CN218619349U - Multi-functional cloth loosening machine - Google Patents

Multi-functional cloth loosening machine Download PDF

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Publication number
CN218619349U
CN218619349U CN202223174067.6U CN202223174067U CN218619349U CN 218619349 U CN218619349 U CN 218619349U CN 202223174067 U CN202223174067 U CN 202223174067U CN 218619349 U CN218619349 U CN 218619349U
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weight
cloth
flapping
auxiliary agent
swing
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CN202223174067.6U
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Chinese (zh)
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郑育生
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Foshan Zhonghui Textile Printing And Dyeing Co ltd
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Foshan Zhonghui Textile Printing And Dyeing Co ltd
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Abstract

A multi-functional cloth loosening machine, comprising: the device comprises a frame, a cloth conveying roller, a swing driver, a hollow swing shell and a beating mechanism; the plurality of cloth conveying rollers are used for conveying cloth into the hollow swinging shell; the lower end of the connecting rope is connected with the flapping heavy block, and the flapping heavy block is positioned below the hollow swinging shell; the output end of the flapping driver is connected with the upper end of the connecting rope and used for driving the flapping weight blocks to reset and swing through the connecting rope; the auxiliary agent storage is arranged on the flapping weight, and the auxiliary agent storage stores functional auxiliary agents. This scheme provides a multi-functional cloth loosening machine, it is through setting up in the below of cavity swing shell and patting the pouring weight, through patting the drive connection rope swing of driver to the pouring weight swing is patted in the drive, so that pat the cloth through patting pouring weight cooperation function auxiliary agent at the in-process of pine cloth, can realize improving the pine exhibition degree of cloth on the one hand, on the other hand can be with function auxiliary agent attached to on the cloth, cloth loosening machine structure and function singleness among the prior art have been solved, and the limited problem of pine exhibition degree.

Description

Multi-functional cloth loosening machine
Technical Field
The utility model relates to a cloth loosening machine technical field especially relates to a multi-functional cloth loosening machine.
Background
The cloth loosening machine mainly utilizes high-temperature steam to iron cloth in the process of unwinding a cloth roll, and the cloth ironed by the steam is accumulated in the cloth loosening machine to be naturally cooled and shrunk, so that the effect of eliminating internal stress in the cloth is achieved, and the cut clothes pieces or the made clothes are prevented from slowly shrinking and deforming. The swing angle of a hollow swing shell for loosening cloth is limited, the cloth loosening time is short, and the cloth loosening degree is insufficient in the conventional cloth loosening machine. Meanwhile, the conventional cloth loosening machine is single in function, and an auxiliary agent cannot be added to cloth in the cloth loosening process to assist in cloth loosening treatment.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a multi-functional pine cloth machine, it sets up through the below of swinging the shell at cavity and pats the pouring weight, connects the rope swing through patting the driver drive to the pouring weight swing is patted in the drive, so that pat the cloth at the in-process of pine cloth through patting pouring weight cooperation function auxiliary agent.
To achieve the purpose, the utility model adopts the following technical proposal:
a multi-functional cloth loosening machine comprising: the device comprises a frame, a cloth conveying roller, a swing driver and a hollow swing shell;
the plurality of cloth conveying rollers are rotatably arranged on the rack and used for conveying cloth into the hollow swinging shell; the output end of the swing driver is connected to the hollow swing shell and used for driving the hollow swing shell to reset and swing;
further comprising: a flapping mechanism;
the patting mechanism includes: the connection rope, the flapping weight, the flapping driver and the auxiliary agent storage device are connected;
the lower end of the connecting rope is connected with the flapping heavy blocks, and the flapping heavy blocks are positioned below the hollow swinging shell; the output end of the flapping driver is connected with the upper end of the connecting rope and used for driving the flapping weight blocks to reset and swing through the connecting rope; the auxiliary agent storage is arranged on the flapping weight, and the auxiliary agent storage stores functional auxiliary agents.
Preferably, the flapping driver is the hollow oscillating shell, and the upper end of the connecting rope is connected to the hollow oscillating shell.
Preferably, the auxiliary storage device is installed in the flapping weight block in a limiting manner, and the output end of the auxiliary storage device is communicated with the output port on the surface of the flapping weight block.
Further optimally, the flapping weights comprises: the weight male seat and the weight female cover;
the weight male seat and the weight female cover are respectively provided with an accommodating cavity, and the auxiliary agent storage device is arranged in the accommodating cavities; the lower end of the connecting rope is connected to the weight block female cover; the female lid of pouring weight detachably connects in the public seat of pouring weight, and both will the auxiliary agent reservoir seal in hold the chamber.
Preferably, the auxiliary agent storage device is provided with a liquid transfer pipe, and one end of the liquid transfer pipe is in contact with the functional auxiliary agent; the output end of the liquid conveying pipe is limited at the output port.
Preferably, the output port is located at the upper half part of the flapping weight, and the liquid conveying pipe is arranged obliquely upwards.
Preferably, the contact surfaces of the weight male seat and the weight female cover are respectively provided with a semicircular hole; when the weight male seat is connected with the weight female cover, the two adjacent semicircular holes form the output port.
Preferably, an accommodating cavity is formed inside the flapping weight; the outer side wall of the flapping weight block is provided with a micropore communicated with the accommodating cavity; one of the output ends of the auxiliary agent reservoir is located in the accommodating cavity.
Preferably, the aid reservoir is a fragrance reservoir for storing a perfume.
The utility model provides a technical scheme can include following beneficial effect:
this scheme provides a multi-functional cloth loosening machine, it sets up through the below of swinging the shell at the cavity and beats the pouring weight, connect the rope swing through beating the driver drive, beat the pouring weight swing with the drive, so that beat the cloth at the in-process of pine cloth through beating pouring weight cooperation function auxiliary agent, can realize improving the pine exhibition degree of cloth on the one hand, on the other hand can be with function auxiliary agent attached to on the cloth, the cloth loosening machine structure among the prior art and function singleness have been solved, and the limited problem of pine exhibition degree.
Drawings
FIG. 1 is a schematic structural view of one embodiment of a cloth loosening machine;
FIG. 2 is a schematic cross-sectional view of one embodiment of a cloth fluffer;
fig. 3 is an exploded view of one embodiment of the clapping mechanism.
Wherein:
the cloth feeding device comprises a frame 01, a cloth conveying roller 02, a swing driver 03, a hollow swing shell 04 and a cloth loading frame 05; a flapping mechanism 1; cloth 2; a bottom opening 041;
a connecting rope 11, a flapping weight 12, a flapping driver 13 and an auxiliary agent storage 14; an output port 15;
a housing chamber 120; a weight male seat 121 and a weight female cover 122; micropores 123; a semicircular hole 151;
a liquid transfer tube 141.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, not all, of the embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and to simplify the description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present invention. Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or to implicitly indicate the number of technical features indicated. Thus, features defined as "first", "second", may explicitly or implicitly include one or more of the described features. In the description of the present invention, "a plurality" means two or more unless specifically limited otherwise.
The technical solution of the present solution is further explained by the following embodiments with reference to the accompanying drawings.
A multi-functional cloth loosening machine, comprising: the cloth feeding device comprises a frame 01, a cloth conveying roller 02, a swing driver 03 and a hollow swing shell 04;
the plurality of cloth conveying rollers 02 are rotatably mounted on the frame 01 and used for conveying cloth 2 into the hollow swinging shell 04; the output end of the swing driver 03 is connected to the hollow swing shell 04 and is used for driving the hollow swing shell 04 to reset and swing;
further comprising: a flapping mechanism 1;
the tapping mechanism 1 includes: a connecting rope 11, a flapping weight 12, a flapping driver 13 and an auxiliary agent storage 14;
the lower end of the connecting rope 11 is connected with the flapping weight 12, and the flapping weight 12 is positioned below the hollow swinging shell 04; the output end of the flapping driver 13 is connected with the upper end of the connecting rope 11 and is used for driving the flapping weight 12 to reset and swing through the connecting rope 11; the auxiliary agent storage 14 is disposed on the flapping weight 12, and the auxiliary agent storage 14 stores functional auxiliary agent.
This scheme provides a multi-functional cloth loosening machine, it is through setting up in the below of cavity swing shell 04 and patting pouring weight 12, connect 11 swings of rope through patting 13 drive drivers, pat pouring weight 12 swings in order to the drive, so that pat cloth 2 through patting pouring weight 12 cooperation function auxiliary agent at the in-process of pine cloth, can realize improving the pine exhibition degree of cloth 2 on the one hand, on the other hand can be attached to the cloth with the function auxiliary agent, cloth loosening machine structure and function singleness among the prior art have been solved, and the limited problem of pine exhibition degree.
Specifically, in the actual cloth loosening process, the rotation of the cloth transfer roller 02 can transfer the cloth 2 to the hollow oscillating shell 04; a cloth holding frame 05 is generally arranged below the hollow swinging shell 04, and the hollow swinging shell 04 is generally positioned at a higher position; the swing driver 03 drives the hollow swing shell 04 to reset and swing, so that the hollow swing shell 04 repeatedly swings forwards and backwards, and then the cloth 2 falls in a wavy manner, and finally the cloth 2 is stacked into a whole in a wavy manner, as shown in fig. 2; in the scheme, the middle part of the hollow swinging shell 04 is hollow; when the cloth 2 is conveyed to pass through the hollow swinging shell 04 and a section of the cloth 2 extends out of the bottom opening 041 of the hollow swinging shell 04, the swinging driver 03 can drive the connecting rope 11 to swing to drive the flapping weight 12 to reset and swing; on one hand, the flapping weight 12 can flap the surface of the cloth 2 under the action of inertia to open the fold part and quickly push the cloth 2 to the rear in the flapping process, so that the spreading degree of the cloth 2 is larger, the transverse moving distance of the cloth 2 is larger, the horizontal distance of the wave structure is longer, and the spreading effect is improved; meanwhile, the flapping weight 12 is further provided with an auxiliary agent storage 14, the auxiliary agent storage 14 is provided with a functional auxiliary agent, the functional auxiliary agent can be attached to the cloth 2 in the flapping process, and the functional auxiliary agent is automatically combined with the cloth 2 in the cloth loosening process so as to meet the requirement of subsequent treatment or storage of the cloth 2. The functional auxiliary agent can be a softener, and the softener can be attached to the cloth 2 when the cloth is loosened, so that the flexibility of the cloth 2 is improved; or the functional auxiliary agent is a degerming agent, so that the antibacterial capability can be improved in the storage process of the cloth 2.
The swing driver 03 is a known mechanism having a function of driving reset rotation, for example, a motor is used for driving, and the output end of the motor is controlled to rotate, so that the hollow swing shell 04 can be driven to rotate in different directions; or a conveying belt structure, the motor drives the driving wheel to rotate, the driven wheel is driven to rotate through the synchronous belt, and then the hollow swinging shell 04 which is coaxially connected with the driven wheel is driven to synchronously rotate. Or the other end of the connecting arm is connected with the turntable, and the connecting arm is driven by the air cylinder to reset and move so as to drive the turntable to rotate and further drive the hollow swinging shell 04 to swing.
Preferably, the flapping driver 13 is the hollow oscillating shell 04, and the upper end of the connecting rope 11 is connected to the hollow oscillating shell 04.
In the scheme, the flapping driver 13 can be replaced by a known mechanism with a function of driving reset rotation; in a preferred scheme, the hollow swinging shell 04 can be directly connected with and drive the connecting rope 11 to swing so as to drive the flapping weights 12 and the auxiliary agent storage 14 to swing, and no other flapping drivers 13 are additionally arranged.
Preferably, the auxiliary agent storage 14 is installed in the flapping weight 12 in a limited manner, and an output end of the auxiliary agent storage 14 is communicated with an output port 15 on the surface of the flapping weight 12.
The auxiliary agent storage 14 is stored in the flapping weight 12, which can prevent the auxiliary agent storage 14 from being exposed on the surface of the flapping weight 12 for a long time, thereby improving the storage time of the functional auxiliary agent, reducing the volatilization of part of the functional auxiliary agent, and prolonging the service life of the functional auxiliary agent. When the functional additive is required to be output, the functional additive can be output to the cloth 2 through the output port 15 which is arranged on the surface of the weight 12 in a beating mode.
More preferably, the tapping weights 12 comprise: a weight male seat 121 and a weight female cover 122;
the weight male seat 121 and the weight female cover 122 are respectively provided with a containing cavity 120, and the auxiliary agent reservoir 14 is mounted in the containing cavity 120; the lower end of the connecting rope 11 is connected to the weight mother cover 122; the female weight cover 122 is detachably attached to the male weight seat 121, and both seal the auxiliary agent reservoir 14 to the accommodating chamber 120.
The flapping weights 12 can be disassembled into a male weight seat 121 and a female weight cover 122; the auxiliary agent storage device 14 is arranged in the accommodating cavity 120 between the weight male seat 121 and the weight female cover 122, and the weight male seat 121 and the weight female cover 122 can be disassembled when needed so as to replace different functional auxiliary agents after the auxiliary agent storage device 14 is taken out. The male weight seat 121 and the female weight cover 122 can be connected by known connection methods, such as clamping, or fastening.
Further optimally, the additive storage 14 is provided with a liquid transfer pipe 141, and one end of the liquid transfer pipe 141 is in contact with the functional additive; the output end of the liquid delivery pipe 141 is limited at the output port 15.
For partial liquid functional additives, the functional additives can be output to the outside of the flapping weight 12 through the liquid transfer pipe 141, and the functional additives flow along the pipe wall of the liquid transfer pipe 141 and are finally output to the outside of the output port 15; because the functional additive flows along the pipe wall of the liquid transfer pipe 141, the liquid transfer pipe 141 can guide the functional additive to the output port 15, and only the output port 15 needs to be aligned to the direction of the cloth 2, and the connecting rope 11 drives the flapping weight 12 to swing, so that the functional additive can be splashed out from the output port 15 and attached to the cloth 2. Meanwhile, the tube body of the liquid transfer tube 141 can be extended, so that the output of the functional additive can be limited, and the excessive output of the functional additive can be avoided.
Optimally, the output port 15 is located at the upper half part of the flapping weights 12, and the liquid transfer pipe 141 is inclined upward.
When the liquid transfer pipe 141 is inclined upward, the liquid transfer pipe 141 of the auxiliary agent storage 14 is inclined upward when the flapping weight 12 is kept standing, so that the functional auxiliary agent of the auxiliary agent storage 14 is not easily separated from the liquid transfer pipe 141; and the liquid drops remained in the liquid transfer pipe 141 can seal the liquid transfer pipe 141 to prevent external impurities from entering the auxiliary agent storage 14; when the functional additive needs to be output to the outside, the inertia effect of the flapping weights 12 and the additive storage 14 can drive the liquid drops in the liquid conveying pipe 141 to be output to the outside.
Preferably, the male weight seat 121 and the female weight cover 122 are respectively provided with a semicircular hole 151 on the contact surface thereof; when the weight male seat 121 and the weight female cover 122 are connected, the two adjacent semicircular holes 151 form the output port 15.
When the weight 12 is assembled and flapped, the liquid transmission pipe 141 may be limited in one of the semicircular holes 151, for example, after the auxiliary storage 14 is installed in the accommodating cavity 120, the liquid transmission pipe 141 of the auxiliary storage 14 is limited in the semicircular hole 151 of the weight male seat 121, and the weight male seat 121 is covered by the weight female cover 122, so that the semicircular hole 151 of the weight female cover 122 is aligned with the liquid transmission pipe 141, and the auxiliary storage 14 is limited in the accommodating cavity 120 by limiting the liquid transmission pipe 141.
Preferably, the inside of the flapping weight 12 is provided with a containing cavity 120; the outer side wall of the flapping weight 12 is provided with a micropore 123 communicated with the accommodating cavity 120; one of the outlet ends of the auxiliary agent reservoir 14 is located in the receiving space 120.
The auxiliary agent storage 14 can volatilize the functional auxiliary agent into the containing chamber 120 and output the functional auxiliary agent to the surface of the cloth 2 by beating the micropores 123 on the surface of the weight 12 to output the functional auxiliary agent in a gas form to the cloth 2.
Preferably, the auxiliary agent reservoir 14 is a fragrance reservoir for storing a perfume.
Perfume is stored in the fragrance storage device and can be output through the micropores 123 so as to output perfume to the cloth 2 in the cloth loosening process and improve fragrance of the cloth 2.
The technical principle of the present solution is described above with reference to specific embodiments. These descriptions are made for the purpose of illustrating the principles of the present solution and are not to be construed in any way as limiting the scope of the present solution. Based on the explanations herein, those skilled in the art will be able to conceive of other embodiments of the present solution without any inventive effort, which would fall within the scope of the present solution.

Claims (9)

1. A multi-functional cloth loosening machine, comprising: the device comprises a frame, a cloth conveying roller, a swing driver and a hollow swing shell;
the plurality of cloth conveying rollers are rotatably arranged on the rack and used for conveying cloth into the hollow swinging shell; the output end of the swing driver is connected to the hollow swing shell and is used for driving the hollow swing shell to reset and swing;
it is characterized by also comprising: a flapping mechanism;
patting mechanism includes: the connection rope, the flapping weight, the flapping driver and the auxiliary agent storage device are connected;
the lower end of the connecting rope is connected with the flapping heavy blocks, and the flapping heavy blocks are positioned below the hollow swinging shell; the output end of the flapping driver is connected with the upper end of the connecting rope and used for driving the flapping weight blocks to reset and swing through the connecting rope; the auxiliary agent storage device is arranged on the flapping heavy block, and the auxiliary agent storage device stores functional auxiliary agents.
2. The multifunctional cloth loosening machine as claimed in claim 1, wherein the beating driver is the hollow swinging shell, and the upper end of the connecting rope is connected to the hollow swinging shell.
3. The multifunctional cloth loosening machine as claimed in claim 1 or 2, wherein the auxiliary storage is mounted in the flapping weight in a limited manner, and an output end of the auxiliary storage is connected to an output port on the surface of the flapping weight.
4. The multi-functional cloth loosening machine of claim 3, wherein said beater weights comprise: the weight male seat and the weight female cover;
the weight male seat and the weight female cover are respectively provided with an accommodating cavity, and the auxiliary agent storage device is arranged in the accommodating cavity; the lower end of the connecting rope is connected with the weight block female cap; the female cover of pouring weight is detachably connected to the male seat of pouring weight, and the two seal the auxiliary agent storage device in the accommodating cavity.
5. The multifunctional cloth loosening machine as claimed in claim 4, wherein the auxiliary agent storage is provided with a liquid transfer pipe, one end of the liquid transfer pipe is in contact with the functional auxiliary agent; the output end of the liquid conveying pipe is limited at the output port.
6. The multi-functional cloth loosening machine of claim 5, wherein the output opening is located at the upper half of the beater weight, and the liquid delivery tube is inclined upward.
7. The multifunctional cloth loosening machine as claimed in claim 5, wherein the male and female weight covers are respectively provided with a semicircular hole on their contact surfaces; when the weight male seat is connected with the weight female cover, the two adjacent semicircular holes form the output port.
8. The multifunctional cloth loosening machine as claimed in claim 3, wherein the flapping weights are provided with an accommodating cavity inside; the outer side wall of the flapping weight is provided with a micropore communicated with the accommodating cavity; one of the output ends of the auxiliary agent reservoir is located in the accommodating cavity.
9. A multi-functional cloth loosening machine as claimed in claim 8, wherein said aid reservoir is a fragrance reservoir for storing a perfume.
CN202223174067.6U 2022-11-29 2022-11-29 Multi-functional cloth loosening machine Active CN218619349U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223174067.6U CN218619349U (en) 2022-11-29 2022-11-29 Multi-functional cloth loosening machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223174067.6U CN218619349U (en) 2022-11-29 2022-11-29 Multi-functional cloth loosening machine

Publications (1)

Publication Number Publication Date
CN218619349U true CN218619349U (en) 2023-03-14

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223174067.6U Active CN218619349U (en) 2022-11-29 2022-11-29 Multi-functional cloth loosening machine

Country Status (1)

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CN (1) CN218619349U (en)

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