Gasket structure, pronunciation and amplification assembly and sliding pronunciation device
By designing the combination of the gasket structure and amplification components, the problem of short sound retention time and small propagation range of the sliding pronunciation device is solved, and the wide spread of sound and the duration of the sound is achieved, meeting the long-term decompression needs.
Patent Information
- Application Number
- CN202422711742.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-11-07
AI Technical Summary
The existing sliding pronunciation device has a short sound retention time and a small sound propagation range, which cannot meet the needs of long-term decompression.
A gasket structure is designed, including a gasket element, a first sliding element, a number of first movable elements and a first amplification element, and the sound generated by sliding and movement is diffused, and the sound is further diffused in combination with the first housing structure and the second amplification element.
It improves the spread range and duration of the sound, meeting the long-term decompression needs.
Smart Images

Figure CN223287621U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of toys, in particular to a gasket structure, a sound-producing and amplifying component and a sliding sound-producing device. Background Art
[0002] To help people release stress and relieve anxiety, some decompression toys have appeared on the market, such as kneading toys, finger spinners, and sound toys. These toys allow people to temporarily free their brains from troubling problems through hand movements, achieving a relaxing effect.
[0003] Existing sound-generating toys on the market generally produce short sounds by sliding or rolling to relieve stress. However, the sound produced by such toys has a short retention time and a small sound propagation range, forcing users to constantly slide back and forth to meet their stress relief needs.
[0004] At present, no effective solution has been proposed for the problems of short sound retention time and small sound propagation range of the sliding sound-generating device in the related art. Utility Model Content
[0005] The purpose of this application is to address the deficiencies in the prior art and to provide a gasket structure, a sound amplification component and a sliding sound device, so as to at least solve the problems of the sliding sound device in the related art such as short sound retention time and small sound propagation range.
[0006] To achieve the above objectives, the technical solutions adopted in this application are:
[0007] In a first aspect, a gasket structure is provided for sliding to generate sound and diffuse sound, comprising:
[0008] a gasket element, the gasket element being disposed inside the sound amplification assembly and configured to reciprocate in a preset direction under the action of an external force;
[0009] a first sliding element, which is arranged on a side of the spacer element and is slidably connected to the sounding assembly of the sliding sounding device, and is used to reciprocate along a preset direction under the action of the spacer element;
[0010] a plurality of first movable elements, each of which is disposed on a side of the first sliding element and is movably connected to a sounding assembly of the sliding sounding device, and is configured to reciprocate in a preset direction under the action of the first sliding element to generate sound;
[0011] At least one first sound amplifying element is provided through the spacer element and is located on the side of the first sliding element, for diffusing the sound generated by the first movable elements.
[0012] In some embodiments, the present invention further includes:
[0013] A plurality of first positioning elements are distributed at both ends of the gasket element and are used to position the gasket element inside the sound amplification component.
[0014] In a second aspect, a pronunciation amplification component is provided, comprising:
[0015] a first shell structure, the first shell structure being slidably connected to the sounding component of the sliding sounding device and configured to reciprocate along a preset direction under the action of an external force;
[0016] As described in the first aspect, the gasket structure is arranged inside the first shell structure, and is slidably and movably connected to the sound component of the sliding sound device, and is used to reciprocate along a preset direction under the action of the first shell structure to generate sound and diffuse sound.
[0017] In some embodiments, the first housing structure comprises:
[0018] The first shell element has the gasket structure disposed therein and is slidably connected to the pronunciation component of the sliding pronunciation device, and is used for reciprocating along a preset direction under the action of an external force.
[0019] In some embodiments, the first housing structure comprises:
[0020] At least one second sound amplifying element, wherein the second sound amplifying element is arranged through the first shell structure and is used for diffusing sound.
[0021] In some embodiments, the first housing structure comprises:
[0022] A plurality of second positioning elements are distributed at both ends of the interior of the first shell structure and are positioned and connected to the gasket structure to define the position of the gasket structure.
[0023] In some embodiments, further comprising:
[0024] A sealing structure is provided on the side of the first shell structure and is located outside the gasket structure, is connected to the first shell structure, and is slidably connected to the pronunciation component of the sliding pronunciation device.
[0025] In some embodiments, the sealing structure includes:
[0026] A sealing element is provided on the side of the first shell structure and located on the outside of the gasket structure, connected to the first shell structure, and movably connected to the pronunciation component of the sliding pronunciation device.
[0027] In some embodiments, the first housing structure further comprises:
[0028] A plurality of first connecting elements are distributed at both ends of the interior of the first shell structure and are respectively detachably connected to the sealing structure.
[0029] In some embodiments, the sealing structure further comprises:
[0030] A plurality of second connecting elements are distributed at both ends of the sealing structure and are respectively detachably connected to the first shell structure.
[0031] In some embodiments, the sealing structure further comprises:
[0032] The second sliding element is arranged on the side of the sealing structure and is slidably connected to the pronunciation component of the sliding pronunciation device.
[0033] In some embodiments, further comprising:
[0034] A suspended structure is provided between the first shell structure and the gasket structure, and is used to suspend the gasket structure.
[0035] In some embodiments, the suspended structure includes:
[0036] A plurality of suspended elements are distributed at both ends of the interior of the first shell structure and located between the first shell structure and the gasket structure, so as to suspend the gasket structure.
[0037] In some embodiments, the suspended structure includes:
[0038] A plurality of third positioning elements are distributed at both ends of the interior of the first shell structure and are respectively positioned and connected to the gasket structure to define the position of the gasket structure.
[0039] In a third aspect, a sliding pronunciation device is provided, comprising:
[0040] The gasket structure according to the first aspect, or the sound amplification assembly according to the second aspect;
[0041] A sound-producing component is slidably connected to the gasket structure or the sound-producing and amplifying component, and is used for sliding relative to the gasket structure under the action of an external force to produce sound.
[0042] In some embodiments, the pronunciation component includes:
[0043] a second shell structure, the second shell structure being disposed on a side of the gasket structure or a side of the first shell structure and configured to slide relative to the gasket structure or the first shell structure under an external force;
[0044] a sliding structure, the sliding structure being disposed on a side of the second shell structure, connected to the second shell structure, and slidably connected to the gasket structure;
[0045] The movable structure is movably arranged on the sliding structure and movably connected to the gasket structure, and is used to move relative to the gasket structure to generate sound.
[0046] In some embodiments, the second housing structure comprises:
[0047] a second housing element, wherein the sliding structure is provided on a side of the second housing element for sliding relative to the gasket structure or the first housing structure under the action of an external force;
[0048] At least one third connecting element is provided on the second housing element and is detachably connected to the sliding structure.
[0049] In some embodiments, the sliding structure includes:
[0050] a fixing element, the fixing element being disposed on a side portion of the second housing structure;
[0051] at least one fourth connecting element, the fourth connecting element being disposed on a side of the fixing element and being detachably connected to the second housing structure;
[0052] a chamber element, the chamber element being disposed through the fixed element, the movable structure being movably disposed inside the chamber element;
[0053] A third sliding element is provided at the bottom of the fixing element and is slidably connected to the gasket structure.
[0054] In some embodiments, the sliding structure further comprises:
[0055] A fourth sliding element is provided on a side of the fixing element and is slidably connected to the first housing structure.
[0056] In some embodiments, the activity structure includes:
[0057] an elastic element, the elastic element being arranged inside the sliding structure;
[0058] A second movable element is movably disposed on the sliding structure, connected to the elastic element, and movably connected to the gasket structure, and is used for relative movement with the gasket structure to generate sound.
[0059] Compared with the related art, the embodiments of the present application provide a gasket structure, a sound amplification component and a sliding sound device, in which a first sound amplification element is opened in the gasket structure, which can diffuse the sound generated by the sliding and movement of the first movable element, thereby increasing the diffusion range of the sound and the duration of the sound. BRIEF DESCRIPTION OF THE DRAWINGS
[0060] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:
[0061] Figure 1 is a schematic diagram of a gasket structure according to an embodiment of the present utility model;
[0062] Figure 2 1 is a schematic diagram of a sound amplification assembly according to an embodiment of the present invention;
[0063] Figure 3 2 is a schematic diagram of a sound amplification assembly according to an embodiment of the present invention;
[0064] Figure 4 is a schematic diagram of a first housing structure according to an embodiment of the present utility model;
[0065] Figure 5 is a schematic diagram of a sealing structure according to an embodiment of the present utility model;
[0066] Figure 6 is a schematic diagram of a suspended structure according to an embodiment of the present utility model;
[0067] Figure 7 is a schematic diagram of a sliding pronunciation device according to an embodiment of the present utility model (1);
[0068] Figure 8 is a schematic diagram of a sliding pronunciation device according to an embodiment of the present utility model (2);
[0069] Figure 9 1 is a schematic diagram of a pronunciation component according to an embodiment of the present invention;
[0070] Figure 10 is a schematic diagram of a pronunciation component according to an embodiment of the present utility model (2);
[0071] Figure 11 is a schematic diagram of a second housing structure according to an embodiment of the present utility model;
[0072] Figure 12 is a schematic diagram of a sliding structure according to an embodiment of the present utility model (1);
[0073] Figure 13 is a schematic diagram of a sliding structure according to an embodiment of the present utility model (II);
[0074] Figure 14 It is a schematic diagram of an active structure according to an embodiment of the present utility model.
[0075] The accompanying drawings are as follows:
[0076] 100. Pronunciation amplification component;
[0077] 110. First housing structure; 111. First housing element; 112. Second sound amplifying element; 113. Second positioning element; 114. First connecting element;
[0078] 120, gasket structure; 121, gasket element; 122, first sliding element; 123, first movable element; 124, first sound amplifying element; 125, first positioning element;
[0079] 130. Sealing structure; 131. Sealing element; 132. Second connecting element; 133. Second sliding element;
[0080] 140. Suspended structure; 141. Suspended element; 142. Third positioning element;
[0081] 200, pronunciation component;
[0082] 210. Second housing structure; 211. Second housing element; 212. Third connecting element;
[0083] 220, sliding structure; 221, fixing element; 222, fourth connecting element; 223, chamber element; 224, third sliding element; 225, fourth sliding element;
[0084] 230. Active structure; 231. Elastic element; 232. Second active element. DETAILED DESCRIPTION
[0085] In order to make the purpose, technical solutions and advantages of this application more clearly understood, the present application is described and illustrated below in conjunction with the accompanying drawings and examples. It should be understood that the specific embodiments described herein are merely used to explain this application and are not intended to limit this application. Based on the embodiments provided in this application, all other embodiments obtained by those of ordinary skill in the art without making any creative efforts are within the scope of protection of this application.
[0086] Obviously, the drawings described below are merely examples or embodiments of the present application. Those skilled in the art can, without inventive effort, apply the present application to other similar scenarios based on these drawings. Furthermore, it is also understood that, although the effort involved in such a development process may be complex and lengthy, for those skilled in the art related to the content disclosed in this application, changes in design, manufacturing, or production based on the technical content disclosed in this application are merely conventional technical means and should not be construed as an insufficiency of the content disclosed in this application.
[0087] References to "embodiments" in this application mean that a particular feature, structure, or characteristic described in connection with the embodiment may be included in at least one embodiment of the application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it refer to independent or alternative embodiments that are mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described in this application may be combined with other embodiments unless there is a conflict.
[0088] Unless otherwise defined, technical or scientific terms used herein shall have the ordinary meaning as understood by persons of ordinary skill in the art to which this application belongs. The terms "a," "an," "an," "the," and similar expressions used herein do not denote quantitative limitations and may refer to either the singular or the plural. The terms "comprise," "include," "have," and any variations thereof, used herein, are intended to cover non-exclusive inclusions. For example, a process, method, system, product, or apparatus comprising a series of steps or modules (units) is not limited to the listed steps or units but may also include steps or units not listed, or may include other steps or units inherent to the process, method, product, or apparatus. The terms "connected," "connected," "coupled," and similar expressions used herein are not limited to physical or mechanical connections but may include electrical connections, whether direct or indirect. As used herein, "plurality" means two or more. "And / or" describes an association between associated objects, indicating that three possible relationships exist. For example, "A and / or B" may mean: A exists alone; A and B exist simultaneously; or B exists alone. The character " / " generally indicates that the objects before and after are in an "or" relationship. The terms "first", "second", "third", etc. involved in this application are only used to distinguish similar objects and do not represent a specific order for the objects.
[0089] Example 1
[0090] This embodiment relates to the gasket structure of the present utility model.
[0091] An illustrative embodiment of the present invention is as follows: Figure 1 As shown, a gasket structure 120 is used for sliding to generate and diffuse sound, comprising a gasket element 121, a first sliding element 122, a plurality of first movable elements 123, and at least one first sound amplifying element 124. The gasket element 121 is disposed inside the sound amplifying assembly and is configured to reciprocate in a preset direction under the action of an external force; the first sliding element 122 is disposed on the side of the gasket element 121 and is slidably connected to the sound assembly of the sliding sounding device and is configured to reciprocate in a preset direction under the action of the gasket element 121; the plurality of first movable elements 123 are disposed on the side of the first sliding element 122 and are movably connected to the sound assembly of the sliding sounding device and are configured to reciprocate in a preset direction under the action of the first sliding element 122 to generate sound; and the first sound amplifying element 124 is disposed through the gasket element 121 and is located on the side of the first sliding element 122 and is configured to diffuse the sound generated by the plurality of first movable elements 123.
[0092] Assuming that the gasket element 121 is placed horizontally, the length of the gasket element 121 > the width of the gasket element 121 > the thickness of the gasket element 121. Specifically, the gasket element 121 includes a first end surface (length × width), a second end surface (length × width), a third end surface (length × thickness), a fourth end surface (length × thickness), a fifth end surface (width × thickness), and a sixth end surface (width × thickness). The first end surface (top end surface) is symmetrical with the second end surface (bottom end surface), the third end surface (left end surface) is symmetrical with the fourth end surface (right end surface), and the fifth end surface (front end surface) is symmetrical with the sixth end surface (rear end surface).
[0093] In some embodiments, the cross section of the gasket element 121 is a rounded rectangle, a waisted circle, or the like.
[0094] In some embodiments, the gasket element 121 is made of metal materials, including but not limited to stainless steel, aluminum alloy, zirconium alloy, etc.
[0095] In some embodiments, the spacer element 121 is a spacer.
[0096] The first sliding element 122 and the spacer element 121 are fixedly connected or detachably connected, for example, by integral molding, plug-in connection, clip connection, bolt connection, etc.
[0097] The first sliding element 122 is disposed on the first end surface (or the second end surface) of the spacer element 121 .
[0098] The size of the first sliding element 122 matches the size of the spacer element 121. Generally, the length of the first sliding element 122 is not greater than the length of the spacer element 121, and the width of the first sliding element 122 is less than the width of the spacer element 121.
[0099] In some embodiments, the thickness of the first sliding element 122 remains constant from its top end to its bottom end, or the thickness of the first sliding element 122 increases from its top end to its bottom end, or the thickness of the top end of the first sliding element 122 is less than the thickness of the bottom end of the first sliding element 122.
[0100] Assuming the first sliding element 122 is placed horizontally, the length of the first sliding element 122 > the width of the first sliding element 122 > the thickness of the first sliding element 122 . Specifically, the first sliding element 122 includes a first end surface (length × width), a second end surface (length × width), a third end surface (length × thickness), a fourth end surface (length × thickness), a fifth end surface (width × thickness), and a sixth end surface (width × thickness). The first end surface (top end surface) is symmetrical with the second end surface (bottom end surface), the third end surface (left end surface) is symmetrical with the fourth end surface (right end surface), and the fifth end surface (front end surface) is symmetrical with the sixth end surface (rear end surface).
[0101] In some embodiments, the first sliding element 122 is made of metal materials, including but not limited to stainless steel, aluminum alloy, zirconium alloy, etc.
[0102] In some embodiments, the first sliding element 122 is a sliding convex track.
[0103] Generally, the first movable elements 123 and the first sliding element 122 are fixedly connected or detachably connected, for example, by integral molding, plug-in connection, clip connection, or bolt connection.
[0104] The first movable elements 123 are disposed on the first end surface (or the second end surface) of the first sliding element 122 , ie, the end away from the spacer element 121 .
[0105] A plurality of first movable elements 123 are arranged at intervals along the length direction of the first sliding element 122 .
[0106] In some embodiments, a plurality of first movable elements 123 are connected and arranged in sequence.
[0107] The size of the first movable element 123 matches the size of the first sliding element 122. Generally, the radial size of the first movable element 123 is smaller than the length and width of the first sliding element 122, and the depth of the first movable element 123 is smaller than the thickness of the first sliding element 122.
[0108] In some embodiments, the first movable element 123 is a movable groove, such as a spherical groove.
[0109] In some embodiments, there are multiple first sound amplifying elements 124 , which are distributed on both sides of the first sliding element 122 , that is, at least one first sound amplifying element 124 is disposed on each side of the first sliding element 122 .
[0110] In the case that a plurality of first sound amplifying elements 124 are disposed on each side of the first sliding element 122 , the plurality of first sound amplifying elements 124 are spaced apart along the length direction and / or the width direction of the first sliding element 122 .
[0111] In some embodiments, the number of the first sound amplifying elements 124 disposed on the first side of the first sliding element 122 and the number of the first sound amplifying elements 124 disposed on the second side of the first sliding element 122 may be equal or unequal.
[0112] Generally, the first sound amplifying elements 124 are not connected to each other.
[0113] Generally, the first sound amplifying element 124 is disposed through the first end surface and the second end surface of the spacer element 121 .
[0114] In some embodiments, the first sound amplifying element 124 is further disposed through the third end surface and / or the fourth end surface of the spacer element 121 .
[0115] The size of the first amplifying element 124 matches the size of the spacer element 121. Generally, the length of the first amplifying element 124 is not greater than the length of the spacer element 121, and the width of the first amplifying element 124 is less than the width of the spacer element 121.
[0116] In some embodiments, the first sound amplifying element 124 is a first sound amplifying slot or a first sound amplifying cavity.
[0117] Furthermore, the gasket structure 120 further includes a plurality of first positioning elements 125. The plurality of first positioning elements 125 are distributed at both ends of the gasket element 121 for positioning the gasket element 121 inside the sound amplification assembly.
[0118] Generally, the first positioning elements 125 are distributed at the front end and the rear end of the spacer element 121 .
[0119] Generally, the first positioning element 125 is disposed through the first end surface and the second end surface of the spacer element 121 .
[0120] In some embodiments, the first positioning element 125 is further disposed through the fifth end surface and / or the sixth end surface of the spacer element 121 .
[0121] In some embodiments, the first positioning element 125 is further disposed through the first end surface and the second end surface of the first sliding element 122 .
[0122] In some embodiments, the first positioning element 125 is further disposed through the fifth end surface and / or the sixth end surface of the first sliding element 122 .
[0123] In some embodiments, when a plurality of first positioning elements 125 are provided at the front end (or rear end) of the spacer element 121 , the plurality of first positioning elements 125 are spaced apart along the length direction and / or width direction of the spacer element 121 .
[0124] In some embodiments, the number of the first positioning elements 125 disposed at the front end of the spacer element 121 may be equal to or different from the number of the first positioning elements 125 disposed at the rear end of the spacer element 121 .
[0125] In some embodiments, the first positioning element 125 is a positioning groove.
[0126] The technical effects of the utility model are as follows:
[0127] The first sound amplifying element is provided in the gasket structure, so as to diffuse the sound generated by the sliding and movement of the first movable element, thereby increasing the diffusion range and duration of the sound.
[0128] Example 2
[0129] This embodiment relates to the sound-producing and amplifying assembly of the present utility model.
[0130] An illustrative embodiment of the present invention is as follows: Figure 2~Figure 3 As shown, a sound amplification assembly 100 includes a first housing structure 110 and a gasket structure 120 as described in Example 1. The first housing structure 110 is slidably connected to the sound assembly of a sliding sounding device and is configured to reciprocate in a predetermined direction under the action of an external force. The gasket structure 120 is disposed within the first housing structure 110 and is slidably and movably connected to the sound assembly of the sliding sounding device. It is configured to reciprocate in a predetermined direction under the action of the first housing structure 110 to generate and diffuse sound.
[0131] like Figure 4 As shown, the first housing structure 110 includes a first housing element 111. A gasket structure 120 is provided inside the first housing element 111 and is slidably connected to the sounding assembly of the sliding sounding device for reciprocating along a preset direction under the action of an external force.
[0132] Specifically, a spacer element 121 is provided inside the first housing element 111 .
[0133] The first housing element 111 is an open structure. This description assumes that the first housing element 111 is placed horizontally, with the open end facing upward. The length of the first housing element 111 is greater than the width of the first housing element 111, and the thickness of the first housing element 111 is greater than the thickness of the first housing element 111. Specifically, the first housing element 111 includes a second end surface (length × width), a third end surface (length × thickness), a fourth end surface (length × thickness), a fifth end surface (width × thickness), and a sixth end surface (width × thickness). The third end surface (left end surface) is symmetrical with the fourth end surface (right end surface), and the fifth end surface (front end surface) is symmetrical with the sixth end surface (rear end surface).
[0134] When the gasket element 121 is placed inside the first shell element 111, the first end face of the gasket element 121 is set upward, that is, the bottom end face of the gasket element 121 is set toward the bottom end face of the first shell element 111, and the top end face of the gasket element 121 is set toward the open end of the first shell element 111.
[0135] The dimensions of the first housing element 111 match those of the spacer element 121. Generally, the length of the first housing element 111 is not less than the length of the spacer element 121, the width of the first housing element 111 is not less than the width of the spacer element 121, and the thickness of the first housing element 111 is greater than the thickness of the spacer element 121.
[0136] Furthermore, the thickness of the first housing element 111 is not less than the sum of the thickness of the gasket element 121 and the thickness of the first sliding element 122 .
[0137] In some embodiments, the first housing element 111 is made of metal materials, including but not limited to stainless steel, aluminum alloy, zirconium alloy, etc.
[0138] In some embodiments, the first housing element 111 is a first housing.
[0139] Furthermore, the first housing structure 110 includes at least one second sound amplifying element 112. The second sound amplifying element 112 is disposed throughout the first housing structure 110 and is used to diffuse sound.
[0140] Specifically, the second sound amplifying element 112 is disposed through the first housing element 111 to further diffuse the sound diffused by the first sound amplifying element 124 .
[0141] Generally, the second amplifying element 112 is in communication with the first amplifying element 124 .
[0142] In some embodiments, there are multiple second sound amplifying elements 112 , which are spaced apart along the length direction and / or width direction of the first housing element 111 .
[0143] Generally, the second sound amplifying elements 112 are not connected to each other.
[0144] Generally, the second sound amplifying element 112 is disposed through the second end surface of the first housing element 111 .
[0145] The size of the second amplifying element 112 matches the size of the first housing element 111. Generally, the length of the first amplifying element 124 is not greater than the length of the first housing element 111, and the width of the second amplifying element 112 is less than the width of the first housing element 111.
[0146] In some embodiments, the second sound amplifying element 112 is a second sound amplifying groove or a second sound amplifying cavity.
[0147] Furthermore, the first housing structure 110 includes a plurality of second positioning elements 113 , which are distributed at both ends of the interior of the first housing structure 110 and are positioned and connected to the gasket structure 120 to define the position of the gasket structure 120 .
[0148] Specifically, a plurality of second positioning elements 113 are distributed at both ends of the interior of the first housing element 111 and are respectively positioned and connected to corresponding first positioning elements 125 .
[0149] Generally, a plurality of second positioning elements 113 are distributed at the front end and the rear end of the first housing element 111 .
[0150] Generally, the second positioning elements 113 are fixedly connected to the first housing element 111 or detachably connected, for example, by integral molding, plug-in connection, clip connection, or bolt connection.
[0151] In some embodiments, when a plurality of second positioning elements 113 are provided at the front end (or rear end) of the first housing element 111 , the plurality of second positioning elements 113 are spaced apart along the length direction and / or width direction of the first housing element 111 .
[0152] In some embodiments, the number of the second positioning elements 113 may be equal to or different from the number of the first positioning elements 125 .
[0153] In some embodiments, the number of the second positioning elements 113 disposed at the front end of the first housing element 111 and the number of the second positioning elements 113 disposed at the rear end of the first housing element 111 may be equal to or may not be equal to.
[0154] The size of the second positioning element 113 matches the size of the first positioning element 125. Generally, the radial size (eg, diameter, length, width) of the second positioning element 113 is not greater than the radial size (eg, diameter, length, width) of the first positioning element 125.
[0155] In some embodiments, the second positioning element 113 is made of metal materials, including but not limited to stainless steel, aluminum alloy, zirconium alloy, etc.
[0156] In some embodiments, the second positioning element 113 is a positioning protrusion.
[0157] The technical effects of the present invention are substantially the same as those of embodiment 1 and will not be described in detail here.
[0158] Example 3
[0159] This embodiment is a variation of Embodiment 2.
[0160] like Figure 2~Figure 3 As shown, the sound amplification assembly 100 further includes a sealing structure 130. The sealing structure 130 is disposed on the side of the first shell structure 110 and outside the gasket structure 120, and is connected to the first shell structure 110 and slidably connected to the sound assembly of the sliding sound device.
[0161] Specifically, the sealing structure 130 is disposed at the open end of the first housing structure 110 .
[0162] Furthermore, the first housing structure 110 further includes a plurality of first connecting elements 114. The plurality of first connecting elements 114 are distributed at both ends of the interior of the first housing structure 110 and are detachably connected to the sealing structure 130 respectively.
[0163] Specifically, a plurality of first connecting elements 114 are distributed at the front end and the rear end of the first housing element 111 .
[0164] More specifically, a plurality of first connecting elements 114 are respectively disposed on corresponding second positioning elements 113 .
[0165] In some embodiments, when a plurality of first connecting elements 114 are provided at the front end (or rear end) of the first housing element 111 , the plurality of first connecting elements 114 are spaced apart along the length direction and / or width direction of the first housing element 111 .
[0166] The second positioning element 113 may be provided with the first connecting element 114 or may not be provided with the first connecting element 114 .
[0167] In the case where the second positioning element 113 is provided with the first connecting element 114 , the second positioning element 113 is provided with at least one first connecting element 114 .
[0168] In some embodiments, the first connecting element 114 includes but is not limited to a first connecting thread groove, a first connecting groove, a first connecting protrusion, etc.
[0169] like Figure 5 As shown, the sealing structure 130 includes a sealing element 131. The sealing element 131 is disposed on the side of the first shell structure 110 and outside the gasket structure 120, connected to the first shell structure 110, and movably connected to the sound component of the sliding sound device.
[0170] Specifically, the sealing element 131 is disposed at the open end of the first housing element 111 , is located outside the first sliding element 122 , and is connected to the first housing element 111 .
[0171] The sealing element 131 is an annular structure.
[0172] Generally, the sealing element 131 does not contact the spacer element 121 or the first sliding element 122 .
[0173] In some embodiments, the sealing element 131 is disposed to protrude from the open end of the first housing element 111 .
[0174] The size of the sealing element 131 matches the size of the first housing element 111. Generally, the length of the outer edge of the sealing element 131 is equal to the length of the first housing element 111, the width of the outer edge of the sealing element 131 is equal to the width of the first housing element 111, and the thickness of the sealing element 131 is less than the thickness of the first housing element 111.
[0175] The size of the sealing element 131 matches the size of the first sliding element 122. Generally, the length of the inner edge of the sealing element 131 is not less than the length of the first sliding element 122, and the width of the inner edge of the sealing element 131 is not less than the width of the first sliding element 122.
[0176] In some embodiments, the sealing element 131 is made of a self-lubricating material, including but not limited to polytetrafluoroethylene / POM.
[0177] In some embodiments, the sealing element 131 is a sealing gasket.
[0178] Furthermore, the sealing structure 130 further includes a plurality of second connecting elements 132. The plurality of second connecting elements 132 are distributed at both ends of the sealing structure 130 and are detachably connected to the first housing structure 110 respectively.
[0179] Specifically, a plurality of second connection elements 132 are distributed at the front end and the rear end of the sealing element 131 and are detachably connected to the corresponding first connection elements 114 .
[0180] In some embodiments, when a plurality of second connecting elements 132 are provided at the front end (or rear end) of the sealing element 131 , the plurality of second connecting elements 132 are spaced apart along the length direction and / or width direction of the sealing element 131 .
[0181] The sealing element 131 may be provided with the second connecting element 132 or may not be provided with the second connecting element 132 .
[0182] In the case where the sealing element 131 is provided with the second connecting element 132 , the sealing element 131 is provided with at least one second connecting element 132 .
[0183] In some embodiments, the second connecting element 132 includes but is not limited to a second connecting thread groove, a second connecting groove, a second connecting protrusion, etc.
[0184] In some embodiments, the second connecting element 132 is connected to the first connecting element 114 by bolts or screws.
[0185] Furthermore, the sealing structure 130 further includes a second sliding element 133. The second sliding element 133 is disposed on a side of the sealing structure 130 and is slidably connected to the sounding component of the sliding sounding device.
[0186] Specifically, the second sliding element 133 is disposed on the inner edge surface of the sealing element 131 .
[0187] Generally, the second sliding element 133 is disposed on the inner edge of the sealing element 131 close to the end surface of the gasket element 121 .
[0188] In some embodiments, there are two second sliding elements 133 , which are disposed on the left and right sides of the inner edge surface of the sealing element 131 .
[0189] In some embodiments, the second sliding element 133 is a sliding groove.
[0190] The technical effects of this embodiment are basically the same as those of embodiment 2, and will not be repeated here.
[0191] Example 4
[0192] This embodiment is a variation of Embodiments 2-3.
[0193] like Figure 2~Figure 3 As shown, the sound amplification assembly 100 further includes a suspension structure 140. The suspension structure 140 is disposed between the first shell structure 110 and the gasket structure 120, and is used to suspend the gasket structure 120.
[0194] like Figure 6 As shown, the suspension structure 140 includes a plurality of suspension elements 141. The suspension elements 141 are distributed at both ends of the first housing structure 110 and located between the first housing structure 110 and the gasket structure 120 to suspend the gasket structure 120.
[0195] Specifically, the plurality of suspended elements 141 are distributed at both ends of the interior of the first housing element 111 and are located between the first housing element 111 and the spacer element 121 .
[0196] Generally, a plurality of suspended elements 141 are distributed at the front end and the rear end of the first housing element 111 .
[0197] In some embodiments, when a plurality of suspended elements 141 are provided at the front end (or rear end) of the first housing element 111 , the plurality of suspended elements 141 are spaced apart along the length direction and / or width direction of the first housing element 111 .
[0198] In some embodiments, the suspended element 141 is made of elastic material, including but not limited to silicone, rubber, etc.
[0199] In some embodiments, the suspended element 141 is a buffer washer.
[0200] Furthermore, the suspended structure 140 includes a plurality of third positioning elements 142 . The third positioning elements 142 are distributed at both ends of the interior of the first housing structure 110 and are respectively positioned and connected to the gasket structure 120 to define the position of the gasket structure 120 .
[0201] Specifically, a plurality of third positioning elements 142 are respectively disposed on corresponding suspended elements 141 , and are respectively positioned and connected to corresponding first positioning elements 125 and corresponding second positioning elements 113 .
[0202] Generally, the third positioning element 142 and the suspended element 141 are fixedly connected or detachably connected, for example, by integral molding, plug-in connection, clip connection, or bolt connection.
[0203] The suspended element 141 may be provided with a third positioning element 142 or may not be provided with the third positioning element 142 .
[0204] In the case where the suspended element 141 is provided with the third positioning element 142 , the suspended element 141 is provided with at least one third positioning element 142 .
[0205] The size of the third positioning element 142 matches the size of the first positioning element 125. Generally, the radial size (such as diameter, length, width) of the outer edge surface of the third positioning element 142 is equal to the radial size (such as diameter, length, width) of the first positioning element 125.
[0206] The size of the third positioning element 142 matches the size of the second positioning element 113. Generally, the radial size (such as diameter, length, width) of the inner edge surface of the third positioning element 142 is equal to the radial size (such as diameter, length, width) of the second positioning element 113.
[0207] In some embodiments, the third positioning element 142 is made of elastic material, including but not limited to silicone, rubber, etc.
[0208] In some embodiments, the third positioning element 142 is a positioning washer.
[0209] The technical effects of this embodiment are as follows:
[0210] The gasket structure can be suspended inside the first shell structure by utilizing the suspended structure, thereby further enhancing the sound diffusion effect.
[0211] Example 5
[0212] This embodiment relates to the sliding sounding device of the present utility model.
[0213] like Figure 7-Figure 8 As shown, a sliding sound-generating device includes the gasket structure 120 described in Example 1 or the sound-generating and amplifying assembly 100 and the sound-generating assembly 200 described in Examples 2 to 4. The sound-generating assembly 200 is slidably connected to the gasket structure 120 or the sound-generating and amplifying assembly 100, and is configured to slide relative to the gasket structure 120 under the action of an external force to produce sound.
[0214] like Figures 9 and 10 As shown, the sounding assembly 200 includes a second housing structure 210, a sliding structure 220, and a movable structure 230. The second housing structure 210 is disposed on the side of the gasket structure 120 or the side of the first housing structure 110, and is configured to slide relative to the gasket structure 120 or the first housing structure 110 under the action of an external force; the sliding structure 220 is disposed on the side of the second housing structure 210, connected to the second housing structure 210, and slidably connected to the gasket structure 120; the movable structure 230 is movably disposed on the sliding structure 220, and movably connected to the gasket structure 120, and is configured to move relative to the gasket structure 120 to produce sound.
[0215] like Figure 11 As shown, the second housing structure 210 includes a second housing element 211 and at least one third connecting element 212. A sliding structure 220 is provided on the side of the second housing element 211 for sliding relative to the gasket structure 120 or the first housing structure 110 under external force. The third connecting element 212 is provided on the second housing element 211 and is detachably connected to the sliding structure 220.
[0216] Specifically, the second housing element 211 is disposed on a side of the first housing element 111 and slides relative to the first housing element 111 .
[0217] The second housing element 211 is a closed structure. Assuming the second housing element 211 is placed horizontally, the length of the second housing element 211 > the width of the second housing element 211 > the thickness of the second housing element 211. Specifically, the second housing element 211 includes a first end surface (length × width), a second end surface (length × width), a third end surface (length × thickness), a fourth end surface (length × thickness), a fifth end surface (width × thickness), and a sixth end surface (width × thickness). The first end surface (top end surface) is symmetrical with the second end surface (bottom end surface), the third end surface (left end surface) is symmetrical with the fourth end surface (right end surface), and the fifth end surface (front end surface) is symmetrical with the sixth end surface (rear end surface).
[0218] Generally, the second end surface of the second housing element 211 corresponds to the open end of the first housing element 111 .
[0219] The dimensions of the second housing element 211 match the dimensions of the first housing element 111. Generally, the length of the second housing element 211 is equal to the length of the first housing element 111, the width of the second housing element 211 is equal to the width of the first housing element 111, and the thickness of the second housing element 211 is equal to the thickness of the first housing element 111.
[0220] In some embodiments, the second housing element 211 is made of metal materials, including but not limited to stainless steel, aluminum alloy, zirconium alloy, etc.
[0221] In some embodiments, the second housing element 211 includes a second housing and a through slot. The second housing is disposed on a side of the first housing element 111 and slides relative to the first housing element 111. The through slot is disposed through a second end surface of the second housing and is used to dispose the sliding structure 220.
[0222] The third connecting element 212 is communicated with the through groove of the second housing element 211 .
[0223] In some embodiments, there are multiple third connecting elements 212 , which are spaced apart along the length direction and / or width direction of the second housing element 211 .
[0224] In some embodiments, the third connecting element 212 includes but is not limited to a third connecting thread groove, a third connecting groove, a third connecting protrusion, etc.
[0225] like Figure 12-13As shown, the sliding structure 220 includes a fixed element 221, at least one fourth connecting element 222, a chamber element 223, and a third sliding element 224. The fixed element 221 is disposed on a side of the second housing structure 210; the fourth connecting element 222 is disposed on a side of the fixed element 221 and is detachably connected to the second housing structure 210; the chamber element 223 is disposed through the fixed element 221, and a movable structure 230 is movably disposed within the chamber element 223; and the third sliding element 224 is disposed at the bottom of the fixed element 221 and is slidably connected to the gasket structure 120.
[0226] Specifically, the fixing element 221 is arranged on the side of the second housing element 211 and protrudes from the second housing element 211 ; the fourth connecting element 222 is detachably connected to the third connecting element 212 ; and the third sliding element 224 is slidably connected to the first sliding element 122 .
[0227] The size of the fixing element 221 matches the size of the second housing element 211. Generally, the length of the fixing element 221 is smaller than the length of the second housing element 211, the width of the fixing element 221 is smaller than the width of the second housing element 211, and the thickness of the fixing element 221 is not less than the thickness of the second housing element 211.
[0228] In some embodiments, the fixing element 221 is made of metal materials, including but not limited to stainless steel, aluminum alloy, zirconium alloy, etc.
[0229] In some embodiments, the fixing element 221 is a fixing base.
[0230] In some embodiments, there are multiple fourth connecting elements 222 , which are spaced apart along the length direction and / or width direction of the fixing element 221 .
[0231] In some embodiments, the fourth connecting element 222 includes but is not limited to a fourth connecting thread groove, a fourth connecting groove, a fourth connecting protrusion, etc.
[0232] In some embodiments, the fourth connecting element 222 is connected to the third connecting element 212 via bolts or screws. The bolts or screws between the fourth connecting element 222 and the third connecting element 212 can adjust the pressure on the third sliding element 224, thereby generating a damping effect. Furthermore, the gap between the second housing element 211 and the first housing element 111 can also be adjusted.
[0233] The cavity element 223 is disposed through the bottom end surface of the fixing element 221 .
[0234] In some embodiments, the chamber element 223 is not connected to the fourth connecting element 222 .
[0235] The dimensions of the cavity element 223 match those of the fixing element 221. Generally, the radial dimensions (such as diameter, length, and width) of the cavity element 223 are smaller than the length and width of the fixing element 221, and the depth of the cavity element 223 is smaller than the thickness of the fixing element 221.
[0236] In some embodiments, the chamber element 223 is an active chamber.
[0237] The third sliding element 224 is in communication with the chamber element 223 .
[0238] The size of the third sliding element 224 matches the size of the fixing element 221. Generally, the length of the third sliding element 224 is equal to the length of the fixing element 221, the width of the third sliding element 224 is smaller than the width of the fixing element 221, and the depth of the third sliding element 224 is smaller than the thickness of the fixing element 221.
[0239] The dimensions of the third sliding element 224 match those of the first sliding element 122. Generally, the length of the third sliding element 224 is less than the length of the first sliding element 122, the width of the third sliding element 224 is equal to the width of the first sliding element 122, and the depth of the third sliding element 224 is no greater than the thickness of the first sliding element 122.
[0240] In some embodiments, the top surface of the third sliding element 224 does not contact the top surface of the first sliding element 122 .
[0241] In some embodiments, the third sliding element 224 is a recessed sliding track.
[0242] Furthermore, the sliding structure 220 further includes a fourth sliding element 225 , wherein the fourth sliding element 225 is disposed on a side of the fixing element 221 and is slidably connected to the first housing structure 110 .
[0243] Specifically, the fourth sliding element 225 is slidably connected to the second sliding element 133 .
[0244] Generally, the fourth sliding element 225 and the fixing element 221 are fixedly connected or detachably connected, for example, by integral molding, plug-in connection, clip connection, or bolt connection.
[0245] Generally, the fourth sliding element 225 is disposed on the left end surface and / or the right end surface of the fixing element 221 .
[0246] In some embodiments, there are two fourth sliding elements 225 , and the two fourth sliding elements 225 are disposed on the left and right sides of the fixing element 221 .
[0247] The size of the fourth sliding element 225 matches the size of the fixed element 221. Generally, the length of the fourth sliding element 225 is not greater than the length of the fixed element 221, the width of the fourth sliding element 225 is smaller than the width of the fixed element 221, and the thickness of the fourth sliding element 225 is smaller than the thickness of the fixed element 221.
[0248] In some embodiments, the fourth sliding element 225 is made of metal materials, including but not limited to stainless steel, aluminum alloy, zirconium alloy, etc.
[0249] In some embodiments, the fourth sliding element 225 is a sliding bump.
[0250] like Figure 14 As shown, the movable structure 230 includes an elastic element 231 and a second movable element 232. The elastic element 231 is disposed inside the sliding structure 220; the second movable element 232 is movably disposed in the sliding structure 220 and connected to the elastic element 231. It is also movably connected to the gasket structure 120 and is configured to move relative to the gasket structure 120 to generate sound.
[0251] Specifically, the elastic element 231 is disposed inside the chamber element 223 and connected to the fixed element 221 ; the second movable element 232 is movably disposed in the chamber element 223 and movably connected to the first movable element 123 .
[0252] Generally, when the elastic element 231 is in a compressed state, the second movable element 232 is protruded from the chamber element 223 .
[0253] In some embodiments, the elastic element 231 is a spring.
[0254] Generally, the second movable element 232 is at least slidably connected to the first movable element 123 .
[0255] In some embodiments, the second movable element 232 and the first movable element 123 are further connected in a rolling manner.
[0256] The size of the second movable element 232 matches the size of the cavity element 223. Generally, the radial size of the second movable element 232 is smaller than the radial size and depth of the cavity element 223.
[0257] The size of the second movable element 232 matches the size of the first movable element 123. Generally, the radial dimension of the second movable element 232 is not larger than the radial dimension of the first movable element 123, and the radial dimension of the second movable element 232 is not smaller than the depth of the first movable element 123.
[0258] In some embodiments, the second movable element 232 is made of metal materials, including but not limited to stainless steel, aluminum alloy, zirconium alloy, etc.
[0259] In some embodiments, the second movable element 232 is a movable ball.
[0260] The method of using the utility model is as follows:
[0261] (1) Slide along the first preset direction
[0262] In the initial state, the first housing element 111 and the second housing element 211 form a rectangular body;
[0263] Place the second housing element 211 downward and the first housing element 111 upward in the user's hand;
[0264] The user's thumb presses against the first housing element 111 and applies force to the first housing element 111, so that the first housing element 111 and the second housing element 211 slide relative to each other, and the first housing element 111 moves from the rear end of the second housing element 211 to the front end of the second housing element 211;
[0265] During the sliding process, the third sliding element 224 slides with the first sliding element 122 , and the fourth sliding element 225 slides with the second sliding element 133 ;
[0266] During the sliding process, the first movable elements 123 come into contact with the second movable elements 232 in sequence. Under the action of the elastic element 231, the second movable element 232 reciprocates in the vertical direction, thereby producing a sound similar to "clicking";
[0267] The sound is amplified by the first amplifying element 124 and the second amplifying element 112 (if present) to increase the diffusion range and duration of the sound;
[0268] (2) Slide along the second preset direction
[0269] After sliding along the first preset direction, the user's thumb presses against the first housing element 111 and applies force to the first housing element 111, so that the first housing element 111 and the second housing element 211 slide relative to each other, and the first housing element 111 moves from the front end of the second housing element 211 to the rear end of the second housing element 211;
[0270] During the sliding process, the third sliding element 224 slides with the first sliding element 122 , and the fourth sliding element 225 slides with the second sliding element 133 ;
[0271] During the sliding process, the first movable elements 123 come into contact with the second movable elements 232 in sequence. Under the action of the elastic element 231, the second movable element 232 reciprocates in the vertical direction, thereby producing a sound similar to "clicking";
[0272] The sound is amplified by the first amplifying element 124 and the second amplifying element 112 (if present) to increase the diffusion range and duration of the sound.
[0273] The technical effects of the present invention are substantially the same as those of Embodiments 1 to 4, and will not be described in detail herein.
[0274] The above-described embodiments merely represent several implementation methods of the present application. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that a person of ordinary skill in the art could make various modifications and improvements without departing from the spirit of the present application, all of which fall within the scope of protection of the present application. Therefore, the scope of protection of the present patent application shall be determined by the appended claims.
Claims
1. A gasket structure for sliding to generate sound and diffuse sound, characterized in that: include: a gasket element, the gasket element being disposed inside the sound amplification assembly and configured to reciprocate in a preset direction under the action of an external force; a first sliding element, which is arranged on a side of the spacer element and is slidably connected to the sounding assembly of the sliding sounding device, and is used to reciprocate along a preset direction under the action of the spacer element; a plurality of first movable elements, each of which is disposed on a side of the first sliding element and is movably connected to a sounding assembly of the sliding sounding device, and is configured to reciprocate in a preset direction under the action of the first sliding element to generate sound; At least one first sound amplifying element is provided through the spacer element and is located on the side of the first sliding element, for diffusing the sound generated by the first movable elements.
2. The gasket structure according to claim 1, characterized in that Also includes: A plurality of first positioning elements are distributed at both ends of the gasket element and are used to position the gasket element inside the sound amplification component.
3. A sound amplification component, characterized in that: include: a first shell structure, the first shell structure being slidably connected to the sounding component of the sliding sounding device and configured to reciprocate along a preset direction under the action of an external force; The gasket structure according to any one of claims 1 to 2, wherein the gasket structure is arranged inside the first shell structure, and is slidably and movably connected to the sound component of the sliding sound device, and is used to reciprocate along a preset direction under the action of the first shell structure to generate sound and diffuse the sound.
4. The sound amplification assembly according to claim 3, characterized in that: The first housing structure comprises: a first housing element, wherein the gasket structure is provided inside the first housing element and is slidably connected to the sounding assembly of the sliding sounding device, and is configured to reciprocate along a preset direction under the action of an external force; and / or at least one second sound amplifying element, the second sound amplifying element being arranged through the first housing structure for diffusing sound; and / or A plurality of second positioning elements are distributed at both ends of the interior of the first shell structure and are positioned and connected to the gasket structure to define the position of the gasket structure.
5. The sound amplification assembly according to any one of claims 3 to 4, characterized in that: Also includes: a sealing structure, the sealing structure being arranged on a side of the first shell structure and located outside the gasket structure, being connected to the first shell structure, and being slidably connected to the pronunciation component of the sliding pronunciation device; and / or A suspended structure is provided between the first shell structure and the gasket structure, and is used to suspend the gasket structure.
6. The sound amplification assembly according to claim 5, characterized in that: The sealing structure comprises: a sealing element, the sealing element being arranged on a side of the first shell structure and located outside the gasket structure, being connected to the first shell structure, and being movably connected to the pronunciation component of the sliding pronunciation device; and / or The first housing structure further comprises: a plurality of first connecting elements, which are distributed at both ends of the interior of the first housing structure and are respectively detachably connected to the sealing structure; and / or The sealing structure further comprises: a plurality of second connecting elements, which are distributed at both ends of the sealing structure and are respectively detachably connected to the first housing structure; and / or A second sliding element, which is disposed on a side of the sealing structure and is slidably connected to a sounding assembly of the sliding sounding device; and / or The suspended structure includes: a plurality of suspended elements, the plurality of suspended elements being distributed at both ends of the interior of the first shell structure and located between the first shell structure and the gasket structure, for suspending the gasket structure; and / or A plurality of third positioning elements are distributed at both ends of the interior of the first shell structure and are respectively positioned and connected to the gasket structure to limit the position of the gasket structure.
7. A sliding sounding device, characterized in that: include: The gasket structure according to any one of claims 1 to 2; A sound-producing component is slidably connected to the gasket structure and is used for sliding relative to the gasket structure under the action of an external force to produce sound.
8. The sliding sound producing device according to claim 7, characterized in that: The pronunciation component includes: a second shell structure, the second shell structure being arranged on a side of the gasket structure and configured to slide relative to the gasket structure under an external force; a sliding structure, the sliding structure being disposed on a side of the second shell structure, connected to the second shell structure, and slidably connected to the gasket structure; The movable structure is movably arranged on the sliding structure and movably connected to the gasket structure, and is used to move relative to the gasket structure to generate sound.
9. The sliding sound producing device according to claim 8, characterized in that: The second housing structure comprises: a second housing element, wherein the sliding structure is provided on a side of the second housing element for sliding relative to the gasket structure under the action of an external force; at least one third connecting element, the third connecting element being provided on the second housing element and being detachably connected to the sliding structure; and / or The sliding structure comprises: a fixing element, the fixing element being disposed on a side portion of the second housing structure; at least one fourth connecting element, the fourth connecting element being disposed on a side of the fixing element and being detachably connected to the second housing structure; a chamber element, the chamber element being disposed through the fixed element, the movable structure being movably disposed inside the chamber element; a third sliding element, the third sliding element being disposed at the bottom of the fixing element and being slidably connected to the gasket structure; and / or The activity structure includes: an elastic element, the elastic element being arranged inside the sliding structure; A second movable element is movably disposed on the sliding structure, connected to the elastic element, and movably connected to the gasket structure, and is used for relative movement with the gasket structure to generate sound.
10. A sliding sounding device, characterized in that: include: The pronunciation amplification assembly according to any one of claims 3 to 6; A sound-producing component is slidably connected to the sound-producing and sound-amplifying component and is used for sliding relative to the gasket structure under the action of an external force to produce sound.
11. The sliding sound producing device according to claim 10, characterized in that: The pronunciation component includes: a second shell structure, the second shell structure being arranged on a side of the first shell structure and configured to slide relative to the gasket structure or the first shell structure under an external force; a sliding structure, the sliding structure being disposed on a side of the second shell structure, connected to the second shell structure, and slidably connected to the gasket structure; The movable structure is movably arranged on the sliding structure and movably connected to the gasket structure, and is used to move relative to the gasket structure to generate sound.
12. The sliding sound producing device according to claim 11, characterized in that: The second housing structure comprises: a second housing element, wherein the sliding structure is provided on a side of the second housing element for sliding relative to the gasket structure or the first housing structure under the action of an external force; at least one third connecting element, the third connecting element being provided on the second housing element and being detachably connected to the sliding structure; and / or The sliding structure comprises: a fixing element, the fixing element being disposed on a side portion of the second housing structure; at least one fourth connecting element, the fourth connecting element being disposed on a side of the fixing element and being detachably connected to the second housing structure; a chamber element, the chamber element being disposed through the fixed element, the movable structure being movably disposed inside the chamber element; a third sliding element, the third sliding element being disposed at the bottom of the fixing element and being slidably connected to the gasket structure; and / or The activity structure includes: an elastic element, the elastic element being arranged inside the sliding structure; A second movable element is movably disposed on the sliding structure, connected to the elastic element, and movably connected to the gasket structure, and is used for relative movement with the gasket structure to generate sound.
13. The sliding sound producing device according to claim 12, characterized in that: The sliding structure further comprises: A fourth sliding element is provided on a side of the fixing element and is slidably connected to the first housing structure.