A ceramic sound bottle

By installing the speaker at the bottle opening of the ceramic sound bottle and stably installing it with elastic clamping components, the sound inconsistency and shaking problems caused by the speaker are solved, and the sound texture and stability are improved.

CN116419117BActive Publication Date: 2025-07-25SHENZHEN QINGYUE CERAMIC AUDIO TECH CO LTD
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Patent Information

Application Number
CN202310258852.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-09
Publication Date
2025-07-25
Estimated Expiration
2043-03-09

AI Technical Summary

Technical Problem

The speakers of the existing ceramic ornaments are arranged on the side, causing the sound waves to reach the inner walls in different directions inconsistent time, affecting the sound texture, and the sounding surface of the speakers produces transverse thrust perpendicular to the ground, making the ornament unstable.

Method used

The speaker is installed at the bottle mouth, and the sound wave reflection is consistent with the circular chamber structure of the sound bottle, and the elastic clamping component is arranged to be installed stably, so that the speaker is facing parallel to gravity to reduce shaking.

Benefits of technology

It improves the sound texture and electroacoustic efficiency, ensures the stability of ceramic ornaments, and reduces shaking and sound wave interference.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a ceramic sound bottle, which comprises: a display body, a sound device and a display base. The display body is placed on the display base. The display body comprises: a bottle body, a bottle mouth and a bottleneck. The bottleneck connects the bottle body and the bottle mouth. The sound device is installed at the bottle mouth. The sound device comprises a base and a loudspeaker. The base abuts against the connection between the bottle mouth and the bottleneck. The loudspeaker is installed on the base, and the loudspeaker faces the outside of the bottle mouth. This ceramic sound bottle can reduce the degree of shaking during operation, ensure stable placement of the ceramic display, and obtain better stability. At the same time, it solves the problem of mutual interference of internal sound waves, further improves the sound texture, reduces the loss of sound wave interference, and improves the electroacoustic efficiency.
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Description

Technical Field

[0001] The present invention relates to the fields of ceramic ornaments and electroacoustic technologies, and particularly to a ceramic sound bottle. Background Art

[0002] With the development of technology, the market demand has gradually shifted from traditional ceramic ornaments to ceramic ornaments with diverse functions. Ceramic ornaments are aesthetically pleasing in shape and are thus widely used in people's lives. Existing ceramic ornaments have diverse functions and possess audio functions, and common ceramic ornaments are bottle and jar types with a round shape facing upwards (hereinafter referred to as sound bottles).

[0003] The Chinese utility model patent with the application number "CN202123064194.6" and the name "A Ceramic Ornament with a Bluetooth Speaker" discloses a ceramic ornament, which includes: a ceramic ornament, a support assembly, and a shock-absorbing assembly. A Bluetooth speaker for playing music is arranged inside the ceramic ornament. However, most of the speakers of the existing Bluetooth speakers are arranged on the side of the ceramic ornament, and it has the following defects: First, when the speaker works, the distances from the center to the inner walls around it are not the same, resulting in unequal arrival times of the internal sound waves at the inner walls in all directions, and there is a time difference in the reflected waves, thus affecting the sound quality; Second, the sound-emitting surface of the speaker is perpendicular to the ground at 90°. When the speaker works under heavy load, a lateral thrust perpendicular to the gravitational force of the ground will be generated, causing the speaker and the ornament to shake in the front-back direction, resulting in instability of the ornament and further affecting the sound quality.

[0004] Therefore, how to design a ceramic sound bottle that can reduce the degree of shaking during operation, ensure the stable placement of the ceramic ornament, and obtain better stability; at the same time, solve the internal sound wave problem and further improve the sound quality is a technical problem that needs to be solved by those skilled in the art. Summary of the Invention

[0005] The purpose of the present invention is to overcome the deficiencies in the prior art and provide a ceramic sound bottle that can reduce the degree of shaking during operation, ensure the stable placement of the ceramic ornament, and obtain better stability; at the same time, solve the internal sound wave problem and further improve the sound quality.

[0006] The purpose of the present invention is achieved through the following technical solutions:

[0007] A ceramic sound bottle, which includes: an ornament body, an audio device, and an ornament base. The ornament body is placed on the ornament base. The ornament body includes: a bottle body, a bottle mouth, and a bottleneck. The bottleneck connects the bottle body and the bottle mouth. The audio device is installed at the bottle mouth;

[0008] The audio device includes a base and a speaker. The base abuts against the connection between the bottle mouth and the bottleneck, and the speaker is installed on the base and faces the outside of the bottle mouth.

[0009] In one embodiment, a holding substrate is provided on the base. The holding substrate presses against the bottle mouth, and a sealing ring is provided between the holding substrate and the bottle mouth.

[0010] In one embodiment, the number of the speakers is multiple, and a plurality of snap grooves are provided on the holding substrate. Each speaker is detachably installed in the snap groove.

[0011] In one embodiment, a built-in power supply is provided in the ornament base, and the built-in power supply supplies power to the audio device.

[0012] In one embodiment, the audio device includes a clamping member. The clamping member includes a connecting rod and an elastic support member;

[0013] The connecting rod is slidably inserted through the base, and a telescopic elastic member is provided between the connecting rod and the base. The telescopic elastic member makes the connecting rod and the base approach each other; the elastic support member is provided at the end of the connecting rod;

[0014] The elastic support member is an arc-shaped spring structure, and the end of the elastic support member abuts against the connection between the bottleneck and the bottle body;

[0015] A sleeve is provided on the base, and the telescopic elastic member is received in the sleeve. The telescopic elastic member is a spring structure; the connecting rod is inserted through the telescopic elastic member and the sleeve, and a shoulder retaining piece is provided on the connecting rod. The shoulder retaining piece abuts against the telescopic elastic member.

[0016] In one embodiment, the number of the elastic support members is two, and the two elastic support members are cross-arranged.

[0017] In one embodiment, a gasket is provided at the end of the elastic support member, and the gasket is a rubber structure.

[0018] In one embodiment, a pull ring is provided at the top of the connecting rod, and the pull ring is located outside the base.

[0019] In one embodiment, the connecting rod is an adjustable telescopic rod structure.

[0020] In summary, the ceramic sound bottle of the present invention can reduce the degree of shaking during operation, ensure the stable placement of the ceramic ornament, and obtain better stability; at the same time, it solves the problem of mutual interference of internal sound waves, further improves the sound texture, reduces the loss of sound wave interference, and improves the electro-acoustic efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for use in the embodiments. It should be understood that the following drawings only show some embodiments of the present invention, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, without creative efforts, other related drawings can also be obtained based on these drawings.

[0022] Figure 1 is a schematic structural diagram of the ceramic sound bottle of the present invention;

[0023] Figure 2 is Figure 1 an exploded schematic diagram of the ceramic sound bottle shown;

[0024] Figure 3 is Figure 1 a partial cross-sectional view of the ceramic sound bottle shown;

[0025] Figure 4 is Figure 2 a schematic structural diagram of the audio device shown;

[0026] Figure 5 is a schematic structural diagram of the improved audio device and the clamping component;

[0027] Figure 6 is a planar schematic diagram of the cooperation between the audio device and the clamping component;

[0028] Figure 7 is a schematic diagram of the state of the clamping component during use;

[0029] Figure 8 is a schematic diagram of the state of the clamping component during installation (one);

[0030] Figure 9 is a schematic diagram of the state of the clamping component during installation (two);

[0031] Figure 10 is a schematic diagram of the state of the clamping component during disassembly;

[0032] Figure 11 is a schematic diagram of the state of the clamping component cooperating with other types of ornament bodies. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0033] To facilitate the understanding of the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. Preferred embodiments of the present invention are shown in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided to make the disclosure of the present invention more thorough and comprehensive.

[0034] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and do not represent the only embodiments.

[0035] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which the present invention belongs. The terms used in the specification of the present invention herein are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0036] The sound bottle of the present invention specifically relates to bottle jars made of ceramics or glass with a circular upward-facing surface. The speaker is mounted upward at the bottle mouth, the paper cone surface is parallel to the ground, and electrical and electronic devices such as power amplifiers are placed inside the sound bottle or inside the decorative base. It is a preparation process for a new audio system. This technology combines acoustics and aesthetics, and combines digital audio and decorative pieces. On the premise of greatly improving the audio effect, it also improves the service life of the audio system. It is a modern audio-visual viewing system that can simultaneously meet people's auditory and visual aesthetics.

[0037] Round objects play an important role in musical instruments due to their good vocal performance. For percussion instruments and stringed and wind instruments (such as drums, erhu, pipa, suona), their resonance cavities are all round. Among the ceramic products that have developed in our country for thousands of years, round ceramic standing pieces have been used as ornaments for thousands of years due to their advantages such as uniform stress and easy processing, and they are important decorative pieces in Chinese families.

[0038] The present invention combines the advantages of the above two, and at the same time integrates the well-developed domestic electronics industry and ceramic and glass industries to manufacture an audio-visual viewing system that can simultaneously meet people's auditory and visual aesthetics.

[0039] The sound bottle made of ceramics or glass of the present invention is defined as follows:

[0040] 1. It is divided into two major categories: Chinese style and Western style. The series of sound bottles are designed into ornaments and decorative pieces of different shapes. The series of sound bottles match the physical shape of the speaker. The appearance is a standing piece with a circular top view and side surfaces designed with curves of different shapes, which conforms to Chinese or Western aesthetics and is commonly known as bottle and jar ornaments.

[0041] 2. The bottle mouth; whether it is flared outward, flared inward, or straight, it is circular and fits the round edge of the speaker mounting iron frame.

[0042] 3. The bottle body; the curves of the inner and outer walls of the bottle body have a circular center point on the top view. The surface of the outer wall of the bottle body can be arbitrarily changed; it can have horizontal folding lines, vertical folding lines, or horizontal and vertical intersections, and can have any concave and convex lines and painted patterns. Regardless of the shape inside the bottle body, as long as it meets the air volume and acoustic shape required by the speaker.

[0043] 4. The bottle wall can be partially single-layer or double-layer, or all single-layer or double-layer. The principle is to correct the resonance cavity volume and shape of the speaker inside the bottle on the premise of ensuring the beautiful appearance of the bottle wall shape. The height and diameter of the bottle body are not limited.

[0044] 5. The bottle body is used as a resonance cavity, mainly as a standing ornament placed on a hard base, or the speaker can be inverted and suspended with the speaker facing the ground or embedded in other objects. When needed, it can also be placed horizontally on a wooden or metal rack. In short, it can be placed arbitrarily. When used at high power, the speaker can be installed at both the bottle mouth and the bottle bottom at the same time.

[0045] The preparation process of the series of sound bottles made of ceramic or glass, as well as the stereo, 2+1, and 5+1 audio systems mainly made of this series of sound bottles, specifically includes the following steps:

[0046] 1. First, manufacture the mold according to the design. Using the current existing ceramic or glass firing process, fire the sound bottle into shape: during the firing process of ceramics, the dimensional shrinkage changes greatly. Use the bottle shape design and leave enough margin when designing the diameter of the bottle-shaped speaker mouth. Since it is circular, its shrinkage range is about 10 mm, which meets the range of 10 mm of the speaker metal mounting frame edge.

[0047] 2. The electrical part and the electronic lead are introduced into the bottle through a hole drilled at the bottom of the bottle to ensure beauty.

[0048] 3. Install the speaker into the designed bottle body, and cover the speaker with a protective cover. A single bottle body is used for small-power full-frequency or coaxial speakers, and multiple speakers such as high, medium, and low frequencies with high power have independent bottle bodies. Multiple bottle bodies are placed on a fixed rack, preferably arranged longitudinally, or can be arranged horizontally, or can be arranged in a crisscross pattern.

[0049] 4. The power supply, Bluetooth, power amplifier, and radio antenna of the sound system can be placed inside the box according to customer requirements (for remote control, because the ceramic material does not shield the remote control electromagnetic wave), or can be installed inside the base of the sound bottle (manual and remote control), and the power supply can also be external. The power amplifier system inside the base is equipped with binding posts for connecting to the box.

[0050] 5. The entire sound system has internal and external network communication functions, and can be connected both wired and wirelessly via Bluetooth, either internally or externally. It can be used as an intelligent network terminal product and has basic network intelligent functions.

[0051] 6. The base on which the sound bottle is placed is made of hard materials (such as wood, plastic, porcelain, stone, etc.), designed according to the shape required by the customer, with three legs, four legs, or five legs, and all are equipped with shock-absorbing nails to ensure its sound quality effect.

[0052] 7. A rechargeable battery can be implanted inside the bottle according to customer requirements to serve as the power supply for the sound system and an emergency power supply.

[0053] 8. This sound system: can be customized according to the customer's requirements for the functions, external shape, and decoration of the sound system, and can be used as a Chinese or Western style ornament, decorative piece, inlay, or hanging piece in various places.

[0054] The present invention provides a ceramic sound bottle 10, as Figure 1 and Figure 2 shown, which includes: an ornament body 100, a sound device 200, and an ornament base 300. The ornament body 100 is placed on the ornament base 300. The ornament body 100 includes: a bottle body 110, a bottle mouth 120, and a bottle neck 130. The bottle neck 130 connects the bottle body 110 and the bottle mouth 120, and the sound device 200 is installed at the bottle mouth 120.

[0055] Among them, as Figure 3 shown, the sound device 200 includes a base 210 and a speaker 220. The base 210 abuts against the connection between the bottle mouth 120 and the bottle neck 130, and the speaker 220 is installed on the base 210, and the speaker 220 faces the outside of the bottle mouth 120.

[0056] During installation, the ornament body 100, the sound device 200, and the ornament base 300 can be separately produced and processed, then the ornament body 100 and the sound device 200 can be assembled, and finally the ornament body 100 can be placed on the base 300. Among them, the sound device 200 can be adhesively bonded to the ornament body 100 with glue.

[0057] Different from the prior art solution of setting the speaker 220 on the side of the ceramic ornament, the sound device 200 and the speaker 220 of the present invention are set at the bottle mouth 120 of the ornament body 100. Such a setting can have the following benefits:

[0058] First, make full use of the structural feature that the sound bottle has a circular chamber, making the bottle body 110 a resonance chamber for sound production. And the speaker 220 is arranged at the bottle mouth 120. Then, the time for sound waves to reach the inner walls in all directions is relatively consistent, and the consistent reflected waves generated can form resonance in the bottle body 110, thereby improving the sound texture and the electro-acoustic efficiency;

[0059] Second, the orientation of the speaker 220 is parallel to the direction of gravity. When working under heavy load, the thrust direction generated by the speaker 220 is in the vertical direction. Its amplitude will be reduced under the action of gravity, and there will be no lateral thrust either. Therefore, it is not easy to shake;

[0060] Third, if the speaker 220 is placed on the side, the metal electromagnetic coil in the speaker 220 will sag under the action of gravity. The sagging metal electromagnetic coil will no longer be on the central axis of the speaker 220, which will affect the sound texture. However, in the present invention, the orientation of the speaker 220 is parallel to the direction of gravity. Although the metal electromagnetic coil of the speaker 220 sags under the action of gravity, it is still at the position of the central axis of the speaker 220. Therefore, it is beneficial to improve the sound texture;

[0061] Fourth, the speaker 220 is arranged at the bottle mouth 120, and the sound bottle emits sound upward, and the sound can be heard all around. This can make the placement of the ceramic sound bottle 10 more flexible. When listening to stereo, the front and back between the two bottles can both be used as stereo listening areas.

[0062] In one embodiment, as Figure 3 and Figure 4 shown, a holding substrate 211 is provided on the base 210. The holding substrate 211 presses on the bottle mouth 120, and a sealing ring (not shown in the figure) is provided between the holding substrate 211 and the bottle mouth 120. When the audio device 200 is assembled with the ornament body 100, the sealing ring can fill the gap between the holding substrate 211 and the inner wall of the bottle mouth 120, thereby preventing dust or moisture from entering the ornament body 100. Of course, if the holding substrate 211 and the bottle mouth 120 are adhesively bonded, it also has the function of dust and water prevention.

[0063] Preferably, as Figure 3 and Figure 4 shown, the number of speakers 220 is multiple, and a plurality of buckle grooves 212 are provided on the holding substrate 211. Each speaker 220 is detachably installed in the buckle groove 212. In this way, when assembling, the staff only needs to press the speaker 220 into the buckle groove 212 to realize the connection between the speaker 220 and the base 210. Compared with the traditional bolt installation method, this method is more convenient. Moreover, when a certain speaker 220 is damaged and needs to be replaced, the staff can also perform convenient disassembly, thereby improving work efficiency.

[0064] Furthermore, it should be noted that during the firing process of the ornament body 100, dimensional shrinkage changes will occur, resulting in a decrease in the diameter of the bottle mouth 120. This is an inevitable phenomenon during the ceramic firing process and one of the reasons why the prior art does not arrange the audio device 200 at the bottle mouth 120. The ceramic sound bottle 10 of the present invention uses glue to connect the audio device 200 and the ornament body 100, which can, to a certain extent, avoid the tolerance problem caused by firing shrinkage.

[0065] However, using glue connection has the following drawbacks: on the one hand, it is necessary to wait for the glue to solidify, which prolongs the total assembly time of the ceramic sound bottle 10 and reduces work efficiency; on the other hand, the assembled audio device 200 is not convenient for subsequent disassembly. When maintenance is required, the staff needs to forcibly pry open the audio device 200, which is likely to cause damage to the ornament body 100 and the audio device 200. To overcome the above technical problems, the present invention has made a special design as follows.

[0066] As Figure 5 shown, the audio device 200 includes a clamping component 400, and the clamping component 400 includes a connecting rod 410 and an elastic support 420. Among them, the connecting rod 410 is slidably inserted through the base 210, and a telescopic elastic member 430 is provided between the connecting rod 410 and the base 210. The telescopic elastic member 430 makes the connecting rod 410 and the base 210 approach each other. The elastic support 420 is arranged at the end of the connecting rod 410, and the elastic support 420 abuts against the connection between the bottleneck 130 and the bottle body 110. The elastic support 420 is an elastic structure, which has a certain arc (that is, the end of the elastic support 420 is upturned), and its state can be changed after applying a certain force to it, that is, the end of the elastic support 420 can either upturn or downturn.

[0067] After assembling with the clamping component 400, the base 210 and the elastic support 420 can clamp the bottleneck 130, so that the audio device 200 can be stably held at the position of the bottle mouth 120. In this way, the problem of difficult assembly caused by ceramic firing shrinkage can be solved without using glue. The specific working principle will be described below.

[0068] In this embodiment, as Figure 5 and Figure 6As shown, the base 210 is provided with a sleeve 213, and the telescopic elastic member 430 is accommodated in the sleeve 213. The telescopic elastic member 430 is a spring structure. The connecting rod 410 is penetrated by the telescopic elastic member 430 and the sleeve 213. The connecting rod 410 is provided with a shoulder stopper 411, and the shoulder stopper 411 is against the telescopic elastic member 430. When in use, the shoulder stopper 411 compresses the telescopic elastic member 430, and the telescopic elastic member 430 provides a reaction force for the shoulder stopper 411, so that the base 210 and the elastic support member 420 tend to approach each other. The specific working principle will be described below.

[0069] Preferably, Figure 5 As shown, the elastic support member 420 is an arc-shaped spring structure, and the end of the elastic support member 420 is against the connection between the bottleneck 130 and the bottle body 110 (such as Figure 7 In addition, the number of the elastic supporting members 420 is two, and the two elastic supporting members 420 are cross-arranged.

[0070] Next, in combination with the above embodiments, the working principle of the clamping component 400 is described:

[0071] In the initial state, the state of the audio device 200 and the clamping member 400 is as follows: Figure 6 As shown, at this time, the end of the elastic support member 420 is tilted upward, and the telescopic elastic member 430 has not been compressed;

[0072] During assembly, first, the staff presses the audio device 200 together with the clamping component 400 into the bottle mouth 120 of the ornament body 100; the elastic support member 420 will first abut against the inner wall of the bottleneck 130, and the elastic support member 420 will be deformed (further tilted upward) by the compression of the inner wall; as the audio device 200 is further pressed down, when the abutting substrate 211 abuts against the bottle mouth 120, the elastic support member 420 has not yet completely passed over the bottleneck 130 (such as Figure 8 At this time, the staff member presses the elastic support member 420 to pass over the connecting rod 410, and the connecting rod 410 descends, and the elastic support member 420 at the end thereof can pass over the bottleneck 130 (as shown in FIG. Figure 9 At the same time, the shoulder stopper 411 squeezes the telescopic elastic member 430, and the telescopic elastic member 430 accumulates elastic potential energy. Then, the staff loosens the connecting rod 410, and under the force of the telescopic elastic member 430, the connecting rod 410 begins to rise until the end of the elastic support member 420 abuts against the connection between the bottleneck 130 and the bottle body 110 (as shown in FIG. Figure 7As shown. At this time, the telescopic elastic member 430 is not fully reset, and the connecting rod 410 still has an upward trend. That is to say, the elastic support member 420 has a tendency to approach the base 210. The elastic support member 420 and the abutting substrate 211 jointly clamp the bottleneck 130, so that the audio device 200 is stably held at the bottle mouth 120;

[0073] It should be noted that the elastic support member 420 has an elastic force, and at this time, the direction of the elastic force of the elastic support member 420 makes the connecting rod 410 move downward. However, the elastic force of the elastic support member 420 is generated because the telescopic elastic member 430 pushes the connecting rod 410 upward. Therefore, the elastic force of the elastic support member 420 cannot be greater than the elastic force of the telescopic elastic member 430, and it is impossible to make the connecting rod 410 move downward. And the elastic force of the telescopic elastic member 430 cannot cause a large deformation of the elastic support member 420. In this way, the clamping member 400 will remain in a relatively stable state;

[0074] When disassembly is required, pull the connecting rod 410 upward, then the elastic support member 420 will undergo a large degree of deformation under the external force, changing from the state where the end is upturned to the state where the end is downturned (from Figure 7 to Figure 10 ). Then, continue to apply force to the connecting rod 410, and the elastic support member 420 undergoes elastic deformation under the extrusion, and then crosses over the bottleneck 130. In this way, the elastic support member 420 and the abutting substrate 211 no longer clamp the bottleneck 130, and the audio device 200 and the clamping member 400 can be smoothly withdrawn from the bottle mouth 120.

[0075] It should be emphasized that the clamping member 400 of the present invention cleverly utilizes the bottleneck 130 structure of the ornament body 100. By setting two elastic members (the elastic support member 420 and the telescopic elastic member 430), after the audio device 200 is assembled, a clamping force is formed between the elastic support member 420 and the abutting substrate 211, and then the bottleneck 130 is clamped to achieve the purpose of stably installing the audio device 200 at the bottle mouth 120. Its structure has the following advantages:

[0076] First, the clamping member 400 of the present invention does not require high precision. It can tolerate errors within a certain dimension range and has good adaptability, thus solving the problem of difficult assembly due to the shrinkage tolerance caused by ceramic firing;

[0077] Second, the installation and disassembly are convenient and it is not easy to damage the ornament body 100. During installation, the staff only needs to first press the base 210 onto the bottle mouth and then press down the connecting rod 410; during disassembly, the staff only needs to pull up the connecting rod 410 to remove the audio device 200;

[0078] Thirdly, the installation of the audio device 200 is achieved by clamping. After installation, the abutting substrate 211 always has a certain pressing force on the bottle mouth 120. The pressing force makes the abutting substrate 211 close to the bottle mouth 120, and the gap between the two is small. With the sealing ring, it can play a good dustproof and waterproof function.

[0079] Fourthly, the two elastic members cooperate with each other. When the ceramic sound bottle 10 is shaken, the elastic support member 420 and the telescopic elastic member 430 can provide a buffer for the sound device 200, thereby protecting the fragile electronic components therein.

[0080] In one embodiment, the connecting rod 410 is an adjustable telescopic rod structure. Figure 11 When the bottleneck 130 of the ornament body 100 is longer, it is only necessary to change (adjust) the length of the connecting rod 410 to match the depth of the bottleneck 130. In this way, the clamping component 400 can be adapted to various types of ornament bodies 100 without changing the structure of the clamping component 400, thereby improving the compatibility of the audio device 200.

[0081] Preferably, Figure 5 As shown, a gasket 421 is provided at the end of the elastic support member 420. The gasket 421 is a rubber structure. In this way, during the installation and removal process, the gasket 421 of the elastic support member 420 is against the inner wall of the bottleneck 130. The gasket 421 provides a good friction coefficient, so that the elastic support member 420 is not easy to slip; and the gasket 421 also plays a buffering role, so that the elastic support member 420 is not easy to scratch the inner wall of the ornament body 100. In one embodiment, as Figure 5 and Figure 10 As shown, a pull ring 412 is provided on the top of the connecting rod 410, and the pull ring 412 is located outside the base 210; the setting of the pull ring 412 can facilitate the operation of the staff. During the disassembly process, the staff only needs to lift the pull ring 412 to smoothly take out the audio device 200 and the clamping component 400 from the bottle mouth 120.

[0082] In one embodiment, a built-in power supply (not shown) is provided in the ornament base 300, and the built-in power supply supplies power to the audio device 200. In this way, the ceramic audio bottle 10 can be placed at any position without being restricted by the length of the power cord.

[0083] In summary, the ceramic sound bottle 10 of the present invention can reduce the degree of shaking during operation, ensure the stable placement of the ceramic ornaments, and obtain better stability; at the same time, it solves the internal sound wave problem, further improves the sound texture, and improves the electroacoustic efficiency.

[0084] The above-described embodiments merely represent several implementation manners of the present invention. The description thereof is relatively specific and detailed, but it should not be construed as a limitation on the scope of the invention patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several modifications and improvements can still be made, and these all fall within the protection scope of the present invention. Therefore, the protection scope of the present invention patent shall be subject to the appended claims.

Claims

1. A ceramic sound bottle, characterized in that, Comprising: An ornament body, a sound device, and an ornament base. The ornament body is placed on the ornament base. The ornament body includes: a bottle body, a bottle mouth, and a bottleneck. The bottleneck connects the bottle body and the bottle mouth. The sound device is installed at the bottle mouth. The sound device includes a base and a speaker. The base abuts against the connection between the bottle mouth and the bottleneck. The speaker is installed on the base, and the speaker faces the outside of the bottle mouth. The sound device includes a clamping component. The clamping component includes a connecting rod and an elastic support. The connecting rod is slidably inserted through the base, and a telescopic elastic member is provided between the connecting rod and the base. The telescopic elastic member makes the connecting rod and the base approach each other. The elastic support is provided at the end of the connecting rod. The elastic support is an arc-shaped spring structure. The end of the elastic support abuts against the connection between the bottleneck and the bottle body. A sleeve is provided on the base. The telescopic elastic member is received in the sleeve. The telescopic elastic member is a spring structure. The connecting rod is inserted through the telescopic elastic member and the sleeve. A shoulder retaining piece is provided on the connecting rod, and the shoulder retaining piece abuts against the telescopic elastic member.

2. The ceramic sound bottle according to claim 1, characterized in that, A retaining substrate is provided on the base. The retaining substrate presses against the bottle mouth, and a sealing ring is provided between the retaining substrate and the bottle mouth.

3. The ceramic sound bottle according to claim 2, wherein The number of the speakers is multiple. A plurality of buckle grooves are provided on the retaining substrate. Each speaker is detachably installed in the buckle groove.

4. The ceramic sound bottle according to claim 1, characterized in that, An internal power supply is provided in the ornament base. The internal power supply supplies power to the sound device.

5. The ceramic sound bottle according to claim 1, characterized in that, The number of the elastic supports is two, and the two elastic supports are arranged crosswise.

6. The ceramic sound bottle according to claim 5, characterized in that, A gasket is provided at the end of the elastic support. The gasket is a rubber structure.

7. The ceramic sound bottle according to claim 1, wherein A pull ring is provided at the top of the connecting rod. The pull ring is located outside the base.

8. The ceramic sound bottle according to claim 1, characterized in that, The connecting rod is an adjustable telescopic rod structure.

Citation Information

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