Storage device for a ratchet set and holder for a ratchet

EP4673282A1Pending Publication Date: 2026-01-07WERA WERKZEUGE GMBH
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Patent Information

Application Number
EP2024707005
Authority / Receiving Office
EP · EP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-02-28
Filing Date
2024-02-21
Publication Date
2026-01-07

AI Technical Summary

Technical Problem

Existing storage devices for ratchet sets are inefficient in terms of pack size, application range, and ease of tool removal/attachment, as they do not optimize space usage and stabilization during storage.

Method used

The design incorporates an elongated extension element with insertion and output extensions that can be inserted into nuts, along with clip-on holders and a holder for the screwing tool, allowing the device to fold into a cuboid shape for optimal space use and stabilization, featuring a ratchet with a head area wider than the largest nut for secure storage.

Benefits of technology

This configuration reduces pack size, increases application range, and simplifies the removal and attachment of tools by allowing the device to form a compact, stable cuboid shape during storage, ensuring secure positioning of nuts and the screwing tool.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a device with screwdrivers stored therein, having a flat main body (1) which has a textile inner side and a textile outer side and which has a plurality of flexurally stiff, flat portions (2, 3, 4, 5, 6) which are each separated from one another by hinges (7, 8, 9, 10) and which can be folded about the hinges (7, 8, 9, 10) from a tool removal position, in which the flat portions (2, 3, 4, 5, 6) lie substantially in one plane, into a storage position in which a first and a second wide flat portion (2, 4) of the flat portions (2, 3, 4, 5, 6) extend substantially at a right angle to a first narrow flat portion (3) of the flat portions (2, 3, 4, 5, 6) and parallel to one another, wherein on the inner side at least of the first narrow flat portion (3) push-on holders (11) are arranged in a first row extending parallel to the adjacent hinge (7), onto which push-on holders inserts (12) with different output profiles (12'') are fitted, wherein on an inner side of a different flat portion (5) a holder (13) is fastened which secures a screwdriver (14) having a handle (15) to the flat portion, wherein the inserts (12) each have a drive opening (12') into which an output extension (16, 20') of the screwdriver (14) and an elongation element (20), which is also fastened to the inner side of the main body (1), can be inserted, by means of a holder (13) a ratchet (14) is fastened to a second narrow flat portion (5), the head of which ratchet has a diameter that is larger than the diameter of the insert (12) with the largest diameter. An elongation element (20) extends next to the inserts (12).
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Description

Description Storage device for a ratchet set and holder for a ratchet field of technology

[0001] The invention relates to a device with screwing tools stored therein, comprising a flat base body having a textile inner side and a textile outer side, which has a plurality of rigid flat sections separated from one another by hinges, which can be folded from a tool removal position, in which the flat sections lie substantially in one plane, around the hinges into a storage position, in which a first and a second wide flat section of the flat sections extend substantially at right angles to a first narrow flat section of the flat sections and parallel to one another, wherein on the inner side of at least the first narrow flat section, in a first row running parallel to the adjacent hinge, slip-on holders are arranged, onto which nuts with different output profiles are slipped, wherein a holder is fastened to the inner side of a different flat section,which attaches a screwing tool having a handle to the flat section, wherein the nuts each have a drive opening into which a driven extension of the screwing tool and an extension element also attached to the inside of the base body can be inserted. State of the art

[0002] Such a storage device for a ratchet set is known from WO 2015 / 104167 A1. A base body consisting of several rigid flat sections carries a row of sockets on a first narrow flat section of the flat sections and a ratchet on a second narrow flat section, which has a handle and a Handle forms a drive extension that can be inserted into a drive opening of a nut.

[0003] DE 10 2007049304 A1 describes a screwing tool known as a ratchet with a handle located at one end of a handle arm. The other end of the handle arm forms a fork. A head is mounted between the two fork legs, forming a freewheel gear to which an output extension is coupled, so that the output extension is rotated incrementally when the handle arm is moved back and forth in one direction.

[0004] US 11,534,895 B2 describes a ratchet set consisting of sockets, each with a drive opening for inserting a drive extension of a screw driver and a working profile with a hexagonal cross-section that can be placed on a screw head. The screw driver shown there also has a head area whose width is greater than the diameter of the largest socket.

[0005] DE 10 2006 055 025 Al, DE 102011 054219 Al and DE 102014 119130 Al also belong to the state of the art. Summary of the invention

[0006] The invention is based on the object of improving the storage device described at the outset in a manner that is advantageous in use and, in particular, of reducing the packing size and / or increasing its range of applications and / or simplifying the removal or fastening of the screwing tool in the storage device.

[0007] According to a first aspect of the invention, it is proposed that an elongated extension element, which has an insertion opening at one end for inserting the output extension of the screwdriving tool and which also has an output extension at the other end that can be inserted into a drive opening of the socket, is arranged directly next to the row of sockets carried by the narrow flat section. The row of sockets is preferably directly adjacent to a hinge that separates the narrow flat section from an adjacent wide flat section. The extension element is fastened to the narrow flat section by holders. The holders can have two legs that are fastened to the flat section. The legs can be sections of an elastic loop fastened to the flat section.The legs can also be formed by U-shaped holding elements, wherein the extension element can be held between the U-legs. The extension element, which preferably rests touchingly or almost touchingly on the nuts, is immediately adjacent to another hinge that separates the narrow flat section from another adjacent wide flat section. The extension element, which is circular in cross-section, can extend over the entire catch of the hinge. The row of nuts does not need to extend over the entire length of the hinge. A short second extension element or another tool can be arranged between an edge of the narrow flat section and a last nut in the row of nuts. On the first narrow flat section there are several slip-on holders that are connected to the inside of the first narrow flat section. These can be individual slip-on holders.However, several clip-on mounts can also be supported by a common support. The clip-on mounts or the support can be connected to the narrow flat section by a form-fitting or other means. The flat sections preferably have a textile surface. This can be a fabric. It can be a two-layer fabric. be, with a stiffening plate arranged between the fabric layers. The two fabric layers can be connected to one another with a seam in the area of ​​the hinges. The slip-on brackets or the common support can be positively connected to the stiffening plate. The slip-on bracket can have a polygonal section that projects into one of the two openings in the nut. Preferably, the polygonal section, which can be designed as a square section, projects into the drive opening of the nut, which can have a square cross-section. It is provided that the square sections engage in the drive opening to form a latch, so that a latching force must be overcome to attach the nut to the polygonal section or to remove the nut from the polygonal section.However, it can also be provided that the square section of the slip-on holder is rotatable and locking projections protrude from the polygonal surfaces of the square section when the square section is rotated relative to a round section. The extension element is preferably fastened to the inside of the flat section by means of loops, whereby the loops can be formed from elastic fabric strips that can be sewn to the inside. In a tool removal position, the flat sections can be brought into a common plane. The axes of the nuts run perpendicular to this plane. In a storage position, the adjacent flat sections are perpendicular to one another. Two wide flat sections can run parallel to one another, whereby the two wide flat sections are spaced from each other by the width of the narrow flat section.In the storage position, at least the nut with the largest diameter can rest against the inside of its spatially assigned wide flat section. It can also be provided that the extension element rests against the inside of its spatially assigned wide flat section in the storage position. However, it can also be provided that one or more brackets are provided to secure the extension element to the base body. In the storage position, they rest against the inside of the adjacent wide flat section. However, it is also intended that the nut with the largest diameter, or the extension element or its holder, is slightly spaced from the associated wide flat section in the storage position.

[0008] According to a second aspect of the invention, the ratchet set has a ratchet with a head region whose greatest width is greater than the diameter of the largest socket arranged on the narrow flat section, wherein the ratchet is fastened to a second narrow flat section which, in the stored position, lies opposite the first narrow flat section and runs parallel to the first narrow flat section. In the stored position, the device takes the form of a cuboid, wherein the end faces not formed by the flat sections can be formed by tabs attached to the edges of a first wide flat section. For optimal use of space and stabilization of the device in the stored position as a cuboid, it is proposed that the two narrow flat sections have an identical width and that this width is at most only slightly greater than the greatest width of the screwdriving tool.This is preferably defined by the distance between two fork legs, which accommodate a head of the screwing tool having a freewheel gear between them, wherein the head can be pivoted about a pivot axis through two ends of the fork legs. Locking means can be provided with which the pivotability can be blocked. With regard to further design features of such a screwing tool, reference is made to DE 102007049304 A1. The width of the head region of the screwing tool, i.e. the distance between the two surfaces of the fork legs facing away from one another, is preferably selected such that it corresponds approximately to the sum of the diameter of the largest nut arranged on the first narrow flat section and the diameter of the extension arranged there. element. The width of the head area can also be slightly smaller or slightly larger than this sum. With such dimensions, either the surfaces of the fork legs facing away from each other rest on the inside of the wide flat sections in the storage position. Or the nut with the largest diameter and the extension element each rest on an inside of the wide flat sections or are at least only slightly spaced from them, so that the angular position of the wide flat sections to the adjacent narrow flat sections is a 90° position or the angle between the wide flat section and the adjacent narrow flat section can only be slightly smaller than 90°.

[0009] According to a further aspect of the invention, further nuts are arranged on the first wide flat section. The nuts can be arranged there in several rows, also slipped onto slip-on holders. The rows can run parallel to the hinges, just like the first row. Two or three rows can be arranged next to each other. There can also be more than three rows next to each other. The nuts in the immediately adjacent rows can be staggered, so that, for example, in a three-row arrangement, the nuts arranged in the middle row are each arranged with a gap to the nuts arranged in the two outer rows. The nuts can have different output profiles. The output profiles can be formed by cavities. But they can also be formed by projections.The multiple rows of nuts are spaced so far from the two hinges adjacent to the wide flat section that the known clearance spaces are formed into which the screwing tool or the nuts arranged on the narrow flat section or the extension element arranged there can pivot when the base body is folded from the tool removal position to the storage position. Furthermore, It's advantageous if the axial length of the nuts arranged on the wide flat section corresponds to the width of the narrow flat sections. These nuts then fill the space between the inner sides of the wide flat sections, which run parallel to each other in the storage position.

[0010] A further aspect of the invention relates to the holder for the screwing tool. The holder has a base body, which can be made of plastic and which can be positively connected to the narrow, flat section. Here, too, the connection can be positively connected using a stiffening element. The base body forms a bearing opening into which the output extension of the screwing tool can be inserted. The bearing opening can be formed by a sleeve that is firmly connected to the base body. The bearing opening can have a circular cross-section so that the polygonal output extension can be rotatably received there. The base body further forms an arm that can at least partially encompass a section of the handle, in particular a neck of the handle of the screwing tool.The arm is preferably designed such that it has a free end that projects from the base body like a hook, and a fixed end that is fastened to the base body. The distance of the free end from the base body is selected such that the section of the handle can be pivoted under the arm by a pivoting movement about the output extension inserted in the storage opening. The arm can originate from a base formed by the base body. The base body can form a flat section between the base and the sleeve. A further flat section can be connected to the base. The base body is preferably connected to the storage device via the two flat sections. The elongated base body extends parallel to the hinges and is preferably arranged approximately centrally between two hinges. The fixed end of the arm is preferably on the side of the base body that faces the wide flat section. which carries the nuts. When the base body is folded from the tool removal position into the storage position, the flat section carrying the nuts can remain on a flat surface. The two narrow flat sections are pivoted from a horizontal position to a vertical position. In the vertical position, the attachment point of the arm on the base body is at the bottom, creating an upward-facing opening whose wall is formed on the one hand by the base and on the other hand by the inside of the arm. The handle fits into this U-shaped opening. To remove the screwdriving tool from its holder, it must be rotated around the axis of rotation of the output extension. The handle then moves out of the partial grip of the arm. Short description of the drawings

[0011] The invention is explained below with reference to the accompanying drawings. They show: Fig. 1 shows a tool bag equipped with nuts and actuating elements for nuts in a tool removal position; Fig. 2 the tool bag in a closed storage position; Fig. 3 shows a plan view of the tool bag in a tool removal position; Fig. 4 is a representation according to Fig. 3, but without components; Fig. 5 is a view according to arrow V in Fig. 3; Fig. 6 is a plan view similar to Fig. 3, but with narrow surface sections 3, 4 pivoted into a vertical position; Fig. 7 shows the section along the line VII-VII in Fig. 6, but with the tool bag in the closed position; Fig. 8 shows the section along the line VIII-VIII in Fig. 6 but in the closed position; Fig. 9 shows a holder 13 for a screwing tool 14 in a perspective view; Fig. 10 is a view according to Fig. 9 to illustrate pivoting of a handle section 15 - under an arm 26, holder 13; Fig. 11 is a plan view of the holder equipped with a screwing tool 14; Fig. 12 shows the section along the line XII-XII in Fig. 11; Fig. 13 shows the section along the line XIII-XIII in Fig. 11. Description of the embodiments

[0012] The invention relates to a further development of a storage device in the form of a tool bag for screwdriving tools, and in particular the tools of a ratchet set, as already described in principle in WO 2015 / 104167 A1. The tool bag has an outer side formed by a fabric and an inner side formed by a fabric. Stiffening elements in the form of flat plastic or cardboard sheets can be located between two fabric layers. The base body 1 consists of several flat sections 2, 3, 4, 5, and 6, each of which can have a stiffening element. Hinges 7, 8, 9, 10 are located between the individual flat sections 2, 3, 4, 5, and 6. In the area of ​​the hinges 7, 8, 9, and 10, the two textile layers can be sewn together, with the two textile layers lying directly on top of one another in the area of ​​the hinges, and the seam extending in the direction of the hinges 7, 8, 9, and 10.

[0013] In a tool removal position, the tool bag can be unfolded. The individual flat sections 2, 3, 4, 5, 6 can then lie in a common plane. From this tool removal position, the flat sections 2, 3, 4, 5, 6 can each be brought into a storage position at an angle of 90° to an adjacent flat section 2, 3, 4, 5, 6. The flat sections 2, 6 can be brought into an overlapping position and fastened to one another by connecting elements, for example a magnetic connection, so that the tool bag takes the shape of a cuboid in the storage position. The two sides of the cuboid not formed by the flat sections 2 to 6 are formed by tabs 32 which are attached to an edge of a wide flat section 3.

[0014] The flat sections 3, 4, and 5 are equipped with tools 12, 22, 14, 20, and 33. For this purpose, the flat sections 3, 4, and 5 have retaining elements 11, 21, 13, 33, and 34, with which the tools 12, 22, 14, 20, and 33 are each removably secured to an inner side of the base body 2.

[0015] The tools are nuts 12, 22, each of which is attached to the corresponding flat section 2, 3 by means of a clip-on holder 11, 21. The clip-on holders 11, 21 are plastic elements that are firmly connected to the are connected to the base body 1 and which have a slip-on profile that can be received in a cavity 12' of the nut 12, 22. The nut 12, 22 is slipped onto the slip-on profile by overcoming a locking force. Correspondingly, the nut 12, 22 can only be pulled off the slip-on holder 11, 21 by overcoming a locking force. The axes of the nuts 12, 22 run in the direction of the surface normal of the flat section 3, 4 that supports them. The slip-on profile can, however, also be rotatably assigned to a fastening section. The slip-on profile can be moved from a release position into a locking position by turning. In the release position, the nut 12, 22 can be pulled off the slip-on profile. In the locking position, the nut 12, 22 is locked to the slip-on holder 11, 21.

[0016] The sockets 12, 22 arranged in the tool pocket have a drive opening 12' with a square profile, into which a drive extension 16 of a screwing tool 14 can be inserted. The drive openings 12' of the sockets 12, 22 are identical to one another. Each of the sockets 12, 22 has a different working profile 12" with which a screw with a different screw head or a nut can be turned. These can be polygonal profiles and, in particular, hexagonal profiles. The profiles can be hollow profiles or solid profiles. However, the working profiles 12" can also be formed by screw engagement profiles, for example, flat profiles, Phillips profiles, or the like.

[0017] Further tools relate to extension elements 20, 33, wherein these extension elements 20, 33 are elongated, in particular circular-cylindrical bodies. A first end of the extension element 20, 33 forms a driven extension 20', which can be inserted into a drive opening 12' of the nut 12, 22. The other end of the The extension element 20, 33 forms an insertion opening 20" into which the output extension 16 of the screwing tool can be inserted in order to transmit a torque via the extension element 20, 33 to a nut 12, 22 placed on the output extension 20'.

[0018] The screwing tool 14 is a ratchet. The screwing tool 14 has an elongated handle 15. The handle 15 has a first free end that forms two fork legs 18. A pivot axis 19 extends through the two free ends of the fork legs 18. A head 17, which is arranged between the two fork legs 18, can be pivoted about this pivot axis 19. With regard to further features of such a screwing tool 14, reference is made to the explanations in DE 102007049304 A1. The head 17 contains a freewheel gear 36, the direction of rotation of which can be reversed and with which a torque can be transmitted to the output extension 16. The output extension 16 can be moved from a first position, in which it runs coaxially to the axis of the handle 15, to a second position, in which it runs transversely to the axis of the handle 15. In both positions, the head 17 carrying the output extension 16 can lock.

[0019] A wide flat section 2, which is adjacent to narrow flat sections 3, 5 by hinges 8, 9, supports three rows of nuts 22. The rows of nuts 22 extend parallel to the hinges 8, 9. The nuts 22 of adjacent rows are offset from one another, leaving a gap between them. This facilitates the removal of the nuts from the holders 11 with which the nuts are attached to the base body 1.

[0020] Between the closely adjacent rows of nuts 22 and the hinges 8, 9 there are spacing spaces 23, 23', which are not equipped with tools. Only the spacing space 23 carries a holding element 35, with which Another tool can be attached to the base body 1. The tool can be a drawing pin or a pencil tip that can be inserted into the 20" insertion opening.

[0021] The narrow, flat section 3 supports a plurality of brackets 11 arranged one behind the other in a row, which are push-on brackets. A nut 12 is slipped onto each of these five push-on brackets 11 in the exemplary embodiment. The push-on brackets 11 are preferably evenly spaced from the hinge 8 such that the nut 12 with the largest diameter is only slightly spaced from the hinge 8. The straight line 37 on which the push-on brackets 11 are arranged runs offset from a center line M running between the hinges 8, 7.

[0022] Next to the row of nuts 12 is the first extension element 20, which has a length that approximately corresponds to the length of the hinge 7. The extension element 20 is connected to the narrow flat section 3 by fastening elements formed by loops 31. It extends parallel to the hinge 7 and is immediately adjacent to the hinge 7 and the nuts 12. Figures 1, 3 and 7 show straight lines 37, 38 that run parallel to the hinges 7, 8 and on which the nuts 12 and the extension element 20 are arranged. The straight lines 37, 38 are each located in a field of the narrow section 3 that extends between a hinge 7 and a center line M or between the hinge 8 and the center line M.Both the straight line 37, along which a row of nuts 12 extends, and the straight line 38, along which the extension element 20 extends, are offset from the center line M in the direction of another hinge 7, 8.

[0023] For optimal space utilization, the nut 12 with the largest diameter, arranged on the narrow flat section 3, can be provided to touch or almost touch the extension element 20. A rotatable sleeve can be arranged on a steel core of the extension element 20. This rotatable sleeve can have a minimal distance from the nuts 12.

[0024] It is also advantageous if the nut 12 with the largest diameter and the extension element 20 or a head of the extension element 20 having the insertion opening 20" or a holder 31 for securing the extension element 20 to the base body 1 touches the inside of the adjacent wide flat section 2, 4 in the storage position. This preferably occurs when the wide flat sections 2, 4 are at a 90° angle to the narrow flat section 3. However, it is equally preferred that this contact position is only reached when the angle is somewhat less than 90° or in a range between 80° and 90°. Even then, the tools arranged in the tool pocket have a shape-stabilizing effect. In addition, the tabs 32 can also make a shape-stabilizing contribution.It is also possible that shear forces applied to the wide, narrow sections 2, 4 distort the cross-sectional shape of the tool pocket into a trapezoidal shape. In this position, the nuts 11 or the holders 31 or a section of the extension element 20 can abut the adjacent inner side of a wide, flat section 2, 4.

[0025] In the exemplary embodiment, the nuts 12 are arranged only over a partial length of the narrow flat section 3. In alignment with the row of nuts 12, another tool is attached to the narrow flat section 3 by means of a fastening element, which can be a loop 34. This is here a shorter second extension element 33. This extends parallel to the first extension element 20. The extension element 33 has a head with an insertion opening 33" for inserting the output extension 16 and an output extension 33' for insertion into a drive opening 12' of the nut 12.

[0026] At the level of this second extension element 33, the spacing space 32 can have a holding element 35 for a further, flat tool.

[0027] The second narrow flat section 5, which lies opposite the first narrow flat section 3 in the storage position, carries a holder 13 for holding the screwing tool 14 described above. This holder 13 has independent inventive significance. The holder is described in detail below.

[0028] The holder 13 has an elongated base body with a flat underside, with which it can be attached to the base body 1 of the tool bag, in particular to the second narrow flat section 5. The base body can be made of plastic.

[0029] At a first end of the elongated base body is a sleeve 24, which is integrally connected to a flat section 28. The sleeve 24 has a bearing opening 25 with a circular cross-section. The axis of the bearing opening 25 points in the direction of the surface normal of the flat underside of the base body.

[0030] Approximately in the middle of the flat section 28 there is a fastening point at which the base body can be positively connected to a fastening element 30, for example to a stiffening insert.

[0031] Adjacent to the flat section 28 is a base 27, from which an arm 26 protrudes. The arm 26 has a fixed end 26', with which the arm 26 is connected in a uniform material to the base 27, which in turn is connected in a uniform material to the base body. The arm 26 extends in an arc shape and has a free end 26", which is spaced from the base 27, forming a free space. The base 27 and the inner side of the arm 26 form a trough-shaped receptacle for holding the handle 15 of the screwing tool 14.

[0032] In the exemplary embodiment, the arm 26 encompasses a section 15' of the handle 15, which is formed by a neck. The section 15' lies between the head 17 and a plastic grip zone, where the screwing tool 14 can be grasped by the user's hand. The diameter of the neck is smaller than the diameter of the grip zone.

[0033] Adjoining the base 27 is a second flat section 29 of the same material, which also has a fastening point where the base body can be connected to the tool bag using a fastening element 30. The base can have a frame shape. The frame can be formed by four walls, one of which supports the arm 26. Two parallel walls, which extend transversely to the direction of extension of the holder 13, can be profiled, whereby the profile of one edge of these walls can correspond to the peripheral profile of the gripping zone of the handle 15 of the screwing tool. Furthermore, the arm can be elastically bendable. It can then protrude slightly from the base, requiring it to be elastically deformed to accommodate the wooden handle 15'. The neck 15 can then be held in a clamping fit.

[0034] The arm 26 is attached to the base 27 on the side facing the adjacent wide flat section 4. This results in the opening between the free arm 26" and the base 27 pivoting upwards and the arm 26 pivoting downwards when the tool bag, lying on a horizontal surface, is pivoted from the tool removal position to the storage position. The narrow flat section 5 is then pivoted upwards, forming a tray open at the top. The handle 15 located in this tray is thus stabilized in position.

[0035] The holder 13 functions as follows: In order to attach the screwdriving tool 15 to the holder 13, the output extension 16 is first brought into a pivoted position in which it projects essentially transversely from the axis of the handle 15. The output extension 16 is then inserted into the bearing opening 25. This takes place with the handle 15 at an angle to the base body of the holder 13. The handle 15 is then pivoted about the output extension 16, which is now pivotally mounted in the bearing opening 25, such that the handle 15 can enter the opening between the base 27 and the arm 26. The handle 15 is then only partially encompassed by the arm 26. The removal of the screwdriving tool 15 from the holder 13 takes place in the reverse order. It can be provided that the arm 26 rests against the handle 15 with a spring preload.

[0036] With this holder 13 or a similar holder, the screwing tool 14 can be fastened to the narrow flat section 5 in such a way that it does not fall out of the holder 13 when the base body is folded. The screwing tool 14 has the greatest width in the area of ​​the free ends of the fork legs 18. This width is only slightly smaller than the width of the narrow flat section 5 assigned to it and corresponds approximately to the sum of the diameters of the largest on the opposite side. narrow flat section 2 arranged nut 12 and the diameter of the extension element 20 arranged there.

[0037] The bracket 13 can be located centrally between the two hinges 9, 10 defining the second narrow section 5. The screwing tool 14 can extend almost the entire length of the hinges 9, 10. The gripping zone of the handle 15 can protrude freely beyond the bracket 13.

[0038] The above statements serve to explain the inventions covered by the application as a whole, which each independently develop the state of the art by at least the following combinations of features, whereby two, several or all of these combinations of features can also be combined, namely:

[0039] A storage device characterized in that the extension element 20 is arranged between the nuts 12 and the adjacent hinge 7 parallel to the latter.

[0040] A device which is characterized in that at least the nut 12 with the largest diameter and the extension element 20 or a holder 31 holding the connecting element 20 in the storage position rest on the inside of a wide flat section 2, 4 or are only slightly spaced therefrom.

[0041] A device which is characterized in that the screwing tool 14 is a ratchet with a freewheel gear 36 and is fastened to a second narrow flat section 5, wherein the freewheel gear 36 is arranged in a head 17 which is pivotable about a pivot axis 19 running transversely to the extension axis of the handle 15 between two Fork legs 18 are mounted, wherein the section of the mutually facing surfaces of the fork legs 19, measured at the level of the pivot axis 19, corresponds to the sum of the diameter of the substantially cylindrical extension element 20 and the diameter of the nut 12 having the largest diameter arranged on the first narrow flat section 3.

[0042] A device which is characterized in that on the first wide flat section 4 at least one second row of slip-on holders 21 running parallel to the first row is arranged, onto which nuts 22 are slipped.

[0043] A device characterized in that the one or more second rows of slip-on holders 21 are spaced apart from the hinges 8, 9 adjacent to the first narrow surface section 3 and the second narrow surface section 5 in such a way that the screwing tool 14 fastened to the second narrow flat section 5 and the nuts 12 fastened to the first narrow flat section 3 each lie in a space 23, 23' thus formed in the storage position.

[0044] A device which is characterized in that at least two rows of nuts 22 run next to one another, wherein the nuts 22 of the two rows are arranged offset from one another in such a way that the nuts 22 of one row lie on the gap between the nuts 22 of the other row.

[0045] A device which is characterized in that the holder 13 for holding the screwing tool 14 has a bearing opening 25 into which the driven extension 16 of the screwing tool 14 is inserted and has an arm 26 which has a section 15' of the handle 15 of the screwing Tool 14 only encompasses a partial circumference, so that the screwing tool 14 can be brought into a locking position by a pivoting movement around the output extension 16 inserted in the bearing opening 25.

[0046] A device characterized in that a fixed end 26' of the arm 26 is fastened to a side facing the first wide surface section 4 of a base body of the holder 13 fastened to the second narrow flat section 5, so that the handle 15 can be pivoted in a pivoting direction away from the first wide flat section 4 from the restraint position.

[0047] A holder which can be fastened to a storage device for screwing tools, which is characterized in that a base body of the holder 13 has a bearing opening 25 for inserting the output extension 16 and an arm 26 which only partially encompasses a section 15' of the handle 15, wherein the bearing opening 25 and the arm 26 are designed such that after a pivoting movement of the screwing tool 14 which has its output extension 16 inserted into the bearing opening 25, the handle 15 can be brought into the locking position in which the section 15' of the handle 15 lies between the arm 26 and the base body or a base 27 of the base body.

[0048] A holder which is characterized in that the storage opening 25 is formed by a sleeve 24 of the base body and has a round cross-section, that the arm 26 originates from a base 27, the base body runs flat between sleeve 24 and base 27, 29 and / or the base body has a flat end section 29 on the side facing away from the sleeve 24, wherein the base body can be connected to the storage device in the region of the flat sections 28, 29.

[0049] Device characterized by one or more of the characterizing features of one of the preceding claims.

[0050] All disclosed features are essential to the invention (individually, but also in combination with one another). The disclosure of the application hereby fully incorporates the disclosure content of the associated / attached priority documents (copy of the prior application), also for the purpose of incorporating features of these documents into claims of the present application. The subclaims characterize, even without the features of a referenced claim, independent inventive developments of the prior art with their features, in particular for filing divisional applications based on these claims. The invention specified in each claim may additionally comprise one or more of the features provided in the above description, in particular with reference numbers, and / or specified in the list of reference numbers.The invention also relates to designs in which individual features mentioned in the above description are not implemented, in particular insofar as they are clearly unnecessary for the respective intended use or can be replaced by other technically equivalent means. List of reference symbols 1 base body 23' clearance 2 wide flat section 24 sleeve 3 narrow flat section 25 bearing opening 4 wide flat section 26 arm 5 narrow flat section 26' fixed end 6 flat section 26" free end 7 Hinge 27 Base 8 hinge 28 flat section 9 hinge 29 flat section 10 Hinge 30 Fastener 11 On clip-on holder 31 Holder loop 12 nut 32 tab 12' drive opening 33 2nd extension element 12" working profile 33' output extension 13 Bracket 33" insertion opening 14 screw tool 34 loop 15 Handle 35 Holding element 15' neck 36 freewheel gear 16 Output extension 37 Straight 17 Head 38 Straight 18 Fork leg M center line 19 Swivel axis 20 1. Extension element 20' output extension 20" insertion opening 21 Clip-on bracket 22 Nut 23 Clearance space

Claims

Claims 1. Device with screwing tools stored therein, with a flat base body (1) having a textile inner side and a textile outer side, which has a plurality of rigid flat sections (2, 3, 4, 5, 6) separated from one another by hinges (7, 8, 9, 10), which can be folded from a tool removal position, in which the flat sections (2, 3, 4, 5, 6) lie essentially in one plane, around the hinges (7, 8, 9, 10) into a storage position, in which a first and a second wide flat section (2, 4) of the flat sections (2, 3, 4, 5, 6) extend essentially at right angles to a first narrow flat section (3) of the flat sections (2, 3, 4, 5, 6) and parallel to one another, wherein on the inside of at least the first narrow flat section (3) in a direction parallel to the adjacent hinge (7) extending first row of clip-on brackets (11) are arranged,on which nuts (12) with different output profiles (12") are placed, wherein a holder (13) is fastened to the inside of a flat section (5) different therefrom, which holder fastens a screwing tool (14) having a handle (15) to the flat section, wherein the nuts (12) each have a drive opening (12') into which an output extension (16, 20') of the screwing tool (14) and of an extension element (20) likewise fastened to the inside of the base body (1) can be inserted, characterized in that the extension element (20) is arranged between the nuts (12) and the adjacent hinge (7) parallel to the latter.

2. Device according to claim 1, characterized in that at least the nut (12) with the largest diameter and the extension element (20) or a holder (31) holding the connecting element (20) in the storage position, they rest on the inside of a wide flat section (2, 4) or are only slightly spaced from it.

3. Device according to one of the preceding claims, characterized in that the screwing tool (14) is a ratchet with a freewheel gear (36) and is fastened to a second narrow flat section (5), wherein the freewheel gear (36) is arranged in a head (17) which is mounted between two fork legs (18) so as to be pivotable about a pivot axis (19) running transversely to the axis of extension of the handle (15), wherein the section of the surfaces of the fork legs (19) facing away from one another, measured at the level of the pivot axis (19), corresponds to the sum of the diameter of the substantially cylindrical extension element (20) and the diameter of the nut (12) with the largest diameter arranged on the first narrow flat section (3).

4. Device according to one of the preceding claims, characterized in that on the first wide flat section (4) at least one second row of plug-on holders (21) running parallel to the first row is arranged, onto which nuts (22) are plugged.

5. Device according to claim 4, characterized in that the one or more second rows of slip-on holders (21) are spaced apart from the hinges (8, 9) adjacent to the first narrow surface section (3) and the second narrow surface section (5) in such a way that the screwing tool (14) fastened to the second narrow flat section (5) and the nuts (12) fastened to the first narrow flat section (3) each lie in a spacing space (23, 23') formed in this way in the storage position.

6. Device according to claim 4 or 5, characterized in that at least two rows of nuts (22) run next to one another, the nuts (22) of the two rows being arranged offset from one another in such a way that the nuts (22) of one row lie on the gap between the nuts (22) of the other row.

7. Device according to one of the preceding claims, characterized in that the holder (13) for holding the screwing tool (14) has a bearing opening (25) into which the output extension (16) of the screwing tool (14) is inserted and has an arm (26) which surrounds a section (15') of the handle (15) of the screwing tool (14) only over a partial circumference, so that the screwing tool (14) can be brought into a locking position by a pivoting movement about the output extension (16) inserted in the bearing opening (25).

8. Device according to claim 7, characterized in that a fixed end (26') of the arm (26) is fastened to a side facing the first wide surface section (4) of a base body of the holder (13) fastened to the second narrow flat section (5), so that the handle (15) can be pivoted in a pivoting direction away from the first wide flat section (4) from the restraint position.

9. A holder (13) which can be fastened to a storage device for screwing tools and which has a handle (15) and a driven extension (16) projecting transversely from the handle (15), characterized in that a base body of the holder (13) has a bearing opening (25) for inserting the driven extension (16) and an arm (26) which only partially encompasses a section (15') of the handle (15), wherein the bearing opening (25) and the arm (26) are designed in such a way that are designed such that after a pivoting movement of the screwing tool (14) with its output extension (16) inserted into the bearing opening (25), the handle (15) can be brought into the locking position in which the section (15') of the handle (15) lies between the arm (26) and the base body or a base (27) of the base body.

10. Holder according to claim 9, characterized in that the storage opening (25) is formed by a sleeve (24) of the base body and has a round cross-section, that the arm (26) originates from a base (27), the base body runs flat between the sleeve (24) and base (27, 29) and / or the base body has a flat end section (29) on the side facing away from the sleeve (24), wherein the base body can be connected to the storage device in the region of the flat sections (28, 29).

11. Device or holder, characterized by one or more of the characterizing features of one of the preceding claims.