A high-pressure tank valve assembly and inflation integrated machine
By designing a high-pressure tank valve assembly and inflating the inflatable machine, using the inflation pipe to inflate the valve and the high-pressure tank, the problem of cumbersome airtightness detection after assembly in the prior art is solved and the production efficiency is improved.
Patent Information
- Application Number
- CN202411378394.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2044-09-30
AI Technical Summary
The existing high-pressure tank valve assembly equipment needs to undergo tedious airtightness testing after assembly, resulting in low production efficiency.
A high-pressure tank valve assembly and inflation integrated machine is designed, including a conveying mechanism, glue spraying mechanism, tightening mechanism, inflation pipe and operating screen. It is inflated at the connection between the valve and the high-pressure tank through the inflation pipe, which facilitates subsequent airtightness detection.
Through the optimization of the process link of the inflatable machine, the production efficiency is improved and the airtightness detection process after assembly is simplified.
Smart Images

Figure CN119260367B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of valve assembly, and more specifically, relates to a high-pressure tank valve assembly and inflation integrated machine. Background Art
[0002] The valve high-pressure tank assembly machine is a kind of equipment specially used for the production and assembly of valves and high-pressure tanks. It is widely used in the fields of petroleum, chemical industry, natural gas, etc. Modern industry has higher and higher requirements for high-pressure tanks, involving more complex fluid control and higher safety standards. The valve high-pressure tank assembly machine can perform safe and effective assembly under high-pressure environment to ensure product quality. For safety reasons, the valve high-pressure tank needs to be tested for air tightness after assembly. The existing air tightness detection means are manual detection after inflating the high-pressure tank and detection by inflation equipment and air tightness detection equipment. Any of the above will lead to cumbersome process steps after the valve high-pressure tank is assembled, thereby reducing production efficiency. Therefore, a valve high-pressure tank assembly equipment that can optimize the process links and improve production efficiency is needed. Summary of the invention
[0003] The technical problem to be solved by the present invention is to provide a high-pressure tank valve assembly and inflation integrated machine, which can meet the needs of optimizing process links and improving production efficiency.
[0004] The present invention discloses a high-pressure tank valve assembly and inflation integrated machine, comprising a conveying mechanism, a glue spraying mechanism, a tightening mechanism, a plurality of inflation pipes, a support platform and an operating screen. The conveying mechanism comprises a tank inlet conveyor belt, a rotating conveyor disc and a tank outlet conveyor belt. The rotating conveyor disc is fixedly installed in the central area above the support platform. The tank inlet conveyor belt and the tank outlet conveyor belt are oppositely installed at the two ends of the rotating conveyor disc. The rotating conveyor disc always rotates in the same direction to convey the high-pressure tank and the valve. The section of the rotating conveyor disc from the tank inlet conveyor belt to the tank outlet conveyor belt is the assembly section, and the section from the tank outlet conveyor belt to the tank inlet conveyor belt is the preparation section. The glue spraying mechanism is fixedly connected to the upper edge of the support platform, and the glue spraying mechanism is installed on one side of the preparation section. The tightening mechanism is fixedly connected to the side of the support platform above close to the tank inlet conveyor belt, and the tightening mechanism is installed on the assembly section. The plurality of inflation pipes are evenly and fixedly connected to the upper end of the rotating conveyor disc, and the operating screen is fixedly connected to the top of the support platform.
[0005] As a further improvement of the present invention, the valve includes a connection portion connected to the high-pressure tank and a ventilation pipe connected to the external air intake; the rotating conveyor disk includes a blocking arm, a turntable, a plurality of valve holders, a tank discharge clamp and a motor; the blocking arm is fixedly connected to the top of the support platform and the blocking arm is installed at the front end of the conveying terminal of the tank inlet conveyor belt to prevent the high-pressure tank from falling during the conveying process; the tank discharge clamp is fixedly connected to the upper end of the support platform and the tank discharge clamp is installed on a side close to the tank discharge conveyor belt to facilitate the clamping of the finished product to the tank discharge conveyor belt for transportation; the turntable and the motor are fixedly connected and the turntable and the motor are fixedly installed at Above the support platform, a number of valve holders correspond to a number of inflation pipes one by one, and a number of valve holders extend and are fixedly connected to the outer end of the turntable. The inflation pipe includes an inflation outlet, and the inflation outlet is located on one side of the valve holder. When the valve is inserted into the valve holder, its ventilation pipe just hits the inflation outlet for connection. The support platform is provided with an arc-shaped hollow on the table surface on one side of the assembly section a, and the inside of the support platform below the hollow is paved with fine sand. When the valve is not firmly assembled during the inflation process, leakage causes the high-pressure tank body to be washed away, and falling directly into the sand can ensure that the tank body will not be damaged.
[0006] As a further improvement of the present invention, the baffle arm includes a baffle, an electric push rod, a bracket, several rollers and a sliding claw. The bracket is fixedly connected to the top of the support platform, the baffle is fixedly connected to the electric push rod, the electric push rod is slidably connected to the bracket, the position of the baffle can be adjusted by sliding the electric push rod, several rollers are rotatably connected to the baffle, the axes of several rollers are in the same straight line and perpendicular to the sliding path of the electric push rod, the impact force when the electric push rod contacts the high-pressure tank, and the equipment loss is reduced. The sliding claw is slidably connected to the inside of the push plate, one end of the sliding claw is exposed outside the baffle plate surface, and the other end is arranged on the side of the baffle plate, a reset groove is arranged in the curved slide of the push plate, and a reset spring is installed at the bottom of the reset groove. The claw is provided with a reset claw which is slidably connected in the reset groove and the outer end of the reset claw is against the reset spring. When the plate surface of the baffle pushes the high-pressure tank and contacts with it, the exposed end of the sliding claw slides due to the reaction force when the high-pressure tank is pushed, and the sliding claw slides in the curved slideway of the push plate, and the reset claw squeezes the reset spring and compresses the reset spring, so that the other end of the sliding claw extends out from the side of the baffle and is opposite to the bracket, thereby clamping the high-pressure tank during the process of pushing the high-pressure tank to prevent the high-pressure tank from tipping over due to uneven force, increasing the stability of the baffle arm when pushing the high-pressure tank, and improving the transmission efficiency; after the pushing is completed, the electric push rod returns to its position, the sliding claw loses its reaction force, the elastic force of the reset spring pushes the reset claw to slide, and the other end of the sliding claw resets from the side of the baffle.
[0007] As a further improvement of the present invention, the glue spraying mechanism includes a valve conveyor belt, a plurality of placement seats, a glue sprayer and a clamping arm. The valve conveyor belt, the glue sprayer and the clamping arm are all fixedly connected to the upper edge of the support platform and installed on one side of the preparation section. The plurality of placement seats are fixedly installed on the valve conveyor belt. The clamping arm is installed on the side of the valve conveyor belt close to the conveying terminal, and the clamping arm is installed between the valve conveyor belt and the rotating conveying disk to prevent the clamping arm from interfering when moving the valve from the placement seat to the rotating conveying disk, causing damage to the equipment. The clamping arm includes a fixed frame, a movable frame, and a movable frame. The movable arm and the discharge clamp, the bottom of the fixed frame is fixedly connected to the top of the support platform, one side of the movable arm is horizontally slidably connected to the upper end of the fixed frame, and the other side is rotatably connected to the tail of the discharge clamp. The head of the discharge clamp is provided with a clamp for clamping the valve. When the discharge clamp clamps the valve and rotates to a horizontal level, the movable arm slides to its end point, so that the clamped valve is just clamped into one of the valve holders, and the vent pipe of the valve is pressed into the inflation outlet and connected, so as to complete the clamping and installation of the valve, realize the discharge of the rubber valve and the transfer of the valve from the valve conveyor belt to the valve holder for installation.
[0008] As a further improvement of the present invention, the tightening mechanism includes a tank body clamp seat, a rotating motor, a valve fixing clamp and a sliding plate. The tank body clamp seat and the rotating motor are fixedly connected, and the tank body clamp seat and the rotating motor are respectively fixedly installed above and inside the support platform. The valve fixing clamp is fixedly installed on one side of the support platform above the support platform close to the tank body clamp seat. The valve fixing clamp includes a base and a clamp. The base is fixedly installed above the support platform, and the clamp is fixedly connected to the upper end of the base, and the clamp is located directly above the tank body clamp seat. When tightening the high-pressure tank and the valve, the valve is clamped, and the sliding plate is slidably connected to the rotating motor to realize the movement and adjustment of the high-pressure tank on the tightening mechanism, thereby improving the tightening efficiency.
[0009] Compared with the prior art, the beneficial effects of the present invention are: inflation is performed during the assembly process of the valve and the high-pressure tank, which is convenient for subsequent air tightness testing of the entire connection between the valve and the high-pressure tank, optimizing the process links and improving production efficiency; the baffle arm is provided with an electric push rod, and the sliding electric push rod can adjust the position of the baffle, which is convenient for conveying the high-pressure tank; the baffle arm is provided with rollers and sliding claws to reduce the impact force when the high-pressure tank contacts the baffle arm, prevent the high-pressure tank from tipping over due to uneven force, and increase the stability of conveying the high-pressure tank; the clamping arm is installed between the valve conveyor belt and the rotating conveying disk to prevent interference when the clamping arm moves the valve from the placement seat to the rotating conveying disk, and a valve fixing clamp is provided above the tightening mechanism to improve the tightening efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 It is a structural schematic diagram of the present invention;
[0011] Figure 2 A top view of the present invention;
[0012] Figure 3 It is a position schematic diagram of the present invention;
[0013] Figure 4 It is a structural schematic diagram of the glue spraying mechanism of the present invention;
[0014] Figure 5 It is an explosion schematic diagram of the present invention;
[0015] Figure 6 For the present invention Figure 5 Schematic diagram of the enlarged structure;
[0016] Figure 7 It is a structural schematic diagram of the tightening mechanism of the present invention;
[0017] Figure 8 It is a structural schematic diagram of the valve fixing clamp of the present invention;
[0018] Fig. 9 It is a structural schematic diagram of the turntable of the present invention;
[0019] Fig.10 It is a structural schematic diagram of the barrier arm of the present invention;
[0020] Fig.11 A top cross-sectional view of the barrier arm of the present invention;
[0021] Fig.12 It is a top cross-sectional view of the connection between the barrier arm and the high-pressure tank of the present invention.
[0022] Description of the numbers in the figure:
[0023] Conveying mechanism 1; can feeding conveyor belt 1-1; rotating conveyor disc 1-2; blocking arm 1-2-1; baffle 1-2-1-1; electric push rod 1-2-1-2; bracket 1-2-1-3; roller 1-2-1-4; sliding claw 1-2-1-5; turntable 1-2-2; valve holder 1-2-3; can discharging clamp 1-2-4; motor 1-2-5; can discharging conveyor belt 1-3; glue spraying mechanism 2; valve conveyor belt 2-1; placement seat 2-2; glue sprayer 2-3; clamping arm 2-4; fixing frame 2-4-1; movable arm 2-4-2; discharge clamp 2-4-3; tightening mechanism 3; tank clamp seat 3-1; rotating motor 3-2; valve fixing clamp 3-3; sliding plate 3-4; base 3-3-1; clamp 3-3-2; inflation pipe 4; inflation outlet 4-1; support table 5; operation screen 6, assembly section a; preparation section b. DETAILED DESCRIPTION
[0024] Specific embodiment 1: Please refer to Figure 1-Figure 12The present invention relates to a high-pressure tank valve assembly and inflation integrated machine, comprising a conveying mechanism 1, a glue spraying mechanism 2, a tightening mechanism 3, a plurality of inflation pipes 4, a support platform 5 and an operation screen 6. The conveying mechanism 1 comprises a tank inlet conveyor belt 1-1, a rotating conveyor disc 1-2 and a tank outlet conveyor belt 1-3. The rotating conveyor disc 1-2 is fixedly installed in the central area above the support platform 5. The tank inlet conveyor belt 1-1 and the tank outlet conveyor belt 1-3 are oppositely installed at the two ends of the rotating conveyor disc 1-2. The rotating conveyor disc 1-2 always rotates in the same direction to convey the high-pressure tank and the valve ... -2, a section from the inlet conveyor belt 1-1 to the outlet conveyor belt 1-3 in the rotation path is the assembly section a, and a section from the outlet conveyor belt 1-3 to the inlet conveyor belt 1-1 is the preparation section b. The glue spraying mechanism 2 is fixedly connected to the upper edge of the support platform 5, and the glue spraying mechanism 2 is installed on one side of the preparation section b. The tightening mechanism 3 is fixedly connected to the upper side of the support platform 5 close to the inlet conveyor belt 1-1, and the tightening mechanism 3 is installed on the assembly section a. A number of inflation pipes 4 are evenly and fixedly connected to the upper end of the rotating conveyor disk 1-2, and the operation screen 6 is fixedly connected to the top of the support platform 5.
[0025] In a further embodiment, Figure 3-Figure 5 As shown, the valve includes a connection portion connected to the high-pressure tank and a ventilation pipe connected to the external air intake; the rotating conveyor disc 1-2 includes a blocking arm 1-2-1, a turntable 1-2-2, a plurality of valve holders 1-2-3, a can outlet clamp 1-2-4 and a motor 1-2-5, the blocking arm 1-2-1 is fixedly connected to the top of the support platform 5 and the blocking arm 1-2-1 is installed at the front end of the conveying terminal of the can inlet conveyor belt 1-1 to prevent the high-pressure tank from falling during the conveying process, the can outlet clamp 1-2-4 is fixedly connected to the upper end of the support platform 5 and the can outlet clamp 1-2-4 is installed on a side close to the can outlet conveyor belt 1-3, so as to facilitate the clamping of the finished product to the can outlet conveyor belt 1-3 for transportation, the turntable 1-2-2 and the motor 1-2-5 are fixedly connected, and the turntable 1- 2-2 and the motor 1-2-5 are fixedly installed above the support platform 5, and a number of valve holders 1-2-3 correspond to a number of inflation pipes 4 one by one. A number of valve holders 1-2-3 are extended and fixedly connected to the outer end of the turntable 1-2-2. The inflation pipe 4 includes an inflation outlet 4-1, and the inflation outlet 4-1 is located on one side of the valve holder 1-2-3. When the valve is inserted into the valve holder 1-2-3, its ventilation pipe just touches the inflation outlet 4-1 for communication. The support platform 5 is provided with an arc-shaped hollow on the table surface on one side of the assembly section a, and the interior of the support platform 5 below the hollow is paved with fine sand. When the valve is not firmly assembled during the inflation process, the leakage causes the high-pressure tank body to be washed away, and directly falling into the sand can ensure that the tank body will not be damaged.
[0026] In a further embodiment, Figure 10-12As shown, the baffle arm 1-2-1 includes a baffle plate 1-2-1-1, an electric push rod 1-2-1-2, a bracket 1-2-1-3, a plurality of rollers 1-2-1-4 and a sliding claw 1-2-1-5. The bracket 1-2-1-3 is fixedly connected to the support platform 5. The baffle plate 1-2-1-1 is fixedly connected to the electric push rod 1-2-1-2. The electric push rod 1-2-1-2 is slidably connected to the bracket 1-2-1-3. The position of the baffle plate 1-2-1-1 can be adjusted by sliding the electric push rod 1-2-1-2. The plurality of rollers 1-2-1 -4 is rotatably connected to the baffle 1-2-1-1, and the axes of several rollers 1-2-1-4 are in the same straight line and perpendicular to the sliding path of the electric push rod 1-2-1-2, so as to reduce the impact force when the electric push rod 1-2-1-2 contacts the high-pressure tank and reduce equipment loss; a curved slideway with open ends is provided inside the push plate 1-2-1-1, and a sliding claw 1-2-1-5 is slidably connected to the curved slideway of the push plate 1-2-1-1, and one end of the sliding claw 1-2-1-5 is exposed outside the baffle 1-2-1-1, and the other end is provided on the baffle 1-2- 1-1 side and leads to the outside, a reset groove is provided in the curved slide of the push plate 1-2-1-1, a reset spring is installed at the bottom of the reset groove, and a reset claw is provided in the sliding claw 1-2-1-5, the reset claw is slidably connected in the reset groove and the outer end of the reset claw is against the reset spring, when the plate surface of the baffle 1-2-1-1 pushes the high-pressure tank and contacts it, the exposed end of the sliding claw 1-2-1-5 slides due to the reaction force when the high-pressure tank is pushed, and the sliding claw 1-2-1-5 slides in the curved slide of the push plate 1-2-1-1, and the reset claw squeezes the reset spring The compression makes the other end of the sliding claw 1-2-1-5 extend from the side of the baffle 1-2-1-1 and face the bracket 1-2-1-3, so as to clamp the high-pressure tank during the pushing process to prevent the high-pressure tank from tipping over due to uneven force, increase the stability of the baffle arm 1-2-1 when pushing the high-pressure tank, and improve the transmission efficiency; after the pushing is completed, the electric push rod 1-2-1-2 returns to its original position, the sliding claw 1-2-1-5 loses its reaction force, and the elastic force of the reset spring pushes the reset claw to slide, and the other end of the sliding claw 1-2-1-5 returns to its original position from the side of the baffle 1-2-1-1. Fig.11 state.
[0027] In a further embodiment, Figure 4-Figure 6As shown, the glue spraying mechanism 2 includes a valve conveyor belt 2-1, a plurality of placement seats 2-2, a glue sprayer 2-3 and a clamping arm 2-4. The valve conveyor belt 2-1, the glue sprayer 2-3 and the clamping arm 2-4 are all fixedly connected to the upper edge of the support platform 5 and installed on one side of the preparation section b. The plurality of placement seats 2-2 are fixedly installed on the valve conveyor belt 2-1. The glue sprayer 2-3 is fixedly connected above the support platform 5. The glue sprayer 2-3 is installed between the transfer conveyor disc 1-2 and the valve conveyor belt 2-1 and is arranged in the middle section of the valve conveyor belt 2-1. The clamping arm 2-4 is installed on the side of the valve conveyor belt 2-1 close to the conveying terminal, and the clamping arm 2-4 is installed between the valve conveyor belt 2-1 and the rotating conveyor disc 1-2 to prevent the clamping arm 2-4 from interfering when moving the valve from the placement seat 2-2 to the rotating conveyor disc 1-2, causing damage to the equipment. The clamping arm 2-4 includes a fixed frame 2-4-1, The movable arm 2-4-2 and the discharging clamp 2-4-3, the bottom of the fixed frame 2-4-1 is fixedly connected to the top of the support platform 5, one side of the movable arm 2-4-2 is horizontally slidably connected to the upper end of the fixed frame 2-4-1, and the other side is rotatably connected to the tail of the discharging clamp 2-4-3, and the head of the discharging clamp 2-4-3 is provided with a clamp for clamping the valve. The discharging clamp 2-4-3 is an electric clamp connected to an independent motor. Starting the motor can loosen or clamp the clamp at the head of the discharging clamp 2-4-3. When the discharging clamp 2-4-3 clamps the valve and rotates to a horizontal level, the movable arm 2-4-2 slides to its end point, so that the clamped valve is just stuck in one of the valve holders 1-2-3, and the valve's ventilation pipe is pressed into the inflation outlet 4-1 and connected, so as to complete the clamping and installation of the valve, realize the discharging of the rubber valve and the transfer of the valve from the valve conveyor belt 2-1 to the valve holder 1-2-3 for installation.
[0028] like Figure 7-Figure 8As shown, the tightening mechanism 3 includes a tank body clamp seat 3-1, a rotating motor 3-2, a valve fixing clamp 3-3 and a sliding plate 3-4. The tank body clamp seat 3-1 and the rotating motor 3-2 are fixedly connected. The tank body clamp seat 3-1 and the rotating motor 3-2 are fixedly installed above and inside the support platform 5 respectively. The valve fixing clamp 3-3 is fixedly installed above the support platform 5 close to the tank body clamp seat 3-1 and away from the rotating conveying disk 1-2. The valve fixing clamp 3-3 includes a base 3-3-1 and a clamp 3-3-2. The base 3-3-1 is fixedly installed above the support platform 5. One end of the clamp 3-3-2 is vertically slidably connected to the upper end of the base 3-3-1 through a push rod motor, and the clamp The other end of 3-3-2 is located just above the tank body clamp seat 3-1. The clamp 3-3-2 is an electric clamp connected to an independent motor. Starting the motor can loosen or clamp the clamp 3-3-2. When the rotating conveyor disc 1-2 rotates, the valve holder 1-2-3 rotates to between the clamp 3-3-2 and the tank body clamp seat 3-1. The clamp 3-3-2 can achieve the clamping and loosening of the valve head on the valve holder 1-2-3 by vertically sliding on the base 3-3-1, and clamp the valve when tightening the high-pressure tank and the valve. The sliding plate 3-4 is slidably connected to the rotating motor 3-2 to achieve the movement and adjustment of the high-pressure tank on the tightening mechanism 3, thereby improving the tightening efficiency.
[0029] During operation, the parameters of each link are set through the operation screen 6 to determine the running speed of the conveying mechanism 1 and the valve conveyor belt 2-1, as well as the action cycle time of the glue sprayer 2-3, the clamping arm 2-4 and the tightening mechanism 3. Several valves are manually installed on the placement seat 2-2, and the valve conveyor belt 2-1 is started. When the glue sprayer 2-3 is sensed to pass through the valve, the glue sprayer 2-3 sprays glue on the lower end of the valve. At the same time, the clamping arm 2-4 clamps the previous valve that has completed glue spraying. Specifically, the discharge clamp 2-4-3 clamps the two ends of the valve head, and the movable arm 2-4-2 sends the valve head into the valve clamping seat 1-2-3 to clamp and push open the resilient inflation outlet 4-1, connecting the inflation outlet 4-1 with the ventilation pipe. After completion, the movable arm 2-4-2 is slid to retract the discharge clamp 2-4-3. At the same time, the high-pressure tank is transmitted to the blocking arm 1-2-1 through the tank feeding conveyor belt 1-1, and the sliding electric push rod 1-2-1-2 pushes the high-pressure tank out of the tank feeding conveyor belt 1-1 and pushes it into the tank The valve body clamp 3-1 is moved, and the stability is maintained by the sliding claw 1-2-1-5 during the movement. Then the high-pressure tank falls on the tank body clamp 3-1 and sends out an induction signal, the valve fixing clamp 3-3 is started to clamp the valve head and the tank body clamp 3-1 is rotated upward according to the set time parameters to tighten the high-pressure tank and the valve. After tightening, the high-pressure tank and the valve are fixedly connected, the valve fixing clamp 3-3 is loosened and returned to its position, and the turntable 1-2-2 is rotated to drive the valve clamp 1-2-3 to transmit the valve and the high-pressure tank connection as a whole. At the same time, the inflation pipe 4 inflates the inside of the high-pressure tank through the inflation outlet 4-1 and the air duct of the valve. The inflated valve and the high-pressure tank connection are rotated to the tank discharge conveyor belt 1-3, and the tank discharge clamp 1-2-4 clamps the inflated valve and the high-pressure tank connection as a whole and places them on the tank discharge conveyor belt 1-3 for output. Then, the inflated valve and the high-pressure tank connection as a whole can be manually tested for air tightness in the next process.
Claims
1. A high-pressure tank valve assembly and inflation integrated machine, characterized in that: The invention comprises a conveying mechanism (1), a glue spraying mechanism (2), a tightening mechanism (3), a plurality of air charging pipes (4), a support platform (5) and an operation screen (6). The conveying mechanism (1) comprises a can-feeding conveyor belt (1-1), a rotating conveyor disc (1-2) and a can-discharging conveyor belt (1-3). The rotating conveyor disc (1-2) is fixedly installed in the central area above the support platform (5). The can-feeding conveyor belt (1-1) and the can-discharging conveyor belt (1-3) are oppositely installed at the two ends of the rotating conveyor disc (1-2). The rotating conveyor disc (1-2) always rotates in the same direction to convey high-pressure cans and valves. The can-feeding conveyor belt (1-1) and the can-discharging conveyor belt (1-3) are arranged on the rotating conveyor disc (1-2). A section where the belt (1-1) turns to the can-out conveyor belt (1-3) is the assembly section (a), a section where the can-out conveyor belt (1-3) turns to the can-in conveyor belt (1-1) is the preparation section (b), a glue spraying mechanism (2) is fixedly connected to the upper edge of the support platform (5), and the glue spraying mechanism (2) is installed on one side of the preparation section (b), a tightening mechanism (3) is fixedly connected to the upper side of the support platform (5) close to the can-in conveyor belt (1-1), and the tightening mechanism (3) is installed on the assembly section (a), a plurality of inflation pipes (4) are evenly fixedly connected to the upper end of the rotating conveyor disc (1-2), and an operation screen (6) is fixedly connected to the upper side of the support platform (5); The rotating conveyor disc (1-2) comprises a baffle arm (1-2-1), the baffle arm (1-2-1) is fixedly connected to the top of the support platform (5) and the baffle arm (1-2-1) is installed at the front end of the conveying terminal of the can feeding conveyor belt (1-1), the baffle arm (1-2-1-1) comprises a baffle plate (1-2-1-1), an electric push rod (1-2-1-2), a bracket (1-2-1-3), a plurality of rollers (1-2-1-4) and a sliding claw (1-2-1-5), the bracket (1-2-1-3) is fixedly connected to the top of the support platform (5), the baffle plate (1-2-1-1) is fixedly connected to the electric push rod (1-2-1-2), the electric push rod (1-2-1-2) is slidably connected to the bracket (1-2-1-3), and the electric push rod (1-2-1-2) is slidably connected to the bracket (1-2-1-3). 2-1-2) can adjust the position of the baffle (1-2-1-1), a plurality of rollers (1-2-1-4) are rotatably connected to the baffle (1-2-1-1), a slideway with two ends open is provided inside the push plate (1-2-1-1), a sliding claw (1-2-1-5) is slidably connected inside the slideway of the push plate (1-2-1-1), one end of the sliding claw (1-2-1-5) is exposed outside the plate surface of the baffle (1-2-1-1), and the other end is arranged on the side of the baffle (1-2-1-1) and leads to the outside, a reset groove is provided in the curved slideway of the push plate (1-2-1-1), a reset spring is installed at the bottom of the reset groove, and the sliding claw (1-2-1-5) is provided with a reset claw, the reset claw is slidably connected in the reset groove, and the outer end of the reset claw abuts against the reset spring.
2. The high-pressure tank valve assembly and inflation integrated machine according to claim 1, characterized in that: The valve comprises a connection portion connected to the high-pressure tank and a vent pipe connected to external air intake. The rotating conveyor disc (1-2) comprises a turntable (1-2-2), a plurality of valve holders (1-2-3), a can discharge clamp (1-2-4) and a motor (1-2-5). The can discharge clamp (1-2-4) is fixedly connected to the upper end of the support platform (5) and the can discharge clamp (1-2-4) is installed on a side close to the can discharge conveyor belt (1-3). The turntable (1-2-2) and the motor (1-2-5) are fixedly connected. 2) and a motor (1-2-5) are fixedly installed above the support platform (5), a plurality of valve holders (1-2-3) correspond to a plurality of inflation pipes (4) one by one, a plurality of valve holders (1-2-3) extend and are fixedly connected to the outer end of the turntable (1-2-2), the inflation pipe (4) includes an inflation outlet (4-1), the inflation outlet (4-1) is located on one side of the valve holder (1-2-3), and when the valve is inserted into the valve holder (1-2-3), its ventilation pipe just contacts the inflation outlet (4-1) for communication.
3. The high-pressure tank valve assembly and inflation integrated machine according to claim 1, characterized in that: The glue spraying mechanism (2) comprises a valve conveyor belt (2-1), a plurality of placement seats (2-2), a glue sprayer (2-3) and a clamping arm (2-4); the valve conveyor belt (2-1), the glue sprayer (2-3) and the clamping arm (2-4) are all fixedly connected to the upper edge of a support platform (5) and installed on one side of a preparation section (b); the plurality of placement seats (2-2) are fixedly installed on the valve conveyor belt (2-1); the glue sprayer (2-3) is fixedly connected to the upper part of the support platform (5); the glue sprayer (2-3) is installed between the transfer conveyor disc (1-2) and the valve conveyor belt (2-1) and is arranged in the middle section of the valve conveyor belt (2-1).
4. The high-pressure tank valve assembly and inflation integrated machine according to claim 3, characterized in that: The clamping arm (2-4) comprises a fixed frame (2-4-1), a movable arm (2-4-2) and a discharge clamp (2-4-3); the bottom of the fixed frame (2-4-1) is fixedly connected to the top of the support platform (5); one side of the movable arm (2-4-2) is slidably connected to the upper end of the fixed frame (2-4-1) and the other side is rotatably connected to the tail of the discharge clamp (2-4-3); a clamp for clamping the valve is provided at the head of the discharge clamp (2-4-3); when the movable arm (2-4-2) slides to its two sliding end points and when the discharge clamp (2-4-3) clamps the valve and rotates to a horizontal position, the movable arm (2-4-2) slides to its end point so that the clamped valve is just clamped into one of the valve clamping seats (1-2-3), and the ventilation pipe of the valve is pressed into the inflation outlet (4-1) and connected.
5. The high-pressure tank valve assembly and inflation integrated machine according to claim 1, characterized in that: The tightening mechanism (3) comprises a tank body clamp seat (3-1), a rotating motor (3-2), a valve fixing clamp (3-3) and a sliding plate (3-4); the tank body clamp seat (3-1) and the rotating motor (3-2) are fixedly connected; the tank body clamp seat (3-1) and the rotating motor (3-2) are respectively fixedly installed above and inside a support platform (5); the valve fixing clamp (3-3) is fixedly installed above the support platform (5) on a side close to the tank body clamp seat (3-1) and away from the rotating conveying disc (1-2); and the sliding plate (3-4) is slidably connected to the rotating motor (3-2).
6. The high-pressure tank valve assembly and inflation integrated machine according to claim 5, characterized in that: The valve fixing clamp (3-3) comprises a base (3-3-1) and a clamp (3-3-2), wherein the base (3-3-1) is fixedly installed above a support platform (5), one end of the clamp (3-3-2) is vertically slidably connected to the upper end of the base (3-3-1) via a push rod motor, and the other end of the clamp (3-3-2) is located directly above the tank body clamp seat (3-1), and when the rotating conveyor disc (1-2) rotates, the valve clamp seat (1-2-3) rotates to between the clamp (3-3-2) and the tank body clamp seat (3-1), and the clamp (3-3-2) can clamp and release the head of the valve on the valve clamp seat (1-2-3) by vertically sliding on the base (3-3-1).
7. The high-pressure tank valve assembly and inflation integrated machine according to claim 4, characterized in that: The clamping arm (2-4) is installed on a side of the valve conveyor belt (2-1) close to the conveying terminal, and the clamping arm (2-4) is installed between the valve conveyor belt (2-1) and the rotating conveying disk (1-2).
8. The high-pressure tank valve assembly and inflation integrated machine according to claim 4, characterized in that: The support platform (5) is provided with an arc-shaped hollow on the platform surface on one side of the assembly section (a), and the interior of the support platform (5) below the hollow is paved with fine sand.
Citation Information
Patent Citations
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