TW201302116A - Method for producing shoes by using the mold for producing shoes - Google Patents
Method for producing shoes by using the mold for producing shoes Download PDFInfo
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- TW201302116A TW201302116A TW100123356A TW100123356A TW201302116A TW 201302116 A TW201302116 A TW 201302116A TW 100123356 A TW100123356 A TW 100123356A TW 100123356 A TW100123356 A TW 100123356A TW 201302116 A TW201302116 A TW 201302116A
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- 238000004519 manufacturing process Methods 0.000 title claims abstract description 11
- 239000000463 material Substances 0.000 claims abstract description 100
- 238000009958 sewing Methods 0.000 claims abstract description 47
- 238000000034 method Methods 0.000 claims description 51
- 239000004744 fabric Substances 0.000 claims description 13
- 238000003825 pressing Methods 0.000 claims description 12
- 230000000149 penetrating effect Effects 0.000 claims description 2
- 239000000853 adhesive Substances 0.000 description 5
- 230000001070 adhesive effect Effects 0.000 description 5
- 230000000694 effects Effects 0.000 description 3
- 239000004033 plastic Substances 0.000 description 3
- 238000001746 injection moulding Methods 0.000 description 2
- 239000003795 chemical substances by application Substances 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 239000010985 leather Substances 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 230000001681 protective effect Effects 0.000 description 1
- 229920002994 synthetic fiber Polymers 0.000 description 1
- 239000004758 synthetic textile Substances 0.000 description 1
- 239000002023 wood Substances 0.000 description 1
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Abstract
Description
本發明是有關於一種使用製鞋模具的製鞋方法,且特別是有關於一種使用配合自動化車縫機之製鞋模具的製鞋方法。BACKGROUND OF THE INVENTION 1. Field of the Invention This invention relates to a method of making a shoe using a shoe mold, and more particularly to a shoemaking method using a shoe mold that cooperates with an automated sewing machine.
運動鞋之製鞋工業中,為了達到多重的防護效果或者是美觀的鞋面設計,必須將不同花紋或材質之鞋材或織品縫合在一起,而現有製鞋過程中,在縫合之前必須先將不同鞋材作一暫時性定位,方可進行縫紉。In the shoe industry of sneakers, in order to achieve multiple protective effects or beautiful upper design, shoes or fabrics of different patterns or materials must be stitched together, and in the existing shoe making process, it must be Different shoe materials are temporarily positioned for sewing.
例如:利用黏著劑先將不同鞋材暫時黏著在一起,但此舉會增加成本在購置消耗性材料像是黏著劑上,若要等候黏著劑乾燥再縫製又會損耗時間上的成本,且黏著劑必須仰賴人工對準也無法重複黏貼,若不小心沒對準則無法重來。現有作法中,也有先將各鞋材使用釘具進行暫時性定位再進行縫合的方式,但此方式更增加裝釘具、拆釘具的時間,要是裝釘具時又沒有對準,重複地拆卸安裝對整體製程而言是非常瑣碎且耗時費工的過程。若是單純使用人工方式以手壓止對準以縫合,則對於公共安全存在風險,又逐漸面臨人工愈趨昂貴,且人工之技能低落之困境。For example, the adhesives are used to temporarily bond different shoe materials together, but this will increase the cost of purchasing consumable materials like adhesives. If you wait for the adhesive to dry and then sew, it will cost time and stick. The agent must rely on manual alignment and can not be repeated. If you are not careful, you cannot return to the guidelines. In the existing practice, there is also a method of temporarily positioning and then suturing each shoe material using a nailing tool, but this method further increases the time for loading the nailing device and the nail removing device, and if the nailing device is not aligned, repeatedly Disassembly and assembly is a very trivial and time consuming process for the overall process. If the manual method is used to manually align and suture, there is a risk to public safety, and the manual is becoming more and more expensive, and the artificial skill is low.
因此,現有各種作法皆無法提供良好的縫紉品質,也無法降低製作成本。因此,對運動鞋之製鞋工業之技術領域中,在良率表現上、經濟效益上都仍舊有相當大的改善空間。Therefore, various existing methods cannot provide good sewing quality and can not reduce the production cost. Therefore, in the technical field of the shoe-making industry of sports shoes, there is still considerable room for improvement in terms of yield performance and economic efficiency.
因此,本發明之一實施方式是在提供一種使用製鞋模具的製鞋方法,製鞋模具配合自動化車縫機。而製鞋方法包含第一到第三步驟。第一步驟係準備平面模板,平面模板包含複數個校位孔及至少一模穴,模穴設置在平面模板上,模穴包含定位邊框,定位邊框設置於模穴之周邊。第二步驟係將複數個鞋材相疊置入模穴,且使得各鞋材的邊緣受定位邊框抵頂定位。第三步驟係利用校位孔使得平面模板與自動化車縫機校準位置而對鞋材進行縫紉。上述定位邊框可以相對於平面模板有高度差。Accordingly, an embodiment of the present invention is to provide a shoemaking method using a shoe mold, which is combined with an automated sewing machine. The method of making shoes includes the first to third steps. The first step is to prepare a planar template. The planar template includes a plurality of calibration holes and at least one cavity. The cavity is disposed on the planar template, and the cavity includes a positioning frame, and the positioning frame is disposed around the cavity. The second step is to stack a plurality of shoe materials into the cavity, and the edges of each shoe are positioned by the positioning frame. The third step is to sew the shoe material by using the calibration hole to align the flat template with the automated sewing machine. The positioning frame may have a height difference with respect to the plane template.
依據本發明一實施例,上述使用製鞋模具的製鞋方法可以更包含在第三步驟前,利用壓件壓止鞋材之步驟。而自動化車縫機經程式化而沿著模穴以自動車縫鞋材。According to an embodiment of the present invention, the shoemaking method using the shoe mold may further include the step of pressing the shoe material with the pressing member before the third step. The automated sewing machine is programmed to automatically sew the shoe along the cavity.
依據本發明另一實施例,上述使用製鞋模具的製鞋方法更可以包含在第二步驟後,準備另一平面模板及黏貼於另一平面模板上之至少一織品,且另一平面模板上對應平面模板與模穴,使織品對應鞋材之步驟。其中自動化車縫機經程式化而自動車縫織品與鞋材。製鞋方法更可以包含在第三步驟前,利用鎖件以鎖合平面模板及另一平面模板之步驟。According to another embodiment of the present invention, the shoemaking method using the shoe mold may further comprise, after the second step, preparing another planar template and at least one fabric adhered to the other planar template, and the other planar template Corresponding to the plane template and the cavity, the step of making the fabric corresponding to the shoe material. Among them, the automatic sewing machine is programmed to automatically sew fabrics and shoes. The shoemaking method may further comprise the step of using a lock to lock the planar template and the other planar template before the third step.
再依據本發明之一實施方式是在提供一種使用製鞋模具的製鞋方法,製鞋模具配合自動化車縫機。而製鞋方法包含第一到第四步驟。第一步驟係準備平面模板,平面模板包含第一面、第二面、複數個校位孔及至少一模孔,模孔穿透平面模板。第二步驟係設置第一定位邊框於平面模板之第一面且相對於平面模板有高度差,且設置第二定位邊框於平面模板之第二面且相對於平面模板有高度差。第三步驟係將多層鞋材置入模孔,而多層鞋材之各層形狀對應第一定位邊框或第二定位邊框以個別受第一定位邊框或第二定位邊框抵頂定位。第四步驟係利用校位孔使得平面模板與自動化車縫機校準位置而對多層鞋材進行縫紉。上述第一定位邊框或第二定位邊框可以相對於平面模板有高度差。According to still another embodiment of the present invention, there is provided a shoemaking method using a shoe mold, the shoe mold and the automatic sewing machine. The shoemaking method includes the first to fourth steps. The first step is to prepare a planar template. The planar template includes a first surface, a second surface, a plurality of calibration holes, and at least one die hole, and the die holes penetrate the planar template. The second step is to set the first positioning frame on the first side of the planar template and have a height difference with respect to the planar template, and set the second positioning frame on the second side of the planar template and have a height difference with respect to the planar template. The third step is to place the multi-layer shoe material into the die hole, and the shape of each layer of the multi-layer shoe material is corresponding to the first positioning frame or the second positioning frame to be individually positioned by the first positioning frame or the second positioning frame. The fourth step is to sew the multi-layer shoe material by using the calibration hole to align the flat template with the automated sewing machine. The first positioning frame or the second positioning frame may have a height difference with respect to the plane template.
依據本發明再一實施例,上述使用製鞋模具的製鞋方法更可以包含在第三步驟前,利用壓件壓止鞋材之步驟。而自動化車縫機經程式化而沿著模穴以自動車縫鞋材。According to still another embodiment of the present invention, the shoemaking method using the shoe mold may further include the step of pressing the shoe material with the pressing member before the third step. The automated sewing machine is programmed to automatically sew the shoe along the cavity.
藉此,使用本發明之製鞋模具的製鞋方法,則只要將欲縫合之鞋材利用製鞋模具上的定位邊框抵頂定位後即可進行縫製。不但省卻黏著劑、暫時性釘具等費工耗時之步驟,經程式化之自動化車縫機可以提供精準地縫紉效果,也可以徹底解決人工愈趨昂貴,且人工之技能低落之困境,甚至提供高度之安全性。故此發明大幅提升製鞋工業之良率與經濟效益。Therefore, the shoemaking method using the shoe mold of the present invention can be sewn by positioning the shoe material to be sewn with the positioning frame on the shoe mold. It not only saves the time-consuming steps such as adhesives and temporary nails, but also provides a precise sewing effect through the stylized automatic sewing machine. It can also completely solve the problem that the labor is more expensive and the artificial skills are low, even Provide a high degree of security. Therefore, the invention greatly improved the yield and economic benefits of the footwear industry.
本揭示內容中所言鞋材或織品係泛指用於製作鞋類商品時會用到的各種真皮皮革、人造合成皮革、人造合成布料、網布等等,也可解釋為可利用縫紉技術結合之各種材質配件。The materials or fabrics referred to in the present disclosure generally refer to various leather leathers, synthetic leathers, synthetic fabrics, mesh fabrics and the like which are used in the manufacture of footwear products, and can also be interpreted as being combined by sewing techniques. Various material accessories.
請參考第1圖,第1圖係繪示依照本發明一實施方式(第一實施方式)的一種使用製鞋模具的製鞋方法中,製鞋模具之結構與鞋材組合的示意圖。此第一實施方式是一種使用製鞋模具的製鞋方法。而所使用之製鞋模具如第1圖所示,包含平面模板110以及至少一模穴130。平面模板110係具有複數個校位孔120以供自動化車縫機170校準位置。而模穴130係設置在平面模板110上,模穴130包含定位邊框140,定位邊框140設置於模穴130之周邊且相對於平面模板110有高度差,其中模穴130供複數個鞋材150、160相疊置入,而各鞋材的邊緣受定位邊框抵頂定位。Please refer to FIG. 1. FIG. 1 is a schematic view showing the structure of a shoe mold and a shoe material combination in a shoemaking method using a shoe mold according to an embodiment (first embodiment) of the present invention. This first embodiment is a shoemaking method using a shoe mold. As shown in FIG. 1, the shoe mold used includes a flat template 110 and at least one cavity 130. The planar template 110 has a plurality of calibration holes 120 for the automated sewing machine 170 to calibrate the position. The cavity 130 is disposed on the planar template 110. The cavity 130 includes a positioning frame 140. The positioning frame 140 is disposed at a periphery of the cavity 130 and has a height difference with respect to the planar template 110. The cavity 130 is provided for the plurality of shoe materials 150. And 160 are stacked one on another, and the edges of each shoe material are positioned by the positioning frame to the top.
如第1圖中所示,鞋材150之形狀對應模穴130與定位邊框140,而可以藉此抵頂定位。又鞋材160之部分邊緣也對應鞋材150、模穴130與定位邊框140,而可以藉此抵頂定位。As shown in FIG. 1, the shape of the shoe material 150 corresponds to the cavity 130 and the positioning frame 140, and can be positioned against the top. The edge of the shoe material 160 also corresponds to the shoe material 150, the cavity 130 and the positioning frame 140, and can be positioned by the top.
再請參考第2圖,第2圖係繪示第一實施方式中,所使用之製鞋模具配合自動化車縫機170之操作示意圖。當鞋材150、160相疊置入模穴130後,由於受到定位邊框140之抵頂定位,所以不會滑動或偏移,故可以配合自動化車縫機170進行縫紉。而自動化車縫機170可人為操控或者經程式化而自動車縫,依照需求可以沿著或不沿著模穴130車縫鞋材150、160。Referring to FIG. 2 again, FIG. 2 is a schematic view showing the operation of the shoe-making mold used in conjunction with the automatic sewing machine 170 in the first embodiment. When the shoe materials 150, 160 are stacked in the cavity 130, they are not slid or offset due to the abutment positioning of the positioning frame 140, so that the sewing can be performed in conjunction with the automatic sewing machine 170. The automated sewing machine 170 can be manually or manually stowed, and the shoe materials 150, 160 can be sewn along or along the cavity 130 as desired.
事實上,亦可以依需求相疊2層以上的鞋材入模穴130中,模穴130的形狀與位置都可以依照各種需求與設計做改變,但必然對應鞋材,甚或以相同版型的斬刀切割出形狀。同樣地,定位邊框140之高度與材質也可以依照各種需求與設計做改變。例如:使用具有黏性但可重複黏貼的材料製作定位邊框140,則黏住鞋材之邊緣可更增加定位效果。定位邊框可以利用金屬、木頭、塑膠等較剛性之材料製作,或者利用有彈性之材質製作。又例如為了增加製鞋模具中定位邊框140的耐用度,也可以利用塑膠料射出成型的方式製作。In fact, it is also possible to stack more than two layers of shoe material into the cavity 130 according to the requirements. The shape and position of the cavity 130 can be changed according to various needs and designs, but necessarily corresponding to the shoe material, or even the same type. The file cuts out the shape. Similarly, the height and material of the positioning frame 140 can also be changed according to various needs and designs. For example, using the viscous but re-stickable material to make the positioning frame 140, the edge of the shoe material can be added to increase the positioning effect. The positioning frame can be made of a relatively rigid material such as metal, wood or plastic, or made of a flexible material. For example, in order to increase the durability of the positioning frame 140 in the shoe mold, it can also be produced by injection molding of a plastic material.
請續參考第3圖,而可以更加理解本發明之第一實施方式的使用製鞋模具的製鞋方法之步驟流程。Referring to FIG. 3, the flow of the steps of the shoemaking method using the shoe mold of the first embodiment of the present invention can be further understood.
第一實施方式之製鞋方法包含第一到第三步驟。第一步驟191係準備平面模板110,平面模板110包含複數個校位孔120及至少一模穴130,模穴130設置在平面模板110上,模穴130包含定位邊框140,定位邊框140設置於模穴130之周邊且相對於平面模板110有高度差。第二步驟192係將複數個鞋材150、160相疊置入模穴130,且使得各鞋材150、160的邊緣受定位邊框140抵頂定位。第三步驟193係利用校位孔120使得平面模板110與自動化車縫機170校準位置而對鞋材150、160進行縫紉。在第三步驟193後可以視需要再回到第一步驟191重複進行,亦或是結束整個製鞋流程。The shoemaking method of the first embodiment includes the first to third steps. The first step 191 is to prepare a planar template 110. The planar template 110 includes a plurality of calibration holes 120 and at least one cavity 130. The cavity 130 is disposed on the planar template 110. The cavity 130 includes a positioning frame 140, and the positioning frame 140 is disposed on the first frame. The periphery of the cavity 130 has a height difference with respect to the planar template 110. The second step 192 is to stack a plurality of shoe materials 150, 160 into the cavity 130, and such that the edges of the shoe materials 150, 160 are positioned against the top of the positioning frame 140. The third step 193 sews the shoe materials 150, 160 by aligning the plane template 110 with the automated sewing machine 170 using the calibrating holes 120. After the third step 193, it may be repeated to the first step 191 as needed, or the entire shoemaking process may be ended.
上述使用製鞋模具的製鞋方法更可以包含在第三步驟193前,利用壓件壓止鞋材之步驟。壓件可以用各種手段實現,不論是手輕壓,氣壓式壓具、機械手臂等等,以更加暫時性定位鞋材150、160。The above-described shoe-making method using the shoe mold may further include the step of pressing the shoe material with the pressing member before the third step 193. The press member can be realized by various means, whether it is a light hand press, a pneumatic press, a robot arm, or the like, to position the shoe materials 150, 160 more temporarily.
第一實施方式之使用製鞋模具的製鞋方法中,更提出另一實施例:上述製鞋方法更可以包含在第二步驟後,準備另一平面模板及黏貼於另一平面模板上之至少一織品,且另一平面模板上對應平面模板與模穴,使織品對應鞋材之步驟。其中自動化車縫機經程式化而自動車縫織品與鞋材。細言之,製鞋方法也可以包含在第三步驟前,利用鎖件以鎖合平面模板及另一平面模板之步驟。此狀況下,兩平面模板可藉由鎖件先鎖合再縫紉。且另一平面模板上可以有透孔讓自動化車縫機之車縫針通過以縫合,或者另一平面模板之形狀直接對應模穴130而使得自動化車縫機170沿著另一平面模板之形狀縫合等等,具有各種變化與可能。在某些狀況下,此織品可能為鞋類廠商之商標或美觀性質之設計等等。In the shoemaking method using the shoe mold of the first embodiment, another embodiment is further proposed: the shoemaking method may further comprise, after the second step, preparing another planar template and adhering to at least another planar template. A fabric, and another planar template corresponding to the plane template and the cavity, so that the fabric corresponds to the steps of the shoe material. Among them, the automatic sewing machine is programmed to automatically sew fabrics and shoes. In detail, the shoemaking method may also include the step of using a lock to lock the planar template and another planar template before the third step. In this case, the two flat templates can be locked by sewing the locks first. And another planar template may have a through hole for the sewing needle of the automatic sewing machine to pass through, or the shape of another planar template directly corresponds to the cavity 130, so that the automated sewing machine 170 is stitched along the shape of another planar template. Wait, there are various changes and possibilities. In some cases, the fabric may be a trademark or aesthetic design of the footwear manufacturer, and the like.
請參考第4-8圖以理解本發明之再一實施方式(第二實施方式)。第4圖係繪示依照本發明第二實施方式的一種使用製鞋模具的製鞋方法中,製鞋模具的結構示意圖。第5、6圖係繪示第二實施方式的製鞋模具與鞋材組合前、後的示意圖。第7圖係繪示第二實施方式的製鞋模具配合自動化車縫機之操作示意圖。第8圖係繪示第二實施方式的使用製鞋模具的製鞋方法之流程圖。Please refer to Figures 4-8 for a further embodiment (second embodiment) of the present invention. 4 is a schematic view showing the structure of a shoe making mold in a shoemaking method using a shoe mold according to a second embodiment of the present invention. 5 and 6 are schematic views showing the front and rear of the combination of the shoe mold and the shoe material of the second embodiment. Fig. 7 is a schematic view showing the operation of the shoe-making mold of the second embodiment in conjunction with the automatic sewing machine. Fig. 8 is a flow chart showing a method of making a shoe using a shoe mold according to a second embodiment.
此第二實施方式是一種使用製鞋模具的製鞋方法,而在此製鞋方法中所使用之製鞋模具,可用以配合自動化車縫機。且所使用之製鞋模具如第4圖所示,包含平面模板210、穿透平面模板210之至少一模孔230、第一定位邊框140及第二定位邊框250。平面模板210係具有複數個校位孔220以供自動化車縫機270校準位置及一第一面(依第4圖之座標方位,第一面為上表面)與一第二面(依第4圖之座標方位,第一面為下表面)。而第一定位邊框240係設置於平面模板210之第一面且相對於平面模板210有高度差。又第二定位邊框250係設置於平面模板210之第二面且相對於平面模板210有高度差。細言之,在平面模板210的上表面有第一定位邊框240,而平面模板210的下表面有第二定位邊框250。This second embodiment is a shoemaking method using a shoe mold, and the shoe mold used in the shoemaking method can be used in conjunction with an automatic sewing machine. As shown in FIG. 4, the shoe mold used includes a planar template 210, at least one die hole 230 penetrating the planar template 210, a first positioning frame 140, and a second positioning frame 250. The planar template 210 has a plurality of calibration holes 220 for the automated sewing machine 270 to calibrate the position and a first surface (the coordinate orientation according to FIG. 4, the first surface is the upper surface) and a second surface (according to the 4th The coordinates of the figure, the first side is the lower surface). The first positioning frame 240 is disposed on the first surface of the planar template 210 and has a height difference with respect to the planar template 210. The second positioning frame 250 is disposed on the second surface of the planar template 210 and has a height difference with respect to the planar template 210. In detail, the first positioning frame 240 is disposed on the upper surface of the planar template 210, and the second positioning frame 250 is disposed on the lower surface of the planar template 210.
再請參考第5、6圖而可得知,模孔230可供一多層鞋材260置入。如第5圖所示,多層鞋材260如為雙層鞋材時,可分為上層鞋材262與下層鞋材261,且上層鞋材262與下層鞋材261間已有縫合點連接。第5圖中多層鞋材260中上層鞋材262之形狀對應第一面的第一定位邊框240,且多層鞋材260中下層鞋材261之形狀對應第二面的第二定位邊框250。因此,將多層鞋材260置入模孔230時,多層鞋材260之各層(上層鞋材262、下層鞋材261)之形狀對應第一定位邊框240或第二定位邊框250以個別受第一定位邊框240或第二定位邊框250抵頂定位。Referring again to Figures 5 and 6, it can be seen that the die hole 230 can be placed in a plurality of layers of shoe material 260. As shown in FIG. 5, when the multi-layer shoe material 260 is a double-layer shoe material, it can be divided into an upper layer shoe material 262 and a lower layer shoe material 261, and the upper layer shoe material 262 and the lower layer shoe material 261 are connected by stitching points. The shape of the upper shoe material 262 in the multi-layer shoe material 260 in FIG. 5 corresponds to the first positioning frame 240 of the first side, and the shape of the lower layer shoe material 261 in the plurality of layers of the shoe material 260 corresponds to the second positioning frame 250 of the second side. Therefore, when the multi-layer shoe material 260 is placed in the die hole 230, the shape of each layer of the multi-layer shoe material 260 (the upper layer shoe material 262, the lower layer shoe material 261) corresponds to the first positioning frame 240 or the second positioning frame 250 to be individually subjected to the first The positioning frame 240 or the second positioning frame 250 is positioned against the top.
當多層鞋材260之各層(上層鞋材262、下層鞋材261)穿過模孔230並各自受到第一定位邊框240或第二定位邊框250抵頂定位後,便不會滑動或偏移,故可以配合自動化車縫機270進行縫紉。而自動化車縫機270可人為操控或者經程式化而自動車縫,依照需求可以沿著或不沿著模孔230以車縫多層鞋材260之上層鞋材262與下層鞋材261。When the layers of the multi-layer shoe material 260 (the upper layer shoe material 262 and the lower layer shoe material 261) pass through the die holes 230 and are respectively positioned by the first positioning frame 240 or the second positioning frame 250, they do not slide or shift. Therefore, sewing can be performed in conjunction with the automatic sewing machine 270. The automated sewing machine 270 can be manually or stylized to automatically sew, and the shoe material 262 and the lower shoe material 261 can be sewn over the multi-layer shoe material 260 along or without the die hole 230 as needed.
事實上,亦可以針對各種多層鞋材製作對應之模穴230、第一定位邊框240與第二定位邊框。模孔230的形狀與位置都可以依照各種需求與設計做改變,但必然使得多層鞋材260可以穿透以分層抵頂定位,換言之,模穴230、第一定位邊框240與第二定位邊框甚或以語多層鞋材260相同版型的斬刀切割出形狀。承上,第一定位邊框240與第二定位邊框之高度與材質也可以依照各種需求與設計做改變。例如:使用具有黏性但可重複黏貼的材料製作,則黏住鞋材之邊緣可更增加定位效果。又例如為了增加製鞋模具的使用壽命,也可以利用塑膠料射出成型的方式製成第一定位邊框240與第二定位邊框250。In fact, the corresponding cavity 230, the first positioning frame 240 and the second positioning frame can also be made for various multilayer shoe materials. The shape and position of the die hole 230 can be changed according to various needs and designs, but the multilayer shoe material 260 can be penetrated to be layered and abutted, in other words, the cavity 230, the first positioning frame 240 and the second positioning frame. Or even the shape of the multi-layer shoe material 260 of the same version of the file cut out the shape. The height and material of the first positioning frame 240 and the second positioning frame can also be changed according to various needs and designs. For example, using a viscous but re-stickable material, sticking to the edge of the shoe increases the positioning. For example, in order to increase the service life of the shoe mold, the first positioning frame 240 and the second positioning frame 250 may also be formed by injection molding of the plastic material.
請續參考第8圖,而可以更加理解本發明之第二實施方式的使用製鞋模具的製鞋方法之步驟流程。Referring to FIG. 8, the flow of the steps of the shoemaking method using the shoe mold of the second embodiment of the present invention can be further understood.
第二實施方式之製鞋方法包含第一到第四步驟。第一步驟291係準備平面模板210,平面模板210包含第一面(依第4圖之座標方位,第一面為上表面)、第二面(依第4圖之座標方位,第一面為下表面)、複數個校位孔220及至少一模孔230,模孔230穿透平面模板210。第二步驟292係設置第一定位邊框240於平面模板210之第一面且相對於平面模板有高度差,且設置第二定位邊框250於平面模板210之第二面且相對於平面模板有高度差。第三步驟293係將多層鞋材260置入模孔,而多層鞋材260之各層(上層鞋材262、下層鞋材261)形狀對應第一定位邊框240或第二定位邊框250以個別受第一定位邊框240或第二定位邊框250抵頂定位。第四步驟294係利用校位孔220使得平面模板210與自動化車縫機270校準位置而對多層鞋材260(上層鞋材262、下層鞋材261)進行縫紉。在第四步驟294後可以視需要再回到第一步驟291重複進行,亦或是結束整個製鞋流程。The shoemaking method of the second embodiment includes the first to fourth steps. The first step 291 is to prepare a planar template 210. The planar template 210 includes a first surface (the first surface is the upper surface according to the coordinate orientation of FIG. 4) and a second surface (the coordinate surface according to FIG. 4, the first surface is The lower surface), the plurality of calibration holes 220 and the at least one die 230, the die holes 230 penetrate the planar template 210. The second step 292 is to set the first positioning frame 240 on the first side of the planar template 210 and has a height difference with respect to the planar template, and set the second positioning frame 250 on the second side of the planar template 210 and has a height relative to the planar template. difference. The third step 293 is to place the plurality of layers of the shoe material 260 into the die hole, and the layers of the plurality of layers of the shoe material 260 (the upper layer of the shoe material 262 and the lower layer of the shoe material 261) are corresponding to the first positioning frame 240 or the second positioning frame 250. A positioning frame 240 or a second positioning frame 250 is positioned against the top. The fourth step 294 sews the multi-layer shoe material 260 (the upper layer shoe material 262, the lower layer shoe material 261) by using the calibration hole 220 to align the plane template 210 with the automated sewing machine 270. After the fourth step 294, it may be repeated to the first step 291 as needed, or the entire shoemaking process may be ended.
上述使用製鞋模具的製鞋方法更可以包含在第四步驟前,利用壓件壓止鞋材之步驟。壓件可以用各種手段實現,不論是手輕壓,氣壓式壓具、機械手臂等等,以更加暫時性定位多層鞋材260(上層鞋材262、下層鞋材261)。The above-described shoe-making method using the shoe mold may further include the step of pressing the shoe material with the pressing member before the fourth step. The press member can be realized by various means, whether it is a hand press, a pneumatic press, a robot arm or the like, to more temporarily position the multilayer shoe material 260 (the upper shoe material 262, the lower layer shoe material 261).
由上述本發明之揭示內容可知,應用本發明之使用製鞋模具的製鞋方法時,只要將欲縫合之鞋材利用製鞋模具上的定位邊框抵頂定位後即可進行縫製。不但省卻黏著劑、暫時性釘具等費工耗時之步驟,經程式化之自動化車縫機可以提供精準地縫紉效果,也可以徹底解決人工愈趨昂貴,且人工之技能低落之困境,甚至提供高度之安全性。故此發明提出之使用製鞋模具的製鞋方法無疑地解決以往長期存在的製程缺陷且大幅提升製鞋工業之良率與經濟效益。As can be seen from the above disclosure of the present invention, when the shoemaking method using the shoe mold of the present invention is applied, the shoe material to be sewn can be sewn by positioning the positioning frame on the shoe mold. It not only saves the time-consuming steps such as adhesives and temporary nails, but also provides a precise sewing effect through the stylized automatic sewing machine. It can also completely solve the problem that the labor is more expensive and the artificial skills are low, even Provide a high degree of security. Therefore, the shoemaking method using the shoe mold proposed by the invention undoubtedly solves the long-standing process defects and greatly improves the yield and economic benefits of the shoe industry.
雖然本發明已以實施方式揭露如上,然其並非用以限定本發明,任何熟習此技藝者,在不脫離本發明之精神和範圍內,當可作各種之更動與潤飾,因此本發明之保護範圍當視後附之申請專利範圍所界定者為準。Although the present invention has been disclosed in the above embodiments, it is not intended to limit the present invention, and the present invention can be modified and modified without departing from the spirit and scope of the present invention. The scope is subject to the definition of the scope of the patent application attached.
110...平面模板110. . . Flat template
120...校位孔120. . . School hole
130...模穴130. . . Cavity
140...定位邊框140. . . Positioning border
150...鞋材150. . . Shoe material
160...鞋材160. . . Shoe material
170...自動化車縫機170. . . Automated sewing machine
191、192、193...步驟191, 192, 193. . . step
210...平面模板210. . . Flat template
220...校位孔220. . . School hole
230...模孔230. . . Mold hole
240...第一定位邊框240. . . First positioning frame
250...第二定位邊框250. . . Second positioning frame
260...多層鞋材260. . . Multi-layer shoe material
261...下層鞋材261. . . Lower shoe material
262...上層鞋材262. . . Upper shoe
270...自動化車縫機270. . . Automated sewing machine
291、292、293、294...步驟291, 292, 293, 294. . . step
為讓本發明之上述和其他目的、特徵、優點與實施例能更明顯易懂,所附圖式之說明如下:The above and other objects, features, advantages and embodiments of the present invention will become more apparent and understood.
第1圖係繪示依照本發明一實施方式(第一實施方式)的一種使用製鞋模具的製鞋方法中,製鞋模具之結構與鞋材組合的示意圖。1 is a schematic view showing a combination of a structure of a shoe mold and a shoe material in a shoemaking method using a shoe mold according to an embodiment (first embodiment) of the present invention.
第2圖係繪示第一實施方式中,製鞋模具配合自動化車縫機之操作示意圖。Fig. 2 is a schematic view showing the operation of the shoe-making mold in combination with the automatic sewing machine in the first embodiment.
第3圖係繪示第一實施方式的使用製鞋模具的製鞋方法之流程圖。3 is a flow chart showing a method of manufacturing a shoe using a shoe mold according to the first embodiment.
第4圖係繪示依照本發明再一實施方式(第二實施方式)的一種使用製鞋模具的製鞋方法中,製鞋模具的結構示意圖。4 is a schematic view showing the structure of a shoe making mold in a shoemaking method using a shoe mold according to still another embodiment (second embodiment) of the present invention.
第5圖係繪示第二實施方式中,製鞋模具與鞋材組合前的示意圖。Fig. 5 is a schematic view showing the second embodiment before the combination of the shoe mold and the shoe material.
第6圖係繪示第二實施方式中,製鞋模具與鞋材組合後的示意圖。Fig. 6 is a schematic view showing the combination of the shoe mold and the shoe material in the second embodiment.
第7圖係繪示第二實施方式中,製鞋模具配合自動化車縫機之操作示意圖。Fig. 7 is a schematic view showing the operation of the shoe mold in combination with the automatic sewing machine in the second embodiment.
第8圖係繪示第二實施方式的使用製鞋模具的製鞋方法之流程圖。Fig. 8 is a flow chart showing a method of making a shoe using a shoe mold according to a second embodiment.
191、192、193...步驟191, 192, 193. . . step
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TW100123356A TW201302116A (en) | 2011-07-01 | 2011-07-01 | Method for producing shoes by using the mold for producing shoes |
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TW100123356A TW201302116A (en) | 2011-07-01 | 2011-07-01 | Method for producing shoes by using the mold for producing shoes |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106388137A (en) * | 2016-11-23 | 2017-02-15 | 际华三五五皮革皮鞋有限公司 | Special shoe-making template for sewing multiple paralleled ornamental threads |
TWI584751B (en) * | 2016-05-30 | 2017-06-01 | Shoes and their production methods |
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2011
- 2011-07-01 TW TW100123356A patent/TW201302116A/en unknown
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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TWI584751B (en) * | 2016-05-30 | 2017-06-01 | Shoes and their production methods | |
CN106388137A (en) * | 2016-11-23 | 2017-02-15 | 际华三五五皮革皮鞋有限公司 | Special shoe-making template for sewing multiple paralleled ornamental threads |
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