T-beam hogging moment toothed plate gradual change stirrup semi-finished product transfer device
By designing the adjustment of the mobile device and support frame and preventing the removal of parts, the problem of the semi-finished products of the T-beam negative bending moment tooth plate gradient stirrups are not separated from the processing area, safe and fast transportation and storage are achieved, construction efficiency and safety are improved, and cost and labor intensity are reduced.
Patent Information
- Application Number
- CN202422460988.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-11
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-10-11
AI Technical Summary
In the prior art, the semi-finished products of the negative bending moment tooth plate of T beam are not separated from the processing area in the storage area, resulting in cross-interference in construction, poor safety, high labor intensity and low efficiency, and the existing handling equipment is complex in structure, high cost and insufficient safety.
A semi-finished transport device for the semi-finished stirrups including a mobile device, a support frame and an anti-detachment piece is designed. By adjusting the length of the support arm and the design of the anti-detachment piece, the stable transport and centralized stacking of the semi-finished stirrups are realized, reducing labor intensity and improving safety.
It realizes the rapid and safe transportation and centralized storage of semi-finished stirrups, reduces construction costs and safety hazards, improves construction efficiency and safety, extends the service life of the device, and prevents rust and corrosion, and meets the use needs of various handling scenarios.
Smart Images

Figure CN223188487U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a transfer device, specifically to a transfer device for semi-finished products of gradually changing stirrups of T-beam negative moment tooth plates, mainly used for carrying semi-finished products of gradually changing stirrups of T-beam negative moment tooth plates or for temporarily stacking and storing semi-finished products of gradually changing stirrups of T-beam negative moment tooth plates, belonging to the technical field of construction supplies. Background Technique
[0002] Generally speaking, the T-beam negative moment prestressed steel tendons are mainly used in the design structure of simply supported variable continuous beam bridges. The tooth plates for negative moment anchoring and the steel reinforcement cages inside the tooth plates are structures with gradually changing cross-sectional dimensions, which can improve the shear resistance at the pier top supports, reduce the mid-span moment of the bridge, and significantly enhance the spanning ability of the bridge. Through the arrangement of the negative moment steel tendons inside the tooth plates, the system conversion from simply supported beams to continuous beams is realized.
[0003] At present, due to the gradually changing design of the stirrups of the negative moment steel tendon anchoring tooth plates of the simply supported and then continuous T-shaped beam slabs, the steel reinforcement cages of the T-beam negative moment tooth plates were often directly carried out in the semi-finished product storage area in the past. The semi-finished product storage area and the final processing and manufacturing area were not separated, which might lead to construction cross-interference, was not conducive to safety management and had low construction efficiency. If the semi-finished product storage area and the final processing and manufacturing area needed to be separated, manual handling of semi-finished product steel bars was required. Manual handling of steel bars had high labor intensity, low efficiency, and there were also relatively large safety hazards.
[0004] Although there are corresponding handling devices in the existing technologies at present, the existing structures still have problems such as complex structures, large occupied space, poor safety during use, and high cost during purchase, and cannot meet the actual needs at present. In short, they are often very inconvenient.
[0005] Therefore, developing a time-saving, labor-saving, safe and reliable transfer device for semi-finished products of gradually changing stirrups of T-beam negative moment tooth plates is the key to solving the above technical problems. Summary of the Invention
[0006] In view of the many defects and deficiencies in the above background technique, the utility model has made improvements and innovations. The purpose is to provide a transfer device for semi-finished products of gradually changing stirrups of T-beam negative moment tooth plates with simple operation, time-saving and labor-saving, which can easily transfer the semi-finished stirrups from the storage area to the final processing and manufacturing area, realize the separation of the semi-finished product storage area and the final processing and manufacturing area, avoid cross-interference, be conducive to safety management, have strong practicability, and can be applicable to a variety of handling scenarios.
[0007] Another object of the present utility model is to be able to achieve centralized stacking and storage of the semi-finished products of the variable-section stirrups of the T-beam negative moment tooth plate, so as to achieve standardized construction and better protect the semi-finished products of the variable-section stirrups of the T-beam negative moment tooth plate. It is necessary to prevent the semi-finished products of the variable-section stirrups of the T-beam negative moment tooth plate from rusting and corroding during the ground storage process due to messy placement, which will affect the service life and quality, and bring invisible safety hazards to the subsequent construction and use.
[0008] To solve the above problems and achieve the above object of the invention, a transfer device for the semi-finished products of the variable-section stirrups of the T-beam negative moment tooth plate of the present utility model is realized by adopting the following design structure and the following technical solutions:
[0009] As an improvement of a transfer device for the semi-finished products of the variable-section stirrups of the T-beam negative moment tooth plate of the present utility model, it includes:
[0010] A moving device (1);
[0011] A support frame (2), the support frame (2) is respectively connected to the four corners of the top of the moving device (1), and the support frame (2) includes:
[0012] A support rod (21), the lower end of the support rod (21) is connected to the moving device (1);
[0013] An adjusting member (22), the adjusting member (22) is connected to the top of the support rod (21);
[0014] A first support arm (23), the first support arm (23) is sleeved in the adjusting member (22);
[0015] A second support arm (24), the second support arm (24) is connected to the support rod (21) below the first support arm (23);
[0016] An anti-disengagement member (3), the anti-disengagement member (3) is respectively rotatably connected to one ends of the first support arm (23) and the second support arm (24).
[0017] As an improvement of the above of the present utility model, it further includes a strengthening member (4), and the strengthening member (4) is connected to the included angle between the support rod (21) and the first support arm (23).
[0018] As a further improvement of the above of the present utility model, the moving device (1) includes:
[0019] A vehicle frame (11);
[0020] A plurality of moving wheels (12), the plurality of moving wheels (12) are respectively connected to the four corners of the bottom of the vehicle frame (11).
[0021] As a further improvement of the above-mentioned utility model, the frame (11) is an overall hollow directional frame;
[0022] The plurality of moving wheels (12) include universal wheels and / or directional wheels, and a brake device adapted thereto is further provided on the moving wheels (12).
[0023] As a further improvement of the above-mentioned utility model, the support rods (21) are symmetrically and perpendicularly connected to the short plates of the frame (11) in pairs.
[0024] As a further improvement of the above-mentioned utility model, the adjusting member (22) includes:
[0025] An adjusting sleeve, the lower part of the outer side of the adjusting sleeve is connected to the top end of the support rod (21), and a tightening threaded hole is communicated and opened on the upper part of the outer side of the adjusting sleeve;
[0026] An adjusting bolt, the adjusting bolt is threadedly connected in the tightening threaded hole.
[0027] As a further improvement of the above-mentioned utility model, a rubber anti-slip pad is further connected to the tightening end of the adjusting bolt.
[0028] The first support arm (23) is an overall cylindrical member, and a first installation groove for installing the anti-detachment member (3) is opened at one end of the first support arm (23);
[0029] The second support arm (24) is an overall cylindrical member, and a second installation groove for installing the anti-detachment member (3) is opened at one end of the second support arm (24);
[0030] Among them, the length of the first support arm (23) is greater than the length of the second support arm (24).
[0031] As a further improvement of the above-mentioned utility model, the anti-detachment member (3) includes:
[0032] A connecting ring (31), the connecting ring (31) is rotatably connected in the corresponding first installation groove or second installation groove through a connecting shaft;
[0033] A baffle (32), the baffle (32) is perpendicularly connected to the outer side of the connecting ring (31);
[0034] A clamping plate (33), the clamping plate (33) is horizontally connected to the lower side of the connecting ring (31).
[0035] As a further improvement of the above-mentioned utility model, connecting ring mounting grooves for mounting the connecting ring (31) are provided in the middle parts of the first mounting groove and the second mounting groove, baffle mounting grooves for mounting the baffle (32) are provided in the upper parts of the first mounting groove and the second mounting groove, and clamping grooves for connecting the clamping plate (33) are provided in the lower parts of the first mounting groove and the second mounting groove.
[0036] As a still further improvement of the above-mentioned utility model, the reinforcing member (4) includes:
[0037] A reinforcing rod (41), one end of the reinforcing rod (41) is obliquely connected to the support rod (21);
[0038] A support sleeve (42), the support sleeve (42) is connected to the other end of the reinforcing rod (41), and the support sleeve (42) is used to support the first support arm (23);
[0039] Among them, the support sleeve (42) and the adjustment sleeve are on the same axis.
[0040] The working principle is as follows: Before using a T-beam negative moment tooth plate variable stirrup semi-finished product transfer device with the above-mentioned design structure, it is necessary to manually or through corresponding handling equipment carry the already manufactured transfer device to a designated position for installation as a standby.
[0041] The specific usage steps are as follows:
[0042] Before use, each anti-disengagement member (3) is in a state of being combined with the corresponding connected second support arm (24) and first support arm (23); Subsequently, the operator only needs to first loosen the adjustment knobs on each adjustment member (22), and then the operator first adjusts the distance between the two relatively first support arms (23) on one side on the corresponding adjustment member (22) to ensure that the distance between the ends of the two relatively first support arms (23) reaches a distance convenient for placing stirrups; Immediately afterwards, the operator locks the adjustment member (22) corresponding to the adjusted length of the first support arm (23), and finally, the operator adjusts the length of the two relatively first support arms (23) on the other side according to the length of the first support arm (23) adjusted on one side. After adjustment, lock it with the adjustment knob on the adjustment member (22) and then it can be used.
[0043] When in use, the operator first places the second stirrups (6) side by side in a left-right repeating placement manner on the two second support arms (24) at both ends until the placement of the second stirrups (6) on the two second support arms (24) at both ends is completed. Subsequently, the operator turns up the anti-disengagement members (3) at the ends of the four second support arms (24) outwards to prevent the second stirrups (6) from moving outwards;
[0044] Then, the operator arranges the first stirrups (5) side by side on the two first support arms (23) at both ends in a repeated left-right arrangement pattern until the placement of the first stirrups (5) on the two first support arms (23) at both ends is completed. Subsequently, the operator turns up the anti-displacement parts (3) at the ends of the four first support arms (23) outward to prevent the first stirrups (5) from moving outward;
[0045] Immediately afterwards, the operator releases the braking device of the moving wheels (12), holds the support rod (21), and then pushes the transfer device towards the final processing and manufacturing area;
[0046] Finally, when the transfer device carrying the first stirrups (5) and the second stirrups (6) reaches the unloading area of the final processing and manufacturing area, the operator first fixes the moving device (1) through the braking device of the moving wheels (12). Subsequently, the operator closes the anti-displacement parts (3) at the ends of the four first support arms (23) downward, and then removes the first stirrups (5) from the two first support arms (23) at both ends in a repeated left-right removal pattern. After the removal is completed; the operator closes the anti-displacement parts (3) at the ends of the four second support arms (24) downward, and then removes the second stirrups (6) from the two second support arms (24) at both ends in a repeated left-right removal pattern. After the removal is completed, a complete set of handling and unloading work is completed; repeating the above handling and unloading steps can quickly transport the first stirrups (5) and the second stirrups (6) from the semi-finished product storage area to the final processing and manufacturing area and perform the unloading and placement work.
[0047] During the above handling process, the two first support arms (23) at the same end are used to carry the first stirrups (5) to be transferred, and the two second support arms (24) at the same end are used to carry the second stirrups (6) to be transferred; the shape structure of the first stirrups (5) is larger than that of the second stirrups (6). During handling, the operator can place the first stirrups (5) and the second stirrups (6) according to specific handling requirements. The first support arms (23) are not limited to carrying the first stirrups (5) to be transferred, and the second support arms (24) are not limited to carrying the second stirrups (6) to be transferred. The operator can use them flexibly according to the specific handling situation. The repeated left-right arrangement pattern of the second stirrups (6) and the repeated left-right arrangement pattern of the first stirrups (5) are to ensure the stability of the moving device (1) during placement, prevent deviation due to unstable center, and cause potential safety hazards.
[0048] The beneficial effects of the present utility model compared with the prior art are:
[0049] 1. The structure of the utility model is simple, with low manufacturing cost, easy to operate and highly practical, and can be applied to a variety of handling scenarios; at the same time, it reduces the handling difficulty, handling cost and potential safety hazards during handling, meeting the operation requirements at the processing site;
[0050] 2. Due to the moving device (1) of the utility model, during the handling of semi-finished steel bars, it can reduce the labor force of manual handling, lower the risk of worker injury, and at the same time can quickly move heavy objects at the processing site, ensuring the processing progress, and can also improve efficiency and safety;
[0051] 3. The adjusting member (22) of the utility model can adjust the length of the first support arm (23), and can adjust the length of the first support arm (23) according to actual needs to ensure the stability and accuracy of the support structure; at the same time, it provides greater flexibility, allowing for quick response to changes or correction of errors during handling, and reducing delays caused by support problems;
[0052] 4. Due to the additional strengthening member (4) of the utility model, it can significantly improve the stability and bearing capacity of the first support arm (23); at the same time, it can effectively disperse and transfer the load, reducing local stress concentration, thereby preventing the bending or deformation of the first support arm (23), not only enhancing the safety of the overall structure, but also extending the service life, and reducing the frequency of maintenance and adjustment;
[0053] 5. Due to the additional anti - detachment member (3) of the utility model, it can prevent the stirrup from tilting outwards on the support arm, improving the safety and operational convenience during the handling process;
[0054] 6. The outer walls of the first support arm (23) and the second support arm (24) of the utility model are also provided with rubber protective layers, which can better protect the integrity of the stirrups sleeved on the first support arm (23) and the second support arm (24);
[0055] 7. The exterior of the utility model is coated with anti - rust paint and waterproof layer, so it can prevent rust and also extend the service life of the entire device, achieving environmental protection while saving resources. At the same time, the exterior of the device is coated with fluorescent materials that can emit light by themselves, which can clearly mark the position of the device at night, in dark indoor environments and underground construction environments, effectively playing a role in safety reminder, improving visibility, being easy for people to distinguish, and increasing safety during construction and daily life;
[0056] 8. The utility model can achieve centralized stacking and storage of the semi-finished products of the tapered stirrups of the T-beam negative moment tooth plate, achieving standardized construction and better protecting the semi-finished products of the tapered stirrups of the T-beam negative moment tooth plate, and preventing the semi-finished products of the tapered stirrups of the T-beam negative moment tooth plate from rusting and corroding due to messy placement during ground storage, affecting the service life and quality, and bringing invisible potential safety hazards to subsequent construction and use. BRIEF DESCRIPTION OF THE DRAWINGS
[0057] The following further details the specific implementation manners of the utility model with reference to the accompanying drawings, where:
[0058] Figure 1 is one of the usage state diagrams of the utility model;
[0059] Figure 2 is the second usage state diagram of the utility model;
[0060] Figure 3 is the overall structural schematic diagram of the utility model;
[0061] Figure 4 is the partial cross-sectional view of the utility model;
[0062] Figure 5 is the overall structural schematic diagram of the anti-disengagement part (3) of the utility model;
[0063] Among them, the reference numerals in the figures: 1 - moving device, 11 - vehicle frame, 12 - moving wheels;
[0064] 2 - support frame, 21 - support rod, 22 - adjusting part, 23 - first support arm, 24 - second support arm;
[0065] 3 - anti-disengagement part, 31 - connecting ring, 32 - baffle plate, 33 - clamping plate;
[0066] 4 - strengthening part, 41 - strengthening rod, 42 - support sleeve;
[0067] 5 - first stirrup;
[0068] 6 - second stirrup. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0069] In order to make the technical means, creative features, achieved purposes and functions realized by the utility model easy to understand, the technical solutions of the utility model will be further described in more detail below with reference to the accompanying drawings and specific implementation manners. It should be noted that, without conflict, the embodiments in this application and the features in the embodiments can be combined with each other. The utility model will be described in detail below with reference to the drawings and embodiments.
[0070] As shown in the specification appendix Figure 1 to the specification appendixFigure 5 A semi-finished product transfer device for the variable-section stirrups of the negative bending moment of a T-beam, as shown in the figure, includes:
[0071] A moving device 1;
[0072] A support frame 2, which is respectively connected to the four corners of the top of the moving device 1. The support frame 2 includes:
[0073] Support rods 21, the lower ends of the support rods 21 are connected to the moving device 1;
[0074] Adjusting parts 22, which are connected to the tops of the support rods 21;
[0075] The first support arm 23, which is sleeved in the adjusting part 22;
[0076] The second support arm 24, which is connected to the support rod 21 below the first support arm 23;
[0077] Anti-disengagement parts 3, which are respectively rotatably connected to one ends of the first support arm 23 and the second support arm 24.
[0078] Furthermore, as shown in Figure 1 and Figure 2 the figure, it further includes a strengthening part 4, which is connected at the included angle between the support rod 21 and the first support arm 23.
[0079] Furthermore, as shown in Figure 3 the figure, the moving device 1 includes:
[0080] A vehicle frame 11;
[0081] Several moving wheels 12, which are respectively connected to the four corners of the bottom of the vehicle frame 11.
[0082] Specifically, as shown in Figure 1 and Figure 3 the figure, the vehicle frame 11 is an internally hollow rectangular frame as a whole;
[0083] The several moving wheels 12 include universal wheels and / or directional wheels, and a brake device adapted to them is further provided on the moving wheels 12.
[0084] Furthermore, as shown in Figure 1 and Figure 2 as well as Figure 3 the figure, the support rods 21 are respectively symmetrically and vertically connected to the short plates of the vehicle frame 11 in pairs.
[0085] Furthermore, as shown in Figure 2 and Figure 3 the figure, the adjusting part 22 includes:
[0086] Adjusting sleeve, the lower part of the outer side of the adjusting sleeve is connected to the top end of the support rod 21, and a tightening threaded hole is communicated and opened on the upper part of the outer side of the adjusting sleeve;
[0087] Adjusting bolt, the adjusting bolt is threadedly connected in the tightening threaded hole.
[0088] In the present utility model, the adjusting bolt includes an adjusting knob and a screw rod connected to the middle of one end of the adjusting knob.
[0089] Specifically, as Figure 1 and Figure 2 as well as Figure 3 shown, a rubber anti-slip pad is further connected to the tightening end of the adjusting bolt.
[0090] The first support arm 23 is integrally a cylindrical member, and a first installation groove for installing the anti-disengagement member 3 is opened at one end of the first support arm 23;
[0091] The second support arm 24 is integrally a cylindrical member, and a second installation groove for installing the anti-disengagement member 3 is opened at one end of the second support arm 24;
[0092] Among them, the length of the first support arm 23 is greater than the length of the second support arm 24.
[0093] In the present utility model, rubber protection layers are further provided on the outer walls of the first support arm 23 and the second support arm 24, which can better protect the integrity of the stirrups sleeved on the first support arm 23 and the second support arm 24.
[0094] Furthermore, as Figure 4 and Figure 5 shown, the anti-disengagement member 3 includes:
[0095] Connecting ring 31, the connecting ring 31 is rotatably connected in the corresponding first installation groove or second installation groove through a connecting shaft;
[0096] Baffle 32, the baffle 32 is vertically connected to the outer side of the connecting ring 31;
[0097] Clamping plate 33, the clamping plate 33 is horizontally connected to the lower side of the connecting ring 31.
[0098] In the present utility model, the baffle 32 and the clamping plate 33 are arranged vertically.
[0099] Specifically, as Figure 4 and Figure 5 shown, connecting ring installation grooves for installing the connecting ring 31 are respectively opened in the middle of the first installation groove and the second installation groove, baffle installation grooves for installing the baffle 32 are respectively opened in the upper parts of the first installation groove and the second installation groove, and clamping grooves for connecting the clamping plate 33 are respectively opened in the lower parts of the first installation groove and the second installation groove.
[0100] Specifically, as Figure 3 shown, the reinforcing member 4 includes:
[0101] A reinforcing rod 41, one end of the reinforcing rod 41 is inclinedly connected to the support rod 21;
[0102] A support sleeve 42, the support sleeve 42 is connected to the other end of the reinforcing rod 41, and the support sleeve 42 is used to support the first support arm 23;
[0103] Wherein, the support sleeve 42 and the adjustment sleeve are on the same axis.
[0104] In the present utility model, an injection molding layer, an anti-rust layer and a warning layer are sequentially sprayed from the inside to the outside on the outer surfaces of the moving device 1, the support frame 2, the anti-disengagement member 3 and the reinforcing member 4, and fluorescent powder is applied on the warning layer; wherein, a high molecular wear-resistant material is injection molded on the injection molding layer; the anti-rust layer includes an epoxy zinc-rich primer, a chlorinated rubber topcoat and an epoxy mica iron intermediate paint located between the epoxy zinc-rich primer and the chlorinated rubber topcoat; the warning layer is a single-color or a reflective warning tape or a reflective color film or a reflective paint mixed with several colors.
[0105] In summary, a more specific implementation manner of the present utility model is:
[0106] Embodiment 1
[0107] Before using a semi-finished product transfer device for the T-beam negative moment tooth plate gradient stirrup with the above design structure, it is necessary to manually or through corresponding handling equipment transport the already manufactured transfer device to a designated position for installation as a standby.
[0108] The specific usage steps are as follows:
[0109] Before use, each anti-disengagement member 3 is in a state of being combined with the corresponding connected second support arm 24 and the first support arm 23; subsequently, the operator only needs to first loosen the adjustment knobs on each adjusting member 22, and then, the operator first adjusts the distance between the two opposite first support arms 23 on one side on the corresponding adjusting member 22 to ensure that the distance between the ends of the two opposite first support arms 23 reaches a distance convenient for placing stirrups; immediately afterwards, the operator locks the adjusting member 22 corresponding to the adjusted length of the first support arm 23, and finally, the operator adjusts the length of the two opposite first support arms 23 on the other side according to the length of the first support arm 23 that has been adjusted on one side, and after adjustment, it can be used by locking the adjustment knob on the adjusting member 22.
[0110] During use, the operator first arranges the second stirrups 6 side by side on the two second support arms 24 at both ends in a repeated left-right arrangement pattern until the placement of the second stirrups 6 on the two second support arms 24 at both ends is completed. Subsequently, the operator turns up the anti-displacement parts 3 at the ends of the four second support arms 24 outward to prevent the second stirrups 6 from moving outward;
[0111] Then, the operator arranges the first stirrups 5 side by side on the two first support arms 23 at both ends in a repeated left-right arrangement pattern until the placement of the first stirrups 5 on the two first support arms 23 at both ends is completed. Subsequently, the operator turns up the anti-displacement parts 3 at the ends of the four first support arms 23 outward to prevent the first stirrups 5 from moving outward;
[0112] Immediately afterwards, the operator releases the braking device of the moving wheels 12, holds the support rod 21, and then pushes this transfer device towards the final processing and manufacturing area;
[0113] Finally, when the transfer device carrying the first stirrups 5 and the second stirrups 6 arrives at the unloading area of the final processing and manufacturing area, the operator first fixes the moving device 1 through the braking device of the moving wheels 12. Subsequently, the operator closes the anti-displacement parts 3 at the ends of the four first support arms 23 downward, and then removes the first stirrups 5 from the two first support arms 23 at both ends respectively in a repeated left-right removal pattern. After the removal is completed; the operator closes the anti-displacement parts 3 at the ends of the four second support arms 24 downward, and then removes the second stirrups 6 from the two second support arms 24 at both ends respectively in a repeated left-right removal pattern. After the removal is completed, a complete set of handling and unloading work is completed; repeating the above handling and unloading steps can quickly transfer the first stirrups 5 and the second stirrups 6 from the semi-finished product storage area to the final processing and manufacturing area and carry out the unloading and placement work.
[0114] During the above handling process, the two first support arms 23 at the same end are used to carry the first stirrups 5 to be transferred, and the two second support arms 24 at the same end are used to carry the second stirrups 6 to be transferred; the shape structure of the first stirrups 5 is larger than that of the second stirrups 6. During handling, the operator can place the first stirrups 5 and the second stirrups 6 according to specific handling requirements. The first support arms 23 are not limited to carrying the first stirrups 5 to be transferred, and the second support arms 24 are not limited to carrying the second stirrups 6 to be transferred. The operator can use them flexibly according to specific handling situations. The repeated left-right arrangement pattern of the second stirrups 6 and the repeated left-right arrangement pattern of the first stirrups 5 are to ensure the stability of the moving device 1 during placement, prevent the center from being unstable and shifting, and cause potential safety hazards.
[0115] Finally, as time goes by, when all the handling work is completed and the transfer device of the present utility model is no longer needed, the operator only needs to clean and repair each component of the present utility model, and then transport it to the designated tool storage warehouse for storage by manual or corresponding handling equipment for the next cycle of use. In summary, the transfer of the present utility model is convenient, reliable, time-saving and labor-saving, which maximally ensures the safety of the operator and also maximally reduces the labor intensity of the operator.
[0116] Embodiment 2
[0117] This Embodiment 2 is basically the same as Embodiment 1 in terms of installation and use. The only difference is that when the device is in use, it does not only achieve the repeated handling function, but also realizes the storage of the first stirrup 5 and the second stirrup 6, so as to achieve the function of centralized storage and stacking of the first stirrup 5 and the second stirrup 6.
[0118] During the specific storage and stacking use, the operator first places the second stirrups 6 side by side on the two second support arms 24 at both ends in a repeated left-right arrangement until the placement of the second stirrups 6 on the two second support arms 24 at both ends is completed. Subsequently, the operator turns up the anti-displacement parts 3 at the ends of the four second support arms 24 respectively to prevent the second stirrups 6 from moving outwards;
[0119] Then, the operator places the first stirrups 5 side by side on the two first support arms 23 at both ends in a repeated left-right arrangement until the placement of the first stirrups 5 on the two first support arms 23 at both ends is completed. Subsequently, the operator turns up the anti-displacement parts 3 at the ends of the four first support arms 23 respectively to prevent the first stirrups 5 from moving outwards;
[0120] Finally, the operator releases the braking device of the moving wheels 12, holds the support rod 21, and then pushes the transfer device to the designated storage position in the final processing and manufacturing area for storage and placement, so as to achieve the centralized stacking and storage of the T-beam negative moment tooth plate variable-section stirrup semi-finished products, achieve standardized construction and better protect the T-beam negative moment tooth plate variable-section stirrup semi-finished products. It is necessary to prevent the T-beam negative moment tooth plate variable-section stirrup semi-finished products from being rusted and corroded during the ground storage process due to messy placement, which will affect the service life and quality and bring invisible safety hazards to the subsequent construction use. When processing is needed, the operator then takes out the first stirrups 5 and the second stirrups 6 from the device for subsequent corresponding processing procedures.
[0121] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model, and it is not intended to limit the present utility model in other forms. Any person skilled in the relevant art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes. However, any simple modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution content of the present utility model still fall within the protection scope of the technical solution of the present utility model.
Claims
1. A T-beam negative bending moment tooth plate gradient stirrup semi-finished product transfer device, characterized in that: include: Mobile device (1); A support frame (2), the support frame (2) is connected to the four corners of the top of the mobile device (1), and the support frame (2) includes: A support rod (21), the lower end of the support rod (21) is connected to the moving device (1); An adjusting member (22), the adjusting member (22) being connected to the top of the support rod (21); a first support arm (23), the first support arm (23) being sleeved in the adjusting member (22); a second support arm (24), the second support arm (24) being connected to the support rod (21) below the first support arm (23); The anti-slip part (3) is rotatably connected to one end of the first support arm (23) and the second support arm (24).
2. A T-beam negative bending moment tooth plate gradient stirrup semi-finished product transport device according to claim 1, characterized in that: It also includes a reinforcement member (4), which is connected at the angle between the support rod (21) and the first support arm (23).
3. The device for transferring semi-finished products of negative moment toothed plate of T-beam according to claim 1, characterized in that: The mobile device (1) comprises: Frame (11); Several moving wheels (12) are respectively connected to the four corners of the bottom of the vehicle frame (11).
4. The device for transferring semi-finished products of negative moment toothed plate of T-beam according to claim 3, characterized in that: The vehicle frame (11) is a directional frame with a hollow interior as a whole; The plurality of movable wheels (12) include universal wheels and / or fixed wheels, and a brake device adapted thereto is also provided on the movable wheels (12).
5. The device for transferring semi-finished products of negative moment toothed plate and tapered stirrups for T-beams according to claim 1, characterized in that: The support rods (21) are symmetrically and vertically connected to the short plates of the vehicle frame (11) in pairs.
6. The device for transferring semi-finished products of negative moment toothed plate of T-beam according to claim 1, characterized in that: The regulating member (22) comprises: An adjusting sleeve, wherein the lower outer portion of the adjusting sleeve is connected to the top end of the support rod (21), and the upper outer portion of the adjusting sleeve is connected to a tightening threaded hole; Adjusting bolt: The adjusting bolt is threadedly connected in the tightening threaded hole.
7. A T-beam negative bending moment tooth plate gradient stirrup semi-finished product transport device according to claim 6, characterized in that: The tightening end of the adjusting bolt is also connected to a rubber anti-slip pad; The first support arm (23) is a cylindrical component as a whole, and one end of the first support arm (23) is provided with a first mounting groove for mounting the anti-slip component (3); The second support arm (24) is a cylindrical component as a whole, and one end of the second support arm (24) is provided with a second mounting groove for mounting the anti-slip component (3); The length of the first support arm (23) is greater than the length of the second support arm (24).
8. The device for transferring semi-finished products of negative moment toothed plate and gradient stirrups for T-beams according to claim 1, characterized in that: The anti-dropping member (3) comprises: A connecting ring (31), the connecting ring (31) is rotatably connected to the corresponding first mounting groove or the second mounting groove via a connecting shaft; A baffle (32), the baffle (32) being vertically connected to the outer side of the connecting ring (31); The card plate (33) is horizontally connected to the lower side of the connecting ring (31).
9. The device for transferring semi-finished products of negative moment toothed plate and tapered stirrups for T-beams according to claim 7, characterized in that: A connecting ring mounting groove for mounting a connecting ring (31) is provided in the middle of each of the first mounting groove and the second mounting groove, a baffle mounting groove for mounting a baffle (32) is provided in the upper portion of each of the first mounting groove and the second mounting groove, and a card slot for connecting a card plate (33) is provided in the lower portion of each of the first mounting groove and the second mounting groove.
10. The device for transferring semi-finished products of negative moment toothed plate and tapered stirrups for T-beams according to claim 2, characterized in that: The reinforcement (4) comprises: A reinforcing rod (41), one end of the reinforcing rod (41) being obliquely connected to the supporting rod (21); A support sleeve (42), the support sleeve (42) is connected to the other end of the reinforcing rod (41), and the support sleeve (42) is used to support the first support arm (23); The supporting sleeve (42) and the adjusting sleeve are located on the same axis.