Beam plate hanging joint structure of arc-shaped ceiling plate

By using a planar keel mesh structure and multiple adjustment methods, the problems of mismatched installation and roller forming of hyperbolic ceiling panels were solved, achieving precise matching between the ceiling panels and the keel and efficient installation of aluminum strip panels.

CN223853662UActive Publication Date: 2026-01-30BEIJING CONSTRUCTION ENGINEERING GROUP CO LTD
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Patent Information

Application Number
CN202423307530.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-30
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

In the existing technology, the adjustment of the connection nodes of the hyperbolic ceiling panel is not compatible with the installation of the single-curved aluminum strip panel. The deviation of the installation position of the hanger affects the posture of the aluminum strip panel, and the traditional aluminum single panel processing is not conducive to roll forming.

Method used

The ceiling adopts a planar keel mesh structure. The main keel beam of the ceiling is composed of straight keel segments, and the secondary keel beams of the ceiling are fixedly connected. Fine adjustment is achieved through beam and plate hanging adjustment components. The ceiling panels are changed to open aluminum profiles to increase the rolling strength, and various adjustment methods are used to adjust the posture and warping of the aluminum strip panels.

Benefits of technology

It achieves precise matching between ceiling panels and keel, corrects installation errors of hangers, and improves the roll forming capability and three-dimensional appearance of aluminum strip panels.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a beam plate hanging joint structure of an arc-shaped suspended ceiling plate, which comprises a group of single curved arc-shaped structural main beams, a conversion steel frame, a suspended ceiling main keel beam, a suspended ceiling secondary keel beam and a single curved arc-shaped suspended ceiling plate, the two ends of the suspended ceiling main keel beam are correspondingly arranged at the bottom ends of two adjacent suspenders; the suspended ceiling main keel beams are fixedly connected with the suspended ceiling secondary keel beams, the tops of the beam plate hanging adjusting assemblies are buckled on the corresponding suspended ceiling secondary keel beams, and the bottoms of the beam plate hanging adjusting assemblies are adjustably connected with the corresponding suspended ceiling plates. Single control over the bottom end of a traditional suspender and the keels is converted into control over the primary keel and the secondary keel, then the posture of the suspended ceiling plate is controlled through the beam plate hanging adjusting assembly, fine adjustment is conducted on the suspended ceiling plate, and even if a large error occurs in suspender installation, correction can be conducted in time.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of decoration suspended ceiling construction, in particular to a beam-plate hanging joint structure of arc-shaped suspended ceiling plate. BACKGROUND

[0002] With the continuous improvement of architectural design level, the curved modeling interior decoration becomes the choice of more and more building interiors with its unique visual effect. At present, for the interior suspended ceiling plate of double-curved modeling, a double-curved modeling keel needs to be designed and installed, and the traditional keel installation is controlled by a hanger, and the posture adjustment of the keel is generally carried out through the connecting joint of the hanger and the keel.

[0003] Since the double-curved modeling suspended ceiling plate has the problems of inconvenient construction in terms of processing difficulty and installation mode, the designer designs the double-curved modeling interior suspended ceiling plate to be formed by a group of single-curved arc-shaped aluminum strip plates as base materials, which eliminates the processing and on-site installation of the double-curved arc-shaped plate, and only needs to process and position the single-curved arc-shaped aluminum strip plate, thereby putting forward higher requirements for the installation precision of the single-curved arc-shaped aluminum strip plate. After the traditional hanger is installed at the back of the keel, the connecting joint adjusts the posture of the double-curved modeling keel, and the keel is of double-curved modeling and the suspended ceiling plate is of single-curved arc shape, at this time, the adjustment of the double-curved modeling keel and the installation of the single-curved arc-shaped aluminum strip plate are mismatched, especially once the installation position of the hanger has a large deviation, the adjustment of the position of the keel will also affect the posture of the single-curved arc-shaped aluminum strip plate, and at the same time, the traditional suspended ceiling plate is a single aluminum single plate, which is not conducive to roll arc forming during processing.

[0004] Therefore, there is an urgent need for a beam-plate hanging joint structure of arc-shaped suspended ceiling plate to avoid the above problems. CONTENT OF THE UTILITY MODEL

[0005] The utility model aims to provide a beam-plate hanging joint structure of arc-shaped suspended ceiling plate, to solve the technical problems of the mismatch between the adjustment of the connecting joint of the existing double-curved modeling keel and the installation of the single-curved arc-shaped aluminum strip plate, the technical problem that once the installation position of the hanger has a large deviation, the adjustment of the position of the keel will also affect the posture of the single-curved arc-shaped aluminum strip plate, and the technical problem that the traditional single aluminum single plate is not conducive to roll arc forming during processing.

[0006] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme:

[0007] A beam-plate hanging joint structure of arc-shaped suspended ceiling plate, comprising a group of single-curved arc-shaped structural main beams, a conversion steel frame, a suspended ceiling main keel beam, a suspended ceiling secondary keel beam and a single-curved arc-shaped suspended ceiling plate,

[0008] The structural main beams are arranged along the transverse direction of the column along the roof main structure, the conversion steel frame is arranged along the transverse direction of the column along the roof main structure corresponding to the structural main beams, and comprises a hanger, the top end of the hanger is fixedly connected with the structural main beam,

[0009] The main ceiling joist beam is composed of straight-line joist segments with folded curves, and the two ends of the main ceiling joist beam are arranged at the bottom ends of the adjacent two hangers, and the two ends of the adjacent main ceiling joist beam and the bottom ends of the hangers are connected as one body,

[0010] The straight-line secondary ceiling joist beam perpendicular to the main ceiling joist beam is fixedly connected between the two adjacent main ceiling joist beams, and two secondary ceiling joist beams are arranged on each main ceiling joist beam, and the main ceiling joist beam and the secondary ceiling joist beam form a planar joist net,

[0011] The beam plate hanging connection adjusting assembly is arranged corresponding to the secondary ceiling joist beam in the longitudinal direction, and corresponding to the ceiling plate in the transverse direction,

[0012] The top of the beam plate hanging connection adjusting assembly is buckled on the corresponding secondary ceiling joist beam, and the bottom of the beam plate hanging connection adjusting assembly is adjustably connected with the corresponding ceiling plate,

[0013] The beam plate hanging connection adjusting assembly comprises a hoop connecting part, a ceiling posture adjusting part and a ceiling warping adjusting part,

[0014] The hoop connecting part is connected to the secondary ceiling joist beam in the length direction of the secondary ceiling joist beam,

[0015] The ceiling posture adjusting part is adjustably connected with the bottom of the hoop connecting part, and the ceiling posture adjusting part is adjustably connected with the bottom of the hoop connecting part by swinging around a first horizontal axis in the cross section,

[0016] The top of the ceiling warping adjusting part is adjustably connected with the bottom of the ceiling posture adjusting part by swinging around a second horizontal axis in the cross section, and the second horizontal axis is perpendicular to the first horizontal axis,

[0017] The bottom of the ceiling warping adjusting part is fixedly connected with the ceiling plate.

[0018] The main ceiling joist beam is a C-shaped steel, and the main ceiling joist beam comprises a main beam back plate and a main beam side plate, and the secondary ceiling joist beam is a C-shaped steel with the same size as the main ceiling joist beam, comprising a secondary beam back plate and a secondary beam side plate.

[0019] The secondary ceiling joist beam and the main ceiling joist beam are fixedly connected through a primary-secondary beam connecting part, the primary-secondary beam connecting part is an angle piece, the primary-secondary beam connecting part comprises a main joist connecting limb plate and a secondary joist connecting limb plate, the main joist connecting limb plate is tightly attached to the main beam back plate and is connected through a main joist connecting bolt, and the secondary joist connecting limb plate is tightly attached to the secondary beam back plate and is connected through a secondary joist connecting bolt.

[0020] The hoop connecting part comprises a hoop main plate and a hoop back plate, the hoop main plate is in the shape of Ω, the hoop main plate and the hoop back plate are arranged around the secondary furred beam, and the top and bottom of the hoop back plate are fixedly connected with the two foot limb plates of the hoop main plate through hoop bolts.

[0021] The bottom of the hoop back plate extends downward and is provided with a back plate round hole and a back plate arc long hole upward and downward,

[0022] The ceiling posture adjusting part is an angle part, comprising a height parallel adjusting limb plate and a height vertical adjusting limb plate, a group of vertical parallel plate adjusting long holes and a group of vertical vertical plate adjusting long holes are correspondingly and oppositely provided on the height parallel adjusting limb plate and the height vertical adjusting limb plate, the height parallel adjusting limb plate is closely attached to the back side of the hoop back plate, the hoop bolt at the bottom does not pass through the parallel plate adjusting long hole or passes through the parallel plate adjusting long hole to anchor the hoop back plate and the height parallel adjusting limb plate, the back plate round hole and the back plate arc long hole are aligned with the same parallel plate adjusting long hole and correspondingly pass through the posture adjusting part fixing bolt and the ceiling plate posture adjusting bolt and are anchored.

[0023] The ceiling posture adjusting part is an angle part, comprising a height parallel adjusting limb plate and a height vertical adjusting limb plate, a group of vertical parallel plate adjusting long holes and a group of vertical vertical plate adjusting long holes are correspondingly and oppositely provided on the height parallel adjusting limb plate and the height vertical adjusting limb plate, the height parallel adjusting limb plate is closely attached to the back side of the hoop back plate, the hoop bolt at the bottom does not pass through the parallel plate adjusting long hole or passes through the parallel plate adjusting long hole to anchor the hoop back plate and the height parallel adjusting limb plate, the back plate round hole and the back plate arc long hole are aligned with the same parallel plate adjusting long hole and correspondingly pass through the posture adjusting part fixing bolt and the ceiling plate posture adjusting bolt and are anchored.

[0024] The connecting lines of the ceiling warping adjusting parts form an arc line fitting the bending curvature of the ceiling plate at the position, the ceiling plate is an open C-shaped groove aluminum material, comprising a main panel and two end bending edge plates reversely bent towards the back side, and an inner support angle part is inserted into the ceiling plate, and the bottom of the ceiling warping adjusting part is fixedly connected with the inner support angle part.

[0025] The warping vertical connecting limb plate is provided with a ceiling inner support connecting hole,

[0026] The inner support angle part comprises an inner support parallel limb plate and an inner support vertical limb plate, the top surface of the inner support parallel limb plate is closely attached to the bottom surface of the warping vertical connecting limb plate, the inner support parallel limb plate is provided with an inner support connecting hole corresponding to the ceiling inner support connecting hole, the inner support connecting hole is aligned with the ceiling inner support connecting hole and is anchored through the inner support connecting bolt, and the top surface of the inner support parallel limb plate at the two ends of the inner support angle part is closely attached to the bottom surface of the turn-up limb plate on the bending edge plate and is anchored through the anchor bolt.

[0027] Compared with the prior art, the utility model has the following characteristics and beneficial effects:

[0028] The utility model discloses a plane keel net is designed to the double curvature modeling keel, the linear type keel section of folding instead of curvature is composed to the main keel beam of ceiling, and the secondary keel beam of ceiling is fixedly connected between the adjacent main keel beam of ceiling, then the ceiling board is hung on the secondary keel, makes the single curved arc aluminum strip board on the linear type secondary keel conversion single curve connection, and the ceiling board is matched with the connection of keel, and the single control between the bottom end of traditional suspender and keel is converted into the control to main secondary keel, and then the attitude of ceiling board is controlled through the beam board hanging adjustment assembly, and the ceiling board is finely adjusted, and even if the suspender installation has larger error, can also be corrected in time.

[0029] Two, the material of ceiling board of the utility model changes from aluminum veneer to open aluminum profile, and the thickness of aluminum profile is unchanged, and the height of aluminum profile is higher, and the new profile scheme is more favorable to roll arc forming, and the reverse edge not only can play the role of strengthening roll arc intensity, but also can be used as the accessory connection edge, and the inner bracing angle piece is inserted in the aluminum veneer, realizes the connection between the ceiling board and the secondary keel, and the increase of the height of the edge also makes the stereoscopic feeling of appearance effect stronger.

[0030] Three, the utility model has three adjustment modes, and the installation height of ceiling board and the left and right fluctuation angle in the section of ceiling board are adjusted respectively by the ceiling attitude adjusting part, and the up and down warping angle in the section of ceiling board is adjusted by the ceiling warping adjusting part. BRIEF DESCRIPTION OF DRAWINGS

[0031] The utility model will be further explained in detail in combination with the drawings.

[0032] Figure 1 It is the structure schematic view of the beam board hanging joint structure of the arc ceiling board of the utility model.

[0033] Figure 2 It is Figure 1 The local enlarged view in

[0034] Figure 3 It is Figure 2 The structure schematic view of the main keel beam and the secondary keel beam connection in

[0035] Figure 4 It is Figure 3 The side structure schematic view of

[0036] Figure 5 It is Figure 2 The structure schematic view of the main secondary beam connecting piece in

[0037] Figure 6 It is Figure 5 The overhead structure schematic view of

[0038] Figure 7 It is Figure 2 The structure schematic view of the beam board hanging adjustment assembly in

[0039] Figure 8 is Figure 7 Split view of the beam-to-panel hanger adjustment assembly.

[0040] Figure 9 is Figure 7 Side view of the structure.

[0041] Figure 10 is Figure 9 Partial enlarged view of the single beam-to-panel hanger adjustment assembly.

[0042] Figure 11 is Figure 10 Split view of the beam-to-panel hanger adjustment assembly.

[0043] Reference signs:

[0044] 1 - structure main beam;

[0045] 2 - suspended ceiling panel, 21 - main panel, 22 - curved edge panel, 23 - inner support corner piece, 231 - inner support parallel limb panel, 232 - inner support perpendicular limb panel, 233 - inner support connecting hole, 24 - inner support connecting bolt, 25 - anchor bolt;

[0046] 3 - conversion steel frame, 31 - suspending rod;

[0047] 4 - suspended ceiling main furring beam, 41 - main beam back panel, 42 - main beam side panel;

[0048] 5 - suspended ceiling secondary furring beam, 51 - secondary beam back panel, 52 - secondary beam side panel;

[0049] 6 - main-secondary beam connecting piece, 61 - main furring connecting limb panel, 62 - secondary furring connecting limb panel, 63 - main furring connecting bolt, 64 - secondary furring connecting bolt;

[0050] 7 - beam-to-panel hanger adjustment assembly,

[0051] 71 - hoop main panel, 72 - hoop back panel, 721 - back panel round hole, 722 - back panel arc-shaped long round hole;

[0052] 73 - suspended ceiling posture adjustment piece, 731 - height parallel adjustment limb panel, 732 - height perpendicular adjustment limb panel, 733 - parallel panel adjustment long round hole, 734 - perpendicular panel adjustment long round hole;

[0053] 74 - suspended ceiling warping adjustment piece, 741 - warping parallel adjustment limb panel, 742 - warping perpendicular connecting limb panel, 743 - parallel limb arc-shaped long round hole, 744 - parallel limb round hole, 745 - suspended ceiling inner support connecting hole;

[0054] 75-brace bolt, 76-attitude adjusting member fixing bolt, 77-ceiling panel attitude adjusting bolt, 78-ceiling panel warping adjusting bolt, 79-warping adjusting member fixing bolt. DETAILED DESCRIPTION

[0055] Embodiments are described with reference to Figures 1-11 as shown, see Figure 1 and 9 As shown, the double-curved ceiling includes a set of vertically single-curved outwardly convex ceiling panels, which are horizontally spaced according to columns. The beam-panel hanging joint structure of the curved ceiling panel includes a set of single-curved structural beams 1, conversion steel frames 3, ceiling main keel beams 4, ceiling secondary keel beams 5 and single-curved ceiling panels 2.

[0056] The structural beams 1 are horizontally spaced according to columns along the main roof structure, and the conversion steel frames 3 are horizontally spaced along the main roof structure corresponding to the structural beams 1, and include hangers 31, the top ends of which are fixedly connected to the structural beams 1.

[0057] The ceiling main keel beams 4 are composed of straight-line keel segments that are replaced by curves, and the two ends of the ceiling main keel beams 4 are correspondingly arranged at the bottom ends of the adjacent two hangers 31, and the two ends of the adjacent ceiling main keel beams 4 and the bottom ends of the hangers 31 are connected as one.

[0058] The straight-line ceiling secondary keel beams 5 perpendicular to the ceiling main keel beams 4 are fixedly connected between the two adjacent ceiling main keel beams 4, and two ceiling secondary keel beams 5 are arranged on each ceiling main keel beam 4, and the ceiling main keel beams 4 and the ceiling secondary keel beams 5 form a planar keel net.

[0059] The ceiling main keel beams 4 are C-shaped steel, and include a main beam back plate 41 and a main beam side plate 42, and the ceiling secondary keel beams 5 are C-shaped steel with the same size as the ceiling main keel beams 4, and include a secondary beam back plate 51 and a secondary beam side plate 52. The ceiling secondary keel beams 5 are fixedly connected to the ceiling main keel beams 4 through main-secondary beam connectors 6, the main-secondary beam connectors 6 are corner pieces, and include main keel connecting limb plates 61 and secondary keel connecting limb plates 62, the main keel connecting limb plates 61 are tightly attached to the main beam back plate 41 and connected through main keel connecting bolts 63, and the secondary keel connecting limb plates 62 are tightly attached to the secondary beam back plate 51 and connected through secondary keel connecting bolts 64.

[0060] The beam-panel hanging joint adjusting assembly 7 is longitudinally arranged corresponding to the ceiling secondary keel beams 5, and is horizontally arranged corresponding to the ceiling panels 2. The top of the beam-panel hanging joint adjusting assembly 7 is buckled on the corresponding ceiling secondary keel beam 5, and the bottom of the beam-panel hanging joint adjusting assembly 7 is adjustably connected to the corresponding ceiling panel 2.

[0061] The beam plate hanging connection adjusting assembly 7 comprises a hoop connecting part, a ceiling posture adjusting part 73 and a ceiling warping adjusting part 74.

[0062] The hoop connecting part is spaced and connected to the ceiling secondary keel beam 5 along the length direction of the ceiling secondary keel beam 5.

[0063] The ceiling posture adjusting part 73 is adjustably connected to the bottom of the hoop connecting part, and the ceiling posture adjusting part 73 is adjustably connected to the bottom of the hoop connecting part by swinging around a first horizontal axis in a cross section.

[0064] The top of the ceiling warping adjusting part 74 is adjustably connected to the bottom of the ceiling posture adjusting part 73 by swinging around a second horizontal axis in a cross section, and the second horizontal axis is perpendicular to the first horizontal axis.

[0065] The hoop connecting part comprises a hoop main plate 71 and a hoop back plate 72, the hoop main plate 71 is in the shape of Ω, the hoop main plate 71 and the hoop back plate 72 are enclosed around the ceiling secondary keel beam 5, and the top and the bottom of the hoop back plate 72 are fixedly connected to the two foot limb plates of the hoop main plate 71 by hoop bolts 75.

[0066] The bottom of the hoop back plate 72 extends downward and is provided with a back plate round hole 721 and a back plate arc-shaped long hole 722. The ceiling posture adjusting part 73 is an angle piece comprising a height parallel adjusting limb plate 731 and a height vertical adjusting limb plate 732, a group of vertical parallel plate adjusting long holes 733 and a group of vertical vertical plate adjusting long holes 734 are respectively and correspondingly provided on the height parallel adjusting limb plate 731 and the height vertical adjusting limb plate 732, the height parallel adjusting limb plate 731 is close to the back side of the hoop back plate 72, the hoop bolts 75 at the bottom do not pass through the parallel plate adjusting long holes 733 or pass through the parallel plate adjusting long holes 733 to anchor the hoop back plate 72 and the height parallel adjusting limb plate 731, and the back plate round hole 721 and the back plate arc-shaped long hole 722 are aligned with the same parallel plate adjusting long hole 733 and correspondingly pass through the posture adjusting part fixing bolt 76 and the ceiling plate posture adjusting bolt 77 and are anchored.

[0067] The ceiling warping adjusting part 74 is an angle piece comprising a warping parallel adjusting limb plate 741 and a warping vertical connecting limb plate 742, the warping parallel adjusting limb plate 741 is provided with a parallel limb arc-shaped long hole 743 and a parallel limb round hole 744, the warping parallel adjusting limb plate 741 is close to the back side of the height vertical adjusting limb plate 732, the parallel limb arc-shaped long hole 743 and the parallel limb round hole 744 are aligned with the bottommost vertical plate adjusting long hole 734 and correspondingly pass through the ceiling plate warping adjusting bolt 78 and the warping adjusting part fixing bolt 79 and are anchored, and the warping adjusting part fixing bolt 79 and the ceiling plate warping adjusting bolt 78 are vertically limited in the same vertical plate adjusting long hole 734.

[0068] The curved vertical connecting limb plate 742 has a ceiling inner support connecting hole 745, the inner support angle piece 23 includes an inner support parallel limb plate 231 and an inner support vertical limb plate 232, the top surface of the inner support parallel limb plate 231 is tightly attached to the bottom surface of the curved vertical connecting limb plate 742, the inner support parallel limb plate 231 has an inner support connecting hole 233 corresponding to the ceiling inner support connecting hole 745, the inner support connecting hole 233 is aligned with the ceiling inner support connecting hole 745 and is anchored by the inner support connecting bolt 24, and the top surface of the inner support parallel limb plate 231 at both ends of the inner support angle piece 23 is tightly attached to the bottom surface of the folded edge limb plate on the bent edge plate 22 and is anchored by the anchor bolt 25.

[0069] The curved line formed by the connecting lines of each ceiling curved adjusting piece 74 fits the bending curvature of the ceiling plate at the position where the ceiling curved adjusting piece 74 is located, the ceiling plate 2 is an open C-shaped groove aluminum material, the height of the aluminum profile is changed from 15 mm to 20 mm, including the main panel 21 and the bent edge plate 22 which is reversely bent towards the back side at both ends, the ceiling plate 2 is inserted with an inner support angle piece 23, the length of the inner support angle piece 23 is not greater than the width between the inner sides of the bent edge plates 22 at both sides of the ceiling plate 2, the height of the inner support angle piece 23 is not greater than the groove height of the ceiling plate 2, the width of the inner support angle piece 23 is not greater than the width of the curved vertical connecting limb plate 742, and the bottom of the ceiling curved adjusting piece 74 is fixedly connected with the inner support angle piece 23.

[0070] The construction method of the beam plate hanging joint structure of the arc-shaped ceiling plate is as follows:

[0071] Step one, deepening design of the ceiling structure: a BIM model of the overall hyperbolic ceiling is established, the hyperbolic ceiling is designed as a group of vertically single-curved arc-shaped ceiling plates which are outward convex, the ceiling plates 2 are arranged in sections along the order of the plate to form the ceiling plate 2, and the processing quantity and length of each ceiling plate 2 and the size of each plate joint are determined in the model.

[0072] Step two, deepening design of the installation point: the main steel structure of the roof which has been completed is scanned, information is collected, a point model is formed by BIM modeling, data cooperation is performed with the BIM model of the hyperbolic ceiling in step one, and the installation point of each conversion steel frame 3, ceiling main girder 4, ceiling secondary girder 5 and beam plate hanging adjusting assembly 7 is preformed in the point model to determine the quantity, size and installation point of each part.

[0073] Step three, construction of the conversion steel frame: the conversion steel frame 3 is installed according to the installation point determined in step two, the conversion steel frame 3 is hoisted as a whole, and the top end of the hoisting rod 31 is fixedly connected with the main beam 1 of the structure.

[0074] Step four, construction of the ceiling main girder: the ceiling main girder is installed according to the installation point determined in step two, that is, the ceiling main girder 4 is hoisted, and then the bottom end of each hoisting rod 31 is connected with the corresponding end of the ceiling main girder 4.

[0075] Step five, construction of the secondary keel beam of the suspended ceiling: according to the installation points determined in step two, the beam plate hanging connection adjusting assembly 7 is pre-installed on the secondary keel beam of the suspended ceiling, then the secondary keel beam of the suspended ceiling 5 is hoisted as a whole, and the two ends of the secondary keel beam of the suspended ceiling 5 are fixedly connected with the corresponding main keel beams 4 of the suspended ceiling according to the installation points determined in step two.

[0076] Step six, construction of the suspended ceiling plate: the corresponding suspended ceiling plate 2 is hoisted, and the suspended ceiling plate 2 is connected with the corresponding beam plate hanging connection adjusting assembly 7 according to the installation points determined in step two.

[0077] Step seven, secondary modeling and rough adjustment: the bottom end position of the beam plate hanging connection adjusting assembly 7 is scanned, information is collected, BIM modeling is performed, the preset point position model in step two is compared, and then adjustment is performed, so that the bottom end connecting line of each beam plate hanging connection adjusting assembly 7 forms an arc line that fits the bending curvature of the suspended ceiling plate at the position.

[0078] Step eight, fine adjustment of the beam plate hanging connection adjusting assembly: three kinds of adjustment are performed until the inner arc surface of each suspended ceiling plate is smooth and flat without obvious warping and undulation.

[0079] The beam plate hanging connection node adjusting mechanism of the utility model is as follows:

[0080] The hoop bolt 75, the posture adjusting piece fixing bolt 76 and the suspended ceiling plate posture adjusting bolt 77 adjust the installation height of the suspended ceiling plate by selecting the parallel plate adjusting long circular hole 733 and the anchoring position in the parallel plate adjusting long circular hole 733, and the suspended ceiling plate posture adjusting bolt 77 also adjusts the swing angle of the suspended ceiling posture adjusting piece 73 in the back plate arc-shaped long circular hole 722, thereby driving the left and right fluctuation angle in the cross section of the suspended ceiling plate 2.

[0081] The suspended ceiling plate warping adjusting bolt 78 adjusts the swing angle of the suspended ceiling warping adjusting piece 784 in the parallel plate adjusting long circular hole 733, thereby driving the up and down warping angle in the cross section of the suspended ceiling plate 2.

Claims

1. A beam-to-slab hanger joint structure of a curved ceiling panel, characterized by: The structure main beam (1) is arranged along the roof main structure in the column along the transverse direction, the conversion steel frame (3) is arranged along the roof main structure in the transverse direction, and the conversion steel frame (3) is arranged along the roof main structure in the transverse direction. The conversion steel frame (3) is arranged along the roof main structure in the transverse direction, and the conversion steel frame (3) includes a hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31).

2. The beam-to-slab hanger joint structure of curved ceiling panels according to claim 1, characterized in that: The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31).

3. The beam-to-slab hanger connection of curved ceiling panels according to claim 2, characterized in that: The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). 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The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the hanger rod (31). The hanger rod (31) is fixedly connected to the structure main beam (1) at the top end of the h The hoop connecting part comprises a hoop main plate (71) and a hoop back plate (72), the hoop main plate (71) is in the shape of Ω, the hoop main plate (71) and the hoop back plate (72) are enclosed around the secondary ceiling joist beam (5), and the top and bottom of the hoop back plate (72) are fixedly connected with the two foot limb plates of the hoop main plate (71) through hoop bolts (75).

5. The beam-to-slab hanger joint structure of an arched ceiling slab according to claim 4, characterized in that: The bottom of the hoop back plate (72) extends downward and is provided with a back plate round hole (721) and a back plate arc-shaped long hole (722) upward and downward, The ceiling posture adjusting part (73) is an angle piece, comprising a height parallel adjusting limb plate (731) and a height vertical adjusting limb plate (732), a group of vertical parallel plate adjusting long holes (733) and a group of vertical vertical plate adjusting long holes (734) are correspondingly and oppositely provided on the height parallel adjusting limb plate (731) and the height vertical adjusting limb plate (732), the height parallel adjusting limb plate (731) is tightly attached to the back side of the hoop back plate (72), the hoop bolt (75) at the bottom does not pass through the parallel plate adjusting long hole (733) or passes through the parallel plate adjusting long hole (733) to anchor the hoop back plate (72) and the height parallel adjusting limb plate (731), the back plate round hole (721) and the back plate arc-shaped long hole (722) are aligned with the same parallel plate adjusting long hole (733) and correspondingly pass through the posture adjusting part fixing bolt (76) and the ceiling plate posture adjusting bolt (77) and are anchored.

6. The beam plate hanging joint structure of the arc-shaped ceiling plate according to claim 5, characterized in that: The ceiling warping adjusting part (74) is an angle piece, comprising a warping parallel adjusting limb plate (741) and a warping vertical connecting limb plate (742), the warping parallel adjusting limb plate (741) is provided with a parallel limb arc-shaped long hole (743) and a parallel limb round hole (744) upward and downward, the warping parallel adjusting limb plate (741) is tightly attached to the back side of the height vertical adjusting limb plate (732), the parallel limb arc-shaped long hole (743) and the parallel limb round hole (744) are aligned with the bottommost vertical plate adjusting long hole (734) and correspondingly pass through the ceiling plate warping adjusting bolt (78) and the warping adjusting part fixing bolt (79) and are anchored, and the warping adjusting part fixing bolt (79) and the ceiling plate warping adjusting bolt (78) are vertically limited in the same vertical plate adjusting long hole (734).

7. The beam-to-slab hanger connection node structure of an arched ceiling slab according to claim 6, characterized in that: The connecting lines of the warping adjusting parts (74) form an arc line fitting the bending curvature of the ceiling plate at the position, the ceiling plate (2) is an open C-shaped groove aluminum material, comprising a main panel (21) and two end bending plates (22) reversely bent toward the back side, and an inner support angle piece (23) is inserted in the ceiling plate (2), and the bottom of the warping adjusting part (74) is fixedly connected with the inner support angle piece (23).

8. The beam-to-slab hanger connection of curved ceiling panels according to claim 7, characterized in that: The warping vertical connecting limb plate (742) is provided with a ceiling inner support connecting hole (745), The inner support angle piece (23) comprises an inner support parallel limb plate (231) and an inner support vertical limb plate (232), the top surface of the inner support parallel limb plate (231) is tightly attached to the bottom surface of the warped vertical connecting limb plate (742), the inner support parallel limb plate (231) is provided with an inner support connecting hole (233) corresponding to the suspended ceiling inner support connecting hole (745), the inner support connecting hole (233) is aligned with the suspended ceiling inner support connecting hole (745) and is anchored through the inner support connecting bolt (24), and the top surface of the inner support parallel limb plate (231) at both ends of the inner support angle piece (23) is tightly attached to the bottom surface of the turned edge limb plate on the bent edge plate (22) and is anchored through the anchor nail (25).