五、新型說明: 【新型所屬之技術領域】 本創作涉及一種公模組件,尤其涉及一種能降低模具成本 的公模組件。 【先前技術】 按,隨著經濟的不斷發展及技術水平的不斷提高,產品的 結構越來越多樣化,而隨著產品結構的多樣化,使得模具結構 越來越複雜多樣。 類似於帶斜度成型位的產品,雖然現在的模具可以成型, 但是模具的結構通常設計的很複雜,以得到該產品的成品模 具結構的複雜不僅帶來了加工的難度的增加,而且也增加了模 具的加工成本。 、 【新型内容】 本創作的目的是提供-種公模組件,該公模組件結構 且可以降低模具成本和加工難度β 為了實現上述目&,本創作的技術方案是:提供—種公模 組件,用於成型產品,包括公模仁、活動設置於公模仁内的2 塊模仁、於下方連接滑塊模仁的滑塊座以及對稱設於滑塊座π 側的滑塊軌道,滑塊座可沿滑塊軌道滑行,產品介於滑塊榲兩 與公模仁之間,公模組件還包括斜彈針及第一彈性件斜、仁 呈傾斜且可活動的設於滑塊模仁内,且斜彈針的末端呈倾=針 嵌入產品内,斜彈針的另-末端抵靠滑塊座,第一彈性件呈的 縮抵壓於斜彈針及滑塊模仁之間。 壓 如上所述,藉由本創作的斜彈針傾斜設置於滑塊模仨 且末端呈傾斜的嵌入產品内,第一彈性件呈壓縮抵壓於滑^楔 仁和斜彈針之間’從而在開模時,滑塊座沿滑塊執道向下滑行 時,第一彈性件抵推斜彈針使斜彈針的末端脫離產品,從而可 以順利完成帶斜度成型位的產品的脫模,結構簡單且可以降低 私具成本和加工難度。 【實施方式】 現在參考附圖描述本創作的實施例,附圖中類似的元件標 號代表類似的元件。 請參閱第一圖至第四圖,本創作的公模組件1,用於成型 產品2 »公模組件丨包括公模仁u、活動設置於公模仁u内 的滑塊模仁12、於下方連接滑塊模仁12的滑塊座13、對稱設 於滑塊座13兩側的滑塊軌道14、活動設於滑塊模仁12的斜 彈針15、套於斜彈針15外的第一彈性件16、連接滑塊模仁 12及滑塊座13的限位拉桿17以及套於限位拉桿17外的第二 彈性件18 °產品2介於滑塊模仁12與公模仁u之間,且產 品2具有相鄰設置的斜度成型位21和滑塊成型位22。 滑塊模仁12設有傾斜且相互連通的第一連接孔ι21和第 一連接孔122 ’第二連接孔122位於第一連接孔12ι的上方, 且均貫通滑塊模仁12。滑塊模仁12朝產品2凸伸出凸塊丨23, 凸塊123嵌入滑塊成型位22内。 滑塊座13可沿滑塊軌道14上下滑行。滑塊座13内設有 活動槽131和收容槽132,收容槽132於上方連通活動槽丨3卜 收容槽132於滑塊座13的頂面向下凹設形成。 斜彈針15具有抵靠部151和自抵靠部151延伸的桿部 152。抵罪部151位於第一連接孔】21内,且抵靠滑塊座。 才干部152呈傾斜自第一連接孔ι21伸入第二連接孔122内。桿 部152的末端嵌入斜度成型位21内。 M428834 第一彈性件16位於第一連接孔121内且套於桿部152 外,且第一彈性件16壓縮設置於抵靠部151及滑塊模仁12之 間。 限位拉桿17上端固定在滑塊模仁12上,中間部分收容於 收容槽132内,下端活動設於活動槽131内,活動槽131的設 置使得限位拉桿17可相對滑塊座13活動。 第二彈性件18套於限位拉桿17外,且收容於收容槽132 内,且第二彈性件18呈壓縮抵壓於滑塊模仁12及滑塊座13 之間。 請參閱第一圖至第四圖,對本創作的公模組件1上的產品 2的開模過程進行說明:開模時,首先第二彈性件18恢復原 狀而抵推滑塊座13使滑塊座13沿著滑塊軌道14相對限位拉 桿17作向下滑行運動,在滑塊座13滑行過程中,呈壓縮的第 一彈性件16恢復原狀而抵推斜彈針15,使斜彈針15傾斜朝 下運動,而使斜彈針15的末端逐漸脫離斜度成型位21 (如第 二圖所示),待滑塊座13滑行到抵觸限位拉桿17端部時(如 第三圖所示),斜彈針15完全與斜度成型位21脫離,從而完 成了產品2的斜度成型位21的脫模。第二彈性件18繼續抵推 滑塊座13使其繼續向下滑行,而帶動限位拉桿17向下運動, 限位拉桿17再帶動滑塊模仁12向下運動而脫離產品2的滑塊 成型位22完成所有脫模動作(如第四圖所示)。 綜上所述,本創作的斜彈針15傾斜設置於滑塊模仁12 内,且末端呈傾斜的嵌入產品2的斜度成型位21内,第一彈 性件16呈壓縮抵壓於滑塊模仁12和斜彈針15之間,從而在 開模時,滑塊座13沿滑塊執道14向下滑行時,第一彈性件 16抵推斜彈針15使斜彈針15的末端脫離產品2的斜度成型 位21,從而可以順利完成帶斜度成型位21的產品2的脫模, 5 M428834 結構簡單且可以降低模具成本和加工難度。 以上結合最佳實施例對本創作進行了描述,但本創作並不 局限於以上揭示的實施例,而應當涵蓋各種根據本創作的本質 進行的修改、等效組合。 【圖式簡單說明】 第一圖係本創作的公模組件開模前的結構示意圖。 第二圖係本創作的公模組件開模狀態的結構示意圖。 第三圖係本創作的產品的斜度成型位開模後的結構示意 圖。 第四圖係本創作公模組件開模後的結構示意圖。 【主要元件符號說明】 公模組件 1 公模仁 11 滑塊模仁 12 第一連接孔 121 第二連接孔 122 凸塊 123 滑塊座 13 活動槽 131 收容槽 132 滑塊軌道 14 斜彈針 15 抵靠部 151 桿部 152 第一彈性件 16 限位拉桿 17 第二彈性件 18 產品 2 斜度成型位 21 滑塊成型位 22V. New description: [New technology field] This creation involves a male mold component, especially a male mold component that can reduce the cost of the mold. [Prior Art] According to the continuous development of the economy and the continuous improvement of the technical level, the structure of products is more and more diversified, and with the diversification of product structure, the structure of the mold is more and more complex. Similar to products with a beveled forming position, although the current mold can be molded, the structure of the mold is usually complicated to design, so that the complexity of the finished mold structure of the product not only brings about an increase in the difficulty of processing, but also increases The processing cost of the mold. [New Content] The purpose of this creation is to provide a male mold component that can reduce the cost of the mold and the processing difficulty. In order to achieve the above objectives, the technical solution of the present invention is: The male mold component is used for molding products, including male mold core, two mold cores arranged in the male mold core, a slider seat connected to the slider mold core below, and a sliding seat symmetrically disposed on the π side of the slider seat Block rail, slider seat can slide along the slider rail, the product is between the slider 榲 and the male mold, the male mold component also includes the oblique elastic needle and the first elastic member oblique, the slant is inclined and movable In the slider mold, the end of the oblique pin is tilted into the product, the other end of the oblique pin abuts against the slider seat, and the first elastic member is pressed against the oblique pin and the slider Between the molds. As described above, the oblique elastic needle of the present invention is obliquely disposed in the embedded product of the slider mold and inclined at the end, and the first elastic member is compressed against the sliding wedge and the oblique needle. In the mold mode, when the slider seat slides down along the obstruction of the slider, the first elastic member pushes the oblique elastic needle to disengage the end of the oblique elastic needle, thereby smoothly releasing the product with the inclined molding position, and the structure Simple and can reduce the cost of private and processing. [Embodiment] Embodiments of the present invention will now be described with reference to the drawings, in which like reference numerals indicate like elements. Please refer to the first to fourth figures. The male mold component 1 of this creation is used for molding products 2 » male mold components, including male molds, and the slider molds 12, which are arranged in the male molds. a slider holder 13 for connecting the slider die 12 to the lower side, a slider rail 14 symmetrically disposed on both sides of the slider holder 13, a diagonal elastic pin 15 disposed on the slider mold core 12, and a diagonal elastic needle 15 The outer first elastic member 16, the limit pull rod 17 connecting the slider mold core 12 and the slider seat 13, and the second elastic member 18 around the limit pull rod 17 are located at the slider mold core 12 and the public Between the mold cores u, and the product 2 has adjacently formed slope forming positions 21 and slider forming positions 22. The slider die 12 is provided with a first connecting hole ι 21 and a first connecting hole 122 ′ which are inclined and communicate with each other. The second connecting hole 122 is located above the first connecting hole 12 ι and passes through the slider die 12 . The slider die 12 projects toward the product 2 from the bump 丨 23, and the bump 123 is embedded in the slider forming position 22. The slider seat 13 can slide down the slider track 14. The slider holder 13 is provided with a movable slot 131 and a receiving slot 132. The receiving slot 132 is formed in the upper communicating movable slot 3 and the receiving slot 132 is recessed in the top surface of the slider holder 13. The oblique pin 15 has an abutting portion 151 and a stem portion 152 extending from the abutting portion 151. The conviction portion 151 is located in the first connecting hole 21 and abuts against the slider holder. The trunk portion 152 is inclined from the first connecting hole ι 21 into the second connecting hole 122. The end of the stem portion 152 is embedded in the bevel forming position 21. The first elastic member 16 is located in the first connecting hole 121 and is sleeved outside the rod portion 152, and the first elastic member 16 is compressed and disposed between the abutting portion 151 and the slider mold core 12. The upper end of the limiting rod 17 is fixed on the slider die 12, the middle portion is received in the receiving groove 132, and the lower end is disposed in the movable slot 131. The movable slot 131 is disposed such that the limiting lever 17 can move relative to the slider seat 13. The second elastic member 18 is sleeved outside the limiting rod 17 and received in the receiving groove 132, and the second elastic member 18 is compressed and pressed between the slider die 12 and the slider holder 13. Please refer to the first to fourth figures for explaining the mold opening process of the product 2 on the male mold assembly 1 of the present invention: when the mold is opened, first, the second elastic member 18 is restored to the original shape and the slider block 13 is pushed to slide. The block seat 13 is slidably moved along the slider rail 14 relative to the limit rod 17 . During the sliding of the slider seat 13 , the compressed first elastic member 16 returns to the original shape and pushes the bullet pin 15 to make the oblique bullet The needle 15 is inclined to move downward, and the end of the oblique pin 15 is gradually separated from the inclined forming position 21 (as shown in the second figure), when the slider seat 13 is slid to the end of the restraining rod 17 (such as the third) As shown, the oblique pin 15 is completely disengaged from the bevel forming position 21, thereby completing the demolding of the bevel forming position 21 of the product 2. The second elastic member 18 continues to push against the slider seat 13 to continue to slide downward, and the limiting rod 17 is driven to move downward, and the limiting rod 17 drives the slider module 12 to move downward to separate from the slider of the product 2. Forming position 22 completes all demolding actions (as shown in the fourth figure). In summary, the artificial oblique pin 15 of the present invention is obliquely disposed in the slider mold core 12, and the end is obliquely embedded in the slope forming position 21 of the product 2, and the first elastic member 16 is compressed against the slider. Between the mold core 12 and the oblique pin 15, so that when the slider seat 13 slides down the slider track 14 during mold opening, the first elastic member 16 pushes the oblique pin 15 to end the oblique pin 15 The product of the product 2 with the bevel forming position 21 can be smoothly removed from the slope forming position 21 of the product 2, and the 5 M428834 has a simple structure and can reduce the mold cost and the processing difficulty. The present invention has been described above in connection with the preferred embodiments, but the present invention is not limited to the embodiments disclosed above, but should cover various modifications and equivalent combinations in accordance with the nature of the present invention. [Simple description of the drawing] The first figure is a schematic diagram of the structure of the male mold component before the mold opening. The second figure is a structural diagram of the open mode state of the male mold component of the present creation. The third figure is a schematic diagram of the structure of the product of the creation of the product after the opening of the product. The fourth picture is a schematic diagram of the structure of the original male mold component after the mold is opened. [Main component symbol description] Male die assembly 1 Male die 11 Slider die 12 First connection hole 121 Second connection hole 122 Bump 123 Slider seat 13 Active groove 131 Storage groove 132 Slider track 14 Oblique pin 15 Abutment 151 Rod 152 First elastic member 16 Limiting rod 17 Second elastic member 18 Product 2 Slope forming position 21 Slide forming position 22