Humidification device that weaving workshop was used
Technical Field
The invention relates to the technical field of humidifying devices in textile workshops, in particular to a humidifying device for a textile workshop.
Background
The current humidification device that weaving workshop was used it includes supply pipe, nozzle, and a plurality of nozzles are linear array along supply pipe and distribute, and the nozzle includes nozzle main part, installed part, vortex body, installs the installed part in the one end of nozzle main part, is connected with the vortex body on the installed part, constitutes vortex atomizing chamber between nozzle main part and the installed part, is provided with vortex body in the vortex atomizing chamber, and nozzle main part is including shrink section, constant diameter section, the diffusion section that connects gradually. However, the existing humidifying device has the problems of poor atomization uniformity and poor atomization effect.
Disclosure of Invention
The invention aims to overcome the defects in the prior art and provide a humidifying device for a textile workshop, which can obviously improve the atomizing uniformity and the atomizing effect of the humidifying device through the design of vortex bodies, wherein the vortex bodies rotate, collide and atomize under the impact of water flow. The water flow passes through the constriction and diffusion section of a specific size which can further enhance the atomizing uniformity and atomizing effect of the humidifier.
In order to achieve the above purpose, the technical scheme adopted by the invention is as follows:
the utility model provides a humidification device that weaving workshop was used, it includes supply pipe, the nozzle, a plurality of nozzles are linear array type distribution along the supply pipe, the nozzle includes the nozzle main part, the installed part, vortex fluid, the installed part is installed to the one end of nozzle main part, be connected with the vortex body on the installed part, constitute vortex atomizing chamber between nozzle main part and the installed part, the vortex atomizing intracavity is provided with vortex fluid, the nozzle main part is including the shrink section that connects gradually, the constant diameter section, the diffusion section is nozzle exit hole section, the radial periphery of nozzle main part is provided with the section of intaking, radial water inlet channel has been seted up to the section of intaking, its characterized in that: the periphery of installed part is equipped with the connecting screw thread, installed part and nozzle main part threaded connection, the center of installed part is provided with the fixed axle, install vortex body rotatably on the fixed axle, the vortex body includes the chassis, the axle sleeve, first blade, the second blade, there are a plurality of first blades, a plurality of second blade along circumference evenly distributed on the chassis, first blade is located the radial inboard of second blade and one-to-one setting, and radial clearance has between them, first blade and second blade are located same radial line, the upper end of first blade, second blade has the arcwall face, and first blade, the second blade is 1/4 circular structure generally, the fixed axle is connected with the axle sleeve through the bearing.
Further, the radial length of the first blade is 0.6-0.8 times of the radial length of the second blade; the axial height of the first blade is 0.4-0.6 times of the axial height of the second blade; the shaft sleeve protrudes out of the chassis, and the axial protruding height of the shaft sleeve is 0.8-1.0 times of the axial height of the first blade.
Further, the first blade and the second blade are provided with a plurality of protruding portions on the blade surfaces, the plurality of protruding portions are substantially distributed on the blade surfaces, and the protruding portions are triangular pyramid protruding portions.
Further, the diffusion section has an axial length X1, the constant diameter section has an axial length X2, the contraction section has an axial length X3, and x1= (2.0-3.0) X2, x1= (1.2-2.0) X2; the diverging section has a cone angle a and the converging section has a cone angle b, b+a=90°.
Further, the axial length x1= (2.4-2.6) X2, x1= (1.5-1.7) X2; b= (4.5 to 5.5) a.
According to the humidifying device for the textile workshop, through the design of the vortex body, the vortex body rotates, collides and atomizes under the impact of water flow, so that the atomizing uniformity and the atomizing effect of the humidifying device can be remarkably improved. The water flow passes through the constriction and diffusion section of a specific size which can further enhance the atomizing uniformity and atomizing effect of the humidifier.
Drawings
FIG. 1 is a schematic view of a humidifying device for a textile workshop;
FIG. 2 is a schematic view of a vortex body structure according to the present invention;
FIG. 3 is a schematic view of a vane according to the present invention.
In the figure: the nozzle comprises a nozzle main body 1, a mounting piece 2, a vortex body 3, a contraction section 11, a constant diameter section 12, a diffusion section 13, a vortex atomizing cavity 14, a water inlet section 15, connecting threads 21, a fixed shaft 22, a chassis 31, a shaft sleeve 32, a first blade 33, a second blade 34, an arc-shaped surface 35 and a protruding part 36.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present invention more apparent, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is apparent that the described embodiments are some embodiments of the present invention, but not all embodiments of the present invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
The invention is described in further detail below with reference to the accompanying drawings.
As shown in fig. 1-3, a humidifying device for a textile workshop comprises a water supply pipe and nozzles, wherein a plurality of nozzles are distributed in a linear array along the water supply pipe, each nozzle comprises a nozzle main body 1, a mounting piece 2 and a vortex body 3, one end of the nozzle main body 1 is provided with the mounting piece 2, the mounting piece 2 is connected with the vortex body 3, a vortex atomizing cavity 14 is formed between the nozzle main body 1 and the mounting piece 2, the vortex body 3 is arranged in the vortex atomizing cavity 14, the nozzle main body 1 comprises a contraction section 11, an equal-diameter section 12 and a diffusion section 13 which are sequentially connected, the diffusion section 13 is a nozzle outlet hole section, a water inlet section 15 is arranged at the radial periphery of the nozzle main body 1, and a radial water inlet channel is formed in the water inlet section 15, and the humidifying device is characterized in that: the periphery of mounting part 2 is equipped with connecting screw thread 21, mounting part 2 and nozzle body 1 threaded connection, the center of mounting part 2 is provided with fixed axle 22, install vortex body 3 rotatably on the fixed axle 22, vortex body 3 includes chassis 31, axle sleeve 32, first blade 33, second blade 34, a plurality of first blades 33 of circumference evenly distributed on chassis 31, a plurality of second blade 34, first blade 33 is located the radial inboard of second blade 34 and set up one by one, and have radial clearance between them, first blade 33 and second blade 34 are located same radial line, the upper end of first blade 33, second blade 34 has arcwall face 35, and first blade 33, second blade 34 are 1/4 circular structure roughly, fixed axle 22 is connected with axle sleeve 32 through the bearing.
The invention relates to a humidifying device for a textile workshop, which is characterized in that by designing a vortex body 3, in particular to the vortex body 3, the vortex body 3 comprises a chassis 31, a shaft sleeve 32, a first blade 33 and a second blade 34, the first blade 33 and the second blade 34 are of a 1/4 circular structure, and the vortex body 3 rotates, collides and atomizes under the impact of water flow, so that the atomizing uniformity and the atomizing effect of the humidifying device can be remarkably improved.
Further, the radial length of the first vane 33 is 0.6 to 0.8 times, preferably 0.7 times, the radial length of the second vane 34; the axial height of the first vane 33 is 0.4 to 0.6 times, preferably 0.5 times, the axial height of the second vane 34. The shaft sleeve 32 protrudes from the chassis 31, and the axial protruding height of the shaft sleeve 32 is 0.8-1.0 times, preferably 0.9 times, the axial height of the first vane 33. It can further improve the atomizing homogeneity and the atomizing effect of humidification device.
In an embodiment, the blade surfaces (both side surfaces of the blade) of the first blade 33 and the second blade 34 are provided with a plurality of protrusions 36, the plurality of protrusions 36 are substantially distributed over the blade surfaces, and the protrusions 36 are triangular pyramid type protrusions. The device can further improve the collision and atomization effects of water flow, thereby improving the atomization uniformity and atomization effects of the humidifying device.
Further, the diffuser section 13 has an axial length X1, the isodiametric section 12 has an axial length X2, the constrict section 11 has an axial length X3, x1= (2.0-3.0) X2, x1= (1.2-2.0) X2; the diffuser section 13 has a taper angle a and the constrictor section 11 has a taper angle b, b+a=90°.
Further, x1= (2.4 to 2.6) X2, x1= (1.5 to 1.7) X2; b= (4.5 to 5.5) a. The water flow passes through the constriction and diffusion section of a specific size which can further enhance the atomizing uniformity and atomizing effect of the humidifier.
According to the humidifying device for the textile workshop, through the design of the vortex body 3, the vortex body 3 rotates, collides and atomizes under the impact of water flow, so that the atomizing uniformity and the atomizing effect of the humidifying device can be remarkably improved. The water flow passes through the constriction and diffusion section of a specific size which can further enhance the atomizing uniformity and atomizing effect of the humidifier.
The above-described embodiments are illustrative of the present invention and are not intended to be limiting, and it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the spirit and scope of the present invention as defined by the appended claims and their equivalents.