Toolset Structure
Patent Information
- Application Number
- TW114105680
- Authority / Receiving Office
- TW · TW
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2045-02-16
AI Technical Summary
Conventional tool sets have limited visibility and retrieval efficiency, with only one open slot for viewing the toolbox contents, requiring users to unfold the entire box to find specific tools, and the slider mechanism is prone to slippage and inadequate protection.
A tool set structure with multiple through slots allowing tools to be visible from two sides, featuring a secure locking mechanism and pivotally connected bodies for enhanced visibility and protection.
The structure enables convenient viewing and retrieval of tools, provides secure storage, and prevents accidental exposure or damage, enhancing usability and protection.
Smart Images

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Abstract
Description
Technical Field
[0001] This invention relates to a tool set structure, and more particularly to a tool set structure having a first through slot, a second through slot, a third through slot, a fourth through slot and a fifth through slot, so that the first tool, the second tool, the third tool and the fourth tool can be seen from two sides of the tool set structure, thus providing better viewing and use. Prior Technology
[0002] According to the conventional tool set structure known to us, such as EU Patent No. EP2361733B1, and with reference to Figures 1, 2 and 8, in this tool set structure, there is a tool box 1, which is provided with a slide rail 18, and a through slot on the other side of the tool box 1, which allows the user to view the interior of the tool box 1; a slider 16, which slides on the slide rail 18, and the slider 16 can move left and right on the slide rail 18 to restrict a tool 11 to be confined in a receiving slot so as not to fall out, or to allow the tool 11 to be taken out from the receiving slot; there are multiple tools, which are housed in other receiving spaces of the tool box 1.
[0003] However, the lack of this conventional toolset structure lies in: 1. The tool box 1 has only one open slot for the user to view the inside of the tool box 1. When the user wants to take out a tool of a specific size or specification, the user must unfold the entire tool box 1 to look for the required tool. This tool set structure is slightly inconvenient in practical use and has room for improvement. 2. The tool box 1 is equipped with a slider 16. The left and right displacement of the slider 16 is used to control the tool 11 to be confined in the receiving groove, or to remove the tool 11 from the receiving groove. However, the slider 16 can only cover part of the handle structure of the tool 11. The working end and part of the handle structure of the tool 11 are exposed outside the tool box 1 and are easily damaged by collision. The slider 16 can provide room for improvement in the protective structure of the tool 11. 3. The slider 16 is slidably mounted on the slide rail 18. The slider 16 is positioned on the slide rail 18 by using the protrusions on the slide rail 18. However, the sliding positioning structure of the slide rail type is prone to slippage, which can cause insecure locking.
[0004] In view of the shortcomings of the conventional tool set structure, the inventor, with many years of experience in manufacturing, production and design in related industries, has finally developed a tool set structure that can solve the drawbacks of conventional ones. Summary of the Invention
[0005] The problem this invention aims to solve: In conventional tool sets, the toolbox only has one open slot for the user to view the inside of the toolbox, requiring the user to fully unfold the toolbox to find the required tool. The tool set structure of this invention has the first, second, third, fourth, and fifth open slots, allowing the first, second, third, and fourth tools to be visible from two sides, thus providing better viewing and retrieval efficiency.
[0006] Technical means to solve the problem: The present invention relates to a tool assembly structure, which includes: a first body having a first receiving groove, a first pivot, a second receiving groove, two second pivots, a plurality of third receiving grooves, a fourth receiving groove, a first open groove, a fifth receiving groove, and a second open groove; a second body assembly disposed at the first receiving groove; a third body assembly disposed at the second receiving groove; the third body assembly having a plurality of fitting parts; a fourth body assembly having two fourth pivots pivotally connected to the two first pivots, such that the fourth body assembly is pivotally connected to the first body, the fourth body assembly and the first body assembly can be in a closed state or in an unfolded state relative to each other, the fourth body assembly having a sixth receiving groove aligned with the fifth receiving groove, and the sixth receiving groove having a third open groove, a fourth open groove, and a fifth open groove.
[0007] Compared with the prior art, the fourth body is closed relative to the first body. The two second tools are housed in the two fourth slots through the first through slot. The fifth tool is housed in the sixth and fifth slots through the second and third through slots. The plurality of third tools are housed in the first slot through the fourth through slot, and the two second tools are housed in the two fourth slots. The plurality of fourth tools are housed in the plurality of fitting parts and the plurality of first tools are housed in the plurality of third slots through the fifth through slot. The tool set structure is provided with the first, second, third, fourth, and fifth through slots to allow the user to view the interior of the tool set structure, making it convenient for the user to view and take it.
[0008] To ensure that the committee members and those skilled in the art fully understand the effects of this invention, the structure and composition of this invention are described below with reference to the drawings and figures. However, the following description is only for explaining the embodiments of this invention and is not intended to limit this invention in any way. Therefore, any modifications or alterations made within the spirit of this invention should still fall within the protection scope of this invention. Simple Explanation of the Diagram
[0009] [Figure 1] is an exploded perspective view of the tool set structure of the present invention. [Figure 2] is a perspective view of the first body of the tool set structure of the present invention. [Figure 3] is another perspective view of the first body of the tool set structure of the present invention. [Figure 4] is a perspective view of the second body of the tool set structure of the present invention. [Figure 5] is a schematic diagram of the first combination of the first body and the second body of the tool set structure of the present invention. [Figure 6] is a schematic diagram of the second combination of the first body and the second body of the tool set structure of the present invention. [Figure 7] is a schematic diagram of the third combination of the first body and the second body of the tool set structure of the present invention. [Figure 8] is a top view of the tool set structure of the present invention after the first body and the second body are combined. [Figure 9] is a side view of the third body of the tool set structure of the present invention. [Figure 10] is an enlarged view of section A in the tool set structure diagram 9 of the present invention. [Figure 11] is a perspective view of the fourth body of the tool set structure of the present invention. [Figure 12] is a three-dimensional assembly diagram of the tool set structure of the present invention. [Figure 13] is a side view of the tool set structure of the present invention. [Figure 14] is a first operational schematic diagram of the tool set structure of the present invention. [Figure 15] is a second operational schematic diagram of the tool set structure of the present invention. [Figure 16] is a perspective view of the second embodiment of the tool set structure of the present invention. Implementation
[0010] Please refer to Figures 1 to 12. Figure 1 is an exploded perspective view of the tool set structure of the present invention; Figure 2 is a perspective view of the first body 10 of the tool set structure of the present invention; Figure 3 is another perspective view of the first body 10 of the tool set structure of the present invention; Figure 4 is a perspective view of the second body 20 of the present invention; Figure 5 is a schematic diagram of the first combination of the first body 10 and the second body 20 of the present invention; Figure 6 is a schematic diagram of the second combination of the first body 10 and the second body 20 of the present invention; Figure 7 is a schematic diagram of the third combination of the first body 10 and the second body 20 of the present invention; Figure 8 is a top view of the first body 10 and the second body 20 of the present invention after combination; Figure 9 is a side view of the third body 30 of the present invention; Figure 10 is an enlarged view of point A in Figure 9 of the present invention; Figure 11 is a perspective view of the fourth body 50 of the present invention; Figure 12 is a perspective combined view of the tool set structure of the present invention. The present invention relates to a tool set structure, which includes:
[0011] A first body 10 is provided with a first receiving groove 11, the first receiving groove 11 having two open groove-like sides. A first pivot portion 111 is provided on the outer edges of both ends of the first receiving groove 11, the first pivot portion 111 being a non-through circular hole. A first locking portion 112 is provided at the first pivot portion 111, one end of the first locking portion 112 being a protrusion and the other end being a groove. A first through groove 113 is provided at both ends of the first receiving groove 11, the first through groove 113 being located at the first pivot portion 111 and the first locking portion 112. The first receiving groove 11 is provided with two second locking portions 114, the second locking portions 114 being elastic protrusions. The second locking part 114 is slightly elastic and can be pressed downwards. The two second locking parts 114 are respectively disposed at the two ends of the first receiving groove 11. The two second locking parts 114 are close to the first through groove 113. The first receiving groove 11 is provided with a first surface 115. A second surface 116 is provided at the middle position of the first surface 115. The second surface 116 divides the first surface 115 into two sides. The second surface 116 and the first surface 115 have different surface shapes. The second surface 116 is concave relative to the first surface 115. The height of the second surface 116 is lower than the height of the first surface 115. The two second locking parts 114 are disposed within the range of the second surface 116.
[0012] The first body 10 is provided with a second receiving groove 12, which is located on the opposite side of the first receiving groove 11. The second receiving groove 12 is provided with two second pivot portions 121, which are respectively located at two ends of the second receiving groove 12. The two second pivot portions 121 are in the shape of a circular hole or a circular groove. Each second pivot portion 121 is provided with a first abutting portion 122 on one side, which is in the shape of a protrusion or a flange.
[0013] The first body 10 is provided with a plurality of third receiving grooves 13, which are located on one side of the second receiving groove 12. The plurality of third receiving grooves 13 are arranged in a straight line and are groove-shaped.
[0014] The first body 10 is provided with a fourth receiving groove 14, which is located between the first receiving groove 11 and the second receiving groove 12. The fourth receiving groove 14 is provided with a plurality of third locking parts 141, which are in the shape of clamping blocks. The fourth receiving groove 14 is provided with at least one first open groove 142, which is located between the clamping blocks of the plurality of third locking parts 141. The first open groove 142 is in the shape of an elongated groove.
[0015] The first body 10 is provided with a fifth receiving groove 15 at one end. The fifth receiving groove 15 is provided at one end of the first receiving groove 11, the second receiving groove 12 and the fourth receiving groove 14. The fifth receiving groove 15 is provided with a second open groove.
[0016] A second body 20, which is sheet-shaped, is assembled at the first receiving groove 11. Each end of the second body 20 has a receiving portion 21 that accommodates the first through groove 113. The second body 20 has two fourth locking portions 22, each locking with each of the second locking portions 114. Each fourth locking portion 22 is located near each receiving portion 21 and is perforated or slotted. The second body 20 has a first... The second body 20 has three surfaces 23 and one fourth surface 24. The third surface 23 and the fourth surface 24 are on different planes. The third surface 23 is flush with or attached to the first surface 115, and the fourth surface 24 is flush with or attached to the second surface 116. The second body 20 is provided with a plurality of fifth locking parts 25. The plurality of fifth locking parts 25 are slightly U-shaped metal springs. The two ends of the plurality of fifth locking parts 25 respectively abut against the third surface 23. The U-shaped protrusions of the plurality of fifth locking parts 25 are aligned with the fourth surface 24. The plurality of fifth locking parts 25 are arranged in a straight line.
[0017] The receiving portion 21 at both ends accommodates the first through slot 113 at both ends. Each fourth locking portion 22 is locked to each second locking portion 114, so the second body 20 will not shift left or right at the first receiving slot 11. The third surface 23 is flush with or attached to the first surface 115, and the fourth surface 24 is flush with or attached to the second surface 116, so the second body 20 will not shift back and forth at the first receiving slot 11.
[0018] Please refer to Figures 5 to 7 for the first to third combined schematic diagrams of the first body 10 and the second body 20. When the second body 20 is assembled into the first receiving groove 11, the second body 20 is inclined relative to the first receiving groove 11, that is, one end of the second body 20 is inclined, and the receiving portion 21 at this end is inserted into the first through groove 113 at the same end. Then, the second body 20 is placed flat in the first receiving groove 11, with the third surface 23 abutting against the first surface 115, and the fourth surface 24 abutting against the second surface 116. The second body 20 is then... The second locking part 114 is pressed against, and the second locking part 114 is pressed against, pushing the second body 20 to the left. The receiving part 21 at the other end of the second body 20 then extends into the first through groove 113 at the same end. The receiving parts 21 at both ends are respectively received in the first through grooves 113 at both ends. The fourth locking part 22 then moves to align with the second locking part 114. The fourth locking part 22 elastically returns to its original position, and the fourth locking part 22 then locks against the second locking part 114. The first body 10 and the second body 20 are combined as shown in Figure 8.
[0019] The plurality of fifth locking parts 25 may be in the form of a plurality of single elements, and the plurality of fifth locking parts 25 are further assembled on the second body 20, and the plurality of fifth locking parts 25 can slide on the second body 20 respectively;
[0020] A third body 30, which is a long strip block, is assembled at the second receiving groove 12 and abuts against one side of the plurality of third receiving grooves 13. Each of the two ends of the third body 30 is provided with a third pivot 31, and each third pivot 31 is pivotally connected to each of the second pivots 121, allowing the third body 30 to rotate slightly at the second receiving groove 12. When rotating, the third body 30 reliably abuts against the first abutment portion 122 to limit the maximum angle of rotation.
[0021] The third body 30 is provided with a plurality of fitting parts 32, which are arranged in a straight line. Each of the plurality of fitting parts 32 is provided with two fifth surfaces 321 and two sixth surfaces 322. The two fifth surfaces 321 and the two sixth surfaces 322 are opposite to each other. The two fifth surfaces 321 are adjacent to each other and form a 120-degree angle between them. The two sixth surfaces 322 are adjacent to each other and form a 120-degree angle between them. The fifth surfaces 321 and the sixth surfaces 322 are... The surfaces 321 and 322 are not adjacent. A first space 323 is formed between the two fifth surfaces 321, providing structural elasticity. A second space 324 is formed between the two sixth surfaces 322, and the second space 324 has a notch, providing structural elasticity. The interior of the fitting part 32 forms a hexagon 325, which has six faces. The two fifth surfaces 321 and the two sixth surfaces 322 form four of the faces of the hexagon 325. The plurality of fitting parts 32 can accommodate tools with hexagonal cross-sections.
[0022] The structure of the plurality of third receiving slots 13 may be the same as the structure of the plurality of fitting parts 32, and the number of the plurality of third receiving slots 13 may be the same as the number of the plurality of fitting parts 32 and all of them are arranged in the same straight line.
[0023] A plurality of first tools 40 are housed within a plurality of third receiving slots 13, and the plurality of first tools 40 are screwdriver bit structures;
[0024] At least one second tool 41 is disposed in the fourth receiving groove 14 and is locked onto the third locking part 141. One of the second tools 41 is a ratchet wrench structure, and the other second tool 41 is a screwdriver connector structure, which is locked onto the other third locking part 141.
[0025] A plurality of third tools 42 are respectively fitted onto a plurality of fifth locking parts 25. The plurality of third tools 42 have a sleeve structure and are of various different sizes.
[0026] A plurality of fourth tools 43, each of which is respectively housed within each of the fitting portions 32, wherein the plurality of fourth tools 43 are screwdriver head structures;
[0027] A fourth body 50 is provided with two fourth pivots 51, which are pivotally connected to two first pivots 111, so that the fourth body 50 is pivotally connected to the first body 10. The fourth body 50 and the first body 10 can be closed or unfolded relative to each other. The fourth body 50 can only be rotated open relative to the first body 10 by a certain angle. Each fourth pivot 51 has a sixth locking part 52 on one side. When the fourth body 50 is closed or unfolded relative to the first body 10, the sixth locking part 52 is positively locked to the first locking part 112, so that the fourth body 50 is in a closed or unfolded position relative to the first body 10. In the relative positioning configuration, one of the sixth locking portions 52 is in the shape of a protrusion, and the other of the sixth locking portions 52 is in the shape of a groove. One end of the fourth body 50 is provided with a sixth receiving groove 53, which is aligned with the fifth receiving groove 15. At least one seventh locking portion 54 is provided in the sixth receiving groove 53, which is two opposing clamping blocks. A third through groove 55 is provided in the sixth receiving groove 53. The fourth body 50 is provided with a fourth through groove 56, which is located between the two fourth pivot portions 51. The fourth body 50 is provided with a fifth through groove 57, which is located on the other side of the fourth through groove 56.
[0028] A fifth tool 60, which is a handle structure, is housed between the fifth receiving groove 15 and the sixth receiving groove 53, and is secured to the seventh locking part 54;
[0029] Please refer to Figure 13, a side view of the tool set structure of the present invention. The fourth body 50 is closed relative to the first body 10. The two second tools 41 are housed in the fourth cavity 14 through the first through slot 142. The fifth tool 60 is housed in the sixth cavity 53 and the fifth cavity 15 through the second through slot 151 and the third through slot 55 through the third through slot 56 through the fourth through slot 56 through the fourth through slot 56 through the fourth through slot 57 through the fifth ...
[0030] Please refer to Figure 14, which is a first operational schematic diagram of the tool set structure of the present invention, and Figure 15, which is a second operational schematic diagram of the tool set structure of the present invention. The fourth body 50 is rotated open by an angle around the two fourth pivots 51. The fourth body 50 is in an open state relative to the first body 10, as shown in Figure 14. The third body 30 can be rotated by an angle around the two third pivots 31, which makes it convenient for the user to pick up the fourth tool 43 at the fitting part 32 or the first tool 40 at the third receiving groove 13, as shown in Figure 15.
[0031] Please refer to Figure 16, which is a perspective view of the second embodiment of the tool set structure of the present invention. In this embodiment, the fourth receiving groove 14 is only a groove, and a receiving box 70 is added. The receiving box 70 is assembled or fixed in the fourth receiving groove 14, and the receiving box 70 can accommodate the second tool 41.
[0032] The advantages of the tool set structure of this invention are as follows: 1. The fourth body 50 is closed relative to the first body 10. The two second tools 41 are visible through the first through-slot 142 and housed in the two fourth through-slots 14. The fifth tool 60 is visible through the second through-slot 151 and the third through-slot 55 and housed in the sixth through-slot 53 and the fifth through-slot 15, respectively. The plurality of third tools 42 are visible through the fourth through-slot 56 and housed in the first through-slot 11, as well as the two second tools. 41 is housed in two of the fourth receiving slots 14. The fifth through slot 57 reveals that the plurality of fourth tools 43 are housed in the plurality of fitting parts 32 and the plurality of first tools 40 are housed in the plurality of third receiving slots 13. The tool set structure is provided with the first through slot 142, the second through slot 151, the third through slot 55, the fourth through slot 56 and the fifth through slot 57 so that the user can see the inside of the tool set structure and easily take it out. 2. The tool set structure is provided with the first through groove 142, the second through groove 151, the third through groove 55, the fourth through groove 56 and the fifth through groove 57. The first tool 40, the second tool 41, the third tool 42 and the fourth tool 43 can be seen from two sides of the tool set structure, which has the function of convenient viewing and use. 3. The tool set structure is pivotally connected by the first body 10 and the fourth body 50. The first tool 40, the second tool 41, the third tool 42 and the fourth tool 43 are more securely protected and do not fall out. The first body 10 is provided with the first through groove 142 and the second through groove 151. The fourth body 50 is provided with the third through groove 55, the fourth through groove 56 and the fifth through groove 57, thus having a dual function of viewing. 4. The receiving portion 21 at both ends is used to receive the first through groove 113 at both ends. Each of the fourth locking portions 22 is locked with each of the second locking portions 114, so that the second body 20 will not shift left or right at the first receiving groove 11. The third surface 23 is flush with or attached to the first surface 115, and the fourth surface 24 is flush with or attached to the second surface 116, so that the second body 20 will not shift back and forth at the first receiving groove 11. The second body 20 is positioned in all four directions with the first receiving groove 11, so that the second body 20 is securely assembled at the first receiving groove 11. 5. The second body 20 and the plurality of third tools 42 can only be removed after both of the second locking parts 114 are pressed down simultaneously. The second body 20 is unlikely to fall out of the first receiving groove 11 due to dropping or other factors. 6. After the second body 20 and the plurality of third tools 42 are removed from the first receiving groove 11, the second body 20 and the plurality of third tools 42 can be used as a set, and the tool set structure has a more expanded usage state. 7. The third locking part 141 is provided at the first through groove 142, the seventh locking part 54 is provided at the third through groove 55, and the second tool 41 and the fifth tool 60 are accommodated in a more appropriate and more protected locking position. 8. When the fourth body 50 is closed or unfolded relative to the first body 10, the sixth locking part 52 is positively locked to the first locking part 112. Whether the fourth body 50 is closed or unfolded relative to the first body 10, the fourth body 50 is positioned relative to the first body 10 and has a limiting effect.
[0033] Therefore, the tool set structure of this invention has industrial applicability, novelty and progress, and can meet the application requirements for an invention patent. Therefore, this application is filed in accordance with the law.
[0034] 10:The first ontology 11: First Container 111: First Pivot 112: First Card Production Department 113: First slot 114: Second Card Manufacturing Department 115: First Page 116: Second page 12: Second container 121: Second Pivot 122: First Reliance Section 13: Third Container 14: Fourth container 141: Third Card Production Department 142: First through slot 15: Fifth Container 151: Second through slot 20: Second Body 21: Compartment 22: Fourth Card Production Department 23: Third page 24: Fourth page 25: Fifth Card Production Department 30: The Third Body 31: Third Pivot 32: Fitting Part 321: Page 5 322: Page Six 323: First Space 324: The Second Space 325: Hexagon 40: The First Tool 41: The Second Tool 42: The Third Tool 43: The Fourth Instrument 50: The Fourth Body 51: Fourth Pivot 52: Sixth Card Production Department 53: Sixth container 54: Seventh Card Production Department 55: Third through slot 56: Fourth through slot 57: Fifth through slot 60: The Fifth Instrument 70: Container
Claims
1. A toolkit architecture, comprising: A first body, the first body system is provided with a first receiving groove, and a first pivot is provided on the outer sides of the two ends of the first receiving groove; The first body has a second receiving groove located on the opposite side of the first receiving groove, and the second receiving groove has two second pivots; the first body has a plurality of third receiving grooves located on one side of the second receiving groove, the plurality of third receiving grooves being arranged in a straight line and having a groove shape; the first body has a fourth receiving groove located between the first receiving groove and the second receiving groove, and the fourth receiving groove has at least one first through groove; one end of the first body has a fifth receiving groove located at one end of the first receiving groove, the second receiving groove, and the fourth receiving groove, and the fifth receiving groove has a second through groove; a second body is assembled at the first receiving groove; A third body is assembled at the second receiving groove, and the third body abuts against one side of the plurality of third receiving grooves. Each of the two ends of the third body is provided with a third pivot, and each third pivot is pivotally connected to each of the second pivots, so that the third body can rotate slightly at the second receiving groove. The third body is provided with a plurality of fitting parts, and the plurality of fitting parts are arranged in a straight line. A fourth body, the fourth body system having two fourth pivots, the two fourth pivots being pivotally connected to the two first pivots, so that the fourth body system is pivotally connected to the first body. The fourth body system and the first body system can be in a closed state or an unfolded state relative to each other. The fourth body system can only be rotated open relative to the first body system by an angle. One end of the fourth body system has a sixth receiving groove, the sixth receiving groove being aligned with the fifth receiving groove. The sixth receiving groove has a third through groove. The fourth body system has a fourth through groove, the fourth through groove being located between the two fourth pivots. The fourth body system has a fifth through groove, the fifth through groove being located on the other side of the fourth through groove.
2. The toolkit structure as described in claim 1, wherein, The first receiving groove has two open grooves on both sides. The first pivot is a non-through circular hole. The first pivot is provided with a first locking part. The first locking part at one end is a protrusion and the first locking part at the other end is a groove. Each of the fourth pivots has a sixth locking part on one side. When the fourth body is closed or unfolded relative to the first body, the sixth locking part is aligned with the first locking part, so that the fourth body is positioned relative to the first body. One of the sixth locking parts is a protrusion and the other is a groove.
3. The toolkit structure as described in claim 2, wherein, The first receiving groove is provided with a first through groove at both ends. The first through groove is provided at the first pivot and the first locking part. The first receiving groove is provided with two second locking parts. The second locking parts are in the shape of elastic protrusions. The second locking parts are slightly elastic and can be pressed downward. The two second locking parts are respectively provided at the two ends of the first receiving groove. The two second locking parts are close to the first through groove. The first receiving groove is provided with a first surface. A second surface is provided at the middle position of the first surface. The second surface divides the first surface into two sides. The second surface and the first surface are different in shape. The second surface is concave relative to the first surface. The height of the second surface is lower than the height of the first surface. The two second locking parts are provided within the range of the second surface. The second body is in the shape of a sheet. The second body has two... The end portion is provided with a receiving portion that accommodates the first through groove. The second body has two fourth locking portions, each of which locks into each of the second locking portions. Each fourth locking portion is located near the receiving portion and is perforated or slotted. The second body has a third surface and a fourth surface, which are not on the same plane. The third surface is flush with or attached to the first surface, and the fourth surface is flush with or attached to the second surface. The second body has a plurality of fifth locking portions, which are slightly U-shaped metal springs. The two ends of the plurality of fifth locking portions abut against the third surface, and the U-shaped protrusions of the plurality of fifth locking portions are aligned with the fourth surface. The plurality of fifth locking portions are arranged in a straight line.
4. The toolkit structure as described in claim 1, wherein, The two second pivots are respectively placed at the two ends of the second receiving groove. The two second pivots are in the shape of a circular hole or a circular groove. Each of the second pivots has a first abutment on one side, which is in the shape of a protrusion or a flange. The third body is a long block. When the third body rotates, it can reliably abut against the first abutment to limit the maximum angle of rotation of the third body.
5. The toolkit structure as described in claim 3, wherein, The fourth cavity is provided with a plurality of third locking parts, which are in the shape of clamping blocks. The first open groove is provided between the clamping blocks of the plurality of third locking parts and is in the shape of an elongated groove.
6. The toolkit structure as described in claim 3, wherein, The receiving portion at both ends accommodates the first through slot at both ends. Each of the fourth locking portions is locked to each of the second locking portions, so that the second body will not shift left or right at the first receiving slot. The third surface is flush with or attached to the first surface, and the fourth surface is flush with or attached to the second surface, so that the second body will not shift back and forth at the first receiving slot.
7. The toolkit structure as described in claim 3, wherein, When the second body is assembled into the first receiving groove, the second body is tilted relative to the first receiving groove, that is, one end of the second body is tilted, and the receiving part at this end is inserted into the first through groove at the same end. Then the second body is placed flat in the first receiving groove, the third surface abuts against the first surface, and the fourth surface abuts against the second surface. The second body then presses against the second locking part. The second locking part is pressed against and pushes the second body to the left. The receiving part at the other end of the second body is inserted into the first through groove at the same end. The receiving parts at both ends are respectively received in the first through grooves at the two ends. The fourth locking part is displaced and aligned with the second locking part. The fourth locking part elastically returns to its original position and locks against the second locking part.
8. The toolkit structure as described in claim 3, wherein, The plurality of fifth locking parts can be in the form of a plurality of single elements, and the plurality of fifth locking parts are further assembled on the second body, and the plurality of fifth locking parts can slide on the second body respectively.
9. The toolkit structure as described in claim 1, wherein, Each of the plurality of fitting parts is provided with two fifth surfaces and two sixth surfaces. The two fifth surfaces and the two sixth surfaces are opposite to each other. The two fifth surfaces are adjacent to each other and form an angle of 10 degrees. The two sixth surfaces are adjacent to each other and form an angle of 10 degrees. The fifth surfaces and the sixth surfaces are not adjacent to each other. A first space is formed between the two fifth surfaces, which has structural elasticity. A second space is formed between the two sixth surfaces. The second space forms a gap, which has structural elasticity. The interior of the fitting part is formed into a hexagon. The hexagon has six faces. The two fifth surfaces and the two sixth surfaces form four of the faces of the hexagon. The plurality of fitting parts can accommodate tools with hexagonal cross-sections.
10. The toolkit structure as described in claim 1, wherein, The structure of the plurality of third receiving slots may be the same as the structure of the plurality of fitting parts, and the number of the plurality of third receiving slots may be the same as the number of the plurality of fitting parts, and all of them are arranged in the same straight line.
11. The toolkit structure as described in claim 5, wherein, The system includes a plurality of first tools, each housed within a plurality of third receiving slots, and each first tool having a screwdriver head structure; at least one second tool, housed within a fourth receiving slot and secured to a third securing portion, wherein one second tool has a ratchet wrench structure and another has a screwdriver connector structure, secured to another third securing portion; a plurality of third tools, each fitted onto a plurality of fifth securing portions, having a sleeve structure, and of various sizes; and a plurality of fourth tools, each housed within a fitted portion, and each fourth tool having a screwdriver head structure.
12. The toolkit structure as described in claim 11, wherein, The sixth cavity is provided with at least one seventh locking part, which is two opposing clamping blocks; a fifth tool is provided, which is a handle structure, and is housed between the fifth cavity and the sixth cavity, and is locked onto the seventh locking part.
13. The toolkit structure as described in claim 12, wherein, The fourth body is closed relative to the first body. The two second tools are visible in the fourth cavity through the first through slot. The fifth tool is visible in the sixth and fifth cavities through the second and third through slots. The plurality of third tools are visible in the first cavity through the fourth through slot and are locked onto the fifth locking part. The two second tools are also visible in the two fourth cavities. The plurality of fourth tools are visible in the plurality of fitting parts through the fifth through slot. The plurality of first tools are also visible in the plurality of third cavities.
14. The toolkit structure as described in claim 11, wherein, The fourth receiving slot is simply a slot-shaped area, with an additional receiving box provided. The receiving box is either assembled or fixed to the fourth receiving slot and can accommodate the second tool.