WO2012009932A1 - 用连接构件拼接的硬质拼接板块 - Google Patents

用连接构件拼接的硬质拼接板块 Download PDF

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Publication number
WO2012009932A1
WO2012009932A1 PCT/CN2010/080300 CN2010080300W WO2012009932A1 WO 2012009932 A1 WO2012009932 A1 WO 2012009932A1 CN 2010080300 W CN2010080300 W CN 2010080300W WO 2012009932 A1 WO2012009932 A1 WO 2012009932A1
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WO
WIPO (PCT)
Prior art keywords
connecting member
spliced
cross
panel
section
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Application number
PCT/CN2010/080300
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English (en)
French (fr)
Inventor
吕锋滨
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Lv Fengbin
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Publication date
Application filed by Lv Fengbin filed Critical Lv Fengbin
Publication of WO2012009932A1 publication Critical patent/WO2012009932A1/zh

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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F15/00Flooring
    • E04F15/02Flooring or floor layers composed of a number of similar elements
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F2201/00Joining sheets or plates or panels
    • E04F2201/01Joining sheets, plates or panels with edges in abutting relationship
    • E04F2201/0138Joining sheets, plates or panels with edges in abutting relationship by moving the sheets, plates or panels perpendicular to the main plane
    • E04F2201/0146Joining sheets, plates or panels with edges in abutting relationship by moving the sheets, plates or panels perpendicular to the main plane with snap action of the edge connectors
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F2201/00Joining sheets or plates or panels
    • E04F2201/02Non-undercut connections, e.g. tongue and groove connections
    • E04F2201/028Non-undercut connections, e.g. tongue and groove connections connected by tongues and grooves with triangular shape
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F2201/00Joining sheets or plates or panels
    • E04F2201/05Separate connectors or inserts, e.g. pegs, pins, keys or strips
    • E04F2201/0517U- or C-shaped brackets and clamps

Definitions

  • the present invention relates to a rigid splice panel, and more particularly to a rigid splice panel having a connecting member between the panel and the longitudinal direction of the panel.
  • the splicing and fixing method of the prior art splicing slabs 1 is to directly splicing or splicing the slabs on the ground or the wall surface; 2 is to first fix the wooden slats on the ground or the wall surface or the frame, and then the longitudinal two sides have the phase
  • the corresponding slabs of ⁇ and ⁇ structures are laid on the wooden strips. During the laying process, nails and wooden strips are fixed in the gutters.
  • the disadvantage is that the laying process of directly splicing or nailing the plates on the ground or the wall surface is complicated and requires professional completion.
  • the method of laying on the wooden strips is prone to cracking at the nailing when the nails are driven into the gutters, resulting in waste of resources; in addition, in the process of thermal expansion and contraction of climate change, it is squeezed by the adjacent plates. Pressing, a gap is created between the plate and the nail, and the human body will make a sound when stepping on the plate.
  • the object of the present invention is to overcome the deficiencies of the prior art, and provide a laying operation without professional operation, and the laying process is convenient and quick; the nail and the plate are completely detached, and the plate cracking phenomenon is prevented, and no gap can be generated between the plate and the nail, and the plate is eliminated.
  • a stiff splicing panel spliced with connecting members.
  • the technical solution of the rigid splicing slab spliced by the connecting member of the present invention comprises a slab body, and a connecting member is disposed between the longitudinal side of the slab body and the longitudinal corresponding side of the other slab body, and the upper plane of the connecting member is lower than The upper plane of the panel body or flush with the upper plane of the panel body, the bottom plane of the connecting member is flush with the bottom plane of the panel body, or lower than the bottom plane of the panel body, or higher than the bottom of the panel body Plane, the connecting member is composed of an upper part of the member, a middle portion of the member and a lower portion of the member, the upper portion of the member has a cross section larger than a cross section of the middle portion of the member, and the lower portion of the member is provided with at least one outward extending body and is provided at the end portion.
  • the upper portion of the member may have a rectangular cross section, a triangular shape, a dovetail shape, or an extended arm at an angle downward.
  • the extension arm has elasticity.
  • the protrusions may be rectangular or dovetail, or may have an upper end extending inward.
  • the extension body is provided with a fixing hole.
  • the beneficial effect of the rigid splicing slab spliced by the connecting member of the invention is that a connecting member is added between the adjacent slabs, the connecting member can be made of plastic, has low production cost, and is fixed at the extension of the connecting member. Holes, nails can be hit in the fixing holes, the nails and the plates are completely detached, the plate cracking phenomenon is prevented, the professional operation is not required when laying, and the laying process is convenient and quick.
  • FIG. 1 is a schematic cross-sectional structural view of a plate in a first embodiment of a rigid splicing plate spliced by a connecting member of the present invention
  • FIG. 2 is a schematic cross-sectional structural view showing a splicing of a plate and a connecting member of a first embodiment of a rigid splicing plate spliced by a connecting member according to the present invention
  • FIG. 3 is a schematic cross-sectional structural view of a connecting member in a first embodiment of a rigid splicing panel spliced by a connecting member according to the present invention
  • FIG. 4 is a schematic cross-sectional structural view of a second embodiment of a rigid splicing panel spliced by a connecting member according to the present invention
  • Figure 5 is a cross-sectional structural view showing the splicing of the block and the connecting member of the second embodiment of the rigid splicing plate spliced by the connecting member of the present invention
  • FIG. 6 is a schematic cross-sectional structural view of a connecting member in a second embodiment of a rigid splicing panel spliced by a connecting member according to the present invention
  • FIG. 7 is a schematic cross-sectional structural view of a plate in a third embodiment of a rigid splicing plate spliced by a connecting member according to the present invention.
  • Figure 8 is a cross-sectional structural view showing the splicing of the plate and the connecting member of the third embodiment of the rigid splicing plate spliced by the connecting member of the present invention
  • FIG. 9 is a schematic cross-sectional structural view of a connecting member in a third embodiment of a rigid splicing panel spliced by a connecting member according to the present invention.
  • Figure 10 is a schematic cross-sectional structural view of a block in a fourth embodiment of a rigid splice block spliced by a connecting member of the present invention.
  • Figure 11 is a cross-sectional structural view showing the splicing of the plate and the connecting member of the fourth embodiment of the rigid splicing plate spliced by the connecting member of the present invention
  • Figure 12 is a cross-sectional structural view of the connecting member in the fourth embodiment of the rigid splicing plate spliced by the connecting member of the present invention.
  • Figure 13 is a cross-sectional structural view of a plate in a fifth embodiment of a rigid splicing plate spliced by a connecting member of the present invention
  • Figure 14 is a cross-sectional structural view showing the splicing of the plate and the connecting member of the fifth embodiment of the rigid splicing plate spliced by the connecting member of the present invention
  • Figure 15 is a cross-sectional structural view showing the connecting member of the fifth embodiment of the rigid splicing plate spliced by the connecting member of the present invention.
  • Figure 16 is a cross-sectional structural view of a sixth embodiment of a rigid splicing panel spliced by a connecting member of the present invention.
  • Figure 17 is a cross-sectional structural view showing the splicing of the plate and the connecting member of the sixth embodiment of the rigid splicing plate spliced by the connecting member of the present invention
  • Figure 18 is a cross-sectional structural view showing the connecting member of the sixth embodiment of the rigid splicing panel spliced by the connecting member of the present invention.
  • the rigid splicing slabs spliced by the connecting members shown in FIG. 1 , FIG. 2 and FIG. 3 include a slab body 1 , and a connecting member is disposed between the longitudinal side 2 of the slab body 1 and the longitudinal corresponding side 3 of the other slab body 1 4.
  • the upper plane of the connecting member 4 is lower than the upper plane of the panel body 1, the bottom plane of the connecting member 4 is flush with the bottom plane of the panel body 1, and the connecting member 4 is composed of the upper portion 5 of the member and the middle portion of the member 6.
  • the cross-section of the upper portion 5 of the member is larger than the cross-section of the central portion 6 of the member, the lower portion 7 of the member being provided with an outwardly extending body 8 and with an upward projection 9 at the end, said longitudinal
  • the side surface 2 is engaged with the right side portion 10 of the connecting member 4
  • the longitudinal corresponding side surface 3 is engaged with the left side portion 11 of the connecting member 4
  • the lower portion of the panel body 1 is engaged with the extension body 8 and the projection 9.
  • the cross section of the upper portion 5 of the member is rectangular.
  • the protrusion 9 is rectangular.
  • the extension body 8 is provided with a fixing hole 23 .
  • the rigid splicing slabs spliced by the connecting members shown in FIG. 4, FIG. 5 and FIG. 6 include a slab body 1, and a connecting member is disposed between the longitudinal side 2 of the slab body 1 and the longitudinal corresponding side 3 of the other slab body 1. 4.
  • the upper plane of the connecting member 4 is lower than the upper plane of the panel body 1, the bottom plane of the connecting member 4 is flush with the bottom plane of the panel body 1, and the connecting member 4 is composed of the upper portion 5 of the member and the middle portion of the member 6.
  • the cross-section of the upper portion 5 of the member is larger than the cross-section of the central portion 6 of the member, the lower portion 7 of the member being provided with an outwardly extending body 8 and with an upward projection 9 at the end, said longitudinal
  • the side surface 2 is engaged with the right side portion 10 of the connecting member 4
  • the longitudinal corresponding side surface 3 is engaged with the left side portion 11 of the connecting member 4
  • the lower portion of the panel body 1 is engaged with the extension body 8 and the projection 9.
  • the cross section of the upper portion 5 of the member is rectangular.
  • the protrusion 9 is rectangular.
  • the extension body 8 is provided with a fixing hole 23 .
  • FIG. 7 , 8 , and 9 show a rigid splicing panel spliced by a connecting member, including a slab body 1 , and a connecting member is disposed between the longitudinal side 2 of the slab body 1 and the longitudinal corresponding side 3 of the other slab body 1 4.
  • the upper plane of the connecting member 4 is lower than the upper plane of the panel body 1, the bottom plane of the connecting member 4 is flush with the bottom plane of the panel body 1, and the connecting member 4 is composed of the upper portion 5 of the member and the middle portion of the member 6.
  • the cross-section of the upper portion 5 of the member is larger than the cross-section of the central portion 6 of the member, the lower portion 7 of the member being provided with an outwardly extending body 8 and with an upward projection 9 at the end, said longitudinal
  • the side surface 2 is engaged with the right side portion 10 of the connecting member 4
  • the longitudinal corresponding side surface 3 is engaged with the left side portion 11 of the connecting member 4
  • the lower portion of the panel body 1 is engaged with the extension body 8 and the projection 9.
  • the cross section of the upper portion 5 of the member is a triangle.
  • the protrusion 9 is rectangular.
  • the extension body 8 is provided with a fixing hole 23 .
  • a rigid splicing panel spliced by a connecting member, including a slab body 1, a connecting member between the longitudinal side 2 of the slab body 1 and the longitudinal corresponding side 3 of the other slab body 1 4.
  • the upper plane of the connecting member 4 is lower than the upper plane of the panel body 1, the bottom plane of the connecting member 4 is flush with the bottom plane of the panel body 1, and the connecting member 4 is composed of the upper portion 5 of the member and the middle portion of the member 6.
  • the cross-section of the upper portion 5 of the member is larger than the cross-section of the central portion 6 of the member, the lower portion 7 of the member being provided with an outwardly extending body 8 and with an upward projection 9 at the end, said longitudinal
  • the side surface 2 is engaged with the right side portion 10 of the connecting member 4
  • the longitudinal corresponding side surface 3 is engaged with the left side portion 11 of the connecting member 4
  • the lower portion of the panel body 1 is engaged with the extension body 8 and the projection 9.
  • the cross section of the upper portion 5 of the member is rectangular.
  • the protrusion 9 has a dovetail shape to the left and a rectangle to the right.
  • the extension body 8 is provided with a fixing hole 23 .
  • the rigid splicing slabs spliced by the connecting members shown in FIG. 13 , FIG. 14 and FIG. 15 include a slab body 1 , and a connecting member is disposed between the longitudinal side 2 of the slab body 1 and the longitudinal corresponding side 3 of the other slab body 1 4.
  • the upper plane of the connecting member 4 is lower than the upper plane of the panel body 1, the bottom plane of the connecting member 4 is flush with the bottom plane of the panel body 1, and the connecting member 4 is composed of the upper portion 5 of the member and the middle portion of the member 6.
  • the cross-section of the upper portion 5 of the member is larger than the cross-section of the central portion 6 of the member, the lower portion 7 of the member being provided with an outwardly extending body 8 and with an upward projection 9 at the end, said longitudinal
  • the side surface 2 is engaged with the right side portion 10 of the connecting member 4, the longitudinal corresponding side surface 3 is engaged with the left side portion 11 of the connecting member 4, and the lower portion of the panel body 1 is engaged with the extension body 8 and the projection 9.
  • the upper portion 5 of the member has a dovetail shape on the left side and an elastically extending downwardly directed arm at an angle.
  • the protrusion 9 is rectangular.
  • the extension body 8 is provided with a fixing hole 23 .
  • the rigid splicing slabs spliced by the connecting members shown in Figs. 16, 17, and 18 include a slab body 1, and a connecting member is disposed between the longitudinal side 2 of the slab body 1 and the longitudinal corresponding side 3 of the other slab body 1. 4.
  • the upper plane of the connecting member 4 is lower than the upper plane of the panel body 1, the bottom plane of the connecting member 4 is flush with the bottom plane of the panel body 1, and the connecting member 4 is composed of the upper portion 5 of the member and the middle portion of the member 6.
  • the cross-section of the upper portion 5 of the member is larger than the cross-section of the central portion 6 of the member, the lower portion 7 of the member being provided with an outwardly extending body 8 and with an upward projection 9 at the end, said longitudinal
  • the side surface 2 is engaged with the right side portion 10 of the connecting member 4
  • the longitudinal corresponding side surface 3 is engaged with the left side portion 11 of the connecting member 4
  • the lower portion of the panel body 1 is engaged with the extension body 8 and the projection 9.
  • the upper portion 5 of the member has a triangular shape on the left side and a plurality of extended arms at an angle downward on the right side.
  • the left upper end of the protrusion 9 extends inwardly and the right side is rectangular.
  • the extension body 8 is provided with a fixing hole 23 .
  • the longitudinal corresponding side 3 of the panel body 1 is first engaged with the left side portion 11 of the connecting member 4, laid on the floor or wall or frame, the nail is driven into the fixing hole 23, and then the other body is driven. Longitudinal side of 1 2 meshes with the right side portion 10 of the connecting member 4.
  • the purpose of the bottom plane of the connecting member 4 being slightly lower than the bottom plane of the panel body is to facilitate handling if a flexible layer needs to be attached to the bottom plane of the connecting member 4.
  • the shape and structure of the connecting member 4 in the rigid splicing plate spliced by the connecting member of the present invention are various and numerous, and the connecting member 4 used in the rigid splicing plate has a cross section of the upper portion 5 of the member. A cross-section larger than the middle portion 6 of the member is within the scope of protection of the present invention.
  • the material of the connecting member 4 in the rigid splicing panel spliced by the connecting member of the present invention may be metal, plastic, wood plastic synthetic, bamboo plastic synthetic, wood, bamboo, nylon, rubber.

Description

用连接构件拼接的硬质拼接板块
技术领域
本发明涉及一种硬质拼接板块,具体地说,是一种板块与板块的纵向之间具有连接构件的硬质拼接板块。
背景技术
随着经济的发展和人们生活水平的提高,板块(地板、墙面贴板、隔墙板)作为装饰材料,已经越来越多地进入办公室、会议室和寻常百姓家。现有技术拼接板块的拼接固定方法:①是将板块直接拼接打钉或者粘贴在地面或者墙面上;②是先在地面或者墙面或者框架上铺设固定木条,然后将纵向二侧面具有相对应的榫、卯结构的板块铺设在木条之上,铺设的过程中,在卯槽内打入钉子与木条固定。其不足之处在于:将板块直接拼接打钉或者粘贴在地面或者墙面上的铺设工艺比较复杂,需要专业人员完成。铺设在木条之上的方法,在钉子打入卯槽的时,容易发生打钉处崩裂现象,造成资源的浪费;另外,在气候变化的热胀冷缩过程中,受到相临板块的挤压,板块与钉子之间产生间隙,人体踩在板块上会发出响声。
发明内容
本发明的目的在于克服现有技术的不足,提供一种铺设时无需专业人员操作,铺设过程方便快捷;钉子与板块完全脱离,杜绝板块崩裂现象,板块与钉子之间不可能产生间隙,消除板块响声的用连接构件拼接的硬质拼接板块。
本发明用连接构件拼接的硬质拼接板块的技术方案,包括板块本体,所述板块本体纵向侧面与另一块板块本体的纵向对应侧面之间设有连接构件,所述连接构件的上平面低于板块本体的上平面、或者与所述板块本体的上平面平齐,所述连接构件的底平面与板块本体的底平面平齐、或者低于板块本体的底平面,或者高于板块本体的底平面,所述连接构件由构件上部、构件中部和构件下部组成,所述构件上部的横截面大于构件中部的横截面,所述构件下部至少设有一个向外的延伸体、并且在端部设有向上的突起,所述纵向侧面与连接构件的右侧部啮合、所述纵向对应侧面与连接构件的左侧部啮合,所述板块本体的下部与延伸体和突起啮合。
所述构件上部的横截面可以是矩形,也可以是三角形,还可以是燕尾形,还可以是成一定角度向下的延伸臂。所述延伸臂具有弹性。
所述突起可以是矩形,也可以是燕尾形,还可以是上端向内延伸。
所述延伸体设有固定孔。
本发明用连接构件拼接的硬质拼接板块的有益效果在于:在相临的板块之间增设连接构件,所述连接构件可以用塑料制成,生产成本低,在连接构件的延伸体设有固定孔,钉子可以打在固定孔,钉子与板完全脱离,杜绝板块崩裂现象,铺设时无需专业人员操作,铺设过程方便快捷。
附图说明
图1是本发明用连接构件拼接的硬质拼接板块第一实施例中板块的横截面结构示意图;
图2是本发明用连接构件拼接的硬质拼接板块第一实施例板块与连接构件拼接的横截面结构示意图;
图3是本发明用连接构件拼接的硬质拼接板块第一实施例中连接构件的横截面结构示意图;
图4是本发明用连接构件拼接的硬质拼接板块第二实施例中板块的横截面结构示意图;
图5是本发明用连接构件拼接的硬质拼接板块第二实施例板块与连接构件拼接的横截面结构示意图;
图6是本发明用连接构件拼接的硬质拼接板块第二实施例中连接构件的横截面结构示意图;
图7是本发明用连接构件拼接的硬质拼接板块第三实施例中板块的横截面结构示意图;
图8是本发明用连接构件拼接的硬质拼接板块第三实施例板块与连接构件拼接的横截面结构示意图;
图9是本发明用连接构件拼接的硬质拼接板块第三实施例中连接构件的横截面结构示意图;
图10是本发明用连接构件拼接的硬质拼接板块第四实施例中板块的横截面结构示意图;
图11是本发明用连接构件拼接的硬质拼接板块第四实施例板块与连接构件拼接的横截面结构示意图;
图12是本发明用连接构件拼接的硬质拼接板块第四实施例中连接构件的横截面结构示意图;
图13是本发明用连接构件拼接的硬质拼接板块第五实施例中板块的横截面结构示意图;
图14是本发明用连接构件拼接的硬质拼接板块第五实施例板块与连接构件拼接的横截面结构示意图;
图15是本发明用连接构件拼接的硬质拼接板块第五实施例中连接构件的横截面结构示意图;
图16是本发明用连接构件拼接的硬质拼接板块第六实施例中板块的横截面结构示意图;
图17是本发明用连接构件拼接的硬质拼接板块第六实施例板块与连接构件拼接的横截面结构示意图;
图18是本发明用连接构件拼接的硬质拼接板块第六实施例中连接构件的横截面结构示意图;
具体实施方式
第一实施例
图1、图2、图3所示用连接构件拼接的硬质拼接板块,包括板块本体1,所述板块本体1纵向侧面2与另一块板块本体1的纵向对应侧面3之间设有连接构件4,所述连接构件4的上平面低于板块本体1的上平面,所述连接构件4的底平面与板块本体1的底平面平齐,所述连接构件4由构件上部5、构件中部6和构件下部7组成,所述构件上部5的横截面大于构件中部6的横截面,所述构件下部7设有向外的延伸体8、并且在端部设有向上的突起9,所述纵向侧面2与连接构件4的右侧部10啮合、所述纵向对应侧面3与连接构件4的左侧部11啮合,所述板块本体1的下部与延伸体8和突起9啮合。所述构件上部5的横截面是矩形。所述突起9是矩形。所述延伸体8设有固定孔23。
第二实施例
图4、图5、图6所示用连接构件拼接的硬质拼接板块,包括板块本体1,所述板块本体1纵向侧面2与另一块板块本体1的纵向对应侧面3之间设有连接构件4,所述连接构件4的上平面低于板块本体1的上平面,所述连接构件4的底平面与板块本体1的底平面平齐,所述连接构件4由构件上部5、构件中部6和构件下部7组成,所述构件上部5的横截面大于构件中部6的横截面,所述构件下部7设有向外的延伸体8、并且在端部设有向上的突起9,所述纵向侧面2与连接构件4的右侧部10啮合、所述纵向对应侧面3与连接构件4的左侧部11啮合,所述板块本体1的下部与延伸体8和突起9啮合。所述构件上部5的横截面是矩形。所述突起9是矩形。所述延伸体8设有固定孔23。
第三实施例
图7、图8、图9所示用连接构件拼接的硬质拼接板块,包括板块本体1,所述板块本体1纵向侧面2与另一块板块本体1的纵向对应侧面3之间设有连接构件4,所述连接构件4的上平面低于板块本体1的上平面,所述连接构件4的底平面与板块本体1的底平面平齐,所述连接构件4由构件上部5、构件中部6和构件下部7组成,所述构件上部5的横截面大于构件中部6的横截面,所述构件下部7设有向外的延伸体8、并且在端部设有向上的突起9,所述纵向侧面2与连接构件4的右侧部10啮合、所述纵向对应侧面3与连接构件4的左侧部11啮合,所述板块本体1的下部与延伸体8和突起9啮合。所述构件上部5的横截面是三角形。所述突起9是矩形。所述延伸体8设有固定孔23。
第四实施例
图10、图11、图12所示用连接构件拼接的硬质拼接板块,包括板块本体1,所述板块本体1纵向侧面2与另一块板块本体1的纵向对应侧面3之间设有连接构件4,所述连接构件4的上平面低于板块本体1的上平面,所述连接构件4的底平面与板块本体1的底平面平齐,所述连接构件4由构件上部5、构件中部6和构件下部7组成,所述构件上部5的横截面大于构件中部6的横截面,所述构件下部7设有向外的延伸体8、并且在端部设有向上的突起9,所述纵向侧面2与连接构件4的右侧部10啮合、所述纵向对应侧面3与连接构件4的左侧部11啮合,所述板块本体1的下部与延伸体8和突起9啮合。所述构件上部5的横截面是矩形。所述突起9左边是燕尾形,右边是矩形。所述延伸体8设有固定孔23。
第五实施例
图13、图14、图15所示用连接构件拼接的硬质拼接板块,包括板块本体1,所述板块本体1纵向侧面2与另一块板块本体1的纵向对应侧面3之间设有连接构件4,所述连接构件4的上平面低于板块本体1的上平面,所述连接构件4的底平面与板块本体1的底平面平齐,所述连接构件4由构件上部5、构件中部6和构件下部7组成,所述构件上部5的横截面大于构件中部6的横截面,所述构件下部7设有向外的延伸体8、并且在端部设有向上的突起9,所述纵向侧面2与连接构件4的右侧部10啮合、所述纵向对应侧面3与连接构件4的左侧部11啮合,所述板块本体1的下部与延伸体8和突起9啮合。所述构件上部5的横截面左边是燕尾形,右边是具有弹性的成一定角度向下的延伸臂,。所述突起9是矩形。所述延伸体8设有固定孔23。
第六实施例
图16、图17、图18所示用连接构件拼接的硬质拼接板块,包括板块本体1,所述板块本体1纵向侧面2与另一块板块本体1的纵向对应侧面3之间设有连接构件4,所述连接构件4的上平面低于板块本体1的上平面,所述连接构件4的底平面与板块本体1的底平面平齐,所述连接构件4由构件上部5、构件中部6和构件下部7组成,所述构件上部5的横截面大于构件中部6的横截面,所述构件下部7设有向外的延伸体8、并且在端部设有向上的突起9,所述纵向侧面2与连接构件4的右侧部10啮合、所述纵向对应侧面3与连接构件4的左侧部11啮合,所述板块本体1的下部与延伸体8和突起9啮合。所述构件上部5的横截面左边是三角形,右边是多个成一定角度向下的延伸臂,。所述突起9的左边上端向内延伸,右边是矩形。所述延伸体8设有固定孔23。
安装时,先将板块本体1的纵向对应侧面3与连接构件4的左侧部11啮合,铺设于地面或者墙面或者或者框架上,在固定孔23内打入钉子,然后将另一块板块本体1的纵向侧面 2与连接构件4的右侧部10啮合。
所述连接构件4的底平面略低于板块本体的底平面的目的在于:如果需要在连接构件4的底平面粘贴柔性层时方便操。
当然,本发明用连接构件拼接的硬质拼接板块中连接构件4的形状、结构是多种多样、举不胜举的,凡是硬质拼接板块中应用的连接构件4,其构件上部5的横截面大于构件中部6横截面的,均属于本发明保护的范围。
制造本发明用连接构件拼接的硬质拼接板块中连接构件4的材料,可以是金属、塑料、木塑合成、竹塑合成、木材、竹材、尼龙、橡胶。

Claims (10)

  1. 一种用连接构件拼接的硬质拼接板块,包括板块本体(1),其特征在于,所述板块本体(1)纵向侧面(2)与另一块板块本体(1)的纵向对应侧面(3)之间设有连接构件(4),所述连接构件(4)的上平面低于板块本体(1)的上平面、或者与所述板块本体(1)的上平面平齐,所述连接构件(4)的底平面与板块本体(1)的底平面平齐、或者低于板块本体(1)的底平面,或者高于板块本体(1)的底平面,所述连接构件(4)由构件上部(5)、构件中部(6)和构件下部(7)组成,所述构件上部(5)的横截面大于构件中部(6)的横截面,所述构件下部(7)至少设有一个向外的延伸体(8)、并且在端部设有向上的突起(9),所述纵向侧面(2)与连接构件(4)的右侧部(10)啮合、所述纵向对应侧面(3)与连接构件(4)的左侧部(11)啮合,所述板块本体(1)的下部与延伸体(8)和突起(9)啮合。
  2. 根据权利要求1所述的用连接构件拼接的硬质拼接板块,所述构件上部(5)的横截面是矩形。
  3. 根据权利要求1所述的用连接构件拼接的硬质拼接板块,所述构件上部(5)的横截面是三角形。
  4. 根据权利要求1所述的用连接构件拼接的硬质拼接板块,所述构件上部(5)的横截面是燕尾形。
  5. 根据权利要求1所述的用连接构件拼接的硬质拼接板块,所述构件上部(5)的横截面是成一定角度向下的延伸臂。
  6. 根据权利要求5所述的用连接构件拼接的硬质拼接板块,所述延伸臂具有弹性。
  7. 根据权利要求1所述的用连接构件拼接的硬质拼接板块,所述突起(9)是矩形。
  8. 根据权利要求1所述的用连接构件拼接的硬质拼接板块,所述突起(9)是燕尾形。
  9. 根据权利要求1所述的用连接构件拼接的硬质拼接板块,所述突起(9)的上端向内延伸。
  10. 根据权利要求1所述的用连接构件拼接的硬质拼接板块,所述延伸体(8)设有固定孔(23)。
PCT/CN2010/080300 2010-07-17 2010-12-27 用连接构件拼接的硬质拼接板块 WO2012009932A1 (zh)

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