Liquefier

文档序号:1117848 发布日期:2020-10-02 浏览:20次 中文

阅读说明:本技术 一种液化器 (Liquefier ) 是由 黎泽荣 于 2020-07-15 设计创作,主要内容包括:一种液化器,其特征在于包括机架、设置在机架上的熔融锅、设置在熔融锅上方的粉碎机构,粉碎机构包括投料段、粉碎熔融段,粉碎熔融段包括上端口与投料段连接,下端口导向熔融锅的通道、设置在通道内的由动力带动转动的两根以上的滚压辊,滚压辊外表面设置有数根齿,滚压辊内设置有媒介夹层,夹层与控制滚压辊温度的媒介源连通。本发明与已有技术相比,具有熔融时间短的,适合连续化熔融生产优点。(The utility model provides a liquefier, its characterized in that includes the frame, the melting pot of setting in the frame, the rubbing crusher who sets up in the melting pot top, rubbing crusher constructs including throwing the material section, smashes the melting section, smash the melting section and include the port and throw the material section and be connected, lower port direction melting pot's passageway, set up in the passageway and drive pivoted rolling roller more than two by power, the rolling roller surface is provided with several teeth, be provided with the media intermediate layer in the rolling roller, the intermediate layer communicates with the media source of control rolling roller temperature. Compared with the prior art, the invention has the advantages of short melting time and suitability for continuous melting production.)

1. The utility model provides a liquefier, its characterized in that includes the frame, the melting pot of setting in the frame, the rubbing crusher who sets up in the melting pot top, rubbing crusher constructs including throwing the material section, smashes the melting section, smash the melting section and include the port and throw the material section and be connected, lower port direction melting pot's passageway, set up in the passageway and drive pivoted rolling roller more than two by power, the rolling roller surface is provided with several teeth, be provided with the media intermediate layer in the rolling roller, the intermediate layer communicates with the media source of control rolling roller temperature.

2. The liquefier of claim 1, wherein the feed section comprises a trumpet-shaped channel, the stitching rollers comprise two stitching rollers, a first stitching roller is positioned at the upper left, a second stitching roller is positioned at the lower right, and when teeth of the two oppositely rotating stitching rollers meet, the teeth of the first stitching roller are positioned between the two teeth of the second stitching roller.

3. The liquefier of claim 2, wherein the stitching rollers are three, wherein the third stitching roller is located to the lower left of the second stitching roller, and wherein the teeth of the second stitching roller are located between the teeth of the third stitching roller when the teeth of the second and third stitching rollers, which are relatively rotating, meet.

4. The liquefier of claim 1, wherein the feeding section is a transverse box type slide, an inlet of the transverse box type slide is provided with a movable cover, an outlet of the transverse box type slide is connected with a channel of the crushing melting section, four rolling rollers are arranged in the channel, the four rolling rollers are arranged in a downward stepped mode from a material inlet on the side surface of the channel, a baffle is arranged above the lowest rolling roller, and when teeth on the two opposite rotating rolling rollers meet, the teeth on one rolling roller are positioned between the two teeth of the other rolling roller.

The technical field is as follows:

the invention relates to a melting liquefaction technology.

Background art:

some solid materials, such as chocolate, are generally melted by putting chocolate blocks into a heating pot, and the melting mode takes long time due to the large size of the chocolate blocks, so that continuous melting production is not easy to realize.

The invention content is as follows:

the invention aims to provide a liquefier which has short melting time and is suitable for continuous melting production.

The invention is realized by the following steps that the crushing mechanism comprises a feeding section and a crushing melting section, wherein the crushing melting section comprises an upper port connected with the feeding section, a lower port leading to a channel of the melting pot, and more than two rolling rollers driven by power to rotate and arranged in the channel, the outer surfaces of the rolling rollers are provided with a plurality of teeth, medium interlayers are arranged in the rolling rollers, and the interlayers are communicated with a medium source for controlling the temperature of the rolling rollers.

When the crushing mechanism works, large materials (such as chocolate) needing to be melted are put into a feeding section of the crushing mechanism, under the action of self gravity, the large materials enter an action range of the rolling rollers, media are guided into interlayers of the rolling rollers, the temperature of the rolling rollers is raised to the temperature of the melted materials, the rolling rollers are driven by power to rotate relatively, the large materials fall between two adjacent rolling rollers and are crushed and extruded by teeth on the rolling rollers, the crushed small materials fall into a melting pot to be heated and melted, and the materials adhered to the rolling rollers are heated and melted and drip into the melting pot. Because the rolling roller has the crushing ability, still has the melting ability, prevents that the material from adhering on the rolling roller on one hand, also can promote the crushing efficiency of rolling roller on the other hand, prevents that the material of adhesion from influencing the crushing of subsequent bold material moreover, has just to melt after the material is broken, heats in addition among the crushing process, consequently, the fusing time is short, and is efficient. The melted liquid material is conveyed away through the power transmission system at the bottom, so that the effect of continuously melting the material can be realized, and continuous production is realized.

Compared with the prior art, the invention has the advantages of short melting time and suitability for continuous melting production.

Description of the drawings:

FIG. 1 is a schematic structural view of embodiment 1 of the present invention;

FIG. 2 is a side view of a stitching roller;

FIG. 3 is a schematic structural diagram of embodiment 2 of the present invention;

fig. 4 is a schematic structural diagram of embodiment 3 of the present invention.

The specific implementation mode is as follows:

the invention will now be described in further detail with reference to the accompanying drawings and examples:

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