Frame for tool room and tool room
The design of the corner connectors, including vertical and horizontal connecting rods, solves the problem of adjacent column misalignment, improves the construction efficiency and stability of the tool shed frame, and enhances the overall structural strength of the tool shed.
Patent Information
- Application Number
- CN202423217081.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-25
AI Technical Summary
In the existing tool shed frame, the offset of adjacent columns leads to inconsistent verticality, affecting construction efficiency and stability, especially the unstable connection between the bottom frame and the columns.
Corner connectors, including vertical and horizontal connecting rods, are used to connect the bottom beam and the column through sleeve and plug-in methods, ensuring that adjacent columns are located in the same vertical plane, and improving the connection stability through plug-in grooves, clearance notches and clearance ramps.
The straightness of adjacent columns and the levelness of the bottom beam were improved, ensuring the efficiency of profile installation and enhancing the stability and wind resistance of the tool shed frame.
Smart Images

Figure CN223607971U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of section building, in particular to a frame for tool house and tool house. BACKGROUND
[0002] Tool house is used to store some household or production tools, with the development of science and technology, the material of tool house gradually changes from various brick and tile structure to section convenient for transportation and disassembly.
[0003] The emergence of section provides convenience for the construction of tool house, and people change the structure of section to realize rapid installation more and more.
[0004] Some tool houses in the prior art include a bottom frame, a stand column and a section, the bottom frame and the stand column are fixed by a connecting piece, and the section is arranged between adjacent stand columns to form a wall surface. A simple and fast tool house temporarily built on a road surface is disclosed in the prior art CN219081137U, which comprises a frame type section, a roof assembly, a color steel tile and a connecting joint. The section comprises an angle steel and a square channel steel, the angle steel and the square channel steel constitute an overall frame of the tool house through the connecting joint, and the angle steel and the square channel steel are bolted to form an integral whole through the connecting joint. The roof assembly is fixedly connected with the overall frame of the angle steel and the square channel steel through the connecting joint, and the color steel tile is fixedly connected through the connecting joint to form a covering surface of the side wall and the roof of the tool house. The connecting piece used in the prior art comprises a vertical connecting piece, an inclined edge connecting piece and a right angle connecting piece, and the right angle connecting piece is used between the stand column and the bottom frame. The right angle connecting piece in the prior art is only a block with a threaded hole, and the threaded hole is used for stable connection.
[0005] When the stand column and the bottom frame are connected by the right angle connecting piece in the prior art, the degree of linear limitation of the right angle connecting piece on the perpendicularity of the stand column and the bottom frame in the vertical or horizontal direction is not high, which cannot well ensure whether the adjacent stand columns are in the same vertical plane. When there is a deviation between the adjacent stand columns, the installation efficiency of the section in the adjacent stand column for forming a wall surface is easily affected, and there is a stability problem between the bottom frame and the right angle connecting piece. INVENTION CONTENTS
[0006] The utility model wants to achieve the purpose of providing a frame for tool house and tool house, solving the problem of affecting the construction efficiency of the frame for tool house and the stability of the bottom frame and the stand column when the adjacent stand columns deviate from the same vertical plane, improving the linearity of the two stand columns to ensure that the adjacent stand columns are in the same vertical plane, thereby facilitating the plug-in connection of the section and the stand column, and improving the stability between the stand column and the bottom frame.
[0007] In order to achieve the above object, the utility model discloses the following technical scheme: a tool room frame, including bottom beam, stand and corner connecting piece, the corner connecting piece includes vertical connecting rod and horizontal connecting rod, and bottom beam sleeve connection is in horizontal connecting rod, and stand sleeve connection is in vertical connecting rod and is connected with the insertion of bottom beam to stabilize stand and bottom beam, and stand is vertical and perpendicular to bottom beam.
[0008] After adopting the above technical scheme, the utility model has the following advantages: when bottom beam and stand are connected through corner connecting piece when building tool room frame, bottom beam sleeve connection is on horizontal connecting rod, and the horizontal degree and the straightness on the horizontal plane of bottom beam are improved through horizontal connecting rod, and stand sleeve connection is on vertical connecting rod, and the perpendicularity of stand is improved, and adjacent stands are located on the same vertical plane under the sleeve connection of vertical connecting rod, and the insertion installation of section bar is convenient, and after stand sleeve connection is on vertical connecting rod, stand also inserts with bottom beam, and the lower end of stand abuts against bottom beam, and after stand inserts with bottom beam, the restriction between each other is formed, and the stability of bottom beam and stand is improved, thereby the stability of tool room frame after building is improved, and through the sleeve connection of vertical connecting rod and stand, the straightness of stand in the vertical direction is improved, and the sleeve connection of horizontal connecting rod and bottom beam improves the straightness of bottom beam, guarantees the installation efficiency of section bar, and the building efficiency of tool room frame is improved.
[0009] Further, the horizontal connecting rod includes first connecting rod and second connecting rod, the upper side of the end of bottom beam is provided with insertion slot, and the two insertion slots of adjacent bottom beams are surrounded to form insertion port after the sleeve connection of first connecting rod and second connecting rod, and stand is inserted into insertion port after the sleeve connection of vertical connecting rod to stabilize stand.
[0010] After the sleeve connection of bottom beam on first connecting rod or second connecting rod, the two insertion slots of adjacent two bottom beams form insertion port, and stand is inserted into insertion port after the sleeve connection, and the insertion of stand through insertion port after the sleeve connection of vertical connecting rod makes the abutment of stand and the inner side of insertion port, and the mutual restriction between stand and bottom beam is formed, and the straightness of stand in the vertical direction is further ensured.
[0011] Further, the end of bottom beam is provided with let -go notch, and let -go notch forms let -go cavity that wraps vertical connecting rod after the sleeve connection of first connecting rod and second connecting rod of adjacent bottom beams.
[0012] The technical scheme is adopted, the gap is arranged at the end of the bottom beam, the connecting length between the bottom beam and the first connecting rod and the second connecting rod is increased, the straightness of the bottom beam is improved, the gap cavities wrapping the vertical connecting rods are formed by the gaps of the two adjacent bottom beams after the two bottom beams are sleeved, the gap between the two adjacent bottom beams is reduced, the stability of the vertical connecting rods is improved, the straightness of the column in the vertical direction is pre-protected, and the deviation of the vertical connecting rods is reduced to affect the straightness of the column in the vertical direction.
[0013] Further, the end of the bottom beam is provided with the gap inclined surface, the gap inclined surface is inclined to the inner side of the frame for tool house, so that the length of the outer side of the bottom beam is greater than the length of the inner side, the gap inclined surfaces of the two adjacent bottom beams abut to stabilize the bottom beam.
[0014] The technical scheme is adopted, the gap inclined surface is arranged at the end of the bottom beam, the gap inclined surfaces of the two adjacent bottom beams abut in the horizontal plane, the gap between the bottom beams is reduced, the stability between the corner connecting piece, the column and the bottom beam is improved, and then the stability of the frame for tool house after the construction is improved.
[0015] Further, the sum of the inclination angles of the gap inclined surfaces on one end of the two adjacent bottom beams in the same horizontal plane is 90°.
[0016] The technical scheme is adopted, the sum of the inclination angles of the two abutting gap inclined surfaces is set to 90°, the two bottom beams are perpendicular to each other after abutting to each other, and the possibility of deviation between the two adjacent bottom beams which should be perpendicular is reduced to affect the construction quality of the frame for tool house.
[0017] Further, the horizontal connecting rod comprises a first connecting rod, a second connecting rod and a third connecting rod, the first connecting rod and the second connecting rod are perpendicular to each other and are integrally connected, the third connecting rod is detachably arranged, and the length direction of the third connecting rod is the same as the length direction of the first connecting rod.
[0018] The tool room is usually classified and placed in the tool room when using the tool room, when the tools are more, in order to avoid that the tool room is too messy, the space in the tool room frame is also divided, at this time, the horizontal connecting rod of the corner connecting piece is provided in the form of the first connecting rod, the second connecting rod and the third connecting rod, the first connecting rod and the second connecting rod are perpendicular to each other in the horizontal plane, and the third connecting rod is provided in a detachable manner, when the tool room to be built is a single room, the third connecting rod is detached, and then the corner connecting piece is applied to the construction of the tool room frame, and when the tool room with multiple spaces needs to be built, the third connecting rod can be installed on the vertical connecting rod, and the bottom beam is connected through the third connecting rod, so that the tool room can form storage spaces on both sides of the second connecting rod, the third connecting rod is detachably provided, the application scene of the corner connecting piece is increased, and then the application efficiency of the corner connecting piece is improved, and the construction difficulty of the tool room with multiple spaces is reduced.
[0019] Further, the lower side of the vertical connecting rod is provided with a clamping cavity, and the end of the third connecting rod is provided with a clamping block embedded in the clamping cavity.
[0020] By embedding the clamping block in the clamping cavity, the connection between the third connecting rod and the vertical connecting rod can be preliminarily stabilized, and the straightness of the third connecting rod and the first connecting rod in the same straight line direction is improved.
[0021] Further, the upper side of the clamping cavity is provided with a clamping rib, and the upper side of the clamping block is provided with a clamping groove matched with the clamping rib, and the clamping rib is inserted into the clamping groove to stabilize the third connecting rod.
[0022] After the clamping block is embedded in the clamping cavity, the clamping rib is inserted into the clamping groove to limit the third connecting rod and the vertical connecting rod again, further improve the stability of the third connecting rod, and reduce the possibility of the third connecting rod deviating from the length direction of the first connecting rod.
[0023] Further, it further comprises a bottom support beam, the bottom support beam is sleeved on the second connecting rod, the two bottom beams in the same direction abut to form a matching gap, and the end of the bottom support beam has a matching protrusion inserted into the matching gap.
[0024] After the bottom support beam is sleeved on the second connecting rod, the matching protrusion and the matching gap are inserted and matched, so as to improve the stability between the bottom support beam and the bottom beam, and avoid the deviation between the bottom support beam and the stand column to affect the construction efficiency of the tool room frame.
[0025] In order to achieve the above object, the utility model also adopts the following technical scheme: a tool room, including wallboard, roof and tool room frame.
[0026] Adopt preceding technical scheme, improve the stability of tool room, and then improve the wind resistance of tool room. BRIEF DESCRIPTION OF DRAWINGS
[0027] The utility model will be further described below in combination with drawings:
[0028] Figure 1 It is the column and bottom beam installation schematic drawing of the utility model tool room frame;
[0029] Figure 2 It is the schematic diagram of the three-way connection structure of the corner connecting piece in the utility model;
[0030] Figure 3 It is the schematic diagram of the corner connecting piece connecting column and bottom beam in the utility model;
[0031] Figure 4 It is the state schematic diagram of the column inserting in the insertion port in the utility model;
[0032] Figure 5 It is the end structure schematic diagram of the column in the utility model;
[0033] Figure 6 It is the state schematic diagram of the first connecting rod and the second connecting rod of the adjacent column sleeve in the utility model;
[0034] Figure 7 It is the schematic diagram of the four-way connection structure of the corner connecting piece in the utility model;
[0035] Figure 8 It is the explosion schematic diagram of the third connecting rod in the utility model;
[0036] Figure 9 It is the utility model Figure 8 The enlarged view in A place in the utility model;
[0037] Figure 10 It is the installation schematic diagram of the bottom support beam in the utility model;
[0038] Figure 11 It is the structure schematic diagram of the bottom support beam and the bottom beam in the utility model. DETAILED DESCRIPTION
[0039] In order to make the purpose, technical scheme and advantage of the utility model embodiment clearer, the technical scheme in the utility model embodiment will be clearly and completely described below in combination with the drawings in the utility model embodiment, obviously, the described embodiment only is a part of the utility model embodiment, but not all the embodiment.
[0040] The terms "first", "second", and the like (if any) in the description and claims of the utility model are used to distinguish similar objects, and are not used to describe a specific order or sequence, even if "second" is used in front of a certain technical feature to distinguish, it does not mean that it must have "first". It should be understood that in the utility model, "include" and "have" and any variation thereof are intended to cover non-exclusive inclusion. It should be understood that in the utility model, "multiple" refers to two or more than two. "And / or" is only a description of the relationship between the associated objects, which means that there can be three relationships, for example, X and / or Y can represent: three cases of X alone, X and Y exist at the same time, and Y alone. The character " / " generally represents that the associated objects before and after are in an "or" relationship. "Include X, Y and Z", "include X, Y, Z" means that X, Y and Z are all included, "include X, Y or Z" means that one of X, Y and Z is included, "include X, Y and / or Z" means that any one or any two or three of X, Y and Z is included.
[0041] The technical scheme of the utility model will be described in detail below with specific examples. The following several specific examples can be combined or replaced according to actual conditions, and the same or similar concepts or processes may not be described in some examples.
[0042] As shown in Figure 1 and Figure 2 The utility model provides a frame for tool house, including bottom beam 1, stand 2 and corner connecting piece 3, as shown in Figure 2 The corner connecting piece 3 includes vertical connecting rod 31 and horizontal connecting rod 32, and in this embodiment, the horizontal connecting rod 32 includes first connecting rod 321 and second connecting rod 322 perpendicular to each other on the horizontal plane, and the vertical connecting rod 31 is perpendicular to the first connecting rod 321 and the second connecting rod 322, so that the corner connecting piece 3 forms a three-way connecting structure perpendicular to each other, as shown in Figure 3 and Figure 4As shown, multiple bottom beams 1 are provided, and the ends of the multiple bottom beams 1 are connected sequentially, so that adjacent bottom beams 1 are perpendicular to each other in the same horizontal plane. Adjacent bottom beams 1 are sleeved on the first connecting rod 321 or the second connecting rod 322, so that adjacent bottom beams 1 are perpendicular to each other in their length direction. The column 2 is sleeved on the vertical connecting rod 31 and inserted into the bottom beam 1 to improve the stability between the column 2 and the bottom beam 1. In this embodiment, when there are no two mutually perpendicular bottom beams 1, only a single horizontal connecting rod 32 can be used, that is, the first connecting rod 321 and the second connecting rod 322 can also be retained according to the actual tool room being constructed; or the first connecting rod 321 and the second connecting rod 322 can be set to a non-perpendicular state according to the overall spatial design and planning of the tool room frame.
[0043] In this embodiment, as Figure 4 and Figure 5 As shown, the upper side of the end of the bottom beam 1 is provided with a insertion groove 11. After the two mutually perpendicular bottom beams 1 are respectively fitted with the first connecting rod 321 and the second connecting rod 322, as shown... Figure 6 As shown, the two insertion slots 11 form an insertion interface 111 after the adjacent bottom beams 1 abut against each other. The column 2 is sleeved on the vertical connecting rod 31 and then inserted into the insertion interface 111. The inner side wall of the insertion interface 111 abuts against the outer wall of the column 2, thereby improving the stability of the column 2 after it is sleeved on the vertical connecting rod 31. After the column 2 is inserted into the insertion interface 111, it abuts against the inner wall of the insertion interface 111, which also improves the stability of the bottom beam 1.
[0044] To increase the length of the connection between the bottom beam 1 and the first connecting rod 321 and the second connecting rod 322, such as Figure 5 and Figure 6 As shown, the end of the bottom beam 1 is provided with a connecting cavity, and the first connecting rod 321 or the second connecting rod 322 extends into the connecting cavity. The upper side wall of the connecting cavity is provided with a clearance notch 12. The clearance notches 12 of the two bottom beams 1 that are perpendicular to each other in the same horizontal plane form a clearance cavity 121 that wraps around the vertical connecting rod 31. The setting of the clearance notch 12 increases the insertion length of the bottom beam 1 with the first connecting rod 321 and the second connecting rod 322, thereby improving the connection stability of the bottom beam 1 with the first connecting rod 321 and the second connecting rod 322.
[0045] like Figure 5 As shown, in order to further improve the stability of the connection between the bottom beam 1 and the first connecting rod 321 or the second connecting rod 322, the bottom beam 1 is provided with a relief slope 13 at its end. The relief slopes 13 of two bottom beams 1 that are perpendicular to each other in the same horizontal plane abut against each other, thereby improving the stability of the bottom beams 1 after they are connected. The setting of the relief slope 13 makes the outer length of the bottom beam 1 greater than the inner length, so that the adjacent bottom beams 1 can abut against each other better, thereby improving the stability between the bottom beams 1.
[0046] In the embodiment, as shown in Figure 6 The angle between the displacement inclined surface 13 on the bottom beam 1 sleeved with the first connecting rod 321 and the length direction of the bottom beam 1 is A, and the angle between the displacement inclined surface 13 on the bottom beam 1 sleeved with the second connecting rod 322 and the length direction of the corresponding bottom beam 1 is B, and the sum of A and B is 90°, which ensures the perpendicularity of two adjacent bottom beams 1 in the same horizontal plane, facilitates the profile installation between adjacent columns 2, facilitates the formation of a wall surface after the profile installation, and improves the construction speed of the tool house.
[0047] To further improve the stability of the bottom beam 1, the bottom beam 1 is fixedly connected with the foundation panel through the first screw 4, the first screw 4 is screwed with the foundation panel after penetrating through the bottom beam 1 and the first connecting rod 321 or the second connecting rod 322, thereby improving the stability of the bottom beam 1 and the wind resistance performance of the tool house after construction, the bottom beam 1 and the first connecting rod 321 or the second connecting rod 322 are fixedly connected through the second screw 5, the second screw 5 is screwed with the first connecting rod 321 or the second connecting rod 322 after penetrating through the upper side of the bottom beam 1; similarly, the column 2 is screwed with the vertical connecting rod 31 through the third screw to improve the stability of the column 2.
[0048] In use of the tool house, different tools are usually placed in the tool house in a classified manner, when the tools are more, in order to avoid that the tool house is too messy, spaces are divided in the tool house, or the tool house is constructed in a multi-space form according to the needs when the tool house is constructed, therefore, as shown in Figure 7 , Figure 8 and Figure 9As shown, the horizontal connecting rod 32 of the corner connecting piece 3 can be arranged in the form of a first connecting rod 321, a second connecting rod 322 and a third connecting rod 323, so that the corner connecting piece 3 forms a four-way connecting structure, the first connecting rod 321 and the second connecting rod 322 are perpendicular to each other and are integrally connected, and the third connecting rod 323 is detachably arranged in order to facilitate the conversion and use of the three-way connecting structure and the four-way connecting structure. Specifically, the lower side of the vertical connecting rod 31 is provided with a clamping cavity 311, the upper side of the clamping cavity 311 is provided with a clamping rib 312, the end of the third connecting rod 323 is provided with a clamping block 3231, the clamping block 3231 is embedded in the clamping cavity 311 to install or detach the third connecting rod 323, the upper side of the clamping block 3231 is provided with a clamping groove 3232 matched with the clamping rib 312, the clamping block 3231 is clamped in the clamping cavity 311 to be preliminarily fixed, and then the clamping rib 312 is inserted into the clamping groove 3232 to stabilize the third connecting rod 323 again, so as to improve the stability of the third connecting rod 323 and the vertical connecting rod 31, and avoid the deviation of the third connecting rod 323 in the length direction of the first connecting rod 321. In order to improve the stability of the third connecting rod 323, after the clamping block 3231 is embedded in the clamping cavity 311, the fourth screw is threaded through the clamping block 3231 and is screwed with the vertical connecting rod 31, so as to improve the stability of the third connecting rod 323 and avoid the influence of the third connecting rod 323 on the stability of the tool house frame due to the separation of the third connecting rod 323 from the vertical connecting rod 31.
[0049] When the four-way connecting structure is used, as shown in Figure 10 and Figure 11 , the tool house frame further comprises a bottom support beam 14, the bottom support beam 14 is sleeved on the second connecting rod 322, and the two bottom beams 1 in the same straight line direction are respectively sleeved on the first connecting rod 321 and the third connecting rod 323, then abut against each other and form a matching notch 141 on the inner side, the end of the bottom support beam 14 has a matching protrusion 142 matched with the matching notch 141, and the stability of the bottom support beam 14 is improved by inserting the matching protrusion 142 into the matching notch 141; in this embodiment, the matching notch 141 can be a V-shaped groove or an arc-shaped groove, and the stability is improved by abutting against the plane or arc surface when the matching protrusion 142 is inserted into the matching notch 141, so as to improve the stability of the tool house frame after construction. In another embodiment, the horizontal connecting rod 32 can also be increased according to the number of spaces of the tool house to be constructed and the fourth connecting rod is arranged in the same straight line as the second connecting rod 322.
[0050] The utility model also provides a tool house, including wallboard, roof and tool house frame, improve the stability of the tool house, and then improve the wind resistance of the tool house.
[0051] In addition to the preferred embodiments described above, the utility model also has other implementation manners, based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without making creative labor belong to the range of the utility model claimed.
Claims
1. A frame for a tool room, characterized by, The tool house frame comprises a bottom beam, a column and a corner connecting piece, the corner connecting piece comprises a vertical connecting rod and a horizontal connecting rod, the bottom beam is sleeved on the horizontal connecting rod, the column is sleeved on the vertical connecting rod and is insertedly connected with the bottom beam to stabilize the column and the bottom beam, and the column is vertical and perpendicular to the bottom beam.
2. The tool house frame according to claim 1, wherein The horizontal connecting rod comprises a first connecting rod and a second connecting rod, the upper side of the end of the bottom beam is provided with an insertion slot, the two insertion slots of the adjacent bottom beams are surrounded to form an insertion port after the first connecting rod and the second connecting rod are sleeved, and the column is inserted into the insertion port after the column is sleeved on the vertical connecting rod to stabilize the column.
3. The tool house frame according to claim 2, wherein The end of the bottom beam is provided with a clearance notch, the clearance notch forms a clearance cavity wrapping the vertical connecting rod after the first connecting rod and the second connecting rod are sleeved on the adjacent bottom beams.
4. The tool house frame according to claim 2, wherein The end of the bottom beam is provided with a clearance inclined surface, the clearance inclined surface is inclined to the inner side of the tool house frame so that the length of the outer side of the bottom beam is greater than the length of the inner side, and the clearance inclined surfaces of the two adjacent bottom beams are abutted to stabilize the bottom beam.
5. The tool house frame according to claim 4, wherein The sum of the inclination angles of the clearance inclined surfaces on the abutted end of the two adjacent bottom beams in the same horizontal plane is 90°.
6. The tool house frame according to claim 1, wherein The horizontal connecting rod comprises a first connecting rod, a second connecting rod and a third connecting rod, the first connecting rod and the second connecting rod are perpendicular to each other and are integrally connected, and the third connecting rod is detachably arranged, and the length direction of the third connecting rod is the same as the length direction of the first connecting rod.
7. The tool house frame according to claim 6, wherein The lower side of the vertical connecting rod is provided with a clamping cavity, and the end of the third connecting rod is provided with a clamping block, the clamping block is embedded in the clamping cavity.
8. The tool house frame according to claim 7, wherein The upper side of the clamping cavity is protruded with a clamping rib, the upper side of the clamping block is provided with a clamping groove body matched with the clamping rib, and the clamping rib is inserted into the clamping groove body to stabilize the third connecting rod.
9. The tool house frame according to claim 6, wherein The tool house frame further comprises a bottom support beam, the bottom support beam is sleeved on the second connecting rod, the two bottom beams in the same direction are abutted to form a matching notch, and the end of the bottom support beam has a matching protrusion inserted into the matching notch.
10. A tool room characterized by The tool house frame comprises a wall plate, a roof and the tool house frame according to any one of claims 1 to 9.
Citation Information
Patent Citations
Simple fast-assembly tool room
CN219081137U