Novel environment-friendly building material detection device
By designing a new environmentally friendly building material inspection device, using conveying components, removing components and collecting components, the problems of inconvenience in transportation and poor equipment stability in the prior art are solved, and automated inspection and separation of building materials are realized, and detection efficiency and equipment stability are improved.
Patent Information
- Application Number
- CN202510475069.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2025-01-14
- Filing Date
- 2025-04-16
- Publication Date
- 2025-06-27
AI Technical Summary
When the existing building material testing device transports building materials, the chains and gears of the testing device bear great force, resulting in inconvenience in transportation and poor equipment stability.
A new type of environmentally friendly building materials detection device has been designed, using conveying components, removing components and collecting components, and automatic handling, detection and separation of building materials through mechanical structures such as hydraulic rods, pawls, ratchets, pulleys, etc.
It realizes automated inspection and separation of building materials, reduces manpower operations, and improves inspection efficiency and equipment stability and reliability.
Smart Images

Figure CN120213636A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of detection technology. Specifically, it relates to a detection device for a new type of environmentally friendly building material. Background Art
[0002] An environmentally friendly building material detection device is an instrument and equipment specifically used to detect the environmental protection performance of building materials. This device mainly conducts a comprehensive detection of the composition, physical properties, chemical properties, etc. of building materials to ensure that the materials meet environmental protection requirements, so as to reduce environmental pollution and improve the sustainable development of the construction industry. The environmentally friendly building material detection device has the characteristics of high automation and intelligence. It can automatically complete steps such as sample sampling, preparation, and detection, and can automatically generate a detection report according to the detection results. In addition, this device also has a friendly human-computer interaction interface, which can conveniently operate and monitor the running state of the device to ensure its stability and reliability.
[0003] Currently, in actual use, the building material detection device we use drives gears to rotate through a forward and reverse motor, and cooperates with a chain to drive other gears to move together to achieve the rotation of the support wheel, and then realizes the movement of the building material under the detection device. When the detection device detects the building material, the force received by the building material will simultaneously act on the chain and the gears in the opposite direction, which is not conducive to transporting materials for the detection device. Summary of the Invention
[0004] In view of the deficiencies of the prior art, the present invention provides a novel environmentally friendly building material detection device, which solves the problems raised in the above background technology. To achieve the above purpose, the present invention is implemented through the following technical solutions: it includes a support leg, the top of the support leg is fixedly connected to a working plate, the upper right side of the working plate is fixedly connected to a support frame, the top inner wall of the support frame is fixedly connected to an electric telescopic rod, the output end of the electric telescopic rod is fixedly installed with a detection pressure block, a transmission component is arranged on the working plate, the transmission component includes a first hydraulic rod, the left top inner wall of the support frame is fixedly connected to a first hydraulic bin, the right inner wall of the first hydraulic bin is slidably connected to the top outer wall of the first hydraulic rod, the bottom inner wall of the first hydraulic bin is slidably connected to a second hydraulic rod, the front end of the second hydraulic rod is fixedly connected to a pawl, the top of the pawl is meshed with a ratchet, the left side of the ratchet is hinged with a first connecting column, the left side of the first connecting column is fixedly connected to the first support plate, the front end of the pawl is fixedly connected to a first spring, the front end of the first spring The cam is fixedly connected to the first supporting plate, and the right side of the ratchet wheel is provided with a second supporting plate, and the first supporting plate is connected to the second supporting plate through a belt.
[0005] Preferably, the end of the third connecting column on the left side of the front end away from the first rotating frame is fixedly connected to the rear end of the first pulley, the end of the fifth connecting column on the right side of the front end away from the second rotating frame is fixedly connected to the rear end of the second pulley, and the rear ends of the third and fifth connecting columns at the rear end are hinged to the front end of the cross plate.
[0006] Preferably, the bottom of the first support plate is fixedly connected to the top of the working plate, the bottom of the second support plate is fixedly connected to the top of the working plate, the bottom of the pawl is slidably connected to the top of the working plate, and the bottom of the cross plate is fixedly connected to the top of the working plate.
[0007] Preferably, a removing component is arranged on the working plate. The removing component includes a second gear, a first gear is meshed with the right side of the second gear, a third gear is meshed with the right side of the first gear, a fourth support plate is hinged to the front end of the third gear, a fixing column is hinged to the middle of the rear end of the first gear, a fourth hydraulic rod is fixedly connected to the bottom of the fixing column, a second hydraulic chamber is arranged above the fourth hydraulic rod, the bottom outer wall of the fourth hydraulic rod is slidably connected to the inner wall of the left top of the second hydraulic chamber, a third hydraulic rod is slidably connected to the inner wall of the right side of the second hydraulic chamber, a placing plate is fixedly connected to the top of the third hydraulic rod, a second spring is fixedly connected to the top of the fixing column, a fixing frame is fixedly connected to the top of the second spring, a working groove is formed in the working plate, a turning frame is fixedly connected to the middle of the rear end of the third gear, and the top of the turning frame is arranged below the detection pressing block.
[0008] Preferably, the bottom of the fourth support plate is fixedly connected to the top of the working plate, the middle of the second gear is fixedly connected to a rotating column near one end of the electric telescopic rod, and the lower part of the second hydraulic chamber penetrates through and is fixedly connected to the working plate.
[0009] Preferably, the bottom of the fixing frame is fixedly connected to the top of the working plate, and the first gear, the second gear and the third gear are all arranged in the working groove.
[0010] Preferably, a collecting component is arranged on the working plate. The collecting component includes a conveying plate, a collecting box is arranged on the right side of the conveying plate, a side plate is slidably connected to the inner wall of the collecting box, a pressing plate is slidably connected to the left side of the side plate, an upper pressing block is fixedly connected to the bottom of the left side of the pressing plate, a lower pressing block is slidably connected to the inner wall of the left bottom of the collecting box, third springs are fixedly connected to the bottoms of the front and rear ends of the pressing plate, a first sliding groove is formed above the right side of the lower pressing block, a second sliding groove is formed below the side plate, a sliding plate is slidably connected in the first sliding groove and the second sliding groove, and a fourth spring is fixedly connected to the bottom of the right side of the side plate.
[0011] Preferably, the bottoms of the third springs are fixedly connected to the inner wall of the left bottom of the collecting box, the right side of the fourth spring is fixedly connected to the right bottom of the collecting box, the bottom of the conveying plate is fixedly connected to the top of the working plate, and the bottom of the collecting box is fixedly connected to the top of the working plate.
[0012] The advantages of the present application are as follows: (1). By arranging the conveying component, when it is necessary to detect building materials, the building materials can be automatically transported one by one to the lower part of the detection pressing block, so that the detection pressing block can detect the building materials one by one, saving manpower.
[0013] (2) By providing a removal component in this application, when the detection press block detects unqualified building materials, the unqualified building materials can be removed from below the detection press block through the removal component, facilitating the detection of other building materials by the detection press block.
[0014] (3) By providing a collection component in this application, it is possible to separately collect the building materials that have been detected by the detection press block. Moreover, while separately collecting, it can also adjust the internal size of the collection box according to the change in the quantity of the detected materials, making the collection of building materials more convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The drawings constituting a part of this application are used to provide a further understanding of this application, making other features, objectives, and advantages of this application more obvious. The schematic embodiments and their descriptions of this application are used to explain this application and do not constitute an improper limitation of this application. In the drawings: Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a cross-section of the present invention Figure 1 ; Figure 3 is a cross-section of the present invention Figure 2 ; Figure 4 is a cross-section of the present invention Figure 3 ; Figure 5 is the present invention Figure 4 enlarged view of part A; Figure 6 is the present invention Figure 4 enlarged view of part B; Figure 7 is the present invention Figure 2 enlarged view of part C; Figure 8 is the present invention Figure 2 enlarged view of part D; Figure 9 is the present invention Figure 2 enlarged view of part E; Figure 10 is the present invention Figure 3 enlarged view of part F; Figure 11 is the present invention Figure 3 enlarged view of part G.
[0016] In the above figures, 1. Support leg; 2. Working plate; 3. Support frame; 4. Electric telescopic rod; 5. Detection pressing block; 6. Conveying component; 61. First hydraulic rod; 62. First hydraulic chamber; 63. Second hydraulic rod; 64. Pawl; 65. Ratchet; 66. First connecting column; 67. First support plate; 68. First spring; 69. Second support plate; 610. First pulley; 611. Belt; 612. Third connecting column; 613. First rotating frame; 614. Second pulley; 615. Fourth connecting column; 616. Third support plate; 617. Fifth connecting column; 618. Second rotating frame; 619. Pushing plate; 620. Handling frame; 621. Rotating column; 622. Placing frame; 623. Cross plate; 7. Removal component; 71. Placing plate; 72. Third hydraulic rod; 73. Second hydraulic chamber; 74. Fourth hydraulic rod; 75. First gear; 76. Second gear; 77. Third gear; 78. Fourth support plate; 79. Second spring; 710. Fixed frame; 711. Working groove; 712. Flipping frame; 8. Collection component; 81. Conveying plate; 82. Collection box; 83. Side plate; 84. Pressing plate; 85. Upper pressing block; 86. Lower pressing block; 87. Third spring; 88. First chute; 89. Second chute; 810. Sliding plate; 811. Fourth spring. Detailed implementation manner
[0017] In order to enable those skilled in the art of this technology to better understand the solution of this application, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of this application. Obviously, the described embodiments are only a part of the embodiments of this application, rather than all the embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of this application.
[0018] It should be noted that, without conflict, the embodiments in this application and the features in the embodiments can be combined with each other. The following will detail this application with reference to the drawings and in conjunction with the embodiments.
[0019] Embodiment 1
[0020] See Figures 1-6The present embodiment provides a novel environmentally friendly building material detection device, including a support leg 1, the number of the support legs 1 is four, the top of the support leg 1 is fixedly connected with a working plate 2, the upper right side of the working plate 2 is fixedly connected with a support frame 3, the support frame 3 is "U"-shaped, the working plate 2 is used to provide support force for the use of the support frame 3, the top inner wall of the support frame 3 is fixedly connected with an electric telescopic rod 4, the support frame 3 is used to provide support force for the use of the electric telescopic rod 4, so that the use of the electric telescopic rod 4 is more stable, the output end of the electric telescopic rod 4 is fixedly installed with a detection block 5, the electric telescopic rod 4 is used to provide power and support force for the use of the detection block 5, so that the use of the detection block 5 is more convenient, and a transmission component 6 is provided on the working plate 2. The transmission assembly 6 includes a first hydraulic rod 61, a first hydraulic bin 62 is fixedly connected to the left top inner wall of the support frame 3, and a support force is provided for the use of the first hydraulic bin 62 through the working plate 2, the right inner wall of the first hydraulic bin 62 is slidably connected to the top outer wall of the first hydraulic rod 61, and a second hydraulic rod 63 is slidably connected to the bottom inner wall of the first hydraulic bin 62, and a pawl 64 is fixedly connected to the front end of the second hydraulic rod 63, and the pawl 64 is powered by the second hydraulic rod 63, so that the pawl 64 can move back and forth on the working plate 2, and a ratchet 65 is meshed at the top of the pawl 64, and a first connecting column 66 is hinged on the left side of the ratchet 65, and a support force is provided for the use of the ratchet 65 through the first connecting column 66, so that the ratchet 65 can be realized. The left side of the first connecting column 66 is fixedly connected with a first supporting plate 67, and the first connecting column 66 provides a supporting force for the use of the first supporting plate 67. The front end of the pawl 64 is fixedly connected with a first spring 68, and the front end of the first spring 68 is fixedly connected with a second supporting plate 69, and the second supporting plate 69 provides a supporting force for the use of the first spring 68, so that the first spring 68 can move stably on the pawl 64. The right side of the ratchet 65 is fixedly connected with a first pulley 610, and the right side of the first pulley 610 is provided with a second pulley 614. The first pulley 610 is connected to the second pulley 614 through a belt 611, and the first pulley 610 provides power for the use of the second pulley 614, so that The second pulley 614 can achieve stable rotation. A third connecting column 612 is provided on the right side of the first pulley 610. A first rotating frame 613 is fixedly connected to the inner side of the third connecting column 612 at the left rear end. There are two first rotating frames 613, which are respectively provided at the front and rear ends of the working plate 2. A fourth connecting column 615 is hinged at the front end of the second pulley 614, and a supporting force is provided for the use of the second pulley 614 through the fourth connecting column 615. A third supporting plate 616 is fixedly connected to the front end of the fourth connecting column 615, and a supporting force is provided for the use of the fourth connecting column 615 through the third supporting plate 616, so that the use of the fourth connecting column 615 is more stable. A fifth connecting column 617 is provided on the right side of the second pulley 614.On the right side of the fifth connecting column 617 at the left front end, a second rotating frame 618 is fixedly connected. The number of the second rotating frames 618 is two, which are respectively arranged at the front and rear ends of the working plate 2. A push plate 619 is hinged to the left top of both the first rotating frame 613 and the second rotating frame 618. A handling frame 620 is fixedly connected to the top of the push plate 619. The first rotating frame 613 and the second rotating frame 618 provide support force and power for the use of the push plate 619, so that the push plate 619 can drive the handling frame 620 to rotate. A placing frame 622 is fixedly connected to the top of the working plate 2. The working plate 2 provides support force for the use of the placing frame 622, so that the placing frame 622 can provide support force for the detection of building materials. A rotating column 621 is fixedly connected to the inner wall of the middle part of the first rotating frame 613 and the second rotating frame 618. The outer wall of the rotating column 621 movably penetrates through the lower part of the placing frame 622. The number of the placing frames 622 is two, which are respectively and evenly arranged at the front and rear ends of the working plate 2. One end of the third connecting column 612 at the left front end, which is far away from the first rotating frame 613, is fixedly connected to the rear end of the first pulley 610. One end of the fifth connecting column 617 at the right front end, which is far away from the second rotating frame 618, is fixedly connected to the rear end of the second pulley 614. The rear ends of the third connecting column 612 and the fifth connecting column 617 at the rear end are hinged to the front end of a cross plate 623. The number of the cross plates 623 is two, which makes the use of the first support plate 67 more stable. The bottom of the first support plate 67 is fixedly connected to the top of the working plate 2. The working plate 2 provides support force for the use of the first support plate 67. The bottom of the second support plate 69 is fixedly connected to the top of the working plate 2. The bottom of the pawl 64 is slidably connected to the top of the working plate 2. The bottom of the cross plate 623 is fixedly connected to the top of the working plate 2.,
[0021] When the above device is in specific use, the electric telescopic rod 4 drives the detection pressing block 5 to move upward, so that the detection pressing block 5 squeezes the first hydraulic rod 61 upward, causing the second hydraulic rod 63 below the first hydraulic chamber 62 to move to the right. The rightward movement of the second hydraulic rod 63 drives the pawl 64 to move to the right. The rightward movement of the pawl 64 drives the ratchet wheel 65 to rotate to the left on the first connecting column 66. The rotation of the ratchet wheel 65 drives the first pulley 610 to rotate. The rotation of the first pulley 610 drives the second pulley 614 on the outer belt 611 to rotate. The rotation of the first pulley 610 drives the third connecting column 612 to rotate to the left. The rotation of the third connecting column 612 drives the first rotating frame 613 to rotate. The rotation of the second pulley 614 drives the fifth connecting column 617 to rotate to the left. The rotation of the fifth connecting column 617 drives the second rotating frame 618 to rotate. The rotation of the first rotating frame 613 and the second rotating frame 618 drives the first rotating frame 613 and the second rotating frame 618 at the rear end to rotate on the cross plate 623, so that the push plates 619 on the first rotating frame 613 and the second rotating frame 618 at both ends flip back and forth. The back-and-forth leftward flipping of the push plate 619 drives the handling frame 620 to flip back and forth to the left, realizing the handling of the building materials to be detected below the detection pressing block 5 to the left. When a handling is completed, under the action of the first spring 68, the pawl 64 can move backward, causing the second hydraulic rod 63 to move backward, and the first hydraulic rod 61 above the first hydraulic chamber 62 to move downward.
[0022] Embodiment 2
[0023] See Figures 2-8, on the basis of the first embodiment, a removal component 7 is provided on the working plate 2. The removal component 7 includes a second gear 76. A first gear 75 is meshed with the right side of the second gear 76. The volume of the first gear 75 is smaller than that of the second gear 76. A third gear 77 is meshed with the right side of the first gear 75. The front end of the third gear 77 is hinged to a fourth support plate 78. The fourth support plate 78 provides a supporting force for the use of the third gear 77, enabling the third gear 77 to move more stably. The middle of the rear end of the first gear 75 is hinged to a fixed column. The bottom of the fixed column is fixedly connected to a fourth hydraulic rod 74. Above the fourth hydraulic rod 74 is provided a second hydraulic chamber 73. The left top inner wall of the second hydraulic chamber 73 is slidably connected to the bottom outer wall of the fourth hydraulic rod 74. The right inner wall of the second hydraulic chamber 73 is slidably connected to a third hydraulic rod 72. The third hydraulic rod 72 provides a supporting force for the use of the placement plate 71. The top of the third hydraulic rod 72 is fixedly connected to a placement plate 71. The third hydraulic rod 72 provides a supporting force for the use of the placement plate 71, making the use of the placement plate 71 more stable. The top of the fixed column is fixedly connected to a second spring 79. The top of the second spring 79 is fixedly connected to a fixed frame 710. The fixed frame 710 provides a supporting force for the use of the second spring 79, enabling the use of the second spring 79 to be more stable. A working groove 711 is formed on the working plate 2. The working groove 711 is a cuboid, providing conditions for the use of the third gear 77. The middle of the rear end of the third gear 77 is fixedly connected to a flipping frame 712. The third gear 77 provides a supporting force and power for the use of the flipping frame 712. The top of the flipping frame 712 is arranged below the detection pressing block 5. The bottom of the fourth support plate 78 is fixedly connected to the top of the working plate 2. The working plate 2 provides a supporting force for the use of the fourth support plate 78, enabling the fourth support plate 78 to be stably used. The middle of the second gear 76 is fixedly connected to a rotating column 621 near one end of the electric telescopic rod 4. The right rotating column 621 provides a supporting force and power for the use of the second gear 76. The lower part of the second hydraulic chamber 73 penetrates and is fixedly connected to the working plate 2. The working plate 2 provides a supporting force for the use of the second hydraulic chamber 73. The bottom of the fixed frame 710 is fixedly connected to the top of the working plate 2. The working plate 2 provides a supporting force for the use of the fixed frame 710, enabling the fixed frame 710 to be stably fixed above the working plate 2. The first gear 75, the second gear 76 and the third gear 77 are all arranged in the working groove 711. The top height of the flipping frame 712 is lower than the height of the placement plate 71.
[0024] When the above-mentioned device is in specific use, when the detection block 5 moves downward under the action of the electric telescopic rod 4 and detects the building materials, when the hardness of the building materials is unqualified, the connection between the detection material and the detection block 5 will bend downward. At this time, the bent part of the building materials will touch the placement plate 71 and drive the placement plate 71 to move downward. The downward movement of the placement plate 71 drives the third hydraulic rod 72 to move downward. The downward movement of the third hydraulic rod 72 squeezes the second hydraulic chamber 73, causing the fourth hydraulic rod 74 to move upward. The upward movement of the fourth hydraulic rod 74 drives the upper first gear 75 to move upward in the working groove 711, meshing with the second gear 76, causing the second gear 76 to drive the first gear 75 to rotate. The rotation of the first gear 75 drives the right-side third gear 77 to flip to the right. The rightward flip of the third gear 77 drives the flip frame 712 to flip to the right, enabling the flip frame 712 to move the bent building materials away from below the detection block 5.
[0025] Embodiment III
[0026] See Figures 2-11 , on the basis of Embodiment II, a collection component 8 is provided on the working plate 2. The collection component 8 includes a transfer plate 81. The number of transfer plates 81 is two. A collection box 82 is provided on the right side of the transfer plate 81. A side plate 83 is slidably connected to the inner wall of the collection box 82. A pressing plate 84 is slidably connected to the left side of the side plate 83. A upper pressing block 85 is fixedly connected to the left bottom of the pressing plate 84. The pressing plate 84 provides a supporting force for the use of the upper pressing block 85. A lower pressing block 86 is slidably connected to the left bottom inner wall of the collection box 82. The front and rear ends of the bottom of the pressing plate 84 are fixedly connected with third springs 87. The number of third springs 87 is three. A first sliding groove 88 is opened above the right side of the lower pressing block 86. The first sliding groove 88 is a cuboid. A second sliding groove 89 is opened below the side plate 83. The second sliding groove 89 is a cuboid. A sliding plate 810 is slidably connected in the first sliding groove 88 and the second sliding groove 89. A fourth spring 811 is fixedly connected to the right bottom of the side plate 83. The number of fourth springs 811 is three. The bottom of the third spring 87 is fixedly connected to the left bottom inner wall of the collection box 82. The right side of the fourth spring 811 is fixedly connected to the right bottom of the collection box 82. The bottom of the transfer plate 81 is fixedly connected to the top of the working plate 2. The working plate 2 provides a supporting force for the use of the transfer plate 81, enabling the handling rack 620 to transfer the building materials that have been detected and have no problems into the interior of the collection box 82. The bottom of the collection box 82 is fixedly connected to the top of the working plate 2. The working plate 2 provides a supporting force for the use of the collection box 82. The heights of the first sliding groove 88 and the second sliding groove 89 are the same.
[0027] When the above-mentioned device is in specific use, after the detection block 5 finishes detecting the building materials on the placement rack 622, the building materials that have been detected are placed on the pressing plate 84 on the left side of the collection box 82 through the transfer plate 81 by the movement of the handling rack 620. The building materials that fail the detection are placed on the sliding plate 810 on the right side of the collection box 82 through the flipping rack 712. The qualified and unqualified building materials are separated by the side plate 83. When the number of qualified building materials on the left side of the side plate 83 increases, it can squeeze the pressing plate 84, causing the third spring 87 below the pressing plate 84 to be squeezed downward, making the upper pressing block 85 below the pressing plate 84 squeeze the lower pressing block 86 downward, causing the lower pressing block 86 to push the side plate 83 to the right to squeeze the fourth spring 811, making the sliding plate 810 move to the right in the first chute 88 and the second chute 89, increasing the space for placing the detected materials on the left side of the side plate 83. After taking out the steel pipes in the collection box 82, the space inside the collection box 82 will return to its original state.
[0028] The above is only the preferred specific implementation mode 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 and inventive concept of the present invention, making equivalent substitutions or changes, should be covered by the protection scope of the present invention.
Claims
1. A novel environmentally friendly building material detection device, comprising a support leg (1), the top of which is fixedly connected to a working plate (2), characterized in that: A support frame (3) is fixedly connected to the upper right side of the working plate (2); an electric telescopic rod (4) is fixedly connected to the top inner wall of the support frame (3); a detection pressing block (5) is fixedly mounted on the output end of the electric telescopic rod (4); a transmission assembly (6) is provided on the working plate (2); the transmission assembly (6) comprises a first hydraulic rod (61); a first hydraulic bin (62) is fixedly connected to the left top inner wall of the supporting frame (3); a right inner wall of the first hydraulic bin (62) is slidably connected to the top outer wall of the first hydraulic rod (61); and a bottom inner wall of the first hydraulic bin (62) is slidably connected to the top outer wall of the first hydraulic rod (61). The second hydraulic rod (63) is dynamically connected to the pawl (64) at the front end thereof, the pawl (64) is fixedly connected to the top of the pawl (64), a ratchet (65) is meshed with the top of the pawl (64), a first connecting column (66) is hingedly connected to the left side of the ratchet (65), a first supporting plate (67) is fixedly connected to the left side of the first connecting column (66), a first spring (68) is fixedly connected to the front end of the pawl (64), a second supporting plate (69) is fixedly connected to the front end of the first spring (68), a first belt pulley (610) is fixedly connected to the right side of the ratchet (65), and the first belt pulley (610) is fixedly connected to the left side of the ratchet (65). 0) is provided on the right side of a second pulley (614), the first pulley (610) is connected to the second pulley (614) through a belt (611), a third connecting column (612) is provided on the right side of the first pulley (610), the inner side of the third connecting column (612) at the left rear end is fixedly connected to a first rotating frame (613), the front end of the second pulley (614) is hingedly connected to a fourth connecting column (615), the front end of the fourth connecting column (615) is fixedly connected to a third supporting plate (616), and a fifth connecting column (615) is provided on the right side of the second pulley (614). 617), the right side of the fifth connecting column (617) at the left front end is fixedly connected to the second rotating frame (618), the left tops of the first rotating frame (613) and the second rotating frame (618) are both hinged with a pushing plate (619), the top of the pushing plate (619) is fixedly connected to a transport frame (620), the top of the working plate (2) is fixedly connected to a placement frame (622), the middle inner walls of the first rotating frame (613) and the second rotating frame (618) are fixedly connected to a rotating column (621), and the outer wall of the rotating column (621) movably passes through the bottom of the placement frame (622).
2. A new type of environmentally friendly building material detection device according to claim 1, characterized in that: One end of the third connecting column (612) on the left side of the front end away from the first rotating frame (613) is fixedly connected to the rear end of the first pulley (610), and one end of the fifth connecting column (617) on the right side of the front end away from the second rotating frame (618) is fixedly connected to the rear end of the second pulley (614). The rear ends of the third connecting column (612) and the fifth connecting column (617) at the rear end are hinged to the front end of the cross plate (623).
3. A new type of environmentally friendly building material detection device according to claim 1, characterized in that: The bottom of the first support plate (67) is fixedly connected to the top of the working plate (2), the bottom of the second support plate (69) is fixedly connected to the top of the working plate (2), the bottom of the ratchet (64) is slidably connected to the top of the working plate (2), and the bottom of the cross plate (623) is fixedly connected to the top of the working plate (2).
4. A new type of environmentally friendly building material detection device according to claim 1, characterized in that: The working plate (2) is provided with a removal assembly (7), the removal assembly (7) comprising a second gear (76), the right side of the second gear (76) is meshed with a first gear (75), the right side of the first gear (75) is meshed with a third gear (77), the front end of the third gear (77) is hinged with a fourth support plate (78), the middle part of the rear end of the first gear (75) is hinged with a fixing column, the bottom of the fixing column is fixedly connected with a fourth hydraulic rod (74), a second hydraulic bin (73) is provided above the fourth hydraulic rod (74), and the left top of the second hydraulic bin (73) is hinged with a fourth support plate (78). The inner wall is slidably connected to the bottom outer wall of the fourth hydraulic rod (74); the right inner wall of the second hydraulic bin (73) is slidably connected to the third hydraulic rod (72); the top of the third hydraulic rod (72) is fixedly connected to a placement plate (71); the top of the fixed column is fixedly connected to a second spring (79); the top of the second spring (79) is fixedly connected to a fixing frame (710); a working groove (711) is provided on the working plate (2); the middle part of the rear end of the third gear (77) is fixedly connected to a flip frame (712); the top of the flip frame (712) is arranged below the detection pressure block 5.
5. A new type of environmentally friendly building material detection device according to claim 4, characterized in that: The bottom of the fourth support plate (78) is fixedly connected to the top of the working plate (2), the middle of the second gear (76) is fixedly connected to a rotating column (621) close to one end of the electric telescopic rod (4), and the bottom of the second hydraulic chamber (73) passes through and is fixedly connected to the working plate (2).
6. A new type of environmentally friendly building material detection device according to claim 4, characterized in that: The bottom of the fixing frame (710) is fixedly connected to the top of the working plate (2), and the first gear (75), the second gear (76) and the third gear (77) are all arranged in the working groove (711).
7. A new type of environmentally friendly building material detection device according to claim 1, characterized in that: The working plate (2) is provided with a collecting assembly (8), the collecting assembly (8) comprising a conveying plate (81), a collecting box (82) being provided on the right side of the conveying plate (81), the inner wall of the collecting box (82) being slidably connected to a side plate (83), the left side of the side plate (83) being slidably connected to a pressing plate (84), the left bottom of the pressing plate (84) being fixedly connected to an upper pressing block (85), the inner wall of the left bottom of the collecting box (82) being slidably connected to a lower pressing block (86), the front and rear ends of the pressing plate (84) being fixedly connected to the bottom, and the right upper side of the lower pressing block (86) being provided with a first sliding groove (88), the lower side of the side plate (83) being provided with a second sliding groove (89), the first sliding groove (88) and the second sliding groove (89) being slidably connected to a sliding plate (810), and the right bottom of the side plate (83) being fixedly connected to a fourth spring (811).
8. A new type of environmentally friendly building material detection device according to claim 7, characterized in that: The bottom of the third spring (87) is fixedly connected to the inner wall of the left bottom of the collection box (82), the right side of the fourth spring (811) is fixedly connected to the right bottom of the collection box (82), the bottom of the conveying plate (81) is fixedly connected to the top of the working plate (2), and the bottom of the collection box (82) is fixedly connected to the top of the working plate (2).
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