CN215887507U - Overflow rotary-breaking nozzle for dyeing machine - Google Patents

Overflow rotary-breaking nozzle for dyeing machine Download PDF

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Publication number
CN215887507U
CN215887507U CN202122255017.XU CN202122255017U CN215887507U CN 215887507 U CN215887507 U CN 215887507U CN 202122255017 U CN202122255017 U CN 202122255017U CN 215887507 U CN215887507 U CN 215887507U
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China
Prior art keywords
nozzle
overflow
section
shell
breaking
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CN202122255017.XU
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Chinese (zh)
Inventor
赵科俭
金立晗
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Jiangsu Bosen Machinery Manufacturing Co ltd
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Jiangsu Bosen Machinery Manufacturing Co ltd
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Abstract

The utility model discloses an overflow rotary breaking nozzle for a dyeing machine, which comprises an upper nozzle, a lower nozzle and a nozzle shell. The utility model discloses a nozzle shell, including nozzle shell, upper nozzle, lower nozzle, upper nozzle shell, lower nozzle shell, upper nozzle shell, lower nozzle shell, liquid inlet pipe has been seted up to nozzle shell one side, and its inside is fixed with the flange, lower nozzle fixed connection in the upper nozzle outside, the upper nozzle top is fixed in above the flange, the upper nozzle with the lower nozzle is the cross section and is polygonal chamber section, the upper nozzle lateral surface with form the cross section between the lower nozzle medial surface and be polygonal cyclic annular hydrojet mouth, when the hydrojet was the polygonal cyclic annular hydrojet mouth through above-mentioned cross-section, there was not rotatory phenomenon, effectively brokenly soon. The overflow rotary breaking nozzle for the dyeing machine has the advantages that the problems of blockage of a feed inlet and nonuniform coloring caused by winding of the fabric due to rotation of dye liquor are solved, stable and reliable operation of the nozzle can be ensured, and the fabric can be uniformly colored in a high-efficiency manner.

Description

Overflow rotary-breaking nozzle for dyeing machine
Technical Field
The utility model belongs to the technical field of dyeing machines, and particularly relates to an overflow rotating breaking nozzle for a dyeing machine.
Background
The overflow breaking spinning dyeing machine utilizes the Venturi principle to make the dyeing liquor delivered by pump body be fed into Venturi nozzle to drive fabric to make it move and dye it. In the dyeing process, the dye liquor is sprayed out through the nozzle in an accelerating way to dye the fabric, and the dyeing process is finished.
The nozzle of overflow breaking-spinning dyeing machine is used for making cloth smoothly and orderly circulate and uniformly spray dyeing liquor on the cloth. At present, the nozzle of traditional dyeing machine is mostly circular cross-section and walks cloth passageway and hydrojet mouth, and in the actual production, because of the dye liquor has rotary motion in the hydrojet mouth, can twine when driving the fabric motion and tie a knot, lead to work efficiency low, and dyeing inhomogeneous is difficult to guarantee production quality and production efficiency.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an overflow rotary breaking nozzle for a dyeing machine, which aims to solve the problems that in the prior art, when dye liquor of the dyeing machine is sprayed, the fabric is knotted and wound due to rotation, the fabric is dyed unevenly or a cloth inlet channel of the dyeing machine is blocked.
The technical purpose of the utility model is realized by the following technical scheme:
the utility model provides a broken nozzle that revolves of overflow for dyeing machine which characterized in that: comprises an upper nozzle, a lower nozzle and a nozzle shell.
The liquid inlet pipe is arranged on one side of the nozzle shell, the flange is fixedly arranged in the nozzle shell, the top of the upper nozzle is fixed on the flange, the lower nozzle is fixedly connected to the outer side of the upper nozzle, the upper nozzle and the lower nozzle are both cavity sections with polygonal cross sections, an annular liquid spraying opening with a polygonal cross section is formed between the narrowing surface of the outer side of the upper nozzle and the inner side surface of the throat part of the lower nozzle, and a cloth walking channel is formed between the inner side surface of the upper nozzle and the inner side surface below the throat part of the lower nozzle.
Particularly, the upper nozzle is a cavity section with a polygonal cross section and a narrowed outer side surface at the bottom, and the lower nozzle is a cavity section with a polygonal cross section, a throat part of the lower nozzle is contracted inwards, and the interior of the lower nozzle is gradually reduced.
Particularly, a liquid spraying opening is formed between the outer narrowing surface of the upper nozzle and the inner side surface of the throat part of the lower nozzle, dye liquid is sprayed out at the liquid spraying opening in an accelerated mode, and rotary spiral motion is not performed.
In particular, the inner side surface of the upper nozzle and the inner side surface below the throat part of the lower nozzle form a cloth walking channel, and the fabric enters the cloth walking channel from the top of the upper nozzle.
Particularly, the liquid spraying port is communicated with the cloth conveying channel, and the dye liquor is sprayed from the liquid spraying port to drive the fabric to move and dye the fabric.
Particularly, the flange and the nozzle shell are fixedly connected by welding.
Particularly, the bottom of the nozzle shell is provided with a sealing groove, and a sealing ring is arranged in the sealing groove to play a role in sealing.
In particular, the upper nozzle and the lower nozzle are quadrilateral in cross section. The cross section of a liquid spraying opening formed between the outer side surface of the upper nozzle and the inner side surface of the lower nozzle is quadrilateral, and when dye liquor passes through the liquid spraying opening with the cross section, the rotation phenomenon does not exist, so that the rotation breaking effect is realized.
In conclusion, the utility model has the following beneficial effects:
1. the upper nozzle and the lower nozzle are both of a design structure with a polygonal cross section, when dye liquor enters the nozzles, annular liquid spraying ports with polygonal cross sections are formed, and the dye liquor is sprayed out from the liquid spraying ports without rotation, so that the rotating breaking effect is realized;
2. the lower nozzle is fixedly connected to the outer side of the upper nozzle, the top of the upper nozzle is fixed on the flange, the disassembly and the assembly are convenient, and the universality is good.
Drawings
FIG. 1 is a cross-sectional view of an overflow spin breaker nozzle for a dyeing machine;
FIG. 2 is a sectional view showing the internal structure of an overflow rotary breaking nozzle for a dyeing machine at A-A in FIG. 1;
description of reference numerals: 1. the device comprises an upper nozzle, 2 a lower nozzle, 3 a nozzle shell, 4 a liquid inlet pipe, 5 a water flowing cavity, 6 a liquid spraying opening, 7 a sealing ring, 8 a cloth flowing channel, 9 and a flange.
Detailed Description
The technical scheme of the utility model is further explained by the specific implementation mode in combination with the attached drawings.
Referring to fig. 1 and 2, in the present embodiment, an overflow breaking cyclone nozzle for a dyeing machine includes an upper nozzle 1, a lower nozzle 2, a nozzle shell 3, a liquid inlet pipe 4, a water flowing cavity 5, a liquid spraying port 6, a sealing ring 7, a cloth flowing channel 8, and a flange 9.
Feed liquor pipe 4 is that the pipeline of one section connection dye liquor pump body communicates on the outer wall of 3 one sides of nozzle shell, and dye liquor flows in from feed liquor pipe 4, and nozzle shell 3 is inside to walk water cavity 5, and it includes nozzle 1 and the part of spouting 2 outer departments down, and dye liquor is full of after entering into nozzle shell 3 inside and walks water cavity 5. The inside of the nozzle shell 3 is fixedly provided with a flange 9 through welding, and the flange 9 plays a role in fixing the position of the upper nozzle and the lower nozzle. The lower nozzle 2 is connected and fixed outside the upper nozzle 1 through a support piece, but is not limited to be connected and fixed by a support piece. The top of the upper nozzle 1 is fixed on the flange 9, the cross sections of the cavity sections of the upper nozzle 1 and the lower nozzle 2 are both polygons, an annular liquid spraying opening 6 with a polygonal cross section is formed between the narrowing surface of the outer side of the upper nozzle 1 and the inner side surface of the throat part of the lower nozzle, the cross section of the annular liquid spraying opening is a polygon including but not limited to regular polygons, rotary spiral motion does not exist when dye liquor passes through, and then the rotary breaking effect is achieved, and when the polygon variable is more, the rotary breaking effect is worse. A cloth feeding channel 8 is formed between the inner side surface of the upper nozzle 1 and the inner side surface below the throat part of the lower nozzle 2, the liquid spraying port 6 is communicated with the cloth feeding channel 8, and the fabric is driven by the dye solution in the cloth feeding channel 8 to move linearly and be colored.
When the dyeing machine works, dye liquor enters the nozzle shell 3 through the liquor inlet pipe 4, then enters the annular liquid spraying opening 6 between the upper nozzle 1 and the lower nozzle 2 through the water flowing cavity 5 outside the upper nozzle 1, and finally the dye liquor is uniformly sprayed out through the liquid spraying opening 6 to drive a fabric to move and dye the fabric due to the fact that the cross section of the liquid spraying opening 6 is polygonal, and the dye liquor does not rotate when sprayed out, and can be efficiently dyed with high quality.
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 changes may be made in the embodiments and/or equivalents thereof without departing from the spirit and scope of the utility model. 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 (8)

1. An overflow spin breaking nozzle for a dyeing machine, comprising: an upper nozzle (1), a lower nozzle (2) and a nozzle shell (3);
liquid inlet pipe (4) have been seted up to nozzle shell (3) one side, nozzle shell (3) inside sets firmly flange (9), go up nozzle (1) top and be fixed in above flange (9), lower nozzle (2) fixed connection in go up nozzle (1) outside, go up nozzle (1) with lower nozzle (2) are the cross section and are polygonal chamber section, go up nozzle (1) lateral surface with form between lower nozzle (2) medial surface that the cross-section is polygonal cyclic annular spout liquid mouth (6), go up nozzle (1) inside with for walking between lower nozzle (2) inside cloth passageway (8).
2. The overflow cyclone breaking nozzle for dyeing machine as claimed in claim 1, characterized in that said upper nozzle (1) is a chamber section with polygonal cross section and bottom outer side surface shrinking inward to a certain extent, and said lower nozzle (2) is a chamber section with polygonal cross section and throat shrinking inward and interior shrinking gradually.
3. An overflow spin-breaking nozzle for dyeing machine, according to claim 2, characterized in that said liquid jet (6) is formed between the outer narrowing of said upper nozzle (1) and the inner side of the throat of said lower nozzle (2).
4. An overflow spin breaking nozzle for dyeing machine according to claim 3 characterized in that the inner side of the upper nozzle (1) and the inner side of the lower nozzle (2) below the throat form a cloth passage (8).
5. Overflow and spin breaking nozzle for dyeing machines according to claim 4 characterized in that said liquid jet (6) communicates with said cloth transport channel (8).
6. Overflow and spin breaking nozzle for dyeing machines according to claim 5, characterized in that said flange (9) is fixedly connected to said nozzle housing (3) by welding.
7. The overflow spin breaking nozzle for the dyeing machine is characterized in that a sealing groove is formed in the bottom of the nozzle shell (3), and a sealing ring (7) is installed in the sealing groove.
8. Overflow and spin breaking nozzle for dyeing machines according to claim 7, characterized in that the cross section of the upper nozzle (1) and the lower nozzle (2) is quadrilateral.
CN202122255017.XU 2021-09-17 2021-09-17 Overflow rotary-breaking nozzle for dyeing machine Active CN215887507U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122255017.XU CN215887507U (en) 2021-09-17 2021-09-17 Overflow rotary-breaking nozzle for dyeing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122255017.XU CN215887507U (en) 2021-09-17 2021-09-17 Overflow rotary-breaking nozzle for dyeing machine

Publications (1)

Publication Number Publication Date
CN215887507U true CN215887507U (en) 2022-02-22

Family

ID=80349145

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122255017.XU Active CN215887507U (en) 2021-09-17 2021-09-17 Overflow rotary-breaking nozzle for dyeing machine

Country Status (1)

Country Link
CN (1) CN215887507U (en)

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