Resorption formula fabrics flies fine hair adsorption equipment based on reciprocating motion

文档序号:1166355 发布日期:2020-09-18 浏览:19次 中文

阅读说明:本技术 一种基于往复运动的回吸式纺织品飞绒吸附装置 (Resorption formula fabrics flies fine hair adsorption equipment based on reciprocating motion ) 是由 王云飞 于 2020-06-12 设计创作,主要内容包括:本发明涉及纺织技术领域,且公开了一种基于往复运动的回吸式纺织品飞绒吸附装置,包括装置主体,装置主体的内部设置有转接头,转接头的内侧活动连接有加热棒,转接头的内侧活动连接有驱动螺杆,驱动螺杆的顶端活动连接有第一锥齿轮,第一锥齿轮的内侧活动连接有第二锥齿轮,第二锥齿轮的下方活动连接有安装蜗杆,安装蜗杆的外侧套接有纺织辊,纺织辊的内侧夹持有连接丝杆,驱动螺杆的内侧螺纹连接有活动块。该基于往复运动的回吸式纺织品飞绒吸附装置,通过转接头的传导,可带动加热棒的同步旋转,加热棒产生温度,对未被回吸风扇吸附的飞绒进行灼烧,避免飞绒被工作人员吸附,容易造成呼吸道疾病,损害工作人员的健康。(The invention relates to the technical field of textiles and discloses a reciprocating motion-based resorption type textile flying velvet adsorption device which comprises a device main body, wherein an adapter is arranged in the device main body, the inner side of the adapter is movably connected with a heating rod, the inner side of the adapter is movably connected with a driving screw rod, the top end of the driving screw rod is movably connected with a first bevel gear, the inner side of the first bevel gear is movably connected with a second bevel gear, the lower part of the second bevel gear is movably connected with an installation worm, the outer side of the installation worm is sleeved with a textile roller, the inner side of the textile roller is clamped with a connecting screw rod, and the inner side of the driving screw rod is. This resorption formula fabrics flies fine hair adsorption equipment based on reciprocating motion, through the conduction of adapter, can drive the synchronous revolution of heating rod, and the heating rod produces the temperature, flies the fine hair to not being adsorbed by the resorption fan and burns, avoids flying the fine hair and is adsorbed by the staff, causes respiratory disease easily, harm staff's health.)

1. The utility model provides a resorption formula fabrics flies fine hair adsorption equipment based on reciprocating motion, includes device main part (1), its characterized in that: the inside of device main part (1) is provided with adapter (2), the inboard swing joint of adapter (2) has heating rod (3), the inboard swing joint of adapter (2) has driving screw (4), the top swing joint of driving screw (4) has first bevel gear (5), the inboard swing joint of first bevel gear (5) has second bevel gear (6), the below swing joint of second bevel gear (6) has installation worm (7), weaving roller (8) have been cup jointed in the outside of installation worm (7), the inboard centre gripping of weaving roller (8) has connecting screw rod (9), the inboard threaded connection of driving screw (4) has movable block (10).

2. The reciprocating motion-based suck-back textile fly adsorption device of claim 1, wherein: the lower part of the movable block (10) is movably connected with a reciprocating screw (11).

3. The reciprocating motion-based suck-back textile fly adsorption device of claim 2, wherein: the inner side of the reciprocating screw rod (11) is in threaded connection with a reciprocating block (12).

4. A reciprocating motion based suck back textile fly ash suction device as claimed in claim 3 wherein: the outer side of the reciprocating block (12) is movably connected with a connecting screw rod (13).

5. The reciprocating motion-based suck-back textile fly adsorption device of claim 4, wherein: one end of the connecting screw rod (13) far away from the reciprocating block (12) is movably connected with a back suction fan (14).

6. The reciprocating motion-based suck-back textile fly adsorption device of claim 5, wherein: the outer side of the back suction fan (14) is movably connected with a mounting bracket (15).

7. The reciprocating motion-based suck-back textile fly adsorption device of claim 1, wherein: the driving screw rod (4) is vertically connected with the reciprocating screw rod (11), and the movable block (10) is arranged at the position where the driving screw rod (4) and the reciprocating screw rod (11) are abutted and hung.

8. The reciprocating motion-based suck-back textile fly adsorption device of claim 1, wherein: the heating rod (3) is cylindrical.

Technical Field

The invention relates to the technical field of spinning, in particular to a back suction type textile flying velvet adsorption device based on reciprocating motion.

Background

Weaving is a general name of spinning and weaving, ancient weaving and printing and dyeing technology in China has a very long history, ancient people are aware of local materials in the original social period in order to adapt to climate change, natural resources are used as raw materials for weaving and printing and dyeing, and simple weaving tools are manufactured, and daily clothes, certain living goods and artworks are products of the weaving and printing and dyeing technology until today.

In the production process of the textile machine, the yarns are easy to bring flying dust and flying velvet, so that the produced products are seriously affected, and for the phenomenon, the dust collector is arranged in a production workshop, and is used for absorbing the flying dust and flying velvet generated by the yarns.

Therefore, the suction type textile flying velvet adsorption device based on reciprocating motion is provided, the suction device is lapped outside the textile roller, flying dust and flying velvet generated during spinning of a textile machine are adsorbed, and the flying dust and the flying velvet are contacted with water and deposited through built-in textile water, so that the aim of removing dust is fulfilled.

Disclosure of Invention

Technical scheme

In order to realize the advantages, the invention provides the following technical scheme: the utility model provides a resorption formula fabrics flies fine hair adsorption equipment based on reciprocating motion, includes the device main part, the inside of device main part is provided with the adapter, the inboard swing joint of adapter has the heating rod, the inboard swing joint of adapter has drive screw, drive screw's top swing joint has first bevel gear, first bevel gear's inboard swing joint has second bevel gear, second bevel gear's below swing joint has the installation worm, the weaving roller has been cup jointed in the outside of installation worm, the inboard centre gripping of weaving roller has connecting screw, drive screw's inboard threaded connection has the movable block.

Preferably, a reciprocating screw is movably connected below the movable block.

Preferably, the inner side of the reciprocating screw is in threaded connection with a reciprocating block.

Preferably, the outer side of the reciprocating block is movably connected with a connecting screw rod.

Preferably, one end of the connecting screw rod, which is far away from the reciprocating block, is movably connected with a back suction fan, so that flying velvet generated in spinning can be adsorbed.

Preferably, the outer side of the back suction fan is movably connected with a mounting bracket for fixedly supporting the back suction fan.

Preferably, the driving screw is vertically connected with the reciprocating screw, and the movable block is installed at the abutting drop foot of the driving screw and the reciprocating screw.

Preferably, the adapter is used for receiving the heating rod and the driving screw rod, so that the heating rod and the driving screw rod are indirectly connected together through the adapter; the heating rod is cylindrical.

Advantageous effects

Compared with the prior art, the invention provides a back suction type textile flying velvet adsorption device based on reciprocating motion, which has the following beneficial effects:

1. this resorption formula fabrics flies fine hair adsorption equipment based on reciprocating motion, through starting built-in drive arrangement, drive screw then begins to rotate, and the first bevel gear that its top set up also begins to rotate thereupon, then drives second bevel gear and installation worm and keeps rotating in step, and the weaving roller that the installation worm outside set up keeps rotating thereupon, wraps up in to the yarn, has realized wrapping up in the purpose of twining to the yarn.

2. This resorption formula fabrics flies fine hair adsorption equipment based on reciprocating motion, the rotation of the synchronous drive reciprocating screw rod of conduction through the movable block, reciprocating screw rod then drives the reciprocating block that connects on it and makes a round trip reciprocating motion on it, then drive the resorption fan that connects on it and keep reciprocating motion from top to bottom in step, the resorption fan produces the resorption force, fly the fine hair that the roller will weave produced wrapping up the during operation and adsorb, collect in unison, precipitation water has been placed to the collection chamber the inside of resorption fan, can deposit the absorption flying fine hair, avoid flying the fine hair to splash.

3. This resorption formula fabrics flies fine hair adsorption equipment based on reciprocating motion, through the conduction of adapter, can drive the synchronous revolution of heating rod, and the heating rod produces the temperature, flies the fine hair to not being adsorbed by the resorption fan and burns, avoids flying the fine hair and is adsorbed by the staff, causes respiratory disease easily, harm staff's health.

Drawings

FIG. 1 is a schematic view of the connection structure of the main body of the device of the present invention;

figure 2 is a schematic view of the adapter connection structure of the present invention;

FIG. 3 is a schematic view of a driving screw connection structure according to the present invention;

FIG. 4 is an enlarged view of the area A in FIG. 3 according to the present invention;

FIG. 5 is a schematic view of a first bevel gear connection of the present invention;

FIG. 6 is a schematic view of a second bevel gear connection according to the present invention;

FIG. 7 is a schematic view of the mounting worm connection of the present invention;

FIG. 8 is a schematic view of a connecting screw rod connection structure according to the present invention;

FIG. 9 is a schematic view of a connection structure of the suck-back fan according to the present invention.

In the figure: 1-device body, 2-adapter, 3-heating rod, 4-driving screw, 5-first bevel gear, 6-second bevel gear, 7-mounting worm, 8-spinning roller, 9-connecting screw rod, 10-movable block, 11-reciprocating screw, 12-reciprocating block, 13-connecting screw, 14-suck-back fan and 15-mounting support.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

Referring to fig. 1-9, a reciprocating motion-based resorption type textile flying velvet adsorption device comprises a device main body 1, wherein an adapter 2 is arranged inside the device main body 1, a heating rod 3 is movably connected to the inner side of the adapter 2, a driving screw rod 4 is movably connected to the inner side of the adapter 2, and the adapter 2 receives the heating rod 3 and the driving screw rod 4, so that the heating rod 3 and the driving screw rod 4 are indirectly connected together through the adapter 2; the heating rod 3 is cylindrical.

The conduction of adapter 2 is crossed, can drive the synchronous revolution of heating rod 3, and heating rod 3 produces the temperature, carries out the firing to flying the fine hair that is not adsorbed by resorption fan 14, avoids flying the fine hair and is adsorbed by the staff, causes respiratory disease easily, harm staff's health.

The top swing joint of drive screw 4 has first bevel gear 5, the inboard swing joint of first bevel gear 5 has second bevel gear 6, the below swing joint of second bevel gear 6 has installation worm 7, weaving roller 8 has been cup jointed in the outside of installation worm 7, through starting built-in drive arrangement, drive screw 4 then begins to rotate, first bevel gear 5 that its top set up also begins to rotate along with it, then drive second bevel gear 6 and installation worm 7 synchronous stay rotation, weaving roller 8 that the installation worm 7 outside set up keeps rotating along with it, wrap up in the yarn and twine, the purpose of wrapping up in the yarn has been realized.

The inner side of the spinning roller 8 is clamped with a connecting screw rod 9, the inner side of the driving screw rod 4 is in threaded connection with a movable block 10, a reciprocating screw rod 11 is movably connected below the movable block 10, the driving screw rod 4 is vertically connected with the reciprocating screw rod 11, and the movable block 10 is installed at the butt joint drop foot positions of the driving screw rod 4 and the reciprocating screw rod 11.

The inner side of the reciprocating screw 11 is in threaded connection with a reciprocating block 12, the outer side of the reciprocating block 12 is movably connected with a connecting screw 13, one end, far away from the reciprocating block 12, of the connecting screw 13 is movably connected with a back suction fan 14, and the outer side of the back suction fan 14 is movably connected with a mounting bracket 15.

The rotation of the reciprocal screw rod 11 of conduction synchronous drive through movable block 10, reciprocal screw rod 11 then drives reciprocal piece 12 of connecting on it and make a round trip reciprocating motion on it, then drive the resorption fan 14 that connects on it and keep reciprocating motion from top to bottom in step, resorption fan 14 produces the resorption force, fly the fine hair that roller 8 will weave produced wrapping up in the winding during operation and adsorb, the collection in unison, precipitation water has been placed to the collection chamber the inside of resorption fan 14 inside, can deposit the absorption to flying fine hair, avoid flying the fine hair to splash.

The working principle is as follows: when the spinning device is used, the built-in driving device is started, the driving screw rod 4 then starts to rotate, the first bevel gear 5 arranged at the top end of the driving screw rod also starts to rotate, the second bevel gear 6 and the mounting worm 7 are then driven to synchronously keep rotating, and the spinning roller 8 arranged on the outer side of the mounting worm 7 keeps rotating, so that the yarn is wrapped.

Meanwhile, when the driving screw rod 4 rotates, the reciprocating screw rod 11 is driven to rotate synchronously through the conduction of the movable block 10, the reciprocating screw rod 11 then drives the reciprocating block 12 connected to the reciprocating screw rod to reciprocate back and forth on the reciprocating screw rod, then the suck-back fan 14 connected to the suck-back screw rod is driven to synchronously keep reciprocating up and down, the suck-back fan 14 generates a suck-back force, the flying velvet generated by the textile roller 8 during the wrapping work is adsorbed, the uniform collection is realized, the precipitated water is placed in a collection cavity inside the suck-back fan 14, and the flying velvet can be precipitated and adsorbed.

In the time of driving screw 4 pivoted, through adapter 2's conduction, can drive the synchronous revolution of heating rod 3, heating rod 3 produces the temperature, flies the fine hair to not being adsorbed by resorption fan 14 and burns, avoids flying the fine hair and is adsorbed by the staff, causes respiratory disease easily, harm staff's health.

Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

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