A two-dimensional adjustment handle for a drawer slide
By setting tight-fitting holes and arc groove structures on the mounting base of the drawer slide, the lateral fixing and buffering effect of the two-dimensional adjustment handle is achieved, solving the problem of poor assembly stability and improving the overall stability and adjustment accuracy of the drawer slide.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANG DONG GUANG RUN JING MI ZHI ZAO YOU XIAN GONG SI
- Filing Date
- 2025-08-05
- Publication Date
- 2026-07-28
AI Technical Summary
The existing two-dimensional adjustment handles in drawer slides have poor assembly stability due to the closed structure of the side wall of the mounting base. They are prone to loosening during frequent drawer opening and closing, affecting the adjustment accuracy.
The mounting base is equipped with a tight-fitting hole and an arc groove structure, which allows for lateral fixing of self-tapping screws. Combined with the shock-absorbing part and locking mechanism, it improves stability and buffering effect, and enhances assembly safety.
The lateral fixing and cushioning design improves the overall structural stability and adjustment accuracy of the drawer slides, reducing vibration and operational safety risks.
Smart Images

Figure CN224557099U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of drawer slide technology, and in particular to a two-dimensional adjustable handle for drawer slides. Background Technology
[0002] A two-dimensional adjustable handle is an adjustment mechanism used on drawer slides. It generally has the functions of up and down and left and right adjustment. By adjusting its position relative to the slide, the installation height of the drawer can be changed. During installation, the slide is installed on the cabinet body, and the adjustable handle is installed at the bottom of the drawer. The drawer is supported on the slide while the slide and the adjustable handle are connected, thereby fixing the drawer on the slide. This corrects installation deviations and ensures that the drawer is aligned and stable. It is widely used in furniture such as cabinets and wardrobes.
[0003] Existing two-dimensional adjustment handles include a mounting base and vertical adjustment components and horizontal adjustment components that are respectively assembled with the mounting base. Each adjustment component generally consists of an adjustment wheel and an adjustment element. The adjustment wheel and adjustment element are assembled by threads. The outer end of the adjustment element is an adjustment wedge. When the adjustment wheel is rotated, the adjustment wedge will extend or retract relative to the mounting base, thereby realizing the adjustment of the drawer and slide rail in various dimensions. The bottom of the mounting base usually has several fixing holes for fixing the adjustment handle to the bottom of the drawer with screws.
[0004] However, since the side walls of the mounting base in the above-mentioned two-dimensional adjustment handle are mostly closed structures, the two-dimensional adjustment handle can only be assembled with the drawer in one direction through the bottom fixing hole. It cannot be assembled with the side wall of the drawer from the side. The overall structural stability after assembly is poor, and it is easy to loosen due to uneven force during frequent drawer pulling, which may even cause the adjustment components to shift and affect the adjustment accuracy. Utility Model Content
[0005] The technical problem to be solved by this utility model is to provide a two-dimensional adjustable handle for drawer slides, thereby overcoming the deficiencies in the prior art.
[0006] To achieve the above objectives, the present invention adopts the following technical solution: a two-dimensional adjustable handle for drawer slides, comprising a mounting base, a vertical adjustment mechanism, and a horizontal adjustment mechanism assembled in the mounting base. The vertical adjustment mechanism is used to adjust the vertical position of the drawer and the slide, and the horizontal adjustment mechanism is used to adjust the horizontal position of the drawer and the slide. The mounting base is provided with a first receiving cavity, and a recessed hole is provided on the bottom wall of the first receiving cavity facing downward. The vertical adjustment mechanism is assembled on the inner wall of the recessed hole, and a fitting hole is provided on the left side wall of the first receiving cavity.
[0007] The left sidewall of the first accommodating cavity is provided with an outer arc groove, which is connected to the tight fitting hole. The outer arc groove is recessed from the left sidewall of the first accommodating cavity toward the tight fitting hole.
[0008] The ratio of the diameter a of the fitting hole to the width b of the outer arc groove is 0.7:1 to 0.9:1, preferably 0.8:1. The left sidewall of the first accommodating cavity is provided with an inner arc groove, which is located at the right end of the outer arc groove and is recessed toward the outer arc groove.
[0009] The ratio of the width b of the outer arc groove to the width c of the inner arc groove is 0.5:1 to 0.7:1; preferably 0.6:1.
[0010] The mounting base has an arc-shaped surface on its left top wall, which is inclined towards the outer arc groove from the left top wall of the mounting base.
[0011] It also includes a shock-absorbing part, which is recessed downward from the top right wall of the mounting base to form a buffer space.
[0012] The buffer space has several sets of first inclined surfaces on its sidewalls. Within the buffer space, the first inclined surfaces are inclined downwards from the top right wall of the mounting base.
[0013] The up-down adjustment mechanism includes an up-down adjustment component and an adjustment stud. The adjustment stud is rotatably assembled with the side walls at both ends of the sinkhole, and the up-down adjustment component is slidably assembled with the bottom wall of the sinkhole. When the adjustment stud rotates, the up-down adjustment component moves back and forth.
[0014] The first accommodating cavity has a limiting groove recessed at both ends of its front and rear sides, and the adjusting stud is rotatably assembled in the limiting groove.
[0015] The outer wall of the adjusting stud is provided with a threaded portion, and the rear top wall of the upper and lower adjusting member is provided with a threaded groove adapted to the threaded portion. When the threaded portion rotates, the threaded groove moves back and forth.
[0016] The mounting base has a hook protruding downwards on its bottom wall, and the rear bottom wall of the up-down adjustment member has a first sliding groove. When the up-down adjustment member moves back and forth, the hook slides in the first sliding groove.
[0017] The front end of the up-down adjusting member is provided with a second inclined surface, which is inclined downward from the top wall of the front end of the up-down adjusting member.
[0018] The left and right adjustment mechanism includes a left and right adjustment component and an adjustment wheel. The mounting base has a second accommodating cavity and a third accommodating cavity that are interconnected. The side wall of the third accommodating cavity has a roller groove for restricting the left and right movement of the adjustment wheel. The adjustment wheel is disposed in the roller groove. The left end of the left and right adjustment component is disposed in the second accommodating cavity, and the right end of the left and right adjustment component extends into the third accommodating cavity and is rotatably assembled with the adjustment wheel. When the adjustment wheel rotates, the left and right adjustment component moves left and right relative to the mounting base.
[0019] The adjusting wheel has a threaded hole in the middle, and the left and right adjusting components include a screw rod threadedly connected to the threaded hole and a left and right adjusting block connected to the left end of the screw rod. The screw rod is threadedly rotatably assembled with the adjusting wheel.
[0020] The front side wall of the left and right adjustment block is provided with an assembly block for detachable connection with the slide rail.
[0021] The left and right adjustment blocks have an inclined portion protruding from their front sidewalls. There are two sets of inclined portions, which are respectively located at the left and right ends of the assembly block. The inclined portions are inclined forward from the front sidewalls of the left and right adjustment blocks toward the assembly block.
[0022] The top wall of the left and right adjustment block is provided with a second sliding groove facing downwards, and the bottom wall of the arc-shaped part is provided with a second sliding strip protruding downwards along the left and right direction of the mounting base. The second sliding strip is slidably assembled in the second sliding groove.
[0023] The system also includes a locking / unlocking mechanism for locking or disengaging the slide rail. The mounting base has a fourth accommodating cavity, and the locking / unlocking mechanism is assembled within the fourth accommodating cavity. The locking / unlocking mechanism includes a movable latch and a movable rotating component. The movable rotating component drives the movable latch to slide along the left-right direction of the mounting base. The rear end of the movable rotating component extends into the fourth accommodating cavity and is assembled with the movable latch. The front end of the movable rotating component protrudes from the mounting base. The movable rotating component is rotatably assembled with the mounting base. When the movable rotating component rotates to the left, the movable latch slides to the right. When the movable rotating component rotates to the right, the movable latch slides forward.
[0024] The fourth accommodating cavity has a first slide bar that protrudes downwards on its top wall. The first slide bar is arranged along the left and right direction of the mounting base. The top wall of the sliding clip has a sliding groove, and the first slide bar is slidably assembled in the sliding groove.
[0025] The bottom wall of the movable card has a movable card slot, and the rear end of the movable rotating part is assembled in the sliding card slot.
[0026] The inner wall of the fourth accommodating cavity has a downwardly protruding movable rotating column, and the movable rotating component has a movable rotating hole in the middle, and the movable rotating column is rotatably assembled in the movable rotating hole.
[0027] The mounting base has mounting holes on its bottom wall, which are used to assemble the drawer with the mounting base.
[0028] The beneficial effects of this utility model are as follows: by setting a fastening hole on the left side wall of the first accommodating cavity of the mounting base, it can be fixed to the drawer side panel by self-tapping screws from the side, which changes the traditional single bottom assembly method and improves the overall structural stability. At the same time, the fastening hole is set above the up and down adjustment mechanism, and the two are set in space to form a clearance space that facilitates the installation of self-tapping screws. By setting a shock-absorbing part on the top wall of the mounting base to form a buffer space, vibration transmission is reduced, and the buffering effect of the two-dimensional adjustment handle on the vibration caused by the drawer being pulled out is improved.
[0029] By designing an arc-shaped surface, the arc structure reduces the sharp edges at the front of the mounting base, improving the safety of the assembly process and preventing users from being scratched by sharp parts. Attached Figure Description
[0030] Figure 1 This is a schematic diagram of the structure of a two-dimensional adjusting handle for a drawer slide rail according to an embodiment of this application; Figure 2 This is an exploded view of the two-dimensional adjustable handle for a drawer slide rail according to an embodiment of this application. Figure 1 ; Figure 3 yes Figure 2 A magnified view of the structure at point A in the middle; Figure 4 This is a schematic diagram of the structure of the movable clip of a two-dimensional adjusting handle for a drawer slide rail after disassembly, according to an embodiment of this application. Figure 5 This is a top view of a two-dimensional adjustable handle for a drawer slide in an embodiment of this application; Figure 6 yes Figure 5 Schematic diagram of the cross-sectional structure along the BB direction; Figure 7 This is an exploded view of the two-dimensional adjustable handle for a drawer slide rail according to an embodiment of this application. Figure 2 ; Figure 8 This is an exploded view of the two-dimensional adjustable handle for a drawer slide rail according to an embodiment of this application. Figure 3 .
[0031] Explanation of reference numerals in the attached drawings: 1. Mounting base; 101. First receiving cavity; 102. Second receiving cavity; 103. Third receiving cavity; 104. Fourth receiving cavity; 105. Limiting groove; 106. Hook; 107. Roller groove; 108. First slide bar; 109. Movable rotating column; 110. Mounting hole; 111. Arc-shaped surface; 1111. Second slide bar; 2. Up and down adjustment mechanism; 21. Up and down adjusting component; 211. Threaded groove; 212. First sliding groove; 213. Second inclined surface; 22. Adjusting stud; 221. 3. Threaded part; 4. Left and right adjustment mechanism; 5. Left and right adjustment component; 6. Screw; 7. Left and right adjustment block; 8. Assembly block; 9. Inclined part; 10. Second sliding groove; 11. Adjusting wheel; 12. Screw hole; 12. Locking mechanism; 13. Movable locking component; 14. Slide groove; 15. Movable slot; 16. Movable rotating component; 17. Movable rotating hole; 18. Fitting hole; 19. Outer arc groove; 20. Inner arc groove; 10. Shock-absorbing part; 11. Buffer space; 22. First inclined surface; 23. Recessed hole. Detailed Implementation
[0032] This section will describe in detail the specific embodiments of the present utility model. The preferred embodiments of the present utility model are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so as to intuitively and vividly understand each technical feature and overall technical solution of the present utility model. However, they should not be construed as limiting the scope of protection of the present utility model.
[0033] In the description of this utility model, if directional descriptions are involved, such as "up," "down," "front," "back," "left," "right," etc., indicating directional or positional relationships, these are based on the appendix. Figure 1 , 2 The orientations or positional relationships shown in Figures 4 and 5 are for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. When a feature is referred to as "set", "fixed", or "connected" to another feature, it can be directly set, fixed, or connected to the other feature, or it can be indirectly set, fixed, or connected to the other feature.
[0034] In the description of this utility model, the term "several" means one or more, and "multiple" means two or more. The terms "greater than," "less than," and "exceeding" should be understood as excluding the stated number. The terms "above," "below," and "within" should be understood as including the stated number. The terms "first" and "second" should be understood as distinguishing technical features and not as indicating or implying relative importance, the quantity of indicated technical features, or the sequential relationship between indicated technical features.
[0035] Furthermore, unless otherwise defined, the technical and scientific terms used in this invention have the same meanings as commonly understood by one of ordinary skill in the art. The terminology used in this invention is for the purpose of describing particular embodiments only and not for limiting the invention. It should be understood that, when used in this specification and the appended claims, the terms "comprising" and "including" indicate the presence of the described features, integrals, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components, and / or collections thereof.
[0036] Example: Figure 1-8 As shown, a two-dimensional adjustable handle for drawer slides includes a mounting base 1, a vertical adjustment mechanism 2, and a horizontal adjustment mechanism 3 assembled within the mounting base 1. The vertical adjustment mechanism 2 is used to adjust the vertical position of the drawer and the slide, and the horizontal adjustment mechanism 3 is used to adjust the horizontal position of the drawer and the slide. The mounting base 1 has a first receiving cavity 101, and a recessed hole 11 is formed on the bottom wall of the first receiving cavity 101 facing downward. The vertical adjustment mechanism 2 is assembled on the inner wall of the recessed hole 11. A fastening hole 5 is formed on the left side wall of the first receiving cavity 101. By setting the fastening hole 5, the two-dimensional adjustable handle can be laterally fixed to the drawer side panel by self-tapping screws, improving the stability of the two-dimensional adjustable handle assembled on the drawer side panel. Furthermore, the fastening hole 5 is located above the vertical adjustment mechanism 2, and the two positions are spatially offset, forming a clearance space that facilitates the installation of self-tapping screws.
[0037] The left sidewall of the first accommodating cavity 101 is provided with an outer arc groove 6, which is connected to the tight fitting hole 5. The outer arc groove 6 is recessed from the left sidewall of the first accommodating cavity 101 toward the tight fitting hole 5. The outer arc groove 6 provides deformation space around the tight fitting hole 5, and the arc surface structure facilitates avoidance during adjustment and reduces operational obstacles.
[0038] The ratio of the diameter a of the tight fitting hole 5 to the width b of the outer arc groove 6 is 0.7:1 to 0.9:1, preferably 0.8:1. By limiting the ratio of the diameter to the width, stress concentration is avoided from causing damage to the side wall of the mounting base 1.
[0039] The left sidewall of the first accommodating cavity 101 is provided with an inner arc groove 7. The inner arc groove 7 is located at the right end of the outer arc groove 6. The inner arc groove 7 is recessed towards the outer arc groove 6. By providing the inner arc groove 7, it is distributed in a stepped manner with the outer arc groove 6, which facilitates the accommodation of the screw head of the self-tapping screw.
[0040] The ratio of the width b of the outer arc groove 6 to the width c of the inner arc groove 7 is 0.5:1 to 0.7:1; preferably 0.6:1.
[0041] The mounting base 1 has an arc-shaped surface 111 on its left top wall. The arc-shaped surface 111 is inclined from the left top wall of the mounting base 1 toward the outer arc groove 6. By setting the arc-shaped surface structure of the arc-shaped surface 111, the sharp edges of the front end of the mounting base 1 are reduced, the safety of the assembly process is improved, and users are prevented from being scratched by sharp parts.
[0042] It also includes a shock-absorbing part 9, which is recessed from the top right wall of the mounting base 1 to form a buffer space 901. The shock-absorbing part 9 is provided to reduce the impact force when the drawer is pulled out, reduce vibration transmission, and improve the buffering effect.
[0043] The buffer space 901 has several sets of first inclined surfaces 10 on its sidewalls. The first inclined surfaces 10 are inclined downward from the top right wall of the mounting base 1 within the buffer space 901. By setting the inclined surface structure, the impact force is dispersed along the inclined surface direction, thereby improving the buffering effect.
[0044] The up-and-down adjustment mechanism 2 includes an up-and-down adjustment component 21 and an adjustment stud 22. The adjustment stud 22 is rotatably assembled with the side walls at both ends of the recessed hole 11, and the up-and-down adjustment component 21 is slidably assembled with the bottom wall of the recessed hole 11. When the adjustment stud 22 rotates, the up-and-down adjustment component 21 moves back and forth. By setting the adjustment stud 22 to be rotatably assembled with the side walls at both ends of the first accommodating cavity 101, the adjustment stud 22 can rotate, but its back-and-forth movement can also be restricted. This allows the adjustment stud 22 to drive the up-and-down adjustment component 21 to move in the back-and-forth direction when the adjustment stud 22 rotates, thereby adjusting the up-and-down position of the drawer and the slide rail.
[0045] The first accommodating cavity 101 has a limiting groove 105 recessed at both ends of its front and rear sides. The adjusting stud 22 is rotatably assembled in the limiting groove 105. By setting the limiting groove 105, the adjusting stud 22 can be rotated, and the movement of the adjusting stud 22 in the front and rear directions can be restricted, thereby improving the adjustment effect of the upper and lower adjusting member 21.
[0046] The adjusting stud 22 has a threaded portion 221 on its outer wall, and the rear top wall of the up-down adjusting member 21 has a threaded groove 211 adapted to the threaded portion 221. When the threaded portion 221 rotates, the up-down adjusting member 21 moves back and forth. By setting the threaded portion 221 and the threaded groove 211, the adjusting stud 22 can drive the up-down adjusting member 21 to move by rotating, thereby adjusting the up-down position of the drawer and the slide rail.
[0047] The mounting base 1 has a hook 106 protruding downwards on its bottom wall, and the rear bottom wall of the up-down adjustment member 21 has a first sliding groove 212. When the up-down adjustment member 21 moves back and forth, the hook 106 slides in the first sliding groove 212. By setting the hook 106 and the first sliding groove 212 for sliding assembly, it is easy to realize the back-and-forth sliding of the up-down adjustment member 21 on the bottom wall of the mounting base 1.
[0048] The upper and lower adjustment member 21 is provided with a second inclined surface 213 at its front end. The second inclined surface 213 is inclined downward from the top wall of the front end of the upper and lower adjustment member 21. By rotating the adjusting stud 22, the upper and lower adjustment member 21 is moved back and forth, and the second inclined surface 213 extends forward into the slide rail, raising the drawer and achieving the purpose of adjusting the upper and lower gap between the drawer and the slide rail.
[0049] The left-right adjustment mechanism 3 includes a left-right adjustment member 31 and an adjustment wheel 32. The mounting base 1 has a second accommodating cavity 102 and a third accommodating cavity 103 that are interconnected. The side wall of the third accommodating cavity 103 has a roller groove 107 for restricting the left-right movement of the adjustment wheel 32. The adjustment wheel 32 is disposed in the roller groove 107. The left end of the left-right adjustment member 31 is disposed in the second accommodating cavity 102, and the right end of the left-right adjustment member 31 extends into the third accommodating cavity 103 and is rotatably assembled with the adjustment wheel 32. When the adjustment wheel 32 rotates, the left-right adjustment member 31 moves left and right relative to the mounting base 1. By setting the adjustment wheel 32 to be assembled in the roller groove 107 in the mounting base 1, the left-right movement of the adjustment wheel 32 is restricted. When the adjustment wheel 32 rotates, the adjustment wheel 32 drives the left-right adjustment member 31 to move in the left-right direction, thereby adjusting the left-right position of the drawer and the slide rail.
[0050] The adjusting wheel 32 has a threaded hole 321 in the middle. The left and right adjusting member 31 includes a screw 311 threadedly connected to the screw hole 321 and a left and right adjusting block 312 connected to the left end of the screw 311. The screw 311 is threadedly rotated with the adjusting wheel 32. When the left and right adjusting mechanism 3 is adjusted, the adjusting wheel 32 is rotated, and the adjusting wheel 32 drives the screw 311 to move left and right, so that the left and right adjusting block 312 can adjust the left and right position of the drawer and the slide rail.
[0051] The left and right adjustment block 312 has a protruding assembly block 3121 on its front side wall for detachable connection with the slide rail. By setting the assembly block 3121, the left and right adjustment block 312 and the slide rail can be detachably connected, and the left and right adjustment positions of the slide rail and the drawer can be fixed.
[0052] The left and right adjustment block 312 has an inclined portion 3122 protruding from its front side wall. There are two sets of inclined portions 3122, which are respectively located at the left and right ends of the assembly block 3121. The inclined portions 3122 are inclined forward from the front side wall of the left and right adjustment block 312 towards the assembly block 3121. By setting the inclined portions 3122, it is convenient to limit the left and right direction of the connected slide rail, and prevent the slide rail from deviating during adjustment, which would affect the adjustment effect.
[0053] The top wall of the left and right adjustment block 312 is provided with a second sliding groove 3123 facing downward, and the bottom wall of the arc surface 111 is provided with a second slide bar 1111 protruding downward along the left and right direction of the mounting base 1. The second slide bar 1111 is slidably assembled in the second sliding groove 3123. By setting the slidably assembled second sliding groove 3123 and second slide bar 1111, the left and right adjustment block 312 can slide left and right on the bottom wall of the second accommodating cavity 102.
[0054] The system also includes a locking / unlocking mechanism 4 for locking or disengaging the slide rail. The mounting base 1 has a fourth receiving cavity 104, and the locking / unlocking mechanism 4 is assembled within this cavity. The locking / unlocking mechanism 4 includes a movable locking member 41 and a movable rotating member 42. The movable rotating member 42 drives the movable locking member 41 to slide along the left-right direction of the mounting base 1. The rear end of the movable rotating member 42 extends into the fourth receiving cavity 104 and assembles with the movable locking member 41, while the front end of the movable rotating member 42 protrudes from the mounting base 1. The movable rotating part 42 is rotatably assembled with the mounting base 1. When the movable rotating part 42 rotates to the left, the movable locking part 41 slides to the right. When the movable rotating part 42 rotates to the right, the movable locking part 41 slides forward. By rotating the movable rotating part 42 to the left, the movable locking part 41 can be moved to the right until it is completely placed in the fourth accommodating cavity 104, thereby disengaging the slide rail from the two-dimensional adjustment handle. By rotating the movable rotating part 42 to the right, the movable locking part 41 can be moved to the left until it is exposed outside the mounting base 1, thereby locking the slide rail from the two-dimensional adjustment handle.
[0055] The top wall of the fourth accommodating cavity 104 has a first slide bar 108 that protrudes downward. The first slide bar 108 is arranged along the left and right direction of the mounting base 1. The top wall of the sliding member has a sliding groove 411. The first slide bar 108 is slidably assembled in the sliding groove 411. By setting the first slide bar 108 and the sliding groove 411, it is convenient to realize the left and right sliding of the movable member 41 in the mounting base 1.
[0056] The bottom wall of the movable card 41 is provided with a movable slot 412, and the rear end of the movable rotating part 42 is assembled in the sliding slot. By setting the movable slot 412, the movable rotating part 42 and the movable card 41 can be linked together.
[0057] The inner wall of the fourth accommodating cavity 104 has a downwardly protruding movable rotating post 109, and the movable rotating component 42 has a movable rotating hole 421 in the middle. The movable rotating post 109 is rotatably assembled in the movable rotating hole 421. By setting the movable rotating post 109 and the movable rotating hole 421, a support point is provided for the movement of the movable rotating component 42, thereby improving the stability of the movable rotating component 42 when it is moved.
[0058] The mounting base 1 has a mounting hole 110 on its bottom wall. The mounting hole 110 is used to assemble the drawer with the mounting base 1. By providing the mounting hole 110, it is easy to install the mounting base 1 under the drawer.
[0059] The implementation principle of a two-dimensional adjustment handle for drawer slides in this embodiment is as follows: During installation, the two-dimensional adjustment handle is fixed to the bottom of the drawer by screws using the mounting holes 110 on the bottom wall of the mounting base 1. Then, the two-dimensional adjustment handle is laterally fixed to the drawer side panel by self-tapping screws using the fitting holes 5 on the left side wall of the first accommodating cavity 101. During use, the adjustment wheel 32 is rotated, which drives the left and right adjustment parts 31 to move left and right. The left and right positions of the slide rail and drawer are adjusted by using the assembly block 3121 and the inclined part 3122. At the same time, the adjustment stud 22 is rotated, which drives the up and down adjustment parts 21 to move back and forth. The up and down positions of the slide rail and drawer are adjusted by using the second inclined surface 213. When the locking mechanism 4 is adjusted, the movable rotating part 42 rotates to the right, so that part of the movable locking part 41 extends out of the mounting base 1 and engages with the slide rail, thereby locking the slide rail and drawer. The movable rotating part 42 moves to the left, so that the movable locking part 41 moves into the fourth accommodating cavity, thereby disengaging the movable locking part 41 from the slide rail and separating the slide rail from the drawer.
[0060] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications and substitutions within the technical scope disclosed in this utility model, and these modifications or substitutions should all be covered within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.
Claims
1. A two-dimensional adjustable handle for drawer slides, characterized in that: The device includes a mounting base, a height adjustment mechanism, and a left-right adjustment mechanism assembled within the mounting base. The height adjustment mechanism is used to adjust the height of the drawer and the slide rail, and the left-right adjustment mechanism is used to adjust the left-right position of the drawer and the slide rail. The mounting base has a first receiving cavity, and a recessed hole is formed on the bottom wall of the first receiving cavity facing downward. The height adjustment mechanism is assembled on the inner wall of the recessed hole, and a fitting hole is formed on the left side wall of the first receiving cavity.
2. A two-dimensional adjustable handle for drawer slides according to claim 1, characterized in that: The left sidewall of the first accommodating cavity is also provided with an outer arc groove, which is connected to the tight fitting hole. The outer arc groove is recessed from the left sidewall of the first accommodating cavity toward the tight fitting hole.
3. A two-dimensional adjustable handle for drawer slides according to claim 2, characterized in that: The left sidewall of the first accommodating cavity is also provided with an inner arc groove, which is located at the right end of the outer arc groove and is recessed toward the outer arc groove.
4. A two-dimensional adjustable handle for drawer slides according to claim 3, characterized in that: The top left wall of the mounting base is provided with an arc-shaped surface, which is inclined from the top left wall of the mounting base toward the outer arc groove.
5. A two-dimensional adjustable handle for drawer slides according to claim 4, characterized in that: It also includes a shock-absorbing part, which is recessed downward from the top right wall of the mounting base to form a buffer space.
6. A two-dimensional adjustable handle for drawer slides according to claim 5, characterized in that: The sidewall of the buffer space is provided with several sets of first inclined surfaces, and the first inclined surfaces are inclined downward from the top right wall of the mounting base within the buffer space.
7. A two-dimensional adjustable handle for drawer slides according to claim 6, characterized in that: The up-down adjustment mechanism includes an up-down adjustment component and an adjustment stud. The adjustment stud is rotatably assembled with the side walls at both ends of the sinkhole, and the up-down adjustment component is slidably assembled with the bottom wall of the sinkhole. When the adjustment stud rotates, the up-down adjustment component moves back and forth.
8. A two-dimensional adjustable handle for drawer slides according to claim 7, characterized in that: The side walls at both ends of the first accommodating cavity are recessed downwards and provided with limiting grooves, and the adjusting stud is rotatably assembled in the limiting grooves.
9. A two-dimensional adjustable handle for drawer slides according to claim 8, characterized in that: The left-right adjustment mechanism includes a left-right adjustment component and an adjustment wheel. The mounting base has a second accommodating cavity and a third accommodating cavity that are interconnected. The side wall of the third accommodating cavity has a roller groove for restricting the left-right movement of the adjustment wheel. The adjustment wheel is disposed in the roller groove. The left end of the left-right adjustment component is disposed in the second accommodating cavity, and the right end of the left-right adjustment component extends into the third accommodating cavity and is rotatably assembled with the adjustment wheel. When the adjustment wheel rotates, the left-right adjustment component moves left and right relative to the mounting base.
10. A two-dimensional adjustable handle for drawer slides according to claim 9, characterized in that: It also includes a locking / unlocking mechanism for locking or disengaging the slide rail. The mounting base has a fourth accommodating cavity, and the locking / unlocking mechanism is assembled in the fourth accommodating cavity. The locking / unlocking mechanism includes a movable latch and a movable rotating component. The movable rotating component is used to drive the movable latch to slide along the left-right direction of the mounting base. The rear end of the movable rotating component extends into the fourth accommodating cavity and is assembled with the movable latch. The front end of the movable rotating component protrudes from the mounting base. The movable rotating component is rotatably assembled with the mounting base. When the movable rotating component rotates to the left, the movable latch slides to the right. When the movable rotating component rotates to the right, the movable latch slides forward.