing the arc-shaped guide plate 41 from knocking against the heat-insulating component 2 and causing damage.

[0022] The anti-damage device 4 further includes a transmission rod 44, a telescopic plate 45, an L-shaped vibrating plate 46, and a vibrating ball 47. The top of the transmission rod 44 is hinged to the arc surface of the outer wall of the arc-shaped guide plate 41. The right side of the telescopic plate 45 is fixedly installed on the left side of the device main body 1, and the top of the telescopic end of the telescopic plate 45 is hinged to the bottom of the transmission rod 44. The back of the L-shaped vibrating plate 46 is fixedly installed on the front of the telescopic end of the telescopic plate 45. The back of the vibrating ball 47 is slidably installed on the front of the telescopic plate 45 through a spring, and the arc surface of the vibrating ball 47 is located on the movement track of the L-shaped vibrating plate 46. When the arc-shaped guide plate 41 deflects, it drives the transmission rod 44 to move away from the device main body 1. The transmission rod 44 drives the telescopic end of the telescopic plate 45 to extend synchronously. The telescopic plate 45 expands the contact area between the device main body 1 and the ground and improves the overall stability of the device main body 1. When the telescopic end of the telescopic plate 45 extends, it drives the L-shaped vibrating plate 46 to move synchronously. The L-shaped vibrating plate 46 impacts the arc surface of the vibrating ball 47 to generate vibration. Through the repulsive force, the vibrating ball 47 contracts and then resets through the spring. The L-shaped vibrating plate 46 vibrates off the dirt existing at the connection of the telescopic end through the vibration force.

[0023] The anti-pollution device 5 includes a green plant box 51, a pumping component 52 and a circular hole tube 53. The right side of the green plant box 51 is fixedly installed on the left side of the device body 1, and the green plant box 51 is connected to the device body 1. The right side of the pumping component 52 is fixedly installed on the left side of the green plant box 51. The circular hole tube 53 is fixedly installed inside the green plant box 51. The interior of the green plant box 51 is convenient for planting a large number of green plants, providing planting space for people who love greening. The pumping component 52 replaces the turbid gas inside the device body 1, guides the gas through the circular hole tube 53, and discharges it to the surroundings of the green plant box 51 through the circular hole, and is absorbed by the green plants to reduce carbon dioxide and harmful gas emissions.

[0024] The anti-pollution device 5 also includes an arc groove column 54, a round rod 55, a convex ball 56 and a mesh plate 57. The left side of the arc groove column 54 passes through and is fixedly installed on the right side of the rotating shaft of the pumping component 52, the right side of the round rod 55 is fixedly installed on the outer wall surface of the arc groove column 54, the convex ball 56 passes through and is fixedly installed on the outer wall surface of the round rod 55, and the mesh plate 57 passes through and is fixedly installed on the outer wall surface of the round rod 55. The rotating shaft of the pumping component 52 drives the arc groove column 54 to rotate, the arc groove column 54 drives the round rod 55 to rotate, and the round rod 55 drives the convex ball 56 to rotate. The convex ball 56 rotates and guides the turbid gas through its own arc surface, so that the gas is evenly dispersed when passing through the inside of the circular hole tube 53, so that the green plants absorb the harmful gas evenly. The round rod 55 drives the mesh plate 57 to rotate, and the mesh plate 57 captures the dust carried in the gas to prevent the simultaneous transportation and emission of the dust from causing harm to the green plants.

[0025] During use, the heat preservation component 2 is used to perform heat preservation treatment on the device main body 1 to reduce heat loss, reduce energy consumption, and protect resources; at the same time, the sound insulation component 3 provides good sound insulation treatment to reduce noise transmission and strengthen the implementation of environmental protection projects; when a stormy weather comes, the arc-shaped guide plate 41 is used to divert the wind force, reducing the direct blowing of the wind force on the device main body 1 and preventing the device main body 1 from being eroded by the wind force and shifting; when the arc-shaped guide plate 41 approaches the device main body 1 due to the wind force, it squeezes the arc-shaped piece 42 and deforms at the same time. The arc-shaped piece 42 pushes the T-shaped friction plate 43 to slide and rub along the top of the device main body 1, reducing the deviation amplitude of the arc-shaped guide plate 41 and preventing the arc-shaped guide plate 41 from knocking against the heat preservation component 2 and causing damage; at the same time, the convex deformation of the arc-shaped piece 42 diverts rainwater, preventing the device main body 1 from being eroded by rainwater for a long time and shortening its service life; when the arc-shaped guide plate 41 deviates, it drives the transmission rod 44 to move away from the device main body 1. The transmission rod 44 drives the telescopic end of the telescopic plate 45 to extend synchronously. The telescopic plate 45 expands the contact area between the device main body 1 and the ground and improves the overall stability of the device main body 1. On the basis of the arc-shaped guide plate 41 diverting the wind force, it further reduces the loss of the bearing capacity of the box body itself and improves the living safety of residents; when the telescopic end of the telescopic plate 45 extends, it drives the L-shaped vibrating plate 46 to move synchronously. The L-shaped vibrating plate 46 hits the arc surface of the vibrating ball 47 to generate vibration. Through the repulsive force, the vibrating ball 47 contracts and then resets through the spring. The L-shaped vibrating plate 46 shakes off the dirt at the connection of the telescopic end through the vibration force, preventing the telescopic plate 45 from being stuck and difficult to extend.

[0026] A large number of green plants can be conveniently planted inside the green plant box 51, providing a planting space for people who love greening; the pumping component 52 is started to replace the turbid gas inside the device main body 1. The gas is diverted through the round hole pipe 53 and discharged around the green plant box 51 through the round holes, and is absorbed by the green plants, reducing the emission of carbon dioxide and harmful gases, protecting the environment, saving purification materials, and saving economic expenditure; the rotating shaft of the pumping component 52 drives the arc groove column 54 to rotate. The arc groove column 54 drives the round rod 55 to rotate. The round rod 55 drives the convex ball 56 to rotate. The convex ball 56 rotates and diverts the turbid gas through its own arc surface, causing the gas to be evenly dispersed when passing through the inside of the round hole pipe 53, enabling the green plants to evenly absorb the harmful gases and avoiding increasing the loss of green plants; the round rod 55 drives the net plate 57 to rotate. The net plate 57 captures the fine dust carried in the gas, preventing the fine dust from being transported and discharged synchronously and causing harm to the green plants. The fine dust is centrally collected through the net plate 57, facilitating the centralized cleaning by the residents and saving the time for sorting and maintenance.

[0027] Please refer to Figures 1-9 , on the basis of the above embodiments, another embodiment of the present invention further includes an anti-accumulation device 6 and an anti-infection device 7. The anti-accumulation device 6 is arranged inside the anti-pollution device 5, and the anti-infection device 7 is arranged above the anti-pollution device 5; The anti - accumulation device 6 includes a connecting rod 61, a sliding ring 62 and a scraping blade 63. The top of the connecting rod 61 is slidably installed inside the arc - shaped groove of the arc - groove column 54. The outer wall of the sliding ring 62 is slidably installed on the inner wall of the round - hole tube 53, and the bottom of the inner wall of the sliding ring 62 is fixedly installed at the bottom of the connecting rod 61. The right side of the scraping blade 63 is fixedly installed on the left side of the sliding ring 62. When the arc - groove column 54 rotates, due to the restriction of the arc - shaped groove on the connecting rod 61, the connecting rod 61 slides left and right, driving the sliding ring 62 to move synchronously. The sliding ring 62 reciprocally scrapes the inner wall of the round - hole tube 53, increasing the internal pressure of the round - hole tube 53 and accelerating the gas circulation and discharge speed inside the round - hole tube 53. The sliding ring 62 drives the scraping blade 63 to move synchronously, and the scraping blade 63 scrapes off the dirt adhering to the inner wall of the round - hole tube 53.

[0028] The anti - accumulation device 6 further includes a guiding block 64, a hinge piece 65, an inclined rod 66 and a rubber ring 67. The back of the guiding block 64 is slidably installed on the outer wall of the sliding ring 62 through a spring, and the outer wall of the guiding block 64 contacts the inner wall of the round hole in the round - hole tube 53. The bottom front of the hinge piece 65 is hinged to the outer wall surface of the guiding block 64 through a torsion spring. The bottom of the inclined rod 66 is hinged to the concave surface of the hinge piece 65. The outer wall of the rubber ring 67 is hinged to the top of the inclined rod 66, and the inside of the rubber ring 67 contacts the outer wall surface of the guiding block 64. The sliding ring 62 drives the guiding block 64 to move synchronously. The guiding block 64 guides the inner wall of the round hole of the round - hole tube 53. When the guiding block 64 contracts and pops out through the spring, it drives the hinge piece 65 to move synchronously. The hinge piece 65 increases the smoothness of the guiding of the guiding block 64 through its arc surface. When the hinge piece 65 offsets due to the contact force with the inner wall of the round - hole tube 53, it drives the inclined rod 66 to move up and down. The inclined rod 66 drives the rubber ring 67 to move synchronously along the outer wall of the guiding block 64, and the rubber ring 67 removes a small amount of dirt on the outer wall of the guiding block 64, preventing the dirt on the surface of the guiding block 64 from solidifying and causing damage to the outer wall of the guiding block 64.

[0029] The anti - infection device 7 includes an air - delivery component 71, an air - delivery pipe 72 and a filter plate 73. The right side of the air - delivery component 71 is fixedly installed on the left side of the device main body 1. The right side of the air - delivery pipe 72 penetrates and is fixedly installed inside the air - delivery component 71. The outer wall of the filter plate 73 is fixedly installed on the right side of the inner wall of the air - delivery pipe 72. When the air - delivery component 71 is started, the air - delivery component 71 delivers fresh air into the device main body 1 through the air - delivery pipe 72. Through the setting of the filter plate 73, external dirt is prevented from entering the device main body 1, and the items inside the device main body 1 are prevented from being adhered by dirt.

[0030] The anti-infection device 7 also includes an electric telescopic rotating column 74, an elliptical sheet 75, an extrusion rod 76 and a purification capsule 77. The right side of the electric telescopic rotating column 74 is rotatably installed at the center of the left side of the filter plate 73. The arc surface of the elliptical sheet 75 is hinged on the outer wall surface of the telescopic end of the electric telescopic rotating column 74 through a torsion spring. The left side of the extrusion rod 76 is fixedly installed on the right side of the telescopic end of the electric telescopic rotating column 74. The inner wall of the purification capsule 77 is fixedly installed on the outer wall surface of the electric telescopic rotating column 74, and the left side of the purification capsule 77 is fixedly installed on the right side of the extrusion rod 76. When the electric telescopic rotating column 74 is started, the telescopic end of the electric telescopic rotating column 74 drives the elliptical sheet 75 to rotate and move left and right. The elliptical sheet 75 guides the dirt carried by the gas transmission component 71 during gas transmission. At the same time, the rotating centrifugal force causes the elliptical sheet 75 to rotate at a perpendicular angle to the ground. The telescopic end of the electric telescopic rotating column 74 drives the extrusion rod 76 to move left and right. The extrusion rod 76 reciprocates to squeeze the purification capsule 77 to deform and generate a spray force. The purification capsule 77 sprays the purified gas into the gas pipe 72 to purify the transported gas to avoid respiratory tract infection of the residents.

[0031] When in use, when the arc groove column 54 rotates, the arc groove restricts the connecting rod 61, causing the connecting rod 61 to slide left and right, and the connecting rod 61 drives the sliding ring 62 to move synchronously. The sliding ring 62 scrapes the inner wall of the circular hole tube 53 back and forth, increasing the internal pressure of the circular hole tube 53, thereby accelerating the gas circulation and discharge speed inside the circular hole tube 53 to avoid the accumulation of harmful gases; the sliding ring 62 drives the scraper 63 to move synchronously, and the scraper 63 scrapes the dirt attached to the inner wall of the circular hole tube 53 to prevent the dirt residue from reducing the internal flow aperture of the circular hole tube 53, thereby avoiding the circular hole tube 53 from reducing the gas discharge and delivery rate; the sliding ring 62 drives the dredging block 64 to move synchronously, and the dredging block 64 dredges the inner wall of the circular hole of the circular hole tube 53. At the same time, the dredging block 64 realizes resistance and contraction through the elastic force of the spring and resets otherwise. Movement to avoid obstruction of the movement of the sliding ring 62, and the guide block 64 effectively prevents the circular hole tube 53 from being blocked; when the guide block 64 is popped out by the contraction of the spring, it drives the hinge piece 65 to move synchronously, and the hinge piece 65 increases the smoothness of the flow of the guide block 64 through the arc surface. At the same time, the hinge piece 65 expands the scraping area of the inner wall of the circular hole, and adds dynamic guidance on the basis of static state to improve the anti-blocking effect; then the hinge piece 65 is reset by the torsion spring, and the hinge piece 65 drives the inclined rod 66 to move up and down when the resistance force with the inner wall of the circular hole tube 53 is offset, and the inclined rod 66 drives the rubber ring 67 to move synchronously along the outer wall of the guide block 64, and the rubber ring 67 removes a small amount of dirt on the outer wall of the guide block 64 to prevent the dirt on the surface of the guide block 64 from solidifying and causing the outer wall of the guide block 64 to be damaged, thereby extending the replacement cycle of parts.

[0032] Start the air delivery component 71. The air delivery component 71 conveys fresh air into the interior of the device main body 1 through the air delivery pipe 72, enhancing the happiness of the residents; through the setting of the filter plate 73, it prevents external dirt from entering the interior of the device main body 1, avoids the adhesion of dirt to the supplies inside the device main body 1, improves the cleanliness inside the device main body 1 and reduces the time for personnel to tidy up; start the electric telescopic rotating column 74, the telescopic end of the electric telescopic rotating column 74 drives the elliptical plate 75 to rotate and move left and right. The elliptical plate 75 channels the dirt carried during the air delivery of the air delivery component 71. At the same time, the rotational centrifugal force causes the elliptical plate 75 to rotate at an angle perpendicular to the ground, expanding the agitation area, promoting the uniform dispersion of the dirt and flowing to the filter plate 73, preventing the filter plate 73 from being blocked due to the surging of dirt in the middle and making it difficult to deliver gas; the telescopic end of the electric telescopic rotating column 74 drives the extrusion rod 76 to move left and right. The extrusion rod 76 reciprocally extrudes the purification capsule 77 to deform and generate a spraying force. The purification capsule 77 sprays the purified gas into the air delivery pipe 72 to purify the conveyed gas, avoiding the phenomenon that the gas carries irritating components and causing respiratory infections to the residents, ensuring the safety of the gas and enhancing the living experience of the residents.

[0033] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered within the protection scope of the present invention.

Claims

1. An environment-friendly box structure for a wall of a building energy-saving heat-insulating material, comprising a device main body (1), heat-insulating components (2) are arranged on the left and right sides of the outer wall of the device main body (1), and a sound-insulating component (3) is arranged above the heat-insulating components (2), characterized in that: It also includes a damage prevention device (4), a pollution prevention device (5), a stacking prevention device (6) and an infection prevention device (7). The damage prevention device (4) is arranged on the left and right sides of the device main body (1). The pollution prevention device (5) is arranged on the front of the device main body (1). The stacking prevention device (6) is arranged inside the pollution prevention device (5). The infection prevention device (7) is arranged above the pollution prevention device (5). The damage prevention device (4) includes an arc-shaped guide plate (41), an arc-shaped piece (42) and a T-shaped friction plate (43). The right side of the bottom of the arc-shaped guide plate (41) is hinged to the left side of the device main body (1). The arc-shaped piece (42) is fixedly installed between the top of the arc-shaped guide plate (41) and the top edge of the device main body (1). The left side of the T-shaped friction plate (43) is hinged to the arc surface of the arc-shaped piece (42), and the bottom of the T-shaped friction plate (43) contacts the top of the device main body (1).

2. The environmental protection box structure of a wall of a building energy-saving heat-insulating material according to claim 1, characterized in that: The damage prevention device (4) further includes a transmission rod (44), a telescopic plate (45), an L-shaped vibration plate (46) and a vibration ball (47). The top of the transmission rod (44) is hinged to the outer arc surface of the arc-shaped guide plate (41). The right side of the telescopic plate (45) is fixedly installed on the left side of the device main body (1), and the top of the telescopic end of the telescopic plate (45) is hinged to the bottom of the transmission rod (44). The back of the L-shaped vibration plate (46) is fixedly installed on the front of the telescopic end of the telescopic plate (45). The back of the vibration ball (47) is slidably installed on the front of the telescopic plate (45) through a spring, and the arc surface of the vibration ball (47) is located on the movement track of the L-shaped vibration plate (46).

3. The environmental protection box structure of a wall of a building energy-saving heat-insulating material according to claim 2, characterized in that: The pollution prevention device (5) includes a green plant box (51), a pumping component (52) and a round hole pipe (53). The right side of the green plant box (51) is fixedly installed on the left side of the device main body (1), and the green plant box (51) is communicated with the device main body (1). The right side of the pumping component (52) is fixedly installed on the left side of the green plant box (51). The round hole pipe (53) is fixedly installed inside the green plant box (51).

4. The environmental protection box structure of a wall of a building energy-saving thermal insulation material according to claim 3, characterized in that: The pollution prevention device (5) further includes an arc groove column (54), a round rod (55), a convex ball (56) and a mesh plate (57). The left side of the arc groove column (54) penetrates and is fixedly installed on the right side of the rotating shaft of the pumping component (52). The right side of the round rod (55) is fixedly installed on the outer surface of the arc groove column (54). The convex ball (56) penetrates and is fixedly installed on the outer wall surface of the round rod (55). The mesh plate (57) penetrates and is fixedly installed on the outer wall surface of the round rod (55).

5. The environmental protection box structure of the wall of an energy-saving and heat-insulating building material according to claim 4, characterized in that: The stacking prevention device (6) includes a connecting rod (61), a sliding ring (62) and a scraping blade (63). The top of the connecting rod (61) is slidably installed inside the arc-shaped groove of the arc groove column (54). The outer wall of the sliding ring (62) is slidably installed on the inner wall of the round hole pipe (53), and the bottom of the inner wall of the sliding ring (62) is fixedly installed at the bottom of the connecting rod (61). The right side of the scraping blade (63) is fixedly installed on the left side of the sliding ring (62).

6. The environmental protection box structure of a wall of a building energy-saving thermal insulation material according to claim 5, characterized in that: The anti-accumulation device (6) further includes a guiding block (64), a hinge piece (65), an inclined rod (66) and a rubber ring (67). The back surface of the guiding block (64) is slidably mounted on the outer wall of the sliding ring (62) through a spring, and the outer wall of the guiding block (64) is in contact with the inner wall of the circular hole in the circular hole pipe (53). The front surface of the bottom of the hinge piece (65) is hinged to the outer wall surface of the guiding block (64) through a torsion spring. The bottom of the inclined rod (66) is hinged to the concave surface of the hinge piece (65). The outer wall of the rubber ring (67) is hinged to the top of the inclined rod (66), and the inside of the rubber ring (67) is in contact with the outer wall surface of the guiding block (64).

7. The environmental protection box structure of a wall of a building energy-saving heat-insulating material according to claim 6, characterized in that: The anti-infection device (7) includes an air delivery assembly (71), an air delivery pipe (72) and a filter plate (73). The right side of the air delivery assembly (71) is fixedly mounted on the left side of the device main body (1). The right side of the air delivery pipe (72) penetrates and is fixedly mounted inside the air delivery assembly (71). The outer wall of the filter plate (73) is fixedly mounted on the right side of the inner wall of the air delivery pipe (72).

8. The environmental protection box structure of the wall of a building energy-saving heat-insulating material according to claim 7, characterized in that: The anti-infection device (7) further includes an electric telescopic rotating column (74), an elliptical piece (75), a pressing rod (76) and a purification sac (77). The right side of the electric telescopic rotating column (74) is rotatably mounted at the center of the left side of the filter plate (73). The arc surface of the elliptical piece (75) is hinged to the outer wall surface of the telescopic end of the electric telescopic rotating column (74) through a torsion spring. The left side of the pressing rod (76) is fixedly mounted on the right side of the telescopic end of the electric telescopic rotating column (74). The inner wall of the purification sac (77) is fixedly mounted on the outer wall surface of the electric telescopic rotating column (74), and the left side of the purification sac (77) is fixedly mounted on the right side of the pressing rod (76).

Citation Information

Patent Citations

  • Environment-friendly box structure of environment-friendly wall

    CN211622090U