CN218971022U - Frame splicing door plate structure with handle - Google Patents

Frame splicing door plate structure with handle Download PDF

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Publication number
CN218971022U
CN218971022U CN202223040539.9U CN202223040539U CN218971022U CN 218971022 U CN218971022 U CN 218971022U CN 202223040539 U CN202223040539 U CN 202223040539U CN 218971022 U CN218971022 U CN 218971022U
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frame strip
core cavity
mortice
strip
handle
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CN202223040539.9U
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张永杰
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Jiangsu Goldenhome Co ltd
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Jiangsu Goldenhome Co ltd
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Abstract

The utility model discloses a frame splicing door plate structure with a handle, wherein an upper core cavity with an opening at the lower end is arranged on the lower side surface of an upper frame strip, a lower core cavity with an opening at the upper end is arranged on the upper side surface of a lower frame strip, a left core cavity with an opening at the right end is arranged on the right side surface of a left frame strip, a right core cavity with an opening at the left end is arranged on the left side surface of a right frame strip, the upper core cavity, the left core cavity, the lower core cavity and the right core cavity are sequentially communicated, and the periphery of a core plate is respectively embedded into the upper core cavity, the left core cavity, the lower core cavity and the right core cavity; and the outer side surface of the upper frame strip is integrally formed and provided with a handle strip extending towards the lower frame strip, and a handle groove is formed between the handle strip and the core plate. The handle groove is formed between the handle bar and the core plate, so that the handle groove can be synchronously milled when the upper core cavity is milled, the production process steps are reduced, and the production cost is greatly reduced. In addition, from the appearance, the handle strip has an invisible effect, so that the whole frame splicing door plate is more concise and elegant.

Description

Frame splicing door plate structure with handle
Technical Field
The utility model relates to a spliced frame door plate structure with a handle.
Background
At present, the plate type cabinet door plate on the market is basically only a pure medium density fiberboard, a shaving board or a wood plate integral structural plate, so that the plate type cabinet door plate is formed, but the plate type cabinet door plate is unstable in performance, easy to deform and not long in service life, and therefore, the frame splicing door plate is formed.
The wooden frame-spliced door comprises a first door frame strip, wherein the left end of the first door frame strip is fixedly connected with a second door frame strip, the lower end of the second door frame strip is fixedly connected with a third door frame strip, and a fourth door frame strip is fixedly connected between the right end of the third door frame strip and the right end of the first door frame strip. The first door frame strip, the second door frame strip, the third door frame strip and the fourth door frame strip of the solid wood structure have higher structural strength and are not easy to deform. However, the bottom of the first door frame strip is provided with a self-digging handle, and the middle position of the upper end surface of the door core plate is provided with a core plate self-digging matched handle model. Therefore, the handle of the frame splicing door is complex to set, the production process steps are increased, and the production cost is increased.
There is a need for improvements to existing sectional doors to simplify the placement of the handle.
Disclosure of Invention
The utility model provides a spliced frame door plate structure with a handle, which overcomes the defects in the prior art. The technical scheme adopted for solving the technical problems is as follows:
the utility model provides a piece together frame door plant structure from taking handle, it includes frame strip, lower frame strip, left frame strip, right frame strip and core, frame strip, left frame strip, lower frame strip and right frame strip connect gradually and form the frame, the upper frame strip downside is equipped with the open-ended upper core chamber, the lower frame strip upside is equipped with the open-ended lower core chamber, left frame strip right flank is equipped with the open-ended left core chamber of right side, right frame strip left surface is equipped with the open-ended right core chamber of left end, upper core chamber, left core chamber, lower core chamber and right core chamber communicate in proper order, the core is embedded respectively in upper core chamber, left core chamber, lower core chamber and the right core intracavity all around; and the outer side surface of the upper frame strip is integrally formed and provided with a handle strip extending towards the lower frame strip, and a handle groove is formed between the handle strip and the core plate.
In a preferred embodiment: the bottom surface of the tail end of the handle strip is provided with a guide handle surface which is obliquely arranged.
In a preferred embodiment: the left core cavity penetrates through the left frame strip from top to bottom, the left end of the upper frame strip is provided with a first left inserting block which is transversely arranged, the left end of the lower frame strip is provided with a second left inserting block which is transversely arranged, the first left inserting block and the second left inserting block are respectively inserted into the top end and the bottom end of the left core cavity, and the first left inserting block and the second left inserting block are respectively positioned above and below the left end of the core board.
In a preferred embodiment: the upper frame strip comprises an upper frame strip body, the first left inserting block is fixedly connected to the left end of the upper frame strip body, the first left inserting block divides the left end of the upper frame strip body into a first left abdicating groove and a second left abdicating groove, the upper cavity wall of the upper end of the left core cavity is embedded into the first left abdicating groove, and the lower cavity wall of the upper end of the left core cavity is embedded into the second left abdicating groove.
In a preferred embodiment: the first left insert block is provided with a first left mortice, the upper end of the left core cavity is provided with a second left mortice, a first left mortice strip is further arranged, and two ends of the first left mortice strip are respectively mortised with the first left mortice and the second left mortice.
In a preferred embodiment: the lower frame strip comprises a lower frame strip body, the second left inserting block is fixedly connected to the left end of the lower frame strip body, the second left inserting block divides the left end of the lower frame strip body into a third left abdicating groove and a fourth left abdicating groove, the upper cavity wall of the lower end of the left core cavity is embedded into the third left abdicating groove, and the lower cavity wall of the lower end of the left core cavity is embedded into the fourth left abdicating groove.
In a preferred embodiment: the second left insert block is provided with a third left mortice, the lower end of the left core cavity is provided with a fourth left mortice, a second left mortice strip is additionally arranged, and two ends of the second left mortice strip are respectively mortised with the third left mortice and the fourth left mortice.
In a preferred embodiment: the right core cavity penetrates through the right frame strip from top to bottom, the right end of the upper frame strip is provided with a first right inserting block which is transversely arranged, the right end of the lower frame strip is provided with a second right inserting block which is transversely arranged, the first right inserting block and the second right inserting block are respectively inserted into the top end and the bottom end of the right core cavity, and the first right inserting block and the second right inserting block are respectively positioned above and below the right end of the core board.
In a preferred embodiment: the first right inserting block is fixedly connected to the right end of the upper frame strip body, the first right inserting block divides the right end of the upper frame strip body into a first right abdicating groove and a second right abdicating groove, the first right abdicating groove is embedded into the upper cavity wall of the upper end of the right core cavity, and the second right abdicating groove is embedded into the lower cavity wall of the upper end of the right core cavity.
In a preferred embodiment: the second right inserting block is fixedly connected to the right end of the lower frame strip body, the second right inserting block divides the right end of the lower frame strip body into a third right abdicating groove and a fourth right abdicating groove, the upper cavity wall of the lower end of the right core cavity is embedded into the third right abdicating groove, and the lower cavity wall of the lower end of the right core cavity is embedded into the fourth right abdicating groove.
In a preferred embodiment: the first right insert block is provided with a first right mortice, the upper end of the right core cavity is provided with a second right mortice, a first right mortice strip is additionally arranged, and two ends of the first right mortice strip are respectively mortised with the first right mortice and the second right mortice; the second right insert block is provided with a third right mortice, the lower end of the right core cavity is provided with a fourth right mortice, a second right mortice strip is additionally arranged, and two ends of the second right mortice strip are respectively mortised with the third right mortice and the fourth right mortice.
Compared with the background technology, the technical proposal has the following advantages:
1. the handle strip extending towards the direction of the lower frame strip is integrally formed on the outer side face of the upper frame strip, and a handle groove is formed between the handle strip and the core plate, so that the handle groove can be synchronously milled when the upper core cavity is milled, production process steps are reduced, and production cost is greatly reduced. In addition, from the appearance, the handle strip has an invisible effect, so that the whole frame splicing door plate is more concise and elegant.
2. The bottom surface of the tail end of the handle strip is provided with the guide handle surface which is obliquely arranged, so that hands of people can conveniently extend into the handle groove, and the use is more convenient.
Drawings
The utility model is further described below with reference to the drawings and examples.
FIG. 1 is a schematic view of a door panel with a handle according to a preferred embodiment.
FIG. 2 is a front view of a door panel with a handle according to a preferred embodiment.
FIG. 3 is a schematic exploded perspective view of a door panel with a handle according to a preferred embodiment.
FIG. 4 is a schematic exploded view of a door panel with a handle according to a second embodiment.
Fig. 5 shows a schematic front view of fig. 4.
FIG. 6 is a schematic diagram of the top frame strip according to a preferred embodiment.
FIG. 7 is a second schematic view of the top frame strip of a preferred embodiment.
Fig. 8 is a schematic structural view of a lower frame strip according to a preferred embodiment.
Fig. 9 is a schematic structural view of a left frame bar according to a preferred embodiment.
Fig. 10 is a schematic structural view of a right frame bar according to a preferred embodiment.
Detailed Description
In the claims, specification and drawings hereof, unless explicitly defined otherwise, the terms "first," "second," or "third," etc. are used for distinguishing between different objects and not for describing a particular sequential order.
In the claims, specification and drawings of the present utility model, unless explicitly defined otherwise, references to orientation or positional relationship such as the terms "center", "lateral", "longitudinal", "horizontal", "vertical", "top", "bottom", "inner", "outer", "upper", "lower", "front", "rear", "left", "right", "clockwise", "counterclockwise", etc. are based on the orientation and positional relationship shown in the drawings and are merely for convenience of description and to simplify the description, and do not indicate or imply that the apparatus or element referred to must have a particular orientation or be constructed and operated in a particular orientation, nor should it be construed as limiting the particular scope of the utility model.
In the claims, specification and drawings of the present utility model, unless explicitly defined otherwise, the terms "fixedly attached" and "fixedly attached" are to be construed broadly as any manner of connection without any positional or rotational relationship between the two, i.e. including non-removable, fixed, integrally connected, and fixedly connected by other means or elements.
In the claims, specification and drawings of the present utility model, the terms "comprising," having, "and variations thereof as used herein, are intended to be" including but not limited to.
Referring to fig. 1 to 10, a preferred embodiment of a door panel structure with a handle is disclosed, which comprises an upper frame 10, a lower frame 20, a left frame 30, a right frame 40 and a core 50, wherein the upper frame 10, the left frame 30, the lower frame 20 and the right frame 40 are sequentially connected to form an outer frame.
The lower side of the upper frame strip 10 is provided with an upper core cavity 11 with an opening at the lower end.
The outer side surface of the upper frame strip 10 is integrally provided with a handle strip 12 extending toward the lower frame strip 20, and a handle groove 13 is formed between the handle strip 12 and the core plate 50. In this embodiment, as shown in fig. 6, the bottom surface of the tail end of the handle bar 12 is provided with a guiding handle surface 14 which is obliquely arranged. And the inner end of the guide handle face 14 extends to the opening of the upper core cavity 11.
The upper side surface of the lower frame strip 20 is provided with a lower core cavity 21 with an open upper end, and the right side surface of the left frame strip 30 is provided with a left core cavity 31 with an open right end. The left side face of the right frame strip 40 is provided with a right core cavity 41 with an opening at the left end, the upper core cavity 11, the left core cavity 31, the lower core cavity 21 and the right core cavity 41 are sequentially communicated, and the periphery of the core plate 50 is respectively embedded into the upper core cavity 11, the left core cavity 31, the lower core cavity 21 and the right core cavity 41.
In this embodiment, as shown in fig. 4, the left core cavity 31 vertically penetrates through the left frame strip 30, the left end of the upper frame strip 10 is provided with a first left insert 15 arranged transversely, the left end of the lower frame strip 20 is provided with a second left insert 22 arranged transversely, the first left insert 15 and the second left insert 22 are respectively inserted into the top end and the bottom end of the left core cavity 31, and the first left insert 15 and the second left insert 22 are respectively located above and below the left end of the core plate 50.
In this embodiment, the upper frame strip 10 includes an upper frame strip body 16, the first left insert 15 is fixedly connected to the left end of the upper frame strip body 16, and the first left insert 15 divides the left end of the upper frame strip body 16 into a first left relief groove 151 and a second left relief groove 152, the upper cavity wall at the upper end of the left core cavity 31 is embedded into the first left relief groove 151, and the lower cavity wall at the upper end of the left core cavity 31 is embedded into the second left relief groove 152.
In this embodiment, the first left insert 15 is provided with a first left mortise 153, the upper end of the left core cavity 31 is provided with a second left mortise 32, a first left tenon strip 33 is further provided, and two ends of the first left tenon strip 33 are respectively joggled with the first left mortise 153 and the second left mortise 32. In this embodiment, two first left tongue-and-groove 33 are provided, and two first left tongue-and-groove 153 and two second left tongue-and-groove 32 are provided.
In this embodiment, the lower frame 20 includes a lower frame body 23, the second left insert 22 is fixedly connected to the left end of the lower frame body 23, and the second left insert 22 separates the left end of the lower frame body 23 into a third left relief groove 221 and a fourth left relief groove 222, the upper cavity wall at the lower end of the left core cavity 31 is embedded into the third left relief groove 221, and the lower cavity wall at the lower end of the left core cavity 31 is embedded into the fourth left relief groove 222.
In this embodiment, the second left insert 22 is provided with a third left tongue-and-groove 24, the lower end of the left core cavity 31 is provided with a fourth left tongue-and-groove 34, and a second left tongue-and-groove 35 is further provided, and two ends of the second left tongue-and-groove 35 are respectively joggled with the third left tongue-and-groove 24 and the fourth left tongue-and-groove 34. In this embodiment, two second left tongue-and-groove 35 are provided, and two third left tongue-and-groove 24 and four left tongue-and-groove 34 are provided.
In this embodiment, the right core cavity 41 vertically penetrates through the right frame strip 40, the right end of the upper frame strip 10 is provided with a first right insert block 17 arranged transversely, the right end of the lower frame strip 20 is provided with a second right insert block 25 arranged transversely, the first right insert block 17 and the second right insert block 25 are respectively inserted into the top end and the bottom end of the right core cavity 41, and the first right insert block 17 and the second right insert block 25 are respectively located above and below the right end of the core plate 50.
In this embodiment, the first right insert 17 is fixedly connected to the right end of the upper frame strip body 16, and the first right insert 17 divides the right end of the upper frame strip body 16 into a first right relief groove 171 and a second right relief groove 172, the upper cavity wall of the upper end of the right core cavity 41 is embedded into the first right relief groove 171, and the lower cavity wall of the upper end of the right core cavity 41 is embedded into the second right relief groove 172.
In this embodiment, the second right insert 25 is fixedly connected to the right end of the lower frame strip body 23, and the second right insert 25 divides the right end of the lower frame strip body 23 into a third right relief groove 251 and a fourth right relief groove 252, the upper cavity wall of the lower end of the right core cavity 41 is embedded into the third right relief groove 251, and the lower cavity wall of the lower end of the right core cavity 41 is embedded into the fourth right relief groove 252.
In this embodiment, the first right insert 17 is provided with a first right mortise 173, the upper end of the right core cavity 41 is provided with a second right mortise 42, a first right tenon strip 43 is further provided, and two ends of the first right tenon strip 43 are respectively mortised with the first right mortise 173 and the second right mortise 42; the second right insert 25 is provided with a third right mortise 253, the lower end of the right core cavity 41 is provided with a fourth right mortise 44, a second right tenon strip 45 is further provided, and two ends of the second right tenon strip 45 are respectively joggled with the third right mortise 253 and the fourth right mortise 44.
As shown in fig. 4, the upper and lower ends of the core plate 50 are first respectively inserted into the upper core cavity 11 and the lower core cavity 21;
then the first left tenon strip 33 is inserted into the first left tenon groove 153, and the second left tenon strip 35 is inserted into the third left tenon groove 24; next, the first right tenon 43 is inserted into the first right tenon groove 173, and the second right tenon 45 is inserted into the third right tenon groove 253;
then the left end of the first left tenon strip 33 and the left end of the second left tenon strip 35 are respectively inserted into the second left tenon groove and the fourth left tenon groove 34 of the second left tenon groove and the fourth left tenon groove 32, and simultaneously, the left end of the core board 50 is inserted into the left core cavity 31, so that the splicing of the left frame strip 30, the upper frame strip 10 and the lower frame strip 20 is completed;
finally, the right ends of the first right tenon strip 43 and the second right tenon strip 45 are respectively inserted into the second right tenon groove 42 and the fourth right tenon groove 44, and simultaneously, the right end of the core board 50 is inserted into the right core cavity 41, so that the right frame strip 40, the upper frame strip 10 and the lower frame strip 20 are spliced.
The handle bar 12 extending towards the lower frame bar 20 is integrally formed on the outer side surface of the upper frame bar 10, and the handle groove 13 is formed between the handle bar 12 and the core plate 50, so that the handle groove 13 can be synchronously milled when the upper core cavity 11 is milled, the production process steps are reduced, and the production cost is greatly reduced. In addition, from the appearance, the handle strip has an invisible effect, so that the whole frame splicing door plate is more concise and elegant.
The foregoing description is only illustrative of the preferred embodiments of the present utility model, and therefore should not be taken as limiting the scope of the utility model, for all changes and modifications that come within the meaning and range of equivalency of the claims and specification are therefore intended to be embraced therein.

Claims (11)

1. From piece together frame door plant structure of taking handle, its characterized in that: the novel core plate comprises an upper frame strip, a lower frame strip, a left frame strip, a right frame strip and a core plate, wherein the upper frame strip, the left frame strip, the lower frame strip and the right frame strip are sequentially connected to form an outer frame, an upper core cavity with an opening at the lower end is arranged on the lower side surface of the upper frame strip, a lower core cavity with an opening at the upper end is arranged on the upper side surface of the lower frame strip, a left core cavity with an opening at the right end is arranged on the right side surface of the left frame strip, a right core cavity with an opening at the left end is arranged on the left side surface of the right frame strip, and the upper core cavity, the left core cavity, the lower core cavity and the right core cavity are sequentially communicated; and the outer side surface of the upper frame strip is integrally formed and provided with a handle strip extending towards the lower frame strip, and a handle groove is formed between the handle strip and the core plate.
2. The split door panel structure with a handle as claimed in claim 1, wherein: the bottom surface of the tail end of the handle strip is provided with a guide handle surface which is obliquely arranged.
3. A framed door panel structure with a handle as claimed in claim 1 or 2, wherein: the left core cavity penetrates through the left frame strip from top to bottom, the left end of the upper frame strip is provided with a first left inserting block which is transversely arranged, the left end of the lower frame strip is provided with a second left inserting block which is transversely arranged, the first left inserting block and the second left inserting block are respectively inserted into the top end and the bottom end of the left core cavity, and the first left inserting block and the second left inserting block are respectively positioned above and below the left end of the core board.
4. A split door panel structure with a handle as claimed in claim 3, wherein: the upper frame strip comprises an upper frame strip body, the first left inserting block is fixedly connected to the left end of the upper frame strip body, the first left inserting block divides the left end of the upper frame strip body into a first left abdicating groove and a second left abdicating groove, the upper cavity wall of the upper end of the left core cavity is embedded into the first left abdicating groove, and the lower cavity wall of the upper end of the left core cavity is embedded into the second left abdicating groove.
5. The handle-equipped sectional door panel structure according to claim 4, wherein: the first left insert block is provided with a first left mortice, the upper end of the left core cavity is provided with a second left mortice, a first left mortice strip is further arranged, and two ends of the first left mortice strip are respectively mortised with the first left mortice and the second left mortice.
6. The handle-equipped sectional door panel structure according to claim 4, wherein: the lower frame strip comprises a lower frame strip body, the second left inserting block is fixedly connected to the left end of the lower frame strip body, the second left inserting block divides the left end of the lower frame strip body into a third left abdicating groove and a fourth left abdicating groove, the upper cavity wall of the lower end of the left core cavity is embedded into the third left abdicating groove, and the lower cavity wall of the lower end of the left core cavity is embedded into the fourth left abdicating groove.
7. The handle-equipped sectional door panel structure of claim 6, wherein: the second left insert block is provided with a third left mortice, the lower end of the left core cavity is provided with a fourth left mortice, a second left mortice strip is additionally arranged, and two ends of the second left mortice strip are respectively mortised with the third left mortice and the fourth left mortice.
8. The handle-equipped sectional door panel structure of claim 6, wherein: the right core cavity penetrates through the right frame strip from top to bottom, the right end of the upper frame strip is provided with a first right inserting block which is transversely arranged, the right end of the lower frame strip is provided with a second right inserting block which is transversely arranged, the first right inserting block and the second right inserting block are respectively inserted into the top end and the bottom end of the right core cavity, and the first right inserting block and the second right inserting block are respectively positioned above and below the right end of the core board.
9. The self-contained handle panel structure of claim 8, wherein: the first right inserting block is fixedly connected to the right end of the upper frame strip body, the first right inserting block divides the right end of the upper frame strip body into a first right abdicating groove and a second right abdicating groove, the first right abdicating groove is embedded into the upper cavity wall of the upper end of the right core cavity, and the second right abdicating groove is embedded into the lower cavity wall of the upper end of the right core cavity.
10. The self-contained handle panel structure of claim 9, wherein: the second right inserting block is fixedly connected to the right end of the lower frame strip body, the second right inserting block divides the right end of the lower frame strip body into a third right abdicating groove and a fourth right abdicating groove, the upper cavity wall of the lower end of the right core cavity is embedded into the third right abdicating groove, and the lower cavity wall of the lower end of the right core cavity is embedded into the fourth right abdicating groove.
11. The self-contained handle panel structure of claim 10, wherein: the first right insert block is provided with a first right mortice, the upper end of the right core cavity is provided with a second right mortice, a first right mortice strip is additionally arranged, and two ends of the first right mortice strip are respectively mortised with the first right mortice and the second right mortice; the second right insert block is provided with a third right mortice, the lower end of the right core cavity is provided with a fourth right mortice, a second right mortice strip is additionally arranged, and two ends of the second right mortice strip are respectively mortised with the third right mortice and the fourth right mortice.
CN202223040539.9U 2022-11-14 2022-11-14 Frame splicing door plate structure with handle Active CN218971022U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223040539.9U CN218971022U (en) 2022-11-14 2022-11-14 Frame splicing door plate structure with handle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223040539.9U CN218971022U (en) 2022-11-14 2022-11-14 Frame splicing door plate structure with handle

Publications (1)

Publication Number Publication Date
CN218971022U true CN218971022U (en) 2023-05-05

Family

ID=86156980

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223040539.9U Active CN218971022U (en) 2022-11-14 2022-11-14 Frame splicing door plate structure with handle

Country Status (1)

Country Link
CN (1) CN218971022U (en)

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