CN113106555B - Silk reeling machine device and continuous cocoon supply structure of silk reeling machine - Google Patents

Silk reeling machine device and continuous cocoon supply structure of silk reeling machine Download PDF

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Publication number
CN113106555B
CN113106555B CN202110467575.4A CN202110467575A CN113106555B CN 113106555 B CN113106555 B CN 113106555B CN 202110467575 A CN202110467575 A CN 202110467575A CN 113106555 B CN113106555 B CN 113106555B
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reeling machine
auxiliary
silk reeling
supply box
connecting hole
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CN113106555A (en
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余丽铭
余浩歌
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Jiangxi Jinming Silk Co ltd
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Jiangxi Jinming Silk Co ltd
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    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01BMECHANICAL TREATMENT OF NATURAL FIBROUS OR FILAMENTARY MATERIAL TO OBTAIN FIBRES OF FILAMENTS, e.g. FOR SPINNING
    • D01B7/00Obtaining silk fibres or filaments
    • D01B7/04Reeling silk

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  • Mechanical Engineering (AREA)
  • Textile Engineering (AREA)
  • Catching Or Destruction (AREA)
  • Soil Working Implements (AREA)

Abstract

The invention discloses a silk reeling machine device and a continuous cocoon supply structure of a silk reeling machine, which comprise a silk reeling machine main body, wherein a main supply box is movably arranged at the top of the back of the silk reeling machine main body, an accommodating cavity for storing silkworm cocoons is formed in the top of the main supply box, an auxiliary supply box is fixedly arranged at the bottom of the back of the silk reeling machine main body, and a vibration structure for preventing blockage is arranged on the main supply box. According to the invention, through the arrangement of the main supply box and the auxiliary supply box, cocoons are stored in the accommodating cavity, when the second connecting hole is communicated with the first connecting hole, the second connecting hole is closed with the third connecting hole, the cocoons sequentially pass through the first connecting hole and the second connecting hole and enter the temporary storage cavity, the telescopic assembly controls the first separation plate and the second separation plate to move backwards, when the second connecting hole is communicated with the third connecting hole, the second connecting hole is closed with the first connecting hole, and at the moment, the first separation plate prevents the cocoons from continuously flowing into the temporary storage cavity, so that the quantitative continuous cocoon supply of the reeling machine device is realized.

Description

Silk reeling machine device and continuous cocoon supply structure of silk reeling machine
Technical Field
The invention relates to the field of silk reeling machines, in particular to a silk reeling machine device and a continuous cocoon supply structure of the silk reeling machine device.
Background
A silk reeling machine for reeling mulberry silk or tussah silk. The automatic silk reeling machine includes a stand reeling machine, a vertical reeling machine and an automatic reeling machine according to the mechanical and automatic degree division of the reeling. The automatic reeling machine includes a fixed-fiber type automatic reeling machine and a fixed-particle type automatic reeling machine according to the sensing method. The silk reeling machine is divided into a water reeling machine and a dry coarse reeling machine according to the condition that no silk reeling soup exists during silk reeling. Widely used in the day, there are a vertical reeling machine and a fixed-fiber automatic reeling machine, also known as a multi-reeling machine. The worker stands to operate the device. At present, the reeling machine is widely adopted at home and abroad. The main components are as follows: the device comprises a distance sensor, a exploration mechanism, a thread feeding system, a cocoon feeding mechanism, a reeling groove, a thread receiving device, a thread collecting device, a silk sheath device, a winding device, a small-label winding device, a small-sized raw silk drying device, a stopping device, a transmission device, an automatic thread groping and arranging mechanism, a catcher for automatically catching dropped cocoons and pupa linings, a dropped cocoon separating device for automatically separating the dropped cocoons and the pupa linings and the like. The sensing device senses the diameter of the reeling raw silk to indirectly sense the density (titer) of the raw silk, when the linear density is lower than the allowable range, a required end feeding signal is sent out, the signal is amplified and transmitted by the exploration mechanism, and then the end feeding mechanism, the cocoon feeding mechanism and the end receiving device finish automatic end feeding and automatically control the end feeding to the density of the reeling raw silk. The output per machine hour is more than doubled compared with that of a vertical reeling machine, and each group has 20 stands, and each stand has 20 ends.
At present, most of silk reeling machine devices on the market do not have a cocoon supply structure, and manual quantitative continuous cocoon supply is mostly carried out when the silk reeling machine works, so that the working efficiency of workers is influenced. Therefore, we improve this and propose a reeling machine device and its continuous cocoon feeding structure.
Disclosure of Invention
In order to solve the technical problems, the invention provides the following technical scheme:
the invention relates to a silk reeling machine device and a continuous cocoon supply structure of a silk reeling machine, which comprises a silk reeling machine main body with structures of a silk reeling machine ribbed plate, a coagulation-resisting drum wheel supporting frame, a silk guide collector, an auxiliary agent roller, an auxiliary agent storage tank and the like, wherein a main supply box is movably arranged at the top of the back surface of the silk reeling machine main body, an accommodating cavity for storing silkworm cocoons is formed in the top of the main supply box, a plurality of bin dividing ports which penetrate through the main supply box are uniformly formed in the bottom end of the accommodating cavity, an auxiliary supply box is fixedly arranged at the bottom of the back surface of the silk reeling machine main body, a vibration structure for preventing blockage is arranged on the main supply box, a plurality of temporary storage cavities corresponding to the bin dividing ports are formed in the auxiliary supply box, a plurality of bin dividing ports are respectively communicated with a plurality of temporary storage cavities through a plurality of connecting pipes, and a blocking mechanism for blocking the continuous circulation of the silkworm cocoons is arranged between the connecting pipes and the temporary storage cavities, the bottom of the back of the supply auxiliary box is uniformly provided with a plurality of outflow ports corresponding to the temporary storage cavities, the outflow ports are communicated with the temporary storage cavities through a separation mechanism, the bottom of the front of the main body of the silk reeling machine is provided with a plurality of discharge ports, and the discharge ports are communicated with the outflow ports.
As a preferable technical scheme of the present invention, the blocking mechanism includes a U-shaped plate, a mounting plate, a first blocking plate, a second blocking plate, and a telescopic assembly, the U-shaped plate is fixedly embedded in the auxiliary supply tank, the first blocking plate and the second blocking plate are movably embedded in the auxiliary supply tank through the mounting plate, the mounting plate is mounted on the telescopic assembly, and the telescopic assembly is fixedly disposed on one side of the auxiliary supply tank.
As a preferred technical solution of the present invention, the U-shaped plate is provided with a plurality of first connection holes corresponding to the bin dividing ports, the first blocking plate is provided with a plurality of second connection holes corresponding to the first connection holes, and the second blocking plate is provided with a plurality of third connection holes corresponding to the temporary storage cavities.
As a preferred technical solution of the present invention, the plurality of second connection holes and the plurality of third connection holes are alternately arranged, when the second connection holes are communicated with the first connection holes, the second connection holes are closed with the third connection holes, and when the second connection holes are communicated with the third connection holes, the second connection holes are closed with the first connection holes.
As a preferred technical scheme of the present invention, the telescopic assembly includes an installation frame, an electric telescopic rod and an auxiliary rod, the electric telescopic rod is fixedly installed on the installation frame, the installation plate is fixedly connected with an output end of the electric telescopic rod, the auxiliary rod is movably inserted into the installation frame, and one end of the auxiliary rod is fixedly connected with the installation plate.
As a preferable technical scheme of the invention, the connecting pipe comprises a connecting thick pipe and a connecting thin pipe, the top end of the connecting thick pipe is fixedly communicated with the bin dividing port, the bottom end of the connecting thin pipe is fixedly communicated with the first connecting hole, and the connecting thin pipe is sleeved in the connecting thick pipe.
As a preferred technical scheme of the invention, the vibration structure comprises a vibration motor, four telescopic rods and four telescopic springs, wherein the vibration motor is fixedly arranged on the main supply box, two ends of the four telescopic rods are respectively and fixedly connected with the main supply box and the auxiliary supply box, and the four telescopic springs are respectively sleeved on the four telescopic rods.
As a preferred technical scheme of the invention, the vibration structure further comprises an auxiliary assembly, the auxiliary assembly comprises two limiting blocks and two limiting grooves, the two limiting blocks are respectively and fixedly mounted on the front surface of the main supply box, the two limiting grooves are respectively formed in the back surface of the main reeling machine body, and the two limiting blocks are respectively and movably embedded in the two limiting grooves.
As a preferred technical scheme of the invention, the limiting block consists of a T-shaped block and a plurality of balls, the T-shaped block is movably embedded in the limiting groove, and the balls are uniformly embedded on the front surface of the T-shaped block.
As a preferable technical scheme of the invention, a guide plate for assisting discharging is arranged on the outer side of the discharging port, and extending edges are arranged on two sides of the guide plate.
The beneficial effects of the invention are:
1. the silk reeling machine device and the continuous cocoon supply structure of the silk reeling machine thereof are characterized in that a main supply box and an auxiliary supply box are arranged, silkworm cocoons are stored in an accommodating cavity, the silkworm cocoons respectively flow to a plurality of bin splitting ports and connecting pipes and are then blocked by a first blocking plate, at the moment, a telescopic component controls the first blocking plate and a second blocking plate to move forwards, when a second connecting hole is communicated with the first connecting hole, the second connecting hole and a third connecting hole are closed, the silkworm cocoons sequentially pass through the first connecting hole and the second connecting hole to enter a temporary storage cavity and are temporarily stored in the temporary storage cavity, at the moment, the third connecting hole and an outflow port are relatively closed, the telescopic component controls the first blocking plate and the second blocking plate to move backwards, when the second connecting hole is communicated with the third connecting hole, when the second connecting hole is closed with the first connecting hole and the third connecting hole is relatively communicated with the outflow port, at the moment, the first blocking plate prevents the silkworm cocoons from continuously flowing into the temporary storage cavity, and the cocoons in the temporary storage cavity can flow out through the third connecting hole and the outflow port, so that the cocoons can be quantitatively and continuously supplied to the silk reeling machine device.
2. This kind of filature machine device and filature machine supplies cocoon structure in succession thereof, vibration mechanism through being equipped with, it rocks to drive the main tank of supplying with, thereby make the silkworm cocoon of supplying with in the main tank more easily through dividing the storehouse mouth entering temporarily store up the intracavity, the possibility that the silkworm cocoon is blockked up in the connecting tube has been reduced, through four telescopic links and four expanding spring that are equipped with, carry on spacingly to supplying with the main tank, make the direction of supplying with the main tank and rocking can only be about, through the auxiliary assembly who is equipped with, further restriction supply with the direction that the main tank rocked, make simultaneously supplying with more smooth and easy that the main tank reciprocated, establish in connecting thick intraductal through connecting the tubule cover, after vibration structure produces the vibration to supplying with the main tank, can not exert an influence to supplying with the auxiliary tank.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention. In the drawings:
FIG. 1 is a schematic structural view of a reeling machine device and a continuous cocoon feeding structure of the reeling machine device according to the present invention;
FIG. 2 is a schematic view of the structure of the vibration structure of the silk reeling machine device and the continuous cocoon feeding structure of the silk reeling machine thereof according to the present invention;
FIG. 3 is a schematic view of a cross-sectional structure of a main supply box of a reeling machine device and a continuous cocoon supply structure of the reeling machine device according to the present invention;
FIG. 4 is a cross-sectional view of a supply sub-tank of a reeling machine device and a continuous cocoon supply structure of the reeling machine thereof according to the present invention;
FIG. 5 is a schematic diagram of a first isolation plate structure of a reeling machine device and a continuous cocoon feeding structure of the reeling machine device according to the present invention;
FIG. 6 is a schematic view of a U-shaped plate structure of a reeling machine device and a continuous cocoon feeding structure of the reeling machine device according to the present invention;
FIG. 7 is an enlarged view of a portion A in FIG. 1 of a reeling machine apparatus and a continuous cocoon feeding structure of the reeling machine apparatus according to the present invention;
fig. 8 is a schematic structural diagram of a silk reeling machine device and a limiting block of a continuous cocoon supply structure of the silk reeling machine device.
In the figure: 1. a main body of the reeling machine; 2. a supply main tank; 3. supplying the auxiliary box; 4. an accommodating chamber; 5. a discharge port; 6. a bin dividing port; 7. a telescoping assembly; 701. a mounting frame; 702. an electric telescopic rod; 703. an auxiliary lever; 8. a connecting pipe; 801. connecting the thick pipes; 802. connecting the thin tube; 9. a U-shaped plate; 10. a first connection hole; 11. a first barrier plate; 12. a second connection hole; 13. mounting a plate; 14. a second barrier panel; 15. a third connection hole; 16. a temporary storage cavity; 17. a vibrating structure; 1701. a vibration motor; 1702. a telescopic rod; 1703. a tension spring; 1704. a limiting block; 17041. a T-shaped block; 17042. a ball bearing; 18. and an outflow port.
Detailed Description
The preferred embodiments of the present invention will be described in conjunction with the accompanying drawings, and it should be understood that they are presented herein only to illustrate and explain the present invention and not to limit the present invention.
The embodiment is as follows: as shown in fig. 1, 2, 3, 4, 5, 6, 7 and 8, the invention relates to a silk reeling machine device and a continuous cocoon supply structure of a silk reeling machine thereof, comprising a silk reeling machine main body 1 including a silk reeling machine rib plate, a coagulation resisting drum wheel support frame, a silk guide frame, a filament collector, an auxiliary agent roller, an auxiliary agent storage tank and the like, wherein the top of the back of the silk reeling machine main body 1 is movably provided with a main supply box 2, the top of the main supply box 2 is provided with a containing cavity 4 for storing silkworm cocoons, the bottom of the containing cavity 4 is uniformly provided with a plurality of branch bin ports 6 penetrating through the main supply box 2, the bottom of the back of the silk reeling machine main body 1 is fixedly provided with an auxiliary supply box 3, the main supply box 2 is provided with a vibration structure 17 for preventing blockage, the auxiliary supply box 3 is provided with a plurality of temporary storage cavities 16 corresponding to the branch bin ports 6, the branch bin ports 6 are respectively communicated with a plurality of temporary storage cavities 16 through a plurality of connecting pipes 8, be provided with the separation mechanism that is used for separation cocoon to last the circulation between a plurality of connecting pipes 8 and a plurality of temporary storage chamber 16, supply with the bottom at the auxiliary tank 3 back and evenly seted up a plurality of egress openings 18 corresponding with a plurality of temporary storage chambers 16, egress opening 18 passes through separation mechanism and temporary storage chamber 16 intercommunication, a plurality of discharge gates 5 have been seted up to the positive bottom of reeling machine main part 1, discharge gate 5 and egress opening 18 intercommunication.
Wherein, the separation mechanism comprises a U-shaped plate 9, a mounting plate 13, a first separation plate 11, a second separation plate 14 and a telescopic component 7, the U-shaped plate 9 is fixedly embedded in the auxiliary supply box 3, the first separation plate 11 and the second separation plate 14 are movably embedded in the auxiliary supply box 3 through the mounting plate 13, the mounting plate 13 is mounted on the telescopic component 7, the telescopic component 7 is fixedly arranged at one side of the auxiliary supply box 3, the U-shaped plate 9 is provided with a plurality of first connecting holes 10 corresponding to the bin dividing ports 6, the first separation plate 11 is provided with a plurality of second connecting holes 12 corresponding to the first connecting holes 10, the second separation plate 14 is provided with a plurality of third connecting holes 15 corresponding to the temporary storage cavities 16, the plurality of second connecting holes 12 are staggered with the plurality of third connecting holes 15, when the second connecting holes 12 are communicated with the first connecting holes 10, the second connecting holes 12 are closed with the third connecting holes 15, when the second connecting hole 12 is communicated with the third connecting hole 15, when the second connecting hole 12 is closed with the first connecting hole 10, the telescopic assembly 7 comprises a mounting frame 701, an electric telescopic rod 702 and an auxiliary rod 703, the electric telescopic rod 702 is fixedly mounted on the mounting frame 701, a mounting plate 13 is fixedly connected with the output end of the electric telescopic rod 702, the auxiliary rod 703 is movably inserted on the mounting frame 701, one end of the auxiliary rod 703 is fixedly connected with the mounting plate 13, when the cocoons enter through the silo division 6 through a U-shaped plate 9, a first blocking plate 11 and a second blocking plate 14, the telescopic assembly 7 controls the first blocking plate 11 and the second blocking plate 14 to move forward, when the second connecting hole 12 is communicated with the first connecting hole 10, the second connecting hole 12 is closed with the third connecting hole 15, the cocoons enter the temporary storage cavity 16 through the first connecting hole 10 and the second connecting hole 12 and are temporarily stored in the temporary storage cavity 16, at this time, the third connecting hole 15 and the outflow hole 18 are relatively closed, the telescopic assembly 7 controls the first blocking plate 11 and the second blocking plate 14 to move backwards, when the second connecting hole 12 is communicated with the third connecting hole 15, when the second connecting hole 12 is closed with the first connecting hole 10, the third connecting hole 15 is relatively communicated with the outflow hole 18, at this time, the first blocking plate 11 prevents the cocoons from continuously flowing into the temporary storage chamber 16, and the cocoons in the temporary storage chamber 16 flow out through the third connecting hole 15 and the outflow hole 18, so that the quantitative continuous cocoon supply of the reeling machine is realized.
Wherein, connecting pipe 8 is including connecting thick pipe 801 and connecting tubule 802, connects the top of thick pipe 801 and divides the fixed intercommunication of storehouse mouth 6, and the bottom and the fixed intercommunication of first connecting hole 10 of connecting tubule 802 are connected, and connecting tubule 802 cover is established in connecting thick pipe 801, through establishing connecting tubule 802 cover in connecting thick pipe 801, after vibrating structure 17 produces the vibration to supplying with main tank 2, can not produce the influence to supplying with supplementary case 3.
Wherein, the vibration structure 17 comprises a vibration motor 1701, four telescopic rods 1702 and four telescopic springs 1703, the vibration motor 1701 is fixedly arranged on the main supply box 2, two ends of the four telescopic rods 1702 are respectively fixedly connected with the main supply box 2 and the auxiliary supply box 3, the four telescopic springs 1703 are respectively sleeved on the four telescopic rods 1702, the vibration structure 17 further comprises an auxiliary component, the auxiliary component comprises two limit blocks 1704 and two limit grooves, the two limit blocks 1704 are respectively fixedly arranged on the front surface of the main supply box 2, the two limit grooves are respectively arranged on the back surface of the main reeling machine body 1, the two limit blocks 1704 are respectively movably embedded in the two limit grooves, the limit blocks 1704 comprise a T-shaped block 17041 and a plurality of balls 17042, the T-shaped block 17041 is movably embedded in the limit grooves, the plurality of balls 17042 are uniformly embedded on the front surface of the T-shaped block 17041, the vibration motor 1701 works to drive the main supply box 2 to shake, thereby make the silkworm cocoon of supplying in the main tank 2 more easily get into through bin mouth 6 and store up the chamber 16 temporarily, reduced the possibility that the silkworm cocoon is blockked up in connecting pipe 8, through four telescopic link 1702 and four expanding spring 1703 that are equipped with, it is spacing to supply main tank 2, make the direction of supplying main tank 2 and rocking can only be about, through the auxiliary assembly who is equipped with, further restriction supply the direction that main tank 2 rocked, make simultaneously that supply main tank 2 reciprocates more smoothly.
Wherein, the outside of discharge gate 5 is provided with the deflector that is used for supplementary ejection of compact, and the both sides of deflector all are provided with and prolong the limit, through the deflector that is equipped with, when the silk cocoon flows into reeling machine main part 1 through temporary storage chamber 16, reduce the possibility that the silk cocoon flowed to other positions.
When the temporary storage device works, firstly, selected cocoons are poured into the accommodating cavity 4, at the moment, the cocoons respectively flow to the bin dividing ports 6 and the connecting pipes 8 and are blocked by the first blocking plate 11, at the moment, the telescopic assembly 7 controls the first blocking plate 11 and the second blocking plate 14 to move forwards, when the second connecting hole 12 is communicated with the first connecting hole 10, the second connecting hole 12 is closed with the third connecting hole 15, the cocoons sequentially pass through the first connecting hole 10 and the second connecting hole 12 to enter the temporary storage cavity 16 and are temporarily stored in the temporary storage cavity 16, at the moment, the third connecting hole 15 is relatively closed with the outflow port 18, the telescopic assembly 7 controls the first blocking plate 11 and the second blocking plate 14 to move backwards, when the second connecting hole 12 is communicated with the third connecting hole 15, when the second connecting hole 12 is closed with the first connecting hole 10, the third connecting hole 15 is relatively communicated with the outflow port 18, at the moment, the first blocking plate 11 prevents the cocoons from continuously flowing into the temporary storage cavity 16, while the cocoons in the temporary storage cavity 16 can flow out through the third connecting hole 15 and the outflow port 18, thereby realizing the quantitative continuous cocoon supply to the silk reeling machine device, when the cocoon is continuously supplied to the reeling machine quantitatively, the vibration motor 1701 is operated to drive the main supply box 2 to rock, so that the cocoons supplied into the main box 2 can more easily enter the temporary storage cavity 16 through the separating opening 6, the possibility that the cocoons are blocked in the connecting pipe 8 is reduced, and the cocoons can be easily separated from the silkworm excrement by the four telescopic rods 1702 and the four telescopic springs 1703, the main supply box 2 is limited, so that the shaking direction of the main supply box 2 can only be up and down, the shaking direction of the main supply box 2 is further limited by the auxiliary assembly, meanwhile, the supply main tank 2 can move up and down more smoothly, and by sleeving the connecting thin pipe 802 in the connecting thick pipe 801, when the vibration structure 17 vibrates the supply main tank 2, it does not affect the supply sub tank 3.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described above, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. A continuous cocoon supply structure of a silk reeling machine comprises a silk reeling machine main body (1) with a structure comprising a silk reeling machine ribbed plate, a coagulation prevention drum wheel supporting frame, a silk guide frame, a cocoon gathering device, an auxiliary agent roller and an auxiliary agent storage tank, and is characterized in that a main supply box (2) is movably arranged at the top of the back of the silk reeling machine main body (1), an accommodating cavity (4) for storing silkworm cocoons is formed in the top of the main supply box (2), a plurality of branch storage cavities (6) penetrating through the main supply box (2) are uniformly formed in the bottom of the accommodating cavity (4), an auxiliary supply box (3) is fixedly mounted at the bottom of the back of the silk reeling machine main body (1), a vibration structure (17) for preventing blockage is arranged on the main supply box (2), a plurality of temporary storage cavities (16) corresponding to the branch storage cavities (6) are formed in the auxiliary supply box (3), and the branch storage cavities (6) are respectively communicated with the temporary storage cavities (16) through a plurality of connecting pipes (8), a plurality of be provided with between connecting pipe (8) and a plurality of temporary reservoir (16) and be used for separation cocoon continuous circulation's separation mechanism, supply with the bottom at the auxiliary tank (3) back and evenly seted up a plurality of egress opening (18) corresponding with a plurality of temporary reservoir (16), egress opening (18) are through separation mechanism and temporary reservoir (16) intercommunication, a plurality of discharge gates (5) have been seted up to silk reeling machine main part (1) positive bottom, discharge gate (5) and egress opening (18) intercommunication.
2. The continuous cocoon supply structure of the silk reeling machine according to claim 1, wherein the blocking mechanism comprises a U-shaped plate (9), a mounting plate (13), a first blocking plate (11), a second blocking plate (14) and a telescopic assembly (7), the U-shaped plate (9) is fixedly embedded in the auxiliary supply box (3), the first blocking plate (11) and the second blocking plate (14) are movably embedded in the auxiliary supply box (3) through the mounting plate (13), the mounting plate (13) is mounted on the telescopic assembly (7), and the telescopic assembly (7) is fixedly arranged on one side of the auxiliary supply box (3).
3. The continuous cocoon supply structure of the silk reeling machine according to claim 2, wherein the U-shaped plate (9) is provided with a plurality of first connection holes (10) corresponding to the bin dividing ports (6), the first blocking plate (11) is provided with a plurality of second connection holes (12) corresponding to the first connection holes (10), and the second blocking plate (14) is provided with a plurality of third connection holes (15) corresponding to the temporary storage chamber (16).
4. A structure for continuously feeding cocoons on a reeling machine according to claim 3, characterized in that a plurality of said second connecting holes (12) are provided alternately with a plurality of said third connecting holes (15), and when the second connecting holes (12) are communicated with the first connecting holes (10), the second connecting holes (12) are closed with the third connecting holes (15), and when the second connecting holes (12) are communicated with the third connecting holes (15), the second connecting holes (12) are closed with the first connecting holes (10).
5. The continuous cocoon supply structure of the silk reeling machine according to claim 3, characterized in that the telescopic assembly (7) comprises a mounting frame (701), an electric telescopic rod (702) and an auxiliary rod (703), the electric telescopic rod (702) is fixedly mounted on the mounting frame (701), the mounting plate (13) is fixedly connected with the output end of the electric telescopic rod (702), the auxiliary rod (703) is movably inserted on the mounting frame (701), and one end of the auxiliary rod (703) is fixedly connected with the mounting plate (13).
6. The continuous cocoon supply structure of the silk reeling machine as claimed in claim 2, wherein the connecting pipe (8) comprises a connecting thick pipe (801) and a connecting thin pipe (802), the top end of the connecting thick pipe (801) is fixedly communicated with the bin splitting port (6), the bottom end of the connecting thin pipe (802) is fixedly communicated with the first connecting hole (10), and the connecting thin pipe (802) is sleeved in the connecting thick pipe (801).
7. The continuous cocoon feeding structure of the silk reeling machine according to claim 1, characterized in that the vibration structure (17) comprises a vibration motor (1701), four expansion links (1702) and four expansion springs (1703), the vibration motor (1701) is fixedly mounted on the main feeding box (2), two ends of the four expansion links (1702) are respectively fixedly connected with the main feeding box (2) and the auxiliary feeding box (3), and the four expansion springs (1703) are respectively sleeved on the four expansion links (1702).
8. The continuous cocoon feeding structure of the reeling machine according to claim 7, wherein the vibration structure (17) further comprises an auxiliary assembly, the auxiliary assembly comprises two limit blocks (1704) and two limit grooves, the two limit blocks (1704) are respectively and fixedly mounted on the front surface of the main supply box (2), the two limit grooves are respectively formed on the back surface of the main reeling machine body (1), and the two limit blocks (1704) are respectively and movably embedded in the two limit grooves.
9. The continuous cocoon feeding structure of the reeling machine according to claim 8, wherein the stopper (1704) is composed of a T-shaped block (17041) and a plurality of balls (17042), the T-shaped block (17041) is movably embedded in the stopper groove, and the plurality of balls (17042) are uniformly embedded on the front surface of the T-shaped block (17041).
10. The continuous cocoon feeding structure of the silk reeling machine according to claim 1, wherein the discharge port (5) is provided with a guide plate for auxiliary discharge at the outer side, and both sides of the guide plate are provided with extending edges.
CN202110467575.4A 2021-04-28 2021-04-28 Silk reeling machine device and continuous cocoon supply structure of silk reeling machine Active CN113106555B (en)

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