CN211817191U - Double-glass partition structure - Google Patents
Double-glass partition structure Download PDFInfo
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- CN211817191U CN211817191U CN201921430595.9U CN201921430595U CN211817191U CN 211817191 U CN211817191 U CN 211817191U CN 201921430595 U CN201921430595 U CN 201921430595U CN 211817191 U CN211817191 U CN 211817191U
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- keel
- hanging frame
- main body
- partition structure
- glass partition
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Abstract
A dual glass partition structure comprising: a column keel (1) and a hanging frame (2); the closed design of the upright post keel (1) comprises a first part (11) and a second part (12), wherein the first part (11) and the second part (12) are connected in a sealing way, and a middle interlayer is formed at the joint of the first part and the second part; the hanging frames (2) are symmetrically arranged at two sides of the upright post keel (1). Through the keel structure adopting the closed design, the whole structure is more closed, and the functions of fire prevention, sound insulation, theft prevention and the like are enhanced.
Description
Technical Field
The utility model relates to a glass cuts off technical field, in particular to double glass cuts off structure.
Background
The existing connection mode of the glass hanging frame and the keel leads to easy falling of the hook in the fireproof detection process; meanwhile, the glass hanging frame is not locked, and the partition wall has no anti-theft function.
The keel of the existing main upright post is hollow, the front hanging hole and the rear hanging hole can be freely penetrated, and the structure of the keel can cause fire channeling easily in the fireproof detection process; meanwhile, in sound insulation detection, the sound insulation performance is easy to be damaged.
The existing main upright post keel belongs to a semi-open and unclosed state, so that the strength is low, the connection is not firm enough, and the flatness of the punching surface of the main upright post keel cannot be guaranteed, thereby causing the problem of inconsistent height difference between the connected glass hanging frames.
SUMMERY OF THE UTILITY MODEL
Objects of the invention
The utility model aims at providing a dual glass cuts off structure through the fossil fragments structure that adopts closed design for overall structure is airtight more, functions such as reinforcing fire prevention, sound insulation theftproof.
(II) technical scheme
In order to solve the problem, according to the utility model discloses an aspect, the utility model provides a dual glass cuts off structure, include: upright column keel and hanging frame; the upright post keel is designed in a closed mode and comprises a first part and a second part, the first part and the second part are connected in a sealing mode, and a middle interlayer is formed at the joint of the first part and the second part; the hanging frames are symmetrically arranged on two sides of the upright keel.
Furthermore, the first part opening design comprises a first part main body, a first bulge is formed in the middle of the first part main body, and supporting plates are respectively formed at two ends of the first part main body; the second part is designed to be closed and comprises a second part main body, a second protrusion is arranged on the second part main body close to the supporting surface of the first protrusion, and the second protrusion is matched with the first groove in the first protrusion and is embedded into the first groove.
Further, the first part and the second part are designed in a closed mode, and the centers of the first part and the second part are symmetrically arranged.
Furthermore, the device also comprises a side supporting plate; the two side supporting plates are respectively arranged on the two supporting surfaces of the first part and are used for being connected with the hanging frame.
Furthermore, the first part and the second part are designed to be opened, and the centers of the first part and the second part are symmetrically arranged.
Furthermore, the first part comprises a first part main body, a third bulge is arranged in the middle of the first part main body, and one end of the first part main body is bent towards a groove formed in the third bulge to form a first supporting plate; the other end of the first part main body is bent to a direction away from the groove formed in the third bulge to form a second supporting plate.
Further, the hanging frame includes: a hanging frame body; the hanging frame body is provided with a first mounting part and a second mounting part; the first installation part is used for installing glass, and the second installation part is used for connecting the upright keel and is fixedly connected with the hanging frame.
Further, the method also comprises the following steps: a hook member; the hook piece is formed into a U-shaped supporting plate and comprises a bottom plate and two vertical plates; the bottom plate is used for supporting and hangs the frame, and one of them riser and second installation department are connected, and another riser and stand fossil fragments are connected.
Furthermore, still be provided with on the stand fossil fragments and punch a hole, the riser is connected with punching a hole.
Furthermore, the vertical plate, the supporting plate, the first supporting plate and the second supporting plate are respectively in threaded connection with the second installation part.
(III) advantageous effects
The above technical scheme of the utility model has following profitable technological effect:
1. the glass hanging frame and the upright post keel are locked through screws, so that the glass hanging frame deforms along with the shape of the upright post keel in the fireproof detection process, a gap between the glass hanging frame and the keel is prevented from generating fire channeling, and the hook piece is effectively prevented from falling off.
2. The single side of the glass hanging frame is locked with the upright post keel screw, so that the glass hanging frame is more convenient to hang and disassemble, and meanwhile, the anti-theft effect is enhanced.
3. The upright post keel is designed in a closed manner, and an interlayer for blocking the front and rear hook holes is arranged in the middle of the upright post keel, so that the problem that the front and rear hook holes are easy to blow fire in the fireproof detection process is solved; in sound insulation detection, the influence of the front and rear hook hole through holes on the sound insulation performance weighing value is avoided.
4. The closed design of the upright column keel enables the upright column keel to have good strength, and the problem that the punched surface of the keel is uneven is solved.
Drawings
Fig. 1 is a top view structural diagram of a first embodiment of a dual glass partition structure provided by the present invention;
fig. 2 is a top view structural diagram of a first embodiment of a column runner provided by the present invention;
fig. 3 is a disassembled top view structural diagram of a first embodiment of the column keel provided by the invention;
figure 4 is a front and side view block diagram of a first embodiment of a stud keel provided by the present invention;
fig. 5 is a top view structural diagram of a second embodiment of the column runner provided by the present invention;
fig. 6 is a top view structural diagram of a third embodiment of the column keel provided by the present invention;
fig. 7 is a top view structural diagram of a fourth embodiment of the stud keel provided by the present invention;
fig. 8 is a top view structural diagram of the hanging frame provided by the present invention;
fig. 9 is a structural view of a hook member in a double-glass partition structure provided by the present invention;
fig. 10 is a top view structural diagram of a second embodiment of the double-glass partition structure provided by the present invention;
fig. 11 is a top view structural diagram of a third embodiment of the double-glass partition structure provided by the present invention;
fig. 12 is a top view structural diagram of a fourth embodiment of the double-glass partition structure provided by the present invention.
Reference numerals:
1-column keel; 2-hanging a frame; 3-a hook member; 4-glass; 5-a screw; 6-fireproof cotton sliver or leather strip; 11-a first portion; 12-a second portion; 13-side support plate; 14-punching; 21-hanging the frame body; 31-a base plate; 32-a riser; 111-a first projection; 112-a first groove; 113-a support plate; 114-a third protrusion; 115-a first support plate; 116-a second support plate; 121-a second protrusion; 211-a first mounting portion; 212-second mounting portion.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in detail with reference to the accompanying drawings. It should be understood that the description is intended to be illustrative only and is not intended to limit the scope of the present invention. Moreover, in the following description, descriptions of well-known structures and techniques are omitted so as to not unnecessarily obscure the concepts of the present invention.
The present invention will be described in detail with reference to the accompanying drawings and examples.
Fig. 1 is a top view structural diagram of a first embodiment of the dual glass partition structure provided by the present invention.
The utility model provides a double-glass partition structure, include: the upright post keel 1 and the hanging frame 2; the upright post keel 1 is designed in a closed mode and comprises a first part 11 and a second part 12, the first part 11 and the second part 12 are connected in a sealing mode, and a middle interlayer is formed at the joint of the first part 11 and the second part 12; the hanging frames 2 are symmetrically arranged at two sides of the upright post keel 1.
Specifically, the stud runner 1 includes a first portion 11 and a second portion 12.
The utility model discloses an in the embodiment one 11 open-ended designs of first portion, the closed design of second portion 12, the stand fossil fragments 1 that form after first portion 11 and the 12 connection of second portion are closed.
In the second embodiment of the present invention, the first portion 11 is open and the second portion 12 is closed, and the upright keel 1 formed by connecting the first portion 11 and the second portion 12 is closed; the difference between the second embodiment and the first embodiment is that the second portion 12 of the second embodiment is integrally formed, and the second portion 12 of the first embodiment is formed by connecting two open keels.
The utility model discloses an equal open design of first portion 11 and second portion 12 in the embodiment three, the stand fossil fragments 1 that form after first portion 11 and second portion 12 are connected is closed.
The utility model discloses an equal closed design of first portion 11 and second portion 12 in the embodiment four, the stand fossil fragments 1 that form after first portion 11 and second portion 12 are connected is closed.
Fig. 2 is a top view structure diagram of a first embodiment of the column keel, fig. 3 is a top view structure diagram of a first embodiment of the column keel, and fig. 4 is a front view and a side view structure diagram of a first embodiment of the column keel, please refer to fig. 2, fig. 3 and fig. 4.
In the first embodiment:
the first part 11 is designed to be an opening and comprises a first part main body, a first bulge 111 is formed in the middle of the first part main body, and supporting plates 113 are respectively formed at two ends of the first part main body;
the second part 12 is a closed design and comprises a second part body, a second protrusion 121 is arranged on the second part body close to the supporting surface of the first protrusion 111, the second protrusion 121 is matched with the first groove 112 in the first protrusion 111 and is embedded in the first groove 112, and therefore the first part 11 is connected with the second part 12.
Fig. 4 a is a front view of the stud keel 1 of the first embodiment, and fig. 4 b is a side view of the stud keel 1 of the first embodiment.
Fig. 2 is a top view structural diagram of a first embodiment of the column keel provided by the present invention, and fig. 5 is a top view structural diagram of a second embodiment of the column keel provided by the present invention.
Please refer to the stud runner 1 of fig. 2 and 5, wherein the second portion 12 has a different structure; optionally, the second portion 12 of the upright keel 1 in fig. 5 has only one second main body, and the second main body is formed by bending the existing steel into a closed shape, and then welding the steel end to finally obtain a completely closed second main body.
Specifically, the second main body in fig. 5 is formed by rolling a single steel strip into a closed shape by a rolling process.
Optionally, the second portion 12 of the central pillar keel 1 in fig. 2 and the first embodiment is divided into an upper structure and a lower structure, the second portion 12 in fig. 2 is formed by bending through a bending device, and is limited to the process of the existing bending device, and the existing steel needs to be split into two parts to be bent, and then welded after being bent, so as to finally form the closed shape shown in fig. 2. The method enables bending precision to be higher.
The first embodiment and the second embodiment have different structures, and achieve the same blocking function by adopting different bending forms.
Fig. 6 is a top view structural diagram of a third embodiment of the column keel provided by the present invention, please refer to fig. 6, in the third embodiment:
the openings of the first part 11 and the second part 12 are designed, the opening of the first part 11 and the opening of the second part 12 are oppositely arranged, and a middle partition layer is formed at the joint of the opening of the first part 11 and the opening of the second part 12.
In this embodiment, the first portion 11 includes a first portion main body, a third protrusion 114 is disposed in the middle of the first portion main body, one end of the first portion main body is bent toward a direction parallel to the third protrusion 114, and the bent length may be equal to or shorter than the lateral length of the third protrusion 114. Finally, the first support plate 115 is formed; the other end of the first portion main body is bent away from the groove formed in the third protrusion 114 to form a second supporting plate 116.
Alternatively, when the length of the bend is the same as the lateral length of the third protrusion 114, the first portion 11 and the second portion 12 will form a first support plate 115, i.e. a middle partition layer with double support plates is formed at the position where the first portion 11 and the second portion 12 are sealingly connected.
Alternatively, when the bent length is shorter than the lateral length of the third protrusion 114, the structure shown in fig. 5 is formed, a double-layered support plate is formed at a position where the first support plates 115 of the first and second portions 11 and 12 contact each other, and the non-contacted position is still the first support plate 115.
Fig. 7 is a top view structural diagram of a fourth embodiment of the column keel provided by the present invention, please refer to fig. 7, in the fourth embodiment:
the first portion 11 and the second portion 12 are of closed design, and the first portion 11 and the second portion 12 are arranged symmetrically to each other.
Specifically, the first portion 11 and the second portion 12 are each a closed rectangular frame.
In this embodiment, two side support plates 13 are further included, and the two side support plates 13 are respectively mounted on two support surfaces of the first portion 11 for connection with the hanging frame 2.
Fig. 8 is a top view structural diagram of the hanging frame provided by the present invention, please refer to fig. 8.
In one embodiment, the hanging frame 2 includes: a hanging frame body 21; the hanging frame body 21 is formed with a first mounting part 211 and a second mounting part 212; the first installation part 211 is used for installing the glass 4, and the second installation part 212 is used for connecting and fixing the upright keel 1 and the hanging frame 2.
Optionally, the first mounting portion 211 is used for mounting the glass 4, and a fireproof cotton strip or leather strip 6 is further disposed on a contact surface of the first mounting portion 211 and the glass 4, and is used for fire prevention, earthquake prevention and sound insulation. The fireproof cotton strip mainly has the fireproof function, and can expand when the temperature of the fireproof cotton strip reaches a certain degree, so that the glass 4 is clamped and is not easy to slide out of the hanging frame 2, and the phenomenon of fire channeling is prevented.
Optionally, a fire-proof cotton strip or leather strip is also arranged in the gap between two adjacent second mounting portions 212.
Fig. 9 is a structural view of the hook member in the dual glass partition structure of the present invention, please refer to fig. 9.
In one embodiment, the method further comprises: a hook member 3; the hook member 3 is formed as a U-shaped support plate including a bottom plate 31 and two risers 32; the bottom plate 31 is used for supporting the hanging frame 2, wherein one vertical plate 32 is connected with the second mounting part 212, and the other vertical plate 32 is connected with the upright keel 1.
Specifically, one end of the hook member 3 is a vertical plate 32, the other end is another vertical plate 32, the vertical plate 32 is connected to the second mounting portion 212, and the another vertical plate 32 is connected to the stud keel 1, so that the stud keel 1 and the hanging frame 2 are fixedly connected through the hook member 3.
Optionally, the vertical plate 32 is connected with the upright keel 1 in a hanging manner.
In one embodiment, the stud keel 1 is further provided with punched holes 14, and the risers 32 are connected with the punched holes 14.
In one embodiment, the riser 32, the support plate 113, the first support plate 115, and the second support plate 116 are each threadedly coupled to the second mounting portion 212.
Fig. 10 is a top view structural diagram of the second embodiment in the double-glass partition structure provided by the present invention, and fig. 11 is a top view structural diagram of the third embodiment in the double-glass partition structure provided by the present invention.
Optionally, the screw 5 sequentially penetrates through the vertical plate 32 and one side wall of the second mounting portion 212 to connect and fix the upright keel 1 and the hanging frame 2; meanwhile, another screw 5 sequentially passes through the support plate 113 and the other side wall of the second mounting part 212 to further connect and fix the upright keel 1 and the hanging frame 2.
The utility model provides a two glass cut off overlooking structure chart of embodiment one among the structure is unanimous with overlooking structure chart threaded connection of embodiment two, three, no longer gives detailed description here.
Optionally, fig. 12 is a top view structural diagram of a fourth embodiment of the double-glass partition structure provided by the present invention, wherein a screw 5 sequentially passes through a vertical plate 32 and a sidewall of the second installation portion 212 to connect and fix the upright keel 1 and the hanging frame 2; meanwhile, another screw 5 sequentially penetrates through the side supporting plate 13 and the other side wall of the second mounting part 212, and is further connected and fixed with the upright keel 1 and the hanging frame 2. The utility model aims at protecting a dual glass cuts off structure, include: the upright post keel 1 and the hanging frame 2; the upright post keel 1 is designed in a closed mode and comprises a first part 11 and a second part 12, the first part 11 and the second part 12 are connected in a sealing mode, and a middle interlayer is formed at the joint of the first part 11 and the second part 12; the hanging frames 2 are symmetrically arranged at two sides of the upright post keel 1. The single side of the glass hanging frame is locked with the upright post keel through a screw, so that the shape of the glass hanging frame is changed along with the deformation of the upright post keel in the fireproof detection process, and meanwhile, a gap for fire channeling is not generated between the glass hanging frame and the keel, and the hook is effectively prevented from falling off; meanwhile, the hanging and the dismounting are more convenient, and the anti-theft is enhanced. The upright post keel is designed in a closed manner, and an interlayer for blocking the front and rear hook holes is arranged in the middle of the upright post keel, so that the problem that the front and rear hook holes are easy to blow fire in the fireproof detection process is solved; in sound insulation detection, the influence of the through holes of the front and rear hook holes on the sound insulation performance calculation value is avoided; simultaneously, the upright column keel has good strength, and the problem of uneven punched surface of the keel is solved.
It is to be understood that the above-described embodiments of the present invention are merely illustrative of or explaining the principles of the invention and are not to be construed as limiting the invention. Therefore, any modification, equivalent replacement, improvement and the like made without departing from the spirit and scope of the present invention should be included in the protection scope of the present invention. Further, it is intended that the appended claims cover all such variations and modifications as fall within the scope and boundaries of the appended claims or the equivalents of such scope and boundaries.
Claims (10)
1. The utility model provides a dual glass cuts off structure which characterized in that includes: a column keel (1) and a hanging frame (2);
the upright post keel (1) is designed in a closed mode and comprises a first portion (11) and a second portion (12), the first portion (11) and the second portion (12) are connected in a sealing mode, and a middle partition layer is formed at the joint of the first portion and the second portion;
the hanging frames (2) are symmetrically arranged on two sides of the upright post keel (1).
2. The double glass partition structure of claim 1,
the first part (11) is designed to be open and comprises a first part main body, a first bulge (111) is formed in the middle of the first part main body, and supporting plates (113) are respectively formed at two ends of the first part main body;
the second part (12) is designed in a closed mode and comprises a second part main body, a second protrusion (121) is arranged on the second part main body, close to the supporting face of the first protrusion (111), and the second protrusion (121) is matched with a first groove (112) in the first protrusion (111) and is embedded into the first groove (112).
3. The double glass partition structure of claim 1,
the first part (11) and the second part (12) are of closed design, and the first part (11) and the second part (12) are arranged symmetrically to one another.
4. The double glass partition structure according to claim 2, further comprising a side support plate (13);
the two side supporting plates (13) are respectively arranged on the two supporting surfaces of the first part (11) and are used for being connected with the hanging frame (2).
5. The double glass partition structure of claim 1,
the first portion (11) and the second portion (12) are open-ended;
the opening of the first part (11) and the opening of the second part (12) are oppositely arranged, and a middle partition layer is formed at the joint of the opening of the first part (11) and the opening of the second part (12).
6. The double glass partition structure of claim 4,
the first part (11) comprises a first part main body, a third bulge (114) is arranged in the middle of the first part main body, and one end of the first part main body is bent towards the direction of a groove formed in the third bulge (114) to form a first supporting plate (115);
the other end of the first part main body is bent to be away from the direction of the groove formed in the third bulge (114) to form a second supporting plate (116).
7. Double glass partition structure according to claim 6, characterized in that the hanging frame (2) comprises: a hanging frame body (21);
the hanging frame body (21) is provided with a first mounting part (211) and a second mounting part (212);
first installation department (211) are used for installing glass, second installation department (212) are used for connecting stand fossil fragments (1) with the connection of hanging frame (2) is fixed.
8. The dual glass partition structure of claim 7, further comprising: a hook member (3);
the hook piece (3) is formed into a U-shaped supporting plate and comprises a bottom plate (31) and two vertical plates (32);
the bottom plate (31) is used for supporting the hanging frame (2), one of the hanging frame is connected with the vertical plate (32) through the second installation portion (212), and the other hanging frame is connected with the upright keel (32) through the upright keel (1).
9. The double glass partition structure according to claim 8, wherein the stud runner (1) is further provided with punched holes (14), and the riser (32) is connected with the punched holes (14).
10. The double glass partition structure of claim 9,
the riser (32), the backup pad (113), first backup pad (115) and second backup pad (116) respectively with second installation department (212) pass through threaded connection.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921430595.9U CN211817191U (en) | 2019-08-30 | 2019-08-30 | Double-glass partition structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921430595.9U CN211817191U (en) | 2019-08-30 | 2019-08-30 | Double-glass partition structure |
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CN211817191U true CN211817191U (en) | 2020-10-30 |
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CN201921430595.9U Active CN211817191U (en) | 2019-08-30 | 2019-08-30 | Double-glass partition structure |
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2019
- 2019-08-30 CN CN201921430595.9U patent/CN211817191U/en active Active
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