201219906 六、發明說明: 【發明所屬之技術領域】 本發明是有關於一種顯示板組合及其製造方法,特 別疋有關於一種具有一黏貼於玻璃板周緣的金屬膜單元的 顯示板組合。 【先前技術】 美國專利早期公開號US2011/0049139揭露一適用於手 機的電子裝置殼體。該電子裝置殼體具有一玻璃板及一射 出成形於該玻螭板周緣的塑膠框。因為塑膠框之塑膠材質 對於玻璃板的黏著性低,所以在射出成形之前,先將玻璃 板周緣粗化以增加塑膠框與玻璃板的結合強度。然而,玻 璃板的周緣表面積相對小,因此對於改善塑膠框與玻璃板 的結合強度相當有限。 由於薄形化的趨勢,手機的顯示板愈做愈薄。然而, 為避免玻璃板彎曲,傳統的玻璃板仍須具有一大於 的厚度。另外,玻璃板愈薄,愈容易在手機製造過程中破 裂。 【發明内容】 因此,本發明之目的,即在提供一種可以克服上述先 前技術之缺點的顯示板組合及其製造方法。 於是,本發明-種顯*才反組合,包含:一玻璃板, 具有-周緣·,一黏膠·,一金屬膜單元,藉由該黏膠黏貼於 該玻壤板周緣·,及-塑膠框,模設於該金屬膜單元及該玻 璃板周緣。 201219906 又’本發明一種製備一顯示板組合的方法,包 含:。將一金屬膜單元黏貼於一玻璃板周緣;及以一塑膠 材料模設於該金屬膜單元及該玻璃板周緣以形成一塑膠 框。 本發明的功效在於藉由將一金屬膜單元黏貼於一玻璃 板周緣而可以增加該玻璃板與一塑膠框之間的結合強度。 【實施方式】 如圖1 -3所示’本發明一種顯示板組合的第一較佳 實施例包含:一玻璃板2,具有一周緣21 ; —黏膠3; —金 屬膜單元4,藉由該黏膠3黏貼於該玻璃板2周緣21 ;及 一塑膠框5’模設於該金屬膜單元4及該玻璃板2周緣 21 〇 該玻璃板2具有一前表面22、一後表面23及一自該前 表面22延伸至該後表面23的周邊表面24,該金屬膜單元 4黏貼於該周邊表面24及該後表面23。 該周邊表面24具有一自該前表面22朝該後表面23漸 增的周邊長度(perjmeter)。 該前表面22與該後表面23相平行,該周邊表面24與 邊後表面23共同界定出一銳角α。較佳下,該銳角α介於 30-75度之間。 在本實施例中,該金屬膜單元4包含一圍繞該玻璃板2 周緣21的單件式環狀金屬條41。 較佳下’該塑膠框5為由聚碳酸酯所製作成的。 較佳下’該玻璃板2具有一介於〇·6-1.0mm之間的厚 201219906 度。 如® 4所示,本發明—種顯示板组合的第二較佳 施例與第一較佳實施例不同之處在於該金屬膜單元4包含 多數相隔且圍繞該玻璃板2周緣21的線狀金屬條42。3 該玻璃板2周緣21為四邊形。該等線狀金屬條^分 別δ又於该玻璃板2周緣21的四個側邊。 圖5A-5C Α第-較佳實施例的製作方法流程。製備本 發明顯示板組合的方法,包含:藉由—黏膠3將一金屬 膜單元3黏貼於-玻璃板2周緣21 ;將該黏有金屬膜單元 4的玻璃板2設置於-射出成形模具6中;及使用射出成形 技術將一塑膠材料模設於該金屬膜單元4及該玻璃板2周 緣21以形成一塑膠框5包覆該金屬膜單元4及該玻璃板2 周緣21。 以本發明之方法製造出的顯示板組合經實驗證明 可以通過球體撞擊測試。該測試方法是使用一 1 3 3克重的鐵球在距離待測顯示板組合上約i 〇 〇 公分處直接落下撞擊玻璃板2 (玻璃板2尺寸為 60mm X 45mm,厚度約為0.7 - 0.9 m m ),通過測 試者表示玻璃板2未破裂或產生裂縫。 因為塑膠框5的材料對於金屬的黏著性高於對玻璃的 黏著性,因此藉由該金屬膜單元4黏貼於該玻璃板2周緣 21及後表面23而可以增加該玻璃板2與該塑膠框5之間的 結合強度。另外,藉由該金屬膜單元4黏貼於該玻璃板2 周緣21及後表面23,也增加該玻璃板2耐撞的能力並因此 201219906 合許該玻璃板2的厚度可被薄化至Q 7_而不會有破裂之 疑慮。 准以上所述者’僅為本發明之較佳實施例而已,當不 ^以此限定本發明實施之範圍’即大凡依本發明中請專利 範圍及發明說明内容所作之簡單的等效變化與修飾,皆仍 屬本發明專利涵蓋之範圍内。 【圖式簡單說明】 說明本發明之一第一較佳實施例之 圖1是一立體圖 顯示板組合的結構 圖2是一沿圖1中之A|丨蠄π π & A, 之笙 n線11 -n的剖示圖,說明本發明 艾第—較佳實施例之顯示板組合的結構; 圖3是一上視分解圖,說明本 χ β不赞明之第—較佳實施例 <顯不板組合的結構; 圓4是一上視分解圆 例之顯示板組合的結構 ’說明本發明之—第二較佳實施 及 圖 例之顯 5A-5C是刹示圖’說明本發明 示板組合的方法。 之製造第一較佳實施 201219906 【主要元件符號說明】 2 玻墙板 41 環狀金屬條 21 周緣 42 線狀金屬條 22 前表面 5 塑膠框 23 後表面 6 模具 24 周邊表面 α 銳角 3 黏膠 4 金屬膜單元 7201219906 VI. Description of the Invention: [Technical Field] The present invention relates to a display panel assembly and a method of fabricating the same, and in particular to a display panel assembly having a metal film unit adhered to the periphery of a glass sheet. [Prior Art] U.S. Patent Publication No. US2011/0049139 discloses an electronic device housing suitable for use in a mobile phone. The electronic device housing has a glass plate and a plastic frame that is formed on the periphery of the glass plate. Because the plastic material of the plastic frame has low adhesion to the glass plate, the periphery of the glass plate is roughened before the injection molding to increase the bonding strength between the plastic frame and the glass plate. However, the peripheral surface area of the glass plate is relatively small, so that the bonding strength between the plastic frame and the glass plate is considerably limited. Due to the trend of thinning, the display panel of the mobile phone is getting thinner and thinner. However, in order to avoid bending of the glass sheet, the conventional glass sheet must still have a thickness greater than that. In addition, the thinner the glass plate, the easier it is to break during the manufacturing process of the mobile phone. SUMMARY OF THE INVENTION Accordingly, it is an object of the present invention to provide a display panel assembly and a method of fabricating the same that overcomes the above-described disadvantages of the prior art. Thus, the present invention is a combination of: a glass plate having a circumference, a glue, and a metal film unit adhered to the periphery of the glass plate by the adhesive, and - plastic The frame is molded on the metal film unit and the periphery of the glass plate. 201219906 Further, a method of preparing a display panel assembly of the present invention comprises: A metal film unit is adhered to a periphery of a glass plate; and a plastic material is molded on the metal film unit and the periphery of the glass plate to form a plastic frame. The effect of the present invention is that the bonding strength between the glass sheet and a plastic frame can be increased by adhering a metal film unit to the periphery of a glass sheet. [Embodiment] As shown in FIG. 1 - 3, a first preferred embodiment of a display panel assembly of the present invention comprises: a glass sheet 2 having a peripheral edge 21; - a glue 3; - a metal film unit 4, The adhesive sheet 3 is adhered to the periphery 21 of the glass sheet 2; and a plastic frame 5' is molded on the metal film unit 4 and the periphery 21 of the glass sheet 2. The glass sheet 2 has a front surface 22 and a rear surface 23 A metal film unit 4 is adhered to the peripheral surface 24 and the rear surface 23 from the front surface 22 to the peripheral surface 24 of the rear surface 23. The peripheral surface 24 has a perimeter length that increases from the front surface 22 toward the back surface 23. The front surface 22 is parallel to the rear surface 23, which together with the side rear surface 23 define an acute angle a. Preferably, the acute angle α is between 30 and 75 degrees. In the present embodiment, the metal film unit 4 includes a one-piece annular metal strip 41 surrounding the periphery 21 of the glass sheet 2. Preferably, the plastic frame 5 is made of polycarbonate. Preferably, the glass sheet 2 has a thickness of 201219906 degrees between 〇·6-1.0 mm. As shown in FIG. 4, the second preferred embodiment of the display panel assembly of the present invention differs from the first preferred embodiment in that the metal film unit 4 comprises a plurality of lines spaced apart and surrounding the circumference 21 of the glass sheet 2. Metal strip 42. 3 The peripheral edge 21 of the glass sheet 2 is quadrangular. The linear metal strips δ are respectively on the four sides of the peripheral edge 21 of the glass sheet 2. 5A-5C are flow diagrams of the fabrication method of the first preferred embodiment. The method for preparing the display panel assembly of the present invention comprises: adhering a metal film unit 3 to the periphery 21 of the glass sheet 2 by means of the adhesive 3; and setting the glass sheet 2 to which the metal film unit 4 is adhered to the injection molding mold 6; and using a injection molding technique to mold a plastic material on the metal film unit 4 and the periphery 21 of the glass plate 2 to form a plastic frame 5 covering the metal film unit 4 and the periphery 21 of the glass plate 2. The display panel assembly produced by the method of the present invention has been experimentally proven to pass the ball impact test. The test method is to use a 135 gram weight iron ball to directly drop the impact glass plate 2 at a distance of about 〇〇 cm from the display panel to be tested (the glass plate 2 has a size of 60 mm X 45 mm and a thickness of about 0.7 - 0.9). Mm ), the tester indicates that the glass sheet 2 is not broken or cracked. Since the material of the plastic frame 5 is more adhesive to the metal than to the glass, the glass plate 2 and the plastic frame can be increased by adhering the metal film unit 4 to the peripheral edge 21 and the rear surface 23 of the glass plate 2. The bond strength between 5. In addition, by adhering the metal film unit 4 to the peripheral edge 21 and the rear surface 23 of the glass sheet 2, the glass sheet 2 is also increased in impact resistance and thus the thickness of the glass sheet 2 can be thinned to Q 7 in 201219906. _ There is no doubt that there will be rupture. The above is only a preferred embodiment of the present invention, and is not intended to limit the scope of the practice of the present invention, i.e., the simple equivalent variation of the scope of the patent and the description of the invention in the present invention. Modifications are still within the scope of the invention. BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a perspective view showing a structure of a combination of a display panel. FIG. 2 is an A|丨蠄π π & A in FIG. Figure 11 is a cross-sectional view showing the structure of the display panel assembly of the present invention of the present invention; Fig. 3 is a top exploded view showing the first preferred embodiment of the present invention. Structure of the display board combination; circle 4 is a structure of a display panel combination of a top view decomposition circle example 'Description of the present invention - a second preferred embodiment and a diagram of the diagram 5A-5C is a brake diagram' illustrating the board combination of the present invention Methods. Manufacturing first preferred embodiment 201219906 [Main component symbol description] 2 Glass wall panel 41 Annular metal strip 21 Peripheral edge 42 Linear metal strip 22 Front surface 5 Plastic frame 23 Rear surface 6 Mold 24 Peripheral surface α Sharp angle 3 Viscose 4 Metal film unit 7