TWM604269U - Scalable mold structure - Google Patents
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- TWM604269U TWM604269U TW109200837U TW109200837U TWM604269U TW M604269 U TWM604269 U TW M604269U TW 109200837 U TW109200837 U TW 109200837U TW 109200837 U TW109200837 U TW 109200837U TW M604269 U TWM604269 U TW M604269U
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- 239000000463 material Substances 0.000 claims abstract description 40
- 238000010438 heat treatment Methods 0.000 claims description 22
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- XUIMIQQOPSSXEZ-UHFFFAOYSA-N Silicon Chemical compound [Si] XUIMIQQOPSSXEZ-UHFFFAOYSA-N 0.000 description 1
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- Moulds For Moulding Plastics Or The Like (AREA)
Abstract
一種可伸縮模具結構,其包含: 一上蓋以及一底蓋,該上蓋蓋合於該底蓋並與該底蓋之一內凹部分間形成一容置空間;以及該上蓋與該底蓋間有一可伸縮結構,使該容置空間的範圍可調整;本新型透過可伸縮模具結構的設計,在發泡製程中可適當地依據發泡材料之需求,進行加壓或多次壓合,提高發泡材料間之壓縮密度與提升導熱性,亦可控制發泡成型之成型密度、厚度,並改善表面平整度,提高產品良率。A retractable mold structure, comprising: an upper cover and a bottom cover, the upper cover is closed on the bottom cover and forms an accommodating space with a concave portion of the bottom cover; and there is a flexible space between the upper cover and the bottom cover The telescopic structure makes the range of the accommodating space adjustable; through the design of the telescopic mold structure, the foaming process can be appropriately pressurized or pressed multiple times according to the requirements of the foaming material to improve foaming The compression density between materials and the improvement of thermal conductivity can also control the molding density and thickness of foam molding, and improve the surface flatness and improve product yield.
Description
一種模具,特別是一種發泡製程的過程中,透過可伸縮結構能適時給與發泡材料一次或多次加壓力量的一種可伸縮模具。A kind of mold, especially a kind of stretchable mold that can give the foaming material one or more times of pressure through the stretchable structure in the process of the foaming process.
發泡珠粒早期主要應用於保麗龍(聚苯乙烯, Polystyrene, PS)等緩衝材或包材上,但近年來因著鞋材的新應用拓展,以及鞋業大廠的廣告行銷與宣傳後,發泡珠粒的材料、發泡成型技術又逐漸回歸到主流開發市場,受到許多廠商與開發業者的關注。Foamed beads were mainly used in cushioning materials or packaging materials such as polystyrene (polystyrene, PS) in the early days, but in recent years, due to the expansion of new applications of shoe materials, as well as the advertising and marketing of major shoe manufacturers , The materials and foam molding technology of foamed beads have gradually returned to the mainstream development market, attracting the attention of many manufacturers and developers.
目前發泡珠粒的加工主要可分為兩大階段,第一是先將發泡材料形成一顆顆的發泡珠粒,第二則在將該些發泡珠粒引入最終成型體之模具中,藉由通入高壓水蒸汽的溫度與加壓力量,使發泡珠粒得以被壓縮並各發泡珠粒間結合為一成型體。At present, the processing of foamed beads can be divided into two major stages. The first is to form the foamed material into individual foamed beads, and the second is to introduce the foamed beads into the mold of the final molded body. In the process, the temperature and pressure of high-pressure steam are used to compress the foamed beads and combine the foamed beads into a molded body.
然而,前述製程需要發泡成型加工廠另外投資引入高壓水蒸氣的設備,不僅增加生產加工與設備成本,且該高壓水蒸汽設備除了使用在發泡珠粒的成型過程外,水蒸氣的最高溫度通常只可到達150 oC,無法適用於其他需要高溫成型之發泡材料製程中,增添了發泡成型加工廠對於投資高壓水蒸氣設備的疑慮以及成本壓力。 However, the aforementioned process requires the foam molding processing plant to invest in additional equipment to introduce high-pressure steam, which not only increases the cost of production and processing, and the high-pressure steam equipment is used in the foaming bead molding process. Usually it can only reach 150 o C, which is not suitable for other foam material processes that require high temperature molding. This adds to the doubts and cost pressures of foam molding processing plants about investing in high-pressure steam equipment.
為了解決目前發泡珠粒加工成型製程中需要額外使用高壓水蒸氣的設備,對於發泡成型加工廠可能造成的生產成本負擔問題,本新型提供一種可伸縮模具結構以及其發泡製程,在不需要引入高壓水蒸氣的設備即可達成發泡珠粒的加工成型外,本新型所提供的設備與製程亦可通用於其他發泡材料的製程中,不受限於加工成型溫度的限制,可減輕發泡成型加工廠的設備投資成本負擔,甚至可拓展其發泡成型產品的應用範疇。In order to solve the need for additional equipment using high-pressure water vapor in the current foaming bead processing and molding process, and the production cost burden that may be caused by the foaming molding processing plant, the present invention provides a retractable mold structure and its foaming process. In addition to the equipment that needs to introduce high-pressure water vapor to achieve the processing and molding of the foamed beads, the equipment and process provided by this new model can also be used in the manufacturing process of other foam materials without being limited by the processing and molding temperature. It can reduce the burden of equipment investment cost in foam molding processing plants, and even expand the application scope of its foam molding products.
本新型提供一種可伸縮模具結構,其包含: 一上蓋以及一底蓋,該上蓋蓋合於該底蓋並與該底蓋之一內凹部分間形成一容置空間;以及該上蓋與該底蓋間有一可伸縮結構,使該容置空間的範圍可調整。The present model provides a retractable mold structure, which comprises: an upper cover and a bottom cover, the upper cover is closed on the bottom cover and forms an accommodating space between a concave portion of the bottom cover; and the upper cover and the bottom cover There is a retractable structure in the room, so that the range of the accommodating space can be adjusted.
其中,該可伸縮結構為該上蓋之內或外表面周緣設有一上蓋螺紋面,該底蓋之內或外表面周緣設有與該上蓋螺紋面可對應結合之一底蓋螺紋面。Wherein, the retractable structure is that the inner or outer surface of the upper cover is provided with a threaded surface of the upper cover, and the inner or outer surface of the bottom cover is provided with a threaded surface of the lower cover that can be combined with the threaded surface of the upper cover correspondingly.
其中,該可伸縮結構為該上蓋設有可下壓與反彈之一可伸縮塊。Wherein, in the telescopic structure, the upper cover is provided with a telescopic block that can be pressed down and rebounded.
其中,該上蓋與該底蓋間包含一中蓋。Wherein, a middle cover is included between the upper cover and the bottom cover.
較佳地,該中蓋為複數塊。Preferably, the middle cover is a plurality of blocks.
其中,該底蓋內設有一冷卻裝置或一加熱裝置。Wherein, the bottom cover is provided with a cooling device or a heating device.
其中,該上蓋與該底蓋之材質為塑膠、矽膠、橡膠、金屬、玻璃或陶瓷。Wherein, the material of the upper cover and the bottom cover is plastic, silicon rubber, rubber, metal, glass or ceramic.
其中,該可伸縮模具結構包含一輸入通道與一輸出通道。Wherein, the retractable mold structure includes an input channel and an output channel.
藉由上述說明可知,本新型的可伸縮模具結構具有的優勢如下:According to the above description, the advantages of the new type of retractable mold structure are as follows:
1. 本新型無需如同既有的發泡珠粒製程需要額外引入高壓水蒸氣設備,透過可伸縮模具結構的設計,在發泡製程中可適當地依據發泡材料之需求進行加壓,甚至可多次壓合,提高發泡材料間之壓縮密度與提升導熱性,亦可控制發泡成型之成型密度、厚度,並改善表面平整度,提高產品良率,且可為發泡成型加工廠省去添購高壓水蒸氣設備的成本。1. This new model does not need to introduce additional high-pressure water vapor equipment like the existing foaming bead process. Through the design of the retractable mold structure, the foaming process can be appropriately pressurized according to the needs of the foaming material, even Multiple pressings can increase the compression density between foam materials and improve thermal conductivity. It can also control the molding density and thickness of foam molding, improve surface flatness, increase product yield, and save foam molding processing plants. Go to the cost of purchasing high-pressure steam equipment.
2. 本新型的可伸縮模具結構可搭配發泡製程的加熱手段選用模具材質,因此不受限於加熱源的溫度限制,可廣泛應用於各式發泡產品的成型與製作。2. The new type of retractable mold structure can be matched with the heating method of the foaming process to select the mold material, so it is not limited to the temperature limit of the heating source, and can be widely used in the molding and production of various foam products.
為能詳細瞭解本新型的技術特徵及實用功效,並可依照說明書的內容來實施,進一步以如圖式所示的較佳實施例,詳細說明如下。In order to understand the technical features and practical effects of the present invention in detail, and implement it in accordance with the content of the specification, the preferred embodiment shown in the figure is further described in detail as follows.
《可伸縮模具結構實施例"Embodiment of retractable mold structure 11 》》
請參考圖1,本新型首先提供一種可伸縮模具結構10,其第一較佳實施例包含:一上蓋11以及一底蓋13,該上蓋11可蓋合於該底蓋13,並與該底蓋13之內凹部分間形成一容置空間12。Please refer to Figure 1, the present invention first provides a
於本實施例中,為達到模具可伸縮之效果,該上蓋11底部較佳係外凸並蓋合於該底蓋13所包含的內凹部分,而形成該容置空間12,且該上蓋11之外表面周緣設有一上蓋螺紋面111,該底蓋13內表面周緣設有可與該上蓋螺紋面111對應結合之一底蓋螺紋面131。然而,前述該上蓋螺紋面111以及該底蓋螺紋面131不限定僅可設置於該上蓋11與該底蓋13的外表面或是內表面,而是僅需要於該上蓋11與該底蓋13間有可相互結合之對應螺紋表面即屬於本新型所涵蓋之範圍。In this embodiment, in order to achieve the effect of the mold being stretchable, the bottom of the
使用本實施例所提供具有對應螺紋表面的該上蓋11以及該底蓋13時,是先將該上蓋11與該底蓋13螺旋蓋合並形成該容置空間12,再將一發泡材料F,較佳是發泡珠粒的型態透過輸送與輸出管道(如圖2所示)引入該容置空間12中,並較佳的可同時將原本容置於該容置空間12中的空氣排除,過程中依據該發泡材料F之成型需求,透過調整該上蓋11以及該底蓋13的螺旋蓋合程度,使該容置空間12的空間範圍增加或縮小,達到本新型所謂模具可伸縮之效果。When using the
前述所謂的輸送與輸出管道,請參考圖2A~圖2C,其一較佳實施例可於該可伸縮模具結構10設有與外連通的一輸入通道I與一輸出通道O,該輸入通道I與該輸出通道O設置的位置與數量並不限定,本實施例是於該上蓋11上各設置一個該輸入通道I與該輸出通道O。該上蓋11與該底蓋13合模後,可通過該輸入通道I將該發泡材料F引入該容置空間12中,並同時透過該輸出通道O將原本該容置空間12中的空氣排除,具體實施上,該輸出通道O的通道口較佳設置有可避免引入的該發泡材料F排出的過篩裝置,例如過濾網等,避免引入的該發泡材料F連同空氣一起排出。另一方面,該輸出通道O的數量可以不限僅一個,可於該可伸縮模具結構10上設置多個孔洞或縫隙來排出氣體,使該發泡材料F能容置於該容置空間12中。For the aforementioned so-called delivery and output pipelines, please refer to FIGS. 2A to 2C. In a preferred embodiment, the
《可伸縮模具結構實施例"Embodiment of retractable mold structure 22 》》
本新型的可伸縮模具結構10的第二較佳實施例基本與前述第一較佳實施例相同,包含該上蓋11以及該底蓋13,該上蓋11可蓋合於該底蓋13,並與該底蓋13之內凹部分間形成該容置空間12。The second preferred embodiment of the
請參考圖3,第二較佳實施例中達到模具可伸縮效果的方式是於該上蓋11設有可下壓與反彈之一可伸縮塊21,透過外力施加壓力於該可伸縮塊21,即可造成該容置空間12的範圍增加或縮小的效果。3, in the second preferred embodiment, the way to achieve the mold retractable effect is to provide a
本實施例在使用時,是將該上蓋11與該底蓋13蓋合,再將該發泡材料F引入該容置空間12,過程中將該上蓋11與該底蓋13蓋合,透過既有任意夾具將二者固定,並於發泡過程中施予該可伸縮塊21壓力,達到該容置空間12的範圍增加或縮小的效果。另一方面,本實施例的該上蓋11與該底蓋13蓋合後,並不限於僅可使用夾具固定的方式,也可以沿用前述第一較佳實施例的該上蓋螺紋面111與該底蓋螺紋面131來將二者固定,或是利用該上蓋11與該底蓋13間設計卡扣結構來固定,並以該可伸縮塊21調整該容置空間12的範圍。When this embodiment is in use, the
《可伸縮模具結構實施例"Embodiment of retractable mold structure 33 》》
請參考圖4,本新型的可伸縮模具結構10第三較佳實施例用於補充前述該第一較佳實施例的螺紋結構設計,有鑑於前述第一較佳實施例是採用該上蓋11與該底蓋13間相應的螺紋結構達到使該容置空間12範圍可調整的效果,然而這樣的螺紋設計會使得該上蓋11與該底蓋13要為圓形結構,才得以相互螺旋結合,但為了使本新型的可伸縮模具結構10可成型的產品外型不限定,進一步地可於該上蓋11與該底蓋13間設置一中蓋14,該中蓋14裝置於該底蓋13後不會與該上蓋11連動旋轉,因此可以成型為非圓形或其他非對稱結構,透過該上蓋11旋轉下壓的程度來頂抵該中蓋14與該底蓋13間所形成的該容置空間12範圍,達到調整該發泡材料F的受熱均勻性與成型效果。Please refer to FIG. 4, the third preferred embodiment of the
另一方面,本新型的該底蓋13可以依據需求設有加熱或冷卻裝置(圖未示),使得成型過程中可直接透過該加熱裝置加熱,或成型後的該發泡材料F得以透過該冷卻裝置冷卻定型。On the other hand, the
《可伸縮模具結構實施例"Embodiment of retractable mold structure 44 》》
請參考圖5,本新型的可伸縮模具結構10第四較佳實施例用於補充前述該第三較佳實施例的該中蓋14結構設計,該中蓋14於本實施例較佳是呈現複數塊可拼接成型的狀態,例如於其厚度方向可拆分成可拼接之兩該中蓋組件141,此設計之目的主要包含可達到製程中調控該容置空間12的大小外,同時還可調控該可伸縮模具結構10的散熱性,也就是若製程中所引入的該發泡材料F需要較佳的散熱環境,可依據需求使用較少的該中蓋組件141,使該可伸縮模該具結構10的散熱性較佳,有助於加工過程中的加工性與成型性。Please refer to FIG. 5, the fourth preferred embodiment of the
《可伸縮模具結構的發泡製程實施例"Foaming process embodiment of retractable mold structure" 11 》》
請參考圖6,其為本新型對應前述數個該可伸縮發泡模具結構10實施例所進一步提供之發泡製程,步驟包含:
步驟1:將該伸縮模具結構10的該上蓋11與該底蓋13蓋合後,使該可伸縮模具結構10形成該容置空間12,該發泡材料F加入該可伸縮模具結構10的該容置空間12中,該上蓋11與該底蓋13間有一可伸縮結構,使該容置空間12的範圍可調整;
步驟2:對該上蓋11與該底蓋11施與一加熱手段,過程中透過該可伸縮結構調整該容置空間12的範圍;以及
步驟3:該加熱手段使該發泡材料F成型為一成型體。
Please refer to FIG. 6, which is the foaming process further provided by the new type corresponding to the aforementioned several embodiments of the expandable
前述之該加熱手段包含電磁加熱、電熱管加熱、紅外線加熱、熱風加熱、高頻輻射加熱、熱油加熱、熱水加熱或火力加熱。The aforementioned heating means includes electromagnetic heating, electric heating tube heating, infrared heating, hot air heating, high-frequency radiation heating, hot oil heating, hot water heating, or thermal heating.
《可伸縮模具結構材料》"Stretchable Mould Structure Materials"
對應前述該可伸縮模具結構10以及其發泡製程,本新型的該可伸縮模具結構10的材料,包含該上蓋11、該中蓋14(該中蓋組件141)以及該底蓋13,依據前述的該加熱手段的不同可選用包含但不限於塑膠、橡膠、矽膠、金屬、玻璃或陶瓷材料。舉例而言,若採用微波電磁之加熱手段,該上蓋11、該中蓋14的材質較佳是可使微波穿透之塑膠、橡膠、矽膠材質,該底蓋13則選擇金屬、玻璃或陶瓷。若考量到本發明可伸縮模具結構10的該上蓋11與該底蓋13於前述可伸縮模具結構實施例1的合模旋轉性以及該發泡材料F的散熱導熱性,該中蓋14與該中蓋組件141可選用塑膠、玻璃或陶瓷等多塊式結構。Corresponding to the aforementioned
該可伸縮模具結構10的該上蓋11與該底蓋13可透過CNC加工成型、雷射加工成型、鑄造成型、沖壓成型、翻砂成型、翻模成型、快速成型、熱壓成型、射出成型或3D列印成型等加工方式製備。The
《發泡材料》"foaming material"
該發泡材料F在引入該可伸縮模具結構10中基本可分為三種狀態,其一是加入該可伸縮模具結構10前無發泡過的狀態,其二則是進入該可伸縮模具結構10前未完全發泡或微發泡的狀態,其三則是進入該可伸縮模具結構10前已發泡的狀態。所謂無發泡過的狀態是指該發泡材料F在透過微波電磁發泡製程前的混練步驟並無發泡產生;而未完全發泡或則係該發泡材料F在透過微波電磁發泡製程前的混練步驟已有發泡產生,但發泡未完全(微發泡),例如發泡劑未完全反應或添加兩種以上高低溫發泡劑,此種發泡材料F可以是小顆粒的微發泡體狀態呈現;而已發泡則係該發泡材料F在透過本新型所提供之發泡製程前已有發泡產生,例如以高壓流體為物理發泡劑,透過連續熔融壓出造粒/板材、高壓流體浸漬、溶解平衡、一次加熱發泡、二次加熱發泡、載壓處理等技術產生發泡材料F,例如較佳的可以是透過如超臨界流體發泡形成發泡珠粒,或是發泡熱塑性聚氨酯(E-TPU),而型態較佳可為珠粒、板材、條狀、星型或其他不規則型態。The foaming material F can be basically divided into three states when introduced into the
進一步地,該發泡材料F較佳可額外加入水,或含有水份,該水份可使該發泡材料F後續加熱時,在本發明的該可伸縮模具結構10中產生水蒸氣壓力,有助於加熱成型的效率與品質Further, the foaming material F can preferably be additionally added with water or contain water, which can cause the foaming material F to generate water vapor pressure in the
經過本新型發泡成型製程處理後的該成型體則可分為連續發泡結構、非連續發泡結構或甚至是多種材料的複合結構:所謂的連續發泡結構指由無發泡過的該發泡材料F加入該可伸縮模具結構10中進行發泡,所得之該成型體之發泡泡體間結構連續;而所謂的非連續發泡結構則是指使用前述未完全發泡/微發泡以及已完全發泡的該發泡材料F,利用本新型所提供的發泡成型製程完成該成型體,使未完全發泡的該發泡材料F能再次發泡成型或已發泡的該發泡材料F相互黏合得到該成型體,但該成型體之各個發泡結構間主要是黏合結合的關係,並非連續性的發泡結構;而所謂多種材料的複合結構指引入多種不同的該發泡材料F,透過本新型的發泡製程得到具有多種材料複合的該成型體。The molded body processed by the new foam molding process can be divided into a continuous foam structure, a discontinuous foam structure or even a composite structure of multiple materials: the so-called continuous foam structure refers to the non-foamed structure. The foaming material F is added to the
本新型使用該發泡材料所製成的該成型體可以是任意型態以及任意領域範疇,例如片材、板材或其他不規則形狀之包材、緩衝材或鞋材等,例如地墊、巧拼、盛裝容器、鞋中底或床墊等。特別針對地墊、巧拼等應用,透過前述多種材料的複合結構的材料選用,可以在該發泡材料F上表面加飾如布、木紋、石頭等仿地板樣態材料,增加該成型體的產品多樣性、美觀與品質。The molded body made of the foam material of the present invention can be of any shape and any field category, such as sheets, plates or other irregularly shaped packaging materials, cushioning materials or shoe materials, such as floor mats, smart Combine and hold containers, shoe midsoles or mattresses, etc. Especially for applications such as floor mats, clever stitching, etc., through the selection of the composite structure of the aforementioned multiple materials, the upper surface of the foam material F can be decorated with floor-like materials such as cloth, wood grain, stone, etc., to increase the molded body The diversity, beauty and quality of products.
以上所述僅為本新型的較佳實施例而已,並非用以限定本新型主張的權利範圍,凡其它未脫離本新型所揭示的精神所完成的等效改變或修飾,均應包括在本新型的申請專利範圍內。The above descriptions are only the preferred embodiments of the present model, and are not intended to limit the scope of rights claimed by the present model. All other equivalent changes or modifications completed without departing from the spirit disclosed in the present model shall be included in the present model Within the scope of patent application.
10:伸縮模具結構 11:上蓋 111:上蓋螺紋面 12:容置空間 13:底蓋 141:中蓋組件 14:中蓋 131:底蓋螺紋面 21:可伸縮塊 F:發泡材料 I:輸入通道 O:輸出通道 10: Telescopic mold structure 11: Upper cover 111: Upper cover threaded surface 12: Housing space 13: bottom cover 141: Middle cover assembly 14: Middle cover 131: Bottom cover threaded surface 21: Scalable block F: Foam material I: input channel O: output channel
圖1為本新型可伸縮模具結構的第一較佳實施例示意圖。 圖2A~圖2C為本新型可伸縮模具結構設置輸送與輸出管道的較佳實施例示意圖。 圖3為本新型可伸縮模具結構的第二較佳實施例示意圖。 圖4為本新型可伸縮模具結構的第三較佳實施例示意圖。 圖5為本新型可伸縮模具結構的第四較佳實施例示意圖。 圖6為本新型可伸縮模具結構發泡製程的第一較佳實施例流程圖。 Fig. 1 is a schematic diagram of a first preferred embodiment of a new type of retractable mold structure. 2A to 2C are schematic diagrams of a preferred embodiment of a new type of retractable mold structure with delivery and output pipes. Figure 3 is a schematic diagram of a second preferred embodiment of the novel retractable mold structure. Fig. 4 is a schematic diagram of a third preferred embodiment of the novel retractable mold structure. Figure 5 is a schematic diagram of a fourth preferred embodiment of the novel retractable mold structure. Fig. 6 is a flow chart of the first preferred embodiment of the foaming process of the novel retractable mold structure.
10:伸縮模具結構 10: Telescopic mold structure
11:上蓋 11: Upper cover
111:上蓋螺紋面 111: Upper cover threaded surface
12:容置空間 12: Housing space
13:底蓋 13: bottom cover
Claims (8)
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