Diagonal draw bar assembly

By setting a locking mechanism on the side connection of the window frame connector of the tie rod assembly, and using the locking block to abut against the inner wall of the mounting groove on the side of the window frame to achieve bidirectional compression locking, the problem of window frame connector sagging and swinging is solved, ensuring that the window sash closes normally and improving the stability of the tie rod assembly.

CN223562672UActive Publication Date: 2025-11-18WENZHOU AOTA HARDWARE CO LTD
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Patent Information

Application Number
CN202423104883.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-18
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

After prolonged use, the existing tie rod assembly will sag and swing at the connection between the window frame connector and the side of the window frame, causing the window sash to fail to close properly.

Method used

A diagonal tie rod assembly was designed. A locking mechanism, including a locking block and an eccentric rotating rod, was set on the side connection of the window frame connector. The locking block abuts against the inner wall of the mounting groove on the side of the window frame to achieve bidirectional compression locking, preventing falling and swinging.

Benefits of technology

It effectively prevents window frame connectors from sagging and swaying, ensures window sashes close properly, and improves the stability and service life of the tie rod assembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a diagonal draw bar assembly which comprises a window frame connecting piece fixedly connected with a window frame and a window sash connecting piece connected with a window sash, and the window frame connecting piece and the window sash connecting piece are connected through a connecting rod assembly. The window frame connecting piece comprises an upper connecting part connected with a mounting groove in the upper portion of the window frame and a side face connecting part connected with a mounting groove in the side face of the window frame, and the upper connecting part is perpendicular to the side face connecting part. The window is characterized in that the side face connecting part is provided with a locking mechanism which can move to the outer side of the side face connecting part and abut against the inner wall of the window frame side face installing groove, and when the locking mechanism abuts against one side of the window frame side face installing groove, the side, opposite to the locking mechanism, of the side face connecting part abuts against the inner wall of the other side of the window frame side face installing groove. One end, connected with the side surface of the window frame, of the window frame connector is prevented from falling and swinging.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of door and window hardware, and particularly relates to a cable-stayed rod assembly. BACKGROUND

[0002] The existing cable-stayed rod assembly usually comprises a window frame connecting piece fixedly connected with a window frame, a sash connecting piece connected with a sash, and a connecting rod assembly connecting the window frame connecting piece and the sash connecting piece. SUMMARY

[0003] The utility model wants to solve the technical problem in view of the above prior art's insufficient,

[0004] The utility model provides a cable-stayed rod assembly, prevents the window frame connecting piece with the window frame side surface connection one end to descend and swing.

[0005] To achieve the above object, the utility model provides the following technical scheme: a cable-stayed rod assembly, comprising a window frame connecting piece fixedly connected with a window frame, a sash connecting piece connected with a sash, and a connecting rod assembly connecting the window frame connecting piece and the sash connecting piece.

[0006] The utility model has the characteristics that: the locking mechanism is rotated to be partially placed outside the side surface connecting part and abuts against the inner wall of one side of the window frame side surface installation groove, and the side surface connecting part abuts against the inner wall of the other side of the window frame side surface installation groove relative to one side of the locking mechanism.

[0007] The utility model further provides that: the locking mechanism comprises a locking block, the locking block is eccentrically provided with an eccentric rotating rod, the eccentric rotating rod is rotationally connected with the side surface connecting part, and the locking block can be rotated to be completely placed above the side surface connecting part or partially placed outside the side surface connecting part along with the eccentric rotating rod.

[0008] The utility model discloses the following features: the rotation of locking block makes it part to be placed on the outside of side connecting portion, and then abuts against the window frame side installation groove, further rotates to make the side connecting portion opposite locking block one side abut against the other side inner wall of window frame side installation groove, realizes two -way pressing locking.

[0009] The utility model further provides that: the locking block upper end is provided with the operating hole that can drive its rotation for the tool insertion.

[0010] The utility model discloses the following features: the operating hole is convenient for operating personnel to use the tool insertion drive locking block rotation.

[0011] The utility model further provides that: the side connecting portion is fixed with the limit block on locking block one side, when locking block rotates to the maximum area exposed on the outside of side connecting portion, locking block abuts against the limit block, and locking block cannot continue to rotate.

[0012] The utility model discloses the following features: the limit block limits the rotation angle of locking block, prevents locking block excessive rotation.

[0013] The utility model further provides that: the cross section of locking block is circular, and the limit block is provided with the arc-shaped groove of adaptation on locking block one side, when locking block rotates to the maximum area exposed on the outside of side connecting portion, locking block side abuts against one end of arc-shaped groove.

[0014] The utility model discloses the following features: the arc-shaped groove avoids the interference of limit block when locking block rotates to the maximum area exposed on the outside of side connecting portion, and the cross section of locking block is circular, which facilitates the continued rotation of locking block and the inner wall of window frame side installation groove.

[0015] The utility model further provides that: locking block is provided with the positioning line, when locking block rotates to the maximum area exposed on the outside of side connecting portion, the positioning line is perpendicular to side connecting portion.

[0016] The utility model discloses the following features: when locking block rotates to the maximum area exposed on the outside of side connecting portion, that is, the highest locking strength, setting the positioning line facilitates the user to determine the rotation state of locking block, and ensures that it can rotate to the maximum locking strength.

[0017] The utility model has the beneficial effects that: setting the locking mechanism realizes the locking of side connecting portion in the window frame side installation groove, avoids its falling, and simultaneously avoids the swing of side connecting portion in the window frame side installation groove.

[0018] The utility model will be further explained in detail in connection with the drawings and embodiments. DRAWINGS

[0019] Figure 1A three-dimensional schematic view of the embodiment of the utility model Figure 1 .

[0020] Figure 2 A three-dimensional schematic view of the embodiment of the utility model Figure 2 .

[0021] Figure 3 A three-dimensional schematic view of the locking block of the embodiment of the utility model.

[0022] Figure 4 A partial three-dimensional schematic view of the embodiment of the utility model when installed on the window frame. CONCRETE IMPLEMENTATION

[0023] As shown in Figure 1 —— Figure 3 A diagonal pull rod assembly, comprising a window frame connecting piece 1 fixedly connected with a window frame, a window sash connecting piece 2 connected with a window sash, the window frame connecting piece 1 and the window sash connecting piece 2 being connected through a connecting rod assembly 3, the window frame connecting piece 1 comprising an upper connecting part 101 connected with an upper installation groove of the window frame and a side connecting part 102 connected with a side installation groove 10 of the window frame, the upper connecting part 101 and the side connecting part 102 being perpendicular to each other, the side connecting part 102 being provided with a locking mechanism capable of moving to the outside of the side connecting part 102 and abutting against the inner wall of the side installation groove 10 of the window frame, when the locking mechanism abuts against one side of the side installation groove 10 of the window frame, the side connecting part 102 abuts against the inner wall of the other side of the side installation groove 10 of the window frame, the locking mechanism comprising a locking block 4, the locking block 4 being circular in cross section, the locking block 4 being eccentrically provided with an eccentric rotating rod 5, the eccentric rotating rod 5 being rotatably connected with the side connecting part 102, the locking block 4 being capable of rotating with the eccentric rotating rod 5 to be completely placed above the side connecting part 102 or to be partially placed outside the side connecting part 102, an operating hole 6 being formed in one end of the locking block 4, the operating hole 6 being capable of allowing a tool to be inserted and drive the locking block 4 to rotate, the locking block 4 being provided with a positioning line 7, the positioning line 7 being formed by a line groove formed on the locking block 4, when the locking block 4 is rotated to the maximum area exposed outside the side connecting part 102, the positioning line 7 is perpendicular to the side connecting part 102, the side connecting part 102 being fixedly provided with a limiting block 9 on one side of the locking block 4, when the locking block 4 is rotated to the maximum area exposed outside the side connecting part 102 and the positioning line 7 is perpendicular to the side connecting part 102, the locking block 4 abuts against the limiting block 9, the locking block 4 being unable to continue to rotate, the locking block 4 being circular in cross section, the limiting block 9 being provided with an arc-shaped groove 901 on the side facing the locking block 4, when the locking block 4 is rotated to the maximum area exposed outside the side connecting part 102 and the positioning line 7 is perpendicular to the side connecting part 102, the side of the locking block 4 abuts against one end of the arc-shaped groove 901.

[0024] As shown in Figure 4As shown, the window frame side mounting groove 10 is generally a I-shaped groove, and a first convex edge 11 is oppositely arranged above the side wall at both ends, and a second convex edge 13 is arranged, so that the window frame side mounting groove 10 forms a profile groove as shown. When mounted and connected, the locking block 4 is arranged corresponding to the first convex edge 11, the side connecting part 102 is arranged corresponding to the window frame side mounting groove 10 below the second convex edge 13, the locking block 4 is circumferentially arranged with a groove 12, the locking block 4 is rotated to be partially arranged outside the side connecting part 102 and the bottom of the groove 12 is in abutment with the first convex edge 11, the first convex edge 11 is arranged in the groove 12, at the same time, the side connecting part 102 is in abutment with the side wall of the window frame side mounting groove 10 below the second convex edge 13, and is bidirectionally extruded, so as to realize the locking of the side connecting part 102 in the window frame side mounting groove 10, avoid its falling down, and avoid the swing of the side connecting part 102 in the window frame side mounting groove 10. In addition, the side connecting part 102 is arranged with a convex block 8 corresponding to the second convex edge 13, the convex block 8 is in abutment below the second convex edge 13, and the convex block 8 cooperates with the groove 12 to further improve the stability of the installation.

Claims

1. A cable-stayed rod assembly, comprising a window frame connecting member fixedly connected with a window frame, a window sash connecting member connected with a window sash, the window frame connecting member and the window sash connecting member being connected through a connecting rod assembly, the window frame connecting member comprising an upper connecting portion connected with an upper installation slot of the window frame and a side connecting portion connected with a side installation slot of the window frame, the upper connecting portion and the side connecting portion being perpendicular to each other, characterized in that: The side connecting part is provided with a locking mechanism capable of moving to the outside of the side connecting part and abutting against the inner wall of the window frame side mounting groove, when the locking mechanism abuts against one side of the window frame side mounting groove, the side connecting part abuts against the inner wall of the other side of the window frame side mounting groove. ​ 2. A diagonal rod assembly according to claim 1, characterized in that: The locking mechanism comprises a locking block, the locking block is eccentrically provided with an eccentric rotating rod, the eccentric rotating rod is rotationally connected with the side connecting part, the locking block can be rotated to completely be placed above the side connecting part or be partially placed outside the side connecting part.

3. A diagonal rod assembly according to claim 2, wherein: An operation hole is formed in one end above the locking block, the operation hole can be inserted by a tool to drive the rotation of the locking block.

4. A diagonal rod assembly according to claim 2 or 3, characterised in that: The side connecting part is fixedly provided with a limiting block on one side of the locking block, when the locking block is rotated to the maximum area exposed outside the side connecting part, the locking block abuts against the limiting block, and the locking block cannot continue to rotate.

5. A diagonal rod assembly according to claim 4, wherein: The cross section of the locking block is circular, the limiting block is provided with a matched arc-shaped groove on the side facing the locking block, when the locking block is rotated to the maximum area exposed outside the side connecting part, the side of the locking block abuts against one end of the arc-shaped groove.

6. A diagonal rod assembly according to claim 5, wherein: The locking block is provided with a positioning line, when the locking block is rotated to the maximum area exposed outside the side connecting part, the positioning line is perpendicular to the side connecting part.