TW202411508A - Light grille floor - Google Patents
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- TW202411508A TW202411508A TW111134410A TW111134410A TW202411508A TW 202411508 A TW202411508 A TW 202411508A TW 111134410 A TW111134410 A TW 111134410A TW 111134410 A TW111134410 A TW 111134410A TW 202411508 A TW202411508 A TW 202411508A
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- 238000009423 ventilation Methods 0.000 claims abstract description 16
- 229910000838 Al alloy Inorganic materials 0.000 claims abstract description 6
- 238000000034 method Methods 0.000 abstract description 9
- 239000004065 semiconductor Substances 0.000 abstract description 9
- 230000003749 cleanliness Effects 0.000 abstract description 4
- 238000004519 manufacturing process Methods 0.000 description 6
- 230000007547 defect Effects 0.000 description 4
- 239000000463 material Substances 0.000 description 4
- 238000010586 diagram Methods 0.000 description 3
- 230000000694 effects Effects 0.000 description 3
- 238000003466 welding Methods 0.000 description 2
- 238000005266 casting Methods 0.000 description 1
- 230000007812 deficiency Effects 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
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Abstract
Description
本發明係有關一種地板,尤指一種具有高通風率之輕型格柵地板。The present invention relates to a floor, in particular to a light grid floor with high ventilation rate.
習知高架地板,如TWM626914專利、TWM626915專利、TWM626017專利、TWM626032專利、TWM625241專利、TWM625242專利、TWM625267專利、TWM625270專利、TWM625289專利及TWM596253專利等,除了用於半導體製程之廠區樓地板外,亦可用於製程區之通風地板,但其通風率小於百分之二十,無法滿足通風率之需求。It is known that elevated floors, such as TWM626914 patent, TWM626915 patent, TWM626017 patent, TWM626032 patent, TWM625241 patent, TWM625242 patent, TWM625267 patent, TWM625270 patent, TWM625289 patent and TWM596253 patent, can be used as ventilation floors in process areas in addition to being used as factory floors in semiconductor manufacturing processes. However, their ventilation rate is less than 20%, which cannot meet the ventilation rate requirements.
然而,目前用於水溝蓋之格柵地板係採用焊接方式製作,如TW536257專利,由於焊接成型製程中,容易產生變形,且容易產生缺陷及斷裂。However, the grating floor used for gutter cover is currently manufactured by welding, such as the TW536257 patent. Due to the welding process, it is easy to deform, and it is easy to produce defects and cracks.
再者,現有格柵地板之通風量過小,使得回風量不夠,致使無法滿足半導體製程清淨度之需求。Furthermore, the ventilation volume of the existing grid floor is too small, resulting in insufficient return air volume, which makes it impossible to meet the cleanliness requirements of the semiconductor process.
又,習知格柵地板之結構強度往往不足,故當該格柵地板上承載半導體製程中較重之機台設備時,該格柵地板容易發生碎裂之問題。Furthermore, it is known that the structural strength of the grid floor is often insufficient, so when the grid floor carries heavier equipment in the semiconductor manufacturing process, the grid floor is prone to breakage.
另一方面,現有格柵地板亦有過重的問題,不僅浪費材料,且增加製造的成本。On the other hand, existing grid floors also have the problem of being too heavy, which not only wastes materials but also increases manufacturing costs.
因此,如何克服上述習知技術之種種問題,實已成為目前業界亟待克服之難題。Therefore, how to overcome the above-mentioned problems of the known technology has become a difficult problem that the industry needs to overcome urgently.
鑑於上述習知技術之種種缺失,本發明提供一種輕型格柵地板,係包括:天板,係具有相對之地面側與蜂巢側,其中,該天板上形成有複數連通該地面側與蜂巢側之穿孔,以形成56%以上之通風量;以及複數肋骨結構,係與該天板採用鋁合金一體成型鑄造而成,並設於該天板之蜂巢側上以形成複數凹部,以令各該凹部中具有二個該穿孔,其中,該肋骨結構係由該天板邊緣向中間處依序定義有第一肋骨、第二肋骨、第三肋骨、第四肋骨、第五肋骨、第六肋骨及第七肋骨,且該第一肋骨、該第五肋骨及該第七肋骨相對於該蜂巢側之高度係至少為25公厘,以作為主肋骨,而該第二肋骨、該第三肋骨、該第四肋骨及該第六肋骨相對於該蜂巢側之高度係低於25公厘,以作為中肋骨。In view of the above-mentioned deficiencies of the prior art, the present invention provides a light grid floor, comprising: a top plate having a ground side and a honeycomb side opposite to each other, wherein a plurality of through holes connecting the ground side and the honeycomb side are formed on the top plate to form a ventilation volume of more than 56%; and a plurality of rib structures, which are integrally formed and cast with the top plate using an aluminum alloy and are arranged on the honeycomb side of the top plate to form a plurality of recesses, so that each of the recesses has two of the through holes, wherein the rib structures are provided on the top plate. In the embodiment, the rib structure is defined in sequence from the edge of the top plate to the middle as the first rib, the second rib, the third rib, the fourth rib, the fifth rib, the sixth rib and the seventh rib, and the heights of the first rib, the fifth rib and the seventh rib relative to the side of the honeycomb are at least 25 mm, so as to serve as main ribs, and the heights of the second rib, the third rib, the fourth rib and the sixth rib relative to the side of the honeycomb are less than 25 mm, so as to serve as middle ribs.
前述之輕型格柵地板中,該複數凹部係陣列排設,以於該蜂巢側上形成蜂巢結構。In the aforementioned light grid floor, the plurality of recesses are arranged in an array to form a honeycomb structure on the honeycomb side.
前述之輕型格柵地板中,該第一肋骨係形成於該天板邊緣而成為該輕型格柵地板之邊肋骨,以作為該輕型格柵地板之邊框。In the aforementioned light grid floor, the first rib is formed at the edge of the top plate to become the side rib of the light grid floor, so as to serve as the side frame of the light grid floor.
前述之輕型格柵地板中,該第一肋骨相對於該蜂巢側之與該天板之厚度的總和係為43公厘,而該天板之厚度為3公厘。In the aforementioned light grid floor, the sum of the thickness of the first rib relative to the honeycomb side and the top plate is 43 mm, and the thickness of the top plate is 3 mm.
前述之輕型格柵地板中,該第一肋骨之寬度為3至8公厘。In the aforementioned light grid floor, the width of the first rib is 3 to 8 mm.
前述之輕型格柵地板中,該第五肋骨及第七肋骨相對於該蜂巢側之高度為30至34公厘。In the aforementioned light grid floor, the height of the fifth rib and the seventh rib relative to the honeycomb side is 30 to 34 mm.
前述之輕型格柵地板中,該第五肋骨及第七肋骨之寬度為3至4.8公厘。In the aforementioned light grid floor, the width of the fifth rib and the seventh rib is 3 to 4.8 mm.
前述之輕型格柵地板中,該第二肋骨、第三肋骨、第四肋骨及第六肋骨相對於該蜂巢側之高度係為16至24公厘。In the aforementioned light grid floor, the height of the second rib, the third rib, the fourth rib and the sixth rib relative to the honeycomb side is 16 to 24 mm.
前述之輕型格柵地板中,該第二肋骨、第三肋骨、第四肋骨及第六肋骨之寬度均為3公厘。In the aforementioned light grid floor, the widths of the second rib, the third rib, the fourth rib and the sixth rib are all 3 mm.
前述之輕型格柵地板中,該肋骨結構於縱向及橫向上係以兩條該第七肋骨形成一井字型肋骨,以將該輕型格柵地板分成四個區域,該四個區域中相鄰之第二肋骨、第三肋骨、第四肋骨、第五肋骨及第六肋骨之間係形成25個子區域,各該子區域均具有一凹部,並於該第七肋骨所形成之井字型肋骨之中央部位形成之另一凹部,並於每個子區域均具有兩個長條形之該穿孔,以形成56%以上之通風量,且於該天板之四周形成一翼板,使該翼板之厚度均大於該天板之厚度。In the aforementioned light grid floor, the rib structure forms a tic-tac-toe rib with two of the seventh ribs in the longitudinal and transverse directions to divide the light grid floor into four areas. 25 sub-areas are formed between the adjacent second ribs, third ribs, fourth ribs, fifth ribs and sixth ribs in the four areas. Each of the sub-areas has a recess, and another recess is formed in the central part of the tic-tac-toe rib formed by the seventh rib. Each sub-area has two long strips of perforations to form a ventilation rate of more than 56%, and a wing plate is formed around the top plate so that the thickness of the wing plate is greater than the thickness of the top plate.
前述之輕型格柵地板中,該肋骨結構復包含高度低於該中肋骨之複數輔助肋,且各該輔助肋係對應形成於各該凹部中,以令單一該凹部中係配置單一該輔助肋。例如,該輔助肋相對於該蜂巢側之高度係為10至11公厘,且寬度為3.2公厘。In the aforementioned light grid floor, the rib structure further comprises a plurality of auxiliary ribs whose height is lower than the middle rib, and each of the auxiliary ribs is formed in each of the recesses, so that a single auxiliary rib is arranged in a single recess. For example, the height of the auxiliary rib relative to the honeycomb side is 10 to 11 mm, and the width is 3.2 mm.
前述之輕型格柵地板中,該蜂巢側之相對兩側部位之該第一肋骨及該第七肋骨之寬度係分別小於該蜂巢側之中間部位之該第一肋骨及該第七肋骨之寬度,以減低該輕型格柵地板之重量。In the aforementioned light grid floor, the widths of the first rib and the seventh rib at the opposite sides of the honeycomb side are respectively smaller than the widths of the first rib and the seventh rib at the middle part of the honeycomb side, so as to reduce the weight of the light grid floor.
前述之輕型格柵地板中,該第一肋骨係於該輕型格柵地板之四個角落上形成有腳座,該腳座固定於支撐腳架上。In the aforementioned light grid floor, the first rib is formed with a footrest on the four corners of the light grid floor, and the footrest is fixed on the supporting frame.
由上可知,本發明之輕型格柵地板中,主要藉由該天板與該複數肋骨結構採用鋁合金一體成型鑄造,以於製作該輕型格柵地板時不會產生變形,且不易產生缺陷及斷裂等問題,故相較於習知技術,本發明之輕型格柵地板之可靠性極佳。As can be seen from the above, in the light-weight grid floor of the present invention, the top plate and the plurality of rib structures are integrally formed and cast with aluminum alloy, so that deformation will not occur during the manufacture of the light-weight grid floor, and defects and cracks are not likely to occur. Therefore, compared with the prior art, the light-weight grid floor of the present invention has excellent reliability.
再者,藉由該些穿孔之設計,以形成56%以上之通風量,故能增加通風量,以滿足半導體製程清淨度之需求。Furthermore, by designing the through holes, a ventilation rate of more than 56% is formed, thereby increasing the ventilation rate to meet the cleanliness requirements of the semiconductor process.
又,該肋骨結構之主肋骨相對於該蜂巢側之高度均至少為25公厘,以提升該輕型格柵地板之結構強度,故相較於習知技術,該輕型格柵地板可承受半導體製程中較重之機台設備,以避免該輕型格柵地板於使用中發生碎裂之問題。In addition, the height of the main ribs of the rib structure relative to the honeycomb side is at least 25 mm to enhance the structural strength of the light grid floor. Therefore, compared with the prior art, the light grid floor can withstand heavier equipment in the semiconductor process to avoid the problem of the light grid floor breaking during use.
以下藉由特定的具體實施例說明本發明之實施方式,熟悉此技藝之人士可由本說明書所揭示之內容輕易地瞭解本發明之其他優點及功效。The following describes the implementation of the present invention by means of specific embodiments. Those skilled in the art can easily understand other advantages and effects of the present invention from the contents disclosed in this specification.
須知,本說明書所附圖式所繪示之結構、比例、大小等,均僅用以配合說明書所揭示之內容,以供熟悉此技藝之人士之瞭解與閱讀,並非用以限定本發明可實施之限定條件,故不具技術上之實質意義,任何結構之修飾、比例關係之改變或大小之調整,在不影響本發明所能產生之功效及所能達成之目的下,均應仍落在本發明所揭示之技術內容得能涵蓋之範圍內。同時,本說明書中所引用之如「上」、「下」、「左」、「右」及「一」等之用語,亦僅為便於敘述之明瞭,而非用以限定本發明可實施之範圍,其相對關係之改變或調整,在無實質變更技術內容下,當亦視為本發明可實施之範疇。It should be noted that the structures, proportions, sizes, etc. depicted in the drawings attached to this specification are only used to match the contents disclosed in the specification for understanding and reading by people familiar with this technology, and are not used to limit the restrictive conditions for the implementation of the present invention. Therefore, they have no substantial technical significance. Any modification of the structure, change of the proportion relationship or adjustment of the size should still fall within the scope of the technical content disclosed by the present invention without affecting the effects and purposes that can be achieved by the present invention. At the same time, the terms such as "upper", "lower", "left", "right" and "one" etc. used in this specification are only used to facilitate the clarity of the description, and are not used to limit the scope of the present invention. Changes or adjustments to their relative relationships, without substantially changing the technical content, should also be regarded as the scope of the present invention.
圖1A至圖1E係為本發明之輕型格柵地板1之示意圖。本實施例之輕型格柵地板1係用於承載較輕負荷,其承載負荷約500公斤。1A to 1E are schematic diagrams of the light-type grid floor 1 of the present invention. The light-type grid floor 1 of this embodiment is used to bear a relatively light load, and its bearing load is about 500 kg.
所述之輕型格柵地板1係具有一天板10、以及設於該天板10上之複數肋骨結構1a,以令該天板10與該複數肋骨結構1a採用鋁合金一體成型鑄造,以於製作該輕型格柵地板1時不會產生變形,且不易產生缺陷及斷裂等問題。The light grid floor 1 has a top plate 10 and a plurality of rib structures 1a arranged on the top plate 10, so that the top plate 10 and the plurality of rib structures 1a are integrally formed and cast using an aluminum alloy, so that deformation will not occur during the manufacture of the light grid floor 1, and defects and cracks are not likely to occur.
所述之天板10係具有相對之地面側10a與蜂巢側10b,且該蜂巢側10b於縱向及橫向上係分別設有複數該肋骨結構1a,以於縱向及橫向之肋骨結構1a之間形成複數凹部S,其中,圖1C及圖1D僅顯示縱向之肋骨結構1a,而橫向之肋骨結構1a與縱向肋骨結構1a相同排列方式以呈對稱式,故省略橫向之肋骨結構1a之剖面。The top plate 10 has a ground side 10a and a honeycomb side 10b opposite to each other, and the honeycomb side 10b is provided with a plurality of rib structures 1a in the longitudinal and transverse directions, respectively, so as to form a plurality of recesses S between the longitudinal and transverse rib structures 1a, wherein Figures 1C and 1D only show the longitudinal rib structure 1a, and the transverse rib structure 1a is arranged in the same manner as the longitudinal rib structure 1a to be symmetrical, and therefore the cross-section of the transverse rib structure 1a is omitted.
於本實施例中,該天板10係大致呈矩形體,如正方形板,其長度L為600mm及厚度t0為3mm,並於該天板10之四周形成一翼板1d(其厚度t1為4.5mm,係大於該天板10之厚度t0),且於該天板10之四個角落上形成有腳座1b,其底部呈L型凹狀(亦可呈L型凸狀),該輕型格柵地板1腳座1b固定於支撐腳架(圖略)上。例如,該腳座1b用於調整該輕型格柵地板1之總高度,使得拼接多個輕型格柵地板1時得以位於同一水平面。In this embodiment, the top plate 10 is roughly rectangular, such as a square plate, with a length L of 600 mm and a thickness t0 of 3 mm, and a wing plate 1d (with a thickness t1 of 4.5 mm, which is greater than the thickness t0 of the top plate 10) is formed around the top plate 10, and a footrest 1b is formed on the four corners of the top plate 10, and the bottom thereof is L-shaped concave (or L-shaped convex), and the footrest 1b of the light grid floor 1 is fixed on a supporting leg (omitted in the figure). For example, the footrest 1b is used to adjust the total height of the light grid floor 1 so that multiple light grid floors 1 can be located on the same horizontal plane when splicing.
再者,該地面側10a係為一平整表面,且該些凹部S係陣列排設,以於該蜂巢側10b上形成一具有複數頂針位1c(約於每四個凹部S所組成之正方形區域之角落處上)之蜂巢結構。Furthermore, the ground side 10a is a flat surface, and the recesses S are arranged in an array to form a honeycomb structure having a plurality of top needle positions 1c (approximately at the corners of a square area formed by every four recesses S) on the honeycomb side 10b.
所述之肋骨結構1a係由該天板10邊緣向中間處(或如圖1C及圖1D所示之左右側向中間方向)依序定義有第一肋骨11、第二肋骨12、第三肋骨13、第四肋骨14、第五肋骨15、第六肋骨16及第七肋骨17,且該第一、第五及第七肋骨11,15,17相對於該蜂巢側10b之高度h1,h5,h7係至少為25公厘(mm),而該第二、第三、第四及第六肋骨12,13,14,16相對於該蜂巢側10b之高度h2,h3,h4,h6係低於25公厘,故該第一、第五及第七肋骨11,15,17係作為主肋骨,而該第二、第三、第四及第六肋骨12,13,14,16係作為中肋骨,其中,該第一至第六肋骨11~16係以第七肋骨17為基準而左右對稱(或如圖1B所示之上下對稱)分布,以令該第二肋骨12、第三肋骨13、第四肋骨14、第五肋骨15、第六肋骨16及第七肋骨17間之間隔距離w為48㎜。The rib structure 1a is defined in sequence from the edge of the top plate 10 to the middle (or the middle direction of the left and right sides as shown in FIG. 1C and FIG. 1D ) as a
於本實施例中,該第一肋骨11係形成於該天板10邊緣而成為該輕型格柵地板1之邊肋骨,以作為該輕型格柵地板1之邊框,供固接該腳座1b。例如,該第一肋骨11相對於該蜂巢側10b之高度h1為40mm,係均大於該第二至第七肋骨12~17相對於該蜂巢側10b之高度h2~h7,且本實施例之該第一肋骨11相對於該蜂巢側10b之高度h1與該天板10之厚度t0的總和T為43mm(即T=h1+t0),而該腳座1b與該第一肋骨11之端面齊平,使該腳座1b之高度、該第一肋骨11相對於該蜂巢側10b之高度h1與該天板10之厚度t0之總高度(即輕型格柵地板1之腳高)為43mm。In this embodiment, the
再者,該肋骨結構1a的第二至第七肋骨12~17之高度h2~h7可依需求相同或不相同,且該第一肋骨11與中間處之該凹部R,S之間的第二至第七肋骨12~17之排列方式係如圖1C所示。例如,第五肋骨15相對於該蜂巢側10b之高度h5為30mm、第七肋骨17相對於該蜂巢側10b之高度h7為34mm、第二肋骨12相對於該蜂巢側10b之高度h2為16mm、第三肋骨13相對於該蜂巢側10b之高度h3為24mm、第四肋骨14相對於該蜂巢側10b之高度h4為16mm、及第六肋骨16相對於該蜂巢側10b之高度h6為16mm,其中,縱向及橫向之兩條第七肋骨17係形成一井字型肋骨,以將該輕型格柵地板1分成四個區域,每個區域相鄰之第二肋骨12、第三肋骨13、第四肋骨14、第五肋骨15及第六肋骨16之間係形成25個子區域,每個子區域具有一凹部S,並於該井字型肋骨之中央部位形成另一種態樣之凹部R。進一步,該天板10於該凹部R之厚度可依需求增加或與該天板10之厚度t0相同,且該凹部R內配置有一輔助肋17a,以提高該輕型格柵地板1在中間處之抗壓強度。例如,因第二肋骨12相對於該蜂巢側10b之高度h2低於第一肋骨11相對於該蜂巢側10b之高度h1,故輕型格柵地板1固定於一高架地板用之腳架上時,該輕型格柵地板1之四個腳落處係以第一肋骨11之底部作為支撐。Furthermore, the heights h2-h7 of the second to seventh ribs 12-17 of the rib structure 1a can be the same or different as required, and the arrangement of the second to seventh ribs 12-17 between the
又,各該肋骨之寬度d1~d7可依需求相同或不相同,如圖1C所示。例如,第一肋骨11之寬度d1為7至8㎜(例如7.5mm)、第二肋骨12之寬度d2為3mm、第三肋骨13之寬度d3為3mm、第四肋骨14之寬度d4為3mm、第五肋骨15之寬度d5為3mm、第六肋骨16之寬度d6為3mm、及第七肋骨17之寬度d7為4.8mm。Moreover, the widths d1 to d7 of the ribs may be the same or different as required, as shown in FIG1C . For example, the width d1 of the
進一步,各該肋骨分別沿縱向或橫向延伸,且同一肋骨在其延伸的不同位置上可以依需求具有不同的寬度。例如,可調整局部肋骨之寬度d1,d5,d7,如圖1D所示之該蜂巢側10b之相對兩側部位之該第一肋骨11及第七肋骨17之寬度d1,d7係較小,其中,第一肋骨11之寬度d1為3.5mm、第七肋骨17之寬度d7為4.26mm,係分別小於圖1C所示之該蜂巢側10b之中間部位之第一肋骨11及第七肋骨17之寬度d1,d7,以減低輕型格柵地板1之重量;或者,第五肋骨15之寬度d5係較大,第五肋骨15之寬度d5為3.15mm,係略大於圖1C所示之該蜂巢側10b之中間部位之第五肋骨15之寬度d5。該第二、第三、第四及第六肋骨12,13,14,16之寬度d2,d3,d4,d6則不變。Furthermore, each of the ribs extends longitudinally or transversely, and the same rib may have different widths at different positions of its extension as required. For example, the width d1, d5, and d7 of the local ribs can be adjusted, such as the width d1 and d7 of the
另外,該肋骨結構1a可依需求增設複數體積遠小於其它肋骨之輔助肋17a,18,如圖1C所示,其相對於該蜂巢側10b之高度h0,h8(如10㎜)係低於該中肋骨相對於該蜂巢側10b之高度h2,h3,h4,h6,且其寬度d8為3.2㎜。例如,該些輔助肋17a,18係對應形成於各該凹部R,S中,且沿單一方向延伸而未相互交錯,如圖1C所示之單一凹部R,S配置一條輔助肋17a,18。進一步,該凹部S中之輔助肋18之高度h8可依需求調整,如圖1D所示之11㎜。In addition, the rib structure 1a can be equipped with multiple
再者,該輕型格柵地板1係於該天板10上形成複數連通該地面側10a與蜂巢側10b之穿孔100,並以該第七肋骨17(縱向及橫向之兩條第七肋骨17所形成井字型肋骨)將該蜂巢側10b分成四個區域(四個角落區域),每個區域又形成25個子區域(對應該凹部S位置),另該井字型肋骨向外延伸處(十字區域),藉由該些肋骨(該第二肋骨12、第三肋骨13、第四肋骨14、第五肋骨15及第六肋骨16)可間隔出21個另一子區域(對應該凹部R,S位置),以令每個子區域均具有兩個較多鏤空面積之長條形穿孔100,以形成56%以上之通風量。Furthermore, the light grid floor 1 is formed with a plurality of through holes 100 on the top plate 10 connecting the ground side 10a and the honeycomb side 10b, and the honeycomb side 10b is divided into four areas (four corner areas) by the seventh rib 17 (a tic-tac-toe rib formed by two longitudinal and transverse seventh ribs 17), each of which is further divided into 25 sub-areas (corresponding to the position of the recess S), and at the outward extension of the tic-tac-toe rib (cross area), 21 other sub-areas (corresponding to the position of the recess R, S) can be separated by these ribs (the
於本實施例中,該些穿孔100之位置係對應該些凹部R,S配置。例如,每一凹部R,S上形成有兩個穿孔100,且該兩個穿孔100係間隔併排,並以該輔助肋17a,18隔開各穿孔100。另外,該第一與第二肋骨11,12之間的凹部S僅具有一個穿孔100,即無配置輔助肋18。In this embodiment, the positions of the through holes 100 are arranged corresponding to the recesses R, S. For example, two through holes 100 are formed on each recess R, S, and the two through holes 100 are spaced and arranged side by side, and the
因此,該輕型格柵地板1藉由該穿孔100之設計,不僅可增加通風量,及利於節省材料及減輕重量,並可增加承載重量。Therefore, the light grid floor 1 can increase ventilation through the design of the perforations 100, save materials, reduce weight, and increase the load-bearing capacity.
又,該輕型格柵地板1之天板10之厚度t0較小,且該肋骨結構1a之大部分之高度h2,h3,h4,h6亦較小,即該中肋骨(第二、第三、第四及第六肋骨12,13,14,16)之高度h2,h3,h4,h6較主肋骨(第一肋骨11、第五肋骨15與第七肋骨17)之高度h1,h5,h7小,以利於節省材料及減輕重量。In addition, the thickness t0 of the top plate 10 of the light grid floor 1 is smaller, and the heights h2, h3, h4, h6 of most of the rib structure 1a are also smaller, that is, the heights h2, h3, h4, h6 of the middle ribs (the second, third, fourth and
綜上所述,本發明之輕型格柵地板1主要藉由該天板10與該複數肋骨結構1a採用鋁合金一體成型鑄造,且橫向肋骨與縱向肋骨之排列方式相同而呈對稱式,以於製作該輕型格柵地板1時不會產生變形,且不易產生缺陷及斷裂等問題,故相較於習知技術,本發明之輕型格柵地板1不僅可靠性極佳,且有利於提升良率而節省製作成本。In summary, the light grid floor 1 of the present invention is mainly formed by integrally casting the top plate 10 and the plurality of rib structures 1a with aluminum alloy, and the arrangement of the transverse ribs and the longitudinal ribs is the same and symmetrical, so that the light grid floor 1 will not be deformed when it is manufactured, and it is not easy to produce defects and cracks. Therefore, compared with the prior art, the light grid floor 1 of the present invention is not only extremely reliable, but also conducive to improving the yield and saving the manufacturing cost.
再者,藉由該穿孔100之設計,以形成56%以上之通風量,故能增加通風量,可滿足半導體製程設備之四周及淋浴室需較高的回風量之需求,以提高半導體製程之清淨度。Furthermore, the design of the through hole 100 can form a ventilation volume of more than 56%, thereby increasing the ventilation volume and meeting the demand for higher return air volume around the semiconductor process equipment and the shower room, so as to improve the cleanliness of the semiconductor process.
又,藉由該肋骨結構1a之主肋骨相對於該蜂巢側10b之高度h1,h5,h7均至少為25公厘,以提升該輕型格柵地板1之結構強度,故該輕型格柵地板1能承受半導體製程中較重之機台設備,以避免該輕型格柵地板1於使用中發生碎裂之問題。進一步,依該輕型格柵地板1之承載負荷大小以調整肋骨之高度h1~h7與寬度d1~d7大小,進而節省該輕型格柵地板1之材料及減輕重量。In addition, the heights h1, h5, and h7 of the main ribs of the rib structure 1a relative to the honeycomb side 10b are at least 25 mm, so as to enhance the structural strength of the light grid floor 1, so that the light grid floor 1 can withstand heavier equipment in the semiconductor process, thereby avoiding the problem of the light grid floor 1 being broken during use. Furthermore, the heights h1 to h7 and the widths d1 to d7 of the ribs are adjusted according to the load of the light grid floor 1, thereby saving the material of the light grid floor 1 and reducing the weight.
另外,藉由該輔助肋17a,18之設計,可進一步提升該輕型格柵地板1之結構強度。In addition, the structural strength of the light grid floor 1 can be further improved by the design of the
上述實施例係用以例示性說明本發明之原理及其功效,而非用於限制本發明。任何熟習此項技藝之人士均可在不違背本發明之精神及範疇下,對上述實施例進行修改。因此本發明之權利保護範圍,應如後述之申請專利範圍所列。The above embodiments are used to illustrate the principle and effect of the present invention, but not to limit the present invention. Anyone skilled in the art can modify the above embodiments without violating the spirit and scope of the present invention. Therefore, the scope of protection of the present invention should be as listed in the scope of the patent application described below.
1:輕型格柵地板 1a:肋骨結構 1b:腳座 1c:頂針位 1d:翼板 10:天板 10a:地面側 10b:蜂巢側 100:穿孔 11:第一肋骨 12:第二肋骨 13:第三肋骨 14:第四肋骨 15:第五肋骨 16:第六肋骨 17:第七肋骨 17a,18:輔助肋 d1~d8:寬度 h0~h8:高度 L:長度 R,S:凹部 T:總和 t0,t1:厚度 w:間隔距離 1: Lightweight grid floor 1a: Rib structure 1b: Footrest 1c: Top pin position 1d: Wing plate 10: Top plate 10a: Ground side 10b: Honeycomb side 100: Perforation 11: First rib 12: Second rib 13: Third rib 14: Fourth rib 15: Fifth rib 16: Sixth rib 17: Seventh rib 17a,18: Auxiliary rib d1~d8: Width h0~h8: Height L: Length R,S: Recess T: Total t0,t1: Thickness w: Spacing distance
圖1A係為本發明之輕型格柵地板之立體示意圖。FIG. 1A is a three-dimensional schematic diagram of the light grid floor of the present invention.
圖1B係為圖1A之前視平面圖。FIG. 1B is a front plan view of FIG. 1A .
圖1C係為圖1B沿C-C剖線之剖面圖。FIG. 1C is a cross-sectional view of FIG. 1B along the C-C section line.
圖1D係為圖1B沿D-D剖線之剖面圖。FIG1D is a cross-sectional view along the D-D line of FIG1B.
圖1E係為圖1A之另一視角之立體示意圖。FIG. 1E is a three-dimensional schematic diagram of FIG. 1A from another viewing angle.
1:輕型格柵地板 1: Lightweight grid floor
1a:肋骨結構 1a: Rib structure
1b:腳座 1b: Footrest
1d:翼板 1d: Wing plate
10:天板 10: Top plate
10a:地面側 10a: Ground side
10b:蜂巢側 10b: Honeycomb side
100:穿孔 100: Perforation
11:第一肋骨 11: First rib
12:第二肋骨 12: Second rib
13:第三肋骨 13: Third rib
14:第四肋骨 14: Fourth rib
15:第五肋骨 15: Fifth rib
16:第六肋骨 16: Sixth rib
17:第七肋骨 17: Seventh rib
17a,18:輔助肋 17a,18: Auxiliary ribs
h0~h8:高度 h0~h8: height
d1~d8:寬度 d1~d8: Width
T:總和 T:Total
t0,t1:厚度 t0,t1: thickness
R,S:凹部 R,S: concave part
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