CN218985923U - Forming shoe mechanism of non-woven bag making machine - Google Patents

Forming shoe mechanism of non-woven bag making machine Download PDF

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Publication number
CN218985923U
CN218985923U CN202320106657.0U CN202320106657U CN218985923U CN 218985923 U CN218985923 U CN 218985923U CN 202320106657 U CN202320106657 U CN 202320106657U CN 218985923 U CN218985923 U CN 218985923U
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plate
fixedly connected
lifting
bottom plate
making machine
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CN202320106657.0U
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童建东
徐昌斌
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Quanzhou Huanuo Non Woven Fabric Co ltd
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Quanzhou Huanuo Non Woven Fabric Co ltd
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Abstract

The utility model provides a forming collet mechanism of a non-woven bag making machine, which comprises: bottom plate and fly leaf, the one end of bottom plate upper surface passes through bearing swing joint axis of rotation, the one end of the upper end fixed connection fixed plate of axis of rotation, the other end fixed connection fly leaf of fixed plate, and the lower extreme fixed connection round gear of axis of rotation first, the position fixed connection servo motor that the bottom plate upper surface is close to the axis of rotation, servo motor output shaft fixed connection round gear second, round gear second meshing round gear first, set up the lift groove in the fly leaf, the guide bar is connected to the both ends symmetry of lift groove, the both ends of lifter plate pass through groove sliding connection guide bar, and the fly leaf lower surface passes through spring coupling fly leaf, servo electric jar of lift groove bottom fixed connection. According to the utility model, the lifting plate, the guide rod and the spring are matched, so that the moving stability of the bottom supporting plate can be enhanced, and the bottom supporting mechanism can assist in collecting the non-woven fabric bags, so that the working efficiency is improved.

Description

Forming shoe mechanism of non-woven bag making machine
Technical Field
The utility model relates to the technical field of non-woven bag making machine equipment, in particular to a forming bottom support mechanism of a non-woven bag making machine.
Background
The non-woven bag making machine is a machine for making non-woven bags, and the non-woven bag making machine completes the forming of the bags through a forming die, and in the forming process, the forming shoe mechanism is required to be dragged on the bottom surface of the non-woven fabrics, and then the non-woven bag making machine is matched with the pressing of the forming die to complete the first-step forming operation. The forming collet mechanism of the non-woven bag making machine in the current market is generally complex in structure and not flexible and stable in movement.
Through retrieval, a forming collet mechanism (application number: CN 201620495308.2) of a non-woven fabric bag making machine disclosed in the prior art records that' non-woven fabric is placed on a collet, the collet is driven by a first cylinder to move upwards, the non-woven fabric is clamped by the collet and a forming die (the forming die is not shown), then the forming die descends together with a mounting frame, the forming die and the collet clamp the non-woven fabric together, the non-woven fabric descends under the action of a four-side forming plate, the non-woven fabric forms the outline of a bag, after the bag is completely formed through other forming procedures, the first cylinder drives the collet to move downwards, and then the collet is driven by a second cylinder to move backwards, so that the bag is separated from the forming die through a bag separating mechanism, and the forming work of the non-woven fabric bag is completed; "; this collet mechanism makes the collet board can follow the action of upper and lower and fore-and-aft direction through reasonable structure to the shaping work of sack is accomplished to cooperation forming die, but first cylinder setting in this collet mechanism is provided with on the longitudinal rail on the left downside of mounting bracket, and does not show the mounting means on mounting bracket and the longitudinal rail in detail in the figure, in addition, when first cylinder drive mounting bracket carries out the lift work, can't guarantee the stability of mounting bracket and lifter plate at the during operation on the longitudinal rail, the mounting bracket takes place the slope easily, thereby influences the normal use of device.
Disclosure of Invention
In order to overcome the defects in the prior art, a forming shoe mechanism of a non-woven bag making machine is provided to solve the problems in the prior art.
In order to achieve the above object, a forming shoe mechanism of a non-woven bag making machine is provided, comprising: bottom plate and fly leaf, bottom plate fixed connection sets up servo electricity jar in the upper surface of lifter plate under the bottom plate, the one end of bottom plate upper surface passes through bearing swing joint axis of rotation, the one end of the upper end fixed connection fixed plate of axis of rotation, the other end fixed connection fly leaf of fixed plate, and the lower extreme fixed connection round gear of axis of rotation first, the position fixed connection servo motor that the bottom plate upper surface is close to the axis of rotation, servo motor output shaft fixed connection round gear two, round gear two meshing round gear one, spout one and spout two are offered respectively to the one end that the axis of rotation was kept away from to the bottom plate upper surface simultaneously, set up the lift groove in the fly leaf, the both ends symmetric connection guide bar of lift groove, the both ends of lifter plate pass through groove sliding connection guide bar, and the lifter plate lower surface passes through spring coupling fly leaf, the one and the slider two are connected respectively to the position of spout one side of fly leaf relative to the slider, and the upper surface fixed connection of clearance piece.
Preferably, the bottom plate is fan-shaped structure, and the contained angle of bottom plate is ninety degrees, and spout one and spout second that the bottom plate upper surface was seted up all are fan-shaped annular structure, and the cross-section of spout one and spout two all is isosceles trapezoid structure simultaneously, and the radius of spout one is greater than the radius of spout two.
Preferably, the lifting groove arranged in the moving plate is of a convex structure, the section formed by combining the moving plate and the lifting groove is of a C-shaped structure, two sides of the lifting groove penetrate through two sides of the moving plate, meanwhile, a first sliding block and a second sliding block fixedly connected with the lower surface of the moving plate are of a sector ring-shaped structure, and the axial sections of the first sliding block and the second sliding block are of equal waist-trapezoid structures.
Preferably, the three groups of guide rods of equidistant fixed connection of both ends in the movable plate are parallel respectively, and the guide rod is cylindrical structure, and guide rod lower extreme cover connects the spring, the bottom of lower extreme fixed connection lift groove of spring, the lower surface of upper end fixed connection lifter plate of spring, the lifter plate is rectangle structure simultaneously, the size looks adaptation of lifter plate and lift groove.
Preferably, the cross section that bottom plate and lifter plate make up together is protruding font structure, and the size looks adaptation of bottom plate and lifter groove upper end opening part, the relative guide bar's in lifter plate both ends position corresponds simultaneously sets up runs through the groove, runs through the groove and is cylindrical structure to run through the groove and guide bar's size looks adaptation.
Preferably, the upper end and the middle part of the end face of the movable plate are fixedly connected with a group of fixed plates, the whole fixed plate is of a rectangular structure, one end of the fixed plate, which is far away from the movable plate, is of a semicircular structure, and the section formed by combining the fixed plate and the rotating shaft is of a dry-shaped structure.
Preferably, the cross-section of clearance piece is right trapezoid structure, and the inclined plane fixed connection one deck buffer layer of clearance piece, and the baffle of fixed surface connection is rectangle structure on the clearance piece, and the baffle surface is even sets up multiunit through-hole, the upper end fixed connection movable plate of baffle simultaneously.
Compared with the prior art, the utility model has the beneficial effects that: through lifter plate, guide bar, the cooperation of spring and servo electric jar for the backing plate can carry out corresponding lift work in the movable plate, the stability when the backing plate goes up and down can be strengthened to the setting of guide bar and spring moreover, ensures the normal work of this mechanism, simultaneously through axis of rotation, fixed plate, slider one, slider two, the cooperation of bottom plate and servo motor, makes the movable plate can drive the backing plate and carry out stable rotation in the top of bottom plate, thereby be convenient for the non-woven fabrics bag drop, and through the cooperation of clearance piece and baffle, can assist in collecting the non-woven fabrics bag when the movable plate resets, improve corresponding work efficiency.
Drawings
Fig. 1 is a schematic front view of an embodiment of the present utility model.
Fig. 2 is a schematic side view of an embodiment of the present utility model.
Fig. 3 is a schematic top view of an embodiment of the present utility model.
Fig. 4 is an enlarged schematic view at a of fig. 2 according to an embodiment of the present utility model.
In the figure: 1. a bottom plate; 2. a moving plate; 3. a guide rod; 4. a spring; 5. a lifting plate; 6. a lifting groove; 7. a bottom support plate; 8. a first sliding block; 9. a servo electric cylinder; 10. a fixing plate; 11. a first circular gear; 12. a rotating shaft; 13. a servo motor; 14. a first chute; 15. a baffle; 16. cleaning the block; 17. and a buffer layer.
Detailed Description
Other advantages and effects of the present utility model will become apparent to those skilled in the art from the following disclosure, which describes the embodiments of the present utility model with reference to specific examples. The utility model may be practiced or carried out in other embodiments that depart from the specific details, and the details of the present description may be modified or varied from the spirit and scope of the present utility model.
Referring to fig. 1 to 4, the present utility model provides a forming shoe mechanism of a non-woven bag making machine, comprising: the lifting device comprises a bottom plate 1 and a moving plate 2, wherein the bottom plate 7 is fixedly connected to the upper surface of a lifting plate 5, a servo electric cylinder 9 is arranged under the bottom plate 7, one end of the upper surface of the bottom plate 1 is movably connected with a rotating shaft 12 through a bearing, the upper end of the rotating shaft 12 is fixedly connected with one end of a fixed plate 10, the other end of the fixed plate 10 is fixedly connected with the moving plate 2, the lower end of the rotating shaft 12 is fixedly connected with a round gear I11, the upper surface of the bottom plate 1 is close to the rotating shaft 12 and is fixedly connected with a servo motor 13, an output shaft of the servo motor 13 is fixedly connected with a round gear II, the round gear II is meshed with the round gear I11, meanwhile, one end of the upper surface of the bottom plate 1 far away from the rotating shaft 12 is respectively provided with a sliding groove I14 and a sliding groove II, a sliding groove II are formed in the moving plate 2, two ends of the lifting groove 6 are symmetrically connected with guide rods 3, two ends of the lifting plate 5 are connected with the guide rods 3 through penetrating grooves in a sliding mode, the lower surface of the lifting plate 5 is connected with the moving plate 2 through springs 4, the bottom of the lifting groove 6 is fixedly connected with the servo electric cylinder 9, meanwhile, the positions of the lower surface of the moving plate 2 are correspondingly connected with the sliding block I14 and the sliding groove II respectively, the sliding block 16 is connected with the sliding block 16, and the upper surface of the cleaning block 16 is fixedly connected with the upper surface 15.
In this embodiment, the switch of the servo cylinder 9 is started, the telescopic rod of the servo cylinder 9 pushes the lifting plate 5 to move upwards, the spring 4 is stretched in the process of moving upwards, then the lifting plate 5 pushes the fixed connection bottom support plate 7 to move upwards, the bottom support plate 7 can contact the bottom of the non-woven fabric, when the non-woven fabric is processed and formed through other working procedures, the servo cylinder 9 is started again, the telescopic rod is recovered by the servo cylinder 9, the lifting plate 5 and the bottom support plate 7 synchronously reset under the action of gravity and the spring 4, then the bottom support plate 7 is separated from the bottom of the non-woven fabric bag, the switch of the servo motor 13 is started, the output shaft of the servo motor 13 drives the round gear one 11 through the round gear one 11, the round gear one 11 drives the fixed connection rotation shaft 12 to synchronously rotate, then the fixed plate 2 is driven by the fixed plate 10 fixedly connected to synchronously rotate, thereby the non-woven fabric bag can fall on the surface of the bottom plate 1, then the servo motor 13 is started again, the movable plate 2 is reset, and in the process of resetting the non-woven fabric bag 2 is pushed through the cooperation of the cleaning block 16 and the baffle 15, the corresponding non-woven fabric bag can be moved to the corresponding work efficiency can be saved, and the work efficiency of the non-woven fabric collection box can be saved.
As a preferred embodiment, the bottom plate 1 is in a fan-shaped structure, the included angle of the bottom plate 1 is ninety degrees, the first chute 14 and the second chute which are arranged on the upper surface of the bottom plate 1 are in a fan-shaped annular structure, and meanwhile, the sections of the first chute 14 and the second chute are in isosceles trapezoid structures, and the radius of the first chute 14 is larger than that of the second chute.
In this embodiment, as shown in fig. 3, the first chute 14 and the second chute formed on the upper surface of the bottom plate 1 can assist in enhancing the stability of the moving plate 2 during rotation, and both ends of the first chute 14 and the second chute do not penetrate through both sides of the bottom plate 1, so that the rotation angle of the moving plate 2 can be effectively limited.
As a preferred embodiment, the lifting groove 6 arranged in the moving plate 2 is of a convex structure, the section formed by combining the moving plate 2 and the lifting groove 6 is of a C-shaped structure, two sides of the lifting groove 6 penetrate through two sides of the moving plate 2, meanwhile, the first sliding block 8 and the second sliding block fixedly connected with the lower surface of the moving plate 2 are of a fan-shaped structure, and the axial sections of the first sliding block 8 and the second sliding block are of equal waist-shaped structures.
In this embodiment, as shown in fig. 1, the lifting groove 6 penetrates through two sides of the moving plate 2, so that the servo electric cylinder 9 in the lifting groove 6 can be directly exposed in the external environment, the servo electric cylinder 9 is convenient to be overhauled or replaced subsequently, and the first sliding block 8 and the second sliding block are respectively matched with the first sliding groove 14 and the second sliding groove in size, so that the stability of the moving plate 2 during rotation can be effectively enhanced.
As a preferred embodiment, the two ends in the movable plate 2 are respectively parallel and equidistant to fixedly connect with three groups of guide rods 3, the guide rods 3 are in a cylindrical structure, the lower ends of the guide rods 3 are sleeved with springs 4, the lower ends of the springs 4 are fixedly connected with the bottom of the lifting groove 6, the upper ends of the springs 4 are fixedly connected with the lower surface of the lifting plate 5, meanwhile, the lifting plate 5 is in a rectangular structure, and the lifting plate 5 and the lifting groove 6 are in size phase adaptation.
In this embodiment, as shown in fig. 2, the guide rod 3 is fixedly connected in the moving plate 2, so that the stability of the lifting plate 5 during moving can be effectively enhanced, and the spring 4 sleeved at the lower end of the guide rod 3 can assist the lifting plate 5 to move.
As a preferred embodiment, the cross section formed by combining the bottom supporting plate 7 and the lifting plate 5 is in a convex structure, the sizes of the openings at the upper ends of the bottom supporting plate 7 and the lifting groove 6 are matched, meanwhile, through grooves are correspondingly formed in the positions of the two ends of the lifting plate 5 opposite to the guide rods 3, the through grooves are in a cylindrical structure, and the through grooves are matched with the sizes of the guide rods 3.
In this embodiment, like fig. 1 and 3, the size looks adaptation of bottom plate 7 and lift groove 6 upper end opening part can assist the stability when reinforcing bottom plate 7 goes up and down, and the size looks adaptation of through groove and guide bar 3 that the lifter plate 5 was seted up moreover can further strengthen the stability when lifter plate 5 and bottom plate 7 remove, avoids appearing the slope problem.
As a preferred embodiment, the upper end and the middle part of the end face of the moving plate 2 are fixedly connected with a group of fixing plates 10, the whole fixing plates 10 are in a rectangular structure, one end of the fixing plate 10 away from the moving plate 2 is in a semicircular structure, and the section formed by combining the fixing plates 10 and the rotating shaft 12 is in a dry-shaped structure.
In this embodiment, as shown in fig. 1 and 3, two groups of fixing plates 10 fixedly connected to the end surfaces of the moving plate 2 can enhance the fixing effect between the moving plate 2 and the rotating shaft 12, and the cooperation of the moving plate 2 and the fixing plate 10 can assist in enhancing the stability of the rotating shaft 12 during rotation, and meanwhile, the size of the first circular gear 11 is larger than that of the second circular gear, so that the stability of the moving plate 2 during movement can be enhanced in an auxiliary manner.
As a preferred embodiment, the cross section of the cleaning block 16 is in a right trapezoid structure, the inclined surface of the cleaning block 16 is fixedly connected with a buffer layer 17, the baffle 15 fixedly connected with the upper surface of the cleaning block 16 is in a rectangular structure, a plurality of groups of through holes are uniformly formed in the surface of the baffle 15, and meanwhile, the upper end of the baffle 15 is fixedly connected with the movable plate 2.
In this embodiment, as shown in fig. 2 and 4, the buffer layer 17 fixedly connected with the cleaning block 16 is made of soft rubber, so that the probability of damage to the non-woven fabric bag when the cleaning block 16 pushes the non-woven fabric bag can be reduced, the non-woven fabric bag can be effectively prevented from being embedded into the lifting groove 6 by the aid of the baffle 15, and the weight of the baffle 15 can be effectively reduced by the aid of through holes formed in the surface of the baffle 15.
According to the forming collet mechanism of the non-woven bag making machine, the lifting plate 5 and the bottom supporting plate 7 can stably lift in the moving plate 2 through the cooperation of the guide rod 3 and the spring 4, and the moving plate 2 can fall off and collect the non-woven bag in a back and forth rotation period through the rotation of the moving plate 2, so that the step of manual collection is omitted, and the corresponding working efficiency is improved.

Claims (7)

1. A forming shoe mechanism of a non-woven bag making machine, comprising: bottom plate (1) and movable plate (2), bottom plate board (7) fixed connection set up servo electricity jar (9), its characterized in that under bottom plate board (7) at the upper surface of lifter plate (5): one end of the upper surface of the bottom plate (1) is movably connected with the rotating shaft (12) through a bearing, the upper end of the rotating shaft (12) is fixedly connected with one end of the fixed plate (10), the other end of the fixed plate (10) is fixedly connected with the moving plate (3), the lower end of the rotating shaft (12) is fixedly connected with the first round gear (11), the upper surface of the bottom plate (1) is close to the rotating shaft (12) and is fixedly connected with the servo motor (13), the output shaft of the servo motor (13) is fixedly connected with the second round gear (11), meanwhile, one end of the upper surface of the bottom plate (1) far away from the rotating shaft (12) is respectively provided with the first sliding groove (14) and the second sliding groove, the two ends of the moving plate (2) are symmetrically connected with the guide rods (3), the two ends of the moving plate (5) are connected with the guide rods (3) through grooves in a sliding mode, the lower surface of the moving plate (5) is fixedly connected with the servo motor (9) at the bottom of the lifting plate (6), meanwhile, the lower surface of the moving plate (2) is correspondingly connected with the first sliding block (14) and the second sliding block (8) through a spring (4), and the lower surface of the moving plate (2) is correspondingly connected with the second sliding block (8) and the second sliding block (8) through the sliding block (8), the upper surface of the cleaning block (16) is fixedly connected with a baffle plate (15).
2. The forming shoe mechanism of a non-woven bag making machine according to claim 1, wherein the bottom plate (1) is of a fan-shaped structure, an included angle of the bottom plate (1) is ninety degrees, a first chute (14) and a second chute (14) formed in the upper surface of the bottom plate (1) are of fan-shaped annular structures, meanwhile, the sections of the first chute (14) and the second chute are of isosceles trapezoid structures, and the radius of the first chute (14) is larger than that of the second chute.
3. The forming collet mechanism of a non-woven bag making machine according to claim 1, wherein the lifting groove (6) formed in the moving plate (2) is of a convex-shaped structure, the cross section formed by combining the moving plate (2) and the lifting groove (6) is of a C-shaped structure, two sides of the lifting groove (6) penetrate through two sides of the moving plate (2), meanwhile, a first sliding block (8) and a second sliding block fixedly connected with the lower surface of the moving plate (2) are of a fan-shaped structure, and the axial cross sections of the first sliding block (8) and the second sliding block are of equal waist-shaped structures.
4. The forming collet mechanism of a non-woven bag making machine according to claim 1, wherein the two ends in the moving plate (2) are respectively connected with three groups of guide rods (3) at equal intervals in parallel, the guide rods (3) are of a cylindrical structure, the lower ends of the guide rods (3) are sleeved with springs (4), the lower ends of the springs (4) are fixedly connected with the bottoms of lifting grooves (6), the upper ends of the springs (4) are fixedly connected with the lower surfaces of lifting plates (5), meanwhile, the lifting plates (5) are of rectangular structures, and the lifting plates (5) are matched with the lifting grooves (6) in size.
5. The forming collet mechanism of a non-woven bag making machine according to claim 1, wherein the cross section formed by combining the bottom supporting plate (7) and the lifting plate (5) is of a convex-shaped structure, the size of the opening at the upper end of the bottom supporting plate (7) is matched with that of the opening at the upper end of the lifting groove (6), meanwhile, through grooves are correspondingly formed in the positions of the two ends of the lifting plate (5) opposite to the guide rods (3), the through grooves are of cylindrical structures, and the through grooves are matched with the guide rods (3) in size.
6. The forming shoe mechanism of a non-woven bag making machine according to claim 1, wherein a group of fixing plates (10) are fixedly connected to the upper end and the middle part of the end face of the movable plate (2), the whole fixing plates (10) are of rectangular structures, one end of the fixing plates (10) far away from the movable plate (2) is of a semicircular structure, and a section formed by combining the fixing plates (10) and the rotating shaft (12) is of a dry-shaped structure.
7. The forming collet mechanism of a non-woven bag making machine according to claim 1, wherein the section of the cleaning block (16) is in a right trapezoid structure, a buffer layer (17) is fixedly connected to the inclined surface of the cleaning block (16), a baffle plate (15) fixedly connected to the upper surface of the cleaning block (16) is in a rectangular structure, a plurality of groups of through holes are uniformly formed in the surface of the baffle plate (15), and meanwhile, the upper end of the baffle plate (15) is fixedly connected with the movable plate (2).
CN202320106657.0U 2023-02-03 2023-02-03 Forming shoe mechanism of non-woven bag making machine Active CN218985923U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320106657.0U CN218985923U (en) 2023-02-03 2023-02-03 Forming shoe mechanism of non-woven bag making machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320106657.0U CN218985923U (en) 2023-02-03 2023-02-03 Forming shoe mechanism of non-woven bag making machine

Publications (1)

Publication Number Publication Date
CN218985923U true CN218985923U (en) 2023-05-09

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320106657.0U Active CN218985923U (en) 2023-02-03 2023-02-03 Forming shoe mechanism of non-woven bag making machine

Country Status (1)

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CN (1) CN218985923U (en)

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