CN210622176U - Seamless splice plate of two muscle hasps - Google Patents

Seamless splice plate of two muscle hasps Download PDF

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Publication number
CN210622176U
CN210622176U CN201920982825.6U CN201920982825U CN210622176U CN 210622176 U CN210622176 U CN 210622176U CN 201920982825 U CN201920982825 U CN 201920982825U CN 210622176 U CN210622176 U CN 210622176U
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plate body
seamless
plate
tenon
panel
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CN201920982825.6U
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Chinese (zh)
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冷子涵
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Hubei Ouzhai New Material Technology Co ltd
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Hubei Ouzhai New Material Technology Co ltd
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Abstract

The utility model belongs to the technical field of panel concatenation, a seamless splice plate of two muscle hasp is disclosed, including the panel body, panel body one end is equipped with the tenon, and the other end is equipped with fourth of twelve earthly branches portion; the surface of the tenon sequentially comprises a first upper side surface, a first upper surface, a first middle side surface, a first lower surface and a first lower side surface from the top surface of the board body to the bottom surface of the board body; the surface of the mortise part sequentially comprises a second upper side surface, a second lower surface, a second middle side surface, a second upper surface and a second lower side surface from the top surface of the plate body to the bottom surface of the plate body; when the tenon of one plate body is obliquely inserted into the mortise part of the other plate body to be spliced into the front seamless panel, the first upper side surface and the second upper side surface form an inverted V-shaped groove, and the right side surface of the concave surface of the second upper surface is in contact connection with the right side surface of the convex surface of the first lower surface. The double-rib lock catch seamless splicing plate adopts a lock catch structural design, and has the advantages of quick splicing, perfect clamping, almost seamless splicing and firm installation.

Description

Seamless splice plate of two muscle hasps
Technical Field
The utility model belongs to the technical field of the panel concatenation, concretely relates to seamless splice plate of two muscle hasps.
Background
Due to the convenient installation, the spliced wallboard is often used in the projects of banks, office buildings, hospitals, schools, hotels, markets, portable board houses, old house reconstruction, family houses, factory buildings and the like.
However, the boards are spliced in a full-face contact manner, and have gaps, such as a V-joint wallboard (as shown in fig. 8, when the boards are spliced and installed, the two boards are installed in a V-shaped groove and are not flat), a flat-joint wallboard (as shown in fig. 9, when the boards are spliced and installed, glue needs to be coated between the two boards to fill the gap so that the two boards are stably connected), an existing seamless wallboard (in the splicing and installation process, after the two existing seamless wallboards are spliced, the two existing seamless wallboards need to be installed in a gluing manner or by using wood nails, the gluing is not environment-friendly, the two installation manners are not firm in fixation, the two existing seamless wallboards are easy to fall off after long-term gluing, the stressed surface of nailing is too small, and the biggest defect is that, as shown in fig. 10, the contact surface of the two existing seamless wallboards is a step, the stress is not uniform on the premise that the precision cannot meet the requirement, and the deformation is caused, because of there being the defect problems such as the gap appearance is unbalanced, it is pleasing to the eye, irregular and unevenness, to above defect, the general way is to coat glue or fill the gap filler after panel concatenation installation in the market, this kind of way is wasted time and energy, and pleasing to the eye effect is very little, cause glue or the gap filler that contains formaldehyde to influence the environmental protection effect of panel itself even to and after filling the gap, panel in case appear expend with heat and contract with cold then cause whole panel perk deformation outward, therefore this problem needs to be solved urgently.
SUMMERY OF THE UTILITY MODEL
In order to solve the problems existing in the prior art, the utility model aims to provide a seamless splice plate of two muscle hasps.
The utility model discloses the technical scheme who adopts does:
a double-rib lock catch seamless splice plate comprises a plate body, wherein one end of the plate body is provided with a tenon, and the other end of the plate body is provided with a mortise;
between the top surface of the plate body and the bottom surface of the plate body, the surface of the tenon sequentially comprises a first upper side surface, a first upper surface, a first middle side surface, a first lower surface and a first lower side surface;
the surface of the mortise part sequentially comprises a second upper side surface, a second lower surface, a second middle side surface, a second upper surface and a second lower side surface between the top surface of the plate body and the bottom surface of the plate body;
the first lower surface is of a convex structure, and the second upper surface is of a concave structure;
when the tenon of one plate body is obliquely inserted into the mortise part of the other plate body to be spliced into the front seamless panel, the first upper side surface and the second upper side surface form an inverted V-shaped groove, the right side surface of the concave surface of the second upper surface is in contact connection with the right side surface of the convex surface of the first lower surface, and the first lower side surface and the second lower side surface form the inverted V-shaped groove.
Further, the first lower side face and the first lower surface are connected to form an obtuse angle structure.
Further, the plate body is of a hollow structure, and a plurality of groups of double ribs are arranged at equal intervals along the cavity of the plate body.
Furthermore, the convex surface of the first lower surface is trapezoidal, and the right side surface of the convex surface of the first lower surface is connected with the bottom surface of the convex surface of the first lower surface to form an arc.
Further, when the tenon of one plate body is obliquely inserted into the mortise part of the other plate body to be spliced into the front seamless panel, the maximum distance between the first middle side face and the second middle side face is 0.5 mm.
The utility model has the advantages that:
(1) the utility model discloses a seamless splice plate of two muscle hasps adopts hasp structural design, insert the tenon of a panel body to one side the fourth of the twelve earthly branches portion of another panel body and splice into positive seamless panel, the concatenation is quick, the installation is firm, adopt the mode of assembling completely new, the light perfect block of two panel bodies, it is nearly seamless, and the seamless splice plate of two muscle hasps of this kind of quick concatenation makes the construction operation quick, glue and bottom plate need not be used in the construction, compare in the past the partition wall construction can save five times man-hour.
(2) Two panel bodies perfect block, the screw thread is gone into to detain, and is nearly seamless, pins the gap between the panel and no longer changes, and the tenon of a panel body is unsmooth interlock state with the fourth of the twelve earthly branches portion of another panel body, and the atress is more even, can not lead to the condition that the kneck appears warping.
(3) The utility model discloses a seamless splice plate of two muscle hasps must the secondary fluting processing, otherwise can not reach the structure of the seamless concatenation of hasp.
(4) Super toughness: through scientific formula production, the double-rib structural design is adopted, so that the hardness and strength of the product are far higher than those of other similar decorative materials, and the product has super-strong sound insulation and heat preservation effects, so that the life of people is far away from noise trouble.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is an enlarged view of the rabbet of fig. 1.
Fig. 3 is an enlarged view of the fourth of twelve earthly branches of the present invention.
Fig. 4 is a schematic structural view of the front seamless panel formed by splicing two panel bodies according to the present invention.
Fig. 5 is an enlarged schematic view at a of fig. 4.
Fig. 6 is a schematic view of the splicing process of the two plate bodies of the present invention.
Fig. 7 is an enlarged view of the double rib of the present invention.
FIG. 8 is a schematic illustration of the splicing of V-seam wall panels.
Figure 9 is a schematic illustration of the splicing of flat-seam wall panels.
Figure 10 is a schematic illustration of the splicing of existing seamless wall panels.
In the figure: 10-a sheet body; 11-a tenon; 111-a first upper side; 114 — a first lower surface; 1141-convex surface; 115-a first lower side; 12-a mortise part; 121-a second upper side; 124-a second upper surface; 1241-concave setting surface; 125-a second lower side; 13-double ribs.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1-3, the seamless splice plate for the double-rib lock catch of the present embodiment includes a plate body 10, wherein one end of the plate body 10 is provided with a tenon 11, and the other end is provided with a mortise 12.
Between the top surface of the board body and the bottom surface of the board body, the surface of the tenon sequentially includes a first upper side 111, a first upper surface, a first middle side, a first lower surface 114, and a first lower side 115.
Between the top surface of the plate body and the bottom surface of the plate body, the surface of the mortise part sequentially includes a second upper side 121, a second lower side, a second middle side, a second upper surface 124 and a second lower side 125.
During operation, one of the plate bodies is inclined upwards, the tenon 11 of the plate body is obliquely inserted into the mortise part 12 of the other plate body, then the other plate body is parallel by rotating the one of the plate bodies downwards, and thus the two plate bodies are spliced into a front seamless panel. When the tenon of one plate body is obliquely inserted into the mortise part of the other plate body to be spliced into the front seamless panel, the first upper side surface and the second upper side surface form an inverted V-shaped groove (as shown in figure 4), so that the tenon of one plate body is conveniently and obliquely inserted into the mortise part of the other plate body. When the two plate bodies are spliced into a front seamless panel, the right side surface of the concave surface of the second upper surface is in contact connection with the right side surface of the convex surface of the first lower surface, and the first lower surface is in a convex structure, and the second upper surface is in a concave structure; at this moment, the second upper surface and the first lower surface are in a concave-convex occlusion state, as shown in fig. 4, the tenon 11 can be stably locked in the mortise part 12, the two plate bodies can be stably locked and connected, and the two plate bodies are locked and spliced into a front seamless panel.
In order to ensure that the tenon can be stably locked in the mortise part, as shown in fig. 5, the protrusion of the first lower surface is trapezoidal, the right side surface of the protrusion surface of the first lower surface is connected with the bottom surface of the protrusion surface of the first lower surface into an arc shape, so that the tenon of one plate body can be rotated downwards and can be spliced on the mortise part of the other plate body, the two plate bodies are locked and spliced together, and the two plate bodies can be spliced together only by rotating the tenon upwards (as shown in fig. 6), so that the two plate bodies spliced by the lock can be firmly spliced together. After the construction operation, if all panel bodies are spliced together according to the aforesaid oblique inserting mode hasp, all panel bodies tile subaerial, the pivoted external force that makes progress hardly appears, consequently, two panel bodies of hasp concatenation can be firmly spliced together.
When the second upper surface and the first lower surface are in a concave-convex occlusion state, a small occlusion gap (as shown in fig. 4) exists between the second upper surface and the first lower surface, on one hand, the small occlusion gap is convenient for a tenon of one plate body to be obliquely inserted into a mortise part of another plate body, on the other hand, the small occlusion gap does not influence the stable locking connection of the two plate bodies, and the occlusion gap between the two plate bodies can not change any more.
After the tenon of one plate body is obliquely inserted into the mortise part of another plate body, the plate body in an inclined state needs to be rotated to be spliced in parallel with the other plate body, the first lower side face and the second lower side face are in the inverted V-shaped groove, a movable gap can be reserved in the splicing process, the plate body in the inclined state can be conveniently spliced towards the other plate body, and the first lower side face and the first lower surface are preferably connected into an obtuse angle structure.
Similarly, in order to leave a clearance for the splicing process, when the tenon of one plate body is obliquely inserted into the mortise part of the other plate body to splice into a front seamless panel, the maximum distance between the first middle side surface and the second middle side surface is 0.5 mm.
Example 2:
as shown in fig. 1-3, the seamless splice plate for the double-rib lock catch of the present embodiment includes a plate body 10, wherein one end of the plate body 10 is provided with a tenon 11, and the other end is provided with a mortise 12.
Between the top surface of the board body and the bottom surface of the board body, the surface of the tenon sequentially includes a first upper side 111, a first upper surface, a first middle side, a first lower surface 114, and a first lower side 115.
Between the top surface of the plate body and the bottom surface of the plate body, the surface of the mortise part sequentially includes a second upper side 121, a second lower side, a second middle side, a second upper surface 124 and a second lower side 125.
During operation, one of the plate bodies is inclined upwards, the tenon 11 of the plate body is obliquely inserted into the mortise part 12 of the other plate body, then the other plate body is parallel by rotating the one of the plate bodies downwards, and thus the two plate bodies are spliced into a front seamless panel. When the tenon of one plate body is obliquely inserted into the mortise part of the other plate body to be spliced into the front seamless panel, the first upper side surface and the second upper side surface form an inverted V-shaped groove (as shown in figure 4), so that the tenon of one plate body is conveniently and obliquely inserted into the mortise part of the other plate body. When the two plate bodies are spliced into a front seamless panel, the right side surface of the concave surface of the second upper surface is in contact connection with the right side surface of the convex surface of the first lower surface, and the first lower surface is in a convex structure, and the second upper surface is in a concave structure; at this moment, the second upper surface and the first lower surface are in a concave-convex occlusion state, as shown in fig. 4, the tenon 11 can be stably locked in the mortise part 12, the two plate bodies can be stably locked and connected, and the two plate bodies are locked and spliced into a front seamless panel.
After the tenon of a panel body inserts another panel body fourth of twelve earthly branches portion to one side, the panel body that is the tilt state need rotate to splice with another panel body parallel, and first downside personally submits the V-arrangement groove with the second downside, and the panel body that is the tilt state of being convenient for leaves the clearance for the concatenation process towards another panel body concatenation.
When the second upper surface and the first lower surface are in a concave-convex occlusion state, a small occlusion gap (as shown in fig. 4) exists between the second upper surface and the first lower surface, on one hand, the small occlusion gap is convenient for a tenon of one plate body to be obliquely inserted into a mortise part of another plate body, on the other hand, the small occlusion gap does not influence the stable locking connection of the two plate bodies, and the occlusion gap between the two plate bodies can not change any more.
As shown in fig. 1 and 7, the plate body is a hollow structure, and a plurality of sets of double ribs 13 are arranged at equal intervals along the cavity of the plate body. The double-rib structural design is adopted, so that the hardness and the strength of the product are far higher than those of other similar decorative materials.
In a word, the utility model discloses a seamless splice plate of two muscle hasps has following advantage:
(1) the utility model discloses a seamless splice plate of two muscle hasps adopts hasp structural design, inserts the tenon of a panel body oblique the fourth of the twelve earthly branches portion of another panel body and splices into positive seamless panel, and the concatenation is quick, and the installation is firm, and the seamless splice plate of two muscle hasps fast of this kind of concatenation makes the construction operation quick, saves time and saves labour.
(2) The two plates are perfectly clamped, the threads are screwed in, the gap between the plates is almost seamless, and the gap between the plates is locked and does not change.
(3) The utility model discloses a seamless splice plate of two muscle hasps must the secondary fluting processing, otherwise can not reach the structure of the seamless concatenation of hasp.
(4) Super toughness: through scientific formula production and the design of a double-rib structure, the hardness and the strength of the product are far higher than those of other similar decorative materials.
(5) The appearance of the double-rib lock catch seamless splicing plate leads the new development direction of the industry, and the adopted ASA co-extrusion production process stabilizes the expansion and contraction among the inner molecules of the bamboo fiber, and further ensures that the plate surface is not deformed. Wear-resisting scratch-resistant, antibiotic dampproofing on face top layer, all pass through the requirement of EU safety, health, energy-conservation and environmental protection, panel formaldehyde accords with national E0 level standard, possesses hundreds of money color texture designs and changes, face plaque integrated into one piece, traditional paint is replaced to the design diversification, the wall paper construction, and clean maintenance is simple and easy quick, can perfectly be applicable to five big spaces of house ornamentation (vestibule, bedroom, sitting room, study room, dining room, corridor) and frock (hotel bungalow, KTV, meeting room, lavipeditum shop, economic hotel).
The present invention is not limited to the above-mentioned optional embodiments, and any other products in various forms can be obtained by anyone under the teaching of the present invention, and any changes in the shape or structure thereof, all the technical solutions falling within the scope of the present invention, are within the protection scope of the present invention.

Claims (5)

1. The utility model provides a seamless splice plate of two muscle hasps which characterized in that: the board comprises a board body, wherein one end of the board body is provided with a tenon, and the other end of the board body is provided with a mortise;
between the top surface of the plate body and the bottom surface of the plate body, the surface of the tenon sequentially comprises a first upper side surface, a first upper surface, a first middle side surface, a first lower surface and a first lower side surface;
the surface of the mortise part sequentially comprises a second upper side surface, a second lower surface, a second middle side surface, a second upper surface and a second lower side surface between the top surface of the plate body and the bottom surface of the plate body;
the first lower surface is of a convex structure, and the second upper surface is of a concave structure;
when the tenon of one plate body is obliquely inserted into the mortise part of the other plate body to be spliced into the front seamless panel, the first upper side surface and the second upper side surface form an inverted V-shaped groove, the right side surface of the concave surface of the second upper surface is in contact connection with the right side surface of the convex surface of the first lower surface, and the first lower side surface and the second lower side surface form the inverted V-shaped groove.
2. The seamless splice plate of double-rib lock catch of claim 1, wherein: the first lower side face and the first lower surface are connected to form an obtuse angle structure.
3. The seamless splice plate of double-rib lock catch of claim 1, wherein: the plate body is of a hollow structure, and a plurality of groups of double ribs are arranged at equal intervals along the cavity of the plate body.
4. The seamless splice plate of a double-rib lock according to any one of claims 1-3, wherein: the right side surface of the convex surface of the first lower surface is connected with the bottom surface of the convex surface of the first lower surface to form an arc.
5. The seamless splice plate of double-rib lock catch of claim 4, wherein: when the tenon of one plate body is obliquely inserted into the mortise part of the other plate body to be spliced into a front seamless panel, the maximum distance between the first middle side face and the second middle side face is 0.5 mm.
CN201920982825.6U 2019-06-27 2019-06-27 Seamless splice plate of two muscle hasps Active CN210622176U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920982825.6U CN210622176U (en) 2019-06-27 2019-06-27 Seamless splice plate of two muscle hasps

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920982825.6U CN210622176U (en) 2019-06-27 2019-06-27 Seamless splice plate of two muscle hasps

Publications (1)

Publication Number Publication Date
CN210622176U true CN210622176U (en) 2020-05-26

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Application Number Title Priority Date Filing Date
CN201920982825.6U Active CN210622176U (en) 2019-06-27 2019-06-27 Seamless splice plate of two muscle hasps

Country Status (1)

Country Link
CN (1) CN210622176U (en)

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