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Numerical-control pipe bending equipment and movable joint pressing block device for restraining bent pipe from becoming elliptic

A technology of briquetting and joints, which is applied in the field of pipe processing, can solve the problems of ellipticity tensile fracture, aggravate deformation, reduce the ellipticity of the curved part of the catheter, etc., and achieve the effect of reducing ellipticity and avoiding tensile fracture

Active Publication Date: 2021-11-09
ZHEJIANG KING MAZON MACHINERY +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Due to the limitation of the installation environment of aircraft and rockets, the shape of the catheter is complicated to bend. Many catheter bending parts have a small bending radius, which leads to serious deformation during the bending process, and it is extremely easy to become an ellipse, or even become unstable and wrinkled. This is a common technology in the catheter bending processing industry. problem, which has not yet been completely resolved
[0004] In the early stage of the aircraft and rocket start-up stage in China, due to the weak manufacturing base, manual methods such as filling fine sand and rosin in the hollow tube were used to ensure the roundness of the bending process. Quantitative development needs. Therefore, with the development of industrialization, hydraulic pipe benders and CNC pipe benders are gradually used to bend and process pipes. In the bending process, due to the influence of the structural characteristics of the process equipment, the bending part of the pipe is always in the bending process. It is in a semi-closed state. Under such bending conditions, there is no protection during the bending process of the catheter, and it is easy to aggravate the deformation at the bending part, reducing the roundness of the catheter bending to an ellipse (there are common technical problems in this industry all over the world), due to the lack of sufficient constraints , which also aggravates the technical defects of buckling and wrinkling in the bending process of the bent pipe, affects the quality of aircraft and rocket products, and reduces the reliability and safety of aircraft and rockets
[0005] With the development of pipe bending technology, in the process of high-precision pipe bending, the mandrel is often used to support the inner wall of the catheter, thereby reducing the ellipticity of the curved part of the catheter and effectively avoiding wrinkles on the inner wall of the catheter And damage; but for the outer wall of the catheter, due to lack of sufficient support, there is still a certain degree of ellipticity and a certain risk of being stretched and broken

Method used

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  • Numerical-control pipe bending equipment and movable joint pressing block device for restraining bent pipe from becoming elliptic
  • Numerical-control pipe bending equipment and movable joint pressing block device for restraining bent pipe from becoming elliptic
  • Numerical-control pipe bending equipment and movable joint pressing block device for restraining bent pipe from becoming elliptic

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0061] Such as figure 1 The numerically controlled pipe bending equipment shown to suppress the wrinkling and ellipse of the bent pipe includes a frame 1 and an automatic feeding and transferring device 2 installed on the frame 1, an anti-wrinkle mechanism 3, a supporting mechanism 4, a mold clamping device 5 and Bending mold mechanism 6, described automatic feeding transfer device 2 sends conduit 7 to anti-wrinkle mechanism 3, support mechanism 4, clamping mold device 5 and bending mold mechanism 6, and between anti-wrinkle mechanism 3, support mechanism 4, clamping mold The device 5 and the bending die mechanism 6 cooperate to complete the pipe bending operation of the conduit 7, wherein, before performing the pipe bending operation, the anti-wrinkle mechanism 3 and the bending die mechanism 6 are located on the right side of the conduit 7, and the support Mechanism 4 and mold clamping device 5 are located on the left side of conduit 7 .

[0062] In the embodiment of the pr...

Embodiment 2

[0175] The difference between this embodiment and the first embodiment is that the joint pressing block 42 and the guide seat 41 in the first embodiment are no longer used in this embodiment; instead, they are replaced by a mold guiding mechanism.

[0176] It is worth noting that the clamping mold 51 in this embodiment is not hinged to the mold guiding mechanism.

[0177] In the embodiment of the present invention, such as Figure 17 , Figure 18 , Figure 19 and Figure 20 As shown, the mold guiding mechanism includes a mounting bracket 80 and a fourth driving member 81 installed on the frame 1, and a first guiding mold 82, a second guiding mold 83 and a first guiding mold 83 installed on the mounting bracket 80 from top to bottom. The third guide mold 84, the right end surface of the first guide mold 82 is provided with a linear first arc surface 820, and the right end surface of the second guide mold 83 is provided with a linear second arc surface 830. The right end sur...

Embodiment 3

[0186] The difference between the present embodiment and the first embodiment is that the joint pressing block 42 and the guide seat 41 in the first embodiment are no longer used in this embodiment; instead, the guide seat 90 is used instead.

[0187] It is worth noting that the mold clamping 51 in this embodiment is not hinged to the mold guide base 90 .

[0188] In this example, if Figure 21 and Figure 22 As shown, a number of second heating tubes 91 are also provided, and a number of parallel fourth installation holes 900 are also provided on the guide mold base 90. The fourth installation holes 900 are in the front and rear direction, and the number of second heating tubes 91 is installed in the fourth installation hole 900 .

[0189] Further preferably, a second temperature sensor is also provided, and the second temperature sensor is used to detect the temperature of the guide mold base 90 .

[0190] Further preferably, the material of the mold guide base 90 is high...

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Abstract

The invention discloses numerical-control pipe bending equipment and a movable joint pressing block device for restraining a bent pipe from becoming elliptic. The movable joint pressing block device comprises a guide seat mounted on a rack and a plurality of movable joint pressing blocks, the movable joint pressing blocks are distributed side by side and installed on the guide seat in a sliding mode, and every two adjacent movable joint pressing blocks are hinged to each other; semicircular grooves are formed in the right end surfaces of the movable joint pressing blocks, and the semicircular grooves in the movable joint pressing blocks are matched to form a first semicircular groove. According to the technical scheme, the outer side wall of the bent part of a catheter can be sufficiently supported, so that the ellipticity of the bent part of the catheter is further reduced, and the outer side wall of the bent part of the catheter can be effectively prevented from being stretched and fractured.

Description

technical field [0001] The invention relates to the technical field of pipe material processing, in particular to a numerically controlled pipe bending device and a joint briquetting device for preventing the pipe from becoming elliptical. Background technique [0002] Aircraft and rocket tubes are responsible for important tasks such as fuel input, mechanism opening, pressure control, and environmental regulation during preparation. Failure or damage to any part may lead to "plane crash" and rocket "arrow destruction". Death" is a major tragedy, and it is directly related to the life safety of officers, soldiers and passengers. [0003] There are many metal hollow tube components on airplanes and rockets, commonly known as "ducts". The conduits are mainly used to transmit various liquids and gases, to support the fuel and power required for the flight of airplanes and rockets, and to complete various tasks. The rocket is a very important part. Due to the hollow structure ...

Claims

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Application Information

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IPC IPC(8): B21D7/024B21D7/03B21D7/16B21D7/12
CPCB21D7/024B21D7/03B21D7/16B21D7/12
Inventor 林姚辰曾元松林伟明吴为吕凤工林军凯闫晶黄宏邹成龙王鹤飞
Owner ZHEJIANG KING MAZON MACHINERY