CN211286381U - Integrated suspended ceiling with heat preservation function - Google Patents

Integrated suspended ceiling with heat preservation function Download PDF

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Publication number
CN211286381U
CN211286381U CN201921997414.0U CN201921997414U CN211286381U CN 211286381 U CN211286381 U CN 211286381U CN 201921997414 U CN201921997414 U CN 201921997414U CN 211286381 U CN211286381 U CN 211286381U
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China
Prior art keywords
groove
copper substrate
mounting groove
suspended ceiling
heat preservation
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CN201921997414.0U
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Chinese (zh)
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夏进
秘克
徐恒明
陈洪钧
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Nanjing Huaxia Tiancheng Construction Co ltd
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Nanjing Huaxia Tiancheng Construction Co ltd
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Abstract

The utility model discloses an integrated suspended ceiling with heat preservation function, which comprises a suspended ceiling panel and a keel supported below the suspended ceiling, one side of the suspended ceiling panel facing the keel is provided with a mounting groove, a sealing plate for sealing the mounting groove is arranged at the notch of the mounting groove, a first copper substrate and a second copper substrate are arranged in the mounting groove, the first copper substrate is positioned above the second copper substrate, and one side of the first copper substrate facing the second copper substrate is fixedly connected with an inserting rod, one side of the second copper substrate facing the first copper substrate is provided with an inserting groove, the inserting rod is inserted in the inserting groove, a heating device is clamped between the first copper substrate and the second copper substrate, one side that the second copper base plate deviates from first copper base plate sets firmly in one side of shrouding towards the mounting groove, set up the logical groove that the circular telegram line that supplies heating device wears to establish on the shrouding. The utility model discloses has good heat retaining effect.

Description

Integrated suspended ceiling with heat preservation function
Technical Field
The utility model relates to a building furred ceiling's technical field especially relates to an integrated furred ceiling with heat preservation function.
Background
The suspended ceiling refers to the top decoration of the residential environment of a house, and is simply the decoration of the ceiling, which is one of the important parts of indoor decoration.
Chinese patent with publication number CN202672435U discloses an integrated suspended ceiling with multi-level decorative surface, which comprises a panel for decoration and keels for connecting the panel, wherein the panel has multiple layers with different heights, the two keels at the joint of the high and low layers of the suspended ceiling have upper and lower parts, a keel supporting member is arranged between the two keels, and the multi-layer integrated suspended ceiling matched with the two keels can be arranged according to the height layout of the non-planar top surface.
However, the integrated ceiling with the multi-stage decorative surface is not provided with a heat insulation structure and a component with a heat insulation effect, so that indoor and outdoor heat can flow and mix easily, the heat insulation effect is poor, and when the temperature is low in winter, the indoor temperature is reduced, and discomfort is brought to people.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model aims at providing an integrated furred ceiling with heat preservation function has improved the thermal insulation performance of furred ceiling body, and it has good heat preservation effect.
The above technical purpose of the present invention can be achieved by the following technical solutions: the utility model provides an integrated furred ceiling with heat preservation function, includes the furred ceiling panel and supports the fossil fragments in the furred ceiling below, the mounting groove has been seted up towards one side of fossil fragments to the furred ceiling panel, the notch department of mounting groove is equipped with and is used for the shrouding that the mounting groove seals, be equipped with first copper base plate and second copper base plate in the mounting groove, first copper base plate is located the top of second copper base plate, just first copper base plate has the inserted bar towards one side rigid coupling of second copper base plate, the inserted groove has been seted up towards one side of first copper base plate to the second copper base plate, the inserted bar is pegged graft in the inserted groove, heating device between first copper base plate and the second copper base plate, one side that the second copper base plate deviates from first copper base plate sets firmly in one side of shrouding towards the mounting groove, set up the logical groove that accompanies with of confession.
Through above-mentioned technical scheme, when the circular telegram line circular telegram, heating device circular telegram generates heat to give first copper base plate and second copper base plate with the heat transmission, first copper base plate and second copper base plate have good electric conductive property, and first copper base plate and second copper base plate form and disperse thermal heat-generating body and with the indoor diffusion of heat orientation, thereby make indoor temperature rise, thereby be favorable to indoor temperature rising again, played heat retaining effect. Meanwhile, the indoor temperature is improved through the heat transfer principle, and the discomfort brought to a human body when indoor moisture is evaporated and warm air is blown by the air conditioner directly is reduced.
The utility model discloses further set up to: the notch of mounting groove is equipped with the step groove, the shrouding is contradicted on the step face in step groove and is fixed on the step face in step groove through countersunk head bolt tightening.
Through above-mentioned technical scheme, adopt the mode of dismantling the connection between the step face in shrouding and step groove, the operator of being convenient for dismantles the shrouding from the step groove when heating device breaks down to take out first copper base plate and second copper base plate from the mounting groove with heating device jointly, take off first copper base plate from the second copper base plate again and change heating device.
The utility model discloses further set up to: the utility model discloses a joint structure, including suspended ceiling panel and shrouding, joint slot, joint block, clamping piece, one side that the suspended ceiling panel deviates from the mounting groove has seted up heavy groove along concatenation seam department, the joint slot has been seted up along length direction to the tank bottom in heavy groove, the clamping piece has been connect to the heavy inslot joint, the connecting piece has the fixture block towards one side in heavy groove along length direction rigid coupling, the fixture block joint is in the joint inslot, the one side that the connecting piece deviates from heavy groove and the one side that the suspended.
Through the technical scheme, the splicing seams between the ceiling panel and the sealing plate can be shielded by the splicing blocks, so that the effect that water seeps and leaks from the splicing seams between the ceiling panel and the sealing plate when the water leakage phenomenon of the roof is reduced, and the effects of plugging and seepage prevention are achieved.
The utility model discloses further set up to: and the side wall of the clamping block along the length direction is fixedly provided with an anti-slip pad which is abutted against the groove wall of the clamping groove.
Through above-mentioned technical scheme, the setting of slipmat has increased the frictional resistance between fixture block and the card slot, has strengthened the frictional resistance between joint slot and the fixture block, has reduced the fixture block from the possibility that the joint inslot breaks away from, has improved the stability of being connected between fixture block and the joint slot.
The utility model discloses further set up to: one side that the grafting piece deviates from heavy groove is seted up flutedly, the connecting axle sets firmly in the recess, the cover is equipped with the dwang on the connecting axle, the cover is equipped with the torsional spring between the cell wall of recess and dwang on the connecting axle, the both ends of torsional spring weld respectively in the cell wall of recess and the relative one side of dwang, under the normal condition, the dwang level sets up in the recess.
Through above-mentioned technical scheme, the dwang passes through the articulated connection on the connecting axle with the cooperation of torsional spring, and the operator can rotate the dwang round the articulated department between dwang and the connecting axle for the dwang extends out from the recess, thereby the operator of being convenient for makes the plug block break away from furred ceiling panel and shrouding through the pulling dwang, has reduced the degree of difficulty that the operator will take off from furred ceiling panel and shrouding.
The utility model discloses further set up to: one side of the ceiling panel, which is far away from the keel, is fixedly provided with the heat insulation plate.
According to the technical scheme, the insulation board is a rigid foam plastic board which is manufactured by taking polystyrene resin as a raw material, adding other raw auxiliary materials and polymer, heating, mixing, injecting a catalyst, extruding and molding, and has the moisture-proof, waterproof and insulation properties. The setting of heated board has further strengthened the utility model discloses an integrated furred ceiling's thermal insulation performance.
The utility model discloses further set up to: the maximum cross-sectional area of the mounting groove is larger than the cross-sectional areas of the first copper substrate and the second copper substrate.
Through above-mentioned technical scheme, when heating device ohmic heating and give first copper base plate and second copper base plate with heat transfer, the even giving off of heat is in the mounting groove on the first copper base plate of being convenient for and the second copper base plate to the homogeneity of being heated on the furred ceiling panel has been strengthened, the heat of being convenient for gives off in the indoor air uniformly.
The utility model discloses further set up to: a smoke sensor is fixedly arranged in the mounting groove, and an alarm and a controller for receiving signals of the smoke sensor are arranged on one side, close to the sealing plate, of the suspended ceiling panel.
Through above-mentioned technical scheme, when heating device breaks down and results in appearing the local burning of lighting in the furred ceiling panel, smoke transducer detects smog and sends signal for the controller, and controller control alarm carries out the early warning to remind people to take measures.
To sum up, the utility model discloses following beneficial effect has:
1. the integral heat insulation performance of the ceiling panel is enhanced, the indoor temperature in winter is improved, and the comfort level of the indoor temperature is improved;
2. between shrouding and the furred ceiling panel, all adopt between first copper base plate and the second copper base plate to dismantle the mode of connection, the operator of being convenient for dismantles the shrouding from the furred ceiling panel after getting off and unpack first copper base plate and second copper base plate apart and overhaul heating device, has reduced the degree of difficulty of operation.
Drawings
Fig. 1 is a schematic view of the structure within the mounting channel for embodying the keel, ceiling panel and one of the rotating levers in this embodiment rotated out of the recess.
Fig. 2 is a schematic structural diagram for showing a positional relationship among the first copper substrate, the heating device, and the second copper substrate in the present embodiment.
Fig. 3 is a schematic diagram of the positional relationship of the ceiling panel and the closure panel and the configuration of the smoke sensor, alarm and controller used in this embodiment.
Fig. 4 is an enlarged view of a portion a in fig. 1.
Reference numerals: 1. a ceiling panel; 11. mounting grooves; 111. a step groove; 12. closing the plate; 1211. a countersunk bolt; 122. a through groove; 123. sinking a groove; 1231. a clamping groove; 124. an insertion block; 1241. a clamping block; 1242. a non-slip mat; 1243. a groove; 1244. a connecting shaft; 1245. rotating the rod; 1246. a torsion spring; 13. a first copper substrate; 131. a plug rod; 14. a second copper substrate; 141. inserting grooves; 15. a heating device; 151. a heating rod; 152. electrifying the wire; 153. a plug; 16. a thermal insulation board; 17. a smoke sensor; 18. an alarm; 19. a controller; 2. a keel.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Example (b): referring to fig. 1, for the utility model discloses an integrated furred ceiling with heat preservation function, including furred ceiling panel 1 and fossil fragments 2, the top in house is established to fossil fragments 2 mount, and furred ceiling panel 1 supports on fossil fragments 2, and one side that furred ceiling panel 1 deviates from fossil fragments 2 bonds a heated board 16, and heated board 16 is the same with furred ceiling panel 1's planar area.
Referring to fig. 1, a mounting groove 11 is formed in one side of a ceiling panel 1 facing a keel 2, a sealing plate 12 for sealing the mounting groove 11 is arranged at a notch of the mounting groove 11, a first copper substrate 13 and a second copper substrate 14 are arranged on one side of the sealing plate 12 facing the mounting groove 11 in the mounting groove 11, the first copper substrate 13 and the second copper substrate 14 are the same in plane size and keep parallel, and the first copper substrate 13 is located above the second copper substrate 14. The maximum cross-sectional area of the mounting groove 11 is larger than the cross-sectional areas of the first and second copper base plates 13 and 14.
Referring to fig. 2, a heating device 15 is disposed between the first copper substrate 13 and the second copper substrate 14, the heating device 15 includes a plurality of heating rods 151 connected to each other, one of the heating rods 151 is connected to an electrified wire 152 for electrically heating the heating device 15, a through groove 122 is formed in the sealing plate 12 for the electrified wire 152 of the heating device 15 to penetrate through, and the electrified wire 152 passes through the through groove 122. The side of the first copper substrate 13 facing the second copper substrate 14 is bonded with a plug rod 131, the side of the second copper substrate 14 facing the first copper substrate 13 is provided with a plug groove 141, the plug rod 131 is plugged in the plug groove 141, and the heating device 15 is clamped between the first copper substrate 13 and the second copper substrate 14.
Referring to fig. 1, the notch of the mounting groove 11 is provided with a step groove 111, the sealing plate 12 is embedded into the step groove 111 and abutted against the step surface of the step groove 111, the sealing plate 12 is screwed and fixed on the step surface of the step groove 111 through the countersunk head bolt 1211, and one side of the sealing plate 12 departing from the mounting groove 11 is flush with one side of the ceiling panel 1 departing from the heat insulation board 16.
Referring to fig. 1, winter, the operator inserts the plug 153 of the live wire 152 far away from one end of the heating device 15 into the socket (not shown in the figure), make the heating device 15 ohmic heating, then the heating device 15 transmits the heat to the first copper base plate 13 and the second copper base plate 14, then the first copper base plate 13 transmits the heat to the mounting groove 11 towards the second copper base plate 14 evenly in, and transmit to indoor air, make indoor temperature rise, reduced winter indoor temperature along with the reduction of outdoor temperature and the possibility that reduces, improved the utility model discloses an integrated furred ceiling's thermal insulation performance.
Referring to fig. 2 and 3, a smoke sensor 17 is fixedly arranged in the mounting groove 11, the smoke sensor 17 is mounted in a position, located above the second copper substrate 14, of the mounting groove 11, and one side, away from the heat insulation board 16, of the ceiling panel 1 is connected with a controller 19 used for receiving a signal of the smoke sensor 17 and an alarm 18 in communication connection with the controller 19. When heating device 15 breaks down and leads to first copper base plate 13 overheated to scald and make the inner wall of suspended ceiling panel 1 lighted by local, smoke transducer 17 sends signal for controller 19 after detecting the smog that suspended ceiling panel 1 burning produced, and controller 19 sends signal for alarm 18, and alarm 18 sends out the alarm sound and carries out the early warning, reminds people to take measures to reduce the loss that the intensity of a fire stretchs and bring.
Referring to fig. 1 and 4, the sinking groove 123 has been seted up along the splice joint department to one side that the furred ceiling panel 1 and the shrouding 12 deviate from the mounting groove 11, be equipped with in the sinking groove 123 be used for with sinking groove 123 matched with grafting piece 124, joint groove 1231 has all been seted up along length direction to the tank bottom of the sinking groove 123 of furred ceiling panel 1 and shrouding 12, grafting piece 124 is equipped with along length direction towards one side of sinking groove 123 with joint groove 1231 matched with fixture block 1241, fixture block 1241 and grafting piece 124 integrated into one piece. The one deck slipmat 1242 that bonds on fixture block 1241 along length direction's the lateral wall, during the installation, the operator corresponds the joint with fixture block 1241 in joint groove 1231, slipmat 1242 is inconsistent with the cell wall of joint groove 1231 this moment, and grafting piece 124 also corresponds the joint in heavy groove 123, one side that grafting piece 124 deviates from heavy groove 123 and one side that furred ceiling panel 1 deviates from mounting groove 11 keep flushing, make the concatenation seam between furred ceiling panel 1 and the shrouding 12 blocked up, water along the concatenation seam seepage flow between furred ceiling panel 1 and the shrouding 12 and the possibility of leaking down when having reduced the roof and appearing leaking, the effect of shutoff and prevention of seepage has been played.
Referring to fig. 1 and 4, one side of the plug block 124 deviating from the sink groove 123 is provided with a groove 1243, the groove 1243 is internally provided with a connecting shaft 1244 along the width direction, two ends of the connecting shaft 1244 are respectively fixedly connected to two sides of the groove 1243 along the width direction, the connecting shaft 1244 is simultaneously provided with a rotating rod 1245 and two torsion springs 1246 in a penetrating manner, the two torsion springs 1246 are respectively located on two sides of the rotating rod 1245 along the width direction, two ends of the torsion springs 1246 are respectively welded on one side of the groove wall of the groove 1243 and the opposite rotating rod 1245, and under a normal state, the rotating rod 1245 is horizontally arranged in the groove. The rotating rod 1245 is hinged in the groove 1243 through the matching of the connecting shaft 1244 and the torsion spring 1246.
Referring to fig. 1 and 4, when the heating apparatus 15 is out of order and needs to be repaired, an operator rotates the rotating rod 1245 around the hinge between the rotating rod 1245 and the connecting shaft 1244 so that the rotating rod 1245 is partially extended from the groove 1243, and then the operator pulls the rotating rod 1245 so that the rotating rod 1245 drives the insert block 124 to be detached from the sink 123. Next, the operator unscrews the countersunk bolts 1211, removes the sealing plate 12 with the first copper substrate 13 and the second copper substrate 14 from the mounting groove 11, removes the insertion rod 131 (fig. 2) of the first copper substrate 13 from the insertion groove 141 (fig. 2) of the second copper substrate 14, and overhauls the heating device 15, thereby reducing the difficulty of operation.
The implementation principle of the embodiment is as follows: when indoor temperature reduces winter, with heating device 15 circular telegram heating to give first copper base plate 13 and second copper base plate 14 with heat transfer, first copper base plate 13 and second copper base plate 14 distribute the heat to mounting groove 11 in and distribute indoor air, make indoor temperature rise, in addition heated board 16's heat preservation effect makes indoor temperature continuously keep comfortable invariable, has improved the utility model discloses a heat preservation effect of integrated furred ceiling.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications to the present embodiment without inventive contribution as required after reading the present specification, but all of them are protected by patent laws within the scope of the claims of the present invention.

Claims (8)

1. The utility model provides an integrated furred ceiling with heat preservation function which characterized in that: the ceiling board comprises a ceiling panel (1) and a keel (2) supported below a ceiling, wherein a mounting groove (11) is formed in one side, facing the keel (2), of the ceiling panel (1), a sealing plate (12) used for sealing the mounting groove (11) is arranged at a notch of the mounting groove (11), a first copper substrate (13) and a second copper substrate (14) are arranged in the mounting groove (11), the first copper substrate (13) is located above the second copper substrate (14), an inserting rod (131) is fixedly connected to one side, facing the second copper substrate (14), of the first copper substrate (13), an inserting groove (141) is formed in one side, facing the first copper substrate (14), of the second copper substrate (14), the inserting rod (131) is inserted in the inserting groove (141), and a heating device (15) is clamped between the first copper substrate (13) and the second copper substrate (14), one side that second copper base plate (14) deviates from first copper base plate (13) sets firmly in shrouding (12) towards one side of mounting groove (11), set up logical groove (122) that circular telegram line (152) that supply heating device (15) wear to establish on shrouding (12).
2. The integrated suspended ceiling with the heat preservation function as claimed in claim 1, wherein: the notch of mounting groove (11) is equipped with step groove (111), shrouding (12) are contradicted on the step face of step groove (111) and are screwed up through countersunk head bolt (1211) and fix on the step face of step groove (111).
3. The integrated suspended ceiling with the heat preservation function as claimed in claim 2, wherein: suspended ceiling panel (1) and shrouding (12) deviate from one side of mounting groove (11) and have seted up heavy groove (123) along splice joint department, joint groove (1231) have been seted up along length direction to the tank bottom of heavy groove (123), the joint has inserted block (124) in heavy groove (123), inserted block (124) have fixture block (1241) towards one side of heavy groove (123) along length direction rigid coupling, fixture block (1241) joint is in joint groove (1231), one side that inserted block (124) deviate from heavy groove (123) and one side that suspended ceiling panel (1) deviates from mounting groove (11) flush mutually.
4. The integrated suspended ceiling with the heat preservation function as claimed in claim 3, wherein: the side wall of the clamping block (1241) along the length direction is fixedly provided with an anti-slip pad (1242), and the anti-slip pad (1242) is abutted against the groove wall of the clamping groove (1231).
5. The integrated suspended ceiling with the heat preservation function as claimed in claim 3, wherein: one side that grafting piece (124) deviates from heavy groove (123) is seted up fluted (1243), recess (1243) internal fixation is equipped with connecting axle (1244), the cover is equipped with dwang (1245) on connecting axle (1244), the cover is equipped with torsional spring (1246) between the cell wall of recess (1243) and dwang (1245) on connecting axle (1244), the both ends of torsional spring (1246) weld respectively in the cell wall of recess (1243) and dwang (1245) relative one side, under the normal condition, dwang (1245) level setting is in recess (1243).
6. The integrated suspended ceiling with the heat preservation function as claimed in claim 1, wherein: one side of the ceiling panel (1) departing from the keel (2) is fixedly provided with an insulation board (16).
7. The integrated suspended ceiling with the heat preservation function as claimed in claim 1, wherein: the maximum cross-sectional area of the mounting groove (11) is larger than the cross-sectional areas of the first copper substrate (13) and the second copper substrate (14).
8. The integrated suspended ceiling with heat preservation function of claim 7, wherein: a smoke sensor (17) is fixedly arranged in the mounting groove (11), and an alarm (18) and a controller (19) for receiving a signal of the smoke sensor (17) are arranged on one side, close to the sealing plate (12), of the suspended ceiling panel (1).
CN201921997414.0U 2019-11-18 2019-11-18 Integrated suspended ceiling with heat preservation function Active CN211286381U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921997414.0U CN211286381U (en) 2019-11-18 2019-11-18 Integrated suspended ceiling with heat preservation function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921997414.0U CN211286381U (en) 2019-11-18 2019-11-18 Integrated suspended ceiling with heat preservation function

Publications (1)

Publication Number Publication Date
CN211286381U true CN211286381U (en) 2020-08-18

Family

ID=72033815

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921997414.0U Active CN211286381U (en) 2019-11-18 2019-11-18 Integrated suspended ceiling with heat preservation function

Country Status (1)

Country Link
CN (1) CN211286381U (en)

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