Cutting machining equipment for metal pipe
By designing automated cutting and processing equipment, the shortcomings of metal pipe cutting devices in feeding, cutting and grinding are solved, and the stability and quality are improved, meeting the needs of automated and efficient processing of metal pipe cutting.
Patent Information
- Application Number
- CN202510838368.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-23
- Publication Date
- 2025-08-01
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing metal pipe cutting devices have difficulties in automated loading and cutting of three-section pipes, and are not convenient for clamping and grinding of the cut pipes, which affects the cutting quality and subsequent splicing.
A cutting processing equipment including cutting processing mechanism, pipe processing table, feeding assembly, push assembly, sliding assembly, limit assembly, clamping assembly and grinding assembly is designed to ensure the stability and quality of the pipe cutting through automated feeding, cutting and grinding processes.
It realizes automatic loading and cutting of metal pipes, which can facilitate cutting of pipes into three sections and polish the cut end surface, improving the cutting quality and subsequent splicing effect.
Smart Images

Figure CN120395463A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of pipe cutting and processing, and specifically provides a cutting and processing device for metal pipes. Background Art
[0002] Metal pipes mainly include seamless steel pipes and welded steel pipes, which have different characteristics and uses in industrial applications. Seamless metal steel pipes are made by processes such as piercing, stretching, and rolling of solid round bars, and have high precision and surface quality. Seamless steel pipes can be classified into hot-rolled seamless pipes, cold-drawn pipes, precision steel pipes, hot-expanded pipes, cold-spun pipes, and extruded pipes according to the production process. Seamless steel pipes are commonly used for fluid transportation under high pressure and high temperature, such as in the petroleum, natural gas, and chemical industries, because of their strong pressure resistance and suitability for various liquid and gas transportation pipelines.
[0003] Currently, Chinese Patent No. CN202411525782.0 discloses a metal pipe cutting device. In the present invention, through the cooperation of the gear assembly and the rack, the sliding frame can move smoothly on the surface of the workbench. After the metal pipe fitting is positioned on the surface of the sliding frame through the clamping component, by sliding the sliding frame, the length of the protruding part of the metal pipe fitting can be precisely controlled, ensuring the accuracy of the cutting length of the metal pipe fitting and improving the cutting quality of the metal pipe fitting.
[0004] When manufacturing and processing existing metal hollow pipes, the pipes need to be cut into corresponding lengths. Although the above-mentioned device can improve the cutting quality of metal pipe fittings, during the use of the above-mentioned device, it is inconvenient to cut the produced pipes into three sections, which is not conducive to automatic feeding and cutting of the pipes, affecting the quality of pipe cutting and processing. Moreover, during the processing of the above-mentioned device, it is inconvenient to perform clamping and feeding operations on the cut pipes, which is not conducive to grinding the end faces of the cut pipes, affecting the quality of subsequent splicing and use of the cut pipes. Therefore, we need to provide a cutting and processing device for metal pipes. Summary of the Invention
[0005] The present invention provides a cutting and processing device for metal pipes, which has the advantages of being able to perform feeding and cutting on pipes and being able to facilitate the grinding operation on the cut pipes, thereby solving the problems raised in the above background art.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: a cutting and processing equipment for metal pipes, comprising a cutting and processing mechanism, the cutting and processing mechanism comprising a pipe processing table, a processing control panel is installed on the surface of one side of the pipe processing table, a pipe feeding assembly is fixedly installed on one side of the top of the pipe processing table, a pipe pushing assembly is fixedly installed at one end of the top of the pipe processing table, and the pipe pushing assembly is used in conjunction with the pipe feeding assembly, a pipe moving support assembly is fixedly installed on the top of the pipe processing table, and the pipe moving support assembly is located at the pipe On one side of the material pushing assembly, a cutting limit assembly is fixedly installed on the top of the pipe processing table, and the cutting limit assembly is located on one side of the pipe moving support assembly. The other end of the top of the pipe processing table is fixedly connected to a mounting bracket, one end of the inner surface of the mounting bracket is fixedly installed with a pipe clamping and moving assembly, and the other end of the inner surface of the mounting bracket is fixedly installed with a pipe end grinding assembly, and the number of pipe end grinding assemblies is two groups. A blanking inclined seat is installed through the inner side of the pipe processing table, and a connecting pipe box is fixedly installed on one side of the pipe processing table, and the connecting pipe box is located at one end of the blanking inclined seat;
[0007] The cutting limit assembly includes a pad, a cutting groove, a pipe pad arc seat, a pipe clamping component, a pipe pressing component, a pipe cutting component and a pipe end blocking component. The pad is fixedly connected to the top of the pipe processing table, the cutting groove is opened on the surface of the pad, the pipe pad arc seat is fixedly connected to the two ends of the top of the pad, the pipe clamping component is fixedly installed at the two ends of the top of the pad, and the pipe clamping component is used in pairs with the pipe pad arc seat, the pipe pressing component is fixedly installed on the top of the pad, and the number of pipe pressing components is two groups, the pipe cutting component is fixedly installed on the top of the pad, and the pipe cutting component is located between the two groups of pipe pressing components, and the pipe end blocking component is fixedly installed at one end of the pad.
[0008] As a cutting and processing equipment for metal pipes of the present invention, the pipe feeding assembly includes a storage feeding inclined seat, a metal pipe body, an electrically controlled reciprocating lifting rod, a reciprocating controller, a horizontal plate and a feeding tube baffle plate. The storage feeding inclined seat is fixedly installed on the top of the pipe processing table, the metal pipe body is arranged on the surface inside the storage feeding inclined seat, and the number of metal pipe bodies is multiple. The electrically controlled reciprocating lifting rod is fixedly installed on both sides of the storage feeding inclined seat, the reciprocating controller is installed on the electrically controlled reciprocating lifting rod, and the reciprocating controller is used to control the electrically controlled reciprocating lifting rod. The horizontal plate is fixedly connected to the output end of the electrically controlled reciprocating lifting rod, the feeding tube baffle plate is fixedly connected to the bottom of the horizontal plate, and the feeding tube baffle plate is used in conjunction with the storage feeding inclined seat.
[0009] As a cutting and processing device for metal pipes according to the present invention, the pipe pushing assembly includes a pipe groove concave platform, a pipe connecting stop bar, a fixed seat, an electric control pushing telescopic rod, a pushing controller, and a pushing slide plate. The pipe groove concave platform is fixedly connected to the top of the pipe processing table. The pipe connecting stop bar is fixedly installed on one side of the top of the pipe groove concave platform, and the pipe connecting stop bar is located on one side of the pipe storage and feeding inclined seat. The fixed seat is fixedly connected to one end of the pipe groove concave platform. The electric control pushing telescopic rod is fixedly installed on the top of the fixed seat. The pushing controller is installed on the electric control pushing telescopic rod, and the pushing controller is used to control the electric control pushing telescopic rod. The pushing slide plate is fixedly connected to the output end of the electric control pushing telescopic rod, and the pushing slide plate is slidably connected to the pipe groove concave platform.
[0010] As a cutting and processing device for metal pipes according to the present invention, the pipe moving and supporting assembly includes a linear electric control slide rail, a transfer controller, a pipe supporting concave seat, an electric control pipe pressing telescopic rod, a pipe pressing controller, and a pipe pressing concave plate. The linear electric control slide rail is fixedly installed on the top of the pipe processing table, and the linear electric control slide rail is located at the other end of the pipe groove concave platform. The transfer controller is installed on the linear electric control slide rail, and the transfer controller is used to control the linear electric control slide rail. The pipe supporting concave seat is fixedly installed on the slider on the surface of the linear electric control slide rail. The electric control pipe pressing telescopic rod is fixedly installed at both ends inside the pipe supporting concave seat. The pipe pressing controller is installed on the surface of the pipe supporting concave seat, and the pipe pressing controller is used to control the electric control pipe pressing telescopic rod. The pipe pressing concave plate is fixedly connected to the output end of the electric control pipe pressing telescopic rod, and the pipe pressing concave plate is used in pair with the pipe supporting concave seat.
[0011] As a cutting and processing device for metal pipes according to the present invention, the pipe clamping member includes an electric control clamping telescopic rod, a clamping controller, a clamping top plate, and a limiting pipe groove. The electric control clamping telescopic rod is fixedly installed on both sides of the surface of the cushion table. The clamping controller is installed on the electric control clamping telescopic rod, and the clamping controller is used to control the electric control clamping telescopic rod. The clamping top plate is fixedly connected to the output end of the electric control clamping telescopic rod, and the clamping top plate is slidably connected to the cushion table. The limiting pipe groove is opened on the surface of one side of the clamping top plate.
[0012] As a cutting and processing device for metal pipes according to the present invention, the pipe pressing and positioning member includes a pressing and positioning frame, an electric control pressing and positioning lifting rod, a pressing and positioning controller, a pressing and positioning slide plate, and a pressing and positioning arc plate. The pressing and positioning frame is fixedly connected to both sides of the surface of the cushion table, and the two pressing and positioning frames are respectively located on one side of the pipe clamping member. The electric control pressing and positioning lifting rod is fixedly installed inside the pressing and positioning frame. The pressing and positioning controller is installed on the surface of the pressing and positioning frame, and the pressing and positioning controller is used to control the electric control pressing and positioning lifting rod. The pressing and positioning slide plate is fixedly connected to the output end of the electric control pressing and positioning lifting rod, and the pressing and positioning slide plate is slidably connected to the pressing and positioning frame. The pressing and positioning arc plate is fixedly installed at the bottom of the pressing and positioning slide plate, and the pressing and positioning arc plate is used in cooperation with the pipe cushioning arc seat.
[0013] As a cutting and processing device for metal pipes in the present invention, the pipe cutting member includes a cutting frame, a hydraulic lifting rod, an adjustment controller, a pipe cutting machine, and a cutting controller. The cutting frame is fixedly connected to the top of the cushion table, and the cutting frame is located between two pressing frames. The hydraulic lifting rod is fixedly installed on the surface of the cutting frame. The adjustment controller is installed on the hydraulic lifting rod and is used to control the hydraulic lifting rod. The pipe cutting machine is fixedly installed at the output end of the hydraulic lifting rod. The cutting controller is installed on the pipe cutting machine and is used to control the pipe cutting machine.
[0014] As a cutting and processing device for metal pipes in the present invention, the pipe end blocking member includes a blocking frame, an electric control blocking telescopic rod, a gear controller, and a pipe end baffle. The blocking frame is fixedly connected to one end of the top of the cushion table, and the blocking frame is located on one side of the pipe clamping member. The electric control blocking telescopic rod is fixedly installed on the surface of the blocking frame. The gear controller is installed on the electric control blocking telescopic rod and is used to control the electric control blocking telescopic rod. The pipe end baffle is fixedly connected to the output end of the electric control blocking telescopic rod.
[0015] As a cutting and processing device for metal pipes in the present invention, the pipe clamping and moving assembly includes a linear electric control guide rail, a guide rail controller, a connecting plate, an electric control double-end telescopic rod, a distance adjustment controller, a connecting rod, and a pipe positioning clamping plate. The linear electric control guide rail is fixedly installed on the inner surface of the installation frame. The guide rail controller is installed on the linear electric control guide rail and is used to control the linear electric control guide rail. The connecting plate is fixedly installed on the slider on the surface of the linear electric control guide rail. The electric control double-end telescopic rod is fixedly installed at the bottom of the connecting plate, and the number of the electric control double-end telescopic rods is three. The distance adjustment controller is installed on the electric control double-end telescopic rod and is used to control the electric control double-end telescopic rod. The connecting rod is fixedly connected to both ends of the electric control double-end telescopic rod. The pipe positioning clamping plate is fixedly installed at the bottom end of the connecting rod.
[0016] As a cutting and processing equipment for metal pipes according to the present invention, the pipe end grinding assembly includes an electrically controlled precision slide rail, a position adjustment controller, a rotation frame, a rotation plate, a servo motor, a servo controller, a grinding motor, a grinding controller and a pipe end grinding disc. The electrically controlled precision slide rail is fixedly mounted on the surface inside the mounting frame, the position adjustment controller is mounted on the electrically controlled precision slide rail, and the position adjustment controller is used to control the electrically controlled precision slide rail, the rotation frame is fixedly mounted on a slider on the surface of the electrically controlled precision slide rail, the rotation plate is rotatably mounted on the inner side of the rotation frame, the servo motor is fixedly mounted on one side of the rotation frame, and the output end of the servo motor is fixedly connected to one end of the rotation plate, the servo controller is mounted on the servo motor, the grinding motor is fixedly mounted on the surface of one end of the rotation plate, the grinding controller is mounted on the grinding motor, and the grinding controller is used to control the grinding motor, and the pipe end grinding disc is fixedly connected to the output end of the grinding motor.
[0017] The present invention provides a cutting and processing device for metal pipes, which has the following beneficial effects:
[0018] (1) The cutting and processing equipment for metal pipes can automatically load the produced pipes through the arrangement of a cutting and processing mechanism, a pipe processing table, a processing control panel, a pipe loading assembly, a pipe pushing assembly, a pipe shifting and supporting assembly, a cutting limit assembly, a pad, a cutting groove, a pipe pad arc seat, a pipe clamping component, a pipe pressing component, a pipe cutting component and a pipe end blocking component, so as to facilitate pushing the pipes to the position for subsequent cutting, facilitate cutting the produced pipes into three sections, and can clamp and limit the pushed pipes, thereby improving the stability of the subsequent cutting of the pipes and improving the quality of the pipe cutting process.
[0019] (2) The cutting and processing equipment for metal pipes can clamp and deliver the cut pipes through the arrangement of the mounting frame, the pipe clamping and moving assembly, the pipe end grinding assembly, the blanking inclined seat and the connecting pipe box, which is beneficial for transferring the cut pipes to the position for subsequent grinding, facilitates the subsequent grinding operation on the end face of the cut pipes, improves the quality of the subsequent splicing of the pipes after cutting, and improves the use effect of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the cutting processing mechanism of the present invention;
[0021] Figure 2 The pipe processing table of the present invention is three-dimensional Figure 1 ;
[0022] Figure 3 The pipe processing table of the present invention is three-dimensional Figure 2 ;
[0023] Figure 4Stereogram of the pipe loading component of the present invention;
[0024] Figure 5 Stereogram of the pipe pushing component of the present invention;
[0025] Figure 6 Stereogram of the pipe moving and supporting component of the present invention;
[0026] Figure 7 Stereogram of the cutting limit component of the present invention;
[0027] Figure 8 Exploded view of the cutting limit component of the present invention;
[0028] Figure 9 Stereogram of the pipe clamping member of the present invention;
[0029] Figure 10 Stereogram of the pipe pressing member of the present invention;
[0030] Figure 11 Stereogram of the pipe cutting member of the present invention;
[0031] Figure 12 Stereogram of the pipe end blocking member of the present invention;
[0032] Figure 13 Stereogram of the mounting bracket of the present invention;
[0033] Figure 14 Exploded view of the structure of the mounting bracket of the present invention;
[0034] Figure 15 Stereogram of the pipe clamping and moving component of the present invention;
[0035] Figure 16 Stereogram of the pipe end grinding component of the present invention.
[0036] Figure: 1. Cutting mechanism; 11. Pipe processing table; 12. Processing control panel; 13. Pipe loading assembly; 131. Pipe storage and loading inclined seat; 132. Metal pipe body; 133. Electric reciprocating lift rod; 134. Reciprocating controller; 135. Horizontal plate; 136. Pipe loading stop plate; 14. Pipe pushing assembly; 141. Pipe groove recess; 142. Pipe stop bar; 143. Fixed seat; 144. Electric push telescopic rod; 145. Push controller; 146. Push slide; 15. Pipe shifting assembly Components; 151, linear electric control slide; 152, transfer controller; 153, pipe support recess; 154, electric control pressure pipe telescopic rod; 155, pressure pipe controller; 156, pressure pipe recess; 16, cutting limit assembly; 161, pad; 162, cutting groove; 163, pipe pad arc seat; 164, pipe clamping component; 165, pipe pressure component; 166, pipe cutting component; 167, pipe end stop component; 1641, electric control clamping telescopic rod; 1642, clamping controller; 1643, clamping top plate; 1 644, limit pipe groove; 1651, pressure frame; 1652, electric pressure lifting rod; 1653, pressure controller; 1654, pressure slide; 1655, pressure arc plate; 1661, cutting frame; 1662, hydraulic lifting rod; 1663, adjustment controller; 1664, pipe cutting machine; 1665, cutting controller; 1671, gear frame; 1672, electric gear telescopic rod; 1673, gear controller; 1674, pipe end stop; 17, mounting frame; 18, pipe clamping and moving assembly; 18 1. Linear electric guide rail; 182. Guide rail controller; 183. Connecting plate; 184. Electric double-end telescopic rod; 185. Distance adjustment controller; 186. Connecting rod; 187. Pipe positioning splint; 19. Pipe end grinding assembly; 191. Electric precision slide rail; 192. Positioning controller; 193. Rotating frame; 194. Rotating plate; 195. Servo motor; 196. Servo controller; 197. Grinding motor; 198. Grinding controller; 199. Pipe end grinding disc; 20. Unloading inclined seat; 21. Pipe connection box. DETAILED DESCRIPTION
[0037] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0038] See also Figures 1 - 16, the present invention provides a technical solution: including a cutting and processing mechanism 1, the cutting and processing mechanism 1 includes a pipe processing table 11, a processing control panel 12 is installed on the surface of one side of the pipe processing table 11, a pipe loading component 13 is fixedly installed on one side of the top of the pipe processing table 11, a pipe pushing component 14 is fixedly installed at one end of the top of the pipe processing table 11, and the pipe pushing component 14 is used in cooperation with the pipe loading component 13. A pipe moving and supporting component 15 is fixedly installed on the top of the pipe processing table 11, and the pipe moving and supporting component 15 is located on one side of the pipe pushing component 14. A cutting and limiting component 16 is fixedly installed on the top of the pipe processing table 11, and the cutting and limiting component 16 is located on one side of the pipe moving and supporting component 15. The other end of the top of the pipe processing table 11 is fixedly connected with a mounting frame 17. A pipe clamping and moving component 18 is fixedly installed at one end of the inner surface of the mounting frame 17, and a pipe end grinding component 19 is fixedly installed at the other end of the inner surface of the mounting frame 17, and the number of the pipe end grinding components 19 is two groups. A blanking inclined seat 20 is installed through the inner side of the pipe processing table 11, and a connecting pipe box 21 is fixedly installed on one side of the pipe processing table 11, and the connecting pipe box 21 is located at one end of the blanking inclined seat 20;
[0039] The cutting and limiting component 16 includes a cushion table 161, a cutting groove 162, a pipe placing arc seat 163, a pipe clamping member 164, a pipe pressing member 165, a pipe cutting member 166 and a pipe end blocking member 167. The cushion table 161 is fixedly connected to the top of the pipe processing table 11. The cutting groove 162 is opened on the surface of the cushion table 161. The pipe placing arc seats 163 are fixedly connected to both ends of the top of the cushion table 161. The pipe clamping members 164 are fixedly installed at both ends of the top of the cushion table 161, and the pipe clamping members 164 are used in pair with the pipe placing arc seats 163. The pipe pressing members 165 are fixedly installed on the top of the cushion table 161, and the number of the pipe pressing members 165 is two groups. The pipe cutting member 166 is fixedly installed on the top of the cushion table 161, and the pipe cutting member 166 is located between the two groups of pipe pressing members 165. The pipe end blocking member 167 is fixedly installed at one end of the cushion table 161;
[0040] Through the settings of the cutting and processing mechanism 1, the pipe processing table 11, the processing control panel 12, the pipe loading component 13, the pipe pushing component 14, the pipe moving and supporting component 15, the cutting and limiting component 16, the cushion table 161, the cutting groove 162, the pipe placing arc seat 163, the pipe clamping member 164, the pipe pressing member 165, the pipe cutting member 166 and the pipe end blocking member 167, it is possible to perform an automatic loading operation on the produced pipes, which is beneficial to pushing the pipes to the subsequent cutting positions, facilitating cutting the produced pipes into three sections, and being able to clamp and limit the pushed pipes, improving the stability of the subsequent cutting of the pipes and the quality of the pipe cutting and processing;
[0041] Through the settings of the mounting bracket 17, the pipe clamp moving assembly 18, the pipe end grinding assembly 19, the blanking inclined seat 20 and the pipe connecting box 21, the clamped feeding operation of the cut pipe can be carried out, which is beneficial to transferring the cut pipe to the subsequent grinding position, facilitating the subsequent grinding operation on the end face of the cut pipe, improving the quality of the subsequent splicing and use of the cut pipe, and enhancing the use effect of the device.
[0042] Please refer to Figure 4 , the pipe loading assembly 13 includes a pipe storage loading inclined seat 131, a metal pipe body 132, an electric control reciprocating lifting rod 133, a reciprocating controller 134, a cross plate 135 and a loading pipe blocking plate 136. The pipe storage loading inclined seat 131 is fixedly installed on the top of the pipe processing table 11. The metal pipe body 132 is arranged on the inner surface of the pipe storage loading inclined seat 131, and the number of the metal pipe bodies 132 is multiple. The electric control reciprocating lifting rod 133 is fixedly installed on both sides of the pipe storage loading inclined seat 131. The reciprocating controller 134 is installed on the electric control reciprocating lifting rod 133, and the reciprocating controller 134 is used to control the electric control reciprocating lifting rod 133. The cross plate 135 is fixedly connected to the output end of the electric control reciprocating lifting rod 133. The loading pipe blocking plate 136 is fixedly connected to the bottom of the cross plate 135, and the loading pipe blocking plate 136 is used in cooperation with the pipe storage loading inclined seat 131. Through the settings of the pipe storage loading inclined seat 131, the metal pipe body 132, the electric control reciprocating lifting rod 133, the reciprocating controller 134, the cross plate 135 and the loading pipe blocking plate 136, the blanking control of the placed multiple metal pipe bodies 132 can be carried out, which is beneficial to carrying out the blanking operation on the multiple metal pipe bodies 132 one by one, facilitating the corresponding blanking of the metal pipe body 132 to the surface of the pipe groove concave platform 141, and facilitating the subsequent pushing and loading of the metal pipe body 132.
[0043] Please refer to Figure 5, the pipe pushing component 14 includes a pipe groove concave platform 141, a pipe connecting stop bar 142, a fixed seat 143, an electric control pushing telescopic rod 144, a pushing controller 145 and a pushing slide plate 146. The pipe groove concave platform 141 is fixedly connected to the top of the pipe processing table 11. The pipe connecting stop bar 142 is fixedly installed on one side of the top of the pipe groove concave platform 141, and the pipe connecting stop bar 142 is located on one side of the pipe storage and feeding inclined seat 131. The fixed seat 143 is fixedly connected to one end of the pipe groove concave platform 141. The electric control pushing telescopic rod 144 is fixedly installed on the top of the fixed seat 143. The pushing controller 145 is installed on the electric control pushing telescopic rod 144, and the pushing controller 145 is used to control the electric control pushing telescopic rod 144. The pushing slide plate 146 is fixedly connected to the output end of the electric control pushing telescopic rod 144, and the pushing slide plate 146 is slidably connected to the pipe groove concave platform 141. Through the settings of the pipe groove concave platform 141, the pipe connecting stop bar 142, the fixed seat 143, the electric control pushing telescopic rod 144, the pushing controller 145 and the pushing slide plate 146, the metal pipe body 132 for feeding can be pushed, which is beneficial to correspondingly push the metal pipe body 132 on the surface of the pipe groove concave platform 141 to the surface of the pipe moving and supporting component 15, facilitating the subsequent feeding operation of the metal pipe body 132.
[0044] Please refer to Figure 6 , the pipe moving and supporting component 15 includes a linear electric control slide rail 151, a transfer controller 152, a pipe supporting concave seat 153, an electric control pipe pressing telescopic rod 154, a pipe pressing controller 155 and a pipe pressing concave plate 156. The linear electric control slide rail 151 is fixedly installed on the top of the pipe processing table 11, and the linear electric control slide rail 151 is located at the other end of the pipe groove concave platform 141. The transfer controller 152 is installed on the linear electric control slide rail 151, and the transfer controller 152 is used to control the linear electric control slide rail 151. The pipe supporting concave seat 153 is fixedly installed on the slider on the surface of the linear electric control slide rail 151. The electric control pipe pressing telescopic rod 154 is fixedly installed at both ends inside the pipe supporting concave seat 153. The pipe pressing controller 155 is installed on the surface of the pipe supporting concave seat 153, and the pipe pressing controller 155 is used to control the electric control pipe pressing telescopic rod 154. The pipe pressing concave plate 156 is fixedly connected to the output end of the electric control pipe pressing telescopic rod 154, and the pipe pressing concave plate 156 is used in pair with the pipe supporting concave seat 153. Through the settings of the linear electric control slide rail 151, the transfer controller 152, the pipe supporting concave seat 153, the electric control pipe pressing telescopic rod 154, the pipe pressing controller 155 and the pipe pressing concave plate 156, the metal pipe body 132 for feeding can be pressed and transferred, which is beneficial to support and feed the metal pipe body 132, facilitating the transfer of one end of the metal pipe body 132 to the cutting limit component 16, facilitating the subsequent corresponding cutting of the metal pipe body 132.
[0045] Please refer to Figure 9, the pipe clamping member 164 includes an electrically controlled clamping telescopic rod 1641, a clamping controller 1642, a clamping top plate 1643, and a limit pipe groove 1644. The electrically controlled clamping telescopic rod 1641 is fixedly installed on both sides of the surface of the cushion table 161. The clamping controller 1642 is installed on the electrically controlled clamping telescopic rod 1641, and the clamping controller 1642 is used to control the electrically controlled clamping telescopic rod 1641. The clamping top plate 1643 is fixedly connected to the output end of the electrically controlled clamping telescopic rod 1641, and the clamping top plate 1643 is slidably connected to the cushion table 161. The limit pipe groove 1644 is opened on the surface of one side of the clamping top plate 1643. Through the settings of the electrically controlled clamping telescopic rod 1641, the clamping controller 1642, the clamping top plate 1643, and the limit pipe groove 1644, the movement adjustment of the limit pipe groove 1644 can be carried out, which is beneficial to the top holding and limiting of the metal pipe body 132 placed and moved on the surface of the pipe cushioning arc seat 163, facilitating the limit adjustment of the metal pipe body 132 and improving the convenience of the subsequent operations of the metal pipe body 132.
[0046] Please refer to Figure 10 , the pipe pressing member 165 includes a pressing frame 1651, an electrically controlled pressing lifting rod 1652, a pressing controller 1653, a pressing slide plate 1654, and a pressing arc plate 1655. The pressing frame 1651 is fixedly connected to both sides of the surface of the cushion table 161, and the two pressing frames 1651 are respectively located on one side of the pipe clamping member 164. The electrically controlled pressing lifting rod 1652 is fixedly installed inside the pressing frame 1651. The pressing controller 1653 is installed on the surface of the pressing frame 1651, and the pressing controller 1653 is used to control the electrically controlled pressing lifting rod 1652. The pressing slide plate 1654 is fixedly connected to the output end of the electrically controlled pressing lifting rod 1652, and the pressing slide plate 1654 is slidably connected to the pressing frame 1651. The pressing arc plate 1655 is fixedly installed at the bottom of the pressing slide plate 1654, and the pressing arc plate 1655 is used in cooperation with the pipe cushioning arc seat 163. Through the settings of the pressing frame 1651, the electrically controlled pressing lifting rod 1652, the pressing controller 1653, the pressing slide plate 1654, and the pressing arc plate 1655, the use height of the pressing arc plate 1655 can be adjusted up and down, which is beneficial to the pressing and fixing of the metal pipe body 132 on the surface of the pipe cushioning arc seat 163, facilitating the subsequent cutting process of the metal pipe body 132 and improving the stability of the cutting of the metal pipe body 132.
[0047] Please refer to Figure 11, the pipe cutting member 166 includes a cutting frame 1661, a hydraulic lifting rod 1662, an adjustment controller 1663, a pipe cutting machine 1664, and a cutting controller 1665. The cutting frame 1661 is fixedly connected to the top of the cushion table 161, and the cutting frame 1661 is located between the two pressing frames 1651. The hydraulic lifting rod 1662 is fixedly installed on the surface of the cutting frame 1661. The adjustment controller 1663 is installed on the hydraulic lifting rod 1662, and the adjustment controller 1663 is used to control the hydraulic lifting rod 1662. The pipe cutting machine 1664 is fixedly installed at the output end of the hydraulic lifting rod 1662. The cutting controller 1665 is installed on the pipe cutting machine 1664, and the cutting controller 1665 is used to control the pipe cutting machine 1664. Through the settings of the cutting frame 1661, the hydraulic lifting rod 1662, the adjustment controller 1663, the pipe cutting machine 1664, and the cutting controller 1665, the use position of the pipe cutting machine 1664 can be adjusted, which is beneficial to driving the pipe cutting machine 1664 to move downward to cut the pressed metal pipe body 132, improving the convenience of cutting and processing the metal pipe body 132.
[0048] Please refer to Figure 12 , the pipe end blocking member 167 includes a blocking frame 1671, an electric control blocking telescopic rod 1672, a gear controller 1673, and a pipe end baffle 1674. The blocking frame 1671 is fixedly connected to one end of the top of the cushion table 161, and the blocking frame 1671 is located on one side of the pipe clamping member 164. The electric control blocking telescopic rod 1672 is fixedly installed on the surface of the blocking frame 1671. The gear controller 1673 is installed on the electric control blocking telescopic rod 1672, and the gear controller 1673 is used to control the electric control blocking telescopic rod 1672. The pipe end baffle 1674 is fixedly connected to the output end of the electric control blocking telescopic rod 1672. Through the settings of the blocking frame 1671, the electric control blocking telescopic rod 1672, the gear controller 1673, and the pipe end baffle 1674, one end of the transferred metal pipe body 132 can be blocked, which is beneficial to setting a fixed distance for the cutting length of the metal pipe body 132, facilitating cutting the metal pipe body 132 into corresponding three sections, and improving the cutting and processing effect of the metal pipe body 132.
[0049] Please refer to Figure 15, the pipe clamp moving assembly 18 includes a linear electric control rail 181, a rail controller 182, a connecting plate 183, an electric double-ended telescopic rod 184, a distance adjustment controller 185, a connecting rod 186 and a pipe positioning clamping plate 187. The linear electric control rail 181 is fixedly installed on the inner surface of the mounting frame 17. The rail controller 182 is installed on the linear electric control rail 181 and is used to control the linear electric control rail 181. The connecting plate 183 is fixedly installed on the slider on the surface of the linear electric control rail 181. The electric double-ended telescopic rod 184 is fixedly installed at the bottom of the connecting plate 183, and the number of the electric double-ended telescopic rods 184 is three. The distance adjustment controller 185 is installed on the electric double-ended telescopic rod 184 and is used to control the electric double-ended telescopic rod 184. The connecting rod 186 is fixedly connected to both ends of the electric double-ended telescopic rod 184. The pipe positioning clamping plate 187 is fixedly installed at the bottom end of the connecting rod 186. Through the settings of the linear electric control rail 181, the rail controller 182, the connecting plate 183, the electric double-ended telescopic rod 184, the distance adjustment controller 185, the connecting rod 186 and the pipe positioning clamping plate 187, the pipe positioning clamping plate 187 can be driven to clamp the cut metal pipe body 132, which is beneficial to transfer the clamped metal pipe body 132, facilitates the transfer of the metal pipe body 132 to the subsequent grinding position, and improves the convenience of transferring the metal pipe body 132.
[0050] Please refer to Figure 16, the pipe end grinding assembly 19 includes an electric control precision slide rail 191, a position adjustment controller 192, a rotation adjustment frame 193, a rotation adjustment plate 194, a servo motor 195, a servo controller 196, a grinding motor 197, a grinding controller 198, and a pipe end grinding disc 199. The electric control precision slide rail 191 is fixedly installed on the inner surface of the mounting frame 17. The position adjustment controller 192 is installed on the electric control precision slide rail 191 and is used to control the electric control precision slide rail 191. The rotation adjustment frame 193 is fixedly installed on the slider on the surface of the electric control precision slide rail 191. The rotation adjustment plate 194 is rotatably installed inside the rotation adjustment frame 193. The servo motor 195 is fixedly installed on one side of the rotation adjustment frame 193, and the output end of the servo motor 195 is fixedly connected to one end of the rotation adjustment plate 194. The servo controller 196 is installed on the servo motor 195. The grinding motor 197 is fixedly installed on the surface of one end of the rotation adjustment plate 194. The grinding controller 198 is installed on the grinding motor 197 and is used to control the grinding motor 197. The pipe end grinding disc 199 is fixedly connected to the output end of the grinding motor 197. Through the settings of the electric control precision slide rail 191, the position adjustment controller 192, the rotation adjustment frame 193, the rotation adjustment plate 194, the servo motor 195, the servo controller 196, the grinding motor 197, the grinding controller 198, and the pipe end grinding disc 199, the use position of the pipe end grinding disc 199 can be adjusted, which is beneficial to perform corresponding grinding operations on both ends of the transferred metal pipe body 132, facilitating the grinding of the end faces of the metal pipe body 132 and improving the quality of subsequent splicing and use of the metal pipe body 132.
[0051] During use, first, the staff sequentially place multiple metal pipe bodies 132 for production and processing on the inclined surface inside the pipe storage and loading inclined seat 131. Subsequently, the metal pipe body 132 at the forefront is blocked by the loading pipe blocking plate 136. Then, the staff starts the equipment to work through the processing control panel 12. Next, two reciprocating controllers 134 are controlled through the processing control panel 12 to start the electric control reciprocating lifting rod 133 for telescopic movement, which drives the loading pipe blocking plate 136 to move up and down. As a result, the metal pipe body 132 at the forefront rolls onto the surface of the pipe groove concave platform 141. Then, the rolled metal pipe body 132 is blocked by the connecting pipe blocking strip 142 into the concave position on the surface of the pipe groove concave platform 141, and the subsequent metal pipe bodies 132 are moved and blocked to one side of the loading pipe blocking plate 136. Then, the push controller 145 is started through the processing control panel 12 to control the electric control push telescopic rod 144 to extend. Subsequently, the electric control push telescopic rod 144 drives the push sliding plate 146 to gradually move towards the other end of the pipe groove concave platform 141, thereby pushing the metal pipe body 132 on the surface of the pipe groove concave platform 141. When the pushed metal pipe body 132 is transferred to the concave position on the surface of the pipe supporting concave seat 153 and the metal pipe body 132 extends by one-fourth of its length, the transfer controller 152 is started through the processing control panel 12 to control the linear electric control slide rail 151 to drive the pipe supporting concave seat 153 to work. Subsequently, the pipe supporting concave seat 153 moves synchronously with the metal pipe body 132. At the same time, the electric control pipe pressing telescopic rod 154 is controlled to contract through the pipe pressing controller 155, driving the pipe pressing concave plate 156 to move downwards to press and fix the metal pipe body 132 on the surface of the pipe supporting concave seat 153. Then, the extended end of the metal pipe body 132 is transferred to the pipe placing arc seat 163 on one side of the cushion table 161. Next, the pipe clamping member 164 on one side is started through the processing control panel 12 to work. Subsequently, the electric control clamping telescopic rod 1641 is controlled to extend through the clamping controller 1642, driving the clamping top plate 1643 to hold the metal pipe body 132, so that the metal pipe body 132 is limited in the limiting pipe groove 1644. At the same time, the pipe pressing controller 155 is started through the processing control panel 12 to control the electric control pipe pressing telescopic rod 154 to extend, driving the pipe pressing concave plate 156 to move upwards, and the linear electric control slide rail 151 is controlled to move to the unclamped end of the metal pipe body 132 through the transfer controller 152. Then, the electric control pipe pressing telescopic rod 154 is controlled to contract through the pipe pressing controller 155, driving the pipe pressing concave plate 156 to fix the unclamped end of the metal pipe body 132. Next, the clamping controller 1642 on one side controls the electric control clamping telescopic rod 1641 to drive the clamping top plate 1643 to contract and move. Then, the linear electric control slide rail 151 is controlled to drive the clamped metal pipe body 132 to move towards the cutting and limiting assembly 16 through the transfer controller 152, so that the end of the metal pipe body 132 located on the pipe placing arc seat 163 moves towards one end of the cushion table 161. At this time,The electric control gear expansion rod 1672 is controlled by the gear controller 1673 to extend, and then drives the pipe end baffle 1674 to move down to one side of the pipe laying arc seat 163. Subsequently, one end of the moving metal pipe body 132 moves to one side of the pipe end baffle 1674 and is positioned at a fixed distance by being blocked by the pipe end baffle 1674. Then, the transfer controller 152 controls the linear electric control slide rail 151 to stop moving;
[0052] Then, the clamping controllers 1642 on both sides of the cushion table 161 control the corresponding electric control clamping expansion rods 1641 to extend, and then drive the clamping top plate 1643 to hold and limit the metal pipe body 132 on the pipe laying arc seat 163. And the electric control pressure position lifting rod 1652 is controlled by the pressure position controller 1653 to extend, and then drives the pressure position slide plate 1654 and the pressure position arc plate 1655 to move downward, and the metal pipe body 132 on the pipe laying arc seat 163 is pressed and fixed by the pressure position arc plate 1655. When the fixing of the metal pipe body 132 is completed, the hydraulic lifting rod 1662 is controlled by the adjustment controller 1663 to extend, and then drives the pipe cutting machine 1664 to move down. At the same time, the pipe cutting machine 1664 is controlled by the cutting controller 1665 to work, so as to cut the metal pipe body 132. When one section of the metal pipe body 132 is cut, the electric control gear expansion rod 1672 is controlled by the gear controller 1673 to contract, driving the pipe end baffle 1674 to move up to the original position. Then, the transfer controller 152 controls the linear electric control slide rail 151 to drive the subsequent two-thirds of the metal pipe body 132 to continue moving. At the same time, the clamping controller 1642 controls the electric control clamping expansion rod 1641 to drive the clamping top plate 1643, and the pressure position controller 1653 controls the electric control pressure position lifting rod 1652 to drive the pressure position arc plate 1655 to move to the original positions. Then, the cut metal pipe body 132 is pushed between multiple pipe positioning clamping plates 187. When one end of the cut metal pipe body 132 extends out of the connecting rod 186 on one side, the electric control double-end expansion rod 184 is controlled by the distance adjustment controller 185 to contract, and then drives the two pipe positioning clamping plates 187 to move towards each other to clamp the metal pipe body 132. Then, the linear electric control guide rail 181 is controlled by the guide rail controller 182 to drive the clamped and cut metal pipe body 132 to move towards the pipe end grinding assembly 19. Then, the electric control gear expansion rod 1672 is controlled by the gear controller 1673 to extend, and then drives the pipe end baffle 1674 to move down to fixedly block one end of the transferred two-thirds of the metal pipe body 132. Then, repeat the above operations of clamping, pressing and cutting the metal pipe body 132;
[0053] After the cut metal pipe body 132 is transferred to the position of the pipe end grinding assembly 19, the servo controller 196 controls the servo motor 195 to drive the rotation adjustment frame 193 to rotate, so that the pipe end grinding disc 199 is located at the horizontal position of the port of the clamped cut metal pipe body 132. Subsequently, the position adjustment controller 192 controls the electric control precision slide rail 191 to drive the pipe end grinding disc 199 to move to the surface of the port of the metal pipe body 132. Then, the grinding controller 198 controls the grinding motor 197 to work, and then drives the pipe end grinding disc 199 to grind the surface of the port of the metal pipe body 132. When the grinding of the metal pipe body 132 is completed, the distance adjustment controller 185 controls the electric control double-end telescopic rod 184 to extend, and then drives the two pipe positioning clamping plates 187 to move away, so that the ground metal pipe body 132 falls onto the surface of the blanking inclined seat 20, and then the surface of the cut and ground connection box 21 is stored through the blanking inclined seat 20;
[0054] Thus, the above cutting and grinding operations are repeated to complete the processing and blanking of the subsequent two-thirds cut metal pipe body 132. Then, the clamping controller 1642 on one side of the cushion table 161 controls the electric control clamping telescopic rod 1641 to drive the clamping top plate 1643 to clamp the remaining one-third of the metal pipe body 132. Subsequently, the pipe loading assembly 13 and the pipe pushing assembly 14 are used to push and feed the subsequent metal pipe body 132, and the pipe moving and supporting assembly 15 is used to press and transfer the pushed metal pipe body 132. When one end of the subsequently pressed and transferred metal pipe body 132 is transferred to one end of the remaining metal pipe body 132 and the remaining metal pipe body 132 on the surface of the pipe cushioning arc seat 163 is jacked, the clamping controller 1642 on one side controls the electric control clamping telescopic rod 1641 to contract, and then drives the clamping top plate 1643 to loosen the remaining one-third of the metal pipe body 132, so as to jack the remaining one-third of the metal pipe body 132 to the position clamped by the pipe positioning clamping plate 187. Thus, the above grinding operation is repeated to grind both ends of the remaining one-third of the metal pipe body 132, and the above cutting operation is repeated to perform fixed-distance cutting on the subsequently transferred metal pipe body 132. Such cyclic processing is carried out until all the metal pipe bodies 132 are processed and completed.
[0055] The above is only the preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.
Claims
1. A cutting and processing device for metal pipes, characterized in that include: A cutting and processing mechanism (1) includes a pipe processing table (11), a processing control panel (12) is installed on the surface of one side of the pipe processing table (11), a pipe feeding assembly (13) is fixedly installed on one side of the top of the pipe processing table (11), a pipe pushing assembly (14) is fixedly installed on one end of the top of the pipe processing table (11), and the pipe pushing assembly (14) is used in conjunction with the pipe feeding assembly (13), a pipe shifting and supporting assembly (15) is fixedly installed on the top of the pipe processing table (11), and the pipe shifting and supporting assembly (15) is located on one side of the pipe pushing assembly (14), and the top of the pipe processing table (11) is fixedly installed. A cutting limit assembly (16) is installed, and the cutting limit assembly (16) is located on one side of the pipe moving support assembly (15); the other end of the top of the pipe processing table (11) is fixedly connected to a mounting frame (17); one end of the inner surface of the mounting frame (17) is fixedly installed with a pipe clamping and moving assembly (18); the other end of the inner surface of the mounting frame (17) is fixedly installed with a pipe end grinding assembly (19), and the number of the pipe end grinding assemblies (19) is two groups; a blanking inclined seat (20) is installed through the inner side of the pipe processing table (11); a connecting box (21) is fixedly installed on one side of the pipe processing table (11), and the connecting box (21) is located at one end of the blanking inclined seat (20); The cutting limit assembly (16) comprises a pad (161), a cutting groove (162), a pipe pad arc seat (163), a pipe clamping component (164), a pipe pressing component (165), a pipe cutting component (166) and a pipe end blocking component (167), wherein the pad (161) is fixedly connected to the top of the pipe processing table (11), the cutting groove (162) is provided on the surface of the pad (161), the pipe pad arc seat (163) is fixedly connected to both ends of the top of the pad (161), and the pipe clamping component (164) is provided. 4) fixedly mounted on both ends of the top of the pad (161), and the pipe clamping member (164) is used in pairs with the pipe pad arc seat (163); the pipe pressing member (165) is fixedly mounted on the top of the pad (161), and the number of the pipe pressing members (165) is two groups; the pipe cutting member (166) is fixedly mounted on the top of the pad (161), and the pipe cutting member (166) is located between the two groups of pipe pressing members (165); the pipe end blocking member (167) is fixedly mounted on one end of the pad (161).
2. The cutting and processing equipment for metal pipes according to claim 1, characterized in that: The pipe feeding assembly (13) includes a pipe storage and feeding inclined seat (131), a metal pipe body (132), an electric control reciprocating lifting rod (133), a reciprocating controller (134), a cross plate (135) and a feeding pipe blocking plate (136). The pipe storage and feeding inclined seat (131) is fixedly installed on the top of the pipe processing table (11). The metal pipe body (132) is arranged on the inner surface of the pipe storage and feeding inclined seat (131), and the number of the metal pipe bodies (132) is multiple. The electric control reciprocating lifting rod (133) is fixedly installed on both sides of the pipe storage and feeding inclined seat (131). The reciprocating controller (134) is installed on the electric control reciprocating lifting rod (133), and the reciprocating controller (134) is used to control the electric control reciprocating lifting rod (133). The cross plate (135) is fixedly connected to the output end of the electric control reciprocating lifting rod (133). The feeding pipe blocking plate (136) is fixedly connected to the bottom of the cross plate (135), and the feeding pipe blocking plate (136) is used in cooperation with the pipe storage and feeding inclined seat (131).
3. The cutting and processing equipment for metal pipes according to claim 2, wherein: The pipe pushing assembly (14) includes a pipe groove concave platform (141), a pipe connecting blocking strip (142), a fixed seat (143), an electric control pushing telescopic rod (144), a pushing controller (145) and a pushing sliding plate (146). The pipe groove concave platform (141) is fixedly connected to the top of the pipe processing table (11). The pipe connecting blocking strip (142) is fixedly installed on one side of the top of the pipe groove concave platform (141), and the pipe connecting blocking strip (142) is located on one side of the pipe storage and feeding inclined seat (131). The fixed seat (143) is fixedly connected to one end of the pipe groove concave platform (141). The electric control pushing telescopic rod (144) is fixedly installed on the top of the fixed seat (143). The pushing controller (145) is installed on the electric control pushing telescopic rod (144), and the pushing controller (145) is used to control the electric control pushing telescopic rod (144). The pushing sliding plate (146) is fixedly connected to the output end of the electric control pushing telescopic rod (144), and the pushing sliding plate (146) is slidably connected to the pipe groove concave platform (141).
4. A cutting and processing device for metal pipes according to claim 3, characterized in that: The pipe transfer and support assembly (15) includes a linear electric control slide rail (151), a transfer controller (152), a pipe support concave seat (153), an electric control pipe pressing telescopic rod (154), a pipe pressing controller (155) and a pipe pressing concave plate (156). The linear electric control slide rail (151) is fixedly installed on the top of the pipe processing table (11), and the linear electric control slide rail (151) is located at the other end of the pipe groove concave platform (141). The transfer controller (152) is installed on the linear electric control slide rail (151), and the transfer controller (152) is used to control the linear electric control slide rail (151). The pipe support concave seat (153) is fixedly installed on the slider on the surface of the linear electric control slide rail (151). The electric control pipe pressing telescopic rod (154) is fixedly installed at both ends inside the pipe support concave seat (153). The pipe pressing controller (155) is installed on the surface of the pipe support concave seat (153), and the pipe pressing controller (155) is used to control the electric control pipe pressing telescopic rod (154). The pipe pressing concave plate (156) is fixedly connected to the output end of the electric control pipe pressing telescopic rod (154), and the pipe pressing concave plate (156) is used in pair with the pipe support concave seat (153).
5. The cutting and processing equipment for metal pipes according to claim 1, characterized in that: The pipe clamping member (164) includes an electric control clamping telescopic rod (1641), a clamping controller (1642), a clamping top plate (1643) and a limiting pipe groove (1644). The electric control clamping telescopic rod (1641) is fixedly installed on both sides of the surface of the cushion table (161). The clamping controller (1642) is installed on the electric control clamping telescopic rod (1641), and the clamping controller (1642) is used to control the electric control clamping telescopic rod (1641). The clamping top plate (1643) is fixedly connected to the output end of the electric control clamping telescopic rod (1641), and the clamping top plate (1643) is slidably connected to the cushion table (161). The limiting pipe groove (1644) is opened on the surface of one side of the clamping top plate (1643).
6. The cutting and processing equipment for metal pipes according to claim 1, characterized in that: The pipe pressing and positioning member (165) includes a pressing and positioning frame (1651), an electric control pressing and positioning lifting rod (1652), a pressing and positioning controller (1653), a pressing and positioning sliding plate (1654) and a pressing and positioning arc plate (1655). The pressing and positioning frame (1651) is fixedly connected to both sides of the surface of the cushion table (161), and the two pressing and positioning frames (1651) are respectively located on one side of the pipe clamping member (164). The electric control pressing and positioning lifting rod (1652) is fixedly installed inside the pressing and positioning frame (1651). The pressing and positioning controller (1653) is installed on the surface of the pressing and positioning frame (1651), and the pressing and positioning controller (1653) is used to control the electric control pressing and positioning lifting rod (1652). The pressing and positioning sliding plate (1654) is fixedly connected to the output end of the electric control pressing and positioning lifting rod (1652), and the pressing and positioning sliding plate (1654) is slidably connected to the pressing and positioning frame (1651). The pressing and positioning arc plate (1655) is fixedly installed at the bottom of the pressing and positioning sliding plate (1654), and the pressing and positioning arc plate (1655) is used in cooperation with the pipe placing arc seat (163).
7. A cutting and processing device for metal pipes according to claim 1, characterized in that: The pipe cutting member (166) includes a cutting frame (1661), a hydraulic lifting rod (1662), an adjustment controller (1663), a pipe cutting machine (1664), and a cutting controller (1665). The cutting frame (1661) is fixedly connected to the top of the cushion table (161), and the cutting frame (1661) is located between the two pressing frames (1651). The hydraulic lifting rod (1662) is fixedly installed on the surface of the cutting frame (1661). The adjustment controller (1663) is installed on the hydraulic lifting rod (1662), and the adjustment controller (1663) is used to control the hydraulic lifting rod (1662). The pipe cutting machine (1664) is fixedly installed at the output end of the hydraulic lifting rod (1662). The cutting controller (1665) is installed on the pipe cutting machine (1664), and the cutting controller (1665) is used to control the pipe cutting machine (1664).
8. A cutting and processing device for metal pipes according to claim 1, characterized in that: The pipe end blocking member (167) includes a blocking frame (1671), an electric control blocking telescopic rod (1672), a gear controller (1673), and a pipe end baffle (1674). The blocking frame (1671) is fixedly connected to one end of the top of the cushion table (161), and the blocking frame (1671) is located on one side of the pipe clamping member (164). The electric control blocking telescopic rod (1672) is fixedly installed on the surface of the blocking frame (1671). The gear controller (1673) is installed on the electric control blocking telescopic rod (1672), and the gear controller (1673) is used to control the electric control blocking telescopic rod (1672). The pipe end baffle (1674) is fixedly connected to the output end of the electric control blocking telescopic rod (1672).
9. A cutting and processing device for metal pipes according to claim 1, characterized in that: The pipe clamping and moving assembly (18) includes a linear electric control guide rail (181), a guide rail controller (182), a connecting plate (183), an electric control double-end telescopic rod (184), a distance adjustment controller (185), a connecting rod (186), and a pipe positioning clamping plate (187). The linear electric control guide rail (181) is fixedly installed on the inner surface of the mounting frame (17). The guide rail controller (182) is installed on the linear electric control guide rail (181), and the guide rail controller (182) is used to control the linear electric control guide rail (181). The connecting plate (183) is fixedly installed on the slider on the surface of the linear electric control guide rail (181). The electric control double-end telescopic rod (184) is fixedly installed at the bottom of the connecting plate (183), and the number of the electric control double-end telescopic rods (184) is three. The distance adjustment controller (185) is installed on the electric control double-end telescopic rod (184), and the distance adjustment controller (185) is used to control the electric control double-end telescopic rod (184). The connecting rod (186) is fixedly connected to both ends of the electric control double-end telescopic rod (184). The pipe positioning clamping plate (187) is fixedly installed at the bottom end of the connecting rod (186).
10. A cutting and processing device for metal pipes according to claim 1, characterized in that: The pipe end grinding assembly (19) includes an electric control precision slide rail (191), a position adjustment controller (192), a rotation adjustment frame (193), a rotation adjustment plate (194), a servo motor (195), a servo controller (196), a grinding motor (197), a grinding controller (198) and a pipe end grinding disc (199). The electric control precision slide rail (191) is fixedly installed on the inner surface of the mounting frame (17). The position adjustment controller (192) is installed on the electric control precision slide rail (191), and the position adjustment controller (192) is used to control the electric control precision slide rail (191). The rotation adjustment frame (193) is fixedly installed on the slider on the surface of the electric control precision slide rail (191). The rotation adjustment plate (194) is rotatably installed inside the rotation adjustment frame (193). The servo motor (195) is fixedly installed on one side of the rotation adjustment frame (193), and the output end of the servo motor (195) is fixedly connected to one end of the rotation adjustment plate (194). The servo controller (196) is installed on the servo motor (195). The grinding motor (197) is fixedly installed on the surface of one end of the rotation adjustment plate (194). The grinding controller (198) is installed on the grinding motor (197), and the grinding controller (198) is used to control the grinding motor (197). The pipe end grinding disc (199) is fixedly connected to the output end of the grinding motor (197).
Citation Information
Patent Citations
Metal pipe cutting device
CN119035633A