Rubber tube structure

文档序号:822765 发布日期:2021-03-30 浏览:6次 中文

阅读说明:本技术 一种胶管结构 (Rubber tube structure ) 是由 不公告发明人 于 2020-12-16 设计创作,主要内容包括:本发明公开了一种胶管结构,具体涉及AB胶的胶管及其出胶口的结构设计改进方面。包括推杆组件、胶管、出胶口;推杆组件由推杆和橡胶塞构成,橡胶塞通过结构件固定在推杆顶端,紧贴胶管内壁滑行;胶管内部有两个独立的空腔,用来装胶体,每个空腔末端都有螺纹,用来连接出胶口;出胶口有两个,安装后两个出胶口无外力拉伸作用下不能接触。出胶口末端扁平状,一面粘贴软磁铁,另一面粘贴极性相反的软磁铁或铁磁性材质贴片,使两面相吸,出胶口末端受挤压。本发明的有益效果是,能够在不使用时闭合出胶口,避免AB胶在管内接触凝固。(The invention discloses a rubber tube structure, and particularly relates to an AB rubber tube and an improvement aspect of the structural design of a rubber outlet of the AB rubber tube. Comprises a push rod component, a rubber tube and a rubber outlet; the push rod component consists of a push rod and a rubber plug, and the rubber plug is fixed at the top end of the push rod through a structural part and slides tightly against the inner wall of the rubber tube; the rubber tube is internally provided with two independent cavities for containing rubber, and the tail end of each cavity is provided with a thread for connecting a rubber outlet; the glue outlet is provided with two glue outlets, and the two glue outlets can not be contacted under the stretching action without external force after installation. The tail end of the glue outlet is flat, soft magnet is pasted on one side, and soft magnet or ferromagnetic material patches with opposite polarities are pasted on the other side, so that the two sides are attracted, and the tail end of the glue outlet is extruded. The invention has the beneficial effects that the glue outlet can be closed when not in use, and the AB glue is prevented from being solidified in the pipe in a contact manner.)

1. A rubber tube structure is characterized in that:

comprises a push rod component, a rubber tube and a rubber outlet;

the push rod assembly consists of a push rod and a rubber plug, and the rubber plug is fixed at the top end of the push rod through a structural part and slides tightly against the inner wall of the rubber tube;

the rubber tube is internally provided with two independent cavities for containing rubber, and the tail end of each cavity is provided with a thread for connecting a rubber outlet;

the glue outlets are two, and the two glue outlets cannot be contacted under the stretching action without external force after installation.

2. The casting mold for fixing the flexible material as claimed in claim 1, wherein:

the tail end of the rubber outlet is flat, soft magnet is pasted on one side, soft magnet or ferromagnetic material patches with opposite polarities are pasted on the other side, the two sides are attracted, and the tail end of the rubber outlet is extruded.

3. The casting mold for fixing the flexible material as claimed in claim 1, wherein:

the glue outlet is made of ferromagnetic materials pasted at the tail end, the size and the shape of the two surfaces are the same, and the tail end of the glue outlet can be completely covered and cut.

Technical Field

The invention discloses a rubber tube structure, and particularly relates to an AB rubber tube and an improvement aspect of the structural design of a rubber outlet of the AB rubber tube.

Background

The AB glue type viscose articles need a special rubber tube to uniformly coat the glue, but because the glue A and the glue B can generate chemical reaction to cause the glue outlet to be blocked, the glue A and the glue B can generate reaction too fast without performing corresponding structural design on the glue outlet, so that the glue is not used, namely, the glue is reacted and solidified in the tube. The glue outlet is opened when in use and closed when not in use, and the contact area of the glue A and the glue B in the pipe is reduced as much as possible. So that the glue can be used more conveniently. The general glue outlet can not be closed in time when not in use but only reduce the area of the glue outlet as much as possible, so that the glue outlet is blocked easily due to the reaction between the glue bodies in the non-use state.

Disclosure of Invention

In order to solve the above defects, the invention discloses a rubber tube structure.

In order to achieve the purpose, the invention adopts the following technical scheme:

the invention discloses a rubber tube structure, which is characterized in that: comprises a push rod component, a rubber tube and a rubber outlet; the push rod assembly consists of a push rod and a rubber plug, and the rubber plug is fixed at the top end of the push rod through a structural part and slides tightly against the inner wall of the rubber tube; the rubber tube is internally provided with two independent cavities for containing rubber, and the tail end of each cavity is provided with a thread for connecting a rubber outlet; the glue outlets are two, and the two glue outlets cannot be contacted under the stretching action without external force after installation.

The tail end of the rubber outlet is flat, soft magnet is pasted on one side, soft magnet or ferromagnetic material patches with opposite polarities are pasted on the other side, the two sides are attracted, and the tail end of the rubber outlet is extruded. The glue outlet is made of ferromagnetic materials stuck to the tail end, the size and the shape of the two sides of the glue outlet are the same, and the tail end of the glue outlet can be completely covered and cut.

The invention has the beneficial effects that the glue outlet can be closed when not in use, and the AB glue is prevented from being solidified in the pipe in a contact manner.

Drawings

FIG. 1 is a schematic illustration of a rubber tube structure;

in fig. 1, the mark 1 is a push rod component, the mark 2 is a rubber tube, and the mark 3 is a rubber outlet;

in fig. 2, reference numeral 301 denotes a glue outlet main body, reference numeral 302 denotes a soft magnetic patch, and reference numeral 303 denotes a ferromagnetic material sheet.

Detailed Description

The invention will be described in detail with reference to the drawings and specific embodiments, which are illustrative of the invention and are not to be construed as limiting the invention.

Example (b):

a rubber tube structure is characterized in that: comprises a push rod component 1, a rubber tube 2 and a rubber outlet 3; in the example, the push rod assembly 1 consists of a push rod and a rubber plug, and the rubber plug is fixed at the top end of the push rod through a structural member and slides tightly against the inner wall of the rubber tube; in the example, the number of the push rods is 1, the push rods are connected with two cavities of the rubber tube 2, the rubber plugs in the push rod assembly 1 are positioned at the same height, and the tail ends of the rubber plugs are matched with the bottom of the rubber tube 2 in shape; the rubber tube 2PP is made of plastic materials, two independent cavities are formed in the rubber tube and used for containing rubber, and the tail end of each cavity is provided with a thread and used for being connected with a rubber outlet; the inner cavity of the rubber tube 2 is cylindrical, the diameter of the bottom surface circle is 1cm, the position of the rubber tube 2 connected with the rubber outlet 3 is positioned at the center of the bottom surface circle, the number of the rubber outlet 3 is two, and the two rubber outlets 3 can not be contacted under the stretching action without external force after installation. In this example, the glue outlet body 301 is made of rubber and has a flat end, and a soft magnetic patch 302 is adhered to one side of the body, and a ferromagnetic material sheet 303 is adhered to the other side of the body, so that the two sides attract each other, and the end of the glue outlet 3 is pressed. The glue outlet 3 is made of ferromagnetic materials stuck to the tail end, the size and the shape of the two sides are the same, and the tail end of the glue outlet can be completely covered and cut.

During the use, glue A is injected into the cavity on the left side of the rubber tube 2, glue B is injected into the cavity on the right side, push rod assembly 1 is pushed, the rubber stopper in the push rod assembly 1 pushes glue A and glue B to glue outlet 3 respectively, the soft magnetic patch 302 and the ferromagnetic material sheet 303 pasted at the tail end of the glue outlet 3 are separated under the action of the pressure of the glue, glue B is extruded and then is combined and reacted outside, because the tail end of the glue outlet of glue A can not be in direct contact with the glue outlet of glue B, glue A and glue B can not be in direct contact, when a client drags to the end B along the end A, glue B in the tube can not be in contact with glue A, when glue A is in contact with glue B, because the pressure applied by the user, glue A is continuously extruded, and therefore glue B can not enter the tube and react with glue A.

When the glue dispensing device is not used, the pressure applied by a user is released, and the attraction force generated by the soft magnetic patch 302 and the ferromagnetic material sheet 303 adhered to the tail end of the glue outlet 3 extrudes out of the tail end of the glue outlet 3 to close the tail end of the glue outlet 3, so that the glue B is prevented from continuously reacting with the glue A in the pipe. The part left on the outer surface can react with the B glue, but the soft magnetic patch 302 and the ferromagnetic material sheet 303 stuck at the tail end of the glue outlet 3 can be cut, and the soft magnetic patch and the ferromagnetic material sheet still have the suction effect after being cut, so that the glue outlet can be closed. So that the adhesive part is cut off to be used continuously.

After the embodiment is implemented, the glue outlet 2 can be closed when the glue bottle is not used, and AB glue is prevented from being solidified in the rubber tube 2 in a contact manner.

The above description is only an example of the present invention and does not limit the present invention, and it is obvious to those skilled in the art that various modifications and variations can be made in the present invention. Any modification, equivalent replacement, improvement and the like made within the spirit and principle of the present invention should be included in the scope of the claims of the present invention.

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