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Wetting device for textiles

A textile and wetting technology, applied in the field of wetting devices for textiles, can solve the problems of long time required for wetting, polluted environment by sewage, uneven wetting, etc., and achieve the effect of improving reproducibility

Inactive Publication Date: 2015-05-06
诚瑞琛泵厂
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In the fields of textiles and printing and dyeing machinery and equipment, devices and wet treatment processes for wetting textiles are often used. The wetting devices and wet treatment processes of the prior art usually only use the convex grooves in the drum to wet the textiles during the rotation of the drum. Elevate to a high place, and then use the gravity to fall under the drum during the descending process of the textile. According to the potential energy and collision force released by it, the textile and the chemical solution will exchange liquid. Since the impact force cannot be greater than the gravity, the The traditional drum rotation speed cannot be too fast, so it takes a long time for wetting, the efficiency is very low, and it is easy to produce uneven wetting and phenomenon
In addition, more liquid is required for wetting, and the excess liquid is wasted, causing sewage to pollute the environment at the same time.

Method used

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  • Wetting device for textiles

Examples

Experimental program
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Effect test

Embodiment Construction

[0019] Such as Figure 1-Figure 3 As shown, a wetting device 1 for textiles includes a drum-shaped container 10, a sealed end cap 15 is movably connected to the opening side of the container 10, a key and a sealing strip 15 are provided between them, and a convex groove 102 and a groove are provided on the inner wall of the container. 101. Driven by power, the container 10 rotates -180~180 degrees along the X axis and swings reciprocally, because the left side of the container 10 is connected to a pipe. The container 10 is driven by the power unit to rotate -90°~90° along the Y axis, so that the container 10 is in a reciprocating swing state from horizontal to vertical, that is, the container is placed horizontally and vertically, and the textile 30 is placed in the container 10.

[0020] The power device includes brackets 13 located at both ends of the container, and the brackets 13 are provided with two pairs of X-direction and X-direction bearing sets 17, Y-axis and bearing...

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PUM

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Abstract

A textile wetting device (1) comprises a waist-drum-shaped container (10). An opening side of the container is movably connected with a sealing end cover (15), and multiple concave-convex grooves are formed in an inner wall of the container. The container (10) is driven by power to rotate in a reciprocating manner along an X axis, and is driven by a power device to swing in a reciprocating manner along a Y axis, so that the container is in a state ranging from a horizontal state to a vertical state. In the wetting device of the present invention, the container (10) swings severely left and right with power generated by an impact wave, and power generated by impact collision between a textile and a convex groove (102) in a chemical solution inner wall is larger than gravity of a free falling object by multiple times, so that the wetting performance is improved; in addition, extruded liquid is leaded to another unwetted textile with a concave grooves (101) serving as a guiding channel, so that wetting is more uniform.

Description

technical field [0001] The invention relates to the field of textile and printing and dyeing machinery, in particular to a wetting device for textiles. Background technique [0002] In the fields of textiles and printing and dyeing machinery and equipment, devices and wet treatment processes for wetting textiles are often used. The wetting devices and wet treatment processes of the prior art usually only use the convex grooves in the drum to wet the textiles during the rotation of the drum. Elevate to a high place, and then use the gravity to fall under the drum during the descending process of the textile. According to the potential energy and collision force released by it, the textile and the chemical solution will exchange liquid. Since the impact force cannot be greater than the gravity, the The traditional drum rotation speed cannot be too fast, so it takes a long time for wetting, the efficiency is very low, and it is easy to produce uneven wetting and phenomenon. In...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): D06B13/00D06B5/00
CPCD06B1/02D06B5/24
Inventor 梁兆康梁兆荣
Owner 诚瑞琛泵厂