WO2010012140A1 - 一种防脱落的超薄石材复合板 - Google Patents

一种防脱落的超薄石材复合板 Download PDF

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Publication number
WO2010012140A1
WO2010012140A1 PCT/CN2008/072317 CN2008072317W WO2010012140A1 WO 2010012140 A1 WO2010012140 A1 WO 2010012140A1 CN 2008072317 W CN2008072317 W CN 2008072317W WO 2010012140 A1 WO2010012140 A1 WO 2010012140A1
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WIPO (PCT)
Prior art keywords
stone
ultra
facing
thin
composite
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PCT/CN2008/072317
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English (en)
French (fr)
Inventor
郭镇义
Original Assignee
Guo Zhenyi
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Publication date
Application filed by Guo Zhenyi filed Critical Guo Zhenyi
Priority to US13/055,497 priority Critical patent/US20110113716A1/en
Publication of WO2010012140A1 publication Critical patent/WO2010012140A1/zh

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04CSTRUCTURAL ELEMENTS; BUILDING MATERIALS
    • E04C2/00Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels
    • E04C2/02Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials
    • E04C2/26Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials composed of materials covered by two or more of groups E04C2/04, E04C2/08, E04C2/10 or of materials covered by one of these groups with a material not specified in one of the groups
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/07Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor
    • E04F13/08Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of a plurality of similar covering or lining elements
    • E04F13/0885Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of a plurality of similar covering or lining elements specially adapted for being adhesively fixed to the wall; Fastening means therefor; Fixing by means of plastics materials hardening after application
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/07Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor
    • E04F13/08Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of a plurality of similar covering or lining elements
    • E04F13/14Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of a plurality of similar covering or lining elements stone or stone-like materials, e.g. ceramics concrete; of glass or with an outer layer of stone or stone-like materials or glass

Definitions

  • the invention relates to an ultra-thin stone composite board for dry hanging, in particular to an anti-shedding ultra-thin stone composite board, which prevents the degumming and causes the ultra-thin facing stone to separate from the light bottom board and fall off, ensuring ultra-thin stone.
  • the safety of the composite panel dry hanging system is not limited.
  • the installation technology mainly has the following two methods: One is to directly use the structural adhesive (dry hanging) Glue) directly bonding the light-weight base plate to the wall surface to fix the ultra-thin stone composite plate on the wall surface; the other is to fix the light-weight base plate to the wall surface with various dry hanging connectors.
  • the transition piece such as the dragon skeleton is fastened and installed.
  • the main problem with the above-mentioned installation method is that after the ultra-thin stone composite board is dry-mounted, the facing stone and the wall surface are indirectly connected to the wall through the light-weight floor, and the facing stone and the light-weight floor are completely dependent.
  • Adhesive bonding because the service life of the adhesive is affected by many factors such as the expansion (shrinkage) stress caused by the temperature difference of the environment and the positive and negative pressure of the wind, the service life of the adhesive is uncertain, when the adhesive bond is reduced or After the failure, it is easy to cause degumming between the facing stone and the light bottom plate, which causes the facing stone to fall off, and there is a serious safety hazard, which is the bottleneck where the market cannot use the ultra-thin stone composite board for decoration in large quantities.
  • the object of the present invention is to overcome the shortcomings of the existing ultra-thin stone composite board dry hanging technology, and provide an anti-shedding ultra-thin stone composite board to eliminate the safety hazard of the facing stone falling off due to degumming, and to ensure ultra-thin The safety of the stone composite board is dry.
  • the anti-shedding ultra-thin stone composite board comprises a composite board body composed of an ultra-thin facing stone and a lightweight bottom plate glued to the back of the stone, wherein: the composite board body is at least one pair The opposite rear side is respectively fixedly connected with the decorative stone and the light base plate to securely connect the slats; the connecting slats are substantially L-shaped in cross section, and are formed by integrally formed front and rear side plates; The rear side panel is locked in The back side of the lightweight bottom plate is disposed on the side of the composite plate body, and the front portion is superposed on the side surface of the corresponding facing stone, and the front side plate of the connecting slat and the side surface of the facing stone are fastened by a fastening mechanism Connected together
  • a stone hook is protruded from the edge of the front side plate of the connecting strip, and an anchor groove corresponding to the stone hook is opened in the middle of the corresponding side surface of the stone; the stone hook is inserted into the anchoring groove on the side of the facing stone And being adhesively fixed, forming a fastening mechanism between the front side panel of the connecting strip and the side surface of the facing stone.
  • the front side plate of the connecting slat stacked on the side surface of the facing stone is correspondingly provided with a perforation at least in the middle of the two sides thereof, and a connecting blind hole communicating with the perforation is formed on the side surface of the corresponding facing stone, corresponding perforation Connecting nails are respectively inserted into the connecting blind holes; the connecting nails are inserted through the front side plate perforations and inserted into the blind holes of the stone connecting holes, and the screws are fixedly fixed with the inner walls of the connecting blind holes to form the front side plates of the connecting strips and A fastening mechanism between the sides of the facing stone.
  • the composite panel body has a connecting slat only on a pair of opposite rear side edges.
  • the connecting strips are fixed on the four rear side edges of the composite plate body.
  • the invention has the following beneficial effects:
  • the above-mentioned anti-shedding ultra-thin stone composite board reliably anchors the facing stone and the light base plate with the connecting slats on the rear side of the composite board body, and the facing stone It will not separate from the light bottom plate due to degumming, which eliminates the safety hazard of the facing stone falling off due to degumming.
  • the mechanical force applied to the facing stone and the light bottom plate is formed by connecting the slats, and the stone and the light bottom plate are integrally connected and then hung on the wall, thereby solving the change of the temperature difference, the life of the structural adhesive, the shearing force, Gravity and various stresses have an impact on the safety of ultra-thin stone composite panels. Fully protect and save the use of limited stone resources, maximize the safety of dry-laid composite panels, and upgrade the stone products to high-grade and ultra-thin. Decorating modern architecture becomes a reality.
  • FIG. 1 is a perspective view of a first embodiment of the present invention.
  • Fig. 2 is an enlarged cross-sectional view taken along line A-A of Fig. 1.
  • FIG. 3 is a schematic structural view of the stone composite panel body of Fig. 1.
  • Figure 4 is a perspective view of the connecting strip of Figure 1.
  • FIG. 5 is a perspective view of a second embodiment of the present invention.
  • FIG. 6 is a schematic structural view of the stone composite panel body of FIG. 5.
  • Figure 7 is a perspective view of a third embodiment of the present invention.
  • Fig. 8 is an enlarged cross-sectional view taken along line B-B of Fig. 7.
  • Figure 9 is a schematic view showing the structure of the stone composite panel body of Figure 7.
  • Figure 10 is a perspective view of the connecting strip of Figure 7.
  • Figure 11 is a perspective view showing another structural form of a third embodiment of the present invention.
  • Example 1 Refer to Figure 1.
  • An anti-shedding ultra-thin stone composite board comprising a veneer stone 11 and an integral composite board body 1 formed by a lightweight bottom plate 12 glued to the back of the stone, and four clips respectively clamped on the four rear side edges of the composite board body 1 Connection slats 2.
  • the veneer stone 11 of the composite plate body 1 has a thickness of 12 mm to 5 m
  • the lightweight bottom plate 12 is an aluminum honeycomb panel.
  • the lightweight base plate 12 can also be made of other known lightweight hard materials.
  • An anchor groove l la is arranged in the middle of the side surface of the composite plate body facing stone 11 , and the anchor groove 11 a uses a high-speed diamond ultra-thin slice grooving device, thereby solving the collapse of the ultra-thin stone in the slotted raft. Missing corners, different depths and other technical difficulties.
  • the connecting strip 2 is an integrally formed aluminum alloy profile member having a substantially L-shaped cross section, and the clip is clamped on the rear side of the composite panel body 1 between the blind hole and the back surface of the lightweight bottom plate 12.
  • the connecting slat 2 is composed of a front side panel 21 and a rear side panel 22; the front side panel 21 is disposed on the side of the composite panel body 1 between the corresponding anchoring groove 11a and the back surface of the lightweight bottom plate 12, and the edge thereof is provided with the anchoring groove 11a.
  • the stone hooks 21a at the edges of the front side panels 21 are inserted into the corresponding anchoring grooves 1 la and filled with glue; the rear side panels 22 are locked to the lightweight bottom plate by two rivets 3 that are placed in the corresponding rivet joints 121 and rivet holes 221 12;
  • the connecting slats fixedly connect the veneer stone 11 of the composite board body with the lightweight bottom plate 12. In this way, the facing stone 11 and the lightweight bottom plate 12 of the composite plate body are firmly connected by the mechanical force of the connecting slats 2, even if the connecting stone 11 and the connecting surface of the lightweight bottom plate 12 are debonded, the facing stone 11 will never be Separated from the light bottom plate 12, eliminating the safety hazard of the facing stone falling off due to degumming.
  • Embodiment 2 Referring to FIG. 5 and FIG. 6, this embodiment differs from Embodiment 1 in that: [27] The anchoring groove l la is disposed on only one pair of opposite sides of the composite panel body facing stone 11 , and the connecting slats 2 are respectively disposed on the two opposite rear sides of the composite panel body 1 corresponding to the anchoring groove 11 a , The length of the connecting strip 2 is equivalent to the side length of the corresponding side of the composite panel body 1, and the other two opposite rear sides are not provided with connecting strips.
  • the two opposite connecting strips 2 shown in FIG. 5 can also be used to firmly connect the facing stone 11 and the lightweight bottom plate 12 of the composite board body, thereby eliminating the safety hazard of the facing stone falling off due to degumming.
  • the rest of the structure is the same as that of Embodiment 1, and will not be described in detail.
  • Embodiment 3 This embodiment differs from Embodiment 1 in that:
  • the thickness of the facing stone 11 of the composite panel body 1 of the present embodiment is 12 mm to 3 mm, and no anchor groove is provided on the side surface of the facing stone 11 , and the edge of the connecting strip 2 is not provided with a stone hook;
  • the side of the two sides of the front side of the connecting slats of the side of the side wall 11 is correspondingly opened with a through hole 21b, and a connecting blind hole l ib is formed on the side of the facing stone 11 corresponding to the through hole 21b;
  • Each of the front side plate perforations 21b and the facing stone connecting blind holes l ib are respectively inserted with a threaded steel nail 5 having a thread on the circumferential surface of the connecting end, and the threaded end of the steel nail 5 is connected with the blind hole l ib inner wall Adhesively fixed between them to fix the front side panel 21 of each connecting strip 2 and the facing stone 11 together.
  • the perforation 21b is a counterbore to prevent the appearance of the nail head of the stud nail 5 from affecting the appearance.
  • the blind hole l ib on the side of the facing stone 11 is a round hole, and the high-speed 2mm diamond bit drilling equipment is used to solve the cooling and stability of the high-speed rotating equipment; only 3 ⁇ 5mm composite board for the stone facing The body 1, because the edge of the hole connecting the blind hole is an arc shape, the outermost end is only 1 mm away from the edge of the stone without causing chipping and cornering.
  • the number of steel nails 5 required on each connecting strip can be specifically arranged according to the size and weight of the composite panel body 1, and is not limited to the one shown in the drawing. The rest of the structure is the same as that of Embodiment 1, and will not be described here.
  • the anti-shedding ultra-thin stone composite board of the invention reliably anchors the veneer stone of the composite board body and the lightweight bottom board by mechanical force provided by the connecting slats, thereby eliminating the falling off of the facing stone due to degumming. Safety hazards, good use, good industrial applicability.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Ceramic Engineering (AREA)
  • Finishing Walls (AREA)
  • Securing Of Glass Panes Or The Like (AREA)

Description

说明书 一种防脱落的超薄石材复合板
技术领域
[1] 本发明涉及一种干挂用的超薄石材复合板, 特别是一种防脱落的超薄石材复合 板, 防止脱胶导致超薄饰面石材与轻型底板分离而脱落, 确保超薄石材复合板 干挂系统的安全。
背景技术
[2] 目前, 市场上出现了一种轻型底板与石材之间釆用胶粘剂粘接成一个整体的复 合板, 其安装技术主要有以下两种方式: 一种是直接釆用结构胶 (干挂胶)将轻型 底板与墙面直接粘结在一起, 从而将超薄石材复合板固定在墙面上; 另一种是 在釆用各种干挂连接件将轻型底板与预先固定在墙面上的龙骨架等过渡件进行 紧固安装。 上述安装方式在技术上存在的最主要问题是, 超薄石材复合板干挂 安装后, 饰面石材与墙面之间是通过轻型底板与墙面间接连接, 而饰面石材与 轻型底板完全依赖胶粘剂粘接, 由于胶粘剂的使用寿命受使用环境的温差变化 所产生的膨胀 (收缩)应力以及风的正、 负压力等诸多因素影响, 其使用寿命具有 不确定性, 当胶粘剂粘结力降低或失效后, 容易造成饰面石材与轻型底板之间 脱胶而导致饰面石材脱落, 存在严重的安全隐患, 这也就是目前市场不能大批 量使用超薄石材复合板进行装饰的瓶颈所在。
发明内容
[3] 本发明的目的是克服现有超薄石材复合板干挂技术的不足, 提供一种防脱落的 超薄石材复合板, 以消除饰面石材因脱胶而脱落的安全隐患, 确保超薄石材复 合板干挂的安全。
[4] 本发明的目的通过如下技术方案实现:
[5] —种防脱落的超薄石材复合板, 包括由超薄饰面石材以及胶粘固接在石材背面 的轻型底板构成的复合板本体,其特征在于: 所述复合板本体至少一对相对的后 侧边上分别固装有将饰面石材与轻型底板可靠锚固在一起连接板条; 连接板条 横截面大体呈 L形, 其由一体成型的前、 后侧板构成; 连接板条的后侧板锁固在 轻型底板的背面, 其前侧板靠设在复合板本体侧面上、 且前部叠置在对应的饰 面石材侧面上, 连接板条前侧板与饰面石材侧面之间通过紧固机构固接在一起
[6] 进一步, 上述连接板条前侧板边缘凸设有石材挂钩, 对应的饰面石材侧面中部 开设有与石材挂钩相配合的锚固槽; 石材挂钩插扣于饰面石材侧面的锚固槽内 且胶粘固定, 形成所述连接板条前侧板与饰面石材侧面之间的紧固机构。
[7] 上述叠置在饰面石材侧面上的连接板条前侧板上至少其两侧中部对应开设有穿 孔, 对应的饰面石材侧面上开设有与穿孔连通的连接盲孔, 对应的穿孔、 连接 盲孔中分别插设有连接钉; 连接钉穿过前侧板穿孔插设在石材连接盲孔中, 螺 钉与连接盲孔内壁之间胶粘固定形成所述连接板条前侧板与饰面石材侧面之间 的紧固机构。
[8] 进一步, 上述复合板本体仅在一对相对的后侧边上固装有连接板条。
[9] 上述复合板本体的四条后侧边上均固装有连接板条。
[10] 本发明具有以下有益效果: 上述防脱落的超薄石材复合板, 利用扣夹在复合板 本体后侧边上的连接板条将饰面石材与轻型底板可靠锚固在一起, 饰面石材也 不会因脱胶而与轻型底板分离脱落, 消除了饰面石材因脱胶而脱落的安全隐患 。 通过连接板条形成外加于饰面石材与轻型底板的机械力, 将石材及轻型底板 连结成一整体后再干挂在墙体上, 从而解决了因温差的变化、 结构胶的寿命、 剪力、 重力及各种应力对超薄石材复合板使用安全性的影响, 充分保护和节约 利用有限的石材资源, 最大限度地提高复合板干挂的安全性, 为石材产品向高 档化, 超薄化来装饰现代建筑成为现实。
附图说明
[11] 下面结合附图对本发明作进一步详细说明。
[12] 图 1是本发明第一实施例的立体示意图。
[13] 图 2是沿图 1中 A-A方向的放大剖视图。
[14] 图 3是图 1中的石材复合板本体的结构示意图。
[15] 图 4是图 1中的连接板条的立体示意图。
[16] 图 5是本发明第二实施例的立体示意图。 [17] 图 6是图 5中的石材复合板本体的结构示意图。
[18] 图 7是本发明第三实施例的立体示意图。
[19] 图 8是沿图 7中 B-B方向的放大剖视图。
[20] 图 9是图 7中的石材复合板本体的结构示意图。
[21] 图 10是图 7中的连接板条的立体示意图。
[22] 图 11是本发明第三实施例的另一种结构形式的立体示意图。
具体实施方式
[23] 实施例 1 : 参照图 1。 一种防脱落的超薄石材复合板, 包括饰面石材 11和胶粘固 定在石材背面的轻型底板 12构成的整体复合板本体 1以及四个分别扣夹在复合板 本体 1四条后侧边上的连接板条 2。 复合板本体 1的饰面石材 11厚度为 12mm〜5m m, 轻型底板 12为铝蜂窝板。 但局限于此, 轻型底板 12也可釆用其他已知的轻型 硬质材料制成。
[24] 参照图 1至图 3。 在复合板本体饰面石材 11的侧面中部环设有锚固槽 l la, 锚固 槽 11a釆用高转速的金刚石超薄切片开槽设备, 从而解决了超薄石材在开槽吋出 现的崩边, 缺角, 深浅不一等技术难点。
[25] 参照图 1、 图 2、 图 4。 上述连接板条 2为一体成型的铝合金型材件, 其横截面大 体呈 L形, 扣夹在连接盲孔与轻型底板 12背面之间的复合板本体 1后侧边上。 连 接板条 2由前侧板 21、 后侧板 22构成; 前侧板 21靠设在对应锚固槽 11a与轻型底板 12背面之间的复合板本体 1侧面上, 其边缘设有与锚固槽 11a相配合的石材挂钩 21 a; 后侧板 22的两侧部对应设有两个铆钉穿孔 221, 轻型底板 12上对应设有与铆钉 穿孔 221相配合的铆钉接孔 121。 前侧板 21边缘的石材挂钩 21a插入对应的锚固槽 1 la中且灌胶固定; 后侧板 22通过穿置于对应铆钉接孔 121、 铆钉穿孔 221中的两个 铆钉 3锁固在轻型底板 12上; 连接板条将复合板本体的饰面石材 11与轻型底板 12 固定连接在一起。 如此, 通过连接板条 2的机械力将复合板本体的饰面石材 11、 轻型底板 12牢固连接在一起, 即使饰面石材 11与轻型底板 12连接面之间脱胶, 饰面石材 11始终不会与轻型底板 12分离脱落, 消除了饰面石材因脱胶而脱落的 安全隐患。
[26] 实施例 2: 参照图 5、 图 6, 本实施例与实施例 1不同的是: [27] 仅在复合板本体饰面石材 11的一对相对侧面上开设有锚固槽 l la, 锚固槽 11a对 应的复合板本体 1两条相对后侧边上分别装设连接板条 2, 两连接板条 2的长度与 复合板本体 1对应边的边长相当, 另两条相对后侧边没有装设连接板条。 利用图 5中所示的两个相对的连接板条 2同样可实现将复合板本体的饰面石材 11、 轻型 底板 12牢固连接在一起, 消除了饰面石材因脱胶而脱落的安全隐患。 其余结构 与实施例 1相同, 不再作详细描述。
[28] 实施例 3: 本实施例与实施例 1不同的是:
[29] 参照图 7至图 10。 本实施例复合板本体 1的饰面石材 11厚度为 12mm〜3mm, 在 饰面石材 11的侧面上不开设锚固槽, 连接板条 2的边缘也不设置石材挂钩; 而是 在与饰面石材侧面 11叠置部分的连接板条前侧板 21的两侧中部对应开设穿孔 21b , 在该饰面石材 11侧面上对应开设与穿孔 21b—一相连通的连接盲孔 l ib; 并在 对应的每个前侧板穿孔 21b、 饰面石材连接盲孔 l ib中分别插设连接端周面上设 有防脱螺纹的螺纹钢钉 5, 且钢钉 5螺纹连接端与连接盲孔 l ib内壁之间胶粘固定 , 以将每个连接板条 2的前侧板 21与饰面石材 11固定连接在一起。 如此, 通过连 接板条 2的机械力将复合板本体的饰面石材 11、 轻型底板 12牢固连接在一起, 即 使饰面石材 11与轻型底板 12连接面之间脱胶, 饰面石材 11也不会与轻型底板 12 分离脱落, 消除了饰面石材因脱胶而脱落的安全隐患。 穿孔 21b为沉孔, 避免螺 纹钢钉 5的钉头外露影响美观。 饰面石材 11侧面上的连接盲孔 l ib为圆孔, 其釆 用高转速的 2mm刚石钻头钻孔设备, 解决高速旋转设备的冷却和稳定性;对于石 材饰面只有 3〜5mm复合板本体 1, 由于连接盲孔的孔缘是一个圆弧状, 最外端 距石材边缘只有 lmm不会造成崩边, 缺角。 每个连接板条上所需的钢钉 5数量, 可根据复合板本体 1的尺寸、 重量具体布置, 不局限于图中所示。 其余结构与实 施例 1相同, 在此不作赞述。
[30] 从图 11中可见, 作为实施例 3的另一种结构形式: 仅在复合板本体 1的一对相对 的后侧边上固装连接板条 2, 两连接板条 2的长度与复合板本体 1对应边的边长相 当, 另两条相对后侧边不装设连接板条。 利用图 5中所示的两个相对的连接板条 2同样可实现将复合板本体的饰面石材 11、 轻型底板 12牢固连接在一起, 消除了 饰面石材因脱胶而脱落的安全隐患。 [31] 以上所述, 仅为本发明较佳实施例而已, 故不能以此限定本发明实施的范围, 即依本发明申请专利范围及说明书内容所作的等效变化与修饰, 皆应仍属本发 明专利涵盖的范围内。
工业实用性
[32] 本发明一种防脱落的超薄石材复合板, 利用连接板条提供的机械力将复合板本 体的饰面石材与轻型底板可靠锚固成一整体, 消除了饰面石材因脱胶而脱落的 安全隐患, 使用效果好, 具有良好的工业实用性。

Claims

权利要求书
[1] 一种防脱落的超薄石材复合板, 包括由超薄饰面石材以及胶粘固接在石材 背面的轻型底板构成的复合板本体,其特征在于: 所述复合板本体至少一对 相对的后侧边上分别固装有将饰面石材与轻型底板可靠锚固在一起连接板 条; 连接板条横截面大体呈 L形, 其由一体成型的前、 后侧板构成; 连接 板条的后侧板锁固在轻型底板的背面, 其前侧板靠设在复合板本体侧面上 、 且前部叠置在对应的饰面石材侧面上, 连接板条前侧板与饰面石材侧面 之间通过紧固机构固接在一起。
[2] 根据权利要求 1所述的超薄石材复合板, 其特征在于: 所述连接板条前侧板 边缘凸设有石材挂钩, 对应的饰面石材侧面中部开设有与石材挂钩相配合 的锚固槽; 石材挂钩插扣于饰面石材侧面的锚固槽内且胶粘固定, 形成所 述连接板条前侧板与饰面石材侧面之间的紧固机构。
[3] 根据权利要求 2所述的超薄石材复合板, 其特征在于: 所述复合板本体的饰 面石材厚度为 12mm〜5mm°
[4] 根据权利要求 1所述的超薄石材复合板, 其特征在于: 所述叠置在饰面石材 侧面上的连接板条前侧板上至少其两侧中部对应开设有穿孔, 对应的饰面 石材侧面上开设有与穿孔连通的连接盲孔, 对应的穿孔、 连接盲孔中分别 插设有连接钉; 连接钉穿过前侧板穿孔插设在石材连接盲孔中, 螺钉与连 接盲孔内壁之间胶粘固定形成所述连接板条前侧板与饰面石材侧面之间的 紧固机构。
[5] 根据权利要求 4所述的超薄石材复合板, 其特征在于: 所述复合板本体的饰 面石材厚度为 12mm〜3mm。
[6] 根据权利要求 1至 5任一所述的超薄石材复合板, 其特征在于: 所述复合板 本体仅在一对相对的后侧边上固装有连接板条。
[7] 根据权利要求 1至 5任一所述的超薄石材复合板, 其特征在于: 所述复合板 本体的四条后侧边上均固装有连接板条。
[8] 根据权利要求 1至 5任一所述的超薄石材复合板, 其特征在于: 所述连接板 条的后侧板与轻型底板之间通过铆钉紧固连接在一起。 根据权利要求 1至 3任一所述的超薄石材复合板, 其特征在于: 所述轻型底 板为铝蜂窝板。
PCT/CN2008/072317 2008-07-31 2008-09-10 一种防脱落的超薄石材复合板 WO2010012140A1 (zh)

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