Building thermal insulation material cutting equipment
By designing adjustment and auxiliary mechanisms, and combining them with collection components, the problem of existing building insulation material cutting equipment being unable to be precisely adjusted and stably clamped has been solved, achieving efficient and precise cutting results and improved safety.
Patent Information
- Application Number
- CN202423286817.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing building insulation material cutting equipment cannot be precisely adjusted according to the material size, resulting in low cutting efficiency, inconsistent product quality, and a lack of stable clamping during the cutting process, which can easily cause material deviation and shaking, affecting cutting accuracy and safety.
The system employs an adjustment mechanism and auxiliary mechanisms, combining a slide, lead screw, bevel gear transmission, and threaded rod limiting clamp to achieve flexible adjustment and stable clamping of material size. Combined with a collection component, a fan and suction system are used to collect cutting debris, preventing environmental pollution and equipment damage.
It enables precise cutting based on material size, improving cutting accuracy and efficiency, ensuring material stability, preventing deviation, enhancing finished product quality and safety, and extending equipment life.
Smart Images

Figure CN223849346U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of material cutting technology, and in particular to a cutting device for building insulation materials. Background Technology
[0002] Building insulation materials are key materials used to improve the thermal insulation performance of buildings. They effectively maintain the indoor temperature of buildings by reducing the conduction, convection and radiation of heat from the interior to the exterior, thereby achieving the goals of energy conservation, consumption reduction and improved living comfort.
[0003] Cutting building insulation materials is necessary to adapt to the size, shape, and design requirements of different buildings, ensuring that the insulation layer can fit tightly against the building surface, reducing heat loss, improving insulation performance, and optimizing installation efficiency and overall aesthetics.
[0004] Currently, while existing thermal insulation material cutting equipment can complete basic cutting tasks, it cannot be precisely adjusted according to the material size, resulting in low cutting efficiency and inconsistent product quality. In addition, the lack of stable clamping during the cutting process can easily cause material deviation and shaking, affecting cutting accuracy and safety. Utility Model Content
[0005] The purpose of this invention is to address the shortcomings of existing technologies, such as the inability to precisely adjust the cutting according to the material size, resulting in low cutting efficiency and inconsistent product quality, as well as the lack of stable clamping during the cutting process, which easily causes material deviation and shaking, affecting cutting accuracy and safety. Therefore, this invention proposes a cutting device for building insulation materials.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A cutting device for building insulation materials, comprising:
[0008] The table has a slot on its top, and a cutting blade is installed inside the slot. The bottom of the table is surrounded by a barrier. The top of the table has fixed blocks on both sides. Two guide rods are symmetrically fixed on the side of the two fixed blocks that are close to each other. The two guide rods are slidably mounted on the outside of the same moving frame.
[0009] An adjustment mechanism is installed on the table and is used to adjust the size of the material to be cut.
[0010] A collection component, set on the table and enclosure, is used to collect debris generated during cutting;
[0011] An auxiliary mechanism is installed on the movable frame and is used to define the position of the material.
[0012] In a possible design, the adjusting mechanism comprises a sliding groove formed in the top of the table, a sliding seat slidably arranged in the sliding groove, a stopper fixedly arranged on the top of the sliding seat, two support frames I fixedly arranged at both ends of the sliding groove, a same screw rod rotatably arranged on the side of the two support frames I close to each other, the screw rod being in threaded connection with the sliding seat, a connecting rod fixedly arranged on one end of the screw rod, a driven bevel gear fixedly arranged on the outer portion of the connecting rod, two support frames II fixedly arranged on the bottom of the table, a same rotating rod rotatably arranged on the side of the two support frames II close to each other, a driving bevel gear fixedly arranged on one end of the rotating rod close to the driven bevel gear, the driving bevel gear being in engagement with the driven bevel gear, and a hand wheel I fixedly arranged on the other end of the rotating rod.
[0013] In a possible design, the collecting assembly comprises a shell fixedly arranged on the bottom of the table and covering the cutting piece, a connecting pipeline fixedly and communicatively arranged on one side of the shell, a suction box embeddedly arranged on one side of the fence, a fan fixedly and communicatively arranged on the bottom of the suction box, the other end of the connecting pipeline being in communication with the suction box, and a filter core detachably and sealingly inserted into one side of the suction box.
[0014] In a possible design, the auxiliary mechanism comprises a threaded rod penetratingly and threadedly connected to one side of the moving frame, a limiting clamp rotatably arranged on the front end of the threaded rod, and a hand wheel II fixedly arranged on the rear end of the threaded rod.
[0015] In a possible design, one side of the stopper is fixedly arranged with an arrow, and the top of the table is fixedly arranged with a scale at the position of the arrow.
[0016] In a possible design, the inside of the sliding groove is slidably arranged with an organ cover, and one end of the organ cover is fixedly connected with one side of the stopper.
[0017] In a possible design, the bottom of the table is fixedly arranged with a motor, and one end of the output shaft of the motor is rotatably penetratingly connected with the shell and the cutting piece.
[0018] In the application, when starting to use, first, the device is carried to the position where it is needed to be used, then the whole device is powered on, then the building thermal insulation material to be cut is taken out, when the thermal insulation layer material of different sizes or different specifications needs to be cut, first, the rotating hand wheel one drives the rotating rod to rotate, the rotating rod rotates to drive the driving bevel gear to rotate, the driving bevel gear rotates to drive the driven bevel gear to rotate, the driven bevel gear rotates to drive the lead screw to rotate synchronously, the rotation of the lead screw can drive the blocking frame to slide in the sliding groove, the scale on the scale indicated by the arrow is observed during the movement of the blocking frame, when the arrow points to the appropriate scale, the rotation of the hand wheel one is stopped, so that the adjustment of the position of the blocking frame is completed, and the flexible adjustment according to the size of the thermal insulation material to be cut can be carried out;
[0019] Then the thermal insulation material is placed on the table, at this time, the hand wheel two is rotated, the threaded rod is synchronously rotated on the moving frame and elongated to the direction of the thermal insulation material, the threaded rod is elongated to drive the limiting clamp block to move to the direction of the thermal insulation material until the limiting clamp block is attached to the thermal insulation material (at this time, one side of the thermal insulation material is attached to the limiting clamp block, and the other side is attached to the blocking frame).
[0020] At this time, the motor is started, one end of the motor output shaft drives the cutting piece to rotate at high speed, at the same time, the fan is started, then the cutting of the thermal insulation material is started, in the process of cutting, the fan can suck the inside of the suction box, at the same time, the connecting pipeline is connected between the suction box and the shell cover to communicate, so that the suction of the fan also acts on the shell cover to generate suction force, the suction force in the shell cover sucks the debris generated in the process of the cutting piece rotating and cutting, then the connecting pipeline is used to suck the debris into the suction box, and the debris sucked into the suction box is filtered by the filter core to prevent the debris from entering the fan to damage the fan.
[0021] The utility model has the following beneficial effects:
[0022] In the utility model, through the setting of the adjusting mechanism, the flexible adjustment of the position of the blocking frame is realized, so that the accurate adjustment according to the cutting demand of the thermal insulation layer material of different sizes or different specifications is realized, and the accuracy and flexibility of cutting are improved.
[0023] In the utility model, through the setting of the collecting assembly, the debris generated in the process of cutting is effectively collected, the environmental pollution and safety hazards caused by the scattering of the debris are avoided, the components are protected from the damage of the debris, and the overall performance and service life of the equipment are improved.
[0024] In the utility model, through the setting of the auxiliary mechanism, the stability and accuracy of the material to be cut in the process of cutting are ensured, the cutting error caused by the deviation or shaking of the material is effectively prevented, and the cutting efficiency and product quality are improved.
[0025] The utility model discloses through the combination of adjusting mechanism and auxiliary mechanism, realized the flexible adjustment of cutting material size and the stable clamping in the cutting process, not only improved the accuracy and efficiency of cutting, also ensured the security and stability of cutting operation. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 It is an overall front view structural schematic diagram of the building thermal insulation material cutting equipment.
[0027] Figure 2 It is an overall side view structural schematic diagram of the building thermal insulation material cutting equipment.
[0028] Figure 3 It is a table desk bottom view structural schematic diagram of the building thermal insulation material cutting equipment.
[0029] Figure 4 It is a table desk bottom view and partial split structural schematic diagram of the building thermal insulation material cutting equipment.
[0030] In the drawing: 1, table desk;2, fence;3, cutting piece;4, fixed block;5, guide rod;6, sliding slot;601, piano case;7, sliding seat;8, blocking frame;801, arrow;802, scale;9, support frame one;901, screw;10, driven bevel gear;11, support frame two;12, rotating rod;13, driving bevel gear;14, hand wheel one;15, moving frame;16, threaded rod;1601, limit clamp block;17, hand wheel two;18, shell cover;19, suction box;20, fan;21, connecting pipeline;22, filter element;23, motor. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.
[0032] Embodiment 1
[0033] Reference Figures 1-4 A cutting equipment, comprising:
[0034] The table desk 1 is designed with a slot on the top for placing the cutting piece 3, and two fixed blocks 4 are fixed on both sides of the top of the table desk 1, and two guide rods 5 are arranged on the inner side of the two fixed blocks 4 for supporting and guiding the moving frame 15.
[0035] The core components of the adjusting mechanism include a sliding groove 6, a sliding seat 7, a blocking frame 8, a supporting frame 1 9, a screw rod 901, a connecting rod, a driven bevel gear 10, a supporting frame 2 11, a rotating rod 12, a driving bevel gear 13 and a hand wheel 1 14. The sliding groove 6 is located on the top of the table 1. The sliding seat 7 and the blocking frame 8 are horizontally slid through the sliding groove 6. The screw rod 901 is installed through the supporting frame 1 9 and is threadedly connected with the sliding seat 7 to realize the movement of the sliding seat 7. The driving bevel gear 13 and the driven bevel gear 10 are connected through the rotating rod 12 and the connecting rod and are driven through the rotation of the hand wheel 1 14 to adjust the position of the blocking frame 8.
[0036] The collecting assembly includes a shell 18, a connecting pipeline 21, a suction box 19, a fan 20 and a filter core 22. The shell 18 is fixed on the bottom of the table 1 and covers the cutting blade 3. The connecting pipeline 21 connects the shell 18 with the suction box 19. The fan 20 provides suction force to suck the cutting debris into the suction box 19 through the connecting pipeline 21. The filter core 22 filters the cutting debris to prevent the cutting debris from entering the interior of the fan 20.
[0037] The auxiliary mechanism is composed of a threaded rod 16, a limiting clamp block 1601 and a hand wheel 2 17. The threaded rod 16 is installed through the threaded hole on the moving frame 15. The rotation of the hand wheel 2 17 can drive the threaded rod 16 to move forward and backward to adjust the position of the limiting clamp block 1601 for fixing the cutting insulation material.
[0038] In order to more accurately adjust the position of the blocking frame 8, an arrow 801 is arranged on one side of the blocking frame 8 and a scale 802 is installed on the corresponding position on the top of the table 1.
[0039] The application can be applied to the technical field of building insulation material cutting equipment and can also be applied to other fields applicable to the application.
[0040] Embodiment 2
[0041] Based on the embodiment one, the embodiment two further includes a building insulation material cutting equipment applied to the technical field of building insulation material cutting equipment. In order to keep the inside of the sliding groove 6 clean and the stability of the blocking frame 8, an organ case 601 is installed on both sides of the inside of the sliding groove 6. One end of the organ case 601 is fixedly connected with one side of the blocking frame 8.
[0042] A motor 23 is further installed on the bottom of the table 1. The output shaft of the motor 23 penetrates the shell 18 and is connected with the cutting blade 3 to provide the rotary power required for cutting. The periphery of the slot is surrounded by the surrounding block 2 to prevent the cutting debris from splashing.
[0043] However, as is well known to those skilled in the art, the working principles and wiring methods of the fan 20 and the motor 23 are commonplace and are all conventional methods or common knowledge. They will not be described in detail here. Those skilled in the art can make any selections according to their needs or convenience.
[0044] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A building insulation cutting apparatus, characterised in that, Include: The top of the table (1) is provided with a slot, and the inside of the slot is provided with a cutting piece (3), the bottom of the table (1) is fixedly provided with a fence (2) around, the top of the table (1) is fixedly provided with a fixed block (4) on both sides, the side of the two fixed blocks (4) close to each other is symmetrically fixedly provided with two guide rods (5), and the outside of the two guide rods (5) is slidably provided with the same moving frame (15); Adjusting mechanism, adjusting mechanism is arranged on the table (1) and is used for adjusting according to the size of the required cutting material; Collecting assembly, collecting is arranged on the table (1) and the fence (2) and is used for collecting the debris generated during cutting; Auxiliary mechanism, auxiliary mechanism is arranged on the moving frame (15) and is used for limiting the position of the material.
2. The building insulation cutting apparatus of claim 1, wherein, The adjusting mechanism includes a sliding groove (6) opened in the top of the table (1), a sliding seat (7) slidably arranged in the sliding groove (6), a blocking frame (8) fixedly arranged on the top of the sliding seat (7), two support frames one (9) fixedly arranged on both ends of the sliding groove (6) at the bottom of the table (1), a same screw rod (901) rotatably arranged on the side of the two support frames one (9) close to each other, the screw rod (901) is in threaded connection with the sliding seat (7), one end of the screw rod (901) is fixedly provided with a connecting rod, and the outside of the connecting rod is fixedly provided with a driven bevel gear (10), the bottom of the table (1) is fixedly provided with two support frames two (11) in symmetry, a same rotating rod (12) is rotatably arranged on the side of the two support frames two (11) close to each other, a driving bevel gear (13) is fixedly arranged on one end of the rotating rod (12) close to the driven bevel gear (10), the driving bevel gear (13) is in engagement with the driven bevel gear (10), and the other end of the rotating rod (12) is fixedly provided with a hand wheel one (14).
3. The building insulation cutting apparatus of claim 1, wherein, The collecting assembly includes a shell cover (18) fixedly arranged at the bottom of the table (1) and covering the outside of the cutting piece (3), a connecting pipeline (21) fixedly and communicatively arranged on one side of the shell cover (18), a suction box (19) embeddedly installed on one side of the fence (2), a fan (20) fixedly and communicatively arranged at the bottom of the suction box (19), the other end of the connecting pipeline (21) is in communication with the suction box (19), and a filter core (22) is detachably and sealingly inserted into one side of the suction box (19).
4. The building insulation cutting apparatus of claim 1, wherein, The auxiliary mechanism includes a threaded rod (16) penetratingly and threadedly connected to one side of the moving frame (15), a limit clamp block (1601) rotatably arranged at the front end of the threaded rod (16), and a hand wheel two (17) fixedly arranged at the rear end of the threaded rod (16).
5. The building insulation cutting apparatus of claim 2, wherein, One side of the blocking frame (8) is fixedly provided with an arrow (801), and the top of the table (1) is fixedly provided with a scale (802) at the position of the arrow (801).
6. The building insulation cutting apparatus of claim 2, wherein, The inside of the sliding groove (6) is slidably provided with an organ cover (601) on both sides, and one end of the organ cover (601) is fixedly connected with one side of the blocking frame (8). One side of the blocking frame (8) is fixedly provided with an arrow (801), and the top of the table (1) is fixedly provided with a scale (802) at the position of the arrow (801).
7. The building insulation cutting apparatus of claim 1, wherein, The bottom of the table (1) is fixedly provided with a motor (23), one end of an output shaft of the motor (23) is rotatably penetrated through a shell cover (18) and is fixedly connected with the cutting piece (3).