WO2017120695A1 - 栈板防脱落脚座结构 - Google Patents

栈板防脱落脚座结构 Download PDF

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Publication number
WO2017120695A1
WO2017120695A1 PCT/CN2016/000018 CN2016000018W WO2017120695A1 WO 2017120695 A1 WO2017120695 A1 WO 2017120695A1 CN 2016000018 W CN2016000018 W CN 2016000018W WO 2017120695 A1 WO2017120695 A1 WO 2017120695A1
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Prior art keywords
pallet
plug
sleeve joint
joint
foot
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PCT/CN2016/000018
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English (en)
French (fr)
Inventor
王国潭
陈绍轩
游世任
吴志鸣
吴旻潔
陈吉傣
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吕尚文
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Priority to PCT/CN2016/000018 priority Critical patent/WO2017120695A1/zh
Publication of WO2017120695A1 publication Critical patent/WO2017120695A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D19/00Pallets or like platforms, with or without side walls, for supporting loads to be lifted or lowered
    • B65D19/38Details or accessories
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D19/00Pallets or like platforms, with or without side walls, for supporting loads to be lifted or lowered
    • B65D19/38Details or accessories
    • B65D19/40Elements for spacing platforms from supporting surface

Definitions

  • the invention relates to a stacking plate anti-dropping foot structure, in particular to a sleeve joint integrally formed on the foot seat for the support rod to be tightly coupled and stable, and the various types of pallets can be conveniently and quickly formed.
  • the finished product can effectively prevent the foot from falling off.
  • the pallet structure is an indispensable load-bearing tool for storage and storage of goods.
  • the early wood pallets have the disadvantages of wet rot and worms after long-term use. Therefore, the new generation of better pallet design has been adopted. Made of plastic and aluminum metal materials, the pallet will not be easily spoiled and the structure will be more stable and can load heavier items.
  • the existing conventional pallet structure generally includes: a carrier, a plurality of feet, and a plurality of support bars; wherein each of the feet is respectively disposed at a selected portion of the bottom of the carrier, each of the feet a plurality of mounting slots are disposed on the top surface of the seat; and the support rods are respectively disposed on the corresponding bases, so that the two ends of the support rods are respectively tightly engaged with the mounting slots of the legs;
  • the main object of the present invention is to provide a pallet anti-dropping foot structure, comprising: a carrier, a plurality of feet, and a plurality of support bars, wherein: each of the feet is integrated Forming a sleeve joint for laterally inserting and supporting the support rod; when implementing, by using a plastic carrier, The plastic foot seat is combined with the components of the metal support rod, and the sleeve joint is effectively prevented from falling off, and the pallets of various styles can be conveniently and quickly formed, so that the joint strength with high bonding strength is increased, and the bearing capacity can be effectively prevented. The falling off of the foot allows the finished pallet to be safer when carrying items.
  • the finished products of the pallets can effectively solve the shortcomings of the wood, plastic, metal and paper pallets used in the industry.
  • Figure 1 is an exploded view of the structure of the pallet of the present invention.
  • Figure 2 is a partial cross-sectional enlarged view of the first embodiment of the present invention.
  • Figure 3 is an enlarged cross-sectional, partially exploded view of the first embodiment of the present invention.
  • Figure 4 is a schematic view showing the aspect of the sleeve joint of the first embodiment of the present invention.
  • Figure 5 is a schematic view of another sleeve joint aspect of the first embodiment of the present invention.
  • Fig. 6 is a view showing an application example of a skeleton of a square pallet according to the present invention.
  • Fig. 7 is a view showing an application example of a skeleton of a long rectangular type pallet according to the present invention.
  • Figure 8 is a schematic view showing the aspect of the integrally formed sleeve joint of the second embodiment of the present invention.
  • Fig. 9 is a schematic view showing the other embodiment of the other sleeve joint according to the second embodiment of the present invention.
  • Figure 10 is a partially cutaway exploded view of a second embodiment of the present invention.
  • Figure 11 is a partial cross-sectional enlarged view of a second embodiment of the present invention.
  • Figure 12 is a schematic view showing a movable joint aspect of a third embodiment of the present invention.
  • Figure 13 is a perspective view showing the best appearance of the movable joint of the third embodiment of the present invention.
  • Figure 14 is a perspective view showing the best appearance of another movable joint according to a third embodiment of the present invention.
  • Fig. 15 is a view showing an application example of a skeleton of a square pallet according to a third embodiment of the present invention.
  • Fig. 16 is a view showing an application example of a skeleton of a long rectangular type pallet according to a third embodiment of the present invention.
  • the present invention relates to a "stack anti-dropping foot structure", as shown in FIG. 1 to FIG. 3, wherein the pallet 100 mainly comprises: a carrier 10, a plurality of feet 20, and a plurality of supports
  • the rod 30 is composed of a rod 30, and the foot rod 20 is integrally formed with a sleeve joint 40 for laterally inserting and supporting the rod 30, and the plurality of sleeve joints 40 are assisted to support the rod 30.
  • the strength of the joint with the foot 20 is greatly improved, and the manufactured pallet 100 is more safely protected when the article is carried, and the stacking object can be effectively prevented from falling off due to the falling of the foot 20, causing the pallet 100 to be suddenly damaged and causing unnecessary economic loss.
  • the plurality of feet 20 are made of plastic material (also made of other materials) in the preferred embodiment, and a sleeve is integrally formed on each of the feet 20 according to the corresponding position of the composition.
  • a connector 40, the sleeve connector 40 is provided with at least two or more insertion channels 42 outwardly from the central portion 41 (FIG. 4), and the front end of each of the insertion channels 42 has a plug-in interface 43 formed on the foot The side of the seat 20, and;
  • the plurality of support rods 30 are hollow metal materials (other materials can also be made of other materials), and each of the support rods 30 is inserted into the socket joint 40 of the two legs 20 opposite to each other. Inserting the channel 42 to form a more stable pallet skeleton 101;
  • the inner diameter of the insertion passage 42 of each sleeve joint 40 is matched with the outer diameter of the support rod 30, and the insertion interface 43 is provided with a leading edge 431 (see FIG. 3); the convenient metal support rod 30 is inserted.
  • the insertion channel 42 is used to strengthen the outer diameter of the bundled metal support rod 30, and the anti-loose function is quickly combined. (The following is a detailed description of each embodiment for different embodiments).
  • the first embodiment of the present invention mainly includes a plurality of legs 20, a plurality of support bars 30, and a plurality of sleeve joints 40, to form a first pallet skeleton 101, wherein
  • the sleeve joint 40 integrally formed on the plurality of feet 20 can be at least provided with an L shape of two insertion passages 42, a T shape of the three insertion passages 42, or a cross shape of the four insertion passages 42 (eg, FIG. 4), or further, a multi-channel shape (such as FIG. 5) of a diagonally extending insertion channel 42' is added between the two adjacent insertion channels 42, for example, a m-shape or the like.
  • the plurality of support rods 30 are respectively inserted into the sleeve joints 40 of the two legs 20 , so that the end edges of the support rods 30 respectively enter the pressing through the insertion interface 43 .
  • the second embodiment of the present invention mainly includes a plurality of legs 20 , a plurality of support bars 30 , and a plurality of sleeve joints 40 to form a second pallet skeleton.
  • the sleeve joint 40 integrally formed on the plurality of feet 20 can be at least provided with an L shape of two insertion passages 42, a T shape of the three insertion passages 42, or a ten of the four insertion passages 42.
  • a glyph (as shown in FIG. 8), and a protrusion 44 can be added to the bottom of the insertion channel 42.
  • the protrusion 44 can be two front tabs 441, arranged in a "[", "]" interval.
  • the actual shape is not limited thereto, so as to correspond to the inner diameter of the support rod 30, and the two front tabs 441 and the insertion passage 42 are provided with an interposer space for accommodating the wall thickness of the support rod 30 for the support rod.
  • the front end is more stable with the plug-in combination; the same embodiment can further add a multi-channel shape of the oblique insertion channel 42' between the two adjacent plug-in channels 42 (Fig. 9), for example, , rice shape and so on.
  • the plurality of support rods 30 are respectively inserted into the sleeve joints 40 of the two legs 20 opposite to each other, so that the end edges of the respective support rods 30 are respectively pressed through the insertion interface 43 .
  • the inner diameter of the front end of the support rod 30 can be further inserted and engaged with the two front tabs 441 on the convex body 44 to form an inner reinforcing support.
  • the formed pallet skeleton 101 can also be set to at least two types of square or long rectangular (as shown in Fig. 6 and Fig. 7), but the actual This is limited to this.
  • the third embodiment of the present invention mainly includes a plurality of legs 20 , a plurality of support bars 30 , and a plurality of sleeve joints 40 for inserting into a third pallet skeleton 101 .
  • the sleeve joint 40 integrally formed on the plurality of feet 20 can be at least provided with an L shape having two insertion passages 42 , a T shape of the three insertion passages 42 , or a cross shape of the four insertion passages 42 ( As shown in Fig. 12), the design of the bottom portion of the insertion channel 42 can be the same as the two embodiments described above. However, the most different design focus is to further add a movable joint 40' (such as FIG. 12 to FIG.
  • the movable joint 40' can have a single The insertion channel 42' (as shown in FIG. 13) is pressed and inserted corresponding to the outer diameter of the corresponding metal support rod 30, or a single plug portion 43' (as shown in FIG. 14), and the front end of the plug portion 43' forms an inflated block and The insertion portion 431' is provided to be pressed and inserted corresponding to the inner diameter of the metal support rod 30.
  • the insertion portion 43' is provided with a plurality of spaced apart protruding ribs 432' for the hollow well-shaped side edges (but the actual shape is Not limited thereto, a latch 45' is protruded under the base 41' of the movable joint 40'; and a platform 21 is recessed at a corresponding position of each of the bases 20, and the platform 21 is provided with a weir.
  • the hole 25 is inserted into the pair of the latches 45' under the movable joint 40', and the optimal position of the platform 21 and the bore 25 is set in the front of the intersection of the plurality of mounting slots 21 of the foot 20 Corner position, (but actually not This can also be chosen elsewhere.)
  • the plurality of support rods 30 are vertically and horizontally inserted into the sleeve joints 40 of the two legs 20 , so that the end edges of the support rods 30 are respectively inserted.
  • the interface 43 enters the plug-in channel 42 that is tightly inserted into the two-sleeve joint 40, and as the two ends of the diagonally-reinforced support rod 30, the two ends of the support rod 30 can be directly inserted and tilted to the two feet.
  • the plug-in channel 42' of the connector 40' (as in Figure 15) or the single plug-in portion 43' (as in Figure 16), thus not only forming a more stable pallet skeleton 101, but also when assembled, the movable joint 40' has the advantage of convenient rotation angle, so it is convenient to make two kinds of pallet skeletons 101 of square or long rectangular shape according to the different requirements of the load bearing articles (Fig. 15, Fig. 16).
  • the carrier 10 attached to each of the pallet frames 101 for different purposes of the load weight may be a solid plate, a hole plate, a mesh plate or a grid plate of any shape (Fig. show).
  • the number of the feet 20 of the pallet frame 101 can be selected from four, nine, twelve or more.
  • the above-mentioned various pallet frames 101 can be further provided with a plurality of straight and lateral support bars under each of the feet 20 to greatly improve the bonding strength, but the above-mentioned parts are all existing pallet manufacturing. The general technology is not repeated here.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Pallets (AREA)

Abstract

一种栈板防脱落脚座结构,主要包括:一承载体(10)、复数个脚座(20)、及复数根支撑杆(30)组成的栈板,其特征在于:该每一脚座上一体成型设有一套筒接头(40)以供支撑杆横向对插组接;实施时,凭借采用塑料承载体、塑料脚座与金属支撑杆的构件混搭组合,同时利用套筒接头有效防脱落设计,而可方便且快速制成各种不同式样的栈板,使具有高度结合强度增加承载力,并能有效防止脚座的脱落,让制成的栈板承载物品时更有安全保护。

Description

栈板防脱落脚座结构 技术领域
本发明涉及一种栈板防脱落脚座结构,尤指一种在脚座上一体成型设有套筒接头以供支撑杆紧密对插结合稳固,而可方便且快速的制成各式样栈板成品,并能有效防止脚座的脱落。
背景技术
栈板结构是仓储运送货物堆高存放不可或缺的承载用具,早期的木材栈板因长期使用后,会有潮湿腐烂虫蛀的缺点,故目前新一代较佳的栈板设计,都改采用塑胶及铝金属材料来制成,使栈板不会轻易腐坏结构更为稳固,可以负荷更重的物品。
一般坊间常见的现有的栈板结构,主要包括:一承载体、复数个脚座、及复数根支撑杆;其中,各该脚座分别设置于该承载体底部的选定处,各该脚座顶面上设有数个安装槽;而各该支撑杆分别设于彼此对应的脚座上,令各支撑杆的二端分别紧迫卡合于所述的这些脚座的安装槽上;组合时通过支撑杆紧迫卡合于二脚座的安装槽上的设计,而可达到方便且快速制成各式样不同承载力栈板的实用目的。
然而,现有的这种栈板结构组成时,因其支撑杆与脚座间只是简单的结合关系,连接可靠性不高中间欠缺有效防脱落的设计,使得栈板在载重或久用后堆高机在叉高搬运时,即容易从支撑杆与脚座结合处爆开,使脚座与支撑杆脱落的造成损坏,严重影响到栈板的承载强度而无法正常使用,为其主要缺点。
因此,如何将上述缺失加以摒除,即为本案发明人所欲解决的技术困难点的所在。
发明内容
本发明的主要目的,在提供一种栈板防脱落脚座结构,包括:一承载体、复数个脚座、及复数根支撑杆组成的栈板,其特征在于:该每一脚座上一体成型设有一套筒接头以供支撑杆横向对插组接;实施时,凭借采用塑料承载体、 塑料脚座与金属支撑杆的构件混搭组合,同时利用套筒接头有效防脱落设计,而可方便且快速制成各种不同式样的栈板,使具有高度结合强度增加承载力,并能有效防止脚座的脱落,让制成的栈板承载物品时更有安全保护。
同时,凭借所述的这些栈板成品采用塑料与金属材质的混搭组合,也可有效解决目前业界单独使用木材、塑胶、金属及纸制栈板的各项缺点。
附图说明
图1为本发明栈板结构的分解图。
图2为本发明第一实施例的局部剖示放大组合图。
图3为本发明第一实施例的局部剖示放大分解图。
图4为本发明第一实施例套筒接头态样的示意图。
图5为本发明第一实施例其他套筒接头态样的示意图。
图6为本发明组成正方型栈板骨架的应用例图。
图7为本发明组成长矩型栈板骨架的应用例图。
图8为本发明第二实施例一体成型套筒接头态样的示意图。
图9为本发明第二实施例一体成型其他套筒接头态样的示意图。
图10为本发明第二实施例的局部剖示放大分解图。
图11为本发明第二实施例的局部剖示放大组合图。
图12为本发明第三实施例设有活动接头态样的示意图。
图13为本发明第三实施例活动接头的最佳外观立体图。
图14为本发明第三实施例另一活动接头的最佳外观立体图。
图15为本发明第三实施例组成正方型栈板骨架的应用例图。
图16为本发明第三实施例组成长矩型栈板骨架的应用例图。
附图标记说明:10-承载体;20-脚座;21-平台;25-榫孔;30-支撑杆;40-套筒接头;41-中心部;42-插接通道;43-插接口;431-导缘;44-凸体;441-前凸片;40’-活动接头;41’-基部;42’-插接通道;43’-插接部;431’-导插部;432’-突肋;45’-卡榫;100-栈板;101-栈板骨架。
具体实施方式
为使贵审查委员方便了解本发明的内容,及所能达成的功效,兹配合图式 列举具体实施例,详细说明如下:
本发明乃有关一种“栈板防脱落脚座结构”,请参阅图1~图3所示,其中该栈板100主要包括有:一承载体10、复数个脚座20、及复数根支撑杆30所组成,而改良的特征在于:该每一脚座20上一体成型设有一套筒接头40可供支撑杆30横向对插组接,集合复数个套筒接头40的辅助使支撑杆30与脚座20结合强度大幅提高,让制成的栈板100承载物品时更有安全保护,能有效避免堆高物品因脚座20脱落,致使栈板100忽然蹦坏造成无谓的经济损失。
其中,该复数个脚座20在本较佳实施例中为塑料材质(也可为其他材质所制成),且依照组成的对应位置,在每一脚座20的上方一体成型设有一套筒接头40,该套筒接头40由中心部41(如图4)向外设有至少两个以上的插接通道42,该每一插接通道42的前端具有一插接口43,配置形成于脚座20的侧边,以及;
该复数根支撑杆30在本较佳实施例中为中空的金属材质(也可为其他材质所制成),其每一支撑杆30插接设于彼此相对二脚座20其套筒接头40的插接通道42中,而形成一接合更稳固的栈板骨架101;
实施时,该每一套筒接头40的插接通道42的内径,系配合支撑杆30的外径,而且插接口43并设有导缘431(如图3);使方便金属支撑杆30插入,用插接通道42来加强束合金属支撑杆30的外径迫紧定位一体,俾达快速组合防松脱的功能。(以下针对不同的实施例,分别详细介绍说明)。
如同图2~图5所示,本发明第一实施例主要包括复数个脚座20、复数根支撑杆30、以及复数个套筒接头40,以对插组成第一种栈板骨架101,其中该复数个脚座20上一体成型所设的套筒接头40至少可设成具有两插接通道42的L形、三插接通道42的T形、或四插接通道42的十字形(如图4),或进一步在其两相邻的插接通道42之间再增设一斜伸的插接通道42’的多道形(如图5),譬如,米字形等。
如此,如图1~图3所示,可供复数支撑杆30分别插接设于彼此相对二脚座20的套筒接头40上,令各支撑杆30其端缘分别经由插接口43进入紧迫插接于该套筒接头40的插接通道42中,而形成一接合更稳固的栈板骨架101,而且依承载物品用途不同需求,在实务上其所制成的栈板骨架101至少可设成正方型或长矩型两种(如图6、图7),但实际并不以此为限。
如同图1、图8~图11所示,本发明第二实施例主要包括复数个脚座20、复数根支撑杆30、以及复数个套筒接头40,以对插组成第二种栈板骨架101,其中该复数个脚座20上一体成型所设的套筒接头40至少可设成具有两插接通道42的L形、三插接通道42的T形、或四插接通道42的十字形(如图8),且于插接通道42内底部并可增设有一凸体44,较佳的实施该凸体44可为二前凸片441,呈“[”、“]”状间隔配置(但实际形状并不以此为限),以对应支撑杆30的内径,且该二前凸片441与插接通道42间设有容纳支撑杆30壁厚的插组空隙,以供支撑杆30前端对插结合更为稳固;相同本实施例也可进一步在其两相邻的插接通道42之间再增设一斜伸的插接通道42’的多道形(如图9),譬如,米字形等。
如此,如图8~图11所示,可供复数支撑杆30分别插接设于彼此相对二脚座20的套筒接头40上,令各支撑杆30其端缘分别经由插接口43进入紧迫插接于该套筒接头40的插接通道42中,同时其支撑杆30前端的内径又可进一步与凸体44上的二前凸片441对插接合,而形成一具有内部补强支撑更为稳固的栈板骨架101,而且依承载物品用途不同需求,所制成的栈板骨架101同样至少可设成正方型或长矩型两种(如图6、图7),但实际并不以此为限。
请参图12~图16所示,本发明第三实施例主要包括复数个脚座20、复数根支撑杆30、以及复数个套筒接头40,以对插组成第三种栈板骨架101,其中该复数个脚座20上一体成型所设的套筒接头40至少可设成具有两插接通道42的L形、三插接通道42的T形、或四插接通道42的十字形(如图12),实施时,该插接通道42内底部的设计可与前述两实施例相同。但最大不同的设计重点,是在其两相邻的插接通道42之间再进一步增设具有可旋转的一活动接头40’(如图12~图14),该活动接头40’可具单一的插接通道42’(如图13),以对应金属支撑杆30外径挤压插入,或单一的插接部43’(如图14),该插接部43’前端形成一胀大块并设有导插部431’,以对应金属支撑杆30内径挤压插入,较佳的实施该插接部43’为空心井状侧边增设有多道间隔的突肋432’(但实际形状并不以此为限),又其活动接头40’的基部41’下方突设有一卡榫45’;另外在该每一脚座20对应位置则凹设有一平台21,于平台21上设有榫孔25,以供该活动接头40’下的卡榫45’对插置入结合,该平台21与榫孔25的最佳位置设在脚座20的数个安装槽21的交接点前方的夹角位上,(但实际并不 以此为限也可择位设在别处)。
如此,如图12~图16所示,可供复数支撑杆30纵、横分别插接设于彼此相对二脚座20其的套筒接头40上,令各支撑杆30其端缘分别经由插接口43进入紧迫插接于该二套筒接头40的插接通道42中,而作为斜向补强的支撑杆30的二端,则可分别紧迫插接于斜对该二脚座20其活动接头40’的插接通道42’(如图15)或单一的插接部43’上(如图16),如此不但可形成一接合更稳固的栈板骨架101,而且组装时,该活动接头40’因具有方便旋转角度的优点,故可用单一的模块依承载物品用途不同需求,而方便制成正方型或长矩型的两种栈板骨架101(如图15、图16)。
以上是本发明的重点所在,其中揭示内容仅为方便说明,实施时并不以此为限。譬如,图1所示,针对承载重量的不同用途该每一栈板骨架101上方加装的承载体10,可为任一形状的实心板、孔洞板、网状板或栅条板(图未示出)。且栈板骨架101的脚座20数量可选用包含自四个、九个、十二个或更多个。另外,上述各种栈板骨架101其每一脚座20的下方均可进一步加设复数的直向与横向支撑条大幅提高结合强度,惟以上所述这部份均属现有的栈板制造的通用技术,于此不再多作赘述。
以上说明对本发明而言只是说明性的,而非限制性的,本领域普通技术人员理解,在不脱离权利要求所限定的精神和范围的情况下,可作出许多修改、变化或等效,但都将落入本发明的保护范围之内。

Claims (8)

  1. 一种栈板防脱落脚座结构,栈板主要包括一承载体、复数个脚座及复数根支撑杆,其特征在于:该每一脚座上方的对应位置一体成型设有一套筒接头,该每一套筒接头由中心部向外设有至少两个插接通道,每一该插接通道的前端具有一插接口,插接口配置于脚座的侧边,以供支撑杆横向对插组接;如此,可提高结合强度,增加承载力,能有效防止脚座脱落,使制成的栈板承载应用时更为安全。
  2. 根据权利要求1所述的栈板防脱落脚座结构,其特征在于:该套筒接头进一步选自设有两个插接通道的L形、三个插接通道的T形及四个插接通道的十字形的其中的一种。
  3. 根据权利要求2所述的栈板防脱落脚座结构,其特征在于:该套筒接头进一步在两相邻的插接通道之间再增设一斜伸的插接通道。
  4. 根据权利要求2所述的栈板防脱落脚座结构,其特征在于:该套筒接头的插接通道内底部进一步增设有一凸体,该凸体与插接通道间设有容纳支撑杆壁厚的插组空隙。
  5. 根据权利要求4所述的栈板防脱落脚座结构,其特征在于:该凸体为二前凸片,呈“[”、“]”状间隔配置,以对应支撑杆的内径。
  6. 根据权利要求2所述的栈板防脱落脚座结构,其特征在于:该套筒接头进一步在两相邻的插接通道之间增设一可旋转的活动接头,该活动接头具有单一的插接通道,且活动接头基部下方突设有一卡榫;另外在对应每一脚座夹角位置设有一平台,在平台上设有能够与卡榫对插的一榫孔。
  7. 根据权利要求2所述的栈板防脱落脚座结构,其特征在于:该套筒接头进一步在两相邻的插接通道之间增设一可旋转的活动接头,该活动接头具单一的插接部,且活动接头基部下方突设有一卡榫;另外在对应的每一脚座夹角位置设有一平台,在平台上设有能够与卡榫对插的一榫孔。
  8. 根据权利要求7所述的栈板防脱落脚座结构,其特征在于:该插接部为空心井状,侧边增设有多道间隔的突肋,插接部的前端形成一胀大块,并设有导插部,以对应支撑杆内径挤压插入。
PCT/CN2016/000018 2016-01-12 2016-01-12 栈板防脱落脚座结构 WO2017120695A1 (zh)

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WO2021101462A1 (en) * 2019-11-21 2021-05-27 Kösedağ Tel Örme Çi̇t San. Ve Ti̇c. İth. İhr. A.Ş. Pallet foot structure

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