CN107569000A - A kind of modularization can be separately adjustable spring bedstead - Google Patents
A kind of modularization can be separately adjustable spring bedstead Download PDFInfo
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Abstract
本发明公开了一种模块化可独立调节的弹簧床架,包括床板横向梁结构、床板竖向梁结构、工型槽密封盖、工型通槽压盖、工型通槽卡扣和独立的弹簧模块;床板横向梁结构相互平行间隔设置,弹簧模块基座横截面为工字形的滑块,可在床板横向梁结构的工型通槽中滑动实现拆装。每个弹簧模块包括外部弹簧单元、内部弹簧单元、内部弹簧基座、弹簧模块基座、调节高度结构、两个外部弹簧基座和两个弹簧模块卡扣凸起件。外部弹簧单元固定于弹簧模块基座上,内部弹簧单元可通过调节高度结构调节其高度,进而改变其对外部弹簧单元的支撑,实现快速调节弹簧床架中独立弹簧模块的目的。
The invention discloses a modularized independently adjustable spring bed frame, which comprises a bed board transverse beam structure, a bed board vertical beam structure, an I-shaped groove sealing cover, an I-shaped through groove gland, an I-shaped through groove buckle and an independent The spring module and the transverse beam structure of the bed plate are arranged in parallel with each other at intervals, and the cross section of the base of the spring module is an I-shaped slider, which can be disassembled by sliding in the I-shaped through groove of the transverse beam structure of the bed plate. Each spring module includes an outer spring unit, an inner spring unit, an inner spring base, a spring module base, a height adjustment structure, two outer spring bases and two spring module buckle protrusions. The outer spring unit is fixed on the base of the spring module, and the height of the inner spring unit can be adjusted through the height adjustment structure, thereby changing its support to the outer spring unit, so as to achieve the purpose of quickly adjusting the independent spring module in the spring bed frame.
Description
技术领域technical field
本发明属于家具,具体涉及一种模块化可独立调节的弹簧床架。The invention belongs to furniture, in particular to a modular and independently adjustable spring bed frame.
背景技术Background technique
近年来,随着科学技术的发展与进步,人们生活水平得到了很大的提升,越来越多的人开始关注功能性强,使用便捷的产品,因此提出了模块化的设计概念,模块化是在传统设计基础上发展起来的一种新的设计思想,现已成为一种新技术被广泛应用。产品的模块化使其原本复杂繁琐的整体转化为若干拥有独立功能的个体,个体之间标准化且能独立调节,最终由个体的性能体现出整体的性能。同时便于组装与拆卸,具有较好的通用性因而能够满足更多人的需求。In recent years, with the development and progress of science and technology, people's living standards have been greatly improved, and more and more people have begun to pay attention to products with strong functionality and convenient use. Therefore, a modular design concept was proposed. It is a new design idea developed on the basis of traditional design, and it has become a new technology and is widely used. The modularization of the product transforms the original complex and cumbersome whole into several individuals with independent functions, which are standardized and can be adjusted independently, and finally the performance of the individual reflects the performance of the whole. At the same time, it is easy to assemble and disassemble, and has good versatility, so it can meet the needs of more people.
目前,针对弹簧床架的设计较为单一,在家用床架方面,主要采用整体包裹式的设计方式,即家用床垫垫芯由若干弹簧组成。内部弹簧的排列形式多种,包括连结式、袋装独立筒、线状直立式、张状整体式及袋装线状整体式。在设计方面根据人体工学原理设计的弹簧,能依照人体的曲线和重量而灵活伸缩。其具有弹性好,承受压力能力强,耐用性较强的优点。但是现有设计也存在以下问题:At present, the design for spring bed frames is relatively simple. In terms of home bed frames, the overall package design method is mainly adopted, that is, the home mattress core is composed of several springs. There are various arrangements of internal springs, including linked type, bagged independent cylinder, linear upright type, tensioned integral type and bagged linear integral type. In terms of design, the spring designed according to the principle of ergonomics can flexibly expand and contract according to the curve and weight of the human body. It has the advantages of good elasticity, strong pressure bearing capacity and strong durability. But the existing design also has the following problems:
(1)现有产品采用一体化的设计理念,其内部弹簧均采用统一的规格使之具有相同的弹力,不能根据人体的压力分布而独立调节每个弹簧之间的弹力大小因此适应不了有特殊需求的用户。(1) The existing product adopts an integrated design concept, and its internal springs adopt uniform specifications to make them have the same elastic force. The elastic force between each spring cannot be independently adjusted according to the pressure distribution of the human body, so it cannot adapt to special needs. users who need it.
(2)由于现有产品的整体性的限制,对于各个方向受到的压力不能及时精准的做出回馈。且现有产品多采用布垫包裹弹簧床架构成整体的床垫,透气性欠佳。(2) Due to the limitation of the integrity of existing products, it is impossible to give timely and accurate feedback on the pressure received from all directions. And existing product adopts the mattress that cloth pad wraps spring bed frame to form whole more, and air permeability is not good enough.
(3)现有产品整体上未采用模块化设计使之不便于拆装与搬运。(3) Existing products do not adopt a modular design as a whole to make it inconvenient to disassemble and transport.
综上所述,现有的弹簧床架不能满足用户对于产品使用舒适性、模块化、拆装便捷、高效等方面的需求。To sum up, the existing spring bed frame cannot meet the user's needs for product comfort, modularization, convenient disassembly and assembly, and high efficiency.
发明内容Contents of the invention
本发明的目的在于提供一种模块化可独立调节的弹簧床架,实现了其模块化设计,每个独立的弹簧模块经过特殊的结构设计使其具备了优秀的性能,同时可独立调节。整体弹簧床架便于拆装和运输,使用高效。The purpose of the present invention is to provide a modular and independently adjustable spring bed frame, which realizes its modular design. Each independent spring module has excellent performance through a special structural design and can be independently adjusted. The integral spring bed frame is easy to assemble and disassemble and transport, and it is efficient to use.
实现本发明目的的技术解决方案为:一种模块化可独立调节的弹簧床架,包括若干个床板横向梁结构、若干个床板竖向梁结构、若干个工型槽密封盖、若干个工型通槽压盖和若干个工型通槽卡扣;若干个床板横向梁结构相互平行间隔设置,相邻的两个床板横向梁结构之间通过若干个间隔设置的床板竖向梁结构固连,沿床板横向梁结构的中心轴线方向开有工型通槽,所述工型通槽顶面设有长条形开口,工型通槽卡扣固连在工型通槽压盖的内壁,床板横向梁结构一端与工型槽密封盖固连,另一端通过工型通槽压盖上的工型通槽卡扣和工型通槽锁死与分开。所述模块化可独立调节的弹簧床架还包含若干个独立的弹簧模块,每个弹簧模块包括外部弹簧单元、内部弹簧单元、内部弹簧基座、弹簧模块基座、调节高度结构、两个外部弹簧基座和两个弹簧模块卡扣凸起件,弹簧模块基座采用横截面为工字形的滑块,两侧的凹面内壁形成弹簧模块基座滑轨,内部弹簧单元嵌套在外部弹簧单元内,弹簧模块基座的一端端面对称设有两个弹簧模块卡扣凸起件,另一端端面上对称设有两个弹簧模块卡扣凹槽,若干个弹簧模块基座依次插入工型通槽中,并排满,相邻的两个弹簧模块基座中,前一个弹簧模块基座的弹簧模块卡扣凹槽与后一个弹簧模块基座的弹簧模块卡扣凸起件配合连接,外部弹簧单元底部固连有两个对称设置的外部弹簧基座,外部弹簧基座穿过长条形开口固定在弹簧模块基座上,内部弹簧单元固定在内部弹簧基座上,内部弹簧基座底部穿过长条形开口与调节高度结构相连,进行高度调节,调节高度结构设置在弹簧模块基座上。The technical solution to realize the purpose of the present invention is: a modular spring bed frame that can be adjusted independently, including several bed board transverse beam structures, several bed board vertical beam structures, several I-shaped groove sealing covers, several I-shaped Through-slot gland and several I-shaped through-slot buckles; several bed slab transverse beam structures are arranged parallel to each other at intervals, and two adjacent bed slab transverse beam structures are fixedly connected by several bed slab vertical beam structures arranged at intervals. There is an I-shaped through groove along the central axis of the transverse beam structure of the bed board. The top surface of the I-shaped through groove is provided with a long strip-shaped opening. One end of the transverse beam structure is fixedly connected to the sealing cover of the I-shaped groove, and the other end is locked and separated by the buckle of the I-shaped through-slot on the gland of the I-shaped through-slot and the I-shaped through-slot. The modular independently adjustable spring bed frame also includes several independent spring modules, each spring module includes an outer spring unit, an inner spring unit, an inner spring base, a spring module base, a height adjustment structure, two outer The spring base and two spring module buckle protrusions. The spring module base adopts a slider with an I-shaped cross section. The concave inner walls on both sides form the slide rails of the spring module base. The inner spring unit is nested in the outer spring unit. Inside, one end of the spring module base is symmetrically provided with two spring module buckle protrusions, and the other end is symmetrically provided with two spring module buckle grooves, and several spring module bases are inserted into the I-shaped through groove in turn. In two adjacent spring module bases, the spring module buckle groove of the previous spring module base is connected with the spring module buckle protrusion of the rear spring module base, and the outer spring unit The bottom is fixed with two symmetrically arranged outer spring bases, the outer spring base is fixed on the spring module base through the elongated opening, the inner spring unit is fixed on the inner spring base, and the bottom of the inner spring base passes through The elongated opening is connected with the height adjustment structure for height adjustment, and the height adjustment structure is arranged on the spring module base.
本发明与现有技术相比,其显著优点在于:Compared with the prior art, the present invention has significant advantages in that:
(1)整个弹簧床架采用模块化设计的方式,每个弹簧模块之间根据人机工程中的压力分布可独立调节其弹力大小且调节过程快速便捷,能适应更多人的使用需求和提高其使用舒适性。(1) The entire spring bed frame adopts a modular design method, and each spring module can independently adjust its elastic force according to the pressure distribution in ergonomics, and the adjustment process is fast and convenient, which can adapt to the needs of more people and improve Its use comfort.
(2)全新设计的弹簧结构,采用嵌套的方式使其具备良好的弹性的同时又具备较强的耐久性,对于各个方向的压力均能做出精准的回馈。弹簧结构采用镂空设计使整个弹簧床架具备良好的透气性。(2) The newly designed spring structure adopts a nesting method to make it have good elasticity and strong durability, and can give accurate feedback to the pressure in all directions. The spring structure adopts a hollow design so that the entire spring bed frame has good air permeability.
(3)整个弹簧床架便于拆装和运输,使用便捷稳固。(3) The entire spring bed frame is easy to disassemble and transport, and it is convenient and stable to use.
附图说明Description of drawings
图1为本发明一种模块化可独立调节的弹簧床架的整体结构示意图。Fig. 1 is a schematic diagram of the overall structure of a modular independently adjustable spring bed frame of the present invention.
图2为本发明一种模块化可独立调节的弹簧床架的局部结构示意图。Fig. 2 is a partial structural schematic diagram of a modular independently adjustable spring bed frame of the present invention.
图3为本发明一种模块化可独立调节的弹簧床架弹簧模块结构示意图。Fig. 3 is a schematic structural diagram of a spring module of a modular and independently adjustable spring bed frame according to the present invention.
图4为本发明一种模块化可独立调节的弹簧床架弹簧模块结构主视图。Fig. 4 is a front view of a spring module structure of a modular and independently adjustable spring bed frame according to the present invention.
图5为本发明一种模块化可独立调节的弹簧床架弹簧模块结构左视图。Fig. 5 is a left view of a spring module structure of a modular and independently adjustable spring bed frame according to the present invention.
图6为本发明一种模块化可独立调节的弹簧床架弹簧模块结构俯视图。Fig. 6 is a top view of a spring module structure of a modular and independently adjustable spring bed frame according to the present invention.
具体实施方式detailed description
下面结合附图对本发明作进一步详细描述。The present invention will be described in further detail below in conjunction with the accompanying drawings.
结合图1~图6,一种模块化可独立调节的弹簧床架,包括若干个床板横向梁结构16、若干个床板竖向梁结构18、若干个工型槽密封盖19、若干个工型通槽压盖12和若干个工型通槽卡扣13。其中若干个床板横向梁结构16相互平行间隔设置,相邻的两个床板横向梁结构16之间通过若干个间隔设置的床板竖向梁结构18固连,沿床板横向梁结构16的中心轴线方向开有工型通槽17,所述工型通槽17顶面设有长条形开口,工型通槽卡扣13固连在工型通槽压盖12的内壁,床板横向梁结构16一端与工型槽密封盖19固连,另一端通过工型通槽压盖12上的工型通槽卡扣13和工型通槽17锁死与分开。In combination with Figures 1 to 6, a modular spring bed frame that can be independently adjusted includes several bed board transverse beam structures 16, several bed board vertical beam structures 18, several I-shaped groove sealing covers 19, and several I-shaped Through-slot gland 12 and several I-shaped through-slot buckles 13. Among them, several bed board transverse beam structures 16 are arranged parallel to each other at intervals, and two adjacent bed board transverse beam structures 16 are fixedly connected by several bed board vertical beam structures 18 arranged at intervals, along the direction of the central axis of the bed board transverse beam structures 16. There is an I-shaped through-slot 17, and the top surface of the I-shaped through-slot 17 is provided with a strip-shaped opening. The I-shaped through-slot buckle 13 is fixedly connected to the inner wall of the I-shaped through-slot gland 12, and one end of the bed board transverse beam structure 16 It is fixedly connected with the I-shaped groove sealing cover 19, and the other end is locked and separated by the I-shaped through-slot buckle 13 and the I-shaped through-slot 17 on the I-shaped through-slot gland 12.
所述模块化可独立调节的弹簧床架还包含若干个独立的弹簧模块,每个弹簧模块包括外部弹簧单元、内部弹簧单元、内部弹簧基座8、弹簧模块基座3、调节高度结构、两个外部弹簧基座4和两个弹簧模块卡扣凸起件1,弹簧模块基座3采用横截面为工字形的滑块,两侧的凹面内壁形成弹簧模块基座滑轨2,内部弹簧单元嵌套在外部弹簧单元内,弹簧模块基座3的一端端面对称设有两个弹簧模块卡扣凸起件1,另一端端面上对称设有两个弹簧模块卡扣凹槽14,若干个弹簧模块基座3依次插入床板横向梁结构16的工型通槽17中,并排满,相邻的两个弹簧模块基座3中,前一个弹簧模块基座3的弹簧模块卡扣凹槽14与后一个弹簧模块基座3的弹簧模块卡扣凸起件1配合连接,外部弹簧单元底部固连有两个对称设置的外部弹簧基座4,外部弹簧基座4穿过长条形开口固定在弹簧模块基座3上,内部弹簧单元固定在内部弹簧基座8上,内部弹簧基座8底部穿过长条形开口与调节高度结构相连,进行高度调节,调节高度结构设置在弹簧模块基座3上。The modular independently adjustable spring bed frame also includes several independent spring modules, each spring module includes an outer spring unit, an inner spring unit, an inner spring base 8, a spring module base 3, a height adjustment structure, two An external spring base 4 and two spring module buckle protrusions 1, the spring module base 3 adopts a slider with an I-shaped cross section, and the concave inner walls on both sides form the spring module base slide rail 2, and the internal spring unit Nested in the external spring unit, one end of the spring module base 3 is symmetrically provided with two spring module buckle protrusions 1, and the other end is symmetrically provided with two spring module buckle grooves 14, and several springs The module bases 3 are sequentially inserted into the I-shaped through grooves 17 of the bed board transverse beam structure 16, and are filled up. In the two adjacent spring module bases 3, the spring module buckle groove 14 of the previous spring module base 3 and the The spring module buckle protrusions 1 of the latter spring module base 3 are matched and connected, and the bottom of the outer spring unit is fixedly connected with two symmetrically arranged outer spring bases 4, and the outer spring bases 4 pass through the elongated opening and are fixed on the On the spring module base 3, the internal spring unit is fixed on the internal spring base 8, and the bottom of the internal spring base 8 is connected to the height adjustment structure through the elongated opening for height adjustment, and the height adjustment structure is arranged on the spring module base 3 on.
所述特殊设计的外部弹簧单元和内部弹簧单元结构相同,内部弹簧单元的尺寸小于外部弹簧单元的尺寸,嵌套于外部弹簧单元内。外部弹簧单元受到压力后发生形变,当形变达到一定量时,内部弹簧对于外部弹簧有支撑作用且自身也会发生形变,因而提供较好的弹力。The specially designed outer spring unit has the same structure as the inner spring unit, and the size of the inner spring unit is smaller than that of the outer spring unit, and is nested in the outer spring unit. The outer spring unit deforms after receiving pressure. When the deformation reaches a certain amount, the inner spring supports the outer spring and deforms itself, thus providing better elastic force.
所述外部弹簧单元包括外部弹簧承压盖11、两组外部弹簧上支架组和两个外部弹簧下支架5,所述外部弹簧下支架5包括直杆和两个对称设置的S形连杆,两个S形连杆一端分别对应与两个外部弹簧基座4固连,另一端通过直杆连接,直杆和两个S形连杆采用一体制造,每组外部弹簧上支架组包括两个外部弹簧上支架7,外部弹簧上支架7为弧形杆,两组外部弹簧上支架组一端对称固定在外部弹簧承压盖11上,另一端向下弯曲分别与两个外部弹簧下支5对应固连。特殊设计的外部弹簧单元结构,均采用轻质高性能塑料,形变后能迅速恢复,因而具有较强的弹性和耐久性。当弹簧模块受到外界压力时,压力随外部弹簧承压盖11与内部弹簧承压盖10传导给两组外部弹簧上支架组、两个外部弹簧下支架5、两组内部弹簧上支架组与两个内部弹簧下支架,使外部和内部弹簧单元在一定区间内发生形变因而具有较强的回弹力。整个弹簧模块在受到各个方向的压力时均可做出迅速而精准的响应。弹簧模块均采用镂空设计,使整个弹簧床架具有较强的透气性,同时外部与内部弹簧单元顶部的承压盖采用平面造型设计使其能充分承接并传导上部的压力。The outer spring unit includes an outer spring pressure cover 11, two sets of upper brackets for the outer springs and two lower brackets for the outer springs 5, and the lower brackets for the outer springs 5 include a straight rod and two symmetrically arranged S-shaped connecting rods, One end of the two S-shaped connecting rods is fixedly connected to the two external spring bases 4 respectively, and the other end is connected by a straight rod. The straight rod and the two S-shaped connecting rods are manufactured in one piece. The outer spring upper bracket 7, the outer spring upper bracket 7 is an arc rod, one end of two sets of outer spring upper brackets is symmetrically fixed on the outer spring bearing cover 11, and the other end is bent downward to correspond to the two outer spring lower supports 5 respectively Solid connection. The specially designed external spring unit structure is made of lightweight high-performance plastics, which can recover quickly after deformation, so it has strong elasticity and durability. When the spring module is subjected to external pressure, the pressure is transmitted to two sets of outer spring upper bracket groups, two outer spring lower bracket groups 5, two sets of inner spring upper bracket groups and two An inner spring lower bracket makes the outer and inner spring units deform within a certain range and thus has a strong resilience. The entire spring module responds quickly and precisely when pressure is applied in all directions. The spring modules are all hollowed out to make the whole spring bed frame have strong air permeability. At the same time, the pressure-bearing covers on the top of the outer and inner spring units are designed in a flat shape so that they can fully receive and transmit the upper pressure.
所述每个弹簧模块中的内部弹簧单元弹力大小可独立调节,调节过程方便快捷。使用时可根据不同用户不同的体压分布进行有针对性地调节,使整个床架表面形状更加贴合背部生理曲线从而进一步提高使用舒适性,满足更多人的使用需求。具体的调节方式为通过两个外部弹簧上支架7顶部的外部弹簧承压盖11与两个内部弹簧上支架9顶部的内部弹簧承压盖10之间相对距离减小与增加改变内部弹簧系统对外部弹簧系统有效支撑力,实现调节整个独立的弹簧模块弹力大小的目的。The spring force of the internal spring units in each spring module can be adjusted independently, and the adjustment process is convenient and quick. When in use, it can be adjusted in a targeted manner according to the different body pressure distributions of different users, so that the surface shape of the entire bed frame can better fit the physiological curve of the back, thereby further improving the comfort of use and meeting the needs of more people. The specific adjustment method is to change the inner spring system pair by reducing and increasing the relative distance between the outer spring pressure cover 11 on the top of the two outer spring upper brackets 7 and the inner spring pressure cover 10 on the top of the two inner spring upper brackets 9. The external spring system effectively supports the force to achieve the purpose of adjusting the elastic force of the entire independent spring module.
所述每个独立的弹簧模块通过弹簧模块基座滑轨2在床板横向梁结构16的中心轴线方向开有工型通槽17中滑动实现拆装,通过工型通槽压盖12与床板横向梁结构16将其锁定,整个弹簧床架由若干根床板横向梁结构16、床板竖向梁结构18组成,其拆解与装卸过程不用任何螺丝和其它辅助性工具,快捷高效同时具有较强的稳定性。Each independent spring module is disassembled by sliding in the I-shaped through groove 17 in the direction of the central axis of the bed transverse beam structure 16 through the spring module base slide rail 2, and through the I-shaped through groove gland 12 and the transverse direction of the bed board. The beam structure 16 locks it, and the whole spring bed frame is composed of several bed board transverse beam structures 16 and bed board vertical beam structures 18. The disassembly and assembly process does not require any screws or other auxiliary tools, which is fast, efficient and has a strong stability.
工作流程如下:The workflow is as follows:
压力传导:Pressure transmission:
当人躺在弹簧床架上,身体各部分的压力均传导给床架,床架又将各部分压力传导至每个弹簧模块中,进一步传导给外部弹簧单元的外部弹簧承压盖11上,其压力迅速分散至两组外部弹簧上支架组与两个外部弹簧下支架5,由于弹簧支架特殊的结构设计与材料使其迅速响应发生形变,当形变量达到一定程度时,即外部弹簧承压盖11与内部弹簧承压盖10相对距离减小并接触,压力传导给内部弹簧单元,进一步的通过内部弹簧承压盖10传导给两组内部弹簧上支架组与两个内部弹簧下支架6,其迅速响应发生形变。当人改变体位,对弹簧床架的各部分压力随之发生变化。每个弹簧模块对应的压力减小时,内部和外部弹簧单元将恢复原状,从而提供有效的弹力支撑。When a person lies on the spring bed frame, the pressure of each part of the body is transmitted to the bed frame, and the bed frame transmits the pressure of each part to each spring module, and further to the external spring pressure cover 11 of the external spring unit. The pressure is quickly distributed to two sets of external spring upper brackets and two external spring lower brackets 5. Due to the special structural design and material of the spring brackets, it responds quickly and deforms. When the deformation reaches a certain level, the external springs are under pressure. The relative distance between the cover 11 and the inner spring bearing cover 10 decreases and contacts, and the pressure is transmitted to the inner spring unit, and further transmitted to the two inner spring upper bracket groups and the two inner spring lower brackets 6 through the inner spring bearing cover 10, It deforms quickly in response. When the person changes the body position, the pressure on each part of the spring bed frame changes accordingly. When the corresponding pressure of each spring module is reduced, the inner and outer spring units will return to their original shape, thus providing effective elastic support.
拆装与独立调节弹簧模块弹力大小:Disassembly and independent adjustment of the elastic force of the spring module:
床板横向梁结构16一端与工型槽密封盖19固连,另一端通过工型通槽压盖12上的工型通槽卡扣13和工型通槽17锁死与分开,需要拆装时,打开一端的工型通槽压盖12,通过弹簧模块基座滑轨2在床板横向梁结构16内部的工型通槽17中滑动并取出。根据用户自身需求和人体工程中的压力分布可独立调节每个弹簧模块的弹力大小,由于内部弹簧系统嵌套于外部弹簧系统中,调节高度结构包括弹簧压杆和调节按钮15,弹簧压杆设置在弹簧模块基座3内,其顶部与内部弹簧基座8的底部固连,调节按钮15设置在弹簧模块基座3上,通过调节按钮15调节弹簧压杆,进而调节内部弹簧单元的高度实现调节弹簧模块弹力大小的目的。打开床板横向梁结构16一端的工型通槽压盖12,将调整至合适弹力大小的各弹簧模块的工字形弹簧模块基座3两侧的凹面内壁的弹簧模块基座滑轨2在床板横向梁结构16内部的工型通槽17中滑动依次装入,每根床板横向梁结构16装填完毕后盖上工型通槽压盖12,通过工型通槽压盖12的工型通槽卡扣13和工型槽17连接将其锁定,从而完成快捷便利的打开与关闭锁定整个模块化可独立调节弹簧床架与调节各弹簧模块的弹力大小的整个过程。更好地迎合产品模块化设计理念同时有效提升产品使用舒适性。One end of the bed plate transverse beam structure 16 is fixedly connected with the I-shaped groove sealing cover 19, and the other end is locked and separated by the I-shaped through-slot buckle 13 and the I-shaped through-slot 17 on the I-shaped through-slot gland cover 12. , open the I-shaped through-slot gland 12 at one end, and slide in the I-shaped through-slot 17 inside the bed plate transverse beam structure 16 through the spring module base slide rail 2 and take it out. According to the user's own needs and the pressure distribution in ergonomics, the elastic force of each spring module can be independently adjusted. Since the internal spring system is nested in the external spring system, the height adjustment structure includes a spring pressure rod and an adjustment button 15. The spring pressure rod is set In the spring module base 3, its top is fixedly connected with the bottom of the inner spring base 8, and the adjustment button 15 is arranged on the spring module base 3, and the spring pressing rod is adjusted by the adjustment button 15, and then the height of the inner spring unit is adjusted to realize The purpose of adjusting the elastic force of the spring module. Open the I-shaped through-slot gland 12 at one end of the transverse beam structure 16 of the bed board, and adjust the spring module base slide rails 2 on the concave inner walls of the I-shaped spring module base 3 sides of each spring module to be adjusted to the bed board lateral direction. The I-shaped through-slot 17 inside the beam structure 16 is slid and loaded in order. After each bed transverse beam structure 16 is filled, the I-shaped through-slot gland 12 is covered, and the I-shaped through-slot clamp of the I-shaped through-slot gland 12 is passed through. The buckle 13 is connected to the I-shaped groove 17 to lock it, thereby completing the whole process of fast and convenient opening and closing locking of the entire modularized spring bed frame and the elastic force of each spring module. It better caters to the product modular design concept and effectively improves the comfort of product use.
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