JPH0882082A - Noise insulating floor device - Google Patents

Noise insulating floor device

Info

Publication number
JPH0882082A
JPH0882082A JP25573095A JP25573095A JPH0882082A JP H0882082 A JPH0882082 A JP H0882082A JP 25573095 A JP25573095 A JP 25573095A JP 25573095 A JP25573095 A JP 25573095A JP H0882082 A JPH0882082 A JP H0882082A
Authority
JP
Japan
Prior art keywords
elastic member
floor
damping mechanism
elastic
spring
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP25573095A
Other languages
Japanese (ja)
Other versions
JP2741188B2 (en
Inventor
Yoshiharu Dojo
義晴 道塲
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to JP25573095A priority Critical patent/JP2741188B2/en
Publication of JPH0882082A publication Critical patent/JPH0882082A/en
Application granted granted Critical
Publication of JP2741188B2 publication Critical patent/JP2741188B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Floor Finish (AREA)

Abstract

PURPOSE: To enable reducing the vertical dimension of a damping mechanism and preventing deterioration of inhabitability. CONSTITUTION: A cushioning mechanism A is installed between a sleeper 1 and a floor joist 2. The cushioning mechanism A is provided with a plate-shaped elastic member 4 which curves outwards toward the floor joist 2 and with a damping mechanism 5. When an impact load is applied to the floor joist 2, the elastic member 4 is deformed elastically in a direction in which it flattens, thus absorbing the noises of impact and vibration. When the elastic member 4 returns to its original shape elastically, resistance is provided by the damping mechanism 5. Therefore, the vibration of the elastic member 4 is damped in a short time for better inhabitability.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【発明の属する技術分野】本発明は、住宅の階上で発生
した衝撃振動音が階下に伝わるのを軽減する遮音床装置
に係り、特に床下地材と床下面材との間に介装される緩
衝機構の上下寸法を小さくすることができる遮音床装置
に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a sound insulation floor device for reducing the impact vibration sound generated on the floor of a house from being transmitted to the downstairs, and in particular, it is interposed between a floor base material and a floor bottom material. The present invention relates to a sound insulation floor device capable of reducing the vertical dimension of a buffer mechanism.

【0002】[0002]

【従来の技術】近年、集合住宅等においては、階上から
の床衝撃音が大きな問題となっている。この床衝撃音に
は、通常歩行時に生じる軽量衝撃による床衝撃音と、重
量物を落下させたり子供が飛び跳ねた際に生じる重量衝
撃による床衝撃音とがあるが、特に重量衝撃による床衝
撃音については、床スラブを厚くする以外に有効な解決
策はなかった。
2. Description of the Related Art In recent years, floor impact noise from the upper floor has become a serious problem in apartment buildings and the like. The floor impact sound includes a floor impact sound due to a light weight impact generated during normal walking and a floor impact sound due to a heavy impact caused when a heavy object is dropped or a child jumps up. For, there was no effective solution other than thickening the floor slab.

【0003】ところが、床スラブを厚くした場合、一定
の高さ内に配置できる階数が少なくなってしまい、また
建築資材費も嵩むため、必ずしも有効な手段とは云えな
い。またこの方法は、木造住宅に適用することが極めて
困難である。
However, when the floor slab is thickened, the number of floors that can be arranged within a certain height decreases, and the construction material cost increases, so it cannot be said that it is an effective means. Moreover, this method is extremely difficult to apply to a wooden house.

【0004】そこで一部では、例えば特開昭62−23
6958号公報に示されているように、床下地材と床下
面材との間に緩衝機構を介装し、この緩衝機構により衝
撃振動音を吸収するようにした遮音床装置が提案されて
いる。
Therefore, in some cases, for example, JP-A-62-23
As disclosed in Japanese Patent No. 6958, there is proposed a sound insulation floor device in which a shock absorbing mechanism is interposed between a floor base material and a floor lower surface material, and the shock absorbing sound is absorbed by the shock absorbing mechanism. .

【0005】[0005]

【発明が解決しようとする課題】ところで、前記従来の
遮音床装置は、床下地材上面の突出支持体と床下面材下
面の脚体との間に弾性板状体を配置し、この弾性板状体
の弾性力により衝撃振動音を吸収する構造になっている
が、床下地材および床下面材の両方に突起を設ける必要
があるため、床下地材と床下面材との間に大きな上下寸
法を必要とし、開閉ドアの開閉が不可能となる等の理由
から、既存の建物には適用できないという問題がある。
By the way, in the conventional sound insulation floor device, an elastic plate-like member is arranged between the projecting support on the upper surface of the floor base material and the leg on the lower surface of the floor bottom material. Although it has a structure that absorbs impact vibration noise by the elastic force of the sheet, it is necessary to provide protrusions on both the floor base material and the floor bottom material, so there is a large vertical gap between the floor base material and the floor bottom material. There is a problem that it cannot be applied to an existing building because it requires dimensions and the opening and closing doors cannot be opened and closed.

【0006】また、弾性板状体が衝撃荷重の負荷により
撓んだ場合、弾性板状体の振動を減衰させる機構を有し
ていないため、居住性が悪いという問題もある。
In addition, since the elastic plate member does not have a mechanism for attenuating the vibration of the elastic plate member when the elastic plate member is bent by the impact load, there is a problem that the comfortability is poor.

【0007】本発明は、かかる現況に鑑みなされたもの
で、緩衝機構の上下寸法を小さくして既存の建物や木造
住宅にも容易に適用でき、しかも居住性が悪くなること
がない遮音床装置を提供することを目的とする。
The present invention has been made in view of the above situation, and can be easily applied to an existing building or a wooden house by reducing the vertical dimension of the cushioning mechanism, and the habitability is not deteriorated. The purpose is to provide.

【0008】[0008]

【課題を解決するための手段】前記目的を達成するため
本発明は、床下地材と床下面材との間に介装された緩衝
機構により衝撃振動音を吸収する遮音床装置において、
前記緩衝機構として、床下地材と床下面材との上下間隔
方向に湾曲する板状の弾性部材と;この弾性部材を、弾
性復帰動作に抵抗を与える減衰機構と;を備えたものを
用いるようにしたことを特徴とする。
In order to achieve the above object, the present invention provides a sound insulation floor device which absorbs impact vibration noise by a shock absorbing mechanism interposed between a floor base material and a floor bottom material.
As the cushioning mechanism, a plate-like elastic member that bends in the vertical interval direction between the floor base material and the floor lower surface material; and a damping mechanism that applies resistance to this elastic member to the elastic return operation are used. It is characterized by having done.

【0009】そして、本発明に係る遮音床装置において
は、床下面材に衝撃荷重が負荷されると、床下地材と床
下面材との上下間隔方向に湾曲する板状の弾性部材が、
平坦になる方向に弾性変形し、この弾性変形により衝撃
振動音が吸収される。
Further, in the sound insulation floor device according to the present invention, when an impact load is applied to the floor lower surface material, the plate-like elastic member which is curved in the vertical interval direction between the floor base material and the floor lower surface material,
It is elastically deformed in the flattening direction, and the impact vibration noise is absorbed by this elastic deformation.

【0010】ところで、弾性変形した弾性部材は、弾性
復帰の際に、減衰機構により抵抗が与えられる。このた
め、弾性部材の振動が短時間で減衰し、居住性の向上が
図られる。
By the way, the elastically deformed elastic member is given a resistance by the damping mechanism when elastically returning. Therefore, the vibration of the elastic member is attenuated in a short time, and the comfortability is improved.

【0011】本発明はまた、減衰機構として、弾性部材
を弾性変形方向に付勢するばね部材を備えたものを用い
るようにしたことを特徴とする。そしてこれにより、適
用場所に応じた減衰効果を、ばね部材の調節により得る
ことが可能となる。
The present invention is also characterized in that a damping mechanism provided with a spring member for urging the elastic member in the elastic deformation direction is used. And thereby, it becomes possible to obtain the damping effect according to the application place by adjusting the spring member.

【0012】本発明はさらに、減衰機構として、弾性部
材の長手方向中央部に配置され、弾性部材側に凸状に湾
曲する板状のばね部と;このばね部の両端から長手方向
に延設され、先端が弾性部材の長手方向端部に接触して
弾性部材を弾性変形方向に付勢する板状の減衰部と;を
備えたものを用い、前記ばね部を弾性部材が一定以上弾
性変形した後に、弾性部材との接触により弾性変形し始
めるように構成したことを特徴とする。そしてこれによ
り、簡単な構造で広い範囲の衝撃振動音を吸収すること
が可能となる。
The present invention further provides, as a damping mechanism, a plate-shaped spring portion which is arranged at the central portion in the longitudinal direction of the elastic member and is curved in a convex shape toward the elastic member; and extends from both ends of the spring portion in the longitudinal direction. A plate-shaped damping portion whose tip contacts the longitudinal end of the elastic member to urge the elastic member in the elastic deformation direction; and the elastic member elastically deforms the spring member by a certain amount or more. After that, the elastic member is configured to start elastically deforming due to contact with the elastic member. This makes it possible to absorb a wide range of impact vibration noise with a simple structure.

【0013】[0013]

【発明の実施の態様】以下、本発明の第1の実施の態様
を図1ないし図4を参照して説明する。図1および図2
において、符号1は床下地材をなす大引、符号2は床下
面材をなす根太であり、大引1と根太2との間には、衝
撃振動音を吸収する緩衝機構Aが介装されている。
BEST MODE FOR CARRYING OUT THE INVENTION A first embodiment of the present invention will be described below with reference to FIGS. 1 and 2
In FIG. 1, reference numeral 1 is a large base material that serves as a floor base material, and reference numeral 2 is a joist that serves as a floor lower surface material. Between the large base material 1 and the joist 2, a cushioning mechanism A that absorbs impact vibration sound is interposed. ing.

【0014】この緩衝機構Aは、図1ないし図3に示す
ように、大引1上に配置されるベースプレート3と、こ
のベースプレート3上に配置された弾性部材4と、支持
機構を兼ねる減衰機構5とを備えている。
As shown in FIGS. 1 to 3, the shock absorbing mechanism A includes a base plate 3 arranged on the large pull 1, an elastic member 4 arranged on the base plate 3, and a damping mechanism which also serves as a supporting mechanism. 5 and.

【0015】前記ベ−スプレ−ト3は、図1ないし図3
に示すように、プラスチックあるいは金属により長方形
の板状に形成されており、その長手方向両端部には、後
述する減衰機構5を構成する支持部材6がそれぞれ設け
られている。
The base plate 3 is shown in FIGS.
As shown in FIG. 3, it is formed of plastic or metal into a rectangular plate shape, and support members 6 constituting a damping mechanism 5 to be described later are provided at both ends in the longitudinal direction thereof.

【0016】また、前記弾性部材4は、図1ないし図3
に示すように、根太2側に凸の円弧状に湾曲する長方形
状の板ばねで形成されており、その頂部上面には、根太
2に突き刺さる突片4aが設けられている。また、弾性
部材4の長手方向両端部には、図2および図3に示すよ
うに、方形状をなす開口部7がそれぞれ設けられてい
る。そして、これら各開口部7には、図1ないし図3に
示すように、前記各支持部材6の自由端が外側から挿入
され、これにより、弾性部材4は弾性変形自在にベ−ス
プレ−ト3に支持されるようになっている。また、この
弾性部材4は、その長手方向両端部が弾性変形によりベ
−スプレ−ト3上をスライドするようになっている。
Further, the elastic member 4 has the structure shown in FIGS.
As shown in FIG. 4, the leaf spring 2 is formed of a rectangular leaf spring that is curved in an arc shape convex toward the joist 2 side, and a projecting piece 4 a that pierces the joist 2 is provided on the top surface of the top. Further, as shown in FIGS. 2 and 3, rectangular openings 7 are provided at both ends of the elastic member 4 in the longitudinal direction. As shown in FIGS. 1 to 3, the free ends of the support members 6 are inserted into the openings 7 from the outside, whereby the elastic members 4 are elastically deformable in the base plate. It is supposed to be supported by 3. Further, both ends of the elastic member 4 in the longitudinal direction slide on the base plate 3 by elastic deformation.

【0017】前記減衰機構5は、図1ないし図4に示す
ように、前記ベ−スプレ−ト3の長手方向両端に、ベ−
スプレ−ト3から切り起こすことにより一体に設けられ
た支持部材6と、この支持部材6の下面に設けられた複
数の突起8とを備えており、これら各突起8は、図4に
おける右側の面がなだらかで、左側の面が急峻となる断
面形状をなしている。そして、これら各突起8には、弾
性部材4が弾性変形,弾性復帰する際に、前記開口部7
の下端縁が接触し、かつ弾性復帰動作に対してのみ抵抗
を与えるようになっている。また、前記各支持部材6
は、図2および図3に示すように、ベ−スプレ−ト3へ
の連結基端が幅広に形成され、ベ−スプレ−トの開口部
7が各突起8に接触しても、これに充分耐えられるよう
考慮されている。
As shown in FIGS. 1 to 4, the damping mechanism 5 has bases at both longitudinal ends of the base plate 3.
A support member 6 integrally provided by cutting and raising from the plate 3 and a plurality of projections 8 provided on the lower surface of the support member 6 are provided. The cross-sectional shape is smooth and the left side is steep. Then, when the elastic member 4 elastically deforms and elastically returns to the protrusions 8, the openings 7 are formed.
The lower end edges of the two contact with each other and provide resistance only to the elastic return operation. In addition, each of the support members 6
As shown in FIGS. 2 and 3, the base end for connecting to the base plate 3 is formed wide, and even if the opening 7 of the base plate contacts each protrusion 8, Considered to withstand it enough.

【0018】次に、本実施の態様の作用について説明す
る。図1および図2に示すように、大引1と根太2との
間に緩衝機構Aを介装した状態で、根太2に衝撃荷重が
負荷されると、弾性部材4が弾性変形してその両端がベ
−スプレ−ト3上をスライドし、衝撃振動音が吸収され
る。
Next, the operation of this embodiment will be described. As shown in FIGS. 1 and 2, when a shock load is applied to the joist 2 with the cushioning mechanism A interposed between the haul 1 and the joist 2, the elastic member 4 elastically deforms and Both ends slide on the base plate 3 and the shock vibration noise is absorbed.

【0019】ところで、弾性部材4が弾性変形,弾性復
帰する際には、その開口部7の下端縁が、支持部材6下
面の各突起8に接触することになるが、これらの突起8
は、図4における右側の面がなだらかで、左側の面が急
峻となる断面形状をなしてるので、弾性部材4が弾性変
形する際には、突起8に接触してもほとんど抵抗が与え
られず、逆に弾性復帰する際には、突起8への接触によ
り大きな抵抗力が与えられる。このため、弾性部材4の
振動が短時間で減衰し、居住性の向上が図られる。
By the way, when the elastic member 4 is elastically deformed and elastically restored, the lower edge of the opening 7 comes into contact with the respective projections 8 on the lower surface of the support member 6.
4 has a gentle cross section on the right side and a steep left side in FIG. 4, so that when the elastic member 4 is elastically deformed, even if it comes into contact with the protrusion 8, almost no resistance is given. On the contrary, when elastically returning, a large resistance force is given by the contact with the projection 8. Therefore, the vibration of the elastic member 4 is damped in a short time, and the comfortability is improved.

【0020】なお、前記第1の実施の態様においては、
各支持部材6が内側を向いてベ−スプレ−ト3から切り
起こされる場合について説明したが、図5に示すように
外側に向けて切り起こすようにしてもよく、また各突起
8を支持部材6の上面に設け、開口部7の上端縁を接触
させるようにしてもよい。また、各突起8を支持部材6
に設けず、図6および図7に示すように、ベ−スプレ−
ト3の上面に設けるようにしてもよい。また、各支持部
材6を、ベ−スプレ−ト3と別体に形成し、これをベ−
スプレ−ト3に固定するようにしてもよい。
In the first embodiment,
Although the case where each support member 6 faces the inside and is cut and raised from the base plate 3 has been described, the support members 6 may be cut and raised toward the outside as shown in FIG. It may be provided on the upper surface of 6 and the upper edge of the opening 7 may be brought into contact. In addition, each projection 8 is attached to the support member 6
As shown in FIG. 6 and FIG.
It may be provided on the upper surface of the grate 3. Further, each supporting member 6 is formed separately from the base plate 3 and is formed as a base.
It may be fixed to the plate 3.

【0021】図8および図9は、本発明の第2の実施の
態様を示すもので、前記第1の実施の態様における減衰
機構5に代え、減衰機構15を用いるようにしたもので
ある。
FIGS. 8 and 9 show a second embodiment of the present invention, in which a damping mechanism 15 is used instead of the damping mechanism 5 in the first embodiment.

【0022】すなわち、前記減衰機構15は、図8およ
び図9に示すように、ベ−スプレ−ト3から弾性部材4
両端部の両側にそって立上がる一対の支持部材16を備
えており、これら各支持部材16の先端には、弾性部材
4側に向かって屈曲する鉤部16aがそれぞれ設けられ
ている。そして、弾性部材4を介し対向する両側の鉤部
16aは、図9に示すようにスプリング17により内側
に引張られるようになっている。
That is, the damping mechanism 15 includes the base plate 3 to the elastic member 4 as shown in FIGS.
A pair of support members 16 that stand up on both sides of both ends are provided, and a hook portion 16a that bends toward the elastic member 4 side is provided at the tip of each of these support members 16. The hooks 16a on both sides facing each other via the elastic member 4 are pulled inward by the spring 17 as shown in FIG.

【0023】一方、前記弾性部材4の両端上面には、図
8および図9に示すように、各鉤部16aに対応する位
置に、複数の突起8がそれぞれ設けられている。これら
各突起8は、図8に示すように、弾性部材4の長手方向
外側の面がなだらかで、内側の面が急峻となる断面形状
をなしており、弾性部材4が弾性変形,弾性復帰する際
に、前記各鉤部16aが接触するようになっている。そ
して、支持部材16および鉤部16a自体が有する弾性
力と、各突起8の断面形状とにより、前記第1の実施の
態様と同様、弾性部材4の弾性復帰動作に対してのみ、
大きな抵抗が与えられるようになっている。
On the other hand, as shown in FIGS. 8 and 9, a plurality of protrusions 8 are provided on the upper surfaces of both ends of the elastic member 4 at positions corresponding to the respective hook portions 16a. As shown in FIG. 8, each of the protrusions 8 has a cross-sectional shape in which the outer surface in the longitudinal direction of the elastic member 4 is gentle and the inner surface is steep, and the elastic member 4 elastically deforms and elastically returns. At this time, the respective hook portions 16a come into contact with each other. Then, due to the elastic force of the support member 16 and the hook portion 16a itself and the cross-sectional shape of each protrusion 8, only the elastic return operation of the elastic member 4 is performed, as in the first embodiment.
Great resistance is given.

【0024】しかして、本実施の態様によっても、前記
第1の実施の態様と同様の効果が期待できる。
Therefore, according to the present embodiment, the same effect as that of the first embodiment can be expected.

【0025】なお、前記第2の実施の態様では、突起8
を弾性部材4の上面に設ける場合について説明したが、
突起8を弾性部材4の幅方向両側縁に設け、支持部材1
6に直接接触させるようにしてもよい。
In the second embodiment, the protrusion 8
Although the case where the above is provided on the upper surface of the elastic member 4 has been described,
The protrusions 8 are provided on both side edges of the elastic member 4 in the width direction, and the support member 1
You may make it contact 6 directly.

【0026】図10および図11は、本発明の第3の実
施の態様を示すもので、前記第1の実施の態様における
減衰機構5に代え、減衰機構25を用いるようにしたも
のである。
FIGS. 10 and 11 show a third embodiment of the present invention, in which a damping mechanism 25 is used instead of the damping mechanism 5 in the first embodiment.

【0027】すなわち、前記減衰機構25は、図10お
よび図11に示すように、弾性部材4両端部の上面およ
び両側部を門形に囲む支持部材26を備えており、各支
持部材26の下端は、スプリング27を介してベ−スプ
レ−ト3に連結されている。また、弾性部材4の長手方
向両端上面には、図10および図11に示すように、前
記第2の実施の態様と同一の断面形状をなす複数の突起
8が設けられ、弾性部材4の弾性変形,弾性復帰時に、
前記支持部材26に接触するようになっている。
That is, as shown in FIGS. 10 and 11, the damping mechanism 25 is provided with a support member 26 that surrounds the upper and both ends of the elastic member 4 in a gate shape, and the lower end of each support member 26. Are connected to the base plate 3 via springs 27. Further, as shown in FIGS. 10 and 11, a plurality of protrusions 8 having the same sectional shape as that of the second embodiment are provided on the upper surfaces of both ends of the elastic member 4 in the longitudinal direction. When deformed or elastically restored,
It is adapted to come into contact with the support member 26.

【0028】しかして、本実施の態様によっても、前記
第1の実施の態様と同様の効果が期待できる。そして、
支持部材26の両端およびスプリング27を、ベ−スプ
レ−ト3に立設した筒材内に収容し、支持部材26が上
下動のみ許容されるようにすれば、より確実な動作が期
待できる。
Therefore, according to this embodiment, the same effect as that of the first embodiment can be expected. And
If both ends of the support member 26 and the spring 27 are housed in a tubular member provided upright on the base plate 3 and the support member 26 is allowed to move only vertically, a more reliable operation can be expected.

【0029】図12は、本発明の第4の実施の態様を示
すもので、前記第1の実施の態様における支持機構を兼
ねる減衰機構5に代え、支持機構35Aと減衰機構35
Bとを用いるようにしたものである。
FIG. 12 shows a fourth embodiment of the present invention. Instead of the damping mechanism 5 which also serves as the supporting mechanism in the first embodiment, a supporting mechanism 35A and a damping mechanism 35 are used.
B and B are used.

【0030】すなわち、前記支持機構35Aは、図12
に示すように、両端が支持部材6の長手方向両端部に設
けた縦長の開口部7に挿入される支持棒36aと、この
支持棒36aをベ−スプレ−ト3に連結する連結棒36
bとからなる支持部材36を備えており、前記支持棒3
6aの両端部には、弾性部材4の長手方向両端部を外方
に常時押圧付勢して減衰機構35Bを構成するスプリン
グ37がそれぞれ装着されている。そして、これら各ス
プリング37の付勢力により、弾性部材4の弾性復帰動
作に抵抗が与えられるようになっている。
That is, the support mechanism 35A is shown in FIG.
As shown in FIG. 2, a support rod 36a having both ends inserted into the vertically long openings 7 provided at both ends in the longitudinal direction of the support member 6, and a connecting rod 36 for connecting the support rod 36a to the base plate 3.
and a supporting member 36 composed of
At both ends of 6a, springs 37 that constitute a damping mechanism 35B by constantly pressing outwardly both ends of the elastic member 4 in the longitudinal direction are mounted. The biasing force of each of the springs 37 provides resistance to the elastic return operation of the elastic member 4.

【0031】しかして、本実施の態様によっても、スプ
リング37のばね定数を適切な値に設定することによ
り、充分な減衰効果が期待できる。
However, also in this embodiment, a sufficient damping effect can be expected by setting the spring constant of the spring 37 to an appropriate value.

【0032】図13は、本発明の第5の実施の態様を示
すもので、前記第1の実施の態様における減衰機構5に
代え、支持機構45Aと減衰機構45Bとを用いるよう
にしたものである。
FIG. 13 shows a fifth embodiment of the present invention, in which a supporting mechanism 45A and a damping mechanism 45B are used in place of the damping mechanism 5 in the first embodiment. is there.

【0033】すなわち、前記支持機構45Aは、図13
に示すように、弾性部材4の長手方向一端を弾性変形自
在にベ−スプレ−ト3に固定する支持部材46で構成さ
れ、また、前記減衰機構45Bは、弾性部材4の長手方
向他端を外側に引張るスプリング47で構成されてい
る。そして、前記スプリング47の付勢力により、弾性
部材4の弾性復帰動作に抵抗が与えられるようになって
いる。なお、本実施の態様では、弾性部材4の一端がベ
−スプレ−ト3に固定されているため、前記第1の実施
の態様における突片4aは省略されている。
That is, the support mechanism 45A is shown in FIG.
As shown in FIG. 5, one end of the elastic member 4 in the longitudinal direction is constituted by a supporting member 46 that elastically deformably fixes to the base plate 3, and the damping mechanism 45B connects the other end of the elastic member 4 in the longitudinal direction. It is composed of a spring 47 that pulls outward. The biasing force of the spring 47 provides resistance to the elastic return operation of the elastic member 4. In this embodiment, one end of the elastic member 4 is fixed to the base plate 3, so that the protruding piece 4a in the first embodiment is omitted.

【0034】しかして、本実施の態様によっても、スプ
リング47のばね定数の選定により、充分な減衰効果が
期待できる。
However, also in this embodiment, a sufficient damping effect can be expected by selecting the spring constant of the spring 47.

【0035】図14は、本発明の第6の実施の態様を示
すもので、前記各実施の態様における弾性部材4に代
え、弾性部材54を用いるようにしたものである。
FIG. 14 shows a sixth embodiment of the present invention, in which an elastic member 54 is used instead of the elastic member 4 in each of the embodiments.

【0036】すなわち、前記弾性部材54は、図14に
示すように、軽量衝撃用の第1板ばね54aと、重量衝
撃用の第2板ばね54bと、これら両板ばね54a,5
4bを頂部で連結する止め金具54cとから構成されて
おり、前記止め金具54cは、前記第1実施の態様にお
ける突片4aを兼ねている。
That is, as shown in FIG. 14, the elastic member 54 includes a first leaf spring 54a for lightweight impact, a second leaf spring 54b for heavy impact, and both leaf springs 54a, 5a.
4b is connected to the top with a stopper 54c, and the stopper 54c also serves as the protruding piece 4a in the first embodiment.

【0037】前記第1板ばね54aは、図14に示すよ
うに、前記第1の実施の態様における弾性部材4と同一
構成をなしており、また前記第2板ばね54bは、第1
板ばね54aと同一または異なるばね定数のばね材で第
1板ばね54aよりも小さな曲率の円弧状に形成され、
第1板ばね54aが弾性変形しない状態においては、ベ
−スプレ−ト3から浮き上がった状態となっている。そ
して、第2板ばね54bは、第1板ばね54aがある程
度弾性変形した後に、ベ−スプレ−ト3上に設けたガイ
ド片60に接触し、第1板ばね54aとともに重量衝撃
に対して弾性変形するようになっている。なお、その他
の点については、前記第1の実施の態様と同一構成とな
っている。
As shown in FIG. 14, the first plate spring 54a has the same structure as the elastic member 4 in the first embodiment, and the second plate spring 54b has the first structure.
A spring material having the same or different spring constant as that of the leaf spring 54a is formed in an arc shape having a smaller curvature than the first leaf spring 54a,
When the first plate spring 54a is not elastically deformed, it is in a state of being lifted from the base plate 3. Then, the second leaf spring 54b comes into contact with the guide piece 60 provided on the base plate 3 after the first leaf spring 54a is elastically deformed to some extent, and is elastic with respect to the weight impact together with the first leaf spring 54a. It is supposed to deform. The other points are the same as those of the first embodiment.

【0038】しかして、弾性部材54を、ばね定数が同
一または異なる2枚の板ばね54a,54bで構成する
ことにより、より広範囲の衝撃振動音を吸収することが
できる。そして、弾性部材を構成する板ばねを、3枚以
上にすれば、さらに広範囲の衝撃振動音を吸収すること
が可能となる。
By configuring the elastic member 54 with two leaf springs 54a and 54b having the same or different spring constants, it is possible to absorb impact vibration noise in a wider range. If the number of leaf springs constituting the elastic member is three or more, it is possible to absorb impact vibration sound in a wider range.

【0039】図15ないし図19は、本発明の第7の実
施の態様を示すもので、前記第1の実施の態様における
ベ−スプレ−ト3,弾性部材4および減衰機構5に代
え、ベ−スプレ−ト63,弾性部材54,支持機構65
Aおよび減衰機構65Bを用いるようにしたものであ
る。
FIGS. 15 to 19 show a seventh embodiment of the present invention. Instead of the base plate 3, elastic member 4 and damping mechanism 5 in the first embodiment, a base is used. -Spray 63, elastic member 54, support mechanism 65
A and the damping mechanism 65B are used.

【0040】すなわち、前記ベ−スプレ−ト63は、図
16および図17に示すように、プラスチックあるいは
金属により長方形の板状に形成されており、その上面に
は、2個の内側突片66および2個の外側突片67がそ
れぞれ設けられ、後述する減衰機構65Bは、これら各
突片66,67上に載置されるようになっている。
That is, as shown in FIGS. 16 and 17, the base plate 63 is made of plastic or metal in the shape of a rectangular plate, and two inner projecting pieces 66 are formed on the upper surface thereof. And two outer protruding pieces 67 are provided respectively, and a damping mechanism 65B, which will be described later, is placed on each of these protruding pieces 66, 67.

【0041】前記各外側突片67の両側部には、図16
ないし図19に示すように、弾性部材54の第1板ばね
54aが摺動する摺動突片68がそれぞれ設けられ、前
記減衰機構65Bは、これら両摺動突片68により幅方
向の位置規制がなされるようになっている。
On both sides of each of the outer protruding pieces 67, as shown in FIG.
19 to 19, sliding protrusions 68 on which the first plate spring 54a of the elastic member 54 slides are provided, and the damping mechanism 65B restricts the position in the width direction by these sliding protrusions 68. Is being done.

【0042】これら各摺動突片68の幅方向外側位置に
は、図15ないし図19に示すように、鉤状をなす係止
片69がそれぞれ設けられており、これら各係止片49
と前記各摺動突片68とにより、第1板ばね54aを弾
性変形自在にベ−スプレ−ト63に支持する支持機構6
5Aを構成している
As shown in FIGS. 15 to 19, hook-like locking pieces 69 are respectively provided at the widthwise outer positions of the respective sliding projections 68, and the respective locking pieces 49 are provided.
The support mechanism 6 for elastically deformably supporting the first plate spring 54a on the base plate 63 by means of the sliding projections 68 and the sliding projections 68.
Constitutes 5A

【0043】これら各支持機構65Aの長手方向外側位
置には、図16ないし図19に示すように、凹部71お
よび弾性部材54の長手方向の位置規制を行なう突片7
2がそれぞれ設けられている。
As shown in FIGS. 16 to 19, at the outer position in the longitudinal direction of each of the support mechanisms 65A, the projection 7 for restricting the longitudinal position of the recess 71 and the elastic member 54 is provided.
2 are provided respectively.

【0044】一方、前記減衰機構65Bは、図15に示
すように、長手方向中央部に位置して弾性部材54側に
凸状に湾曲する板状のばね部73と、このばね部73の
両端から長手方向に延設される板状の減衰部74とか
ら、断面ハット状に形成されており、前記ばね部73に
より、減衰機構65Bにばね性が与えられるようになっ
ている。そして、前記各減衰部74の先端は、前記第1
板ばね54aの長手方向両端に設けられた屈曲部75に
接触し、第1板ばね54aを弾性変形方向に付勢するよ
うになっている。
On the other hand, the damping mechanism 65B is, as shown in FIG. 15, a plate-shaped spring portion 73 located at the center in the longitudinal direction and curved in a convex shape toward the elastic member 54, and both ends of this spring portion 73. Is formed in a hat shape in cross section from a plate-shaped damping portion 74 extending in the longitudinal direction from the above, and the damping mechanism 65B is provided with a spring property by the spring portion 73. The tip of each of the attenuating portions 74 has the first
The first leaf spring 54a is urged in the elastic deformation direction by coming into contact with the bent portions 75 provided at both ends of the leaf spring 54a in the longitudinal direction.

【0045】しかして、支持機構65Aおよび減衰機構
65Bを用いることにより、前記第6の実施の態様の場
合よりも構造を簡素化することができる。
By using the support mechanism 65A and the damping mechanism 65B, the structure can be simplified as compared with the case of the sixth embodiment.

【0046】図20は、本発明の第8の実施の態様を示
すもので、前記第7の実施の態様における弾性部材54
および減衰機構65Bに代え、弾性部材4および減衰機
構85Bを用いるようにしたものである。
FIG. 20 shows an eighth embodiment of the present invention, in which the elastic member 54 in the seventh embodiment is used.
The elastic member 4 and the damping mechanism 85B are used instead of the damping mechanism 65B.

【0047】すなわち、減衰機構85Bは、図20に示
すように、前記第7の実施の態様の減衰機構65Bと同
様、ばね部86と減衰部87とから断面ハット状に形成
されているが、ばね部86は、減衰機構65Bのばね部
73よりも大形に形成されている。そして、このばね部
86は、弾性部材4が一定以上弾性変形した後に、弾性
部材4との接触により弾性変形し始め、弾性部材4とと
もに衝撃振動音を吸収するようになっている。すなわ
ち、ばね部86は、前記第7の実施の態様におけるばね
部73の機能と第2板ばね54bの機能とを兼備してい
る。
That is, as shown in FIG. 20, the damping mechanism 85B, like the damping mechanism 65B of the seventh embodiment, is formed of a spring portion 86 and a damping portion 87 in a hat-shaped cross section. The spring portion 86 is formed larger than the spring portion 73 of the damping mechanism 65B. After the elastic member 4 has elastically deformed by a certain amount or more, the spring portion 86 begins to elastically deform due to contact with the elastic member 4, and absorbs the impact vibration sound together with the elastic member 4. That is, the spring portion 86 has both the function of the spring portion 73 and the function of the second plate spring 54b in the seventh embodiment.

【0048】なお、図20において、符号88は、各減
衰部87の先端を接触させるために、弾性部材4の長手
方向両端部にそれぞれ設けた屈曲部、符号89は、弾性
部材4とばね部86との接触音を吸収するために弾性部
材4に装着された軟質プラスチック製あるいゴム製のカ
バ−であり、このカバ−89は、弾性部材4として金属
板ばねを用いる場合に、含水面に接触させても弾性部材
4が腐蝕しないようにするための保護カバ−も兼ねてい
る。その他の点については、前記第7の実施の態様と同
一構成となっている。
In FIG. 20, reference numeral 88 is a bent portion provided at each end of the elastic member 4 in the longitudinal direction in order to bring the tips of the respective damping portions 87 into contact with each other, and reference numeral 89 is the elastic member 4 and the spring portion. A cover made of soft plastic or rubber attached to the elastic member 4 to absorb the contact sound with the contact member 86. The cover 89 is a water-containing surface when a metal plate spring is used as the elastic member 4. It also serves as a protective cover for preventing the elastic member 4 from corroding even when it is brought into contact with. The other points are the same as those of the seventh embodiment.

【0049】しかして、減衰機構85Bを用いることに
より、前記第7の実施の態様の場合よりもさらに構造が
簡素化され、しかも広範囲の衝撃振動音を吸収すること
ができる。
By using the damping mechanism 85B, however, the structure is further simplified as compared with the case of the seventh embodiment, and it is possible to absorb the shock vibration noise in a wide range.

【0050】なお、前記各実施の態様においては、弾性
部材4,54を上側にして使用する場合について説明し
たが、逆に弾性部材4,54を下側にして使用するよう
にしてもよい。
In each of the above embodiments, the case where the elastic members 4 and 54 are used on the upper side has been described, but conversely, the elastic members 4 and 54 may be used on the lower side.

【0051】また、前記各実施の態様においては、弾性
部材4,54が各所同一板厚の板ばねで形成される場合
について説明したが、例えば頂部の板厚が厚く長手方向
両端に向かって次第に板厚が薄くなる板ばねを用いるよ
うにしてもよい。
Further, in each of the above-described embodiments, the case where the elastic members 4 and 54 are formed by the leaf springs having the same plate thickness at each place has been described. However, for example, the plate thickness at the top is thick and gradually increases toward both ends in the longitudinal direction. A leaf spring having a thin plate thickness may be used.

【0052】また、前記各実施の態様においては、緩衝
機構Aに、ベースプレート3,63を設け、弾性部材
4,54を、支持機構を介しベースプレート3,63に
弾性変形自在に支持する場合について説明したが、ベー
スプレート3,63および支持機構は、必要に応じ省略
するようにしてもよい。
Further, in each of the above embodiments, the case where the buffer mechanism A is provided with the base plates 3 and 63 and the elastic members 4 and 54 are elastically deformably supported by the base plates 3 and 63 through the support mechanism will be described. However, the base plates 3 and 63 and the support mechanism may be omitted if necessary.

【0053】また、前記各実施の態様では特に説明しな
かったが、木造住宅の場合、部屋の周囲600mm程度
の範囲は、タンス等の重量物が配される場合が多い。し
たがって、この範囲の大引1と根太2との間には、緩衝
機構Aに代えて木片等のスペ−サを介装するようにして
もよい。
Although not particularly described in the above embodiments, in the case of a wooden house, a heavy object such as a closet is often arranged in a range of about 600 mm around the room. Therefore, instead of the buffer mechanism A, a spacer such as a piece of wood may be interposed between the large haul 1 and the joist 2 in this range.

【0054】さらに、前記各実施の態様においては、木
造住宅に適用される場合について説明したが、集合住宅
にも同様に適用することができる。そしてこの場合、緩
衝機構Aは、床下地材としての床スラブと床下面材とし
てのベニヤ板等との間に介装されることになる。
Further, in each of the above-mentioned embodiments, the case where it is applied to a wooden house has been described, but it can be similarly applied to an apartment house. In this case, the cushioning mechanism A is interposed between the floor slab as the floor base material and the plywood plate as the floor lower surface material.

【0055】[0055]

【発明の効果】以上説明したように本発明は、床下地材
と床下面材との上下間隔方向に湾曲する板状の弾性部材
により衝撃振動音を吸収するようにしているので、緩衝
機構の上下寸法を小さくして、しかも充分な衝撃振動音
の吸収効果が得られる。また、緩衝機構は減衰機構を備
えているので、弾性部材の振動が短時間で減衰し、居住
性を向上させることができる。
As described above, according to the present invention, the shock-vibration sound is absorbed by the plate-shaped elastic member which is curved in the vertical interval direction between the floor base material and the floor underside material. The vertical dimension can be reduced, and a sufficient impact vibration noise absorption effect can be obtained. Further, since the cushioning mechanism includes the damping mechanism, the vibration of the elastic member is damped in a short time, and the comfortability can be improved.

【0056】本発明はまた、減衰機構として、弾性部材
を弾性変形方向に付勢するばね部材を備えたものを用い
ているので、適用場所に応じた減衰効果を、ばね部材の
調節により得ることができる。
Further, since the present invention uses the damping mechanism having the spring member for urging the elastic member in the elastic deformation direction, the damping effect according to the application place can be obtained by adjusting the spring member. You can

【0057】本発明はさらに、減衰機構として、ばね部
と減衰部とを備えたものを用い、ばね部を、弾性部材が
一定以上弾性変形した後に、弾性部材との接触により弾
性変形し始めるように構成しているので、簡単な構造で
広範囲の衝撃振動音を吸収することができる。
The present invention further employs a damping mechanism having a spring portion and a damping portion, so that the spring portion begins to elastically deform due to contact with the elastic member after the elastic member has elastically deformed a certain amount or more. Since it is configured to, it is possible to absorb a wide range of impact vibration noise with a simple structure.

【図面の簡単な説明】[Brief description of drawings]

【図1】本発明の第1の実施の態様に係る遮音床装置を
示す構成図である。
FIG. 1 is a configuration diagram showing a sound insulation floor device according to a first embodiment of the present invention.

【図2】図1の側面図である。FIG. 2 is a side view of FIG.

【図3】緩衝機構の平面図である。FIG. 3 is a plan view of a buffer mechanism.

【図4】図1の要部拡大断面図である。FIG. 4 is an enlarged cross-sectional view of a main part of FIG.

【図5】前記第1の実施の態様の変形例を示す図4相当
図である。
FIG. 5 is a view, corresponding to FIG. 4, showing a modification of the first embodiment.

【図6】前記第1の実施の態様の他の変形例を示す図4
相当図である。
FIG. 6 is a diagram showing another modification of the first embodiment.
FIG.

【図7】図6の平面図である。FIG. 7 is a plan view of FIG. 6;

【図8】本発明の第2の実施の態様を示す緩衝機構の構
成図である。
FIG. 8 is a configuration diagram of a cushioning mechanism showing a second embodiment of the present invention.

【図9】図8の側面図である。9 is a side view of FIG.

【図10】本発明の第3の実施の態様を示す図8相当図
である。
FIG. 10 is a view corresponding to FIG. 8 showing a third embodiment of the present invention.

【図11】図10の側面図である。11 is a side view of FIG.

【図12】本発明の第4の実施の態様を示す図8相当図
である。
FIG. 12 is a view corresponding to FIG. 8 showing a fourth embodiment of the present invention.

【図13】本発明の第5の実施の態様を示す図8相当図
である。
FIG. 13 is a view corresponding to FIG. 8 showing a fifth embodiment of the present invention.

【図14】本発明の第6の実施の態様を示す図8相当図
である。
FIG. 14 is a view corresponding to FIG. 8 showing a sixth embodiment of the present invention.

【図15】本発明の第7の実施の態様を示す図8相当図
である。
FIG. 15 is a view corresponding to FIG. 8 showing a seventh embodiment of the present invention.

【図16】図15に示すベースプレートの平面図である
16 is a plan view of the base plate shown in FIG.

【図17】図16のXVII−XVII線断面図である。17 is a sectional view taken along line XVII-XVII in FIG.

【図18】図17のXVIII 部拡大図である。FIG. 18 is an enlarged view of a part XVIII in FIG.

【図19】図17のXIX − XIX線拡大断面図である。19 is an enlarged sectional view taken along line XIX-XIX in FIG.

【図20】本発明の第8の実施の態様を示す図8相当図
である。
20 is a view corresponding to FIG. 8 showing an eighth embodiment of the present invention.

【符号の説明】[Explanation of symbols]

1 大引 2 根太 3,63 ベ−スプレ−ト 4,54 弾性部材 5,15,25,35B,45B,85B 減衰機構 6,16,26,36,46 支持部材 7 開口 8 突起 16a 鉤部 17,27,37,47 スプリング 35A,45A,65A 支持機構 54a 第1板ばね 54b 第2板ばね 73,86 ばね部 74,87 減衰部 75,88 屈曲部 89 カバ− A 緩衝機構 1 Daihiki 2 Jouta 3,63 Base plate 4,54 Elastic member 5,15,25,35B, 45B, 85B Damping mechanism 6,16,26,36,46 Support member 7 Opening 8 Protrusion 16a Hook 17 , 27, 37, 47 springs 35A, 45A, 65A support mechanism 54a first leaf spring 54b second leaf spring 73, 86 spring portion 74, 87 damping portion 75, 88 bent portion 89 cover A cushioning mechanism

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 床下地材と床下面材との間に介装された
緩衝機構により衝撃振動音を吸収する遮音床装置におい
て、前記緩衝機構は、床下地材と床下面材との上下間隔
方向に湾曲する板状の弾性部材と;この弾性部材の弾性
復帰動作に抵抗を与える減衰機構と;を備えていること
を特徴とする遮音床装置。
1. A sound insulation floor device that absorbs shock vibration noise by a shock absorbing mechanism interposed between a floor base material and a floor lower surface material, wherein the shock absorbing mechanism has a vertical gap between the floor base material and the floor lower surface material. A sound insulation floor device, comprising: a plate-shaped elastic member that bends in a direction; and a damping mechanism that provides resistance to the elastic return operation of the elastic member.
【請求項2】 減衰機構は、弾性部材を弾性変形方向に
付勢するばね部材を備えていることを特徴とする請求項
1記載の遮音床装置。
2. The sound insulation floor device according to claim 1, wherein the damping mechanism includes a spring member that biases the elastic member in an elastic deformation direction.
【請求項3】 減衰機構は、弾性部材の長手方向中央部
に配置され、弾性部材側に凸状に湾曲する板状のばね部
と;このばね部の両端から長手方向に延設され、先端が
弾性部材の長手方向端部に接触して弾性部材を弾性変形
方向に付勢する板状の減衰部と;を備え、前記ばね部
は、弾性部材が一定以上弾性変形した後に、弾性部材と
の接触により弾性変形し始めるようになっていることを
特徴とする請求項1記載の遮音床装置。
3. A damping mechanism, which is disposed at a central portion in the longitudinal direction of an elastic member and has a plate-shaped spring portion that is convexly curved toward the elastic member; and extends in the longitudinal direction from both ends of the spring portion and has a tip. A plate-shaped damping portion that contacts the longitudinal end portion of the elastic member and biases the elastic member in the elastic deformation direction; and the spring portion, after the elastic member elastically deforms a certain amount or more, The sound insulation floor device according to claim 1, wherein the sound insulation floor device starts to elastically deform upon contact with the sound insulation floor device.
JP25573095A 1989-02-18 1995-09-08 Sound insulation floor device Expired - Fee Related JP2741188B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP25573095A JP2741188B2 (en) 1989-02-18 1995-09-08 Sound insulation floor device

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
JP3896389 1989-02-18
JP1-38963 1989-02-18
JP25573095A JP2741188B2 (en) 1989-02-18 1995-09-08 Sound insulation floor device

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
JP1257436A Division JPH0684676B2 (en) 1989-02-18 1989-10-02 Sound insulation floor equipment

Publications (2)

Publication Number Publication Date
JPH0882082A true JPH0882082A (en) 1996-03-26
JP2741188B2 JP2741188B2 (en) 1998-04-15

Family

ID=26378275

Family Applications (1)

Application Number Title Priority Date Filing Date
JP25573095A Expired - Fee Related JP2741188B2 (en) 1989-02-18 1995-09-08 Sound insulation floor device

Country Status (1)

Country Link
JP (1) JP2741188B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2004044093A (en) * 2002-07-09 2004-02-12 Haseko Corp Double-floor support device and sound insulating floor structure using double-floor support device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2004044093A (en) * 2002-07-09 2004-02-12 Haseko Corp Double-floor support device and sound insulating floor structure using double-floor support device

Also Published As

Publication number Publication date
JP2741188B2 (en) 1998-04-15

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