Integrated heat control multi-layer paving cutting device

Multi-layer material processing equipment driven by motors and hydraulics enables simultaneous sewing and cutting, solving the problem of low efficiency in manual operation and improving production efficiency and product quality.

CN119392456BActive Publication Date: 2025-12-16西昌市卫星科技有限公司
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Patent Information

Application Number
CN202411833272.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-12-16
Estimated Expiration
2044-12-13

AI Technical Summary

Technical Problem

In existing thermal control multi-layer processing technology, manual transfer and operation are inefficient and cannot effectively reduce molding time. Manual fabric spreading is uncontrollable and greatly affected by external factors.

Method used

The machine uses a motor-driven horizontal frame that houses both the sewing and cutting heads to rotate. Combined with hydraulically driven upper and lower pressure plates, it simultaneously sews and cuts multiple layers of material, reducing manual intervention and waiting time.

Benefits of technology

It improved production efficiency, reduced production costs and time, improved product quality, and enabled simultaneous sewing and cutting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of heat control multi-layer processing, in particular to integrated heat control multi-layer sewing and cutting equipment, which comprises a base frame, a sewing and cutting frame and a fixed lower plate. The base frame comprises a side bottom plate, a circular groove one, a material taking table, a support, an upper plate, a material taking frame, a material placing frame, a material placing roller and a motor one. An intermediate groove is arranged on the upper end surface of the base frame, four groups of hydraulic holes are arranged on the intermediate groove, side bottom plates are arranged on the two sides of the base frame, a circular groove one is arranged through the center of the base frame, an annular inner slide is arranged on the inner wall of the circular groove one, the front side of the base frame is provided with a material taking table, the upper end surface of the material taking table is provided with a slide table, and the slide table is provided with a through material outlet. The multi-layer material on the bottom surface is processed, cutting processing can be carried out at the same time of sewing, the waiting time during production is reduced, the work efficiency is greatly improved, and the production cost is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of thermal control multi-layer processing, in particular to an integrated thermal control multi-layer paving, sewing and cutting device. BACKGROUND

[0002] The multi-layer thermal control is a common product on a spacecraft, and the processing technology of the thermal control multi-layer is as follows: first, manual spreading, then manual sewing and shaping, then moving the shaped product to a quilting machine for overall sewing, and finally manually moving the finished product to a computer cutting bed for reverse cutting.

[0003] When the above method is used to process the thermal control multi-layer, manual transfer and operation are adopted, which is labor-intensive and low in efficiency. Moreover, the manual spreading is uncontrollable, and the manual operation is easily affected by external factors.

[0004] Even if the production line combines sewing and cutting together, the multi-process production line cannot completely solve the problem of low efficiency and cannot reduce the forming time.

[0005] Therefore, there is currently a need for an integrated thermal control multi-layer paving, sewing and cutting device that can improve production efficiency. SUMMARY

[0006] Therefore, the present application is made in view of the above problems, and the purpose of the present application is to solve the above problems by using a motor to drive a horizontal frame installed with a sewing head and a cutting head to rotate and process the multi-layer material on the bottom surface. The present application is achieved by the following technical solutions:

[0007] Integrated heat control multi-layer paving and cutting equipment, comprising: a base frame, a cutting frame, a fixed lower plate, the base frame comprising: a side bottom plate, a circular groove one, a material taking table, a support, an upper plate, a material taking frame, a material placing frame, a material placing roller, a motor one, the upper end face of the base frame is provided with an intermediate groove, four groups of hydraulic holes are installed on the intermediate groove, both sides of the base frame are provided with a side bottom plate, a circular groove one is provided through the center of the base frame, an annular inner slide is provided on the inner wall of the circular groove one, the front side of the base frame is provided with a material taking table, the upper end face of the material taking table is provided with a sliding table, the sliding table is provided with a through discharge port, the front and rear sides of the sliding table are respectively provided with two groups of lead screw mounting holes one and lead screw mounting holes two, the upper plate is installed on the base frame, the support is installed on the upper plate, the material taking frame has two groups, which are respectively installed in the two groups of sliding tables, the motor one has two groups, which are installed on the front side of the material taking table, the material placing machine is installed with multiple material placing rollers, the cutting frame comprises: a motor two, a motor three, a bottom support, a sewing machine base, a motor four, a support seat, a support disc, one end of the cutting frame is provided with an end arm, the end arm has an L-shaped frame, the motor two and the motor three are respectively installed on the L-shaped frame, the upper end of the bottom support is provided with the sewing machine base, the lower end of the bottom support is provided with the support seat, one side of the upper end of the bottom support is provided with the motor four, the support disc is installed on the side face of the bottom support through a support wall, the fixed lower plate is located on the intermediate groove, the fixed lower plate is installed on the outer circumferential side of the hydraulic hole through multiple fixed grooves, the fixed upper plate is installed in the multiple hydraulic holes through multiple hydraulic rods

[0008] Preferably, the end of the support has a motor rack one and a motor mounting hole one, the upper end of the motor rack one is provided with a main drive motor, the center of the upper plate is provided with a circular groove two, the circular groove two has a circular slide, the lower end face of the upper plate is provided with a bottom boss, the bottom face of the bottom boss is provided with multiple compaction rollers, and the compaction rollers are located on the intermediate groove

[0009] Preferably, the material taking frame has two groups of screw holes, the material taking frame has two groups of extension rods, each group of extension rods has a suction cup, the material placing machine is provided with two groups of extension arms, multiple tension rollers are installed between the two groups of extension arms, the material collecting machine is arranged opposite to the material placing machine, the material placing machine is installed with multiple material placing rollers, the material collecting machine is installed with multiple material collecting rollers, the multi-layer material is installed on the material placing roller, the lead screw one of the two motors one is respectively installed in the lead screw mounting hole one and the lead screw mounting hole two, the lead screw one is also penetrated in the screw hole, the material placing machine and the material collecting machine are respectively installed on the two groups of side bottom plates, and the multi-layer material is paved on the intermediate groove.

[0010] Preferably, the L-shaped frame has a motor mounting hole two, the cutting frame bottom end is provided with a support sliding seat, the other end of the cutting frame is provided with an end plate, the upper end of the cutting frame is provided with a rotating shaft, the side face is provided with a side vertical plate, the bottom of the side vertical plate is provided with a compression roller, one end of the motor two is connected with the lead screw two, one end of the motor three is connected with the lead screw three, the sliding frame one and the sliding frame two are installed on the two side faces of the cutting frame, the end of the lead screw two and the lead screw three is installed at the end plate, the lead screw two is penetrated in the sewing machine head, the sewing machine head is installed at the sliding frame one, the lead screw three is penetrated in the cutting machine head, and the cutting machine head is installed at the sliding frame two.

[0011] Preferably, one end of the bottom support has an arc-shaped wall, the arc-shaped wall is provided with a screw rod mounting hole three, the other end of the bottom support is provided with a motor rack three and a bottom plate arm, the motor rack three is provided with a motor mounting hole three, the slide rack three is installed on the bottom support, the sewing machine base is installed on the slide rack three, the bottom support is provided with a support output shaft at the bottom, the motor four is installed on the motor rack three, the output shaft of the motor four is connected with one end of the screw rod four, the other end of the screw rod four passes through the motor mounting hole three and the sewing machine base, the support seat is provided with a support output shaft at the upper end, and the support seat is internally provided with a motor.

[0012] Preferably, the support disc is provided with a plurality of groups of rollers, the support disc is provided with a notch, and the support disc is provided with a cutting bottom plate.

[0013] Preferably, the fixed lower plate is provided with a plurality of groups of fixed grooves, and the fixed upper plate is provided with a plurality of groups of hydraulic rods.

[0014] The present application has the following beneficial effects:

[0015] 1. The present application utilizes a motor to drive a horizontal frame provided with a sewing head and a cutting head to rotate, and a machining table at the bottom synchronously rotates with a support disc, so that the bottom surface of the multi-layer material is processed, the cutting processing is performed at the same time of sewing, the waiting time during production is reduced, the work efficiency is greatly improved, and the production cost is reduced.

[0016] 2. The present application utilizes a hydraulic drive upper and lower pressing plate to loosen and clamp the multi-layer material, utilizes a feeding and discharging machine to feed and discharge the multi-layer material when loosening, ensures stable clamping when clamping, reduces manual participation, reduces production time, improves production efficiency, and improves product quality. DETAILED DESCRIPTION

[0017] Figure 1 The present application provides an overall schematic diagram.

[0018] Figure 2 The present application provides an explosion schematic diagram.

[0019] Figure 3 The present application provides a base frame schematic diagram.

[0020] Figure 4 The present application provides a support schematic diagram.

[0021] Figure 5 The present application provides an upper plate first perspective schematic diagram.

[0022] Figure 6 The present application provides an upper plate second perspective schematic diagram.

[0023] Figure 7 A schematic view of a material taking frame according to the present application.

[0024] Figure 8 A schematic view of a material taking machine according to the present application.

[0025] Figure 9 A schematic view of a first perspective of a cutting and sewing device according to the present application.

[0026] Figure 10 A schematic view of a second perspective of a cutting and sewing device according to the present application.

[0027] Figure 11 A schematic view of a detail of a cutting and sewing device according to the present application.

[0028] Figure 12 A schematic view of a cutting frame according to the present application.

[0029] Figure 13 A schematic view of a detail of a cutting and sewing device according to the present application. Figure 2 A schematic view of a detail of a cutting and sewing device according to the present application.

[0030] Figure 14 A schematic view of a bottom support according to the present application.

[0031] Figure 15 A schematic view of a top view of a bottom support according to the present application.

[0032] Figure 16 A schematic view of a support disc according to the present application.

[0033] Figure 17 A schematic view of a lower fixing plate according to the present application.

[0034] Figure 18 A schematic view of an upper fixing plate according to the present application.

[0035] Legend of the figures:

[0036] 10, base frame; 101, middle groove; 102, hydraulic hole; 11, side bottom plate; 12, round groove one; 121, inner slide; 13, material taking table; 131, slide table; 132, discharge port; 133, screw mounting hole one; 134, screw mounting hole two; 14, support; 141, motor frame one; 142, motor mounting hole one; 143, main drive motor; 15, upper plate; 151, round groove two; 152, round slide; 153, bottom boss; 154, compaction roller; 16, material taking frame; 161, screw hole; 162, extension rod; 163, suction cup; 17, material discharging machine; 171, extension arm; 172, tension roller; 173, material collecting machine; 18, material discharging roller; 181, multi-layer material; 182, material collecting roller; 19, motor one; 191, screw one; 20, sewing frame; 201, end arm; 202, L-shaped frame; 203, motor mounting hole two; 204, support sliding seat; 205, end plate; 206, rotating shaft; 207, side vertical plate; 208, compression roller; 21, motor two; 211, screw two; 212, sliding frame one; 213, sewing head; 22, motor three; 221, screw three; 222, sliding frame two; 223, cutting head; 23, bottom support; 231, arc-shaped wall; 232, screw mounting hole three; 233, motor frame three; 234, motor mounting hole three; 235, bottom plate arm; 236, sliding frame three; 24, sewing machine base; 25, motor four; 251, screw four; 26, support seat; 261, support output shaft; 27, support disc; 271, roller; 272, notch; 273, cutting bottom plate; 274, support wall; 30, fixed lower plate; 301, round groove three; 302, fixed groove; 31, fixed upper plate; 311, round groove four; 312, hydraulic rod. DETAILED DESCRIPTION

[0037] Preferred embodiments of the present application will be described in detail with reference to the attached drawings, which are provided as non-limiting examples so that the application will be understood by those skilled in the art; the present application can be implemented in various forms, and therefore the present application is not limited to the embodiments described below; in addition, in order to more clearly describe the present application, components not connected to the present application will be omitted from the drawings.

[0038] As shown in Figure 1 , Figure 2 , the integrated thermal control multi-layer paving and cutting device comprises a base frame 10, a sewing frame 20, and a fixed lower plate 30.

[0039] The base frame 10 comprises a side bottom plate 11, a round groove one 12, a material taking table 13, a support 14, an upper plate 15, a material taking frame 16, a material discharging frame 17, and a material discharging roller 18.

[0040] As shown in Figure 6As shown, the upper end face of the base frame 10 is provided with a middle groove 101, and four groups of hydraulic holes 102 are installed on the middle groove 101. The two side faces of the base frame 10 are provided with two groups of side bottom plates 11.

[0041] The base frame 10 is provided with a through circular groove 12 at the center thereof, and the side wall of the circular groove 12 is provided with an annular inner slide 121.

[0042] The front side of the base frame 10 is provided with a material taking table 13, and the upper end face of the material taking table 13 is provided with a slide table 131. The slide table 131 is provided with a through discharge port 132, and the front and rear side faces of the slide table 131 are respectively provided with two groups of lead screw mounting holes 133 and 134.

[0043] As shown, Figure 3 the end of the support 14 is provided with a motor bracket 141 and a motor mounting hole 142.

[0044] As shown, Figure 1 , Figure 4 the motor bracket 141 is installed with a main drive motor 143.

[0045] As shown, Figure 5 , Figure 6 the upper plate 15 is provided with a circular groove 151 at the center thereof, and the circular groove 151 is provided with a circular slide 152. The lower end face of the upper plate 15 is provided with a bottom boss 153, and the bottom face of the bottom boss 153 is provided with a plurality of compaction rollers 154.

[0046] As shown, Figure 7 the material taking frame 16 is provided with two groups of screw holes 161, and the material taking frame 16 is provided with two groups of extension rods 162. Each group of extension rods 162 is provided with a suction disc 163 for sucking and taking the cut multi-layer material 181.

[0047] As shown, Figure 8 the material discharging machine 17 is provided with two groups of extension arms 171, and a plurality of tension rollers 172 are installed between the two groups of extension arms 171. The material collecting machine 173 is arranged opposite to the material discharging machine 17. The material discharging machine 17 is installed with a plurality of discharging rollers 18, and the material collecting machine 173 is installed with a plurality of collecting rollers 182. The multi-layer material 181 is discharged from the plurality of discharging rollers 18, passes through the plurality of tension rollers 172, and is wound and collected by the plurality of collecting rollers 182.

[0048] As shown, Figure 1 , Figure 2As shown, the upper plate 15 is installed on the base frame 10, the compaction roller 154 is located on the middle groove 101, the support 14 is installed on the upper plate 15, the material taking frame 16 has two groups, which are installed in the two groups of sliding tables 131 respectively, the motor one 19 has two groups, which are installed on the front side of the material taking table 13, the lead screws one 191 of the two groups of motor ones 19 are installed in the lead screw mounting holes one 133 and the lead screw mounting holes two 134 respectively, and the lead screws one 191 also pass through the screw holes 161 and extend out of the rods 162, so that the suction cups 163 can be moved to the inside of the circular groove one 12, the material placing machine 17 and the material collecting machine 173 are installed on the two groups of side bottom plates 11 respectively, and the multi-layer materials 181 are laid on the middle groove 101;

[0049] The sewing and cutting frame 20 comprises a motor two 21, a motor three 22, a bottom support 23, a sewing machine base 24, a motor four 25, a support seat 26 and a support disc 27.

[0050] As shown in the drawings, Figure 11 As shown, the sewing and cutting frame 20 has an end arm 201 at one end, the end arm 201 has an L-shaped frame 202, the L-shaped frame 202 is L-shaped and is used for bearing the motor two 21 and the motor three 22, the L-shaped frame 202 has a motor mounting hole two 203, the sewing and cutting frame 20 has a support sliding seat 204 at the bottom end, the sewing and cutting frame 20 has an end plate 205 at the other end, the sewing and cutting frame 20 has a rotating shaft 206 at the upper end, has a side vertical plate 207 on the side surface, and the side vertical plate 207 has a compression roller 208 at the bottom.

[0051] As shown in the drawings, Figure 9 , Figure 10 , Figure 12 As shown, the motor two 21 and the motor three 22 are installed on the L-shaped frame 202, the motor two 21 has a lead screw two 211, the motor three 22 has a lead screw three 221, the sliding frame one 212 and the sliding frame two 222 are installed on the two side surfaces of the sewing and cutting frame 20, the end portions of the lead screw two 211 and the lead screw three 221 are installed at the end plate 205, the lead screw two 211 passes through the sewing machine head 213, the sewing machine head 213 is installed at the sliding frame one 212, the lead screw three 221 passes through the cutting machine head 223, and the cutting machine head 223 is installed at the sliding frame two 222.

[0052] As shown in the drawings, Figure 9 , Figure 10 , Figure 13 , Figure 14 As shown, the bottom support 23 has an arc-shaped wall 231 at one end, the arc-shaped wall 231 has a lead screw mounting hole three 232, the bottom support 23 has a motor rack three 233 and a bottom plate arm 235 at the other end, and the motor rack three 233 has a motor mounting hole three 234.

[0053] The bottom of the bottom support 23 has a support output shaft 261, the slide frame three 236 is installed on the bottom support 23, the sewing machine base 24 is installed on the slide frame three 236, the motor four 25 is installed at the motor frame three 233, the lead screw four 251 passes through the motor mounting hole three 234, the sewing machine base 24, the support seat 26 has a support output shaft 261 at the upper end, and the support seat 26 has a motor inside;

[0054] As shown in Figure 15 , the support disc 27 has a plurality of groups of rollers 271, the support disc 27 has a notch 272, the support disc 27 has a cutting bottom plate 273, and the support disc 27 has a support wall 274;

[0055] As shown in Figure 16 , the fixed lower plate 30 has a circular groove three 301 at the center, and the fixed lower plate 30 has a plurality of fixed grooves 302;

[0056] As shown in Figure 17 , the fixed upper plate 31 has a circular groove four 311 at the center, and the fixed upper plate 31 has a plurality of hydraulic rods 312 at the lower end surface;

[0057] As shown in Figure 1 , Figure 2 , the cutting frame 20 is installed in the motor mounting hole one 142 through the rotating shaft 206, the rotating shaft 206 is connected with the main drive motor 143, the support slide 204 is installed on the circular slide 152 and can slide, the bottom support 23 is installed in the inner slide 121 through the end, the bottom support 23 is installed on the support output shaft 261 of the support seat 26, the support seat 26 is located on the same ground as the base frame 10, the support disc 27 is fixed and supported by being installed on the side of the bottom support 23 through the support wall 274;

[0058] The fixed lower plate 30 is located on the middle groove 101, the fixed lower plate 30 is installed on the outer circumferential side of the hydraulic hole 102 through a plurality of fixed grooves 302 for positioning, and the fixed upper plate 31 is installed in a plurality of hydraulic holes 102 through a plurality of hydraulic rods 312.

[0059] The basic principle of the application is:

[0060] As shown in Figure 1As shown, when the heat control multilayer material is produced, after the profiled track data is input at the control end, the hydraulic hole 102 drives the hydraulic rod 312 to move upwardly, and then the fixed upper plate 31 moves upwardly, and then the fixed lower plate 30 and the fixed upper plate 31 form a gap. At this time, the material feeding machine 17 and the material collecting machine 173 feed the material, so that the multilayer material 181 is laid on the middle groove 101 and the fixed lower plate 30. In this process, the multilayer material 181 has been compacted by the compacting roller 154, the tension roller 172 and the collecting roller 182, and then the hydraulic hole 102 drives the hydraulic rod 312 to move downwardly, so that the fixed lower plate 30 and the fixed upper plate 31 clamp the multilayer material 181. At this time, the multilayer material 181 covers the circular groove 12, and the supporting disc 27 is located below the multilayer material 181 to support the multilayer material 181.

[0061] Then the main drive motor 143 drives the sewing and cutting frame 20 to rotate counterclockwise around the rotating shaft 206, and then performs sewing and cutting. When the sewing and cutting frame 20 rotates, the motor two 21 and the motor three 22 drive the lead screw two 211 and the lead screw three 221 respectively, so that the sewing head 213 and the cutting head 223 perform different work, so that the multilayer material 181 is cut after being sewn for a distance. When the sewing and cutting frame 20 rotates, the supporting seat 26 drives the supporting output shaft 261 to drive the bottom support 23 to rotate synchronously. When sewing, the motor four 25 drives the sewing base 24 to move synchronously with the sewing head 213 through the lead screw four 251, and performs cooperative sewing work. When cutting, the compression roller 208 compresses the cut multilayer material 181.

[0062] When the sewing and cutting frame 20 rotates one circle, the sewing and cutting work is completed. At this time, the main drive motor 143 stops working, and then the hydraulic hole 102 drives the hydraulic rod 312 to move upwardly, so that the multilayer material 181 is loosened. Then the motor one 19 drives the lead screw one 191 to move the material taking frame 16, so that the extension rod 162 moves between the fixed lower plate 30 and the fixed upper plate 31. The cut multilayer material 181 is taken out by the suction cup 163 and delivered into the discharge port 132. Then the material feeding machine 17 and the material collecting machine 173 use the part of the multilayer material 181 which has not been cut to transport new material to the circular groove 12 for new production work.

Claims

1. An integrated heat-controlled multi-layer paving and cutting apparatus, comprising: Base frame (10), cutting frame (20), fixed lower plate (30); characterized in that: the base frame (10) comprises: side bottom plate (11), round groove one (12), material taking table (13), support (14), upper plate (15), material taking frame (16), discharging machine (17), discharging roller (18), motor one (19), the upper end surface of base frame (10) is equipped with middle groove (101), four groups of hydraulic holes (102) are installed on middle groove (101), both sides of base frame (10) are equipped with side bottom plate (11), the center of base frame (10) is equipped with round groove one (12), the inner wall of round groove one (12) is equipped with annular inner slide (121), the front side of base frame (10) has material taking table (13), the upper end surface of material taking table (13) has slide table (131), slide table (131) has through discharge port (132), the front and back sides of slide table (131) have two groups of screw mounting hole one (133) and screw mounting hole two (134) respectively, upper plate (15) is installed on base frame (10), support (14) is installed on upper plate (15), material taking frame (16) has two groups, which are installed in two groups of slide table (131) respectively, motor one (19) has two groups, which are installed on the front side of material taking table (13), discharging machine (17) is installed with multiple groups of discharging roller (18), cutting frame (20) comprises: motor two (21), motor three (22), bottom support (23), sewing machine base (24), motor four (25), support seat (26), support disc (27), one end of cutting frame (20) has end arm (201), end arm (201) has L-shaped frame (202), motor two (21) and motor three (22) are installed on L-shaped frame (202) respectively, the upper end of bottom support (23) is equipped with sewing machine base (24), the lower end of bottom support (23) is equipped with support seat (26), one side of the upper end of bottom support (23) is equipped with motor four (25), support disc (27) is installed on the side of bottom support (23) through support wall (274), fixed lower plate (30) is located on middle groove (101), fixed lower plate (30) is installed on the outer circumferential side of hydraulic hole (102) through multiple groups of fixed grooves (302), fixed upper plate (31) is installed in multiple groups of hydraulic holes (102) through multiple groups of hydraulic rods (312).

2. The integrated thermal control multi-layer paving and cutting apparatus of claim 1, wherein: The end of support (14) has motor rack one (141) and motor mounting hole one (142), the upper end of motor rack one (141) is installed with main drive motor (143), the center of upper plate (15) has round groove two (151), round groove two (151) has round slide (152), the lower end surface of upper plate (15) has bottom boss (153), the bottom surface of bottom boss (153) has multiple groups of compaction rollers (154), compaction rollers (154) are located on middle groove (101).

3. The integrated thermal control multi-layer paving and cutting apparatus of claim 1, wherein: The material taking frame (16) has two groups of screw holes (161), the material taking frame (16) has two groups of extension rods (162), each group of extension rods (162) has a suction cup (163), the material placing machine (17) is provided with two groups of extension arms (171), a plurality of tension rollers (172) are installed between the two groups of extension arms (171), the material collecting machine (173) is arranged opposite to the material placing machine (17), the material placing machine (17) is installed with a plurality of material placing rollers (18), the material collecting machine (173) is installed with a plurality of material collecting rollers (182), and the multi-layer material (181) is installed on the material placing roller (18).

4. The integrated thermal control multi-layer paving and cutting apparatus according to claim 1 or 3, wherein: The screw rod one (191) of the two motors one (19) is respectively installed in the screw rod mounting hole one (133) and the screw rod mounting hole two (134), the screw rod one (191) penetrates the screw hole (161), the material placing machine (17) and the material collecting machine (173) are respectively installed on the two groups of side bottom plates (11), and the multi-layer material (181) is laid on the middle groove (101).

5. The integrated thermal control multi-layer paving and cutting apparatus of claim 1, wherein: The L-shaped frame (202) has a motor mounting hole two (203), the cutting frame (20) is provided with a support sliding seat (204) at the bottom end, the cutting frame (20) is provided with an end plate (205) at the other end, the cutting frame (20) is provided with a rotating shaft (206) at the upper end, and the side face is provided with a side vertical plate (207), and the bottom of the side vertical plate (207) is provided with a pressing roller (208).

6. The integrated thermal control multi-layer paving and cutting apparatus of claim 5, wherein: One end of the motor two (21) is connected with the screw rod two (211), one end of the motor three (22) is connected with the screw rod three (221), the sliding frame one (212) and the sliding frame two (222) are installed on the two side faces of the cutting frame (20), the end portions of the screw rod two (211) and the screw rod three (221) are installed at the end plate (205), the screw rod two (211) penetrates the sewing machine head (213), the sewing machine head (213) is installed at the sliding frame one (212), the screw rod three (221) penetrates the cutting machine head (223), and the cutting machine head (223) is installed at the sliding frame two (222).

7. The integrated thermal control multi-layer paving and cutting apparatus of claim 1, wherein: The bottom support (23) has an arc-shaped wall (231) at one end, the arc-shaped wall (231) is provided with a screw rod mounting hole three (232), the other end of the bottom support (23) is provided with a motor frame three (233) and a bottom plate arm (235), the motor frame three (233) is provided with a motor mounting hole three (234), the sliding frame three (236) is installed on the bottom support (23), and the sewing machine base (24) is installed on the sliding frame three (236).

8. The integrated thermal control multi-layer paving and cutting apparatus of claim 7, wherein: The bottom support (23) has a support output shaft (261) at the bottom, the motor four (25) is installed on the motor frame three (233), the output shaft of the motor four (25) is connected with one end of the screw rod four (251), the other end of the screw rod four (251) penetrates the motor mounting hole three (234) and the sewing machine base (24), the support seat (26) has a support output shaft (261) at the upper end, and the support seat (26) has a motor inside.

9. The integrated thermal control multi-layer paving and cutting apparatus of claim 1, wherein: The support disc (27) is provided with a plurality of rollers (271), the support disc (27) is provided with a notch (272), the support disc (27) is provided with a cutting bottom plate (273), and the lower end of the support disc (27) is provided with a support wall (274).

10. The integrated thermal control multi-layer paving and cutting apparatus of claim 1, wherein: The fixed lower plate (30) is provided with a circular groove three (301) at the center, a plurality of fixed grooves (302), a circular groove four (311) at the center of the fixed upper plate (31), and a plurality of hydraulic rods (312) on the lower end surface of the fixed upper plate (31).

Citation Information

Patent Citations

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