Heat preservation and sound insulation integrated furniture wall
By using modular wall design and innovative component connection methods, the problem of inflexibility in traditional furniture wall connection methods is solved, achieving convenient and stable corner and plane connections, providing full-band sound insulation and temperature regulation functions, and reducing construction costs.
Patent Information
- Application Number
- CN202511002546.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-21
- Publication Date
- 2025-10-17
AI Technical Summary
Traditional furniture wall connection methods cannot be applied to both same-plane and corner connections, leading to increased construction costs and insufficient flexibility and convenience in the connection process.
The modular wall design utilizes adjustable and plug-in components to achieve corner and planar connections. By adjusting the angle of the rotating plate and cooperating with the plug-in components, multiple connection modes can be flexibly switched. Combined with a composite sound insulation structure and a phase change material heat insulation layer, the overall performance is improved.
It enables flexible combination and stable connection of furniture walls, reduces construction costs, improves installation convenience, and has full-band sound insulation and intelligent temperature regulation functions.
Smart Images

Figure CN120797916A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of building decoration, and in particular to a heat and sound insulation integrated furniture wall. BACKGROUND
[0002] With the continuous improvement of people's living standards, the quality requirements for living and working environment are increasingly high. In today's field of building decoration, furniture wall as an important part of indoor space, its performance and function have been paid more and more attention. The development of high-quality housing makes people hope that furniture wall can have the functions of moving and disassembling, so as to flexibly adjust the layout of indoor space and meet different use requirements.
[0003] In the traditional construction process of furniture wall, in order to solve the problem of wall splicing and connection, various methods are usually used. For the connection of walls in the same plane, the traditional welding method is generally used to firmly connect the wall parts together to ensure the stability of the connection. Or use ordinary bolts and nuts to fasten. This method is relatively simple to install and can meet the connection requirements to a certain extent. For the splicing of adjacent walls at corners, specially customized corner connecting pieces are often used, which are fixed on the walls by screws to realize the connection at corners. There is also a method of using glue to paste the walls at the corners. These methods were widely used at that time and are common means to solve the problem of wall connection.
[0004] For the related technology in the above, the existing wall connection means has obvious defects. The traditional connection method can only be applied to a single connection mode, either only for the connection of walls in the same plane or only for the connection of corners, and cannot simultaneously meet the two connection requirements, which leads to the need to prepare multiple different types of connecting parts in the actual construction process, resulting in increased construction cost. SUMMARY
[0005] In order to improve the problem of increased construction cost, the present application provides a heat and sound insulation integrated furniture wall.
[0006] The heat and sound insulation integrated furniture wall provided by the present application adopts the following technical solution: A heat and sound insulation integrated furniture wall, comprising a furniture wall main body, a plurality of adjusting assemblies and a plurality of plug-in assemblies, wherein the furniture wall main body comprises a plurality of modular walls connected to form a furniture wall. An adjusting assembly is arranged between two adjacent modular walls, the adjusting assembly comprises an adjusting cylinder and a rotating piece, the adjusting cylinder is arranged along the setting direction of the wall side wall, two rotating grooves are arranged on the side wall of the adjusting cylinder, the rotating grooves are arranged along the axis direction of the adjusting cylinder, the two longitudinal sections of the adjusting cylinder are perpendicular to each other, the intersection line of the two longitudinal sections coincides with the axis of the adjusting cylinder, the two longitudinal sections divide the adjusting cylinder into four identical opening areas, the two rotating grooves are located on the same side of one longitudinal section, the two rotating grooves are symmetrically arranged with respect to the other longitudinal section, the opening of the rotating groove is circumferentially arranged on the top of the adjusting cylinder, the rotating piece comprises two rotating plates, the rotating plates correspond to the rotating grooves one by one, the rotating plates are arranged along the axis of the adjusting cylinder, at least one rotating plate is rotatably connected with the adjusting cylinder, when two adjacent modular walls are connected at the corner of the wall, the included angle of the two rotating plates is 90°, when two adjacent modular walls are connected in the plane of the wall, the included angle of the two rotating plates is 180°. The two rotating plates are uniformly connected with a plurality of plug-in assemblies, the plug-in assemblies are used for connecting two adjacent modular walls.
[0007] By adopting the above technical scheme, the modular wall is connected to form a furniture wall main body, so that the furniture wall can be flexibly combined according to different spaces, and the installation is more convenient. The adjusting assembly is arranged between the adjacent modular walls, the rotating grooves on the adjusting cylinder of the adjusting assembly provide space and guidance for the rotation of the rotating plates. The rotating plates can rotate along the axis of the adjusting cylinder, and at least one rotating plate is rotatably connected with the adjusting cylinder, which enables the two rotating plates to be flexibly adjusted in angle. When two adjacent modular walls are connected at the corner of the wall, the included angle of the two rotating plates can be adjusted to 90° to realize the corner connection. When two adjacent modular walls are connected in the plane of the wall, the included angle of the two rotating plates can be adjusted to 180° to realize the plane connection, which is suitable for different space layouts, without the need to prepare multiple different types of connecting components, which is helpful to improve the problem of increasing construction cost. At the same time, a plurality of plug-in assemblies are connected to the rotating plates for connecting two adjacent modular walls, which ensures the stability of the connection of the adjacent modular walls, and improves the flexibility and convenience of the installation of the furniture wall as a whole.
[0008] In a specific embodiment, the modular wall comprises an outer frame, a U-shaped groove is arranged on the side wall of the outer frame along the setting direction of the wall; The plug-in assembly comprises at least one plug-in piece, the plug-in piece comprises a telescopic cylinder and a plug-in cylinder, the axis of the telescopic cylinder is arranged perpendicular to the axis of the adjusting cylinder, one end of the telescopic cylinder is connected to the rotating plate, the other end is connected to the plug-in cylinder, the plug-in cylinder is coaxially arranged with the telescopic cylinder, and the outer frame is provided with a plug-in groove in the U-shaped groove for inserting the plug-in cylinder.
[0009] By adopting the technical scheme, the U-shaped slot of the outer frame facilitates the installation of the adjusting assembly; the telescopic cylinder connects the rotating plate and the plug-in cylinder, and the plug-in cylinder can be inserted into the insertion slot of the outer frame, thereby realizing the connection of adjacent modular walls and facilitating the assembly of the furniture wall.
[0010] In one specific implementation, the plug-in assembly further comprises at least one clamping block, at least one sliding slot is formed in the plug-in cylinder, the clamping block corresponds to the sliding slot, the clamping block is slidingly connected to the plug-in cylinder, the clamping block moves towards one side close to or away from the axis of the plug-in cylinder, the outer frame is provided with a clamping slot in the insertion slot for clamping the clamping block, and the clamping slot is in communication with the insertion slot. The plug-in assembly further comprises at least one connecting piece and a driving piece, the connecting piece corresponds to the plug-in assembly, the connecting piece comprises a screw rod, an adjusting rod and at least one push rod, the screw rod is coaxially arranged with the plug-in cylinder, the screw rod is hollow at one end away from the axis of the adjusting cylinder, the adjusting rod is coaxially arranged at one side of the screw rod away from the axis of the adjusting cylinder, one end of the adjusting rod is inserted into the screw rod, the adjusting rod is threadedly connected with the screw rod to form a telescopic rod, the other end of the adjusting rod is sequentially arranged in the rotating plate, the telescopic cylinder and the plug-in cylinder, the adjusting rod is sequentially slidingly connected to the rotating plate, the telescopic cylinder and the plug-in cylinder, the push rod corresponds to the clamping block, the push rod is located in the plug-in cylinder, one end of the push rod is hingedly connected to the adjusting rod close to the telescopic cylinder, and the other end of the push rod is hingedly connected with a hinged seat, the hinged seat is slidingly connected to the clamping block along the axis of the plug-in cylinder, the push rod is obliquely arranged from the telescopic cylinder to the plug-in cylinder away from the axis of the plug-in cylinder, and the driving piece is connected to the adjusting cylinder, and the driving piece is used to push the telescopic rod to move.
[0011] By adopting the technical scheme, the clamping block can slide in the sliding slot of the plug-in cylinder and move towards one side close to or away from the axis of the plug-in cylinder, and cooperate with the clamping slot in the insertion slot of the outer frame, thereby realizing the stable connection of adjacent modular walls; the screw rod and the adjusting rod of the connecting piece are threadedly connected to form a telescopic rod, the telescopic rod can drive the push rod to move by telescoping, the driving piece is connected to the adjusting cylinder and pushes the telescopic rod to move, thereby further ensuring that the clamping block is smoothly clamped into the clamping slot and realizing the stable connection of adjacent modular walls.
[0012] In one specific implementation, at least one fixed screw rod is arranged in the modular wall, the fixed screw rod is arranged in parallel with the wall, and the fixed screw rod is connected with the modular wall. The connecting piece further comprises a connecting spring, the adjusting rod corresponds to the fixed screw rod, the adjusting rod is inserted into the fixed screw rod after passing through the insertion barrel, the connecting spring is located in the insertion barrel, the connecting spring is close to the side of the insertion barrel away from the telescopic barrel, the connecting spring is sleeved on the adjusting rod, one end of the connecting spring is connected with the insertion barrel, and the other end of the connecting spring is connected with the adjusting rod.
[0013] By adopting the technical scheme, the fixed screw rod parallel to the wall body is arranged in the modular wall body, the adjusting rod is inserted into the fixed screw rod after passing through the insertion barrel, the adjacent modular wall bodies can be more stably connected, the connecting spring is arranged in the insertion barrel and sleeved on the adjusting rod, and the two ends of the connecting spring are connected with the insertion barrel and the adjusting rod respectively, so that the connecting spring can play a buffering role in the connecting process, damage caused by rigid connection is avoided, and the stability and reliability of the connection are ensured.
[0014] In a specific embodiment, the driving member comprises a driving rod, a driving spring, at least one tapered pushing block and a fixing source, one end of the driving rod is arranged in the adjusting barrel, the driving rod is coaxially arranged with the adjusting barrel, the driving rod is slidably connected with the adjusting barrel, the driving spring is located in the adjusting barrel, the driving spring is sleeved on one end of the driving rod close to the top of the adjusting barrel, one end of the driving spring is connected with the driving rod, and the other end of the driving spring is connected with the adjusting barrel, the diameter of the tapered pushing block gradually decreases from the top to the bottom of the adjusting barrel, one end of the driving rod located in the adjusting barrel is arranged in the tapered pushing block, one end of the rotating rod away from the adjusting rod is abutted with the tapered pushing block, the tapered pushing block drives the rotating rod to move away from or close to the axis of the adjusting barrel, and the fixing source is connected to one end of the driving rod located outside the adjusting barrel, and the fixing source is used for detachably connecting the driving rod and the adjusting barrel.
[0015] By adopting the technical scheme, the driving rod is coaxially arranged with the adjusting barrel and is slidably connected, the driving spring is matched, and the driving rod can stably move in the adjusting barrel; the diameter of the tapered pushing block gradually decreases from top to bottom, the driving rod passes through the tapered pushing block, the rotating rod can move away from or close to the axis of the adjusting barrel when the driving rod is pushed, the adjusting rod is driven to move, the clamping block is clamped with the clamping groove, and the stable connection of the adjacent modular wall bodies is realized; the fixing source detachably connects the driving rod and the adjusting barrel, the driving rod can be fixed after the clamping block is clamped in place, and the stability of the connection is ensured.
[0016] In a specific embodiment, the rotating member further comprises at least two connecting rods, one of the rotating plates corresponds to at least one of the connecting rods, the connecting rods are arranged perpendicularly to the axis of the adjusting barrel, one end of the connecting rod is connected with the rotating plate, and the other end of the connecting rod is connected with a sleeve, the driving rod is arranged in the sleeve, and the driving rod is slidably connected with the sleeve.
[0017] By adopting the technical scheme, when the rotating plate rotates, the driving rod is arranged in the sleeve and is in sliding connection with the sleeve, the stability of the rotating plate in rotation can be enhanced, the adjusting assembly can more stably adjust the connecting angle of the adjacent modular wall bodies, and then the adjacent two modular wall bodies located at the corner or the plane of the wall body can be conveniently connected.
[0018] In a specific embodiment, the fixing source includes a fixing plate, two L-shaped plates and two fixing springs, the fixing plate is connected to the driving rod, the fixing plate is arranged perpendicularly to the driving rod, the adjusting cylinder is provided with a placing groove at the top for placing the fixing plate, the fixing plate is provided with two fixing grooves at the top, the two fixing grooves are uniformly distributed along the circumferential direction of the fixing plate, the L-shaped plates correspond to the fixing grooves one by one, one end of the L-shaped plate is located in the fixing groove, the adjusting cylinder is provided with an avoiding groove in the placing groove for the end of the L-shaped plate located in the fixing groove to extend into, the fixing springs correspond to the fixing grooves one by one, the fixing springs are arranged along the distribution direction of the two L-shaped plates, and the two ends of the fixing spring are connected to the fixing plate and the L-shaped plate respectively.
[0019] By adopting the technical scheme, when the driving rod is pushed to make the clamping block clamped with the clamping groove, the L-shaped plate can extend into the avoiding groove to realize the detachable connection of the driving rod and the adjusting cylinder, so as to fix the position of the driving rod and ensure the stability of the plug-in assembly in connecting the adjacent modular wall bodies.
[0020] In a specific embodiment, the rotating member further includes two locking sources, the two locking sources are close to the rotating rotating plate, the locking sources are connected to the adjusting cylinder, and the locking sources are used to connect the adjusting cylinder and the rotating rotating plate.
[0021] By adopting the technical scheme, the locking source can connect the adjusting cylinder and the rotating rotating plate to realize the locking of the rotating plate, avoid the random rotation of the rotating plate, ensure that the rotating plate can be stably kept at a suitable angle when the adjusting assembly connects the adjacent two modular wall bodies at the plane or the corner of the wall body, and thus the stability of the connection of the adjacent modular wall bodies is ensured.
[0022] In a specific embodiment, a plurality of functional filling assemblies are further included, the modular wall body further includes two base plates, the two base plates are connected to the two opposite sides of the outer frame respectively, the two base plates are distributed along the depth direction of the outer frame, and the two base plates and the outer frame form a filling cavity for the functional filling assembly to fill. The functional filling assembly comprises a composite sound insulation structure and a phase change material heat insulation layer, the composite sound insulation structure comprises an absorbing cotton layer, a resonance plate layer and a sound insulation felt layer, the absorbing cotton layer, the resonance plate layer and the sound insulation felt layer are arranged alternately along the thickness direction of the modular wall body, and the absorbing cotton layer, the resonance plate layer and the sound insulation felt layer are fixed together, the phase change material heat insulation layer is arranged adjacent to the composite sound insulation structure, and the phase change material heat insulation layer is made of paraffin-based material or salt hydrate material.
[0023] By adopting the technical scheme, the two substrates and the outer frame form a filling cavity for the functional filling assembly, the absorbing cotton layer, the resonance plate layer and the sound insulation felt layer in the composite sound insulation structure are arranged alternately and fixed together, can absorb and reflect sound of different frequencies, and realize efficient sound insulation in the full frequency band; the phase change material heat insulation layer is made of paraffin-based material or salt hydrate material, is arranged adjacent to the composite sound insulation structure, can intelligently adjust the indoor temperature while realizing sound insulation, reduces the fluctuation of the indoor temperature, and keeps the indoor temperature environment stable.
[0024] In a specific embodiment, a sealing assembly is further included, one side of the outer frame is connected with a first insertion strip at the two side walls of the U-shaped groove, and the other side is provided with an insertion slot for the first insertion strip on the adjacent outer frame, when two modular wall bodies adjacent to the wall plane need to be sealed, the adjusting cylinder is located in the connecting area formed by the two U-shaped grooves, and a sealing assembly is arranged between the two modular wall bodies, the sealing assembly is an elastic sealing pad, and the elastic sealing pad is embedded in the insertion slot. When two modular wall bodies adjacent to the wall corner need to be sealed, the sealing assembly further comprises an L-shaped sealing plate, one side of the L-shaped sealing plate is provided with a sealing slot for the first insertion strip, and the other side is connected with a second insertion strip inserted into the insertion slot.
[0025] By adopting the technical scheme, the sealing assembly is arranged, when two modular wall bodies adjacent to the wall plane need to be sealed, the first insertion strip of the outer frame is matched with the insertion slot, the elastic sealing pad is embedded in the insertion slot, the installation of the sealing pad is firm, and the insertion strip is inserted into the insertion slot to seal the insertion position of the two modular wall bodies; when two modular wall bodies adjacent to the wall corner need to be sealed, the sealing slot of the L-shaped sealing plate is matched with the first insertion strip and the second insertion strip, the insertion slot and the elastic sealing pad are combined to seal the modular furniture wall body, sound and heat are prevented from being dissipated from the edges, and the heat insulation and sound insulation performance of the furniture wall is improved.
[0026] In summary, the present application has at least one of the following beneficial technical effects: 1. The designed heat preservation and sound insulation integrated furniture wall, when two adjacent modular walls are connected at the corner of the wall, the two rotating plates can be adjusted to an included angle of 90° to realize the corner connection; when two adjacent modular walls are connected in the plane of the wall, the two rotating plates can be adjusted to an included angle of 180° to realize the plane connection, which is suitable for different space layouts, does not need to prepare multiple different types of connecting components, is conducive to improving the problem of increasing construction cost, and meanwhile, multiple plug-in assemblies are connected on the rotating plate for connecting the two adjacent modular walls, which ensures the stability of the connection of the adjacent modular walls and improves the flexibility and convenience of the installation of the furniture wall as a whole.
[0027] 2. The designed heat preservation and sound insulation integrated furniture wall, the U-shaped groove is formed in the outer frame to facilitate the installation of the adjusting assembly; the telescopic cylinder connects the rotating plate and the plug-in cylinder, and the plug-in cylinder can be inserted into the insertion slot of the outer frame, so that the connection of the adjacent modular walls can be realized, the furniture wall is more convenient to assemble, and can be flexibly combined according to different spaces.
[0028] 3. The designed heat preservation and sound insulation integrated furniture wall, the sound-absorbing cotton layer, the resonance plate layer and the sound insulation felt layer in the composite sound insulation structure are alternately arranged and fixed together, can absorb and reflect different frequency sounds, and realize efficient sound insulation in the full frequency band; the phase change material heat insulation layer is made of paraffin-based material or salt hydrate material, is arranged adjacent to the composite sound insulation structure, can intelligently adjust the indoor temperature while realizing sound insulation, reduces the fluctuation of the indoor temperature, and keeps the indoor temperature environment relatively stable. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 is a structural schematic diagram of the heat preservation and sound insulation integrated furniture wall of the embodiment of the present application.
[0030] Figure 2 is a structural schematic diagram of the functional filling assembly in the embodiment.
[0031] Figure 3 is a structural schematic diagram of the adjusting assembly and the plug-in assembly in the embodiment.
[0032] Figure 4 is Figure 3 is an enlarged view of A in FIG.
[0033] Figure 5 is a structural schematic diagram of the locking source in the embodiment.
[0034] Figure 6 is a structural schematic diagram of the plug-in assembly in the embodiment.
[0035] Figure 7 is a sectional view of the plug-in assembly in the embodiment.
[0036] Figure 8 is a sectional view of the fixing source in the embodiment.
[0037] Figure 9 is a structural schematic diagram of the sealing assembly in the embodiment.
[0038] Figure 10 is a structural schematic diagram of the connection of the two adjacent modular walls at the corner in the embodiment.
[0039] Figure 11 is a structural schematic diagram of the L-shaped sealing plate in the embodiment.
[0040] Mark explanation: 1, furniture wall main body; 11, modular wall; 111, outer frame; 1111, U-shaped groove; 1112, insertion slot; 1113, clamping groove; 1114, first insertion strip; 1115, insertion slot; 112, base plate; 113, fixed screw; 2, functional filling assembly; 21, composite sound insulation structure; 211, sound-absorbing cotton layer; 212, resonance plate layer; 213, sound insulation felt layer; 22, phase change material heat insulation layer; 3, adjusting assembly; 31, adjusting cylinder; 311, rotating groove; 312, guide groove; 313, placing groove; 314, avoiding groove; 32, rotating part; 321, rotating plate; 322, connecting rod; 3221, sleeve; 323, locking source; 3231, locking rod; 3232, locking spring; 4, insertion assembly; 41, insertion part; 411, telescopic cylinder; 412, insertion cylinder; 4121, sliding groove; 413, clamping block; 42, connecting part; 421, screwing rod; 422, adjusting rod; 423, connecting spring; 424, pushing rod; 4241, hinged seat; 43, driving part; 431, driving rod; 432, driving spring; 433, conical pushing block; 434, fixed source; 4341, fixed plate; 4342, L-shaped plate; 4343, fixed spring; 5, sealing assembly; 51, elastic sealing gasket; 52, L-shaped sealing plate; 521, sealing groove; 522, second insertion strip. DETAILED DESCRIPTION
[0041] The following will be described in detail in combination with the accompanying Figures 1-11 The application is further described in detail.
[0042] The embodiment of the application discloses a heat-preservation and sound-insulation integrated furniture wall.
[0043] Refer to Figure 1 A heat-preservation and sound-insulation integrated furniture wall comprises a furniture wall main body 1, a plurality of functional filling assemblies 2, a plurality of adjusting assemblies 3 and a plurality of insertion assemblies 4, and the functional filling assemblies 2, the adjusting assemblies 3 and the insertion assemblies 4 are arranged on the furniture wall main body 1.
[0044] Refer to Figure 1 and Figure 2The furniture wall main body 1 comprises a plurality of modular walls 11 connected into a furniture wall, the modular wall 11 comprising an outer frame 111 and two base plates 112, the two base plates 112 being located on two opposite sides of the outer frame 111 respectively and being distributed along the depth direction of the outer frame 111, the base plate 112 being fixedly connected to the outer frame 111 by screws, and the two base plates 112 and the outer frame 111 forming a filling cavity for filling the functional filling assembly 2.
[0045] With reference to Figure 1 and Figure 2 The functional filling assembly 2 corresponds to the modular wall 11 one by one, and the functional filling assembly 2 comprises a composite sound insulation structure 21 and a phase change material heat insulation layer 22, the composite sound insulation structure 21 being composed of alternating arrangement of sound-absorbing cotton layers 211, resonance plate layers 212 and sound insulation felt layers 213 which are sequentially stacked, the sound-absorbing cotton being capable of absorbing medium and high frequency sound and converting the sound energy into heat energy for consumption through the internal reflection and friction of the sound waves; the resonance plate layer 212 is provided with a honeycomb-shaped pore structure penetrating through the surface, and this special structure design can make the sound enter the pores and be reflected and refracted multiple times to consume sound energy, and the resonance plate has good absorption effect on low frequency sound, and when low frequency sound waves act on the resonance plate, the resonance plate produces resonance to consume sound energy, and the resonance plate can be made of wood material such as plywood or metal material such as aluminum plate resonance plate; the sound insulation felt usually has high density and can reflect and block the propagation of sound, and can be made of rubber sound insulation felt or butyl rubber sound insulation felt, etc., and the sound insulation felt can reflect sound waves to further prevent the propagation of sound, the sound-absorbing cotton layer 211, the resonance plate layer 212 and the sound insulation felt layer 213 are pasted together by an adhesive, and the three cooperate with each other to form a compact composite structure, and this composite structure can absorb and reflect sound of different frequencies to achieve efficient sound insulation in the full frequency band, because different materials have different absorption and reflection characteristics for sound of different frequencies, sound of each frequency band can be effectively processed when the sound passes through the sound-absorbing cotton, the resonance plate and the sound insulation felt in turn.
[0046] With reference to Figure 2 The phase change material heat insulation layer 22 is made of paraffin-based material or salt hydrate material, the paraffin-based material has good heat storage and release performance, and when the temperature rises, the paraffin changes from solid to liquid to absorb heat; when the temperature decreases, the paraffin changes from liquid to solid to release heat, and the salt hydrate material can also change phase when the temperature changes to store or release heat, for example, sodium sulfate decahydrate can be used as the salt hydrate material, and sodium acetate trihydrate or the like can also be used, the phase change material heat insulation layer 22 is uniformly filled in a specific area of the functional filling layer and is arranged adjacent to the composite sound insulation structure 21, so that the indoor temperature can be intelligently adjusted while achieving sound insulation, the heat is stored or released with the change of temperature to reduce the fluctuation of indoor temperature and keep the indoor temperature environment relatively stable.
[0047] With reference to Figure 1 , Figure 3 and Figure 4 , in order to facilitate the connection of two adjacent modular walls 11, a plurality of fixing screws 113 are arranged in the modular wall 11, the plurality of fixing screws 113 are distributed at intervals along the arrangement direction of the wall, the fixing screws 113 are arranged in parallel with the wall, and the fixing screws 113 are welded to the wall. An adjusting assembly 3 is arranged between two adjacent modular walls 11, a U-shaped groove 1111 is formed in the side wall of the outer frame 111, the adjusting assembly 3 comprises an adjusting cylinder 31 and a rotating part 32, the adjusting cylinder 31 is arranged along the arrangement direction of the side wall, the adjusting cylinder 31 is hollow, two rotating grooves 311 are formed in the side wall of the adjusting cylinder 31, the rotating grooves 311 are arranged along the axis direction of the adjusting cylinder 31, two longitudinal sections of the adjusting cylinder 31 are perpendicular to each other, the intersection line of the two longitudinal sections coincides with the axis of the adjusting cylinder 31, the two longitudinal sections divide the adjusting cylinder 31 into four identical opening regions, the two rotating grooves 311 are located on the same side of one longitudinal section, and the two rotating grooves 311 are symmetrically arranged about the other longitudinal section, the opening of the rotating groove 311 is formed in the circumferential direction of the top of the adjusting cylinder 31, the rotating part 32 comprises two rotating plates 321, at least two connecting rods 322 and two locking sources 323, the rotating plates 321 correspond to the rotating grooves 311 one by one, the rotating plates 321 are arranged along the axis of the adjusting cylinder 31, in one embodiment, one of the rotating plates 321 is rotatably connected to the adjusting cylinder 31, and the other rotating plate 321 is fixedly connected to the adjusting cylinder 31 by a screw, in another embodiment, both of the rotating plates 321 are rotatably connected to the adjusting cylinder 31, in this embodiment, one of the rotating plates 321 is rotatably connected to the adjusting cylinder 31, and the other rotating plate 321 is fixedly connected to the adjusting cylinder 31 by a screw, and the rotating plate 321 reciprocally rotates along the curvature direction of the top wall of the adjusting cylinder 31.
[0048] With reference to Figure 1 , Figure 3 and Figure 5 , a guide groove 312 for the rotation of the rotating plate 321 is formed in the top wall and the bottom wall of the adjusting cylinder 31, which can enable the two rotating plates 321 to be arranged perpendicularly, forming an angle of 90°, thereby facilitating the connection of two adjacent modular walls 11 located at the corners of the wall; or the two rotating plates 321 can be arranged in the same plane, forming an angle of 180°, thereby facilitating the connection of two adjacent modular walls 11 located in the plane of the wall, and the adjusting assembly 3 is located in the connection area formed by the two adjacent U-shaped grooves 1111.
[0049] With reference to Figure 3 , Figure 4 and Figure 5In the embodiment, one rotating plate 321 corresponds to three connecting rods 322, the three connecting rods 322 on the same rotating plate 321 are distributed along the axial direction of the adjusting cylinder 31, and the connecting rods 322 on the two rotating plates 321 correspond to each other, the connecting rods 322 are arranged perpendicularly to the axis of the adjusting cylinder 31, one end of the connecting rod 322 is welded to the rotating plate 321, and the other end is connected with a sleeve 3221; two locking holes are formed in the top wall of the adjusting cylinder 31, the two locking holes are distributed along the curvature direction of the top wall of the adjusting cylinder 31, the locking hole is close to the rotating plate 321 rotatably connected with the adjusting cylinder 31, the locking hole is in communication with the guide groove 312 located on the top wall of the adjusting cylinder 31, the locking source 323 corresponds to the locking hole in one-to-one correspondence, the locking source 323 comprises a locking rod 3231 and a locking spring 3232, the locking rod 3231 is arranged along the axis of the adjusting cylinder 31, the locking rod 3231 is arranged in the locking hole and extends into the guide groove 312, a fitting hole is formed in the top of the rotating plate 321 for inserting the locking rod 3231, when the locking rod 3231 extends into the fitting hole, the rotating plate 321 can be locked and cannot be rotated, the locking spring 3232 is sleeved on the end of the locking rod 3231 away from the guide groove 312, one end of the locking spring 3232 is welded with the locking rod 3231, and the other end is welded with the top wall of the adjusting cylinder 31, in the embodiment, the locking spring 3232 is selected as a compression spring.
[0050] With reference to Figure 3 , Figure 5 and Figure 6 , the plug-in assembly 4 comprises at least one plug-in piece 41, at least one connecting piece 42 and a driving piece 43, in the embodiment, the number of plug-in pieces 41 is three, the plug-in piece 41 corresponds to the connecting rod 322 in one-to-one correspondence, the plug-in piece 41 comprises a telescopic cylinder 411, a plug-in cylinder 412 and at least one clamping block 413, the axis direction of the telescopic cylinder 411 is consistent with the length direction of the connecting rod 322, the telescopic cylinder 411 is fixedly connected to the rotating plate 321 through screws, the plug-in cylinder 412 is located at the end of the telescopic cylinder 411 away from the axis of the adjusting cylinder 31, and the plug-in cylinder 412 is coaxially arranged with the telescopic cylinder 411, the plug-in cylinder 412 is welded to the telescopic cylinder 411, at least one sliding groove 4121 is formed in the plug-in cylinder 412, in the embodiment, the number of sliding grooves 4121 is four, and the four sliding grooves 4121 are uniformly distributed along the circumferential direction of the plug-in cylinder 412, the clamping block 413 corresponds to the sliding groove 4121 in one-to-one correspondence, and the clamping block 413 is slidingly connected to the plug-in cylinder 412, the four clamping blocks 413 move towards each other or away from the side of the axis of the plug-in cylinder 412.
[0051] With reference to Figure 6 and Figure 7The outer frame 111 is provided with a slot 1112 for inserting the insertion sleeve 412, and the outer frame 111 is provided with a clamping groove 1113 for clamping the clamping block 413 in the slot 1112. The clamping groove 1113 is in communication with the slot 1112, and the clamping groove 1113 is clamped with the clamping block 413. When it is necessary to connect two adjacent modular wall bodies 11, the rotating plate 321 is adjusted to the appropriate position, then the insertion sleeve 412 is inserted into the slot 1112 of the corresponding outer frame 111, and then the clamping block 413 is driven to extend into the clamping groove 1113 for clamping.
[0052] With reference to Figure 6 and Figure 7 The connecting piece 42 corresponds to the insertion piece 41 one by one, and the connecting piece 42 comprises a screw rod 421, an adjusting rod 422, a connecting spring 423 and at least one push rod 424. The screw rod 421 is perpendicular to the axis of the adjusting cylinder 31, and the screw rod 421 is coaxial with the insertion sleeve 412. The screw rod 421 is hollow at one end away from the axis of the adjusting cylinder 31. The adjusting rod 422 is located at one side of the screw rod 421 away from the axis of the adjusting cylinder 31, and the adjusting rod 422 is coaxial with the screw rod 421. One end of the adjusting rod 422 is inserted into the screw rod 421, and the outer wall of the insertion end of the adjusting rod 422 is provided with a thread. The interior of the screw rod 421 is provided with a thread groove matched with the thread, so that the adjusting rod 422 and the screw rod 421 form an extension rod. Rotating the screw rod 421 can adjust the length of the extension rod. The other end of the adjusting rod 422 is sequentially provided in the rotating plate 321, the extension cylinder 411 and the insertion sleeve 412. The adjusting rod 422 is sequentially and slidingly connected to the rotating plate 321, the extension cylinder 411 and the insertion sleeve 412. The adjusting rod 422 corresponds to the fixed screw rod 113 one by one. The adjusting rod 422 is inserted into and matched with the fixed screw rod 113 after passing through the insertion sleeve 412. The connecting spring 423 is located in the insertion sleeve 412, and the connecting spring 423 is close to the side of the insertion sleeve 412 away from the extension cylinder 411. The connecting spring 423 is sleeved on the adjusting rod 422. One end of the connecting spring 423 is welded to the insertion sleeve 412, and the other end is welded to the adjusting rod 422. In this embodiment, the connecting spring 423 is a compression spring. The push rod 424 corresponds to the clamping block 413 one by one. The push rod 424 is located in the insertion sleeve 412. One end of the push rod 424 is hinged to the end of the adjusting rod 422 close to the extension cylinder 411, and the other end is hinged with a hinged seat 4241. The hinged seat 4241 is slidingly connected to the clamping block 413. The clamping block 413 is provided with a sliding groove for sliding the hinged seat 4241. The sliding groove is arranged along the axis of the insertion sleeve 412. The push rod 424 is inclinedly arranged from the extension cylinder 411 to the insertion sleeve 412 away from the axis of the insertion sleeve 412. When the clamping block 413 is clamped with the clamping groove 1113, the push rod 424 is perpendicular to the axis of the insertion sleeve 412.
[0053] With reference to Figure 5 , Figure 6 andFigure 7 The driving member 43 comprises a driving rod 431, a driving spring 432, a plurality of conical pushing blocks 433 and a fixed source 434. One end of the driving rod 431 is arranged in the adjusting cylinder 31, and the driving rod 431 is coaxially arranged with the adjusting cylinder 31. The driving rod 431 is slidingly connected to the adjusting cylinder 31. The driving rod 431 is arranged in the sleeve 3221, and the driving rod 431 is slidingly connected to the sleeve 3221. When the driving rod 431 is not moved, the rotating plate 321 is rotated, so as to facilitate the stability of the rotation of the rotating plate 321. The driving spring 432 is located in the adjusting cylinder 31, and the driving spring 432 is sleeved on the driving rod 431 close to the top end of the adjusting cylinder 31. One end of the driving spring 432 is welded to the driving rod 431, and the other end is welded to the adjusting cylinder 31. In the embodiment, the number of the conical pushing blocks 433 is three. The three conical pushing blocks 433 are located in the adjusting cylinder 31, and the diameters of the conical pushing blocks 433 gradually decrease from the top to the bottom of the adjusting cylinder 31. The driving rod 431 is arranged in the conical pushing blocks 433. The three conical pushing blocks 433 are distributed along the length direction of the driving rod 431. The end of the screw rod 421 away from the adjusting rod 422 abuts against the corresponding conical pushing block 433. When the insertion cylinder 412 is inserted into the insertion slot 1112, and the person drives the driving rod 431 to move towards the bottom of the adjusting cylinder 31, the conical pushing block 433 drives the screw rod 421 to move away from the axis of the adjusting cylinder 31. The adjusting rod 422 moves synchronously with the screw rod 421. In this process, the pushing rod 424 can drive the clamping block 413 to move until the clamping block 413 is clamped in the clamping slot 1113.
[0054] With reference to Figure 5 , Figure 7 and Figure 8The fixed source 434 comprises a fixed plate 4341, two L-shaped plates 4342 and two fixed springs 4343. The fixed plate 4341 is welded to the outer end of the driving rod 431 located outside the adjusting cylinder 31. The fixed plate 4341 is arranged perpendicularly to the driving rod 431. The top of the adjusting cylinder 31 is provided with a placing groove 313 for the fixed plate 4341. The top of the fixed plate 4341 is provided with two fixed grooves. In the embodiment, the longitudinal section of the fixed groove is L-shaped. The two fixed grooves are evenly distributed along the circumferential direction of the fixed plate 4341. The L-shaped plate 4342 corresponds to the fixed groove one by one. One end of the L-shaped plate 4342 is located in the fixed groove. The adjusting cylinder 31 is provided with an avoiding groove 314 in the placing groove 313 for the end of the L-shaped plate 4342 located in the fixed groove to extend into. The fixed spring 4343 corresponds to the fixed groove one by one. The fixed spring 4343 is arranged along the distribution direction of the two L-shaped plates 4342. One end of the fixed spring 4343 is welded to the fixed plate 4341, and the other end is welded to the L-shaped plate 4342. When the personnel pushes the driving rod 431 to move towards the bottom of the adjusting cylinder 31, the pushing rod 424 can drive the clamping block 413 to move until the clamping block 413 is clamped in the clamping groove 1113. At this time, the L-shaped plate 4342 extends into the avoiding groove 314 to fix the driving rod 431.
[0055] With reference to Figure 9 , Figure 10 and Figure 11The heat preservation and sound insulation integrated furniture wall further comprises a plurality of sealing assemblies 5 arranged on the furniture wall body 1. In order to facilitate sealing, when two adjacent modular walls 11 need to be connected, a first insertion strip 1114 is welded on one side wall of the U-shaped groove 1111 of one outer frame 111, and a first insertion slot 1115 is arranged on the other side wall of the U-shaped groove 1111 of the outer frame 111 for insertion of the first insertion strip 1114 on the adjacent outer frame 111. The first insertion strip 1114 is matched with the insertion slot 1115. One sealing assembly 5 is arranged between the two adjacent modular walls 11. The sealing assembly 5 comprises an elastic sealing pad 51 which is embedded in the insertion slot 1115, so that the sealing pad can be firmly installed and is not easy to fall off. When the insertion strip is inserted into the insertion slot 1112, the elastic sealing pad 51 seals the insertion position of the two adjacent modular walls 11. In order to facilitate sealing between the two adjacent modular walls 11 at the corner of the wall, the sealing assembly 5 further comprises an L-shaped sealing plate 52. One side of the L-shaped sealing plate 52 is provided with a sealing slot 521 for insertion of the first insertion strip 1114, and the other side is welded with a second insertion strip 522 which is inserted into the insertion slot 1115. The elastic sealing strip can be made of rubber material, such as EPDM sealing strip, which has good elasticity and aging resistance. The L-shaped sealing plate 52 can be coated with a sealing glue layer on the surface of the sealing plate and each joint. The sealing glue layer can be made of silicone sealant or polyurethane sealant, which forms a sealing barrier to prevent sound and air leakage. The sealing assembly 5 further extends to the edge of the top surface and the bottom surface of the modular furniture wall body 1, so as to comprehensively seal the modular furniture wall body 1 and prevent sound and heat from being lost from the edges.
[0056] The implementation principle of the heat preservation and sound insulation integrated furniture wall is as follows: through the design of the modular wall 11, the furniture wall is more convenient to install, and can be flexibly combined according to different spaces. The composite sound insulation structure 21 and the phase change material heat insulation layer 22 in the functional filling assembly 2 cooperate with each other to efficiently absorb and reflect sound of different frequencies, and simultaneously intelligently adjust indoor temperature to reduce energy consumption. The adjustment assembly 3 can flexibly adjust the connection angle of the adjacent modular walls 11 to adapt to different space layouts. The insertion assembly 4 uses the driving member 43 to push the clamping block 413 into the clamping slot 1113 to realize stable connection of the adjacent modular walls 11. The sealing assembly 5 uses the elastic sealing pad 51, the L-shaped sealing plate 52 and the sealing glue layer to effectively prevent heat and sound from being lost from the joints, thereby improving the heat preservation and sound insulation performance of the furniture wall as a whole. Compared with the traditional furniture wall, the furniture wall has higher practicability and flexibility, and meets the multiple needs of modern home decoration.
[0057] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application. Therefore, any equivalent changes made on the basis of the structure, shape and principle of the present application shall be covered within the protection scope of the present application.
Claims
1. A thermal insulation and sound insulation integrated furniture wall, characterized by: The furniture wall comprises a main body (1), a plurality of adjustment components (3) and a plurality of plug-in components (4), wherein the main body (1) comprises a plurality of modular walls (11) connected to form a furniture wall; An adjustment component (3) is provided between two adjacent modular walls (11), and the adjustment component (3) includes an adjustment cylinder (31) and a rotating member (32). The adjustment cylinder (31) is provided along the setting direction of the wall side wall, and the side wall of the adjustment cylinder (31) is provided with two rotating grooves (311), and the rotating grooves (311) are provided along the axis direction of the adjustment cylinder (31). The adjustment cylinder (31) has two mutually perpendicular longitudinal sections, and the intersection line of the two longitudinal sections coincides with the axis of the adjustment cylinder (31). The two longitudinal sections divide the adjustment cylinder (31) into four identical opening areas, and the two rotating grooves (311) are located on the same side of one of the longitudinal sections. The two rotating grooves (311) are provided on the same side of the longitudinal sections. 11) symmetrically arranged with respect to another longitudinal section, the opening of the rotating groove (311) is opened along the circumferential direction of the top of the adjusting cylinder (31), the rotating member (32) includes two rotating plates (321), the rotating plates (321) correspond to the rotating grooves (311) one by one, the rotating plates (321) are arranged along the axis of the adjusting cylinder (31), at least one of the rotating plates (321) is rotatably connected to the adjusting cylinder (31), when two adjacent modular walls (11) are connected at the corner of the wall, the angle between the two rotating plates (321) is 90°, and when two adjacent modular walls (11) are connected on the wall plane, the angle between the two rotating plates (321) is 180°; The two rotating plates (321) are evenly connected with a plurality of the plug-in components (4), and the plug-in components (4) are used to connect two adjacent modular walls (11).
2. The thermal insulation and sound insulation integrated furniture wall according to claim 1, characterized in that: The modular wall (11) comprises an outer frame (111), a side wall of the outer frame (111) arranged along the setting direction of the wall is provided with a U-shaped groove (1111), and the U-shaped groove (1111) is provided along the setting direction of the wall; The plug-in assembly (4) includes at least one plug-in component (41), and the plug-in component (41) includes a telescopic cylinder (411) and an inserting cylinder (412). The axis of the telescopic cylinder (411) is arranged perpendicular to the axis of the adjusting cylinder (31). One end of the telescopic cylinder (411) is connected to the rotating plate (321), and the other end is connected to the inserting cylinder (412). The inserting cylinder (412) and the telescopic cylinder (411) are arranged coaxially. The outer frame (111) is provided with a slot (1112) in the U-shaped groove (1111) for inserting the inserting cylinder (412).
3. The thermal insulation and sound insulation integrated furniture wall according to claim 2, characterized in that: The plug-in connector (41) further comprises at least one engaging block (413), at least one slide groove (4121) is provided on the plug-in tube (412), the engaging block (413) corresponds to the slide groove (4121), the engaging block (413) is slidably connected to the plug-in tube (412), the engaging block (413) moves toward or away from the axis of the plug-in tube (412), the outer frame (111) is provided with an engaging groove (1113) in the slot (1112) for engaging the engaging block (413), and the engaging groove (1113) is communicated with the slot (1112); The plug-in assembly (4) further comprises at least one connecting member (42) and a driving member (43), wherein the connecting member (42) corresponds to the plug-in member (41), and the connecting member (42) comprises a screw rod (421), an adjusting rod (422) and at least one pushing rod (424), wherein the screw rod (421) is coaxially arranged with the plug-in cylinder (412), and the end of the screw rod (421) away from the axis of the adjusting cylinder (31) is hollow, and the adjusting rod (422) is coaxially located on the side of the screw rod (421) away from the axis of the adjusting cylinder (31), and one end of the adjusting rod (422) is plugged into the screw rod (421), and the adjusting rod (422) is threadedly connected to the screw rod (421) to form a telescopic rod, and the other end of the adjusting rod (422) is sequentially passed through the rotating plate (321), the telescopic cylinder (411) and the plug-in cylinder (412). The connecting tube (412) is provided with a connecting tube (412), the adjusting rod (422) is slidably connected to the rotating plate (321), the telescopic tube (411) and the plug-in tube (412) in sequence, the pushing rod (424) corresponds to the clamping block (413), the pushing rod (424) is located in the plug-in tube (412), one end of the pushing rod (424) is hinged to one end of the adjusting rod (422) close to the telescopic tube (411), and the other end is hinged to a hinge seat (4241), the hinge seat (4241) is slidably connected to the clamping block (413) along the axis of the plug-in tube (412), the pushing rod (424) is tilted from the telescopic tube (411) to the plug-in tube (412) away from the axis of the plug-in tube (412), the driving member (43) is connected to the adjusting tube (31), and the driving member (43) is used to push the telescopic rod to move.
4. The thermal insulation and sound insulation integrated furniture wall according to claim 3, characterized in that: At least one fixing screw (113) is provided in the modular wall (11), the fixing screw (113) is arranged parallel to the wall, and the fixing screw (113) is connected to the modular wall (11); The connecting member (42) further includes a connecting spring (423), the adjusting rod (422) corresponds to the fixing screw (113), the adjusting rod (422) passes through the plug-in tube (412) and is plugged into the fixing screw (113), the connecting spring (423) is located in the plug-in tube (412), the connecting spring (423) is close to the plug-in tube (412) and away from the telescopic tube (411), the connecting spring (423) is sleeved on the adjusting rod (422), one end of the connecting spring (423) is connected to the plug-in tube (412), and the other end is connected to the adjusting rod (422).
5. The thermal insulation and sound insulation integrated furniture wall according to claim 3, characterized in that: The driving member (43) includes a driving rod (431), a driving spring (432), at least one conical pusher block (433) and a fixed source (434); one end of the driving rod (431) is passed through the adjusting cylinder (31); the driving rod (431) and the adjusting cylinder (31) are coaxially arranged; the driving rod (431) is slidably connected to the adjusting cylinder (31); the driving spring (432) is located in the adjusting cylinder (31); the driving spring (432) is sleeved on one end of the driving rod (431) near the top of the adjusting cylinder (31); one end of the driving spring (432) is connected to the driving rod (431), and the other end is connected to the adjusting cylinder (31). The diameter of the conical pusher block (433) gradually decreases from the top to the bottom of the adjusting cylinder (31); the driving rod (431) is located at one end inside the adjusting cylinder (31) and is penetrated by the conical pusher block (433); the screwing rod (421) is away from the adjusting rod (422) and is in contact with the conical pusher block (433); the conical pusher block (433) drives the screwing rod (421) to move away from or close to the axis of the adjusting cylinder (31); the fixed source (434) is connected to the driving rod (431) at one end outside the adjusting cylinder (31); the fixed source (434) is used to detachably connect the driving rod (431) and the adjusting cylinder (31).
6. The thermal insulation and sound insulation integrated furniture wall according to claim 5, characterized in that: The rotating member (32) further comprises at least two connecting rods (322), one rotating plate (321) corresponds to at least one connecting rod (322), the connecting rod (322) is arranged perpendicular to the axis of the adjusting cylinder (31), one end of the connecting rod (322) is connected to the rotating plate (321), and the other end is connected to a sleeve (3221), the driving rod (431) is passed through the sleeve (3221), and the driving rod (431) is slidably connected to the sleeve (3221).
7. The thermal insulation and sound insulation integrated furniture wall according to claim 5, characterized in that: The fixed source (434) includes a fixed plate (4341), two L-shaped plates (4342) and two fixed springs (4343). The fixed plate (4341) is connected to the driving rod (431). The fixed plate (4341) and the driving rod (431) are arranged vertically. The top of the adjustment cylinder (31) is provided with a placement groove (313) for placing the fixed plate (4341). The top of the fixed plate (4341) is provided with two fixed grooves, and the two fixed grooves are evenly distributed along the circumference of the fixed plate (4341). The L-shaped plate (4342) corresponds to the fixed groove one by one, one end of the L-shaped plate (4342) is located in the fixed groove, and the adjustment cylinder (31) is provided with an avoidance groove (314) in the placement groove (313) for the end of the L-shaped plate (4342) located in the fixed groove to extend into, and the fixed spring (4343) corresponds to the fixed groove one by one, and the fixed spring (4343) is arranged along the distribution direction of the two L-shaped plates (4342), and the two ends of the fixed spring (4343) are respectively connected to the fixed plate (4341) and the L-shaped plate (4342).
8. The thermal insulation and sound insulation integrated furniture wall according to claim 1, characterized in that: The rotating member (32) further comprises two locking sources (323), both of which are close to the rotating rotating plate (321), and the locking sources (323) are connected to the adjusting cylinder (31), and the locking sources (323) are used to connect the adjusting cylinder (31) and the rotating rotating plate (321).
9. The thermal insulation and sound insulation integrated furniture wall according to claim 2, characterized in that: The modular wall (11) further comprises a plurality of functional filling components (2), and the modular wall (11) further comprises two base plates (112), the two base plates (112) being connected to two opposite sides of the outer frame (111), the two base plates (112) being distributed along the depth direction of the outer frame (111), and the two base plates (112) and the outer frame (111) forming a filling cavity for the functional filling components (2) to be filled; The functional filling component (2) comprises a composite sound insulation structure (21) and a phase change material heat insulation layer (22); the composite sound insulation structure (21) comprises a sound-absorbing cotton layer (211), a resonance plate layer (212) and a sound insulation felt layer (213); the sound-absorbing cotton layer (211), the resonance plate layer (212) and the sound insulation felt layer (213) are alternately arranged along the thickness direction of the modular wall (11); the sound-absorbing cotton layer (211), the resonance plate layer (212) and the sound insulation felt layer (213) are fixed together; the phase change material heat insulation layer (22) is arranged adjacent to the composite sound insulation structure (21); and the phase change material heat insulation layer (22) is made of a paraffin-based material or a salt hydrate material.
10. The thermal insulation and sound insulation integrated furniture wall according to claim 9, characterized in that: The outer frame (111) further comprises a sealing assembly (5), wherein one side of the outer frame (111) is connected to a first inserting strip (1114) on both side walls of the U-shaped groove (1111), and the other side is provided with a plug-in groove (1115) on both side walls of the U-shaped groove (1111) for plugging and fitting the first inserting strip (1114) on the adjacent outer frame (111); when it is necessary to seal two adjacent modular walls (11) on the wall plane, the adjustment cylinder (31) is located in the connection area formed by the two adjacent U-shaped grooves (1111), and a sealing assembly (5) is provided between the two adjacent modular walls (11); the sealing assembly (5) is an elastic sealing gasket (51), and the elastic sealing gasket (51) is embedded in the plug-in groove (1115); When sealing between two adjacent modular walls (11) at a wall corner, the sealing assembly (5) further comprises an L-shaped sealing plate (52), one side of which is provided with a sealing groove (521) for the first insertion strip (1114) to be inserted into, and the other side of which is connected with a second insertion strip (522) to be inserted into the insertion groove (1115).