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      金屬板材滾壓復合機工作原理

      發布時間:2025-03-24 來源:http://www.jiangsu8733.cc/

        滾壓復合機在多個工業領域發揮著關鍵作用,其工作原理基于機械力、壓力及材料特性的協同作用,以實現不同材料的復合加工。不同類型的滾壓復合機因應用場景不同,工作原理存在一定差異,以下以常見的金屬板材滾壓復合機和管材滾壓復合機為例進行介紹。

      The rolling composite machine plays a key role in multiple industrial fields, and its working principle is based on the synergistic effect of mechanical force, pressure, and material characteristics to achieve composite processing of different materials. Different types of rolling composite machines have certain differences in their working principles due to different application scenarios. The following will introduce common metal sheet rolling composite machines and pipe rolling composite machines as examples.

        金屬板材滾壓復合機工作原理

      Working principle of metal sheet rolling composite machine

        送料系統運作:在金屬板材滾壓復合的起始階段,送料系統承擔著重要職責。該系統通常由電機驅動的輥輪組構成,其運轉速度可依據加工工藝要求進行精準調控。金屬板材被放置于送料臺上,在輥輪的摩擦力作用下,板材被平穩且勻速地送入滾壓復合區域。送料的精準度和穩定性對復合質量影響重大,若送料速度不均勻,會導致復合后的板材出現厚度不均、貼合不緊密等問題。例如,在汽車制造中用于生產車身覆蓋件的滾壓復合機,送料系統需將不同材質的金屬薄板精確地送入,確保后續復合工序順利進行。

      The operation of the feeding system: In the initial stage of metal sheet rolling composite, the feeding system plays an important role. This system is usually composed of a roller set driven by a motor, and its operating speed can be precisely controlled according to the processing requirements. The metal sheet is placed on the feeding platform, and under the frictional force of the rollers, the sheet is smoothly and uniformly fed into the rolling composite area. The precision and stability of feeding have a significant impact on the quality of composite materials. If the feeding speed is uneven, it can lead to uneven thickness and loose bonding of the composite board. For example, in the production of car body coverings using a rolling laminating machine, the feeding system needs to accurately feed metal sheets of different materials to ensure the smooth progress of subsequent laminating processes.

      03

        滾壓成型過程:當金屬板材進入滾壓復合區域后,會遭遇一系列經過特殊設計的滾壓模具。這些模具一般成對設置,且表面具有特定的形狀和紋理。上下模具在電機通過傳動裝置提供的動力驅動下,以相反方向高速旋轉。在旋轉過程中,模具對板材施加強大的壓力和摩擦力。壓力促使板材發生塑性變形,而摩擦力則帶動板材在模具間移動。通過多組不同形狀模具的依次滾壓,板材逐漸被加工成預定的形狀。以生產波紋狀金屬復合板為例,滾壓模具表面設計有與波紋形狀對應的凹槽和凸起,在滾壓過程中,板材在模具作用下形成規則的波紋結構,同時不同金屬層在壓力作用下緊密貼合,實現復合。

      Rolling forming process: When the metal sheet enters the rolling composite area, it will encounter a series of specially designed rolling molds. These molds are usually set up in pairs and have specific shapes and textures on their surfaces. The upper and lower molds rotate at high speed in opposite directions under the power provided by the motor through the transmission device. During the rotation process, the mold exerts strong pressure and friction on the sheet metal. Pressure causes plastic deformation of the sheet, while friction drives the sheet to move between the molds. By sequentially rolling multiple sets of molds with different shapes, the sheet is gradually processed into the predetermined shape. Taking the production of corrugated metal composite plates as an example, the surface of the rolling mold is designed with grooves and protrusions corresponding to the corrugated shape. During the rolling process, the plate forms a regular corrugated structure under the action of the mold, and different metal layers are tightly adhered under pressure to achieve composite.

        復合原理機制:金屬板材滾壓復合機實現復合的核心在于壓力和材料特性的相互作用。在滾壓過程中,強大的壓力使得不同金屬板材的原子間距離減小,當達到一定程度時,原子間產生相互吸引力,從而形成冶金結合,實現真正的復合。為增強復合效果,有時會在復合前對板材表面進行預處理,如清潔、打磨,以去除表面的氧化層和雜質,使板材表面更潔凈,利于原子間結合。此外,還可通過控制滾壓溫度來輔助復合,在一些特殊金屬材料的復合中,適當升高溫度可提高原子的活性,促進原子擴散,進一步加強復合強度。

      Composite principle mechanism: The core of metal sheet rolling composite machine to achieve composite lies in the interaction between pressure and material properties. During the rolling process, strong pressure reduces the distance between atoms of different metal sheets. When it reaches a certain level, mutual attraction is generated between atoms, forming metallurgical bonding and achieving true composite. To enhance the composite effect, sometimes the surface of the board is pre treated before composite, such as cleaning and polishing, to remove the oxide layer and impurities on the surface, making the board surface cleaner and conducive to interatomic bonding. In addition, the composite can be assisted by controlling the rolling temperature. In the composite of some special metal materials, increasing the temperature appropriately can improve the activity of atoms, promote atomic diffusion, and further enhance the composite strength.

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