CN220945470U - Cutting equipment for processing pearl cotton - Google Patents

Cutting equipment for processing pearl cotton Download PDF

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Publication number
CN220945470U
CN220945470U CN202322295164.9U CN202322295164U CN220945470U CN 220945470 U CN220945470 U CN 220945470U CN 202322295164 U CN202322295164 U CN 202322295164U CN 220945470 U CN220945470 U CN 220945470U
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transverse
groove
sides
mounting groove
clamping mechanism
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CN202322295164.9U
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姜伊林
殷艳雅
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Shuyang Sentai Plastic Industry Co ltd
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Shuyang Sentai Plastic Industry Co ltd
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Abstract

The utility model relates to the technical field of pearl cotton processing, in particular to a cutting device for processing pearl cotton, which comprises a bottom plate and a receiving plate, wherein the receiving plate is arranged at the middle section position on the bottom plate, a transverse clamping mechanism is transversely arranged on the receiving plate, a longitudinal clamping mechanism is arranged on the inner side of the transverse clamping mechanism, and a bracket is arranged on the right side of the bottom plate. According to the utility model, the second screw rod and the third screw rod can be driven to rotate by the second motor, so that the movement of the transverse adjusting screw sleeves is realized, the mutual approaching of the two transverse adjusting screw sleeves is realized, the mutual approaching of the transverse clamping plates is driven, the fixing of the transverse width of the pearl cotton is realized, the height adjustment of the longitudinal clamping plates can be realized by the longitudinal clamping mechanism, the fixing of the height of the pearl cotton is realized, the automatic feeding of the pearl cotton under the cutting knife is realized by the feeding plate matched with the second hydraulic rod, the cutting efficiency and the cutting quality are improved.

Description

Cutting equipment for processing pearl cotton
Technical Field
The utility model relates to the technical field of pearl cotton processing, in particular to a sectioning device for processing pearl cotton.
Background
The polyethylene foam cotton is a non-crosslinked closed-cell structure, also called EPE pearl cotton, is a novel environment-friendly packaging material, is formed by countless independent bubbles generated by physical foaming of low-density polyethylene fat, and overcomes the defects of brittleness, deformation and poor restorability of common foam rubber. Has the advantages of water and moisture resistance, shock resistance, sound insulation, heat preservation, good plasticity, strong toughness, cyclic reconstruction, environmental protection, strong collision resistance and the like, also has good chemical resistance. Is an ideal substitute for the traditional packaging material and is widely applied to automobile cushions, throw pillows, electronic appliances, instruments, computers and the like. In the field of pearl cotton cutting, the prior device generally adopts a fixed mechanical cutting mode to cut.
For example, patent number CN216543680U discloses a cotton cutting device of pearl of adjustable cutting distance, including fixed frame and its inner wall rotation connection's power pole, fixed frame top fixedly connected with diaphragm, power pole outside sliding connection has a plurality of cutter groups, the utility model is through promoting the regulating block, thereby make the spring shrink remove the resistance of regulating block and diaphragm inner wall, then only need slide the regulating block can, drive fixed block and U type pole slip when the regulating block removes, thereby make the interval between the cutters adjustable, the interval is adjusted and is accomplished only need loosen the regulating block and can carry out automatic fixation to the position of cutter, the unable position of changing the interval of traditional cutter has been solved, and the efficiency of cutting can be improved, and easy operation, only need one hand can accomplish, labour saving and time saving.
The device is not provided with pearl cotton fixed establishment when using, leads to cutting in-process, and pearl cotton appears the skew, influences the neatly of cutting edge, and simultaneously in cutting process, needs artifical pay-off, inefficiency and comparatively dangerous, and for this reason, we disclose a pearl cotton processing with cutting equipment.
Disclosure of utility model
The utility model aims to provide a cutting device for processing pearl cotton, which is provided with a longitudinal clamping mechanism, a transverse clamping mechanism and a feeding plate, wherein the transverse clamping mechanism can drive a second screw rod and a third screw rod to rotate through a second motor, so that a transverse adjusting screw sleeve is moved, the two transverse adjusting screw sleeves are mutually close to drive the transverse clamping plates to mutually close, the transverse width of the pearl cotton is fixed, the longitudinal clamping mechanism can realize the height adjustment of the longitudinal clamping plate and the height of the pearl cotton, the feeding plate can be matched with a second hydraulic rod to automatically send the pearl cotton below a cutting knife, the automatic feeding is realized, and the cutting efficiency and the cutting quality are improved.
Therefore, the utility model provides a cutting device for processing pearl cotton, which comprises a bottom plate and a receiving plate, wherein the receiving plate is arranged at the middle section position on the bottom plate, a transverse clamping mechanism is transversely arranged on the receiving plate, a longitudinal clamping mechanism is arranged on the inner side of the transverse clamping mechanism, a support is arranged on the right side of the bottom plate, a plurality of first hydraulic rods are connected below the support, a cutting knife is connected below the first hydraulic rods, and a blanking groove is arranged on the bottom plate and positioned on the right side of the support.
Preferably: the transverse clamping mechanism comprises a second mounting groove, a transverse sliding groove and a second motor, wherein the second mounting groove is transversely formed in the bearing plate, the second motor is mounted on one side of the inside of the second mounting groove, a power output shaft of the second motor is connected with one end of a second screw rod, the other end of the second screw rod is connected with a third screw rod, transverse adjusting screw sleeves are connected with the second screw rod and the third screw rod in a threaded manner, support rods are connected above the transverse adjusting screw sleeves, and transverse clamping plates are connected above the support rods.
Preferably: the second mounting groove is internally provided with transverse sliding grooves at two sides, one end of each transverse sliding block is connected with two sides of the outside of the corresponding transverse adjusting screw sleeve, and the other end of each transverse sliding block is slidably connected inside each transverse sliding groove.
Preferably: the thread directions of the outer sides of the second screw rod and the third screw rod are opposite.
Preferably: the longitudinal clamping mechanism comprises a first mounting groove, a first motor and a first screw rod, wherein the first mounting groove is longitudinally formed in the inner axis of the transverse clamping plate, the first motor is mounted above the inside of the first mounting groove, the first screw rod is connected with a power output shaft of the first motor, the outer side of the first motor is in threaded connection with a longitudinal adjusting screw sleeve, an upper sliding block and a lower sliding block are mounted on the outer side of the longitudinal adjusting screw sleeve, the upper sliding block and the lower sliding block are in sliding connection in the first mounting groove, and the other ends of the upper sliding block and the lower sliding block are connected with the longitudinal clamping plate.
Preferably: the inside of the transverse clamping plate is positioned at the two sides of the first mounting groove, an upper stabilizing groove and a lower stabilizing groove are formed in the two sides of the inside of the upper stabilizing groove, one end of an upper sliding block and one end of a lower sliding block are connected in the inside of the upper stabilizing groove in a sliding manner, the other ends of the upper sliding block and the lower sliding block are connected at the two sides of the longitudinal clamping plate, the upper sliding block and the lower sliding block are positioned at the two sides of the inside of the upper stabilizing groove and the lower stabilizing groove, and the other ends of the upper clamping block and the lower clamping block are connected in a sliding manner in the inside of the upper clamping groove and the lower clamping groove.
Preferably: the second hydraulic rod is installed in the bottom plate left side, just the bottom plate left side is located the flitch stabilization groove has been seted up to second hydraulic rod both sides mirror image, the inside sliding connection of flitch stabilization groove has the flitch stabilization piece, flitch stabilization piece top is connected with the delivery sheet, just first hydraulic rod shrink end is connected the delivery sheet below.
Preferably: the cutter stabilizing device is characterized in that cutter stabilizing grooves are formed in two sides of the inside of the support, one end of each cutter stabilizing block is connected with the inside of each cutter stabilizing groove in a sliding mode, and the other end of each cutter stabilizing block is connected to two sides of the cutting knife.
Compared with the prior art, the utility model has the beneficial effects that:
According to the utility model, the longitudinal clamping mechanism, the transverse clamping mechanism and the feeding plate are arranged, the second screw rod and the third screw rod can be driven by the second motor to rotate, so that the transverse adjusting screw sleeve is moved, the two transverse adjusting screw sleeves are mutually close to drive the transverse clamping plates to mutually close, the transverse width of pearl cotton is fixed, the longitudinal clamping mechanism can be used for adjusting the height of the longitudinal clamping plate and fixing the height of the pearl cotton, and the feeding plate can be matched with the second hydraulic rod to automatically send the pearl cotton under the cutting knife, so that automatic feeding is realized for cutting, and the cutting efficiency and quality are improved.
Drawings
FIG. 1 is an overall schematic diagram of a sectioning device for pearl wool processing according to the present utility model;
Fig. 2 is a schematic structural view of a longitudinal clamping mechanism of a sectioning device for processing pearl wool.
Fig. 3 is a schematic structural view of a transverse clamping mechanism of a sectioning device for processing pearl wool.
In the figure: 1. a bottom plate; 2. a receiving plate;
3. A longitudinal clamping mechanism; 301. a longitudinal clamping plate; 302. an upper clamping block and a lower clamping block; 303. a first mounting groove; 304. a first motor; 305. an upper and lower stabilizing groove; 306. a first screw; 307. longitudinally adjusting the screw sleeve; 308. an upper and lower slider; 309. an upper and a lower clamping grooves; 310. an upper and lower stabilizing block;
4. A transverse clamping mechanism; 401. a second mounting groove; 402. a transverse chute; 403. a transverse slide block; 404. a second motor; 405. a second screw; 406. a transverse adjusting screw sleeve; 407. a support rod; 408. a third screw; 409. a transverse clamping plate;
5. A cutting knife; 6. a bracket; 7. a first hydraulic lever; 8. a cutter stabilizing block; 9. discharging groove; 10. a feeding plate; 11. a second hydraulic lever; 12. a material plate stabilizing groove; 13. a material plate stabilizing block; 14. the cutter stabilizes the groove.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, which are a preferred embodiment of the present utility model, referring to fig. 1-3, a cutting device for processing pearl wool, which is a preferred embodiment of the present utility model, includes a bottom plate 1 and a receiving plate 2, the receiving plate 2 is installed at an upper middle section position of the bottom plate 1, a transverse clamping mechanism 4 is transversely installed on the receiving plate 2, a longitudinal clamping mechanism 3 is installed at an inner side of the transverse clamping mechanism 4, a bracket 6 is installed on a right side of the bottom plate 1, a plurality of first hydraulic rods 7 are connected below the bracket 6, a cutting knife 5 is connected below the first hydraulic rods 7, a blanking groove 9 is installed on a right side of the bracket 6 on the bottom plate 1, the transverse clamping mechanism 4 can drive a second screw 405 and a third screw 408 to rotate through a second motor 404, so as to move a transverse adjusting screw sleeve 406, the two transverse adjusting screw sleeves 406 are mutually close to each other, the transverse clamping plates 409 are mutually close to each other, the transverse width of the pearl wool is fixed, the longitudinal clamping mechanism 3 can automatically clamp the pearl wool, the automatic clamping mechanism is matched with the longitudinal clamping plate 6, the automatic clamping mechanism is high-level pearl wool is adjusted, the cutting knife is fixed, and the cutting knife is fixed by the high-level 10 is high, and the cutting quality is improved, and the cutting knife is 11 is fixed.
The transverse clamping mechanism 4 comprises a second mounting groove 401, a transverse sliding groove 402 and a second motor 404, the second mounting groove 401 is transversely formed in the bearing plate 2, the second motor 404 is mounted on one side inside the second mounting groove 401, a power output shaft of the second motor 404 is connected with one end of a second screw rod 405, the other end of the second screw rod 405 is connected with a third screw rod 408, transverse adjusting screw sleeves 406 are connected to the second screw rod 405 and the third screw rod 408 in a threaded manner, support rods 407 are connected to the upper portions of the transverse adjusting screw sleeves 406, transverse clamping plates 409 are connected to the upper portions of the support rods 407, the transverse clamping mechanism 4 drives the second screw rod 405 and the third screw rod 408 to rotate through the second motor 404, so that the transverse adjusting screw sleeves 406 move, the two transverse adjusting screw sleeves 406 are close to each other, the transverse clamping plates 409 are driven to be close to each other, and the transverse width of pearl cotton is fixed.
The two sides of the inside of the second installation groove 401 are provided with the transverse sliding grooves 402, two sides of the outside of the transverse adjusting screw sleeve 406 are connected with one end of the transverse sliding block 403, the other end of the transverse sliding block 403 is connected with the inside of the transverse sliding groove 402 in a sliding manner, the transverse sliding block 403 is matched with the transverse sliding groove 402 for use, and the movement of the transverse adjusting screw sleeve 406 can be limited to prevent deviation.
The opposite screw threads on the outer sides of the second screw 405 and the third screw 408 ensure that the lateral adjustment screw 406 moves in opposite directions relative to each other.
The longitudinal clamping mechanism 3 comprises a first mounting groove 303, a first motor 304 and a first screw 306, the first mounting groove 303 is longitudinally formed in the inner axis of the transverse clamping plate 409, the first motor 304 is mounted above the inside of the first mounting groove 303, the first screw 306 is connected with a power output shaft of the first motor 304, the outer side of the first motor is in threaded connection with a longitudinal adjusting screw sleeve 307, an upper sliding block 308 and a lower sliding block 308 are mounted on the outer side of the longitudinal adjusting screw sleeve 307, the upper sliding block 308 and the lower sliding block 308 are in sliding connection in the inside of the first mounting groove 303, the other end of the upper sliding block 308 is connected with the longitudinal clamping plate 301, the first screw 306 can be driven to rotate through the first motor 304, the longitudinal adjusting screw sleeve 307 is driven to rotate, the upper sliding block 308 slides in the inside of the first mounting groove 303, the rotation of the longitudinal adjusting screw sleeve 307 is limited, the longitudinal adjusting screw sleeve 307 is driven to move the longitudinal clamping plate 301 up and down, the height of the pearl cotton is adjusted to adapt to the thickness of the pearl cotton, the pearl cotton is prevented from tilting when the pearl cotton is transversely clamped, and the processing efficiency is improved.
The inside of the horizontal clamping plate 409 is located the upper and lower stable groove 305 has been seted up to first mounting groove 303 both sides, upper and lower draw-in groove 309 has been seted up to upper and lower stable groove 305 inside both sides, upper and lower slider 308 one end has been connected to upper and lower stable groove 305 inside sliding connection, the upper and lower slider 308 other end is connected the vertical clamping plate 301 both sides, upper and lower slider 308 is located upper and lower fixture block 302 is installed to upper and lower stable groove 305 inside both sides, just upper and lower fixture block 302 other end sliding connection is in upper and lower draw-in groove 309 is inside, upper and lower slider 308 and upper and lower fixture block 302 cooperate upper and lower stable groove 305 and upper and lower draw-in groove 309 respectively to use, can stabilize the restriction to the upper and lower removal of vertical clamping plate 301, prevent the skew, and fixed effect is better.
The second hydraulic stem 11 is installed to bottom plate 1 left side, just the bottom plate 1 left side is located the material board stabilization groove 12 has been seted up to second hydraulic stem 11 both sides mirror image, the inside sliding connection of material board stabilization groove 12 has material board stabilization piece 13, material board stabilization piece 13 top is connected with delivery sheet 10, just first hydraulic stem 7 shrink end is connected the delivery sheet 10 below, first hydraulic stem 7 can drive delivery sheet 10 shrink, realizes carrying out the automatic constant speed pay-off to the pearl cotton, reduces manual operation, and is more convenient, safer.
The cutter stabilizing grooves 14 are formed in two sides of the inside of the support 6, one end of the cutter stabilizing block 8 is slidably connected in the cutter stabilizing grooves 14, and the other end of the cutter stabilizing block 8 is connected to two sides of the cutter 5, so that stability of the cutter 5 is ensured.
The utility model discloses a sectioning device for pearl cotton processing, which comprises a machine frame, a machine frame and a machine frame, wherein the machine frame is provided with a machine frame: when in use, firstly, pearl cotton is put above the bearing plate 2, at the moment, an external power supply is used for powering on the second motor 404 in the transverse clamping mechanism 4, the second screw 405 and the third screw 408 are driven to rotate by working, the transverse adjusting screw sleeve 406 rotates, meanwhile, the transverse sliding block 403 is matched with the transverse sliding groove 402 to be used, the movement of the transverse adjusting screw sleeve 406 can be limited, and the directions of threads outside the second screw 405 and the third screw 408 are opposite, so that the transverse adjusting screw sleeve 406 moves in opposite directions, the movement of the transverse adjusting screw sleeve 406 is realized, the two transverse adjusting screw sleeves 406 are mutually close, the transverse clamping plates 409 are driven to be mutually close, the fixation of the transverse width of the pearl cotton is realized, then, the first screw 306 is driven to rotate through the first motor 304, the longitudinal adjustment screw sleeve 307 is driven to rotate, the upper sliding block 308 slides in the first mounting groove 303, the rotation of the longitudinal adjustment screw sleeve 307 is limited, the longitudinal adjustment screw sleeve 307 drives the longitudinal clamping plate 301 to move up and down, the height adapting to the thickness of the pearl cotton is adjusted, the pearl cotton is clamped, tilting is prevented when the pearl cotton is transversely clamped, the first hydraulic rod 7 can drive the feeding plate 10 to shrink, automatic uniform feeding of the pearl cotton is realized, the pearl cotton moves to the lower part of the support 6, the cutting knife 5 is driven to press downwards through the second hydraulic rod 11 at the moment, cutting is completed, and the pearl cotton enters the blanking groove 9 to be blanked.
The foregoing is a further elaboration of the present utility model in connection with the detailed description, and it is not intended that the utility model be limited to the specific embodiments shown, but rather that a number of simple deductions or substitutions be made by one of ordinary skill in the art without departing from the spirit of the utility model, should be considered as falling within the scope of the utility model as defined by the claims which are newly filed.

Claims (8)

1. The utility model provides a cotton processing of pearl is with cutting into segments equipment, includes bottom plate (1) and holds board (2), its characterized in that: the bearing plate (2) is installed the middle section position on bottom plate (1), transversely install horizontal clamping mechanism (4) on bearing plate (2), vertical clamping mechanism (3) are installed to horizontal clamping mechanism (4) inboard, install support (6) on bottom plate (1) right side, support (6) below is connected with a plurality of first hydraulic stems (7), first hydraulic stem (7) below is connected with cutting knife (5), be located on bottom plate (1) silo (9) are installed on support (6) right side.
2. The sectioning device for pearl wool processing according to claim 1, wherein: the transverse clamping mechanism (4) comprises a second mounting groove (401), a transverse sliding groove (402) and a second motor (404), wherein the second mounting groove (401) is transversely formed in the bearing plate (2), the second motor (404) is mounted on one side inside the second mounting groove (401), a power output shaft of the second motor (404) is connected with one end of a second screw (405), the other end of the second screw (405) is connected with a third screw (408), transverse adjusting screw sleeves (406) are connected to the second screw (405) and the third screw (408) in a threaded mode, supporting rods (407) are connected to the upper portions of the transverse adjusting screw sleeves (406), and transverse clamping plates (409) are connected to the upper portions of the supporting rods (407).
3. The sectioning device for pearl wool processing according to claim 2, wherein: transverse sliding grooves (402) are formed in two sides of the inside of the second mounting groove (401), one end of a transverse sliding block (403) is connected to two sides of the outside of the transverse adjusting screw sleeve (406), and the other end of the transverse sliding block (403) is connected to the inside of the transverse sliding grooves (402) in a sliding mode.
4. The sectioning device for pearl wool processing according to claim 2, wherein: the thread directions of the outer sides of the second screw rod (405) and the third screw rod (408) are opposite.
5. The sectioning device for pearl wool processing according to claim 2, wherein: the vertical clamping mechanism (3) comprises a first mounting groove (303), a first motor (304) and a first screw rod (306), wherein the first mounting groove (303) is longitudinally formed in an inner axis line of a transverse clamping plate (409), the first motor (304) is mounted above the inside of the first mounting groove (303), the first screw rod (306) is connected with a power output shaft of the first motor (304), a vertical adjusting screw sleeve (307) is connected with the outer side of the first motor in a threaded manner, an upper sliding block (308) is mounted on the outer side of the vertical adjusting screw sleeve (307), the upper sliding block (308) is slidingly connected with the inside of the first mounting groove (303), and the other end of the upper sliding block (308) is connected with a vertical clamping plate (301).
6. The sectioning device for pearl wool processing according to claim 5, wherein: the inside of horizontal clamping plate (409) is located upper and lower stable groove (305) have been seted up in first mounting groove (303) both sides, upper and lower draw-in groove (309) have been seted up in upper and lower stable groove (305) inside both sides, upper and lower slider (308) one end has been connected to upper and lower stable groove (305) inside sliding connection, upper and lower slider (308) other end are connected vertical clamping plate (301) both sides, upper and lower slider (308) are located upper and lower stable groove (305) inside both sides are installed upper and lower fixture block (302), just upper and lower fixture block (302) other end sliding connection is in upper and lower draw-in groove (309) are inside.
7. The sectioning device for pearl wool processing according to claim 1, wherein: the second hydraulic rod (11) is installed in bottom plate (1) left side, just bottom plate (1) left side is located flitch stabilizing slot (12) have been seted up to second hydraulic rod (11) both sides mirror image, flitch stabilizing slot (12) inside sliding connection has flitch stabilizing block (13), flitch stabilizing block (13) top is connected with delivery sheet (10), just first hydraulic rod (7) shrink end is connected delivery sheet (10) below.
8. The sectioning device for pearl wool processing according to claim 1, wherein: the cutting tool comprises a support (6), wherein cutter stabilizing grooves (14) are formed in two sides of the interior of the support, one end of a cutter stabilizing block (8) is connected to the interior of the cutter stabilizing grooves (14) in a sliding mode, and the other end of the cutter stabilizing block (8) is connected to two sides of the cutting knife (5).
CN202322295164.9U 2023-08-25 2023-08-25 Cutting equipment for processing pearl cotton Active CN220945470U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322295164.9U CN220945470U (en) 2023-08-25 2023-08-25 Cutting equipment for processing pearl cotton

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322295164.9U CN220945470U (en) 2023-08-25 2023-08-25 Cutting equipment for processing pearl cotton

Publications (1)

Publication Number Publication Date
CN220945470U true CN220945470U (en) 2024-05-14

Family

ID=91020724

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322295164.9U Active CN220945470U (en) 2023-08-25 2023-08-25 Cutting equipment for processing pearl cotton

Country Status (1)

Country Link
CN (1) CN220945470U (en)

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