Sleeve seat and sleeve depositing device comprising same
Patent Information
- Application Number
- CN202521433806.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-09
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-07-09
AI Technical Summary
[0003]然而,由于各尺寸套筒外径变化不一,故需要大量的套筒座来对应每一个尺寸,但并非每个场合或使用者会需要那么多种尺寸的套筒,预先给予过多尺寸的套筒座反而占用过多空间,且当多个套筒分层排列进行拿取或放置过程中,常会出现插挂不顺或挤压卡滞的情形,影响取用效率与整体稳定性
[0017] This utility model provides a sleeve base and a sleeve placement device including the sleeve. Through the double-layer insertion design of the first insertion part and the second insertion part, it can provide stable storage for sleeves of various specifications, improve the flexibility of use and space utilization.
Smart Images

Figure CN224751271U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a sleeve seat and a sleeve placement device including the same, and particularly to a sleeve seat and a sleeve placement device including the same. Background Technology
[0002] Socket tools are widely used in repair, assembly, and disassembly operations. To facilitate management and quick access, socket holders with storage functions are commonly found on the market. Traditional socket holders mostly use a single insert design, on which sockets of various sizes are sequentially hung to achieve storage and display functions.
[0003] However, since the outer diameter of each size of sleeve varies, a large number of sleeve holders are needed to accommodate each size. But not every occasion or user needs so many sizes of sleeves. Providing too many sizes of sleeve holders in advance will take up too much space. Moreover, when multiple sleeves are arranged in layers for picking or placing, there are often problems with insertion or jamming, which affects the efficiency of picking and the overall stability.
[0004] Therefore, it is necessary to provide a novel and progressive sleeve holder and a sleeve placement device including the same to solve the above problems. Utility Model Content
[0005] The main purpose of this utility model is to provide a sleeve base and a sleeve placement device including the sleeve. Through the double-layer insertion design of the first insertion part and the second insertion part, it can provide stable storage of sleeves of various specifications, improve the flexibility of use and space utilization.
[0006] To achieve the above objectives, this utility model provides a sleeve holder, comprising: a base, a first insertion portion, and a second insertion portion. The first insertion portion protrudes from the base along a first direction, and the first insertion portion can selectively accommodate a first sleeve; the second insertion portion protrudes from the first insertion portion along the first direction, and the second insertion portion can selectively accommodate a second sleeve, wherein, in the transverse direction of the first direction, the maximum size of the second insertion portion is smaller than the maximum size of the first insertion portion.
[0007] Preferably, the outer contour of the first plug portion is polygonal, and the outer contour of the second plug portion is polygonal; wherein the edges of the first plug portion and the edges of the second plug portion are arranged parallel to each other.
[0008] Preferably, the first insertion portion includes at least one first abutment portion for abutting against the first sleeve, and the second insertion portion includes at least one second abutment portion for abutting against the second sleeve. The at least one first abutment portion and the at least one second abutment portion are located on the same side and are arranged in a straight line along the first direction.
[0009] Preferably, the first insertion portion further includes two first grooves, which are respectively disposed on both sides of the at least one first locking portion, so that the at least one first locking portion can swing relative to the base. The second insertion portion further includes two second grooves, which are respectively disposed on both sides of the at least one second locking portion, so that the at least one second locking portion can swing relative to the base. The first groove and the second groove on the same side are interconnected in the first direction, and the at least one first locking portion and the at least one second locking portion are interconnected and move in tandem.
[0010] Preferably, the at least one first abutment includes a first body and a first head, the first body extending along the first direction and the first head protruding laterally from the first body; the at least one second abutment includes a second body and a second head, the second body extending along the first direction and the second head protruding laterally from the second body; wherein the second body and the first body are partially overlapped in the direction perpendicular to the first direction, and the first head is located in the overlapping section of the first body and the second body.
[0011] Preferably, the base includes a body and two arms. The first insertion portion protrudes from one side of the body, and the two arms protrude from the other side of the body at intervals, jointly defining a through-hole space. In the direction perpendicular to the first direction, the size of the body is not smaller than the size of the first insertion portion. The first insertion portion and the second insertion portion are arranged in a stepped configuration. In the first direction, the base has a first height, the first insertion portion protrudes from the base by a second height, and the second insertion portion protrudes from the first insertion portion by a third height. The first height is smaller than the third height, and the third height is smaller than the second height. The first insertion portion and the second insertion portion are coaxially arranged. The outer contour of the first insertion portion is rectangular, and the outer contour of the second insertion portion is rectangular. The number of at least one first locking portion is two, and the two first locking portions are symmetrically arranged; the number of at least one second locking portion is two, and the two second locking portions are symmetrically arranged; the structure of the second locking portion is the same as the structure of the first locking portion; the length of the overlapping section of the first body portion and the second body portion in the first direction is defined as a first length, the length of the first head portion in the first direction is defined as a second length, the first length is greater than the second length, and the ratio of the first length to the second length is between 1.2 and 2; the thickness of the first body portion in the direction perpendicular to the first direction is defined as a first thickness, the thickness of the first head portion in the direction perpendicular to the first direction is defined as a second thickness, the first thickness is greater than the second thickness, and the ratio of the first thickness to the second thickness is greater than 1.5.
[0012] Preferably, the outer contour of the first plug portion is polygonal, the outer contour of the second plug portion is polygonal, the edges of the first plug portion and the edges of the second plug portion are at least partially non-parallel, the first plug portion includes at least one first abutment, the second plug portion includes at least one second abutment, the at least one first abutment and the at least one second abutment are misaligned in the first direction, and the at least one first abutment and the at least one second abutment are in a separate, unconnected configuration.
[0013] To achieve the above objectives, this utility model further provides a sleeve placement device, comprising: a plurality of combination frames, a plurality of sliding rods, and a plurality of sleeve seats as described above. Each combination frame has a first splicing portion and a second splicing portion on each of its two sides, the first splicing portion and the second splicing portion having complementary concave and convex shapes, and the first splicing portion of one combination frame can be spliced and combined with the second splicing portion of another combination frame; the plurality of sliding rods are respectively housed in the plurality of combination frames; and the plurality of sleeve seats are slidably disposed on the plurality of sliding rods.
[0014] Preferably, it further includes a tray, and the plurality of assembly frames are detachably housed on the tray.
[0015] Preferably, the tray includes a tray body, a third splicing portion, a fourth splicing portion, and a stop portion. The third splicing portion and the fourth splicing portion are arranged face-to-face and spaced apart from each other on the tray body. The stop portion is arranged face-to-face and spaced apart from the tray body. The tray body, the stop portion, the third splicing portion, and the fourth splicing portion together define an accommodating space and an opening. The opening and the stop portion are arranged face-to-face and spaced apart. A plurality of the assembled frames are accommodated in the accommodating space. The third splicing portion and the fourth splicing portion have complementary concave and convex shapes. The third splicing portion and the fourth splicing portion can be spliced and combined with at least one of the assembled frames. Each assembled frame has a hanging hole through one end. The end of each assembled frame with the hanging hole protrudes from the tray body through the opening.
[0016] The advantages of this utility model are:
[0017] This utility model provides a sleeve base and a sleeve placement device including the sleeve. Through the double-layer insertion design of the first insertion part and the second insertion part, it can provide stable storage for sleeves of various specifications, improve the flexibility of use and space utilization. Attached Figure Description
[0018] Figure 1 This is a perspective view of a sleeve placement device according to an embodiment of the present utility model.
[0019] Figure 2 for Figure 1 The exploded diagram.
[0020] Figure 3This is a perspective view of a sleeve base according to an embodiment of the present utility model.
[0021] Figure 4 for Figure 3 Top view.
[0022] Figure 5 for Figure 3 The front view.
[0023] Figure 6 for Figure 3 Side view.
[0024] Figure 7 This is a cross-sectional view of the first sleeve connecting to the sleeve seat according to an embodiment of the present utility model.
[0025] Figure 8 This is a cross-sectional view of the second sleeve connecting to the sleeve seat according to an embodiment of the present utility model.
[0026] Figure 9 This is a perspective view of another set of cylindrical supports according to an embodiment of the present utility model.
[0027] Figure 10 for Figure 9 Top view.
[0028] Figure 11 This is a cross-sectional view of the first sleeve being fitted onto another sleeve seat according to an embodiment of the present invention.
[0029] Figure 12 This is a cross-sectional view of the second sleeve fitting onto another sleeve seat according to an embodiment of the present invention.
[0030] Figure 13 This is a perspective view of another set of cylindrical base configurations according to an embodiment of the present utility model.
[0031] Figure 14 for Figure 13 Top view.
[0032] Figure 15 This is a cross-sectional view of the first sleeve connecting to the second sleeve seat according to an embodiment of the present invention.
[0033] Figure 16 This is a cross-sectional view of the second sleeve connecting to another sleeve seat according to an embodiment of the present utility model. Detailed Implementation
[0034] The following examples illustrate possible implementations of this utility model, but are not intended to limit the scope of protection of this utility model. The prefixes "a" or "at least one" before the terms mentioned herein are not intended to limit the quantity. Depending on the requirements, there may also be "multiple" items. This variation in quantity is also within the scope of protection, as will be stated in advance.
[0035] Please refer to Figures 1 to 8 This shows an embodiment of the present invention. The sleeve base 1 of the present invention includes: a base 2, a first insertion part 3 and a second insertion part 4.
[0036] The first insertion part 3 protrudes from the base 2 along a first direction 6, and can selectively accommodate a first sleeve 71. The second insertion part 4 protrudes from the first insertion part 3 along the first direction 6, and can selectively accommodate a second sleeve 72. In the transverse direction 6, the maximum size of the second insertion part 4 is smaller than the maximum size of the first insertion part 3. In short, the first insertion part 3 and the second insertion part 4 are arranged in a stepped configuration. This stepped insertion part design allows for the easy separation and installation of first sleeves 71 and second sleeves 72 of different sizes, providing stable storage for multiple sleeve sizes and improving flexibility and space utilization.
[0037] The base 2 includes a body 21 and two arms 22. The first insertion part 3 protrudes from one side of the body 21, and the two arms 22 protrude from the other side of the body 21 at intervals to define a through space 23. Thus, the base 2 can be slidably fitted onto the rod for use. In the direction perpendicular to the first direction 6, the size of the body 21 is not smaller than the size of the first insertion part 3 to ensure that the body 21 has sufficient support area and rigid foundation.
[0038] In this embodiment, in the first direction 6, the base 2 has a first height 51, the first insertion part 3 protrudes from the base 2 with a second height 52, and the second insertion part 4 protrudes from the first insertion part 3 with a third height 53. The first height 51 is smaller than the third height 53, and the third height 53 is smaller than the second height 52. The lower base 2 can lower the center of gravity and improve overall stability. The first insertion part 3 and the second insertion part 4 adopt a stepped structure with different heights, which allows the user to clearly identify the installation position of the first sleeve 71 and the second sleeve 72 of different sizes, thereby improving the efficiency of picking and placing.
[0039] Preferably, the first insertion part 3 and the second insertion part 4 are coaxially configured, which can ensure insertion accuracy, improve concentricity stability, and enhance structural rigidity and load-bearing capacity.
[0040] Furthermore, the outer contour of the first plug-in portion 3 is polygonal, and the outer contour of the second plug-in portion 4 is polygonal. For example, but not limited to, the outer contour of the first plug-in portion 3 is rectangular, and the outer contour of the second plug-in portion 4 is rectangular. The edges of the first plug-in portion 3 and the edges of the second plug-in portion 4 are arranged parallel to each other, and the first sleeve 71 and the second sleeve 72 are handled in the same way, improving the user's retrieval efficiency.
[0041] Furthermore, the first insertion portion 3 includes at least one first abutment portion 31 for abutting against the first sleeve 71, and the second insertion portion 4 includes at least one second abutment portion 41 for abutting against the second sleeve 72. The at least one first abutment portion 31 and the at least one second abutment portion 41 are located on the same side and are arranged in a straight line along the first direction 6. The straight arrangement can simplify the mold process and the distribution of insertion force, and improve component consistency and assembly efficiency.
[0042] In this embodiment, the first insertion portion 3 further includes two first grooves 32, which are respectively disposed on both sides of the at least one first locking portion 31, so that the at least one first locking portion 31 can swing relative to the base 2. The second insertion portion 4 further includes two second grooves 42, which are respectively disposed on both sides of the at least one second locking portion 41, so that the at least one second locking portion 41 can swing relative to the base 2. The first groove 32 and the second groove 42 located on the same side are interconnected in the first direction 6. The at least one first locking portion 31 and the at least one second locking portion 41 are interconnected and move in tandem, which can improve the smoothness of loading and unloading the first sleeve 71 or the second sleeve 72 and avoid accidental jamming or damage.
[0043] In this embodiment, there are two first abutment portions 31, which are symmetrically arranged. There are also two second abutment portions 41, which are symmetrically arranged. The symmetrical structure helps to balance the forces on the left and right sides and avoid damage caused by uneven load. The structure of the second abutment portion 41 is the same as that of the first abutment portion 31.
[0044] Each of the first locking portions 31 includes a first body 311 and a first head 312. The first body 311 extends along the first direction 6, and the first head 312 protrudes laterally from the first body 311. Each of the second locking portions 41 includes a second body 411 and a second head 412. The second body 411 extends along the first direction 6, and the second head 412 protrudes laterally from the second body 411. The second body 411 and the first body 311 are partially overlapped in a direction perpendicular to the first direction 6, and the first head 312 is located in the overlapping section of the first body 311 and the second body 411. This overlapping configuration enhances the overall locking strength and stability, preventing breakage or loosening.
[0045] More specifically, the length of the overlapping section of the first body 311 and the second body 411 in the first direction 6 is defined as a first length 54, and the length of the first head 312 in the first direction 6 is defined as a second length 55. The first length 54 is greater than the second length 55, and the ratio of the first length 54 to the second length 55 is between 1.2 and 2, so as to take into account structural strength, insertion stability and elastic deformation.
[0046] More specifically, the thickness of the first body 311 in the direction perpendicular to the first direction 6 is defined as a first thickness 56, and the thickness of the first head 312 in the direction perpendicular to the first direction 6 is defined as a second thickness 57. The first thickness 56 is greater than the second thickness 57, and the ratio of the first thickness 56 to the second thickness 57 is greater than 1.5. The thick and thin structural design improves the rigidity of the insertion while retaining a local elastic deformation range to adapt to the corresponding adjustment of the hole specifications of different sleeves.
[0047] Please refer to Figure 1 , Figure 2 , Figures 9 to 12 Another sleeve seat 1A differs from the sleeve seat 1 described above in that the edges of the first insertion portion 3A and the second insertion portion 4A are at least partially non-parallel. For example, the outline of the lower first insertion portion 3A is rectangular, and the outline of the upper second insertion portion 4A is rhomboid.
[0048] The first plug-in portion 3A includes at least one first latching portion 31A, and the second plug-in portion 4A includes at least one second latching portion 41A. The at least one first latching portion 31A and the at least one second latching portion 41A are misaligned in the first direction 6, and the at least one first latching portion 31A and the at least one second latching portion 41A are unconnected and separated. The misalignment and separation configuration can effectively improve the expandability and structural diversity of the plug-in module, which is beneficial for the use of tools of multiple sizes and types.
[0049] Please refer to this again. Figure 1 , Figure 2 , Figures 13 to 16 Another set of socket 1B is similar, with at least one first locking part 31B and at least one second locking part 41B in a separate, unconnected configuration. This staggered and separate configuration effectively improves the expandability and structural diversity of the plug-in module, facilitating the use of tools of multiple sizes and types. It differs from another set of socket 1A in that the lower first plug-in part 3B is hexagonal, and the upper second plug-in part 4B is rectangular. If the second plug-in part 4B is used as a reference, extending the opposite sides of the first plug-in part 3B and the insertion hole of the first socket 71 yields a rhomboid outline, forming an upper rectangular and lower rhomboid configuration.
[0050] Clearly, the design concept of the sleeve seat 1B is the reverse of the sleeve seat 1A. Based on the purpose of being able to be compactly placed with other adjacent components when not in use to reduce the space occupied, the sleeve seat 1B further removes the rhomboid portion that extends beyond the base 2 to obtain the hexagonal first insertion portion 3B.
[0051] This utility model also provides a sleeve placement device, including: a plurality of combination frames 81, a plurality of slide bars 82, and a plurality of sleeve seats 1, 1A, and 1B as described above.
[0052] Each of the modular frames 81 has a first splicing portion 811 and a second splicing portion 812 on each of its two sides. The first splicing portion 811 and the second splicing portion 812 have complementary concave and convex shapes, and the first splicing portion 811 of one modular frame 81 can be spliced and combined with the second splicing portion 812 of another modular frame 81. The plurality of sliding rods 82 are respectively housed in the plurality of modular frames 81. The plurality of sleeve seats 1, 1A, and 1B are slidably mounted on the plurality of sliding rods 82. Through the modular splicing mechanism of the plurality of modular frames 81, users can quickly deploy a modular tool storage system according to their needs, improving retrieval efficiency.
[0053] Preferably, the sleeve placement device further includes a support plate 83, the plurality of assembly frames 81 can be detachably housed on the support plate 83, and can be quickly moved as a whole. The support plate 83 can restrain and protect the plurality of assembly frames 81 from the outside in, so as to enhance the stability of the splicing.
[0054] The tray 83 includes a tray body 831, a third splicing portion 832, a fourth splicing portion 833, and a stop portion 834. The third splicing portion 832 and the fourth splicing portion 833 are arranged face-to-face and spaced apart, protruding from the tray body 831. The stop portion 834 protrudes from the tray body 831 and laterally connects the third splicing portion 832 and the fourth splicing portion 833. The tray body 831, the stop portion 834, and the third splicing portion 832... Together with the fourth splicing part 833, a receiving space 835 and an opening 836 are defined. The opening 836 and the blocking part 834 are arranged face-to-face at intervals. A plurality of the combined frames 81 are accommodated in the receiving space 835. The third splicing part 832 and the fourth splicing part 833 have complementary concave and convex shapes. The third splicing part 832 and the fourth splicing part 833 can be spliced and combined with at least one of the combined frames 81.
[0055] Preferably, each of the combination frames 81 is provided with a hanging hole 813 at one end. The end of each combination frame 81 with the hanging hole 813 protrudes from the plate body 831 through the open opening 836, which facilitates hanging display and three-dimensional storage.
[0056] The above description is a preferred embodiment of the present utility model and the technical principles applied thereto. For those skilled in the art, any obvious changes such as equivalent transformations or simple substitutions based on the technical solution of the present utility model without departing from the spirit and scope of the present utility model shall fall within the protection scope of the present utility model.
Claims
1. A sleeve seat, characterized in that, include: A base; A first insertion part protrudes from the base along a first direction and can be selectively fitted with a first sleeve. and A second insertion part protrudes from the first insertion part along the first direction, and can selectively be fitted with a second sleeve. In the first transverse direction, the maximum size of the second insertion part is smaller than the maximum size of the first insertion part.
2. The sleeve seat as described in claim 1, characterized in that, The outer contour of the first connector is polygonal, and the outer contour of the second connector is polygonal; wherein the edges of the first connector and the edges of the second connector are arranged parallel to each other.
3. The sleeve seat as described in claim 2, characterized in that, The first insertion portion includes at least one first locking portion for abutting against the first sleeve, and the second insertion portion includes at least one second locking portion for abutting against the second sleeve. The at least one first locking portion and the at least one second locking portion are located on the same side and are arranged in a straight line along the first direction.
4. The sleeve seat as described in claim 3, characterized in that, The first insertion portion further includes two first grooves, which are respectively disposed on both sides of the at least one first locking portion, so that the at least one first locking portion can swing relative to the base. The second insertion portion further includes two second grooves, which are respectively disposed on both sides of the at least one second locking portion, so that the at least one second locking portion can swing relative to the base. The first groove and the second groove on the same side are interconnected in the first direction, and the at least one first locking portion and the at least one second locking portion are interconnected and move in tandem.
5. The sleeve seat as described in claim 4, characterized in that, The at least one first abutment includes a first body and a first head, the first body extending along the first direction and the first head protruding laterally from the first body; the at least one second abutment includes a second body and a second head, the second body extending along the first direction and the second head protruding laterally from the second body; wherein the second body and the first body are partially overlapped in the direction perpendicular to the first direction, and the first head is located in the overlapping section of the first body and the second body.
6. The sleeve seat as described in claim 5, characterized in that, The base includes a body and two arms. A first insertion portion protrudes from one side of the body, and the two arms protrude from the other side of the body at intervals, jointly defining a through-hole space. In the direction perpendicular to the first direction, the size of the body is not smaller than the size of the first insertion portion. The first insertion portion and the second insertion portion are arranged in a stepped configuration. In the first direction, the base has a first height, the first insertion portion protrudes from the base by a second height, and the second insertion portion protrudes from the first insertion portion by a third height. The first height is smaller than the third height, and the third height is smaller than the second height. The first insertion portion and the second insertion portion are coaxially arranged. The outer contour of the first insertion portion is rectangular, and the outer contour of the second insertion portion is rectangular. The at least one The number of first abutment portions is two, and the two first abutment portions are symmetrically arranged. The number of at least one second abutment portion is two, and the two second abutment portions are symmetrically arranged. The structure of the second abutment portion is the same as the structure of the first abutment portion. The length of the overlapping section of the first body portion and the second body portion in the first direction is defined as a first length. The length of the first head portion in the first direction is defined as a second length. The first length is greater than the second length, and the ratio of the first length to the second length is between 1.2 and 2. The thickness of the first body portion in the direction perpendicular to the first direction is defined as a first thickness. The thickness of the first head portion in the direction perpendicular to the first direction is defined as a second thickness. The first thickness is greater than the second thickness, and the ratio of the first thickness to the second thickness is greater than 1.
5.
7. The sleeve seat as described in claim 1, characterized in that, The outer contour of the first plug portion is polygonal, the outer contour of the second plug portion is polygonal, the edges of the first plug portion and the edges of the second plug portion are at least partially non-parallel, the first plug portion includes at least one first locking portion, the second plug portion includes at least one second locking portion, the at least one first locking portion and the at least one second locking portion are misaligned in the first direction, and the at least one first locking portion and the at least one second locking portion are in a separate, unconnected configuration.
8. A sleeve placement device, characterized in that, include: A plurality of combination frames, each of which has a first splicing part and a second splicing part on each of its two sides. The first splicing part and the second splicing part have complementary concave and convex shapes. The first splicing part of one combination frame can be spliced and combined with the second splicing part of another combination frame. A plurality of sliding rods are respectively housed in the plurality of combined frames; and A plurality of sleeve seats as described in any one of claims 1 to 7 are slidably disposed on the plurality of slide rods.
9. The sleeve placement device as described in claim 8, characterized in that, It also includes a tray, and the plurality of assembly frames are detachably housed on the tray.
10. The sleeve placement device as described in claim 9, characterized in that, The tray includes a tray body, a third splicing portion, a fourth splicing portion, and a stop portion. The third splicing portion and the fourth splicing portion are arranged face-to-face and spaced apart from each other on the tray body. The stop portion is arranged face-to-face and spaced apart from the tray body. A plurality of the assembled frames are accommodated in the accommodating space. The third splicing portion and the fourth splicing portion have complementary concave and convex shapes. The third splicing portion and the fourth splicing portion can be spliced and combined with at least one of the assembled frames. Each assembled frame has a hanging hole through one end. The end of each assembled frame with the hanging hole protrudes from the tray body through the opening.