Adjustable buffer stop block module
By designing an adjustable buffer block module and using multi-dimensional adjustment components, the problem of cumbersome buffer block positioning and installation was solved, achieving rapid and precise adjustment and enhanced adaptability.
Patent Information
- Application Number
- CN202422737409.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-11-08
AI Technical Summary
The existing buffer block positioning and installation operation is cumbersome and has poor accuracy, and cannot quickly and accurately adapt to different specifications of door/window sashes.
An adjustable buffer block module was designed, comprising a base, a block, and an adjustment module. The adjustment module includes adjustment components for the x, y, and z directions, and utilizes structures such as an eccentric cam, a stop block, and a clamping element to achieve multi-dimensional adjustment.
It enables quick and convenient adjustment of the buffer block, improves installation accuracy and adaptability, and is suitable for door and window sashes of different specifications.
Smart Images

Figure CN223676903U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to door and window technical field, concretely relates to an adjustable buffer stop module. BACKGROUND
[0002] The buffer of the sliding door / window is often composed of two components, which are the buffer body and the stop block or baffle connected with the buffer. In the existing buffer products on the market, the adaptability and positioning installation of the buffer are often a big difficulty for the installer, among which the positioning installation of the buffer stop block is the most difficult. This is because most of the buffer stop blocks on the market lack adjustment structure or only have simple linear adjustment function. For different specifications of door / window sash, the installation position of the stop block can only be adjusted by manual displacement point-by-point correction or increasing / decreasing gaskets, which is complicated and has poor accuracy, and the buffer stop block cannot be quickly and accurately adjusted in place. SUMMARY
[0003] In order to overcome the above-mentioned shortcomings of the prior art, the utility model aims at providing an adjustable buffer stop block module, which has good adjustment function and is convenient for the installer to quickly adjust in place.
[0004] The utility model solves the technical problems by adopting the following technical scheme:
[0005] An adjustable buffer stop block module, comprising a base, a stop block adapted to the buffer, and an adjustment module for adjusting the position of the stop block;
[0006] The stop block is arranged on the base;
[0007] The adjustment module comprises a first adjustment assembly for adjusting the x direction and a second adjustment assembly for adjusting the y direction;
[0008] The first adjustment assembly comprises a first driving member arranged on the base; the base is provided with a first adjustment position adapted to the first driving member; when the first driving member is rotated, the base can be moved in the x direction through the cooperation with the first adjustment position;
[0009] The second adjustment assembly comprises two abutting blocks and a second driving member; the two abutting blocks are movably arranged on the base in the y direction, and the second driving member is arranged between the two abutting blocks and cooperates with the two abutting blocks; through the control of the second driving member, the two abutting blocks can be synchronously slid in the y direction and respectively extended out of the two sides of the base.
[0010] One preferred scheme of the utility model discloses a first driving part includes eccentric cam, the first adjustment position includes the adaptation cavity for accommodating eccentric cam, the adaptation cavity's y direction size is bigger than x direction size, and the adaptation cavity's x direction size is adapted with eccentric cam, and the adaptation cavity's y direction size is bigger than eccentric cam.
[0011] One preferred scheme of the utility model, second driving part is equipped with first guide inclined plane to both sides of two resistance block, two resistance block is equipped with second guide inclined plane to the side of second driving part, first guide inclined plane and second guide inclined plane mutually cooperate, first threaded hole is equipped on second driving part, second adjustment assembly still includes resistance screw, and resistance screw is assembled with first threaded hole cooperation.
[0012] Preferably, a first elastic element is provided between the two resistance blocks, and the elastic force of the first elastic element can cause the two resistance blocks to approach each other to retract into the base.
[0013] Preferably, a guide post is provided at the corresponding position of the base and the two resistance blocks, and a guide groove is provided on the two resistance blocks and extends in the y direction, and the guide post is inserted into the guide groove.
[0014] One preferred scheme of the utility model, the adjustment module still includes third adjustment assembly for adjusting z direction;
[0015] A through hole is provided on the base, and the stop block is inserted into the through hole and can move vertically;
[0016] The third adjustment assembly includes a clamping member and a third driving member, the clamping member is slidably arranged on the base, the clamping member is provided with a clamping portion, and the clamping portion is located on one side of the stop block, and the third driving member is used to control the clamping portion of the clamping member to move to the side close to the stop block, so as to clamp the stop block.
[0017] Preferably, the third driving member includes a clamping screw, the countersunk head of the clamping screw is provided with a third guide inclined surface, a boss is provided on the clamping member, the boss is provided with a fourth guide inclined surface, the clamping member is provided with a avoiding hole at the boss, a second threaded hole and a via hole are provided on the base, the boss passes through the via hole and is opposite to the second threaded hole, the clamping screw is matched in the second threaded hole, and the third guide inclined surface and the fourth guide inclined surface are matched with each other.
[0018] Preferably, the third adjustment assembly further includes a second elastic element, the second elastic element is located between the clamping member and the base, and the elastic force of the second elastic element is used to cause the clamping portion of the clamping member to abut against the stop block.
[0019] In one preferred embodiment of the utility model, the base is provided with a cover plate on one side of the profile; the base is provided with a locking assembly;
[0020] The locking assembly comprises a locking screw and a locking block; the base is provided with a locking groove, the locking groove penetrates through the base, one side of the locking groove away from the profile is provided with a limiting table, the x-direction length of the locking groove is larger than that of the locking block; the locking block is located on the limiting table of the locking groove, and the locking screw is connected with the profile after penetrating through the locking block.
[0021] Preferably, the base is provided with a limiting column; the cover plate is provided with a limiting hole, the limiting hole extends along the x-direction; the limiting column is threaded in the limiting hole, and the limiting column is provided with a limiting piece.
[0022] Compared with the prior art, the utility model has the beneficial effects that:
[0023] The adjustable buffer stop module can be adjusted and moved left and right in the x-direction, which can be completed by rotating the first driving member, and the operation is simple and convenient; meanwhile, the module has the adjusting function in the y-direction, so that the cooperation and adjustment with the buffer main body are more flexible and changeable, and the adaptability is stronger. BRIEF DESCRIPTION OF DRAWINGS
[0024] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the drawings needed in the embodiment description will be briefly introduced as follows, and obviously, the drawings in the following description are some embodiments of the utility model, and other drawings can be obtained by those skilled in the art without creative labor on the premise of the drawings.
[0025] Figure 1 It is a schematic view of the adjustable buffer stop module and the buffer body of the utility model.
[0026] Figure 2 It is a perspective view of the adjustable buffer stop module of the utility model.
[0027] Figure 3 It is an exploded view of the adjustable buffer stop module of the utility model.
[0028] Figure 4 It is a perspective view of the adjustable buffer stop module of the utility model after the cover plate is hidden (the first elastic element in the drawing is a schematic diagram).
[0029] Figure 5 It is a perspective view of the base.
[0030] Figure 6 It is a top view of the adjustable buffer stop module of the utility model.
[0031] Figure 7 For Figure 6 The schematic view of the middle base after moving left along the x direction.
[0032] Figure 8 For the bottom view of the adjustable buffer stop module of the utility model.
[0033] Figure 9 For Figure 8 The sectional view of A-A.
[0034] Figure 10 For Figure 8 The sectional view of B-B.
[0035] Figure 11 For Figure 8 The schematic view of the two abutting blocks after extending the base along the y direction.
[0036] Figure 12 For another bottom view of the adjustable buffer stop module of the utility model.
[0037] Figure 13 For Figure 12 The sectional view of C-C.
[0038] Figure 14 For Figure 12 The sectional view of D-D.
[0039] Wherein:
[0040] 1-base, 101-first adjusting cavity, 102-second adjusting cavity, 103-guide column, 104-perforation, 105-locking groove, 1051-limiting table, 106-limiting column, 107-second threaded hole, 108-via hole;
[0041] 2-cover plate, 201-limiting hole;
[0042] 3-mounting plate;
[0043] 4-locking screw;
[0044] 5-stop;
[0045] 6-limiting sheet;
[0046] 7-first adjusting assembly, 701-first driving piece, 702-first adjusting position;
[0047] 8-second adjusting assembly, 801-second driving piece, 8011-first guide inclined surface, 8012-first threaded hole, 802-abutting block, 8021-second guide inclined surface, 8022-guide groove, 803-abutting screw, 804-first elastic element;
[0048] 9 - third adjusting assembly, 901 - clamping piece, 9011 - clamping part, 9012 - avoiding hole, 9013 - fourth guide slope, 902 - third driving piece, 9021 - third guide slope, 903 - third elastic element;
[0049] 10 - locking block, 1001 - top post. DETAILED DESCRIPTION
[0050] In order to more clearly understand the above objectives, features and advantages of the present application, the present application will be described in detail below in conjunction with the accompanying drawings and specific embodiments. It should be noted that the embodiments and features in the embodiments can be combined with each other without conflict. In the following description, a large number of specific details are set forth in order to provide a thorough understanding of the present application. The described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of the present application.
[0051] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs. The terminology used in the specification of the present application herein is only for the purpose of describing specific embodiments and is not intended to limit the present application.
[0052] Example 1
[0053] Referring to Figures 1-14 The present embodiment discloses an adjustable buffer stop module, comprising a base 1, a stop block 5 adapted to the buffer, and an adjusting module for adjusting the position of the stop block 5; the stop block 5 is arranged on the base 1; the adjusting module comprises a first adjusting assembly 7 for adjusting the x direction, a second adjusting assembly 8 for adjusting the y direction, and a third adjusting assembly 9 for adjusting the z direction. Wherein, the x direction can be understood as the moving direction of the buffer or the door and window, the y direction can be understood as the width direction of the profile or the direction perpendicular to the x direction, and the z direction can be understood as the vertical direction or the height direction.
[0054] The first adjusting assembly 7 comprises a first driving piece 701 arranged on the base 1; the base 1 is provided with a first adjusting position 702 adapted to the first driving piece 701; when the first driving piece 701 is rotated, the base 1 can be moved in the x direction through the cooperation with the first adjusting position 702.
[0055] The first driving member 701 comprises an eccentric cam; the first adjusting position 702 in the embodiment is an accommodating cavity for the eccentric cam, the y-direction size of the accommodating cavity is larger than the x-direction size, and the x-direction size of the accommodating cavity is adapted to the eccentric cam, and the y-direction size of the accommodating cavity is larger than the eccentric cam.
[0056] Further, the eccentric cam in the embodiment is provided with a boss, the boss is provided with a control hole, the control hole is preferably an internal hexagonal counterbore, a tool is facilitated to cooperate with the control hole, so as to screw the eccentric cam. When the eccentric cam rotates, the force is mainly abutted on the two x-direction inner walls of the accommodating cavity, so as to drive the base 1 to move in the x-direction, and the position adjustment of the stop block 5 in the x-direction is realized. The structure of the accommodating cavity in the embodiment can be referred to Figure 3 、 Figure 4 、 Figure 6 and Figure 7 , the two x-direction side walls are straight, and the two y-direction side walls are circular arc-shaped; of course, the accommodating cavity can also be provided in an elliptical shape and the like, and the specific shape is mainly adapted to the eccentric cam.
[0057] The embodiment adopts the cooperation of the eccentric cam and the accommodating cavity to realize the adjustment of the stop block 5 in the x-direction, the structure is simple and convenient to manufacture and process, and the hand feeling during adjustment is good, the stop block 5 can be easily and accurately adjusted to the position.
[0058] As another embodiment, for the x-direction adjustment of the base 1 and the stop block 5, other ways can also be adopted. For example, the first driving member 701 can be provided as a gear, the x-direction side wall of the first adjusting position 702 on the base 1 can be provided with a rack, and the cooperation of the gear and the rack can make the rotation of the gear drive the base 1 and the stop block 5 to move in the x-direction.
[0059] The second adjusting assembly 8 comprises two abutting blocks 802 and a second driving member 801; the two abutting blocks 802 are movably arranged on the base 1 in the y-direction and oppositely arranged, the second driving member 801 is arranged between the two abutting blocks 802 and simultaneously cooperates with the two abutting blocks 802; through the control of the second driving member 801, the two abutting blocks 802 can be simultaneously slid in the y-direction and respectively extended out of the two sides of the base 1.
[0060] The second driving member 801 of the embodiment is provided with a first guide inclined surface 8011 on one side facing the two abutting blocks 802; the two abutting blocks 802 are provided with a second guide inclined surface 8021 on one side facing the second driving member 801; the first guide inclined surface 8011 and the second guide inclined surface 8021 are matched with each other; the second driving member 801 is provided with a first threaded hole 8012; the second adjusting assembly 8 further comprises an abutting screw 803 which is assembled in cooperation with the first threaded hole 8012. By rotating the abutting screw 803, the second driving member 801 is lifted and lowered in the z direction through the thread cooperation, and at the same time, the first guide inclined surface 8011 and the second guide inclined surface 8021 are combined to promote the two abutting members to synchronously extend out of the base 1 in the y direction and abut and clamp on the profile. The second adjusting assembly 8 in the embodiment has at least the following effects: first, the synchronous extension of the two abutting members can quickly adjust the base 1 and the entire module to the center line of the profile slot, that is, the centering effect is achieved; second, the clamping force of the two abutting blocks 802 on the profile can be controlled when adjusting in the x direction or other directions, or even when other operations are performed during the installation process, so that the base 1 and the module are in a pre-clamping state, facilitating other operations; third, the extension distance of the abutting blocks 802 can be controlled to adapt to different sizes of door and window profiles, improving the adaptability.
[0061] As another embodiment, for the extension control of the two abutting blocks 802, in addition to the cooperation of the first guide inclined surface 8011 and the second guide inclined surface 8021 of the embodiment, other ways can also be adopted. For example, the two abutting blocks 802 can be driven to synchronously move and extend out of the base 1 in the y direction through an eccentric wheel or an oval wheel, that is, the second driving member 801 can be set as an eccentric wheel or an oval wheel, and the two abutting blocks 802 can be synchronously pried open by rotating the second driving member 801.
[0062] In the embodiment, a first elastic element 804 is arranged between the two abutting blocks 802, and the elastic force of the first elastic element 804 can promote the two abutting blocks 802 to approach each other to retract into the base 1. Through the arrangement of the first elastic element 804, when the two abutting blocks 802 need to be reset, after the abutting screw 803 is reversely screwed to control the second driving member 801 to no longer act on the two abutting blocks 802, the two abutting blocks 802 can automatically retract and reset under the elastic force of the first elastic element 804. Of course, when the first elastic element 804 is absent, the two abutting blocks 802 can also be manually pushed back into the base 1. The second elastic element 903 of the embodiment is preferably a spring, and the two ends of the spring are connected with the two abutting blocks 802, respectively.
[0063] In order to make the force of the abutting block 802 more balanced, more smooth and stable when moving, the second elastic element 903 of the embodiment is provided with two. And the second guide slope 8021 on the abutting block 802 and the second guide slope 8021 on the second driving element 801 are also provided with two. In this way, the length of the abutting block 802 in the x direction can be set longer, and the clamping force of the profile is better and more stable. Anti-skid teeth are also provided on the outer side of the abutting block 802.
[0064] The base 1 of the embodiment is provided with a guide column 103 corresponding to the two abutting blocks 802; the two abutting blocks 802 are each provided with a guide groove 8022 extending in the y direction; the guide column 103 is inserted into the guide groove 8022. The guide column 103 and the guide groove 8022 can guide and limit the sliding of the abutting block 802, so that the abutting block 802 can move more accurately and stably in the y direction. In order to better cooperate with the abutting block 802, the two sides of the base 1 of the embodiment should be provided with two hole structures, so that the abutting block 802 can extend out. The embodiment provides an opening on the corresponding position of the two sides of the base 1, so that the abutting block 802 can smoothly extend out or retract. When the abutting block 802 retracts, the outer side of the abutting block 802 is flush with or located more inwardly than the side of the base 1.
[0065] The third adjusting assembly 9 includes a clamping element 901 and a third driving element 902. The base 1 of the embodiment is provided with a through hole 104, and the stop block 5 is inserted into the through hole 104 and can move vertically. The clamping element 901 is slidably arranged on the base 1, and the clamping element 901 is provided with a clamping portion 9011 located on one side of the stop block 5; the third driving element 902 is used to control the clamping portion 9011 of the clamping element 901 to move towards the side close to the stop block 5, so as to clamp the stop block 5. Under normal circumstances, the clamping portion 9011 of the clamping element 901 abuts against the stop block 5, and cooperates with the through hole 104 to clamp and fix the stop block 5. When it is necessary to adjust the vertical position of the stop block 5, i.e. the height of the stop block 5, the clamping portion 9011 of the clamping element 901 is controlled by the third driving element 902 to move away from the side of the stop block 5, so that the stop block 5 is not clamped. At this time, the height of the stop block 5 can be adjusted manually, and after adjustment, the stop block 5 is clamped by the clamping portion 9011 of the clamping element 901 controlled by the third driving element 902, so as to complete the fixation.
[0066] The third driving member 902 of the embodiment is a clamping screw, the countersunk head of the clamping screw is provided with a third guide inclined surface 9021; the clamping member 901 is provided with a boss, the boss is provided with a fourth guide inclined surface 9013, the clamping member 901 is provided with a relief hole 9012 at the boss, the relief hole 9012 of the embodiment has a certain extension distance along the y direction, so as to ensure that the clamping member 901 can have a certain y direction moving distance; the base 1 is provided with a second threaded hole 107 and a through hole 108, the boss passes through the through hole 108 and is opposite to the second threaded hole 107; the clamping screw is matched in the second threaded hole 107 and the third guide inclined surface 9021 and the fourth guide inclined surface 9013 are matched with each other.
[0067] The third adjusting assembly 9 of the embodiment further comprises a second elastic element 903; the second elastic element 903 is located between the clamping member 901 and the base 1, and the elastic force of the second elastic element 903 is used to promote the clamping part 9011 of the clamping member 901 to abut against the stop block 5. The second elastic element 903 of the embodiment adopts a spring.
[0068] When the stop block 5 is in an unlocked state, under the action of the elastic force of the second elastic element 903, the clamping part 9011 abuts against the stop block 5, so that the stop block 5 is pre-clamped, but it can still be moved in height under manual condition, at this time, the extension height of the stop block 5 can be changed by a manual adjustment mode, that is, adjustment in the z direction. When adjustment is in place, the clamping screw is rotated, the clamping screw is screwed into the base 1 while promoting the clamping member 901 to move by the cooperation of the third guide inclined surface 9021 and the fourth guide inclined surface 9013, specifically, the clamping part of the clamping member 901 moves towards the stop block 5, until the stop block 5 is clamped and fixed. In order to prevent the stop block 5 from falling during adjustment, the end part of the stop block 5 is enlarged and arranged to be larger than the through hole 104.
[0069] In addition, the base 1 is provided with a cover plate 2 on the side facing the profile; the base 1 is provided with a locking assembly. The locking assembly comprises a locking screw 4 and a locking block 10; the base 1 is provided with a locking groove 105, the locking groove 105 penetrates through the base 1, the side of the locking groove 105 away from the profile is provided with a limiting table 1051, and the x direction length of the locking groove 105 is larger than that of the locking block 10; the locking block 10 is located on the limiting table 1051 of the locking groove 105, and the locking screw 4 is connected with the profile after penetrating through the locking block 10.
[0070] Further, in the embodiment, the locking block 10 is provided with a top post 1001, which extends out after passing through the cover plate 2 and can be in contact with the profile when locking. In addition, the base 1 of the embodiment is divided into a first adjusting cavity 101 and a second adjusting cavity 102; the first adjusting assembly 7 and the second adjusting assembly 8 are both arranged in the first adjusting cavity 101, and the cover plate 2 is arranged on the first adjusting cavity 101 and has a certain x-direction moving distance, that is, the x-direction length of the cover plate 2 relative to the first adjusting cavity 101 is relatively shortened. The third adjusting assembly 9 is arranged in the second adjusting cavity 102, and the second adjusting cavity 102 can be fixed by the mounting plate 3.
[0071] The base 1 is provided with a limiting post 106, and the cover plate 2 is provided with a limiting hole 201 extending along the x-direction; the limiting post 106 is inserted into the limiting hole 201, and the limiting post 106 is provided with a limiting piece 6.
[0072] When installing the adjustable buffer stop block module of the embodiment, it needs to be pre-installed on the profile, at this time, the second adjusting assembly 8 and the locking assembly can be used. Specifically, by rotating the abutting screw 803, the second driving part 801 is driven to move downward along the z-direction, so that the two abutting blocks 802 are extended and pre-abut on both sides of the profile groove, at this time, the module can be pre-fixed on the profile without falling off, and the module is also centered in the profile groove. In addition, the locking screw 4 is screwed into the profile after passing through the locking block 10 to complete the connection, at this time, the locking screw 4 is not tightened, and the pre-fixing of the module is also achieved; because the locking groove 105 reserves a certain distance for the locking block 10 in the x-direction, the relative movement between the locking block 10 and the base 1 can be realized in the subsequent x-direction adjusting process, so as to ensure the smooth adjustment in the x-direction. When all the adjustments are completed, the locking screw 4 is tightened and locked, so as to fix the module of the embodiment.
[0073] The adjustable buffer stop block module of the embodiment has adjusting functions in the xyz three directions, forms a stop block 5 structure with three-dimensional adjustment, not only facilitates the installation and positioning of the stop block 5, but also increases the application range of the product.
[0074] The above is only a preferred embodiment of the present application, and does not limit the present application in any form, so any modification, equivalent change and modification of the above embodiment according to the technical essence of the present application still belongs to the scope of the technical scheme of the present application.
Claims
1. An adjustable buffer stop module, characterized in that, The base, the stopper matched with the buffer, and the adjusting module for adjusting the position of the stopper are included. The stopper is arranged on the base. The adjusting module includes a first adjusting assembly for adjusting the x direction and a second adjusting assembly for adjusting the y direction. The first adjusting assembly includes a first driving member arranged on the base, and the base is provided with a first adjusting position matched with the first driving member. When the first driving member is rotated, the base can be moved in the x direction through cooperation with the first adjusting position.
2. The adjustable buffer stop module of claim 1, wherein, The second adjusting assembly includes two abutting blocks and a second driving member.
3. The adjustable buffer stop module of claim 1, wherein, The two abutting blocks are movably arranged on the base in the y direction, and the second driving member is arranged between and cooperates with the two abutting blocks.
4. The adjustable buffer stop module of claim 3, wherein, By controlling the second driving member, the two abutting blocks can be synchronously slid in the y direction and respectively extended to the two sides of the base.
5. Adjustable buffer stop module according to claim 3 or 4, characterized in that The first driving member includes an eccentric cam.
6. The adjustable bumper stop module of claim 1, wherein, The first adjusting position includes a matching cavity for accommodating the eccentric cam. The y direction size of the matching cavity is larger than the x direction size, and the x direction size of the matching cavity is matched with the eccentric cam. The y direction size of the matching cavity is larger than the eccentric cam.
7. The adjustable buffer stop module of claim 6, wherein, The second driving member is provided with a first guide slope on one side facing the two abutting blocks. The two abutting blocks are provided with a second guide slope on one side facing the second driving member. The first guide slope cooperates with the second guide slope. The second driving member is provided with a first threaded hole. The second adjusting assembly further includes an abutting screw matched and assembled with the first threaded hole. A first elastic element is arranged between the two abutting blocks. The elastic force of the first elastic element can make the two abutting blocks approach each other to retract into the base. The base and the corresponding positions of the two abutting blocks are provided with guide columns. The two abutting blocks are provided with guide grooves extending in the y direction. The guide columns are inserted into the guide grooves. The adjusting module further includes a third adjusting assembly for adjusting the z direction. The base is provided with a through hole, and the stopper is arranged in the through hole and can be vertically moved. The third adjusting assembly includes a clamping member and a third driving member. The clamping member is slidably arranged on the base and is provided with a clamping part on one side of the stopper. The third driving member is used to control the clamping part of the clamping member to move to the side close to the stopper to clamp the stopper. The third driving member includes a clamping screw. The clamping screw is provided with a third guide slope on the countersunk head. The clamping member is provided with a boss provided with a fourth guide slope. The base is provided with a second threaded hole and a via hole. The boss passes through the via hole and is opposite to the second threaded hole. The clamping screw is matched in the second threaded hole, and the third guide slope cooperates with the fourth guide slope.
8. Adjustable buffer stop module according to claim 6 or 7, characterized in that The third adjusting assembly further comprises a second elastic element; the second elastic element is located between the clamping part and the base, and the elastic force of the second elastic element is used to urge the clamping part to abut against the stopper.
9. The adjustable bumper stop module of claim 1, wherein, The base is provided with a cover plate on one side of the profile; the base is provided with a locking assembly; The locking assembly comprises a locking screw and a locking block; the base is provided with a locking groove, the locking groove penetrates through the base, the side of the locking groove away from the profile is provided with a limiting table, and the x-direction length of the locking groove is larger than the locking block; the locking block is located on the limiting table of the locking groove, and the locking screw is connected with the profile after penetrating through the locking block.
10. The adjustable buffer stop module of claim 9, wherein, The base is provided with a limiting column; the cover plate is provided with a limiting hole, and the limiting hole extends along the x-direction; the limiting column is penetrated in the limiting hole, and the limiting column is provided with a limiting piece.