CN210095017U - Sliding seat and sliding fit mechanism - Google Patents
Sliding seat and sliding fit mechanism Download PDFInfo
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- CN210095017U CN210095017U CN201920544590.2U CN201920544590U CN210095017U CN 210095017 U CN210095017 U CN 210095017U CN 201920544590 U CN201920544590 U CN 201920544590U CN 210095017 U CN210095017 U CN 210095017U
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- sliding
- transverse
- sliding groove
- sliding seat
- longitudinal
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Abstract
The utility model relates to a sliding seat and a sliding fit mechanism, wherein the sliding seat comprises two parallel transverse sliding groove bodies with built-in transverse sliding grooves and two parallel longitudinal sliding groove bodies with built-in longitudinal sliding grooves, the two transverse sliding groove bodies and the two longitudinal sliding groove bodies are connected end to end through connecting pieces, the transverse sliding groove bodies are positioned above the longitudinal sliding groove bodies, and avoidance grooves are formed between the transverse sliding groove bodies and the longitudinal sliding groove bodies; the sliding fit mechanism comprises a laminate and a sliding seat, wherein folded plates bent towards the interior of the laminate are arranged on the front side and the rear side of the lower bottom surface of the laminate, and the folded plates are clamped into the transverse sliding grooves. Compared with the prior art, the utility model discloses a sliding seat and desk enable the reading frame to have stable storage space, and occupation space is little, easily seeks to the user can prevent the space interference between article according to the position of actual operation sight random adjustment reading frame, is provided with simultaneously and dodges the space for bellied mechanisms such as book end, supporting legs on the reading frame, and the range of application is wider.
Description
Technical Field
The utility model belongs to the technical field of stationery office supplies, especially, relate to a sliding seat and sliding fit mechanism.
Background
Because the reading frame can alleviate the tired sense of user when reading, is liked by vast consumer deeply, and the reading frame on the existing market can not cooperate with furniture (such as study table, desk etc.) and be connected, consequently, can put by hand when the user need not use the reading frame, when treating need reuse, will waste more time and energy and look for again to idle reading frame also takes up and has wasted the space.
The reading frame is connected with furniture (such as a learning table, an office table and the like) in a matching mode, and particularly, as the upper space below a furniture layer plate is usually idle and wasted, the reading frame is placed on the lower bottom surface of the layer plate in a suspension mode through a connecting part and is located in the idle space, so that the reading frame has a stable storage space and does not occupy extra space; it is also contemplated that the connecting member may be configured to slide so that the user may randomly adjust the position of the reading stand according to actual operating conditions.
In order to overcome exist not enough among the above-mentioned prior art, the utility model provides a enable slide holder and sliding fit mechanism that reading frame suspended type ground placed in above-mentioned idle space for the reading frame possesses stable storage space, occupation space is little, easily look for, kill two birds with one stone, and the slide holder can the lateral sliding adjustment, the reading frame can the longitudinal sliding adjustment, the user can be according to the position of actual operation sight random adjustment reading frame, prevent the space interference between article, be provided with simultaneously for the book end on the reading frame, bellied mechanisms such as supporting legs provide dodges the space, the range of application is wider.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model aims at providing a enable slide bracket and sliding fit mechanism of placing in above-mentioned idle space with the reading frame suspension type for the reading frame has stable storage space, occupation space is little, easily look for, kill two birds with one stone, and the slide bracket can the lateral sliding adjustment, the reading frame can the longitudinal sliding adjustment, the user can be according to the position of actual operation sight random adjustment reading frame, prevent the space interference between article, be provided with simultaneously for the book end on the reading frame, bellied mechanisms such as supporting legs provide and dodge the space, the range of application is wider.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the sliding seat comprises two transverse sliding groove bodies arranged in parallel and two longitudinal sliding groove bodies arranged in parallel, wherein the two transverse sliding groove bodies and the two longitudinal sliding groove bodies are connected end to end through connecting pieces, the transverse sliding groove body is positioned above the longitudinal sliding groove bodies, transverse sliding grooves are formed in the transverse sliding groove bodies, longitudinal sliding grooves are formed in the longitudinal sliding groove bodies, and avoidance grooves are formed between the transverse sliding groove bodies and the longitudinal sliding groove bodies.
The utility model discloses well horizontal spout body and vertical chute body end to end connection, wherein horizontal spout body passes through horizontal spout sliding connection at the bottom surface under the plywood of furniture (such as study table, desk, etc.), horizontal spout body can be along the plywood left and right sides slip in the horizontal direction, vertical spout interpolation of vertical spout body connects the reading frame, the reading frame can slide around in the vertical direction along vertical spout, thereby realized that the reading frame hangs in the idle space of bottom surface under the plywood, make the reading frame possess stable storage space and do not occupy extra space simultaneously, let the user develop good storage habit, easily look for, make full use of idle space, kill two birds with one stone; meanwhile, the reading frame can slide along the transverse sliding groove body in the left and right directions to further adjust the position of the reading frame in the left and right directions, and the reading frame can slide forwards along the longitudinal sliding groove when in use and slide into an idle space when not in use, so that a user can randomly adjust the position of the reading frame according to actual operation scenes, the habit of the user is followed, space interference and collision among articles are prevented, and the design of matching with furniture is realized, and the attractiveness of the whole home is improved; in addition, because most reading frames openly all are equipped with bellied structures such as book end or the convex supporting legs isotructure at the reading frame back, the setting of dodging the groove can be when the reading frame is internal no matter openly up or back state gliding longitudinal sliding groove up, for the bellied mechanisms such as book end, supporting legs provide dodge the space, accomodate more convenient fast, the range of application is wider.
Preferably, the transverse sliding chute body comprises a first abutting surface A positioned above, a second abutting surface A positioned below and a transverse sliding chute positioned between the first abutting surface A and the second abutting surface A; the vertical sliding groove body comprises a first resisting surface B located above, a second resisting surface B located below and a vertical sliding groove located between the first resisting surface B and the second resisting surface B, and the avoiding groove is formed between the second resisting surface A and the first resisting surface B.
The first blocking surface A and the second blocking surface A form a transverse sliding groove, the first blocking surface B and the second blocking surface B form a longitudinal sliding groove, the second blocking surface A and the first blocking surface B form an avoiding groove, the transverse sliding groove, the avoiding groove and the longitudinal sliding groove are sequentially arranged from top to bottom, the transverse sliding groove is used for connecting the laminated plate, the avoiding groove is used for avoiding a protruding structure on the reading frame, and the longitudinal sliding groove is used for sliding into the reading frame.
Preferably, the second abutting surface a includes a middle abutting surface located at a middle portion of the lateral sliding chute body and end abutting surfaces located at both end portions, and the first abutting surface a includes a side abutting surface located between the middle abutting surface and the end abutting surfaces, as viewed in a vertical direction.
Therefore, the arrangement of the transverse sliding grooves and the strength of sliding connection can be guaranteed, materials can be saved, the overall weight of the sliding seat is reduced, and the tensile force of the sliding seat to the floor is reduced.
Preferably, the front side edge of the middle part resisting surface is bent downwards to form a folding lug with the height at most consistent with that of the avoiding groove.
Because the reading frame slides into the longitudinal sliding groove, the avoiding groove avoids protruding structures such as book clamps and the like, in order to prevent misoperation of sliding the reading frame into the avoiding groove, the front side of the avoiding groove forms a folding ear to play a role in blocking the reading frame from sliding into the avoiding groove, and the reading frame is ensured to accurately slide into the longitudinal sliding groove.
Preferably, the transverse sliding chute body comprises a transverse sliding chute body and connecting pieces located at two ends of the transverse sliding chute body, the upper portion of each connecting piece is fixedly connected with the end portion of the transverse sliding chute body, and the lower portion of each connecting piece is fixedly connected with the end portion of the longitudinal sliding chute body.
Wherein the upper portion and the lower part of connecting piece respectively with the tip of horizontal spout body and the tip fixed connection of vertical spout body, set up like this and provide the space in order to form the groove of dodging between horizontal spout body and vertical spout body.
Preferably, the outer side of the longitudinal sliding groove body is provided with a connecting column, the connecting column at least comprises two connecting column units which are arranged at intervals, and each connecting column unit comprises a thin cylinder body connected with the outer side of the longitudinal sliding groove body and a thick cap body far away from the outer side of the longitudinal sliding groove body; the connecting piece is provided with a connecting hole, and the column body is clamped in the connecting hole.
Because the spliced pole includes the spliced pole unit that two at least intervals set up, can take place to gather together through the extrusion of connecting hole between the cap body of spliced pole unit, make thicker cap body can block into in the connecting hole, and then make thinner cylinder block go into in the connecting hole, and simultaneously, when treating in thinner cylinder block goes into the connecting hole, the bullet that resets again is opened between the thicker cap body, guarantee the cylinder not from the downthehole roll-off of connecting, realize the connection between horizontal spout body and the vertical spout body, the connected mode is simple convenient, and the installation of being convenient for.
Preferably, the two transverse sliding groove openings are arranged oppositely, and the two longitudinal sliding groove openings are arranged oppositely.
The openings of the front transverse sliding chute and the rear transverse sliding chute face to the outside, so that the openings are conveniently connected with the lower bottom surface of the laminate in a sliding manner; the opening opposite arrangement of the longitudinal sliding grooves can be known, and the leaning openings of the left longitudinal sliding groove and the right longitudinal sliding groove face towards the inside. The reading rack can be conveniently slid in.
Preferably, the rear end of the longitudinal sliding chute body is provided with a stop surface.
The rear end of the reading frame can be prevented from sliding out of the longitudinal sliding groove body when sliding into the longitudinal sliding groove body, the wall and the desk side plate are touched, the stroke of the reading frame in the longitudinal sliding groove body can be limited, and the sliding out is avoided.
Preferably, the connecting piece is formed by bending the end part of the transverse chute body downwards.
The connecting piece and the transverse sliding groove body are integrally formed, so that the connecting strength is high, and the service life is prolonged.
The utility model provides a sliding fit mechanism, includes the plywood, includes as above a sliding seat, both sides all are equipped with the folded plate of buckling to the plywood inside around the bottom surface under the plywood, and the horizontal gliding motion of the relative plywood of horizontal spout body is realized to the inside card of even horizontal spout respectively to both sides folded plate around.
Through bottom surface setting folded plate under the plywood, just can be so that horizontal slide block body sliding connection in the idle space of plywood below (realize slide block sliding connection promptly in the idle space of plywood below), simple structure, application scope is wide, and the user can adjust the locating place of slide block, reading rack as required at random, and is very convenient.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model provides a sliding seat and sliding fit mechanism which can place a reading stand in the idle space in a suspension manner. The utility model discloses in horizontal spout body through horizontal spout sliding connection in furniture (such as study table, desk etc.) bottom surface under the plywood, horizontal spout body can be along the plywood left and right sides slip in the horizontal direction, the vertical spout interpolation of vertical spout body connects the reading frame, the reading frame can slide around in the vertical direction along vertical spout, thereby realized that the reading frame hangs in the idle space of bottom surface under the plywood, make the reading frame possess stable storage space and do not occupy extra space simultaneously, let the user develop good storage habit, easily look for, make full use of idle space, kill two birds with one stone; meanwhile, the reading frame can slide along the transverse sliding groove body in the left and right directions to further adjust the position of the reading frame in the left and right directions, and the reading frame can slide forwards along the longitudinal sliding groove when in use and slide into an idle space when not in use, so that a user can randomly adjust the position of the reading frame according to actual operation scenes, the habit of the user is followed, space interference and collision among articles are prevented, and the design of matching with furniture is realized, and the attractiveness of the whole home is improved; in addition, because most reading frames openly all are equipped with bellied structures such as book end or the convex supporting legs isotructure at the reading frame back, the setting of dodging the groove can be when the reading frame is internal no matter openly up or back state gliding longitudinal sliding groove up, for the bellied mechanisms such as book end, supporting legs provide dodge the space, accomodate more convenient fast, the range of application is wider.
Drawings
FIG. 1 is a schematic view of the overall structure of the sliding seat in the present embodiment;
FIG. 2 is another schematic overall structure diagram of the sliding seat of the present embodiment;
FIG. 3 is a schematic front view of the sliding seat of the present embodiment;
FIG. 4 is an enlarged view of portion A of FIG. 3;
FIG. 5 is a schematic top view of the sliding seat of the present embodiment;
FIG. 6 is a schematic side view of the sliding seat of the present embodiment;
FIG. 7 is an enlarged view of the portion B of FIG. 6;
fig. 8 is an exploded view of the sliding seat in this embodiment;
FIG. 9 is an enlarged view of the portion C of FIG. 8;
FIG. 10 is a schematic view of the sliding seat and reading stand of the present embodiment;
FIG. 11 is a schematic top view of the structure of FIG. 10;
FIG. 12 is a schematic front view of the structure of FIG. 11;
fig. 13 is a schematic structural view illustrating the connection and matching of two longitudinal chute bodies and one transverse chute body in step 1 in this embodiment;
FIG. 14 is a schematic structural view illustrating the connection between the transverse sliding slot of the transverse sliding slot body and the folded plate at the rear side of the desk layer plate in step 2 of the present embodiment;
FIG. 15 is an enlarged view of the portion D of FIG. 14;
FIG. 16 is another schematic structural view illustrating the engagement between the transverse sliding slot of the transverse sliding slot body and the flap at the rear side of the desk layer board in step 2 of this embodiment;
FIG. 17 is an enlarged view of section E of FIG. 16;
FIG. 18 is a schematic side view illustrating the connection between the transverse sliding slot of the transverse sliding slot body and the folded plate at the rear side of the desk layer plate in step 2;
FIG. 19 is another schematic view of the slide holder assembly engaged with the table in step 3;
FIG. 20 is an enlarged view of portion F of FIG. 19;
FIG. 21 is a side view of the sliding seat in step 3;
FIG. 22 is a schematic view showing another configuration of the sliding seat integrally engaged with the table in step 3;
FIG. 23 is an enlarged view of the portion G of FIG. 22;
FIG. 24 is a schematic view of the reading stand, the sliding seat, and the desk of this embodiment;
FIG. 25 is an enlarged schematic view of the portion H in FIG. 24;
FIG. 26 is a side view of the reading stand, the sliding seat and the desk of this embodiment;
FIG. 27 is a schematic view of another embodiment of the reading stand, the sliding seat, and the desk;
FIG. 28 is an enlarged view of section I of FIG. 27;
FIG. 29 is a schematic view of the sliding seat suspended from the side of the lower bottom surface of the layer plate in the present embodiment;
FIG. 30 is a schematic view of the sliding seat suspended from the left end of the bottom surface of the layer plate in the present embodiment;
FIG. 31 is a schematic view of the sliding seat suspended from the right end of the bottom surface of the laminate in the present embodiment;
FIG. 32 is a schematic view of the reading stand of this embodiment shown removed from the slide mount on the table;
fig. 33 is another view of the reading stand of the present embodiment taken out of the sliding seat of the desk.
Detailed Description
The following describes in detail an embodiment of the present invention with reference to the drawings.
The present embodiment relates to reference orientations of components such as up, down, left, right, front, rear, etc., which are described with respect to the angle at which the reading stand is horizontally disposed in the slide base.
Example (b):
a sliding seat is shown in figures 1-33 and comprises two transverse sliding groove bodies 100 and two longitudinal sliding groove bodies 200 which are arranged in parallel, wherein the two transverse sliding groove bodies 100 and the two longitudinal sliding groove bodies 200 are connected end to end through connecting pieces 300, the transverse sliding groove bodies 100 are located above the longitudinal sliding groove bodies 200, transverse sliding grooves 110 are arranged in the transverse sliding groove bodies 100, longitudinal sliding grooves 210 are arranged in the longitudinal sliding groove bodies 200, and avoidance grooves 400 are formed between the transverse sliding groove bodies 100 and the longitudinal sliding groove bodies 200.
Specifically, the transverse chute body 100 includes a first abutting surface a130 located at the upper side, a second abutting surface a140 located at the lower side, and a transverse chute 110 located therebetween; the longitudinal chute body 200 includes a first abutting surface B220 located at the upper side, a second abutting surface B230 located at the lower side, and a longitudinal chute 210 located therebetween, and the avoiding groove 400 is formed between the second abutting surface a140 and the first abutting surface B220.
More specifically, the second abutting surface a140 includes a middle abutting surface 142 located in the middle of the transverse chute body 100 and end abutting surfaces 143 located at both ends, the end abutting surfaces 143 include a left end abutting surface 1431 and a right end abutting surface 1432, the first abutting surface a130 includes a side abutting surface 131 located between the middle abutting surface 142 and the end abutting surface 143, the side abutting surface 131 includes a left side abutting surface 1311 and a right side abutting surface 1312, and the left end abutting surface 1431, the left side abutting surface 1311, the middle abutting surface 142, the right side abutting surface 1312 and the right end abutting surface 1432 are arranged in sequence from left to right as viewed in the vertical direction; in order to prevent the misoperation, the front side edge of the middle abutting surface 142 is bent downwards to form a folding lug 141 with the height consistent with that of the avoiding groove 400.
Further, the transverse chute body 100 comprises a transverse chute body 120 and connecting pieces 300 located at two ends of the transverse chute body 120, the connecting pieces 300 are formed by bending the end portions of the transverse chute body 100 downwards, the upper portion of the connecting pieces 300 is fixedly connected with the end portions of the transverse chute body 120, and the lower portion of the connecting pieces 300 is fixedly connected with the end portions of the longitudinal chute body 200.
A connecting column 240 is integrally formed on the outer side of the longitudinal chute body 200, the connecting column 240 at least comprises two connecting column units 241 arranged at intervals, and each connecting column unit 241 comprises a thin column 2411 connected with the outer side of the longitudinal chute body 200 and a thicker cap body 2412 far away from the outer side of the longitudinal chute body 200; the connecting piece 300 is provided with a connecting hole 310, the column body 2411 is clamped in the connecting hole 310, specifically, the cap bodies 2412 of the connecting column unit 241 are squeezed by the connecting hole 310 to be gathered, so that the thicker cap body 2412 is clamped in the connecting hole 310, the thinner column body 2411 is clamped in the connecting hole 310, and meanwhile, when the thinner column body 2411 is clamped in the connecting hole 310, the thicker cap body 2412 is reset to be flicked, and the column body 2411 is ensured not to slide out of the connecting hole 310.
In addition, in order to limit the stroke, the rear end of the longitudinal chute body 200 is provided with a stop surface 250.
The sliding fit mechanism 500 is characterized in that the sliding fit mechanism 500 is a table, and comprises a layer plate 510 and a sliding seat as described above, wherein the front side and the rear side of the lower bottom surface of the layer plate 510 are respectively provided with a folding plate 511 bending towards the inside of the layer plate 510, and the front side and the rear side folding plates 511 are respectively clamped into the two transverse sliding grooves 110 to realize transverse sliding movement of the transverse sliding groove body 100 relative to the layer plate 510.
The assembly mode of the sliding seat and the sliding fit mechanism is as follows:
step 1: as shown in fig. 13, the connection posts 2411 at the rear ends (ends provided with the stop surfaces) of the two longitudinal chute bodies 200 are respectively clamped into the connection holes 310 at the two ends of one of the transverse chute bodies 100;
step 2: as shown in fig. 14-18, the transverse sliding slot 110 in the transverse sliding slot 100 in step 1 is connected with the flap 511 at the rear side of the layer plate 510 in a clamping manner;
and step 3: as shown in fig. 19 to 23, the transverse chute 110 of the other transverse chute body 100 is connected with the folded plate 511 at the front side of the layer plate 510 in a clamping manner, and the connecting posts 2144 at the front ends of the two longitudinal chute bodies 200 are respectively clamped into the connecting holes 310 at the two ends of the transverse chute body 100 in step 2; the assembly is thus complete.
As shown in fig. 10-12, the reading stand 600 is received in the slide seat longitudinal slide slot 210 and the book holder 610 is received in the escape slot 400.
As shown in fig. 24-31, the sliding seat is integrally connected to a folding plate 511 on the lower bottom surface of the layer plate 510 of the sliding fit mechanism 500 in a sliding manner, the reading rack 600 is accommodated in the longitudinal sliding groove 210 of the sliding seat, and the book holder 610 is accommodated in the avoiding groove 400, specifically, as shown in fig. 29-31, the sliding seat drives the reading rack 600 to slide back and forth on the folding plate 511 to realize random adjustment of the placement position; as shown in fig. 32-33, the reading stand 600 can be conveniently taken out of the sliding seat for use.
The above description in this specification is merely illustrative of the present invention. Various modifications, additions and substitutions may be made by those skilled in the art without departing from the scope of the invention as defined in the accompanying claims.
Claims (10)
1. A sliding seat is characterized in that: including two parallel arrangement's horizontal spout body (100) and two parallel arrangement's vertical spout body (200), pass through connecting piece (300) end to end between two horizontal spout bodies (100) and two vertical spout bodies (200), and horizontal spout body (100) are located the top of vertical spout body (200), horizontal spout body (100) embeds horizontal spout (110), and vertical spout body (200) embeds vertical spout (210), is formed with between horizontal spout body (100) and vertical spout body (200) and dodges groove (400).
2. A sliding seat according to claim 1, wherein: the transverse chute body (100) comprises a first resisting surface A (130) positioned at the upper part, a second resisting surface A (140) positioned at the lower part and a transverse chute (110) positioned between the first resisting surface A and the second resisting surface A; the longitudinal sliding groove body (200) comprises a first resisting surface B (220) located above, a second resisting surface B (230) located below and a longitudinal sliding groove (210) located between the first resisting surface B and the second resisting surface B, and the avoiding groove (400) is formed between the second resisting surface A (140) and the first resisting surface B (220).
3. A sliding seat according to claim 2, wherein: the second abutment surface a (140) includes a middle abutment surface (142) located at the middle of the lateral chute body (100) and end abutment surfaces (143) located at both ends, and the first abutment surface a (130) includes side abutment surfaces (131) located between the middle abutment surface (142) and the end abutment surfaces (143), as viewed in the vertical direction.
4. A sliding seat according to claim 3, wherein: the front side edge of the middle part resisting surface (142) is bent downwards and extends to form a folding ear (141) which is at most consistent with the height of the avoiding groove (400).
5. A sliding seat according to claim 1, wherein: the transverse chute body (100) comprises a transverse chute body (120) and connecting pieces (300) positioned at two ends of the transverse chute body (120), the upper portion of each connecting piece (300) is fixedly connected with the end portion of the transverse chute body (120), and the lower portion of each connecting piece (300) is fixedly connected with the end portion of the longitudinal chute body (200).
6. A sliding seat according to claim 1 or 5, wherein: a connecting column (240) is arranged on the outer side of the longitudinal sliding chute body (200), the connecting column (240) at least comprises two connecting column units (241) which are arranged at intervals, and each connecting column unit (241) comprises a thin column body (2411) connected with the outer side of the longitudinal sliding chute body (200) and a thick cap body (2412) far away from the outer side of the longitudinal sliding chute body (200); the connecting piece (300) is provided with a connecting hole (310), and the column body (2411) is clamped in the connecting hole (310).
7. A sliding seat according to claim 1, wherein: the openings of the two transverse sliding grooves (110) are arranged back to back, and the openings of the two longitudinal sliding grooves (210) are arranged oppositely.
8. A sliding seat according to claim 1, wherein: the rear end of the longitudinal sliding chute body (200) is provided with a stop surface (250).
9. A sliding seat according to claim 1, wherein: the connecting piece (300) is formed by bending the end part of the transverse chute body (100) downwards.
10. A slip fit mechanism comprising a laminate (510) comprising a slip seat according to any one of claims 1 to 9, wherein: the front side and the rear side of the lower bottom surface of the laminated plate (510) are respectively provided with a folded plate (511) bent towards the interior of the laminated plate (510), and the folded plates (511) at the front side and the rear side are respectively clamped into the transverse sliding grooves (110) to realize transverse sliding motion of the transverse sliding groove body (100) relative to the laminated plate (510).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920544590.2U CN210095017U (en) | 2019-04-20 | 2019-04-20 | Sliding seat and sliding fit mechanism |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920544590.2U CN210095017U (en) | 2019-04-20 | 2019-04-20 | Sliding seat and sliding fit mechanism |
Publications (1)
Publication Number | Publication Date |
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CN210095017U true CN210095017U (en) | 2020-02-21 |
Family
ID=69537682
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920544590.2U Expired - Fee Related CN210095017U (en) | 2019-04-20 | 2019-04-20 | Sliding seat and sliding fit mechanism |
Country Status (1)
Country | Link |
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CN (1) | CN210095017U (en) |
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2019
- 2019-04-20 CN CN201920544590.2U patent/CN210095017U/en not_active Expired - Fee Related
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200221 Termination date: 20210420 |
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