CN216966654U - Cutting device for hydrophilic memory sponge - Google Patents
Cutting device for hydrophilic memory sponge Download PDFInfo
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- CN216966654U CN216966654U CN202122513566.2U CN202122513566U CN216966654U CN 216966654 U CN216966654 U CN 216966654U CN 202122513566 U CN202122513566 U CN 202122513566U CN 216966654 U CN216966654 U CN 216966654U
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- cutting
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- bull stick
- hydrophilic
- gyro wheel
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Abstract
The utility model discloses a cutting device for hydrophilic memory sponge, which comprises a cutting table, a feeding unit, an adjusting unit and a laser cutting main body, wherein the feeding unit is arranged on the cutting table; the bottom side of the cutting table is provided with an adjusting unit, and the laser cutting main body is arranged at the upper right of the cutting table; the material loading unit contains power component, drive assembly, bull stick, gyro wheel and fixed plate, both ends all are equipped with the fixed plate around the cutting bed, and two fixed plate inboards correspond, the fixed plate is the L type, the perpendicular end of fixed plate is connected with the upside of cutting bed, the equidistance is equipped with the bull stick on the horizontal end of fixed plate, the upper end of bull stick rotates with the horizontal end of fixed plate to be connected, the gyro wheel has been cup jointed in the lower extreme outside of bull stick, and the outside of gyro wheel is equipped with anti-skidding coating, puts sponge material in the middle of the both sides gyro wheel, drives the bull stick through power component and drive assembly and rotates to the control gyro wheel drives, and cutting efficiency is high, and the flexibility is high, easily adjusts processing parameter.
Description
Technical Field
The utility model relates to the technical field of memory sponge processing, in particular to a cutting device for hydrophilic memory sponge.
Background
The hydrophilic memory cotton, also called second generation memory cotton, is a brand new environment-friendly material, integrates most of the advantages of memory cotton and latex products in the market, and is easy to harden under the condition of low temperature because the memory cotton is easily influenced by the temperature.
Application number 202022465958.1 has proposed a hydrophilic polyurethane foam padding automatic cutting device among the prior art, including workstation, laser cutter, fixed block, stripper plate, second carousel and polyurethane foam padding main part, the installing frame is all installed at the both ends on workstation top.
The cutting efficiency is low, the flexibility is poor, and the processing parameters are not easy to adjust.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is to overcome the existing defects, and provide the cutting device for the hydrophilic memory sponge, which has the advantages of high cutting efficiency, high flexibility, easy adjustment of processing parameters and capability of effectively solving the problems in the background art.
In order to achieve the purpose, the utility model provides the following technical scheme: the cutting device for the hydrophilic memory sponge comprises a cutting table, a feeding unit, an adjusting unit and a laser cutting main body;
cutting table: the bottom side of the laser cutting machine is provided with an adjusting unit, and the laser cutting main body is arranged at the upper right part of the cutting table;
a feeding unit: contain power component, transmission assembly, bull stick, gyro wheel and fixed plate, both ends all are equipped with the fixed plate around the cutting bed, and two fixed plate inboards correspond, the fixed plate is the L type, the perpendicular end of fixed plate is connected with the upside of cutting bed, the end equidistance is equipped with the bull stick on the horizontal end of fixed plate, the upper end of bull stick rotates with the horizontal end of fixed plate to be connected, the gyro wheel has been cup jointed in the lower extreme outside of bull stick, and the outside of gyro wheel is equipped with anti-skidding coating. Sponge material is placed between the rollers on the two sides, the rotating rod is driven to rotate through the power assembly and the transmission assembly, so that the sponge material is driven to move forwards and feed through the control rollers, and when the sponge material is moved to the position below the laser cutting main body, the sponge material is cut through the laser cutting main body.
Furthermore, the transmission assembly comprises chain wheels and chains, the upper end of the rotating rod is provided with two chain wheels, the chain wheel on the front side is meshed with one chain, and the chain wheel on the rear side is meshed with the other chain. The chain is controlled to rotate through the power assembly, so that the chain wheels on the same side are controlled to rotate.
Further, power component contains the motor, the motor has two, and two motors pass through the motor frame and fix respectively at the horizontal end upside of two fixed plates, and the output shaft of motor is connected with the central point of the first sprocket of left end position respectively, and the input of motor is connected with external power supply's output electricity through external control switch group. The motor drives a chain wheel to rotate, the chain rotates, and therefore the chain wheel on the same side is controlled to rotate, and the roller is controlled to drive the sponge material to move forwards and feed.
Further, still include the mount, the mount is the U type, and the open end of mount is connected with the right-hand member upside of cutting bed, the inside top side at the mount is installed to the laser cutting main part. The position of the laser cutting main body is fixed through a fixing frame.
Furthermore, the adjusting unit comprises a screw rod, a sliding block, a through groove and fixing blocks, the through groove is formed in the upper side of the cutting table, the sliding block is arranged on the bottom side of the vertical end of the fixing plate and longitudinally slides along the through groove, the fixing block is arranged on the bottom side of the cutting table, the rear end of the screw rod is rotatably connected with the front side of the fixing block, two sections of reverse threads are arranged at two ends of the screw rod, and two ends of the screw rod are respectively in threaded connection with screw holes in the two fixing blocks. The screw rod and the two fixed blocks are in threaded motion by controlling the screw rod to rotate, so that the fixed plates on the two sliding blocks are driven to synchronously and reversely move, and the sponges with different widths are loaded.
Furthermore, the adjusting unit also comprises a twist cap, and the front end of the lead screw is provided with the twist cap. The cap is turned to facilitate the rotation of the lead screw.
Compared with the prior art, the utility model has the beneficial effects that: the cutting device has the following advantages:
1. sponge materials are placed between the rollers on the two sides, the rotating rod is driven to rotate through the power assembly and the transmission assembly, so that the rollers are controlled to drive the sponge materials to move forwards and feed, and the cutting speed is increased through automatic feeding.
2. The screw rod and the two fixed blocks are in threaded motion by controlling the screw rod to rotate, so that the fixed plates on the two sliding blocks are driven to synchronously and reversely move, and the sponges with different widths are loaded.
3. The chain wheel is driven to rotate by the motor, and the chain rotates, so that the chain wheel on the same side is controlled to rotate, and energy is saved.
Drawings
FIG. 1 is a schematic side view of the present invention.
In the figure: the laser cutting machine comprises a cutting table 1, a fixing frame 2, a feeding unit 3, a motor 31, a chain wheel 32, a rotating rod 33, a chain 34, a roller 35, a fixing plate 36, an adjusting unit 4, a twist cap 41, a lead screw 42, a sliding block 43, a through groove 44, a fixing block 45 and a laser cutting main body 5.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1, the present embodiment provides a technical solution: the cutting device for the hydrophilic memory sponge comprises a cutting table 1, a feeding unit 3, an adjusting unit 4 and a laser cutting main body 5;
cutting table 1: is provided with an adjusting unit 4, and a laser cutting body 5 is arranged at the upper right of the cutting table 1;
the feeding unit 3: contain power component, transmission assembly, bull stick 33, gyro wheel 35 and fixed plate 36, both ends all are equipped with fixed plate 36 around cutting bed 1, and two fixed plate 36 inboards correspond, fixed plate 36 is the L type, fixed plate 36's perpendicular end is connected with cutting bed 1's upside, the equidistance is equipped with bull stick 33 on fixed plate 36's the horizontal end, the upper end of bull stick 33 rotates with fixed plate 36's horizontal end to be connected, gyro wheel 35 has been cup jointed in the lower extreme outside of bull stick 33, and the outside of gyro wheel 35 is equipped with anti-skidding coating. Sponge material is placed in the middle of the rollers 35 on the two sides, the rotating rod 33 is driven to rotate through the power assembly and the transmission assembly, so that the sponge material is driven to move forwards and feed by the control rollers 35, and when the sponge material is moved to the lower part of the laser cutting main body 5, the sponge material is cut through the laser cutting main body 5.
The transmission assembly comprises chain wheels 32 and chains 34, the upper end of the rotating rod 33 is provided with the chain wheels 32, the number of the chains 34 is two, the chain wheel 32 on the front side is meshed with one chain 34, and the chain wheel 32 on the rear side is meshed with the other chain 34. The chain 34 is controlled to rotate by the power assembly, thereby controlling the sprocket 32 on the same side to rotate.
The power assembly comprises two motors 31, the two motors 31 are fixed on the upper sides of the transverse ends of the two fixing plates 36 through motor frames, the output shafts of the motors 31 are connected with the center positions of the first chain wheels 32 at the left ends respectively, and the input ends of the motors 31 are electrically connected with the output ends of an external power supply through an external control switch group. A chain wheel 32 is driven to rotate by a motor 31, a chain 34 rotates, and therefore the chain wheel 32 on the same side is controlled to rotate, and a roller 35 is controlled to drive the sponge materials to move forwards and feed.
Still include mount 2, mount 2 is the U type, and the open end of mount 2 is connected with the right-hand member upside of cutting bed 1, and laser cutting main part 5 is installed on the inside top side of mount 2. The position of the laser cutting body 5 is fixed by the fixing frame 2.
The adjusting unit 4 comprises a screw rod 42, a sliding block 43, a through groove 44 and a fixing block 45, the through groove 44 is arranged on the upper side of the cutting table 1, the sliding block 43 is arranged on the bottom side of the vertical end of the fixing plate 36, the sliding block 43 and the through groove 44 longitudinally slide, the fixing block 45 is arranged on the bottom side of the cutting table 1, the rear end of the screw rod 42 is rotatably connected with the front side of the fixing block 45, two reverse threads are arranged at two ends of the screw rod 42, and two ends of the screw rod 42 are respectively in threaded connection with screw holes in the two fixing blocks 45. The screw rod 42 and the two fixing blocks 45 are in threaded motion by controlling the screw rod 42 to rotate, so that the fixing plates 36 on the two sliding blocks 43 are driven to synchronously and reversely move, and the sponges with different widths are fed.
The adjusting unit 4 further comprises a twist cap 41, and the front end of the lead screw 42 is provided with the twist cap 41. The twist cap 41 facilitates rotation of the lead screw 42.
The working principle of the cutting device for the hydrophilic memory sponge provided by the utility model is as follows: the staff puts sponge material in the middle of both sides gyro wheel 35, it rotates to drive a sprocket 32 through motor 31, chain 34 rotates, thereby control rotates with the sprocket 32 of one side, thereby the gyro wheel 35 of control both sides drives sponge material antedisplacement material loading, when the material removes the below of laser cutting main part 5, cut it through laser cutting main part 5, control lead screw 42 rotates, make lead screw 42 and two fixed block 45 screw motion, drive the synchronous opposite motion of fixed plate 36 on two sliders 43, can carry out the material loading to the sponge of different widths.
It is noted that the motor 31 disclosed in the above embodiment has a model number HB556, and the control switch set controls the operation of the motor 31 by a method commonly used in the prior art.
The above description is only an embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications of equivalent structures and equivalent processes, which are made by using the contents of the present specification and the accompanying drawings, or directly or indirectly applied to other related technical fields, are included in the scope of the present invention.
Claims (6)
1. A cutting device for hydrophilic memory sponge, its characterized in that: comprises a cutting table (1), a feeding unit (3), an adjusting unit (4) and a laser cutting main body (5);
cutting table (1): the bottom side of the cutting table is provided with an adjusting unit (4), and a laser cutting main body (5) is arranged at the upper right part of the cutting table (1);
feeding unit (3): contain power pack, drive assembly, bull stick (33), gyro wheel (35) and fixed plate (36), both ends all are equipped with fixed plate (36) around cutting bed (1), and two fixed plate (36) inboards correspond, fixed plate (36) are the L type, the perpendicular end of fixed plate (36) is connected with the upside of cutting bed (1), the equidistance is equipped with bull stick (33) on the horizontal end of fixed plate (36), the upper end of bull stick (33) is rotated with the horizontal end of fixed plate (36) and is connected, gyro wheel (35) have been cup jointed in the lower extreme outside of bull stick (33), and the outside of gyro wheel (35) is equipped with anti-skidding coating.
2. The cutting device for a hydrophilic memory sponge according to claim 1, wherein: the transmission assembly comprises chain wheels (32) and chains (34), the chain wheels (32) are arranged at the upper ends of the rotating rods (33), the number of the chains (34) is two, the chain wheels (32) on the front side are meshed with one chain (34) and connected, and the chain wheels (32) on the rear side are meshed with the other chain (34).
3. The cutting device for a hydrophilic memory sponge according to claim 1, wherein: the power component comprises two motors (31), the two motors (31) are fixed on the upper sides of the transverse ends of the two fixing plates (36) through motor frames, output shafts of the motors (31) are connected with the center of a first chain wheel (32) at the left end, and the input ends of the motors (31) are electrically connected with the output end of an external power supply through an external control switch group.
4. The cutting device for a hydrophilic memory sponge according to claim 1, wherein: still include mount (2), mount (2) are the U type, and the open end of mount (2) is connected with the right-hand member upside of cutting bed (1), install on the inside top side of mount (2) laser cutting main part (5).
5. The cutting device for a hydrophilic memory sponge according to claim 1, wherein: adjusting element (4) contain lead screw (42), slider (43), lead to groove (44) and fixed block (45), the upside of cutting bed (1) is equipped with leads to groove (44), the perpendicular end bottom side of fixed plate (36) is equipped with slider (43), slider (43) and lead to groove (44) longitudinal sliding, the bottom side of cutting bed (1) is equipped with fixed block (45), the rear end of lead screw (42) is connected with the front side rotation of fixed block (45), the both ends of lead screw (42) are equipped with two sections reverse screw, the both ends of lead screw (42) respectively with two screw threaded connection on fixed block (45).
6. The cutting device for a hydrophilic memory sponge according to claim 5, wherein: the adjusting unit (4) further comprises a twist cap (41), and the front end of the lead screw (42) is provided with the twist cap (41).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122513566.2U CN216966654U (en) | 2021-10-19 | 2021-10-19 | Cutting device for hydrophilic memory sponge |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122513566.2U CN216966654U (en) | 2021-10-19 | 2021-10-19 | Cutting device for hydrophilic memory sponge |
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CN216966654U true CN216966654U (en) | 2022-07-15 |
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CN202122513566.2U Active CN216966654U (en) | 2021-10-19 | 2021-10-19 | Cutting device for hydrophilic memory sponge |
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2021
- 2021-10-19 CN CN202122513566.2U patent/CN216966654U/en active Active
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