Disclosure of utility model
The utility model aims to provide a detachable pole production tensioning tool, wherein a tensioning head and a fixed disc in the tensioning tool are integrally formed and then split, so that the tensioning tool is more flexible and convenient to install or disassemble, and meanwhile, the integrally formed and then split design enables the tensioning tool to be cleaned more easily after being used.
The utility model adopts the following technical scheme that the detachable pole production tensioning tool comprises:
The tensioning head is provided with a first through hole in the middle, the tensioning head is integrally formed and then divided into a first tensioning head dividing part and a second tensioning head dividing part along a first dividing line, the first dividing line is provided with a bulge, so that a first bulge is formed on the contact surface of the first tensioning head dividing part and the second tensioning head dividing part, and a first groove matched with the first bulge is formed on the second tensioning head dividing part;
The fixed disk, the fixed disk middle part is equipped with the second through-hole, the fixed disk integrated into one piece back is cut apart into first fixed disk partition portion and second fixed disk partition portion along the second parting line, the second parting line has the arch, so that be formed with the second arch on the contact surface of first fixed disk partition portion and second fixed disk partition portion, second fixed disk partition portion be formed with the second recess of the protruding looks adaptation of second.
Further, two first protrusions are arranged and are respectively located on the left side and the right side of the first through hole of the tensioning head.
Further, the tensioning head comprises a tensioning part and a connecting part, wherein the connecting part is of a hollow cylindrical structure, and external threads for external connection are formed on the outer wall of the cylindrical structure.
Further, a first annular groove is formed in the middle of the tensioning part along the circumferential direction of the outer wall surface of the tensioning part, and the first annular groove is used for cutting steel bars when the electric pole is demolded.
Further, the tensioning part is provided with a first through hole along the circumferential direction of the tensioning part, and the first through hole penetrates through the first annular groove and is used for placing the steel bars in the steel bar framework of the electric pole.
Further, two second protrusions are arranged and are respectively positioned at the left side and the right side of the second through hole of the fixed disc.
Further, a second annular groove is formed in the middle of the fixing disc along the circumferential direction of the outer wall surface of the fixing disc, and reinforcing steel bars are cut off when the second annular groove is used for demolding the electric pole.
Further, the fixed disk is provided with a second through drilling hole along the circumferential direction of the fixed disk, and the second through drilling hole penetrates through the second annular groove and is used for placing the steel bars in the steel bar framework of the electric pole.
Further, a reinforcing rib plate is arranged at the second annular groove.
Further, a step structure is formed at the bottom of the fixed disc and used for positioning with the steel die.
Compared with the prior art, the utility model has the beneficial effects that:
According to the detachable pole production tensioning tool, the tensioning head and the fixed disc are integrally formed and then separated, so that the detachable pole production tensioning tool is more flexible and convenient to install or detach. The design of the first through hole and the second through hole ensures that only the stressed part is reserved when the middle part is cut off, thereby greatly reducing the weight of the tool, facilitating the transportation and the movement and reducing the cost of manpower and material resources. For example, when equipment maintenance, component replacement or storage and transportation are carried out, each partition part can be separated, the occupied space is reduced, the operation is convenient, and the on-site installation and cleaning are convenient.
Meanwhile, the first bulge of the first tensioning head dividing part is matched with the first groove of the second tensioning head dividing part, and the second bulge of the first fixing disc dividing part is matched with the second groove of the second fixing disc dividing part, so that the connection tightness and stability between the dividing parts in the using process are ensured in the matching mode, the conditions of dislocation, looseness and the like in the tensioning process can be effectively prevented, and the quality and the precision of electric pole production are ensured.
Secondly, the integral precision of the stretching head and the fixed disc in the undivided state is ensured by the integral forming process, the precision after assembly is further ensured by the matching of the divided protrusions and the grooves, and the assembly is easy to disassemble and assemble. In the production process of the electric pole, the high-precision tensioning tool can control the tensioning force and the position of the steel bar more accurately, so that the quality and the performance of the electric pole are improved.
In addition, the integral molding post-segmentation design makes the tensioning tool easier to clean after use.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to fall within the scope of the utility model.
The utility model is discussed in detail below in conjunction with figures 1 to 4 and the specific embodiments:
As shown in fig. 1-4, the utility model provides a detachable pole production tensioning tool, which comprises a tensioning head 1 arranged at a tensioning end of a steel reinforcement framework and a fixed disc 2 arranged at a fixed end of the steel reinforcement framework.
The middle part of the tensioning head 1 is provided with a first through hole 10, the tensioning head 1 is divided into a first tensioning head dividing part 12 and a second tensioning head dividing part 13 along a first dividing line 11 after being integrally formed, the first dividing line 11 is provided with a bulge, so that a first bulge 12-1 is formed on the contact surface of the first tensioning head dividing part 12 and the second tensioning head dividing part 13, a first groove matched with the first bulge 12-1 is formed on the second tensioning head dividing part 13, and when the tensioning head is used, the first bulge 12-1 is placed in the first groove, so that the first tensioning head dividing part 12 and the second tensioning head dividing part 13 are attached and mounted, and positioning and mounting of a tool are facilitated.
The middle part of the fixed disc 2 is provided with a second through hole 20, the fixed disc 2 is divided into a first fixed disc dividing part 22 and a second fixed disc dividing part 23 along a second dividing line 21 after being integrally formed, the second dividing line 21 is provided with a bulge, so that a second bulge 22-1 is formed on the contact surface of the first fixed disc dividing part 22 and the second fixed disc dividing part 23, the second fixed disc dividing part 23 is provided with a second groove matched with the second bulge 22-1, and when the fixed disc fixing device is used, the second bulge 22-1 is placed in the second groove, so that the first fixed disc dividing part 22 and the second fixed disc dividing part 23 are attached and mounted, and the positioning and mounting of a tensioning tool are facilitated.
According to the detachable pole production tensioning tool, the tensioning head 1 and the fixed disc 2 are integrally formed and then are divided, so that the detachable pole production tensioning tool is more flexible and convenient to install or detach. The design of the first through hole 10 and the second through hole 20 ensures that only the stressed part is reserved when the middle part is cut off, thereby greatly reducing the weight of the tool, facilitating the transportation and the movement and reducing the cost of manpower and material resources. For example, when equipment maintenance, component replacement or storage and transportation are carried out, each partition part can be separated, the occupied space is reduced, the operation is convenient, and the on-site installation and cleaning are convenient.
Meanwhile, the first bulge 12-1 of the first tensioning head dividing part 12 is matched with the first groove of the second tensioning head dividing part 13, the second bulge 22-1 of the first fixing disc dividing part 22 is matched with the second groove of the second fixing disc dividing part 23, the connection tightness and stability between the dividing parts in the using process are ensured by the matching mode, the conditions of dislocation, looseness and the like in the tensioning process can be effectively prevented, and the quality and the precision of the production of the electric pole are ensured.
Secondly, the integral forming process ensures the integral precision of the tensioning head 1 and the fixed disc 2 in an undivided state, and the protrusion and the groove after division are matched, so that the precision after assembly is further ensured, and the assembly is easy to disassemble and assemble. In the production process of the electric pole, the high-precision tensioning tool can control the tensioning force and the position of the steel bar more accurately, so that the quality and the performance of the electric pole are improved.
In addition, the integral molding post-segmentation design makes the tensioning tool easier to clean after use. Traditional integral type frock probably has some corners and gaps that are difficult to the clearance, and detachable design can clear up each division alone, ensures the cleanliness of frock, avoids impurity to produce the influence to the next use.
Further, in some embodiments, as shown in fig. 1 and 2, the tensioning head 1 includes a tensioning portion 14 and a connecting portion 15, the tensioning portion 14 is hollow and disc-shaped, the connecting portion 15 is hollow and cylindrical, the connecting portion 15 is disposed on the tensioning portion 14, and the tensioning portion 14 and the connecting portion 15 form a T-shaped tensioning head 1.
The two first protrusions 12-1 are respectively located at the left side and the right side of the first through hole 10 of the tensioning head 1, the two first protrusions 12-1 are symmetrically arranged, and the symmetrically arranged protrusions enhance the connection stability of the tensioning head dividing part. When the first tensioning head dividing part 12 and the second tensioning head dividing part 13 are attached and installed, the first bulges 12-1 on the left side and the right side are matched with the corresponding first grooves at the same time, so that the two dividing parts are uniformly restrained in the horizontal direction, the condition of left-right shaking or dislocation in the tensioning process is prevented, and the stability of the overall structure of the tensioning head is ensured.
Similarly, as shown in fig. 3 and 4, the fixed disc 2 is disc-shaped, two second protrusions 22-1 are correspondingly disposed, and are respectively disposed on the left and right sides of the second through hole 20 of the fixed disc 2, and the two second protrusions 22-1 are symmetrically disposed, and the second protrusions 22-1 disposed symmetrically have the same function as the first protrusions 12-1, which is not described herein.
Further, in some embodiments, as shown in fig. 1 and 2, the tensioning head 1 includes a tensioning portion 14 and a connecting portion 15, where the connecting portion 15 is a hollow cylindrical structure, and an external thread for external connection is formed on an outer wall of the cylindrical structure for connection with a tensioning device. The design of external threads enables quick and standardized connection between the tensioning head 1 and tensioning equipment to be realized through threaded connection, the connection mode is simple and visual, an operator can easily install and detach, and the working efficiency is improved. Meanwhile, the external screw thread is a common connection mode, and a plurality of different types of tensioning devices can be provided with internal screw thread interfaces matched with the external screw thread interfaces, so that the tensioning head 1 with the design can be compatible with a plurality of different tensioning devices, and the universality and the applicability of the tensioning head are improved.
More specifically, a first annular groove 14-1 is formed in the middle of the tensioning part 14 along the circumferential direction of the outer wall surface thereof, and the first annular groove 14-1 is used for cutting steel bars when the pole is demolded. Correspondingly, the tensioning part 14 is provided with a first through hole 14-2 along the circumferential direction, and the first through hole 14-2 passes through the first annular groove 14-1 and is used for placing the steel bars in the steel bar framework of the electric pole, so that operators can rapidly and accurately place the steel bars in corresponding holes, and the manufacturing efficiency of the steel bar framework of the electric pole is improved. The first through-hole 14-2 is provided at a position related to the distribution of the steel bars of the electric pole, which is designed by a person skilled in the art according to practical situations, and the present utility model is not limited in particular.
The arrangement of the first annular groove 14-1 makes clear the cutting position of the steel bar when the electric pole is demoulded, and in the demoulding process, operators can accurately cut the steel bar at the groove, so that the electric pole can be smoothly separated from the tensioning tool, and the demoulding efficiency and accuracy are improved. Meanwhile, the arrangement of the first annular groove 14-1 is equivalent to the middle clearance, the middle clearance provides space for cutting off the reinforcing steel bars when the electric pole is demolded, and an operator can conveniently cut off the reinforcing steel bars at the clearance without being interfered by other parts of the tool, so that the convenience of operation is improved.
Similarly, as shown in fig. 3 and 4, a second annular groove 24 is formed in the middle of the fixing plate 2 along the circumferential direction of the outer wall surface thereof, and the second annular groove 24 is used for cutting steel bars when the electric pole is demolded. Correspondingly, the fixing disc 2 is provided with a second through drilling hole 25 along the circumferential direction, and the second through drilling hole 25 penetrates through the second annular groove 24 and is used for placing the steel bars in the steel bar framework of the electric pole. The second through-holes 25 are arranged in a position related to the distribution of the steel bars of the electric pole, which is designed by a person skilled in the art according to the practical situation, and the utility model is not particularly limited.
Specifically, the second annular groove 24 and the second through-hole 25 can be designed with reference to the first annular groove 14-1 and the first through-hole 14-2. Therefore, the second annular groove 24 has the advantages that the arrangement of the second annular groove 24 also has the advantages that the cutting position of the steel bar during demolding of the electric pole is clear, and in the demolding process, operators can accurately cut the steel bar at the groove, so that the electric pole and the tensioning tool can be smoothly separated, and the demolding efficiency and accuracy are improved. Meanwhile, the arrangement of the second annular groove 24 is equivalent to the middle clearance, the middle clearance provides space for cutting off the reinforcing steel bars when the electric pole is demolded, and an operator can conveniently cut off the reinforcing steel bars at the clearance without being interfered by other parts of the tool, so that the convenience of operation is improved.
Further, in some more specific embodiments, as shown in fig. 3, a reinforcing rib 26 is disposed at the second annular groove 24, and the reinforcing rib 26 is disposed at a position between two adjacent second through holes 25, so as to enhance the strength of the fixing plate 2.
Meanwhile, as shown in fig. 4, a step structure 27 may be formed at the bottom of the fixing plate 2, so as to facilitate the positioning between the reinforcing steel bar skeleton and the steel die after entering the die fixing plate 2. The step structure 27 provides a clear positioning reference between the fixed disk 2 and the steel mould. When the fixed disc 2 is installed on the steel mould, the step structure 27 enables operators to rapidly position the fixed disc and the steel mould, so that the problem of dislocation or unstable installation of the steel reinforcement framework caused by position deviation is avoided, and the accurate positioning is helpful for improving consistency and quality in the production process of the electric pole.
The utility model has been further described with reference to specific embodiments, but it should be understood that the detailed description is not to be construed as limiting the spirit and scope of the utility model, but rather as providing those skilled in the art with the benefit of this disclosure with the benefit of their various modifications to the described embodiments.