Building thermal insulation construction device

By introducing the outer frame body and accommodating the lead-out assembly into the insulation board cutting device, the problem of inconvenient sliding and collection in the insulation board during the cutting process is solved, stable conveying and efficient cutting of the insulation board are achieved, and cutting accuracy and applicability of the device are improved.

CN120347839BActive Publication Date: 2025-08-15SHANDONG PROVINCIAL URBAN CONSTR DESIGN INST
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Patent Information

Application Number
CN202510840898.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-23
Publication Date
2025-08-15
Estimated Expiration
2045-06-23

AI Technical Summary

Technical Problem

The existing insulation board cutting device is easy to slide during the conveying process, resulting in poor cutting accuracy, and the cut insulation board is difficult to collect centrally, and has poor applicability.

Method used

A building insulation and thermal insulation construction device is designed. By setting an outer frame body and accommodating the lead-out components on the base, the lead-out drive components are used to drive the push components to move one by one, ensuring the stable conveying and positioning and cutting of the insulation board, and setting storage components and collection and conveying components at the discharge end to realize automatic stacking collection of the insulation board.

Benefits of technology

It improves the cutting accuracy of the insulation board and the applicability of the device, reduces manual operation, and ensures the stable conveying and efficient collection of the insulation board.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of thermal insulation board cutting, and discloses a building thermal insulation construction device, comprising a base, with limiting bars fixedly installed on both sides of the base, an extension rod fixedly installed inside one end of the base, and a conveying roller installed inside the base for uniform rotation. The building thermal insulation construction device is provided with an outer frame at the feeding end of the base, and a replaceable and movable accommodating and exporting component is provided inside the outer frame. The intermittent driving of the export driving component is used to drive the pushing components stored inside the accommodating and exporting components to move one by one, and the pushing components are driven to move by the horizontal driving screw when contacting the horizontal driving screw, and then will resist the thermal insulation board placed on the conveying roller, so that the thermal insulation board can be stably pushed to the discharge end during the horizontal movement of the pushing component, and no sliding will occur during the process, which is more convenient for positioning and cutting of the thermal insulation board to ensure the cutting accuracy.
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Description

Technical Field

[0001] The invention relates to the technical field of thermal insulation board cutting, in particular to a building thermal insulation construction device. Background Art

[0002] Insulation board is a rigid foam plastic board made of polystyrene resin as raw material, combined with other raw materials and polymers, which is heated and mixed while injecting a catalyst, and then extruded and pressed into shape. It has moisture-proof and waterproof properties, which can reduce the thickness of the building's external protective structure, thereby increasing the indoor usable area. Insulation board needs to be cut into corresponding sizes according to actual conditions during the production process and subsequent construction and installation process to facilitate transportation and construction. However, there are still some problems in the use of existing insulation board cutting devices, as follows:

[0003] The existing insulation board cutting device transports the insulation boards through the conveying rollers at the bottom that can be driven by a motor. The conveying rollers are in line contact with the lower surface of the insulation board, and the friction is small, which can easily cause the insulation board to slip during transportation, thereby resulting in poor insulation board transportation and inability to position and cut the insulation board well, resulting in poor cutting accuracy. At the same time, the cut insulation boards cannot be well collected and need to be collected manually piece by piece from the discharge end of the cutting device, which has poor applicability. For this reason, we propose a building thermal insulation construction device. Summary of the Invention

[0004] The present invention provides a building thermal insulation construction device, which has the advantages of stable transportation and strong applicability, and solves the problems raised in the above background technology.

[0005] The present invention provides the following technical solutions: a building thermal insulation construction device, comprising a base, two sides of the base are respectively fixedly installed with limit bars, an extension rod is fixedly installed inside one end of the base, a conveying roller is evenly rotatably installed inside the base, an external drive assembly is arranged and installed on the other end of the base, an outer frame is fixedly installed on one end of the base, an opening and closing door is movably installed on one side of the outer frame, an export driving assembly is fixedly installed on the top of the outer frame, a accommodating export assembly is movably provided in the outer frame, a collecting and conveying assembly is fixedly installed on the other end of the base, a cutting assembly is fixedly installed in the middle of the base, a pushing assembly is movably installed inside the accommodating export assembly, an inner motor is provided at the bottom end of the outer frame, and an inner drive screw is fixedly installed on the output shaft of the inner motor;

[0006] The external drive assembly includes a first motor, a rotating wheel is fixedly mounted on the output shaft of the first motor, a transverse driving screw is fixedly mounted on one side of the rotating wheel, and a transmission belt is movably sleeved on the rotating wheel;

[0007] The output drive assembly includes a short support arm, a second motor is fixedly mounted on the short support arm, and a drive gear is fixedly mounted on the output shaft of the second motor;

[0008] The accommodating and exporting assembly includes an accommodating cavity, a slot is provided at the bottom of one end of the accommodating cavity, a limited end head is fixedly installed at the middle of both sides of the accommodating cavity, a limited cross bar is fixedly installed at the top of one end of the accommodating cavity, a single-shot discharge structure is fixedly installed at one end of the accommodating cavity, a boss and a sliding track are respectively provided inside the accommodating cavity, an inner slide groove is provided inside the boss, a collar is fixedly installed at the top of one end of the inner slide groove, and a rack is movably sleeved on the collar;

[0009] The storage assembly includes a support rod, a support leg is fixedly installed at the bottom end of the support rod, a top plate is fixedly installed at the top end of the support rod, a filling support block is movably installed below the support rod, a long slot is opened below the support rod, a first bracket is movably installed on the long slot, and a baffle is fixedly installed on the side of the support rod;

[0010] The collecting and conveying assembly includes a suspension rod, a first electric push rod is fixedly mounted on the bottom end of the suspension rod, a suspension is fixedly mounted on the bottom end of the first electric push rod, expansion brackets are fixedly mounted above both ends of the suspension, and second brackets are fixedly mounted below both ends of the suspension;

[0011] The cutting assembly includes a gantry, a suspension head is movably mounted on the gantry, a cutting blade is fixedly mounted on the bottom end of the suspension head, and a second electric push rod is fixedly mounted on the gantry;

[0012] The pushing assembly includes a pushing block, one side of the pushing block is provided with an inner groove, one end of the bottom of the pushing block is provided with a limiting groove, the other end of the bottom of the pushing block is provided with a threaded groove, the other side of the bottom of the pushing block is movably installed with a roller, and the other side of the pushing block is fixedly installed with a clamping protrusion.

[0013] In a preferred embodiment, one end of the limiting bar is set to abut against one end of the export component, and the other end is set at a position corresponding to the vertical surface on the side where the storage component is located where the cutting component is set. The top height of the limiting bar is lower than the height of the middle of the insulation board after the conveying roller on the base places the insulation board.

[0014] In a preferred embodiment, there are two rotating wheels and they are respectively located at the top end of the base and are rotatable. There are two transverse drive screws and the threads thereon are in opposite directions. The transmission belt is located on the two rotating wheels and is rotatably sleeved. One end of the transverse drive screw extends to one end that accommodates the export assembly.

[0015] In a preferred embodiment, the supporting short arm is fixedly installed on the top side of the outer frame, the second motor is arranged on the outside of the entire accommodating export component, the second motor rotates periodically intermittently, and the driving gear engages with the structure on the accommodating export component.

[0016] In a preferred embodiment, the shape of the accommodating cavity is the same as that of the export drive assembly, the export drive assembly can be opened, and the accommodating cavity is pushed and replenished from the export drive assembly to the inside of the outer frame, the slot and the limit cross bar are located at the same end and have corresponding positions, the limit end is located at the top of the middle part of both sides of the accommodating cavity and is fixed, and the limit end on one side is a semicircular arc structure, and the inner ring of the semicircular arc is provided with an internal thread groove, the limit end is engaged with the internal drive screw, and the limit cross bar and the single-shot discharge structure are arranged in the same vertical position, the boss and the sliding track constitute a structure adapted to the shape of the pushing assembly, the rack is L-shaped, one end is movably inserted in the inner slide groove and is slidably arranged, and the other end passes through the ring and is slidably arranged and engaged with the drive gear, and the upper and lower ends of the rack are provided with limit ribs, and the drive gear is located near the end where the ring is located and engages with the rack.

[0017] In a preferred embodiment, the single-shot discharge structure includes a telescopic rod, the outer sleeve of the telescopic rod is provided with a spring, the top ends of the telescopic rod and the spring are fixedly installed with a limit plug, the bottom ends of the telescopic rod and the spring are both located inside the accommodating cavity and fixedly installed, the limit plug is composed of a horizontal short plate and a plug-in limit block, and the plug-in limit block can be inserted into the bottom end of the pushing component.

[0018] In a preferred embodiment, the number of support rods on one side is two symmetrically arranged and the distance between the two support rods is less than the length of the insulation board after cutting, the support legs are fixedly installed on the side of the base, and a plug-in groove is provided below the support rod at the position of the filling support block, and the filling support block is slidably and telescopically arranged at the plug-in groove, and a long groove is provided on one side of the plug-in groove below the support rod in the middle of the base, and a one-way rotation limit plate is provided at the bottom end of the first bracket. When the first bracket is rotated to the horizontal position, the end extends out of the range of the long groove, that is, the end of the first bracket exceeds the vertical position of the inner side surface of the support rod.

[0019] In a preferred embodiment, the suspension rod is fixedly installed between two support rods, the height between the expansion bracket and the second bracket is equal to the thickness of the insulation board, and the expansion bracket and the second bracket are both composed of a bracket, a support plate rotatably installed thereon, and a one-way rotation limit plate arranged at the bottom end of the support plate.

[0020] In a preferred embodiment, the gantry is U-shaped and its length is greater than the width of the base. The suspension head is located on the gantry and is clamped and slidably arranged. Two second electric push rods are symmetrically arranged at one end of the gantry and their height is adapted to the height of the insulation board.

[0021] In a preferred embodiment, the pushing block is L-shaped and limited and clamped in the accommodating cavity, the inner groove is opened on the side where the short side of the L-shape is located and is arranged corresponding to the clamping protrusion, the limiting groove is opened on the corresponding lower surface of the long side of the L-shape and is provided with an inclined surface structure on the side where the inner groove is located, the limiting plug-in setting can be inserted into the limiting groove, and the side of the clamping protrusion that fits and contacts the insulation board is a rounded structure setting.

[0022] The present invention has the following beneficial effects:

[0023] 1. The building thermal insulation construction device is provided with an outer frame at the feeding end of the base, and a replaceable and movable accommodating and exporting component is provided inside the outer frame. The intermittent drive of the exporting drive component drives the pushing components stored inside the accommodating and exporting components to move one by one, and the pushing components are driven to move by the horizontal driving screw when they contact the horizontal driving screw, and then they will resist the insulation board placed on the conveying roller. In this way, the insulation board can be stably pushed to the discharge end during the horizontal movement of the pushing component, and no sliding will occur during the process, which makes it easier to position and cut the insulation board to ensure the cutting accuracy.

[0024] 2. The building thermal insulation construction device is provided with a storage component and a collection and conveying component at the discharge end of the base. By using the two in combination, when the cut insulation board is moved to this position, the insulation board will be moved to the top of the second bracket, so that the insulation board will be lifted upward under the contraction action of the first electric push rod. When the insulation board is lifted onto the first bracket, the insulation board will be supported by the first bracket, so that the first electric push rod can be extended to make the second bracket return to its position to wait for the arrival of the next insulation board and to be stacked and collected again. In this way, the staff can wait for the insulation boards to be stacked to a specified height before collecting and processing them, which greatly reduces the use of manpower and improves the applicability of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 This is a schematic diagram of the first three-dimensional structure of the present invention;

[0026] Figure 2 This is a schematic diagram of the second three-dimensional structure of the present invention;

[0027] Figure 3 For the present invention Figure 2 A in the middle is an enlarged structural diagram;

[0028] Figure 4This is a schematic diagram of a first partial three-dimensional structure of the present invention;

[0029] Figure 5 This is a schematic diagram of a second partial three-dimensional structure of the present invention;

[0030] Figure 6 A schematic diagram of a three-dimensional structure for accommodating the export assembly and the push assembly of the present invention;

[0031] Figure 7 This is a schematic diagram of the three-dimensional structure of the propulsion assembly of the present invention;

[0032] Figure 8 This is a schematic diagram of the three-dimensional structure of the present invention to accommodate the export component;

[0033] Figure 9 This is a schematic diagram of a first three-dimensional structure of the storage assembly and the collection and transportation assembly connected to each other in the present invention;

[0034] Figure 10 This is a schematic diagram of the second three-dimensional structure of the storage component and the collection and transportation component connected in the present invention.

[0035] In the figure: 1. Base; 2. Limiting bar; 3. Extension rod; 4. External drive assembly; 41. First motor; 42. Rotating wheel; 43. Horizontal drive screw; 44. Transmission belt; 5. Outer frame; 6. Opening and closing door; 7. Export drive assembly; 71. Support short arm; 72. Second motor; 73. Drive gear; 8. Accommodate export assembly; 81. Accommodate cavity; 82. Slot; 83. Limiting end; 84. Limiting cross bar; 85. Single-shot discharge structure; 851. Telescopic rod; 852. Spring; 853. Limiting plug; 86. Boss; 87. Sliding track; 88. Inner slide groove; 89. Ring; 810. Rack; 9. Storage assembly; 91. Support rod; 92. Support leg; 93. Top plate; 94. Filling support block; 95. Long slot; 96. First bracket; 97. Baffle; 10. Collecting and conveying assembly; 101. Suspension rod; 102. First electric push rod; 103. Suspension; 104. Expansion bracket; 105. Second bracket; 11. Cutting assembly; 111. Gantry; 112. Suspension head; 113. Cutting knife; 114. Second electric push rod; 12. Pushing assembly; 121. Pushing block; 122. Inner groove; 123. Limiting groove; 124. Threaded groove; 125. Roller; 126. Clamping protrusion; 13. Internal drive screw. DETAILED DESCRIPTION

[0036] The technical solutions of the present invention will be described clearly and completely below in conjunction with the drawings in the present invention. In addition, the forms of the various structures described in the following embodiments are merely examples. The building thermal insulation construction device involved in the present invention is not limited to the various structures described in the following embodiments. All other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0037] See also Figure 1-4 , a building thermal insulation construction device includes a base 1, on both sides of the base 1 are respectively fixedly installed with limit bars 2, an extension rod 3 is fixedly installed inside one end of the base 1, a conveying roller is evenly rotated inside the base 1, an external drive component 4 is provided and installed at the other end of the base 1, an outer frame 5 is fixedly installed at one end of the base 1, an opening and closing door 6 is movably installed on one side of the outer frame 5, a derivation drive component 7 is fixedly installed on the top of the outer frame 5, and a accommodating derivation component 8 is movably provided in the outer frame 5, a storage component 9 is fixedly installed on the other end of the base 1, and a collecting and conveying component 10 is fixedly installed on the storage component 9, a cutting component 11 is fixedly installed in the middle of the base 1, and a pushing component 12 is movably installed inside the accommodating derivation component 8, an internal motor is provided at the bottom end of the outer frame 5, and an internal drive screw 13 is fixedly installed on the output shaft of the internal motor;

[0038] Compared with the prior art, the present application is provided with an outer frame 5 at the feeding end of the base 1, and a replaceable and movable accommodating and exporting component 8 is provided inside the outer frame 5, and the intermittent driving of the export driving component 7 drives the pushing components 12 stored inside the accommodating and exporting component 8 to move one by one, and the pushing components 12 will be driven to move when contacting the horizontal driving screw 43, and then will resist the insulation board placed on the conveying roller, so that the insulation board can be stably pushed to the discharge end during the horizontal movement of the pushing component 12, and no sliding will occur during the process, which is more convenient for positioning and cutting of the insulation board to ensure the cutting accuracy. The storage component 9 and the collection and conveying component 10, by using the two together, can achieve that when the cut insulation board is moved to this place, the insulation board will move to the top of the second bracket 105, so that the insulation board will be lifted upward under the contraction action of the first electric push rod 102, and when the insulation board is lifted onto the first bracket 96, the insulation board will be supported by the first bracket 96, so that the first electric push rod 102 can be extended to allow the second bracket 105 to return to its position, waiting for the arrival of the next insulation board and stacking and collecting again, so that the staff can wait for the insulation boards to be stacked to the specified height before collecting and processing, which greatly reduces the use of manpower and improves the applicability of the device.

[0039] See also Figure 1-2A building thermal insulation construction device includes a limiting bar 2, one end of the limiting bar 2 is set to abut against one end of the output assembly 8, and the other end is located at the vertical surface corresponding to the side where the storage assembly 9 is located where the cutting assembly 11 is set. The top height of the limiting bar 2 is lower than the height of the middle of the insulation board after the conveying roller on the base 1 is placed.

[0040] In this embodiment, it should be noted that this can ensure that the pushing component 12 moves laterally with the help of the external drive component 4 during the subsequent movement process, and moves laterally normally and stably under the limiting effect of the limiting bar 2 and the limiting effect of the insulation board, so as to ensure the effective movement drive of the insulation board, thereby ensuring the accuracy of the subsequent movement and cutting of the insulation board and ensuring the cutting effect.

[0041] See also Figure 1-2 A building thermal insulation construction device includes an external drive assembly 4, which includes a first motor 41. A rotating wheel 42 is fixedly mounted on the output shaft of the first motor 41, a transverse driving screw 43 is fixedly mounted on one side of the rotating wheel 42, and a transmission belt 44 is movably sleeved on the rotating wheel 42;

[0042] In this embodiment, it should be noted that there are two rotating wheels 42 and they are respectively located at the top end of the base 1 and are rotatable. There are two transverse driving screws 43 and the threads thereon are in opposite directions. The transmission belt 44 is located on the two rotating wheels 42 and is rotatably sleeved. One end of the transverse driving screw 43 extends to one end that accommodates the export component 8. In this way, the first motor 41 can be used to drive the transverse driving screw 43 to rotate, thereby driving the pushing component 12 clamped thereon to move laterally, so that the insulation board placed on the conveying roller can be driven to move laterally without sliding, thereby ensuring the accurate delivery of the insulation board.

[0043] See also Figure 1-4 A building thermal insulation construction device includes an output drive assembly 7, the output drive assembly 7 includes a supporting short arm 71, a second motor 72 is fixedly mounted on the supporting short arm 71, and a driving gear 73 is fixedly mounted on the output shaft of the second motor 72;

[0044] In this embodiment, it should be noted that the supporting short arm 71 is fixedly installed on one side of the top end of the outer frame 5, and the second motor 72 is arranged on the outside of the entire accommodating and exporting component 8. The second motor 72 rotates intermittently periodically, and the driving gear 73 is engaged with the structure on the accommodating and exporting component 8. In this way, the intermittent rotation of the second motor 72 can be used to discharge a pushing component 12 each time, thereby ensuring that each time an insulation board is placed, a pushing component 12 that can push the insulation board to move can be provided at the ends of both sides, thereby ensuring the stable movement of the insulation board.

[0045] See also Figure 1-8 , a building thermal insulation construction device includes a receiving and exporting component 8, which includes a receiving cavity 81, a slot 82 is provided at the bottom of one end of the receiving cavity 81, a limited end 83 is fixedly installed in the middle of both sides of the receiving cavity 81, a limited cross bar 84 is fixedly installed on the top of one end of the receiving cavity 81, a single-shot discharge structure 85 is fixedly installed at one end of the receiving cavity 81, a boss 86 and a sliding track 87 are respectively provided inside the receiving cavity 81, an inner slide groove 88 is provided inside the boss 86, a collar 89 is fixedly installed on the top of one end of the inner slide groove 88, and a rack 810 is movably sleeved on the collar 89;

[0046] In this embodiment, it should be noted that the shape of the accommodating cavity 81 is the same as that of the export drive component 7, the export drive component 7 can be opened, and the accommodating cavity 81 is pushed and replenished from the export drive component 7 to the inside of the outer frame 5, the slot 82 and the limiting cross bar 84 are located at the same end and the positions correspond, the limiting end 83 is located at the top of the middle part of both sides of the accommodating cavity 81 and the limiting end 83 on one side is a semicircular arc structure, and the inner ring of the semicircular arc is provided with an internal thread groove, the limiting end 83 is engaged with the internal drive screw 13, the limiting cross bar 84 and the single-shot discharge structure 85 are arranged in the same vertical position, the boss 86 and the sliding track 87 constitute a structure adapted to the shape of the pushing component 12, and the rack 810 is L-shaped at one end The movable plug is slidably set in the inner slide groove 88, and the other end passes through the ring 89 for sliding and meshing with the driving gear 73. Limiting ribs are set at the upper and lower ends of the rack 810, and the driving gear 73 is located near the end where the ring 89 is located and meshes with the rack 810. In this way, the intermittent rotation of the driving gear 73 drives the rack 810 to move equidistantly, and then the pushing components 12 stored in the accommodating cavity 81 are pushed one by one into the base 1 under the limiting action of the single-shot discharge structure 85. The pushing component 12 can be smoothly clamped between the limiting bar 2 and the insulation board through the extended support action of the extension rod 3, and then the insulation board is pushed to move horizontally for cutting and subsequent transportation and collection under the driving movement of the horizontal driving screw 43.

[0047] See also Figure 4-8 A building thermal insulation construction device includes a single-shot discharge structure 85, which includes a telescopic rod 851, a spring 852 is provided on the outer sleeve of the telescopic rod 851, and a limit block 853 is fixedly installed on the top of the telescopic rod 851 and the spring 852;

[0048] In this embodiment, it should be noted that the bottom ends of the telescopic rod 851 and the spring 852 are both fixedly installed inside the accommodating cavity 81, and the limit plug 853 is composed of a horizontal short plate and a plug-in limit block. The plug-in limit block can be inserted into the bottom end of the pushing component 12. In this way, when the pushing component 12 moves to the position of the limit plug 853, the plug-in limit block can be used to prevent the pushing component 12 that has not been ejected from being separated from the accommodating cavity 81, thereby ensuring that one pushing component 12 can be ejected each time, so as to ensure the applicability of the device and the stability of the transportation and pushing of the insulation board.

[0049] See also Figure 1 、 Figure 2 、 Figure 3 Figure 9 and Figure 10 A building thermal insulation construction device includes a storage assembly 9, which includes a support rod 91, a support leg 92 fixedly mounted on the bottom end of the support rod 91, a top plate 93 fixedly mounted on the top end of the support rod 91, a filling support block 94 movably mounted below the support rod 91, a long slot 95 opened below the support rod 91, a first bracket 96 movably mounted on the long slot 95, and a baffle 97 fixedly mounted on the side of the support rod 91;

[0050] In this embodiment, it should be noted that the number of support rods 91 on one side is two symmetrically arranged, and the distance between the two support rods 91 is less than the length of the insulation board after cutting. The support legs 92 are fixedly installed on the side of the base 1. A plug-in groove is provided at the position of the filling support block 94 below the support rod 91. The filling support block 94 is slidably and telescopically arranged at the plug-in groove. The plug-in groove below the support rod 91 is located on one side of the middle of the base 1 and a long groove 95 is provided. A one-way rotation limit plate is provided at the bottom end of the first bracket 96. When the first bracket 96 is rotated to the horizontal position, the end portion extends out of the range of the long groove 95, that is, the end portion of the first bracket 96 exceeds the vertical position of the inner side surface of the support rod 91. In this way, when the insulation board moves and hits the baffle 97, The collecting and conveying assembly 10 can be used to clamp the insulation board and move it upward, thereby driving the insulation board to move upward. During the upward movement of the insulation board, the first bracket 96 will be pushed and rotated to shrink into the long groove 95. Then, after the lower surface of the insulation board exceeds the height of the first bracket 96, the first bracket 96 will naturally rotate and fall to a horizontal position, forming a support at the bottom of the insulation board. Then the collecting and conveying assembly 10 moves downward again, and the insulation board falls to the upper surface of the first bracket 96 for support and stacking collection. The filling support block 94 can be resisted and contracted during the upward movement of the collecting and conveying assembly 10, and after the collecting and conveying assembly 10 moves downward and leaves, it extends out to form a back support for the position of the long groove 95 to ensure that the position of the long groove 95 will not be deformed to ensure the stability of the stacking and collection of the insulation boards.

[0051] See also Figure 1-10A building thermal insulation construction device includes a collecting and conveying assembly 10, which includes a suspension rod 101. A first electric push rod 102 is fixedly installed at the bottom end of the suspension rod 101. A suspension 103 is fixedly installed at the bottom end of the first electric push rod 102. Expansion brackets 104 are fixedly installed above both ends of the suspension 103. Second brackets 105 are fixedly installed below both ends of the suspension 103.

[0052] In this embodiment, it should be noted that the suspension rod 101 is fixedly installed between the two support rods 91, the height between the expansion bracket 104 and the second bracket 105 is equal to the thickness of the insulation board, and the expansion bracket 104 and the second bracket 105 are both composed of a bracket and a support plate rotatably installed thereon and a one-way rotation limit plate arranged at the bottom end of the support plate. In this way, the expansion bracket 104 can be used to make it contact with the lower surface support of the insulation board collected above during the process of lifting the insulation board, so that there is a certain distance between the lifted insulation board and the collected and stacked insulation boards, thereby avoiding the situation where the bottom insulation board presses against the first bracket 96 and cannot rotate, resulting in the lower insulation board being unable to be lifted, thereby ensuring the stacking collection of the insulation boards.

[0053] See also Figure 1-2 A building thermal insulation construction device includes a cutting assembly 11, the cutting assembly 11 includes a gantry 111, a suspension head 112 is movably mounted on the gantry 111, a cutting blade 113 is fixedly mounted on the bottom end of the suspension head 112, and a second electric push rod 114 is fixedly mounted on the gantry 111;

[0054] In this embodiment, it should be noted that the gantry 111 is U-shaped and its length is greater than the width of the base 1, the suspension head 112 is located on the gantry 111 and is clamped and slidably arranged, and two second electric push rods 114 are symmetrically arranged at one end of the gantry 111 and their height is adapted to the height of the insulation board. In this way, the second electric push rods 114 can be extended to support the side of the insulation board during the cutting process, thereby ensuring the stability of the insulation board during the cutting process.

[0055] See also Figure 1-7 A building thermal insulation construction device includes a pushing component 12, which includes a pushing block 121. An inner groove 122 is provided on one side of the pushing block 121, a limiting groove 123 is provided on one end of the bottom of the pushing block 121, and a threaded groove 124 is provided on the other end of the bottom of the pushing block 121. A roller 125 is movably installed on the other side of the bottom of the pushing block 121, and a clamping protrusion 126 is fixedly installed on the other side of the pushing block 121.

[0056] The inner groove 122 is provided on the side where the short side of the L-shape is located and corresponds to the clamping protrusion 126. The limiting groove 123 is located on the lower surface corresponding to the long side of the L-shape and is provided with an inclined surface structure on the side where the inner groove 122 is located. The limiting plug 853 can be inserted into the limiting groove 123. The side of the clamping protrusion 126 that fits against the insulation board is a rounded structure. In this way, when the pushing block 121 is pushed into the base 1 by the rack 810 and fits against the insulation board, the rounded structure on the clamping protrusion 126 can be used to center the placed insulation board, and the limiting plug 853 can use the existence of the limiting groove 123 to realize the function of discharging the pushing blocks 121 one by one, thereby ensuring the effective use of the structure.

[0057] Working principle: start the first motor 41, the first motor 41 drives the rotating wheel 42 and the horizontal driving screw 43 to rotate, and the insulation board is placed on the conveying roller in the base 1, and then start the second motor 72, the second motor 72 drives the driving gear 73 to rotate, and the driving gear 73 drives the rack 810 to move, and then pushes the pushing component 12 stored in the accommodating cavity 81 onto the horizontal driving screw 43. After the pushing component 12 contacts the side of one end of the insulation board, the insulation board is pushed to move horizontally under the rotation of the horizontal driving screw 43. After the insulation board moves to the bottom of the first motor 41, the transmission belt 44 is extended to clamp the insulation board, and then the horizontal driving screw 43 is used to cut the insulation board. After cutting, After hitting the baffle 97, the first electric push rod 102 is started to contract and drive the suspension 103 to move upward. At this time, the insulation board is located between the expansion bracket 104 and the second bracket 105. It moves up to the bottom end of the insulation board and stops after exceeding the first bracket 96. Then the first electric push rod 102 extends and drives the suspension 103 to move downward. In this way, the insulation board stays on the automatically flipped back tray to complete the storage and stacking. After use, the internal pushing component 12 of the accommodating and exporting component 8 can use the internal motor at the bottom end of the outer frame 5 to drive the internal drive screw 13 to rotate to drive the lower accommodating and exporting component 8 to move upward for replenishment. At the same time, the export drive component 7 at the bottom of the outer frame 5 can also be opened to realize the replenishment of the accommodating and exporting component 8 inside the outer frame 5.

[0058] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A building thermal insulation construction device, comprising a base (1), characterized in that: The base (1) is fixedly provided with a limit bar (2) on both sides, an extension rod (3) is fixedly provided inside one end of the base (1), a conveying roller is evenly rotatably provided inside the base (1), an external drive component (4) is provided on the other end of the base (1), an outer frame (5) is fixedly provided on one end of the base (1), an opening and closing door (6) is movably provided on one side of the outer frame (5), an export drive component (7) is fixedly provided on the top of the outer frame (5), an accommodating export component (8) is movably provided inside the outer frame (5), a storage component (9) is fixedly provided on the other end of the base (1), a collecting and conveying component (10) is fixedly provided on the storage component (9), a cutting component (11) is fixedly provided in the middle of the base (1), a pushing component (12) is movably provided inside the accommodating export component (8), an inner motor is provided at the bottom end of the inner portion of the outer frame (5), and an inner drive screw (13) is fixedly provided on the output shaft of the inner motor; The external drive assembly (4) includes a first motor (41), a rotating wheel (42) is fixedly mounted on the output shaft of the first motor (41), a transverse driving screw (43) is fixedly mounted on one side of the rotating wheel (42), and a transmission belt (44) is movably sleeved on the rotating wheel (42); The output drive assembly (7) comprises a short support arm (71), a second motor (72) is fixedly mounted on the short support arm (71), and a drive gear (73) is fixedly mounted on the output shaft of the second motor (72); The accommodating and exporting component (8) includes an accommodating cavity (81), a slot (82) is provided at the bottom of one end of the accommodating cavity (81), a limiting end (83) is fixedly installed in the middle of both sides of the accommodating cavity (81), a limiting cross bar (84) is fixedly installed at the top of one end of the accommodating cavity (81), a single-shot discharge structure (85) is fixedly installed at one end of the accommodating cavity (81), a boss (86) and a sliding track (87) are respectively provided inside the accommodating cavity (81), an inner slide groove (88) is provided inside the boss (86), a collar (89) is fixedly installed at the top of one end of the inner slide groove (88), and a rack (810) is movably sleeved on the collar (89); The storage assembly (9) includes a support rod (91), a support leg (92) is fixedly mounted on the bottom end of the support rod (91), a top plate (93) is fixedly mounted on the top end of the support rod (91), a filling support block (94) is movably mounted below the support rod (91), a long slot (95) is provided below the support rod (91), a first bracket (96) is movably mounted on the long slot (95), and a baffle (97) is fixedly mounted on the side of the support rod (91); The collecting and conveying assembly (10) comprises a suspension rod (101), a first electric push rod (102) being fixedly mounted on the bottom end of the suspension rod (101), a suspension (103) being fixedly mounted on the bottom end of the first electric push rod (102), expansion brackets (104) being fixedly mounted above both ends of the suspension (103), and second brackets (105) being fixedly mounted below both ends of the suspension (103); The cutting assembly (11) comprises a gantry (111), a suspension head (112) is movably mounted on the gantry (111), a cutting knife (113) is fixedly mounted on the bottom end of the suspension head (112), and a second electric push rod (114) is fixedly mounted on the gantry (111); The pushing assembly (12) includes a pushing block (121), an inner groove (122) is provided on one side of the pushing block (121), a limiting groove (123) is provided on one end of the bottom of the pushing block (121), a threaded groove (124) is provided on the other end of the bottom of the pushing block (121), a roller (125) is movably mounted on the other side of the bottom of the pushing block (121), and a clamping protrusion (126) is fixedly mounted on the other side of the pushing block (121).

2. A building thermal insulation construction device according to claim 1, characterized in that: One end of the limiting bar (2) is arranged to abut against one end of the accommodating export component (8), and the other end is arranged at a position corresponding to the vertical surface of the receiving component (9) on the side where the cutting component (11) is arranged. The top height of the limiting bar (2) is lower than the height of the middle of the insulation board after the conveying roller on the base (1) places the insulation board.

3. A building thermal insulation construction device according to claim 1, characterized in that: There are two rotating wheels (42) and they are respectively located at the top end of the base (1) and are rotatably arranged. There are two transverse driving screws (43) and the threads thereon are in opposite directions. The transmission belt (44) is located on the two rotating wheels (42) and is rotatably sleeved. One end of the transverse driving screw (43) extends to one end of the output assembly (8).

4. A building thermal insulation construction device according to claim 1, characterized in that: The supporting short arm (71) is fixedly installed at one side of the top end of the outer frame (5), and the second motor (72) is arranged outside the entire accommodating and exporting component (8). The second motor (72) rotates intermittently periodically, and the driving gear (73) is engaged with the structure on the accommodating and exporting component (8).

5. A building thermal insulation construction device according to claim 1, characterized in that: The shape of the accommodating cavity (81) is the same as that of the export drive assembly (7). The export drive assembly (7) can be opened. The accommodating cavity (81) is pushed and replenished from the export drive assembly (7) to the inside of the outer frame (5). The slot (82) and the limiting cross bar (84) are located at the same end and have corresponding positions. The limiting end (83) is located at the top of the middle of both sides of the accommodating cavity (81) and is fixed. The limiting end (83) on one side is a semicircular arc structure. The inner ring of the semicircular arc is provided with an internal thread groove. The limiting end (83) is connected to the internal drive screw. (13) engagement, the limiting cross bar (84) and the single-shot discharge structure (85) are arranged at the same vertical position, the boss (86) and the sliding track (87) constitute a structure adapted to the shape of the pushing component (12), the rack (810) is L-shaped, one end of which is movably inserted in the inner slide groove (88) and slidably arranged, and the other end passes through the ring (89) and slides and engages with the driving gear (73), the upper and lower ends of the rack (810) are provided with limiting ribs, and the driving gear (73) is located near the end of the ring (89) and engages with the rack (810).

6. A building thermal insulation construction device according to claim 1, characterized in that: The single-shot discharge structure (85) includes a telescopic rod (851), the outer sleeve of the telescopic rod (851) is provided with a spring (852), the top ends of the telescopic rod (851) and the spring (852) are fixedly installed with a limit plug (853), the bottom ends of the telescopic rod (851) and the spring (852) are both located inside the accommodating cavity (81) and fixedly installed, the limit plug (853) is composed of a short horizontal plate and a plug-in limit block, and the plug-in limit block can be inserted into the bottom end of the pushing component (12).

7. A building thermal insulation construction device according to claim 1, characterized in that: The number of the support rods (91) on one side is two and the distance between the two support rods (91) is less than the length of the insulation board after cutting. The support legs (92) are fixedly installed on the side of the base (1). A plug-in groove is provided below the support rod (91) at the position of the filling support block (94). The filling support block (94) is slidably and telescopically provided at the plug-in groove. A long groove (95) is provided on one side of the plug-in groove below the support rod (91) and located in the middle of the base (1). A one-way rotation limit plate is provided at the bottom end of the first bracket (96). When the first bracket (96) is rotated to the horizontal position, the end portion extends beyond the range of the long groove (95), that is, the end portion of the first bracket (96) exceeds the vertical position of the inner side surface of the support rod (91).

8. A building thermal insulation construction device according to claim 1, characterized in that: The suspension rod (101) is fixedly installed between the two support rods (91), and the height between the expansion bracket (104) and the second bracket (105) is equal to the thickness of the insulation board. The expansion bracket (104) and the second bracket (105) are both composed of a bracket, a support plate rotatably installed thereon, and a one-way rotation limit plate arranged at the bottom end of the support plate.

9. A building thermal insulation construction device according to claim 1, characterized in that: The gantry (111) is U-shaped and has a length greater than the width of the base (1). The suspension head (112) is located on the gantry (111) and is arranged to be clamped and slidable. Two second electric push rods (114) are symmetrically arranged at one end of the gantry (111) and their heights are adapted to the height of the insulation board.

10. A building thermal insulation construction device according to claim 1, characterized in that: The pushing block (121) is L-shaped and limited and is clamped in the accommodating cavity (81). The inner groove (122) is opened on the side where the short side of the L is located and is corresponding to the clamping protrusion (126). The limiting groove (123) is opened on the corresponding lower surface of the long side of the L and is provided with an inclined surface structure on the side where the inner groove (122) is located. The limiting plug (853) can be inserted into the limiting groove (123). The side of the clamping protrusion (126) that fits against the insulation board is a rounded structure.

Citation Information

Patent Citations

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    CN112959485A

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