WO2020052034A1 - Modular mat tile, floor mat, and joining method - Google Patents
Modular mat tile, floor mat, and joining method Download PDFInfo
- Publication number
- WO2020052034A1 WO2020052034A1 PCT/CN2018/114216 CN2018114216W WO2020052034A1 WO 2020052034 A1 WO2020052034 A1 WO 2020052034A1 CN 2018114216 W CN2018114216 W CN 2018114216W WO 2020052034 A1 WO2020052034 A1 WO 2020052034A1
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- plug
- boss
- building block
- block type
- panel
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47G—HOUSEHOLD OR TABLE EQUIPMENT
- A47G27/00—Floor fabrics; Fastenings therefor
- A47G27/02—Carpets; Stair runners; Bedside rugs; Foot mats
Definitions
- the present application relates to the technical field of floor mats, and in particular, to a building block type splicing mat, a floor mat, and a splicing method.
- the present disclosure provides a building block type splicing mat, a floor mat and a splicing method, which has a building block type stacking and splicing structure, which can be spliced to obtain a required height and meet different usage needs.
- a building block type splicing pad includes a soft panel and a support base plate that are stacked and spliced up and down.
- the top surface of the soft panel forms the exterior surface of the building block type splicing pad, and the bottom surface of the support base plate forms the building block type splicing.
- the mounting surface of the pad is oppositely connected to the ground, and there is a building block type splicing structure between the soft panel and the opposite end of the support floor.
- connection pad is provided between the soft panel and the support base plate, and the soft panel, the connection pad and the support base plate are sequentially stacked and spliced from top to bottom.
- connection pad is provided between the soft panel and the support base plate, and a first plug-in portion is provided at an upper portion of the connection pad and a second plug-in portion is provided at a lower portion.
- the first plug-in portion is mated with the soft panel, and the second plug-in portion is mated with the support base plate.
- connection pads are sequentially stacked from top to bottom between the soft panel and the support base plate.
- the upper portion of the connection pad is provided with a first plug-in portion, and the lower portion is provided with A second plug-in part, the first plug-in part of the connection pad is configured to be plugged with the soft panel, or the second plug-in part of the connection pad adjacent to the soft pad;
- the second plug-in portion of the connection pad is configured to be plugged into the support base plate, or to be connected to the first plug-in portion of a connection pad adjacent to a lower portion thereof.
- a lower plug portion is provided at an upper portion of the support base plate, and a lower end plug portion is provided at a lower portion.
- the lower plug portion has the same structure as the first plug portion of the connection pad, and the lower end plug
- the connection portion has the same structure as the second insertion portion of the connection pad, and the lower insertion portion protrudes from the outside of the support base plate, and the lower end connection portion is recessed inside the support base plate.
- the support base plate includes a frame body and a cylindrical second plug-in boss, the second plug-in boss is fixedly connected to the frame body, and the second plug-in boss and the The axial direction of the frame body is consistent; the second plug-in boss forms the lower plug-in portion and the lower plug-in portion in order from top to bottom, and the hollow inner wall of the lower plug-in portion and the lower plug-in portion The outer walls match.
- a heat conduction flow path is provided in the soft panel, a lower surface of the top plate communicates with the heat conduction flow path, a through flow path is provided inside the connection pad, and a heat conduction is provided inside the support floor.
- the channel, the thermally conductive flow channel, the through flow channel and the thermally conductive channel communicate in sequence.
- the soft panel has an upper plug-in portion located below the top surface thereof
- the support base plate has a lower plug-in portion located above the bottom surface thereof
- the upper plug-in portion cooperates with the lower plug-in portion Docking.
- the soft panel includes a top panel and a side panel surrounding the top panel, an upper surface of the top panel is the top surface, and a lower end surface of the side panel is attached to the support floor.
- the upper plug-in part is formed by the side enclosure board, or the upper plug-in part is disposed in an inner cavity formed by the side enclosure board and the top board together.
- the upper plug portion of the soft panel is formed by the side panel
- the support bottom plate includes a frame body, a lower end surface of the frame body forms the mounting surface, and an upper portion of the frame body is formed
- the lower plug-in portion is mated with the upper plug-in portion of the soft panel, and an outer wall of the side panel is consistent with an outer wall of the frame.
- a thermal conduction channel is provided in the soft panel, a lower surface of the top plate communicates with the thermal conduction channel, and the thermal conduction channel is opened at a position where the soft panel is different from the top surface.
- the upper plug-in portion includes a cylindrical first plug-in boss, and an axial top end of the first plug-in boss is fixed to the bottom surface of the top panel of the soft panel.
- the hollow inner cavity inside the plug-in boss forms the heat conduction flow path; the first plug-in boss and the side enclosure are connected by radial reinforcing ribs.
- the supporting bottom plate includes a frame body, a lower end surface of the frame body forms the mounting surface, the lower plug-in portion includes a cylindrical second plug-in boss, and the second plug-in boss Fixed in the frame body, and the second plug-in boss is aligned with the axial direction of the frame body; the second plug-in boss is mated with the first plug-in boss of the soft panel; Then, the lower end surface of the side enclosure plate is in contact with the upper end surface of the frame body, and the outer side wall of the side enclosure plate is consistent with the outer side wall of the frame body.
- the cross sections of the first plug-in boss and the second plug-in boss are both annular.
- the cross sections of the first plug-in boss and the second plug-in boss are both polygonal.
- a sleeve is sleeved inside the second plug-in boss of the support bottom plate, and the outer wall of the sleeve and the inner wall of the second plug-in boss are fixed to each other through a connecting plate.
- the hollow inner cavity forms a heat conduction hole, the second plug-in boss is inserted into the first plug-in boss, and the heat conduction hole is in communication with the heat conduction flow channel.
- the bottom end of the second plug-in boss and / or the sleeve is located on the same plane as the bottom end of the frame.
- the present disclosure also provides a floor mat including at least two of the aforementioned building block type splicing pads, and adjacent building block type splicing pads are connected and tiled.
- the present disclosure also provides a splicing method configured to splice the aforementioned building block type splicing pad, and the splicing steps are as follows:
- the soft panel and the support floor are stacked up and down to form a building block type splicing structure.
- the soft panel provides a soft and elastic use surface
- the support floor provides reliable structural support.
- the soft panel supports and adjusts the overall splicing pad. Height, users can choose different height support floor to splicing at the bottom of the soft panel according to their actual needs, and together with the soft panel to form the required height of the stitching pad, and multiple splicing pads can be randomly spliced to get the required
- the structure shape can meet the different needs of users, especially the application requirements of children crawling and playing.
- FIG. 1 is a first perspective exploded view of a soft panel and a supporting base plate in a building block type splicing pad according to an embodiment of the present disclosure
- FIG. 2 is a second perspective exploded view of a soft panel and a supporting base plate in a building block type splicing pad according to an embodiment of the present disclosure
- FIG. 3 is a schematic isometric sectional view of a building block type splicing pad according to an embodiment of the present disclosure
- FIG. 4 is an exploded view of a floor mat provided in the embodiment of the present disclosure when two building-block type splicing mats are included;
- FIG. 5 is a schematic structural view of a front view when a connection pad is connected between a soft panel and a support floor in a building block type splicing pad according to an embodiment of the present disclosure
- FIG. 6 is an exploded view of the building block type splicing pad in FIG. 2;
- FIG. 7 is an exploded schematic diagram when two supporting bottom plates are connected to the building block type splicing pad according to the embodiment of the present disclosure.
- 1000-block type splicing pad 0100-soft panel, 0110-top panel, 0111-top surface, 0120-side panel, 0130-upper connector, 0140-heat conducting channel, 0150-radial stiffener on the top, 0200- Support base plate, 0210-frame body, 0211-mounting surface, 0220-lower plug part, 0230-thermal conduction channel, 0240-lower radial reinforcement, 0250-lower end plug, 0300-connecting pad, 0310-first plug Connector, 0320-second connector, 0330-through flow channel.
- FIG. 1 A preferred embodiment of a building block type splicing pad is shown in the drawings.
- the building block type splicing pad can be implemented in many different forms and is not limited to the embodiments described herein. Rather, the purpose of providing these embodiments is to make the disclosure of the building block type splicing pad more thorough and comprehensive.
- this embodiment discloses a building block type splicing pad 1000.
- the building block type splicing pad 1000 includes a soft panel 0100 and a supporting base plate 0200 stacked and spliced up and down, with a building block type splicing structure therebetween.
- the top surface 0111 of the soft panel 0100 forms the appearance surface of the building block type splicing pad 1000
- the bottom surface of the support base plate 0200 forms the installation surface 0211 of the building block type splicing pad 1000.
- This embodiment further provides a floor mat including at least two of the above-mentioned building block type splicing pads 1000, and adjacent building block type splicing pads 1000 are connected in contact and arranged in a tiled manner.
- the user selects the supporting floor 0200 of different heights according to the actual needs and splices at the bottom of the soft panel 0100. Together with the soft panel 0100, it is spliced to the required height. Tiled between 1000, you can splice pedestrian-shaped floor mats. At the same time, the soft panel 0100 has a soft property, is good in touch and suitable for use by users (especially children), and provides a cushioning effect to effectively protect the user from stumbling and collision damage.
- the appearance surface is used to directly contact the user's body, to provide a soft load to the user;
- the installation surface 0211 is relatively closely connected to the ground, and is used to realize the smooth arrangement of the building block type stitching pad 1000 on the ground.
- the soft panel 0100 and the opposite end of the supporting bottom plate 0200 have a plug-in structure, and a quick plug-in connection is achieved by means of a building block connection. It can be understood that the lower end of the soft panel 0100 and the upper end of the support floor 0200 should be well fitted to ensure the reliability of the splicing structure.
- the soft panel 0100 is made of elastic materials, such as soft plastic, silicone, and rubber.
- the soft panel 0100 is made of materials such as TPU (Thermoplastic polyurethanes) and TPE (Thermoplastic Elastomer), and has both an elastic and soft touch and reliable structural toughness.
- the properties of the supporting base plate 0200 are determined according to the actual use environment and may have soft or rigid properties. It can be understood that the hardness of the support base plate 0200 is greater than that of the soft panel 0100 to provide reliable support for the soft panel 0100 and isolate the impact between the soft panel 0100 and the ground.
- the supporting base plate 0200 is made of hard plastic (such as PVC, PC, etc.) to ensure reliable supporting strength.
- the support bottom plate 0200 directly contacts the ground, thereby reducing the wear caused by the direct contact of the soft panel 0100 with the ground during use, and prolonging the service life of the soft panel 0100.
- the soft panel 0100 has an upper plug portion 0130 below its top surface 0111
- the support base plate 0200 has a lower plug portion 0220 above its bottom surface
- the upper plug portion 0130 is mated with the lower plug portion 0220 Connected, so as to achieve the building block type rapid splicing of the soft panel 0100 and the support floor 0200.
- the upper plug-in part 0130 and the lower plug-in part 0220 there are many ways to realize the upper plug-in part 0130 and the lower plug-in part 0220, for example, one of which is a shaft and a hole is a shaft hole fit, a snap-type splicing, and the like.
- one of the upper plug portion 0130 and the lower plug portion 0220 is a plug hole, and the other is a plug connector.
- the plug connector and the plug hole can be mated with a transition fit or an interference fit.
- the plug-in structure has the advantages of simple structure and fast disassembly.
- the soft panel 0100 can adopt various structural forms.
- the soft panel 0100 includes a top plate 0110 and a side wall 0120 surrounding the top plate 0110.
- the upper surface of the top plate 0110 is the top surface 0111, and the side wall 0120
- the lower end surface is connected to the support bottom plate 0200 in a close manner, and the upper plug portion 0130 is formed by the side panel 0120.
- the support bottom plate 0200 includes a frame 0210.
- the lower end surface of the frame 0210 forms a mounting surface 0211.
- the upper portion of the frame 0210 forms a lower plug.
- the part 0220 and the lower plug-in part 0220 are mated with the upper plug-in part of the soft panel 0100, and the outer wall of the side panel 0120 is consistent with the outer wall of the frame 0210.
- the upper surface of the top panel 0110 is the aforementioned top surface 0111 (the appearance surface of the building block type stitching pad 1000); You only need to align and fit the upper end of the supporting baseplate 0200 frame 0210 with the lower end of the soft panel 0100 side enclosure 0120, so that the soft panel 0100 is well supported by the supporting baseboard 0200.
- the outer side wall of the soft panel 0100 is consistent with the outer side wall of the support bottom plate 0200, and the two can form a whole in the shape, thereby reducing the convex edges on the shape of the building block type stitching pad 1000, and enhancing the building block type stitching pad 1000. Smoothness in shape.
- the upper end surface of the supporting bottom plate 0200 frame 0210 and the lower end surface of the soft panel 0100 side enclosure plate 0120 may be provided with a limiting structure capable of cooperating with the limiting position.
- the upper end surface of the frame 0210 is provided with a plug.
- Slot the lower end of the side panel 0100 is provided with a plug connector, which is matched with the plug slot.
- the upper plug-in portion 0130 may be self-acting by the diameter of the upper side panel 0120, or may be an independent structure provided in the inner cavity of the side panel 0120.
- one end of the upper plug portion 0130 may be connected to the lower surface of the top plate 0110 to be fixed, or may be connected with the side panel 0120 through a radial rib. 0150 to achieve the connection, but also a combination of the two.
- the upper radial stiffener 0150 radiates outward from the center, while ensuring the structural strength of the soft panel 0100, it can effectively save manufacturing materials and reduce the weight of the soft panel 0100.
- the soft panel 0100 has a thermal conduction channel 0140, which is configured to realize timely heat dissipation and gas circulation, thereby ensuring the constant temperature and ventilation of the soft panel 0100, so that the user has a good experience.
- the thermally conductive runners 0140 can effectively avoid the occurrence of children's boils due to local heating and dryness.
- the lower surface of the top plate 0110 (that is, the back of the top surface 0111) is in communication with the heat conduction channel 0140.
- the heat conduction channel 0140 is opened at a position where the soft panel 0100 is different from the top surface 0111 (for example, the wall surface of the side panel, Lower surface of panel 0100, etc.), so that the thermal conduction channel 0140 communicates with the outside, which can quickly dissipate heat and ensure temperature balance, and does not damage the top surface 0111 of the soft panel 0100, and does not affect the appearance and appearance of the soft panel 0100. strength.
- the heat conduction channel 0140 can be independently provided in the inner cavity of the upper side panel 0120 to achieve independent heat conduction.
- the upper plug-in portion 0130 includes a cylindrical first plug-in boss, and the axial top end of the first plug-in boss is fixed to the bottom surface of the soft panel 0100 top plate 0110, and the inside of the first plug-in boss.
- the hollow inner cavity forms a thermal conduction channel 0140; the first plug boss and the side enclosure plate 0120 are connected by upper radial ribs 0150; the support base plate 0200 includes a frame 0210, and a lower end surface of the frame 0210 forms a mounting surface 0211,
- the lower plug-in part 0220 includes a cylindrical second plug-in boss, the second plug-in boss is fixed in the frame 0210, and the second plug-in boss is aligned with the axial direction of the frame 0210; the second plug-in The boss is mated with the first plug-in boss of the soft panel 0100.
- the lower end surface of the side panel 0120 is in contact with the upper end surface of the frame 0210, and the outer wall of the side panel 0120 and the outer wall of the frame 0210.
- One of the first plug boss and the second plug boss is provided as a plug connector, and the other is used as a plug connector.
- the plug slot is described below as an example of the second plug boss of the plug portion 0220 protruding from the support base plate 0200.
- the second plug boss of the support base 0200 protruding outward cooperates with the insertion of the soft panel 0100.
- the heat conduction channel 0140 inside the first plug-in boss communicates with the hollow inner cavity inside the second plug-in boss, and communicates with the outside through the inner cavity to connect the soft panel
- the 0100 top plate 0110 conducts heat to the outside and dissipates it.
- the cross sections of the first plug-in boss and the second plug-in boss may be annular.
- the first plug-in boss can be inserted into the second plug-in boss at any angle, and then the soft panel 0100 is rotated.
- the angle between the quality panel 0100 and the support floor 0200 is adjusted to improve the convenience of plugging and connecting between the two.
- the cross sections of the first plug-in boss and the second plug-in boss may be polygonal.
- the sides on both sides need to be aligned.
- the two are restricted by the multilateral sidewall, and the relative rotation between the two cannot occur. Therefore, the stability after splicing between the soft panel 0100 and the supporting base plate 0200 is improved, and the deformation caused by the relative rotation between the two is reduced.
- the number of the upper plug-in portion 0130, the heat conduction channel 0140, and the upper radial stiffener 0150 may be one to a plurality, depending on actual needs.
- a sleeve is sleeved inside the second plug boss of the supporting bottom plate 0200.
- the outer wall of the sleeve and the inner wall of the second plug boss are fixedly connected by a connecting plate.
- the hollow inner cavity forms a heat conduction hole
- the second plug-in boss is inserted inside the first plug-in boss
- the heat conduction hole is in communication with the heat conduction flow channel.
- the support bottom plate 0200 is provided with a heat conduction hole 0230, and the heat conduction hole 0230 penetrates the support bottom plate 0200 to realize gas flow and heat dissipation.
- the thermal conduction channel 0230 and the thermal conduction channel 0140 are kept in communication, so that the soft panel 0100 and the supporting bottom plate 0200 form an integrated breathable constant temperature system.
- the heat conduction hole 0230 penetrates the support floor 0200 in the vertical direction.
- the sleeve is disposed inside the second plug-in boss, and the lower end face of the sleeve and the second plug-in boss is on the same plane as the lower end face of the frame 0210, and the support bottom plate 0200 is placed on the ground to face the soft panel
- the lower end surface of the frame body, the second plug boss and the sleeve abuts against the ground, and together supports the soft panel 0100, thereby improving the support strength and support stability of the support floor 0200.
- the lower plug-in part 0220 and the lower side board 0210 can be connected by a lower radial reinforcing rib 0240.
- the lower radial stiffener 0240 radiates outward from the center, while ensuring the structural strength of the supporting baseplate 0200, it can effectively save materials and reduce the weight of the soft panel 0100.
- the number of the lower insertion part 0220, the heat conducting hole 0230, and the lower radial stiffener 0240 on the same supporting base plate 0200 may be one to a plurality, depending on actual needs.
- FIGS. 1-5 in combination.
- at least one connection pad 0300 may be provided between the soft panel 0100 and the support bottom plate 0200.
- connection pad 0300 The soft panel 0100, the connection pad 0300, and the support bottom plate 0200 are sequentially stacked and spliced. Actually, it is necessary to increase or decrease the number of connection pads 0300 to realize the rapid change of the height and load-bearing capacity of the building block type stitching pad 1000.
- the building block type splicing pad 1000 has different heights and different bearing capacities, so as to meet different use needs (such as different ground environments, different user ages, etc.).
- connection pad 0300 may be provided between the soft panel 0100 and the support base plate 0200.
- the upper portion of the connection pad 0300 is provided with a first plug portion 0310, and the lower portion is provided with a second plug portion 0320.
- the plug-in portion 0310 is mated with the upper plug-in portion 0130 of the flexible panel, and the second plug-in portion 0320 is mated with the lower plug-in portion 0220 of the support base plate.
- connection pads 0300 can be sequentially stacked from top to bottom between the soft panel 0100 and the support bottom plate 0200.
- the upper portion of the connection pad 0300 is provided with a first plug-in portion 0310 and the lower portion is provided.
- the connection part 0320 is connected; the second connection part 0320 of the connection pad 0300 is configured to be inserted into the lower connection part 0220 of the support base plate 0200, or the first connection part 0310 of the connection pad 0300 adjacent thereto. Pick up.
- connection pad 0300 when the connection pad 0300 is directly spliced with the soft panel 0100, the first plug portion 0310 of the connection pad 0300 is plugged with the upper plug portion 0130 of the soft panel 0100; when the two connection pads 0300 are spliced up and down At this time, the second plug portion 0320 of the connection pad 0300 located above is connected to the first plug portion 0310 of the connection pad 0300 located below; when the connection pad 0300 is directly spliced with the support base plate 0200, the connection pad is connected The second plugging portion 0320 of 0300 is plugged into the lower plugging portion 0220 of the support base plate 0200.
- the user can select an appropriate number of connection pads 0300 to connect between the soft panel 0100 and the support floor 0200 according to the actual needs, so as to adjust the height and support strength of the building block type stitching pad 1000.
- the connection pad 0300 has a through flow channel 0330.
- the through flow channel 0330 penetrates the upper and lower ends of the connection pad 0300.
- the thermal conduction channel 0140 and the connection pad 0300 in the soft panel 0100 are sequentially spliced.
- the internal through-flow channel 0330 and the heat conduction hole 0230 inside the support bottom plate 0200 communicate in sequence, thereby achieving fluid circulation and heat dissipation, and completing the heat dissipation of the soft panel 0100 top plate 0110.
- a lower mating portion 0220 is provided at an upper portion of the support base plate 0200, a lower mating portion 0250 is provided at a lower portion, and the lower mating portion 0220 and the first mating portion of the connection pad 0300 are provided.
- 0310 has the same structure, and the lower plug portion 0250 has the same structure as the second plug portion 0320 of the connection pad 0300.
- the lower plug portion 0220 protrudes from the outside of the support base plate 0200, and the lower plug portion 0250 is recessed into the support base plate 0200. internal.
- the support bottom plate 0200 includes a frame body 0210 and a cylindrical second plug-in boss, the second plug-in boss is fixed in the frame 0210, and the second plug-in boss is aligned with the axial direction of the frame 0210. ;
- the second plug-in boss forms a lower plug-in part 0220 and a lower plug-in part 0250 in order from top to bottom, and the hollow inner wall of the lower plug-in part 0250 matches the outer wall of the lower plug-in part 0220.
- the supporting base plate 0200 and the connecting pad plate 0300 have the same structure, simplifying the components of the building block type splicing pad 1000 into two component structures (that is, the soft panel 0100 and the supporting base plate 0200), thereby reducing the number of required molds and manufacturing costs. , While increasing the convenience of splicing and storage.
- the building block type stitching pad 1000 includes a soft panel 0100 and a plurality of supporting base plates 0200.
- the supporting base plate 0200 lower plug portion 0220 protrudes from the outside of the supporting base plate 0200 to achieve continuous fast plugging;
- the supporting base plate 0200 lower end plug portion 0250 is recessed inside the supporting base plate 0200 to ensure that the supporting base plate 0200
- the bottom surface is flat, thereby ensuring that the plug-in function is synchronized with the floor-mounting function of the support base plate 0200 at the bottom.
- any specific value should be construed as exemplary only, and not as a limitation, so other examples of the exemplary embodiments may have different values.
- the building block type splicing mat, floor mat and splicing method provided in this embodiment can obtain splicing mats of different heights by selecting support floors of different heights to be spliced under the soft panel, and meet different needs of users.
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Abstract
Description
Claims (19)
- 一种积木式拼接垫,其特征在于,包括上下堆叠拼接的软质面板与支撑底板,所述软质面板的顶面形成所述积木式拼接垫的外观面,所述支撑底板的底面形成所述积木式拼接垫的安装面,所述安装面与地面相对连接,所述软质面板与所述支撑底板的相对端之间具有积木式拼接结构。A building block type splicing pad, characterized in that it comprises a soft panel and a support base plate which are stacked and spliced up and down. The top surface of the soft panel forms the appearance surface of the building block type splicing pad. The installation surface of the building block type splicing pad is connected opposite to the ground, and a building block type splicing structure is provided between the soft panel and the opposite end of the supporting base plate.
- 根据权利要求1所述的积木式拼接垫,其特征在于,所述软质面板与所述支撑底板之间设有至少一个连接垫板,所述软质面板、所述连接垫板与所述支撑底板自上向下依次堆叠拼接。The building block type splicing pad according to claim 1, wherein at least one connection pad is provided between the soft panel and the support floor, and the soft panel, the connection pad and the The support floor is stacked and spliced in order from top to bottom.
- 根据权利要求2所述的积木式拼接垫,其特征在于,所述软质面板与所述支撑底板之间设有一个所述连接垫板,所述连接垫板的上部设有第一插接部、下部设有第二插接部,所述第一插接部与所述软质面板配合插接,所述第二插接部与所述支撑底板配合插接。The building block type splicing pad according to claim 2, wherein the connection pad is provided between the soft panel and the support base plate, and a first plug is provided on an upper portion of the connection pad. A second plug-in part is provided at the lower part and the lower part. The first plug-in part is mated with the soft panel, and the second plug-in part is mated with the support base plate.
- 根据权利要求2所述的积木式拼接垫,其特征在于,所述软质面板与所述支撑底板之间自上向下依次堆叠有至少两个所述连接垫板,所述连接垫板的上部设有第一插接部、下部设有第二插接部,所述连接垫板的第一插接部配置成与所述软质面板插接,或与其上方相邻的连接垫板的第二插接部插接;The building block type splicing pad according to claim 2, wherein at least two of the connection pads are sequentially stacked from the top to the bottom between the soft panel and the support base plate, The upper part is provided with a first plug-in part and the lower part is provided with a second plug-in part. The first plug-in part of the connection pad is configured to be inserted into the soft panel or a connection pad adjacent to the soft pad. The second plug-in part is plugged;所述连接垫板的第二插接部配置成与所述支撑底板插接,或与其下方相邻的连接垫板的第一插接部插接。The second plug-in portion of the connection pad is configured to be plugged into the support base plate, or to be connected to the first plug-in portion of a connection pad adjacent to a lower portion thereof.
- 根据权利要求3或4所述的积木式拼接垫,其特征在于,所述支撑底板的上部设有下插接部、下部设有下端插接部,所述下插接部与所述连接垫板的第一插接部结构相同,所述下端插接部与所述连接垫板的第二插接部结构相同,且所述下插接部凸出于所述支撑底板的外部,所述下端插接部凹入于所述支撑底板的内部。The building block type splicing pad according to claim 3 or 4, characterized in that the upper part of the support bottom plate is provided with a lower plug-in part, and the lower part is provided with a lower end plug-in part, and the lower plug-in part and the connection pad The structure of the first plug-in portion of the board is the same, the structure of the lower plug-in portion is the same as that of the second plug-in portion of the connection pad, and the lower plug-in portion protrudes from the outside of the support base plate, the The lower end plug-in portion is recessed inside the support base plate.
- 根据权利要求5所述的积木式拼接垫,其特征在于,所述支撑底板包括框体和筒状的第二插接凸台,所述第二插接凸台固接于所述框体内,且所述第二插接凸台与所述框体的轴向一致;所述第二插接凸台自上向下依次形成所述下插接部和下端插接部,所述下端插接部的中空内壁与所述下插接部的外壁相匹配。The building block type splicing pad according to claim 5, wherein the supporting bottom plate comprises a frame body and a cylindrical second plug-in boss, and the second plug-in boss is fixed in the frame body, In addition, the second plug-in boss is consistent with the axial direction of the frame body; the second plug-in boss forms the lower plug-in portion and the lower plug-in portion in order from top to bottom, and the lower plug-in portion The hollow inner wall of the part matches the outer wall of the lower plug-in part.
- 根据权利要求2-6中任一项所述的积木式拼接垫,其特征在于,所述软质面板内设有导热流道,所述顶板的下表面与所述导热流道连通,所述连接垫板内部设有贯通流道,所述支撑底板内部设有导热孔道,所述导热流道、所述贯通流道和所述导热通道依次连通。The building block type splicing pad according to any one of claims 2 to 6, wherein a heat conducting flow path is provided in the soft panel, and a lower surface of the top plate communicates with the heat conducting flow path, and A through-flow channel is provided inside the connection pad, and a heat-conducting hole is provided inside the support base plate, and the heat-conducting flow channel, the through-flow channel and the heat-conducting channel are communicated in sequence.
- 根据权利要求1所述的积木式拼接垫,其特征在于,所述软质面板具有位于其顶面下方的上插接部,所述支撑底板具有位于其底面上方的下插接部,所述上插接部与所述下插接部配合插接。The building block type splicing pad according to claim 1, wherein the soft panel has an upper plug-in portion located below a top surface thereof, the support base plate has a lower plug-in portion located above a bottom surface thereof, and The upper plug-in portion is mated with the lower plug-in portion.
- 根据权利要求8所述的积木式拼接垫,其特征在于,所述软质面板包括顶板和围设于所述顶板周围的侧围板,所述顶板的上表面为所述顶面,所述侧围板的下端面与所述支撑底板贴合连接,所述上插接部由所述侧围板形成,或所述上插接部设于所述侧围板与所述顶板共同形成的内腔内部。The building block type splicing pad according to claim 8, wherein the soft panel comprises a top panel and a side panel surrounding the top panel, and an upper surface of the top panel is the top surface, and The lower end surface of the side enclosure board is closely connected with the support floor, and the upper plug-in part is formed by the side enclosure board, or the upper plug-in part is provided in a joint formation of the side enclosure board and the top board. Inside the lumen.
- 根据权利要求9所述的积木式拼接垫,其特征在于,所述软质面板的上插接部由所述侧围板形成,所述支撑底板包括框体,所述框体的下端面形成所述安装面,所述框体的上部形成所述下插接部,所述下插接部与所述软质面板的上插接部配合插接,且所述侧围板的外侧壁与所述框体的外侧壁一致。The building block type splicing pad according to claim 9, wherein the upper plug portion of the soft panel is formed by the side panel, the support bottom plate includes a frame body, and a lower end surface of the frame body is formed On the mounting surface, the lower plug portion is formed on the upper portion of the frame body, the lower plug portion is mated with the upper plug portion of the flexible panel, and the outer side wall of the side panel is The outer walls of the frame are consistent.
- 根据权利要求9所述的积木式拼接垫,其特征在于,所述软质面板内设有导热流道,所述顶板的下表面与所述导热流道连通,所述导热流道开口于所述软质面板异于所述顶面的位置。The building block type splicing pad according to claim 9, wherein a heat conduction flow path is provided in the soft panel, a lower surface of the top plate communicates with the heat conduction flow path, and the heat conduction flow path is opened at the place The soft panel is different from the position of the top surface.
- 根据权利要求11所述的积木式拼接垫,其特征在于,所述上插接部包括筒状的第一插接凸台,所述第一插接凸台轴向的顶端固接于所述软质面板顶板的底面上,所述第一插接凸台内部的中空内腔形成所述导热流道;所述第一插接凸台与所述侧围板之间通过上放射状加强筋连接。The building block type splicing pad according to claim 11, wherein the upper plug-in portion comprises a cylindrical first plug-in boss, and an axial top end of the first plug-in boss is fixed to the axial direction. The hollow inner cavity inside the first plug-in boss forms the heat-conducting flow channel on the bottom surface of the top panel of the soft panel; the first plug-in boss and the side enclosure are connected by upper radial ribs. .
- 根据权利要求12所述的积木式拼接垫,其特征在于,所述支撑底板包括框体,所述框体的下端面形成所述安装面,所述下插接部包括筒状的第二插接凸台,所述第二插接凸台固接于所述框体内,且所述第二插接凸台与所述框体的轴向一致;所述第二插接凸台与所述软质面板的第一插接凸台配合插接,所述侧围板的下端面与所述框体的上端面抵接,且所述侧围板的外侧壁与所述框体的外侧壁一致。The building block type splicing pad according to claim 12, wherein the support base plate includes a frame body, a lower end surface of the frame body forms the mounting surface, and the lower insertion portion includes a cylindrical second insertion hole The second plug-in boss is fixed to the frame body, and the second plug-in boss is aligned with the axial direction of the frame body; the second plug-in boss is in contact with the frame body; The first plug-in boss of the soft panel is mated, and the lower end surface of the side enclosure plate is in contact with the upper end surface of the frame, and the outer side wall of the side enclosure plate and the outer side wall of the frame Consistent.
- 根据权利要求13所述的积木式拼接垫,其特征在于,所述第一插接凸台、所述第二插接凸台的横截面均为环形。The building block type splicing pad according to claim 13, wherein the cross sections of the first plug-in boss and the second plug-in boss are both annular.
- 根据权利要求13所述的积木式拼接垫,其特征在于,所述第一插接凸台、所述第二插接凸台的横截面均为多边形。The building block type splicing pad according to claim 13, wherein the cross sections of the first plug-in boss and the second plug-in boss are both polygonal.
- 根据权利要求8所述的积木式拼接垫,其特征在于,所述支撑底板的第二插接凸台内部套设有套管,所述套管的外壁与所述第二插接凸台的内壁通过连接板固接,所述套管的中空内腔形成导热孔道,所述第二插接凸台插接于所述第一插接凸台内部,所述导热孔道与所述导热流道连通。The building block type splicing pad according to claim 8, wherein a sleeve is sleeved inside the second plug-in boss of the support base plate, and an outer wall of the sleeve and the second plug-in boss are The inner wall is fixedly connected by a connecting plate, the hollow inner cavity of the sleeve forms a heat conduction hole, the second plug boss is inserted inside the first plug boss, and the heat conduction hole and the heat conduction flow path Connected.
- 根据权利要求16所述的积木式拼接垫,其特征在于,所述第二插接凸台和/或所述套管的底端与所述框体的底端位于同一平面。The building block type splicing pad according to claim 16, wherein the bottom end of the second plug-in boss and / or the sleeve is located on the same plane as the bottom end of the frame.
- 一种地垫,其特征在于,包括至少两块权利要求1-17中任一项所述的积木式拼接垫,相邻所述积木式拼接垫之间连接,平铺设置。A floor mat, comprising at least two building block type splicing pads according to any one of claims 1-17, and adjacent building block type splicing pads are connected and tiled.
- 一种拼接方法,其特征在于,配置成拼接权利要求8-17中任一项所述的积木式拼接垫,拼接步骤如下:A splicing method, characterized in that it is configured to splice the building block type splicing pad according to any one of claims 8-17, and the splicing steps are as follows:将所述支撑底板的下插接部与所述软质面板的上插接部对准,并插入所述上插接部内。Align the lower plug-in portion of the support bottom plate with the upper plug-in portion of the soft panel, and insert it into the upper plug-in portion.
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CN201821510859.7 | 2018-09-14 | ||
CN201821510859.7U CN209031797U (en) | 2018-09-14 | 2018-09-14 | Building block system Split mattress |
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WO2020052034A1 true WO2020052034A1 (en) | 2020-03-19 |
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PCT/CN2018/114216 WO2020052034A1 (en) | 2018-09-14 | 2018-11-06 | Modular mat tile, floor mat, and joining method |
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US20030091782A1 (en) * | 2001-11-15 | 2003-05-15 | Burke William O. | Cushioned rubber floor article for use in hair styling salons and other service environments |
CN201157229Y (en) * | 2008-02-05 | 2008-12-03 | 林玲珍 | Combined carpet structure |
CN203154696U (en) * | 2013-03-22 | 2013-08-28 | 邸枫 | Multifunctional sponge protection cushion |
CN203897856U (en) * | 2014-04-18 | 2014-10-29 | 昆山市铁鹰橡胶制品有限公司 | Baby sleeping mat |
CN204743628U (en) * | 2015-05-18 | 2015-11-11 | 三斯达(福建)塑胶有限公司 | Novel foaming ground mat |
CN105266541A (en) * | 2015-11-18 | 2016-01-27 | 浙江润阳新材料科技股份有限公司 | Game floor mat |
CN207359749U (en) * | 2017-08-29 | 2018-05-15 | 美地实业有限公司 | Ground cushion structure-improved |
CN207745456U (en) * | 2018-01-11 | 2018-08-21 | 李长艳 | A kind of outdoor activity ground pad structure of preschool education |
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2018
- 2018-09-14 CN CN201821510859.7U patent/CN209031797U/en active Active
- 2018-11-06 WO PCT/CN2018/114216 patent/WO2020052034A1/en active Application Filing
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US20030091782A1 (en) * | 2001-11-15 | 2003-05-15 | Burke William O. | Cushioned rubber floor article for use in hair styling salons and other service environments |
CN201157229Y (en) * | 2008-02-05 | 2008-12-03 | 林玲珍 | Combined carpet structure |
CN203154696U (en) * | 2013-03-22 | 2013-08-28 | 邸枫 | Multifunctional sponge protection cushion |
CN203897856U (en) * | 2014-04-18 | 2014-10-29 | 昆山市铁鹰橡胶制品有限公司 | Baby sleeping mat |
CN204743628U (en) * | 2015-05-18 | 2015-11-11 | 三斯达(福建)塑胶有限公司 | Novel foaming ground mat |
CN105266541A (en) * | 2015-11-18 | 2016-01-27 | 浙江润阳新材料科技股份有限公司 | Game floor mat |
CN207359749U (en) * | 2017-08-29 | 2018-05-15 | 美地实业有限公司 | Ground cushion structure-improved |
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