Structure improvement of frame sliding rail
Abstract
The present invention is an improved slide rail structure of a frame, which is composed of an upper frame strip, a lower frame strip and two side frame strips connecting the upper frame strip and the lower frame strip and vertically defined, wherein the upper frame is The strip defines a fixed channel, a first sliding rail and a second sliding rail, wherein a plate body (glass) is installed and fixed in the fixing channel, and the first sliding rail is used for installing the first sliding component and The second sliding rail is mounted with the second sliding component, wherein the first sliding component and the second sliding component are respectively provided with a plate body (glass), so that the whole is a three-door sliding door, when the second sliding component is pulled, the second sliding component is The second rack will drive the gears on the first sliding assembly, and the gears will move to the first rack on the first rail, so that the first sliding assembly and the second sliding assembly are interlocked with each other. This allows each plate (glass) to prevent direct collisions when the sliding door is pulled.
Term
No projected expiry on record.
- Priority and filed
- Granted
- Today
5 claims: 3 independent, 2 dependent
- 1The utility model relates to a structure of a slide rail of a frame, which is composed of an upper frame strip, a lower frame strip and two side frame strips which are connected to the upper end of the upper frame strip and the lower frame strip and are vertically set up, and the frame comprises:the upper frame strip Defining a fixed channel for fixing a plate body, a first sliding rail adjacent to the fixing channel, and a second sliding rail adjacent to the first sliding rail, wherein the first sliding rail system is provided with a first sliding rail a first sliding assembly, the first sliding assembly includes a frame plate, wherein the frame plate is disposed to engage with the first rack, and the first sliding assembly is provided for the first sliding rail a second sliding assembly, the second sliding assembly includes a frame plate, the frame plate is provided with a second rack that meshes with each of the gears, and a second sliding frame is disposed on the second sliding rail. a sliding member, wherein, when the second sliding assembly is pulled, the second rack drives the gears, and each of the gears moves the first rack, so that the first sliding assembly and the second sliding The components are linked to each other. 一種框架之滑軌結構改良,該框架係由一上框條、一下框條及二連接該上框條及該下框條兩端且垂直設立之側框條組成,其包括:該上框條係界定一供固定裝設一板體之固定槽道、一鄰近該固定槽道之第一滑軌及一鄰近該第一滑軌之第二滑軌,其中該第一滑軌係設置一第一齒條;一第一滑動組件,該第一滑動組件係包含一框板,於該框板係設置複數與該第一齒條相嚙合,且供該第一滑動組件對該第一滑軌滑動之齒輪;一第二滑動組件,該第二滑動組件係包含一框板,該框板係設置一與前述各該齒輪相嚙合之第二齒條及一滑設於該第二滑軌之滑動件,藉此,拉動該第二滑動組件時,該第二齒條會帶動各該齒輪,而各該齒輪則會對該第一齒條移動,使得該第一滑動組件與該第二滑動組件相互成連動。 一種框架之滑軌結構改良,該框架係由一上框條、一下框條及二連接該上框條及該下框條兩端且垂直設立之側框條組成,其包括:該上框條係界定一供固定裝設一板體之固定槽道、一鄰近該固定槽道之第一滑軌及一鄰近該第一滑軌之第二滑軌,其中該第一滑軌係設置一第一齒條;一第一滑動組件,該第一滑動組件係包含一框板,於該框板係設置複數與該第一齒條相嚙合,且供該第一滑動組件對該第一滑軌滑動之齒輪;一第二滑動組件,該第二滑動組件係包含一框板,該框板係設置一與前述各該齒輪相嚙合之第二齒條及一滑設於該第二滑軌之滑動件,藉此,拉動該第二滑動組件時,該第二齒條會帶動各該齒輪,而各該齒輪則會對該第一齒條移動,使得該第一滑動組件與該第二滑動組件相互成連動。
- 4The improvement of the slide rail structure of the frame described in claim 3, wherein the second slide The frame plate of the movable component defines a mounting portion for fixing a plate body and the sliding members, and a fixing portion for mounting the second rack is extended at one end of the mounting portion in a vertical direction. 如申請專利範圍第3項所述之框架之滑軌結構改良,其中該第二滑 動組件之該框板係界定一供固定一板體及該些滑動件之安裝部,於該安裝部一端以相垂直方向延伸一供安裝該第二齒條之固定部。 如申請專利範圍第3項所述之框架之滑軌結構改良,其中該第二滑 動組件之該框板係界定一供固定一板體及該些滑動件之安裝部,於該安裝部一端以相垂直方向延伸一供安裝該第二齒條之固定部。
Independent claims3
28 paragraphs, as filed
Improvement of the sliding rail structure of the frame
This creation is about a function that allows each door of the sliding door to achieve a direct collision that prevents it from being pulled.
According to the common shower compartment, the main components include: a partition wall panel, a fixed frame, and a door panel, wherein the partition wall is used as an isolation area, and the fixing frame is used to partition the compartment. The wall or door piece is fixed to the floor or wall, and the door piece provides access to the shower compartment.
However, at present, the sliding door assembly method of the shower compartment on the market mainly uses the track mode as the structure in which the sliding door is fixed and slid, so that each sliding door is sliding separately, when pulling the first sliding door When the top is pulled to the second sliding door, the second sliding door can be driven to move. Therefore, if the user pulls too much power, the sliding door may be damaged or the glass on the sliding door may be damaged.
Therefore, how to solve the above problems and shortcomings in the past, that is, the creators of the creation and the relevant manufacturers engaged in this industry are eager to study the direction of improvement.
The main purpose of the creation is to use the interlocking relationship between the first sliding component and the second sliding component to prevent each panel (glass) from preventing direct contact when the sliding door is pulled. Hit the effect.
In order to achieve the above purpose, the present invention is an improved slide rail structure of a frame, which is composed of an upper frame strip, a lower frame strip and two side frame strips connecting the upper frame strip and the lower frame strip and vertically defined. The upper frame strip defines a fixed channel for fixing a plate body, a first slide rail adjacent to the fixed channel, and a second slide rail adjacent to the first slide rail, wherein the upper slide rail The first slide rail is provided with a first rack; a first slide assembly, the first slide assembly comprises a frame plate, wherein the frame plate is provided with a plurality of meshes with the first rack, and is provided for the first a sliding member that slides the first sliding rail; a second sliding assembly, the second sliding assembly includes a frame plate, and the frame plate is provided with a second rack and a sliding mesh with the gears a sliding member disposed on the second sliding rail, wherein when the second sliding assembly is pulled, the second rack drives the gears, and each of the gears moves the first rack, so that the first A sliding assembly and the second sliding assembly are interlocked with each other.
In accordance with an embodiment of the present invention, the upper frame strip extends a first extension, a second extension, and a third extension in the same direction, wherein the fixed channel is defined by the first extension and the first The plate is fixed between the two extensions, the first rail is defined at the end of the second extension and the second rail is defined at the end of the third extension.
According to an embodiment of the present invention, the frame plate of the first sliding component defines a mounting portion for fixing a plate body, and an abutting portion and a corresponding portion are extended in a vertical direction at one end of the mounting portion. Extending in a mutually perpendicular direction, and for fixing the fixing portions of the gears, each of the gears and the abutting portion defines a sliding space for the first sliding rail to be installed and laterally movable.
According to an embodiment of the present invention, wherein the frame assembly of the second sliding component is A mounting portion for fixing a plate body and the sliding members is defined, and a fixing portion for mounting the second rack is extended in a vertical direction at one end of the mounting portion.
According to an embodiment of the present invention, the plate system is a glass or a light transmissive plate.
Another purpose of this creation is to allow the user to pull the door more easily through the matching of the gear and the rack when pulling the door, without worrying about whether the glass on the sliding door is damaged due to excessive force.
<p>1Frame</p><p>10Top frame</p><p>100First extension</p><p>101Second extension</p><p>102 third extension</p><p>103Fixed channel</p><p>104First slide rail</p><p>105Second rail</p><p>12 Lower frame</p><p>14 side frame</p><p>16 board</p><p>18 first rack</p><p>2First sliding assembly</p><p>20Box board</p><p>200Installation Department</p><p>202Resistance</p><p>204Fixed Department</p><p>206Sliding space</p><p>22 Gears</p><p>24 board</p><p>3Second sliding assembly</p><p>30Box board</p><p>31 board</p><p>32Installation Department</p><p>33second rack</p><p>34Fixed Department</p><p>35Sliding parts</p>
Figure 1 is a schematic diagram of the overall sliding door structure of the present creation.
Figure 2 is a perspective view of the created slide rail structure.
Figure 3 is an exploded view of the structure of the created slide rail.
Figure 4 is a schematic plan view of the slide rail structure of the creation frame.
Figure 5 is a schematic view showing the state of use of the first sliding component by the present creation.
FIG. 6 is a schematic view showing the state of use of the second sliding component by pulling the first sliding component and driving the second sliding component.
FIG. 7 is a schematic diagram showing the state of use of the second sliding component by pulling the first sliding component and driving the second sliding component.
The embodiments of the present invention are described below by way of specific embodiments, and those skilled in the art can readily appreciate other advantages and functions of the present invention from the disclosure of the present disclosure.
Please refer to Figure 1, Figure 2, Figure 3 and Figure 4 for the overall sliding door structure of the creation. A schematic view of the intention, the slide rail structure, an exploded view of the slide rail structure, and a plan view of the slide rail structure of the frame. This creation is a framework for the improvement of the rail structure. Referring to FIG. 5, FIG. 6 and FIG. 7 respectively, the present invention is used to pull a schematic diagram of the use state of the first sliding component, pull the first sliding component and drive the use state of the second sliding component, and complete pulling and driving the first sliding component. A schematic diagram of the state of use of the second sliding component.
The frame 1 described in FIG. 1 and FIG. 4 is composed of an upper frame strip 10, a lower frame strip 12 and two side frame strips 14 which are connected to both ends of the upper frame strip 10 and the lower frame strip 12 and are vertically defined. The upper frame 10 is extended in the same direction by a first extension 100, a second extension 101, and a third extension 102, wherein a fixed portion is defined between the first extension 100 and the second extension 101. The channel 103 is used to fix the plate body 16 (which may be a glass or a light-transmitting plate), and the first sliding rail 104 is defined at the end of the second extension 101 and the second sliding rail 105 is defined at the end of the third extension 102. The first slide rail 104 is provided with a first rack 18 .
The first sliding assembly 2 includes a frame plate 20 defining a mounting portion 200 for fixing a plate body 24, and an abutting portion 202 and a corresponding portion 202 are extended in a vertical direction at one end of the mounting portion 200. The fixing portion 204 extends in the mutually perpendicular direction, and a plurality of gears 22 are pivotally disposed on the fixing portion 204, and a sliding space 206 is defined between the gears and the abutting portion, so when assembled, the sliding space 206 is assembled. The first slide assembly 2 can be mounted to the first slide rail 104, and each gear 22 is engaged with the first rack 18, and the abutment portion 202 abuts against the outer surface of the first slide rail 104, thereby Each gear 22 meshes with the first rack 18 to achieve lateral movement.
The second sliding assembly 3 includes a frame plate 30 defining a mounting portion 32 for fixing a plate body 31, and a fixing portion 34 for mounting the second rack 33 in a vertical direction at one end of the mounting portion 32. The mounting portion 32 is further provided with a plurality of sliding members 35, and the sliding member 35 is slidably disposed on The second slide rail 105. The second rack 33 is mainly engaged above the gear 22, so that when the second sliding assembly 3 is pulled, the gears 22 can be driven through the second rack 33, since the gears 22 are disposed on the first sliding The assembly 2 thus causes the first slide assembly 2 to move and move synchronously, while the gear 22 is moved by the first rack 18 in the pulled direction. In addition, the second sliding assembly 3 is moved in the second sliding rail 105 by the second sliding assembly 3.
Therefore, the sliding door of the present invention is exemplified by a three-piece type, and can be matched with reference to FIG. 3 and FIG. 4, and the fixed channel 103, the first sliding component 2 and the second sliding component 3 are respectively fixed to the fixed plate bodies 16, 24 31 is mainly made of glass. The plate body 16 installed in the fixing channel 103 of the upper frame strip 10 is fixed and fixed, and only the first sliding component 2 and the second sliding component 3 are movable, so that the structure can be seen more clearly. 5, FIG. 6 and FIG. 7 omitting the upper frame strip 10 and the first rack 18, and referring to FIG. 1 to FIG. 3 simultaneously, the first sliding assembly 2 is regarded as a passive sliding door, and the second sliding assembly 3 is regarded as Active sliding door. Therefore, when the second sliding assembly 3 (active sliding door) is pulled, the second rack 33 drives the gears 22, and each of the gears 22 moves the first rack 18, so that the first The sliding assembly 2 and the second sliding assembly 3 are interlocked with each other.
In other words, the upper and lower portions of each of the gears 22 are engaged by the first rack 18 and the second rack 33, so that as long as one of the racks is driven, the first slide assembly 2 is moved through the gear 22, when When the second sliding assembly 3 (active sliding door) completes the sliding operation, that is, when the side frame bar 14 is abutted, the first sliding assembly 2 (passive sliding door) is stopped by the gear and the rack, and stops immediately. Through the foregoing structure, each door of the sliding door can be prevented from directly colliding when pulled.
This creation does bring about a rail structure improvement that is different from the previous framework. It is only a preferred embodiment of the present invention, and the scope of the present implementation cannot be limited thereby; Any simple equivalent changes and modifications made in accordance with the scope of this patent application and the content of the creation instructions shall remain within the scope of this new patent.
Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| US9523461B2 | Cited by | United States of America | Applicant |
2 priority claims, no other members on record
Priority claims2
| Document | Office | Kind | Date |
|---|---|---|---|
| 102218053 | Taiwan Province of China | U | |
| TW20130218053U | – | – | – |
1 legal event, as the office reported them to INPADOC
Events
| Event | Code | |
|---|---|---|
| Annulment or lapse of a utility model due to non-payment of feesLapsedMM4K | MM4K |
Numbers
- Publication
- M470150
- Publication, DOCDB
- M470150
- Publication, EPODOC
- TWM470150U
- Application
- 102218053
- Application, DOCDB
- 102218053
- Application, EPODOC
- TW20130218053U
Titles2
- English
- Structure improvement of frame sliding rail
- Chinese
- ?????????
Classification
- IPC, 1
- E06B3 42