CN211312965U - Combined frame system - Google Patents

Combined frame system Download PDF

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Publication number
CN211312965U
CN211312965U CN201920591594.6U CN201920591594U CN211312965U CN 211312965 U CN211312965 U CN 211312965U CN 201920591594 U CN201920591594 U CN 201920591594U CN 211312965 U CN211312965 U CN 211312965U
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China
Prior art keywords
rigidity
frame system
strong
fastening
weak
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CN201920591594.6U
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Chinese (zh)
Inventor
谢斌泉
其他发明人请求不公开姓名
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Hunan Jianzhi Curtain Wall Installation Design Co Ltd
Hunan Goldwell New Materials Technology Co Ltd
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Hunan Jianzhi Curtain Wall Installation Design Co Ltd
Hunan Goldwell New Materials Technology Co Ltd
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Abstract

The utility model discloses a modular frame system, including many frames, each frame encloses to close to connect and forms frame system, and the frame includes even and a pair of strong rigidity exoskeleton in the weak rigidity, and even in the weak rigidity be located between a pair of strong rigidity exoskeleton and two strong rigidity exoskeleton of fixed connection, and even in the weak rigidity or the strong rigidity exoskeleton on the shaping have the lock joint position, and the lock joint position is detained and is equipped with layering or joint strip. The frame system has the advantages of simple and reliable structure, low cost, convenience in installation, high strength, thinness and attractiveness.

Description

Combined frame system
Technical Field
The utility model relates to a building engineering field especially relates to a modular frame system.
Background
In the existing fireproof glass wall and partition, the stand columns are in a light-weight steel form or a full-weight steel form, wherein the stand columns adopt the fireproof glass wall and partition in the full-weight steel form, the stress is better, but the defects of poor appearance and inconvenience in installation of fireproof glass and fireproof adhesive tapes exist, the stand columns adopt the fireproof glass wall and partition in the full-weight steel form, the appearance is exquisite, but the problems of poor mechanical property and overhigh cost exist, and the strength design requirement is met by large size.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome the not enough of prior art, provide a simple structure reliable, with low costs, simple to operate, intensity height, fine pleasing to the eye combination formula frame system.
In order to solve the technical problem, the utility model discloses a following technical scheme:
the utility model provides a modular frame system, includes many frames, and each frame encloses to close to connect and forms frame system, the frame includes even and a pair of strong rigidity exoskeleton in the weak rigidity, even is located between a pair of strong rigidity exoskeleton and two strong rigidity exoskeleton of fixed connection in the weak rigidity, the shaping has the lock joint position on even or the strong rigidity exoskeleton in the weak rigidity, the lock joint position lock joint has layering or joint strip.
As a further improvement of the above technical solution:
the buckling position is formed on one of the strong and rigid outer frameworks.
The buckling position is formed on one side of the outer framework with strong rigidity, and the pressing strip or the sealant strip is buckled at the buckling position.
The buckling positions are formed on two sides of the outer framework with high rigidity, and the two buckling positions are matched with the two buckling strips.
The buckling positions are formed on two sides of the outer framework with high rigidity, one buckling position is matched with one pressing strip in a buckling mode, and the other buckling position is matched with one sealing rubber strip in a buckling mode.
The fastening locations are formed on the weak stiffness intermediate link.
The buckling position is formed on one side of the weak-rigidity middle connecting piece, and the pressing strip or the sealant strip is buckled at the buckling position.
The buckling positions are formed on two sides of the weak-rigidity middle connecting piece, one buckling position is matched with and buckled with a pressing strip, and the other buckling position is matched with and buckled with a sealing rubber strip.
The low-rigidity middle connecting piece is of an integrally formed structure, grooves are formed in the high-rigidity outer frameworks on two sides, bosses are arranged on two sides of the low-rigidity middle connecting piece, and the bosses are sunk in the grooves on the corresponding sides and are connected with the grooves in a welded mode.
The weak rigidity middle connecting piece is of a split structure, and the weak rigidity middle connecting piece of the split structure is welded and connected with the strong rigidity outer framework on the corresponding side.
The opposite side strong rigidity outer framework of the strong rigidity outer framework positioned on the pressing strip side is formed with a side blocking part, and the side blocking part and the pressing strip are positioned at the same side and form a clamping groove for clamping the plate between the side blocking part and the pressing strip.
And a limiting part for limiting contact with the movable frame system or the fixed frame system is formed on the opposite side of the batten on the high-rigidity outer framework close to the batten.
The strong rigidity outer framework with the side blocking parts is provided with limiting parts for limiting the contact of the fixed framework system at the opposite sides of the side blocking parts.
One side of one of the strong rigidity outer frameworks is formed with a limiting part used for contacting and limiting the movable framework system.
Compared with the prior art, the utility model has the advantages of:
the utility model discloses a combination formula frame system, including many frames, each frame encloses to close to connect and forms frame system, and the frame includes even and a pair of strong rigidity exoskeleton in the weak rigidity, and even in the weak rigidity be located between a pair of strong rigidity exoskeleton and two strong rigidity exoskeleton of fixed connection, and the shaping has the lock joint position on even or strong rigidity exoskeleton in the weak rigidity, and the lock joint position is buckled and is equipped with layering or joint strip. The frame system is formed by assembling and welding the frames, each frame is composed of a pair of strong-rigidity outer frameworks and a weak-rigidity middle connecting piece, the weak-rigidity middle connecting piece is an intermediate piece, and the effect of limiting the distance between the pair of strong-rigidity outer frameworks is achieved during connection. The high-rigidity outer frameworks are thick heavy steel, the low-rigidity middle connecting piece is thin light steel, the high-rigidity outer frameworks of the adjacent frames are welded and connected with each other when the frames are assembled and welded, the high-rigidity outer frameworks are main stress parts, the strength is high, the force bearing performance is good, the size of the visible surface of the frames can be reduced, and the stability of a frame system can be improved; the weak-rigidity middle connecting piece adopts thin light steel, the rigidity of the weak-rigidity middle connecting piece is weaker than that of the strong-rigidity outer framework, and the split combined structure has the advantages of simple structure, low cost and convenience in installation; through the special design of the section of the weak rigidity middle connecting piece or the strong rigidity outer framework section bar, the section bar is provided with a buckling position of a buckling pressing strip or a sealing rubber strip, and the convenience of installation is further improved.
Drawings
Fig. 1 is a schematic structural diagram of embodiment 1 of the present invention.
Fig. 2 is a schematic structural diagram of embodiment 2 of the present invention.
Fig. 3 is a schematic structural diagram of embodiment 3 of the present invention.
Fig. 4 is a schematic structural diagram of embodiment 4 of the present invention.
Fig. 5 is a schematic structural diagram of embodiment 5 of the present invention.
Fig. 6 is a schematic structural diagram of embodiment 6 of the present invention.
Fig. 7 is a schematic structural view of embodiment 7 of the present invention.
Fig. 8 is a schematic structural diagram of embodiment 8 of the present invention.
The reference numerals in the figures denote:
1. a strong and rigid outer skeleton; 11. a groove; 12. a side stop portion; 13. a limiting part; 2. a weak stiffness mid-link; 21. a boss; 3. layering; 4. a plate member; 5. a clamping groove; 6. buckling and positioning; 7. and sealing rubber strips.
Detailed Description
The invention will be described in further detail with reference to the drawings and specific examples.
Example 1:
as shown in fig. 1, the utility model discloses modular frame system's first embodiment, including many frames, each frame encloses to close to connect and forms frame system, and the frame includes even 2 and a pair of strong rigidity exoskeleton 1 in the weak rigidity, and even 2 is located between a pair of strong rigidity exoskeleton 1 and two strong rigidity exoskeleton 1 of fixed connection in the weak rigidity, and even 2 or the strong rigidity exoskeleton 1 go up the shaping in the weak rigidity has lock joint position 6, and the 6 knots in lock joint position are equipped with layering 3 or joint strip 7. The frame system is formed by assembling and welding the frames, each frame is composed of a pair of strong-rigidity outer frameworks 1 and a weak-rigidity middle connecting piece 2, the weak-rigidity middle connecting piece 2 is an intermediate piece, and the effect of limiting the distance between the pair of strong-rigidity outer frameworks 1 is achieved during connection. The high-rigidity outer frameworks 1 are made of thick heavy steel, the low-rigidity middle connecting piece 2 is made of thin light steel, when the frames are assembled and welded, the high-rigidity outer frameworks 1 of the adjacent frames are welded and connected with each other, the high-rigidity outer frameworks 1 are main stress parts, the strength is high, the bearing performance is good, the size of the visible surface of the frames can be reduced, and the stability of a frame system can be improved; the weak rigidity middle connecting piece 2 adopts thin light steel, the rigidity of the weak rigidity middle connecting piece is weaker than that of the strong rigidity outer framework 1, and the split type combined structure has the advantages of simple structure, low cost and convenience in installation; through the special design of the section of the weak rigidity middle connecting piece 2 or the strong rigidity outer framework 1, the section is provided with a buckling position 6 of a buckling pressing strip 3 or a sealing rubber strip 7, and the convenience of installation is further improved.
In this embodiment, the fastening position 6 is formed on one of the strong and rigid outer frames 1. In this structure, lock joint position 6 is located strong rigidity exoskeleton 1, and during the installation, layering 3 or joint strip 7 and 6 lock joints in lock joint position form the pressure limit or the sealed limit.
In this embodiment, the fastening position 6 is formed on one side of the strong rigidity outer frame 1, and the pressing strip 3 is fastened on the fastening position 6. In the structure, the pressing strip 3 is buckled with the buckling position 6 to form a pressing edge.
In this embodiment, a side blocking portion 12 is formed on the opposite side of the strong rigidity exoskeleton 1 located on the side of the batten 3, and the side blocking portion 12 is located on the same side as the batten 3 and a clamping groove 5 for clamping the plate 4 is formed between the side blocking portion 12 and the batten 3. In the structure, the side blocking part 12 and the pressing strip 3 jointly form a clamping groove 5 for clamping the plate 4 (the plate 4 is fireproof glass) and positioning the plate 4.
In this embodiment, the weak rigidity middle connecting piece 2 is set to be an integrally formed structure, the grooves 11 are formed in the strong rigidity outer frameworks 1 on the two sides, the bosses 21 are arranged on the two sides of the weak rigidity middle connecting piece 2, and the bosses 21 are sunk in the grooves 11 on the corresponding sides and are welded with the grooves 11. In the structure, the lug boss 21 of the weak rigidity middle connecting piece 2 is matched and spliced with the groove 11 of the strong rigidity outer framework 1, and then the welding is utilized to form fixation, so that the structure is simple and reliable.
Example 2:
as shown in fig. 2, the second embodiment of the combined frame system of the present invention is substantially the same as embodiment 1 except that: in this embodiment, the fastening position 6 is formed on one side of the strong rigidity outer frame 1, and the sealing rubber strip 7 is fastened on the fastening position 6. In the structure, the sealing rubber strip 7 is buckled with the buckling position 6 to form a sealing edge.
In this embodiment, a limiting portion 13 for limiting contact with the movable frame system is formed on one side of one of the rigid outer frames 1. In this structure, the strong rigidity exoskeleton 1 is only formed with a limiting part 13 for limiting contact with the movable frame system, and this type of frame is suitable for a fixed frame (without clamping the plate 4).
Example 3:
as shown in fig. 3, the third embodiment of the combined frame system of the present invention is substantially the same as embodiment 1 except that: in this embodiment, the fastening positions 6 are formed on two sides of the strong rigidity outer frame 1, and the two fastening positions 6 are matched with the two pressing strips 3. In the structure, two fastening positions 6 are matched with two pressing strips 3, namely two plates 4 are respectively pressed on two sides, so that the structure is suitable for fixing a frame in the middle of the whole system.
Example 4:
as shown in fig. 4, the fourth embodiment of the combined frame system of the present invention is substantially the same as embodiment 1 except that: in this embodiment, the fastening positions 6 are formed on two sides of the strong rigidity outer frame 1, one fastening position 6 is matched with one pressing strip 3, and the other fastening position 6 is matched with one sealing rubber strip 7. In this structure, a lock joint position 6 matches a layering 3 of spiral-lock, another lock joint position 6 matches a joint strip 7 of spiral-lock, sets up like this for this frame one side centre gripping plate 4, the opposite side forms the sealing strip.
In this embodiment, a limiting portion 13 for limiting contact with the movable frame system or the fixed frame system is formed on the opposite side of the bead 3 of the strong rigidity exoskeleton 1 close to the bead 3. In the structure, the limit part 13 is in contact limit with the movable frame system or the fixed frame system, and the buckling position 6 is formed on the limit part 13 and is buckled with a sealing rubber strip 7, so that the structure is suitable for the end side frame of the movable frame system or the fixed frame system.
Example 5:
as shown in fig. 5, a fifth embodiment of the combined frame system of the present invention is substantially the same as embodiment 1 except that: in this embodiment, the strong rigidity exoskeleton 1 with the side baffles 12 is formed with a limiting part 13 for fixing the contact limit of the frame system on the opposite side of the side baffles 12. In the structure, the strong rigidity outer framework 1 is provided with a limiting part 13 formed on the opposite side of the side blocking part 12, is used for being in contact limiting with a fixed frame system and is suitable for the end side frame of a movable frame system.
Example 6:
as shown in fig. 6, a sixth embodiment of the combined frame system of the present invention is substantially the same as embodiment 1 except that: in this embodiment, the snap-fit locations 6 are formed on the less rigid intermediate member 2. In the structure, the fastening position 6 is positioned on the weak-rigidity middle connecting piece 2, and during installation, the pressing strip 3 or the sealing rubber strip 7 is fastened with the fastening position 6 to form a pressing edge or a sealing edge.
In this embodiment, the fastening position 6 is formed on one side of the weak rigidity middle connecting piece 2, and the pressing strip 3 is fastened at the fastening position 6. In the structure, the pressing strip 3 is buckled with the buckling position 6 to form a pressing edge.
In this embodiment, the weak rigidity middle connecting piece 2 is set to be a split structure, and the weak rigidity middle connecting piece 2 of the split structure is welded and connected with the strong rigidity outer frame 1 on the corresponding side. In this structure, lock joint position 6 sets up on link 2 in the weak rigidity of inboard, link 2 plays the effect of carrying high strong and beautifying outside outward appearance effect simultaneously in the weak rigidity of outside.
Example 7:
as shown in fig. 7, the seventh embodiment of the combined frame system of the present invention is substantially the same as embodiment 1 except that: in this embodiment, a fastening position 6 is formed on one side of the weak rigidity intermediate member 2, and the sealing rubber strip 7 is fastened to the fastening position 6. In the structure, the sealing rubber strip 7 is buckled with the buckling position 6 to form a sealing edge.
Example 8:
as shown in fig. 8, the eighth embodiment of the combined frame system of the present invention is substantially the same as embodiment 1 except that: in this embodiment, the fastening positions 6 are formed on two sides of the weak rigidity middle connecting piece 2, one fastening position 6 is matched with one pressing strip 3, and the other fastening position 6 is matched with one sealing rubber strip 7. In this structure, a lock joint position 6 matches a layering 3 of spiral-lock, another lock joint position 6 matches a joint strip 7 of spiral-lock, sets up like this for this frame one side centre gripping plate 4, the opposite side forms the sealing strip.
Although the present invention has been described with reference to the preferred embodiments, it is not intended to limit the present invention. The technical solution of the present invention can be used by anyone skilled in the art to make many possible variations and modifications, or to modify equivalent embodiments, without departing from the scope of the technical solution of the present invention, using the technical content disclosed above. Therefore, any simple modification, equivalent change and modification made to the above embodiments by the technical entity of the present invention should fall within the protection scope of the technical solution of the present invention.

Claims (14)

1. The utility model provides a modular frame system, includes many borders, and each border encloses to close to connect and forms frame system, its characterized in that: the frame includes even piece (2) and a pair of strong rigidity exoskeleton (1) in the weak rigidity, even piece (2) are located between a pair of strong rigidity exoskeleton (1) and two strong rigidity exoskeleton (1) of fixed connection in the weak rigidity, the shaping has lock joint position (6) on even piece (2) or strong rigidity exoskeleton (1) in the weak rigidity, lock joint position (6) lock joint is equipped with layering (3) or joint strip (7).
2. The modular frame system of claim 1, wherein: the fastening position (6) is formed on one of the strong and rigid outer frameworks (1).
3. The modular frame system of claim 2, wherein: the fastening position (6) is formed on one side of the strong-rigidity outer framework (1), and the pressing strip (3) or the sealing rubber strip (7) is fastened on the fastening position (6).
4. The modular frame system of claim 2, wherein: the fastening positions (6) are formed on two sides of the strong-rigidity outer framework (1), and the two fastening positions (6) are matched with the two pressing strips (3).
5. The modular frame system of claim 2, wherein: the fastening positions (6) are formed on two sides of the strong-rigidity outer framework (1), one fastening position (6) is matched with one pressing strip (3) in fastening, and the other fastening position (6) is matched with one sealing rubber strip (7) in fastening.
6. The modular frame system of claim 1, wherein: the fastening position (6) is formed on the weak-rigidity middle connecting piece (2).
7. The modular frame system of claim 6, wherein: the buckling position (6) is formed on one side of the weak-rigidity middle connecting piece (2), and the pressing strip (3) or the sealing rubber strip (7) is buckled on the buckling position (6).
8. The modular frame system of claim 6, wherein: the fastening positions (6) are formed on two sides of the weak-rigidity middle connecting piece (2), one fastening position (6) is matched with one pressing strip (3) in a fastening mode, and the other fastening position (6) is matched with one sealing rubber strip (7) in a fastening mode.
9. A modular frame system according to any of claims 1 to 8, wherein: the low-rigidity middle connecting piece (2) is of an integrally formed structure, grooves (11) are formed in the high-rigidity outer frameworks (1) on two sides, bosses (21) are arranged on two sides of the low-rigidity middle connecting piece (2), and the bosses (21) are sunken in the grooves (11) on the corresponding sides and are connected with the corresponding sides in a welding mode.
10. A modular frame system according to any of claims 1 to 8, wherein: the weak rigidity middle connecting piece (2) is arranged to be of a split structure, and the weak rigidity middle connecting piece (2) of the split structure is in welded connection with the strong rigidity outer framework (1) on the corresponding side.
11. A modular frame system according to any of claims 1 to 8, wherein: the opposite side rigidity exoskeleton (1) that is located the rigidity exoskeleton (1) of layering (3) side is formed with side fender portion (12), side fender portion (12) and layering (3) homonymy and form centre gripping groove (5) that are used for centre gripping panel (4) between the two.
12. The modular frame system of claim 11, wherein: a limiting part (13) for limiting contact with a movable frame system or a fixed frame system is formed on the opposite side of the batten (3) of the strong rigidity outer framework (1) close to the batten (3).
13. The modular frame system of claim 11, wherein: a limiting part (13) used for fixing the contact limit of a frame system is formed on the opposite side of the side blocking part (12) of the strong rigidity outer framework (1) with the side blocking part (12).
14. A modular frame system according to any of claims 1 to 8, wherein: one side of one of the strong rigidity outer frameworks (1) is formed with a limiting part (13) used for contacting and limiting the movable framework system.
CN201920591594.6U 2019-04-26 2019-04-26 Combined frame system Active CN211312965U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110080437A (en) * 2019-04-26 2019-08-02 湖南坚致幕墙安装设计有限公司 A kind of combined frame system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110080437A (en) * 2019-04-26 2019-08-02 湖南坚致幕墙安装设计有限公司 A kind of combined frame system

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