Anti-wrinkling processing machine for producing bamboo charcoal fiber antibacterial lace fabric

文档序号:1123340 发布日期:2020-10-02 浏览:12次 中文

阅读说明:本技术 一种竹炭纤维抗菌蕾丝面料生产用防起皱的加工机 (Anti-wrinkling processing machine for producing bamboo charcoal fiber antibacterial lace fabric ) 是由 叶锦标 于 2020-06-30 设计创作,主要内容包括:本发明公开了一种竹炭纤维抗菌蕾丝面料生产用防起皱的加工机,其结构包括压平机构、传送台、控制电箱、散热口、调节阀,控制电箱嵌固于压平机构的右侧位置,散热口与控制电箱相连接,调节阀与压平机构活动卡合,压平机构与传送台为一体化结构,通过压平柱对传送台上的受力板产生的推力,能够使受力板沿着衔接点向两侧摆动,从而能在受力板将竹炭纤维抗菌蕾丝面料拉平的同时,使加热辊对竹炭纤维抗菌蕾丝面料进行压平,通过传送台上的竹炭纤维抗菌蕾丝面料对外环上的抵触板产生的挤压,能够使抵触板推动阻挡块沿着承接环向内滑动收缩,从而使透气腔内部的水蒸气能够通过阻挡块与承接环之间的缝隙排出。(The invention discloses an anti-wrinkling processing machine for producing bamboo charcoal fiber antibacterial lace fabrics, which structurally comprises a flattening mechanism, a conveying table, a control electric box, a heat dissipation port and an adjusting valve, wherein the control electric box is embedded and fixed at the right side position of the flattening mechanism, the heat dissipation port is connected with the control electric box, the adjusting valve is movably clamped with the flattening mechanism, the flattening mechanism and the conveying table are of an integrated structure, the force bearing plate on the transmission platform can swing along the joint point towards two sides by the thrust generated by the flattening column to the force bearing plate, thereby flattening the bamboo charcoal fiber antibacterial lace fabric by the heating roller while the stress plate flattens the bamboo charcoal fiber antibacterial lace fabric, the bamboo charcoal fiber antibacterial lace fabric on the transmission platform extrudes the abutting plate on the outer ring, so that the abutting plate can push the blocking block to slide and contract inwards along the receiving ring, so that the water vapor in the ventilating cavity can be discharged through the gap between the stop block and the bearing ring.)

1. The utility model provides a bamboo charcoal fiber antibiotic lace fabric production is with preventing processing machine that corrugates, its structure is including mechanism (1) that flattens, conveying platform (2), control electronic box (3), thermovent (4), governing valve (5), control electronic box (3) are embedded in the right side position of mechanism (1) that flattens, thermovent (4) are connected with control electronic box (3), governing valve (5) and mechanism (1) activity block that flattens, its characterized in that: the flattening mechanism (1) and the conveying table (2) are of an integrated structure;

flattening mechanism (1) is including overhead guard (11), crane (12), flattening post (13), gangbar (14), driver (15), framework (16), overhead guard (11) and framework (16) structure as an organic whole, crane (12) are connected with the inner wall top of overhead guard (11), flatten post (13) and crane (12) activity block, the one end of gangbar (14) is connected with flattening post (13), and the other end of gangbar (14) is connected with driver (15) meshing, the inner wall bottom that driver (15) are fixed in framework (16) leans on left position.

2. The anti-wrinkling processing machine for producing the bamboo charcoal fiber antibacterial lace fabric according to claim 1, wherein the anti-wrinkling processing machine comprises: the flattening column (13) comprises a stress plate (a1), a heating roller (a2), an engagement point (a3), an elastic strip (a4) and a middle fixing block (a5), wherein the stress plate (a1) is movably clamped with the engagement point (a3), the heating roller (a2) and the middle fixing block (a5) are of an integrated structure, the engagement point (a3) is fixedly connected with the heating roller (a2), and the elastic strip (a4) is installed between the engagement point (a3) and the stress plate (a 1).

3. The anti-wrinkling processing machine for producing the bamboo charcoal fiber antibacterial lace fabric according to claim 2 is characterized in that: the stress plate (a1) comprises a bottom block (a11), a sleeve frame (a12), a telescopic column (a13), a contact plate (a14) and an elastic strip (a15), wherein the sleeve frame (a12) and the bottom block (a11) are of an integrated structure, the telescopic column (a13) is in clearance fit with the sleeve frame (a12), the contact plate (a14) is embedded and fixed at the front end position of the telescopic column (a13), and the elastic strip (a15) is installed between the telescopic column (a13) and the bottom block (a 11).

4. The anti-wrinkling processing machine for producing the bamboo charcoal fiber antibacterial lace fabric according to claim 3, wherein the anti-wrinkling processing machine comprises: the contact plate (a14) comprises a plate surface (b1), a lower push ring (b2), a connecting rod (b3) and a lower plate (b4), the plate surface (b1) is connected with the lower plate (b4) through the lower push ring (b2), and the connecting rod (b3) is movably clamped between the plate surface (b1) and the lower plate (b 4).

5. The anti-wrinkling processing machine for producing the bamboo charcoal fiber antibacterial lace fabric according to claim 2 is characterized in that: the heating roller (a2) comprises an outer ring (c1), an air permeable cavity (c2), a fixing block (c3), an air collecting cavity (c4) and a heating cavity (c5), wherein the outer ring (c1) is installed on the outer surface of the air permeable cavity (c2), the air permeable cavity (c2) and the fixing block (c3) are of an integrated structure, the fixing block (c3) is embedded and fixed on the outer surface of the air collecting cavity (c4), and the air collecting cavity (c4) is connected with the heating cavity (c 5).

6. The anti-wrinkling processing machine for producing the bamboo charcoal fiber antibacterial lace fabric according to claim 5, wherein the anti-wrinkling processing machine comprises: the outer ring (c1) comprises a contact plate (c11), a blocking block (c12), a reset bar (c13) and a bearing ring (c14), one end of the blocking block (c12) is connected with the inner side of the contact plate (c11), the blocking block (c12) is in clearance fit with the bearing ring (c14), and the reset bar (c13) is installed between the contact plate (c11) and the bearing ring (c 14).

7. The anti-wrinkling processing machine for producing the bamboo charcoal fiber antibacterial lace fabric according to claim 6, wherein the anti-wrinkling processing machine comprises: the block (c12) includes plate body (d1), outer pendulum board (d2), outer push-out lever (d3), pulls strip (d4), outer pendulum board (d2) and plate body (d1) hinged joint, outer push rod (d3) and plate body (d1) clearance fit, pull strip (d4) and install the inside position in plate body (d 1).

Technical Field

The invention relates to the field of bamboo charcoal fiber production equipment, in particular to an anti-wrinkling processing machine for producing bamboo charcoal fiber antibacterial lace fabrics.

Background

The fabric flattening machine is mainly used for flattening bamboo charcoal fiber antibacterial lace fabrics, the wrinkled bamboo charcoal fiber antibacterial lace fabrics are placed on the conveying table, and the bamboo charcoal fiber antibacterial lace fabrics passing through the bottom of the conveying table are flattened through the inner flattening columns, so that the bamboo charcoal fiber antibacterial lace fabrics are widely applied to the bamboo charcoal fiber antibacterial lace fabric production industry, and based on the description, the inventor finds that the anti-wrinkling processing machine for bamboo charcoal fiber antibacterial lace fabric production mainly has the following defects, for example:

because the flattening column flattens the bamboo charcoal fiber antibacterial lace fabric by the aid of water vapor released by internal heating and matched with the compression of the moisture vapor on the surface of the bamboo charcoal fiber antibacterial lace fabric, if the bamboo charcoal fiber antibacterial lace fabric is not flat enough when being laid on the conveying table, the phenomenon that the fabrics are overlapped when the flattening column rolls the bamboo charcoal fiber antibacterial lace fabric is easy to occur, and the condition that the bamboo charcoal fiber antibacterial lace fabric needs to be reworked after being processed is caused.

Disclosure of Invention

Aiming at the problems, the invention provides an anti-wrinkling processing machine for producing bamboo charcoal fiber antibacterial lace fabrics.

In order to achieve the purpose, the invention is realized by the following technical scheme: a wrinkling-preventing processing machine for producing bamboo charcoal fiber antibacterial lace fabrics structurally comprises a flattening mechanism, a conveying table, a control electric box, a heat dissipation opening and an adjusting valve, wherein the control electric box is embedded and fixed at the right side of the flattening mechanism, the heat dissipation opening is connected with the control electric box, the adjusting valve is movably clamped with the flattening mechanism, and the flattening mechanism and the conveying table are of an integrated structure; the mechanism that flattens includes overhead guard, crane, flattening post, gangbar, driver, framework, overhead guard and framework structure as an organic whole, the crane is connected with the inner wall top of overhead guard, flattening post and crane activity block, the one end of gangbar is connected with the post that flattens, and the other end and the driver meshing of gangbar are connected, the driver is fixed in the inner wall bottom of framework and leans on left position.

As a further optimization of the invention, the flattening column comprises a stress plate, a heating roller, a joining point, an elastic strip and a middle fixing block, wherein the stress plate is movably clamped with the joining point, the heating roller and the middle fixing block are of an integrated structure, the joining point is fixedly embedded with the heating roller, the elastic strip is arranged between the joining point and the stress plate, the number of the stress plate is six, and the outer surfaces of the middle fixing blocks are uniformly distributed in a circular shape.

As a further optimization of the invention, the stress plate comprises a bottom block, a sleeve frame, a telescopic column, a contact plate and an elastic strip, wherein the sleeve frame and the bottom block are of an integrated structure, the telescopic column is in clearance fit with the sleeve frame, the contact plate is embedded and fixed at the front end position of the telescopic column, the elastic strip is arranged between the telescopic column and the bottom block, and the contact plate can push the telescopic column to slide and contract inwards along the sleeve frame by extrusion of fabric on the mechanism on the contact plate.

As a further optimization of the invention, the contact plate comprises a plate surface, a lower push ring, a connecting rod and a lower plate, the plate surface is connected with the lower plate through the lower push ring, the connecting rod is movably clamped between the plate surface and the lower plate, the lower push ring is made of spring steel with strong elasticity, and the whole lower push ring is of an oval structure.

As a further optimization of the invention, the heating roller comprises an outer ring, a ventilation cavity, a fixed block, a gas collection cavity and a heating cavity, wherein the outer ring is arranged at the outer surface position of the ventilation cavity, the ventilation cavity and the fixed block are of an integrated structure, the fixed block is embedded and fixed at the outer surface position of the gas collection cavity, the gas collection cavity is connected with the heating cavity, and the ventilation cavity is of an internal and external through structure.

As a further optimization of the invention, the outer ring comprises a contact plate, a blocking block, a reset strip and a bearing ring, one end of the blocking block is connected with the inner side of the contact plate, the blocking block is in clearance fit with the bearing ring, the reset strip is arranged between the contact plate and the bearing ring, six contact plates are arranged, and the six contact plates are uniformly distributed outside the bearing ring in a circular shape through the matching of the blocking block.

As a further optimization of the invention, the stop block comprises a plate body, an outer swinging plate, outer push rods and pulling strips, wherein the outer swinging plate is hinged with the plate body, the outer push rods are in clearance fit with the plate body, the pulling strips are arranged at the inner position of the plate body, and the two outer swinging plates are uniformly and symmetrically distributed on the left side and the right side of the plate body.

The invention has the following beneficial effects:

1. when the bamboo charcoal fiber antibacterial lace fabric on the conveying table passes through the lower part of the pressing flat column, the pressing flat column can enable the stress plate to swing towards two sides along the joint point through the thrust generated by the pressing flat column to the stress plate on the conveying table, and the contact plate on the stress plate can feed back the received reverse thrust to the telescopic column, so that the telescopic column can slide inwards along the sleeve frame, and the heating roller can flatten the bamboo charcoal fiber antibacterial lace fabric while the stress plate flattens the bamboo charcoal fiber antibacterial lace fabric.

2. Through the extrusion of the bamboo charcoal fiber antibacterial lace fabric on the conveying table to the abutting plate on the outer ring, the abutting plate can push the blocking block to slide and shrink inwards along the bearing ring, so that water vapor in the ventilating cavity can be discharged through the gap between the blocking block and the bearing ring.

Drawings

FIG. 1 is a schematic structural diagram of an anti-wrinkling processing machine for producing bamboo charcoal fiber antibacterial lace fabrics.

FIG. 2 is a schematic side view of a half-section of the flattening mechanism of the present invention.

FIG. 3 is a schematic side view of a half-section of the flattening cylinder according to the present invention.

FIG. 4 is a schematic structural diagram of a side view section of the stress plate of the present invention.

FIG. 5 is a side view of a contact plate of the present invention in half cross-section.

FIG. 6 is a schematic side view of a heating roller according to the present invention.

Fig. 7 is a schematic structural view of a cross section of the touch panel according to the present invention.

Fig. 8 is a schematic side sectional view of a barrier according to the present invention.

In the figure: flattening mechanism-1, conveying table-2, control electric box-3, heat dissipation port-4, adjusting valve-5, top cover-11, lifting frame-12, flattening column-13, linkage rod-14, driver-15, frame-16, stress plate-a 1, heating roller-a 2, joining point-a 3, elastic strip-a 4, middle fixed block-a 5, bottom block-a 11, sleeve frame-a 12, telescopic column-a 13, contact plate-a 14, elastic strip-a 15, plate-b 1, push-down ring-b 2, connecting rod-b 3, lower plate-b 4, outer ring-c 1, ventilation cavity-c 2, fixed block-c 3, gas collection cavity-c 4, heating cavity-c 5, collision plate-c 11, blocking block-c 12, reset strip-c 13, A bearing ring-c 14, a plate body-d 1, an outer swinging plate-d 2, an outer push rod-d 3 and a pulling strip-d 4.

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.

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