Automatic test platform for APP development

By designing an automatic test platform for APP development, it adopts a protective sleeve and a double-layer baffle structure, combined with the motor, tooth lifting arm, a shrink pulling plate and an LED display, a semi-enclosed environment is formed, which solves the problem of collapse caused by external errors during the operation of APP code, and improves the operating efficiency and stability of the host through a rapid cooling mechanism.

CN120152191AInactive Publication Date: 2025-06-13DAZHOU LEADING INVESTMENT INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202510214590.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2025-06-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the operation of the underlying code of existing APPs, code crashes due to external errors, and the programmer's working environment is unsafe, which increases the risk of device contact and crashes.

Method used

An automatic testing platform for APP development is designed, using a protective sleeve and a double-layer baffle structure, combining a motor, a clamped lifting arm, a shrink pulling plate and an LED display screen to form a semi-enclosed environment to reduce external mistouching; at the same time, a fan and a filter are used to quickly cool down.

Benefits of technology

It effectively reduces the probability that the computer peripherals are accidentally touched by external forces, prevents code crashes, and improves the operating efficiency and stability of the host through a rapid cooling mechanism.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of APP testing, in particular to an automatic testing platform for APP development, which comprises a protective sleeve shell, a double-layer baffle fixedly mounted on the inner side wall surface of the protective sleeve shell, and a support limiting plate movably lapped on the outer side surface of the top of the double-layer baffle, a motor is fixedly installed on the inner side wall face of the protective sleeve shell and located in the middle of the double-layer baffle, the outer side surface of the double-layer baffle is movably sleeved with a latch lifting arm, and the outer side surface of the output end of the motor is movably connected to the outer side surface of the latch lifting arm in a lap joint mode. When the main machine operates, the main machine is matched with a fan to extract air in the protective sleeve shell, after the air in the protective sleeve shell is rapidly discharged, the air in the protective sleeve shell loses pressure, external air can penetrate through a filter screen to enter the protective sleeve shell, and the air flows rapidly along with continuous and rapid flowing of the air, so that the pressure of the air in the protective sleeve shell is reduced. A hot air source generated during operation of the main machine can be taken away, and the main machine can be quickly cooled.
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Description

Technical Field

[0001] The present invention belongs to the technical field of APP testing, and specifically relates to an automatic testing platform for APP development. Background Art

[0002] The software testing platform creates a software testing workspace for customers that combines characteristics such as high efficiency and low cost, greatly shortens the testing cycle of software products, can improve product quality, can also give full play to the advantages of virtualization, reduce the number of physical workstations, reduce the energy consumption of the customer's IT system, and improve space utilization efficiency.

[0003] A patent with the publication number CN221653024U discloses an ETL software testing platform, which includes a service cabinet. The service cabinet is hinged with a cabinet door. A partition is provided inside the service cabinet, and a server is provided on the partition. The service cabinet is fixedly connected with a water tank. The water tank is communicated with a branch pipe, the branch pipe is communicated with a connecting pipe, a water pump is installed on the service cabinet, the connecting pipe is communicated with the water pump and a water suction pipe, a water cavity is opened inside the service cabinet, the water pump is communicated with the water cavity through a water delivery pipe, a serpentine pipe is provided inside the service cabinet, the water tank is communicated with a vertical pipe, the serpentine pipe is communicated with the water cavity, and the serpentine pipe is communicated with the vertical pipe. The service cabinet is provided with a heat dissipation component; by starting the water pump, the water inside the water tank sequentially flows back into the water tank along each branch pipe, connecting pipe, water suction pipe, water delivery pipe, water cavity, serpentine pipe and vertical pipe. During the water circulation process, the server in contact with the serpentine pipe will transfer heat to the water.

[0004] In the current prior art, after the underlying code of an existing APP is developed, the underlying code needs to be run. In order to meet various needs of users, a large amount of data operations are performed on the code, which will consume a lot of time. At this time, the external devices that can control the computer cannot be moved randomly, and accidentally touching the keys may cause the code operation to stop, which is very likely to cause the entire code operation to collapse. And the work positions of existing programmers are connected to each other, and the computers and external devices are exposed to the outside. Workers walk around, greatly increasing the contact between the keyboard, mouse, host and the outside world, which may lead to the problem of code collapse.

[0005] Therefore, the present invention provides an automatic testing platform for APP development. Summary of the Invention

[0006] In order to make up for the deficiencies of the prior art and solve at least one technical problem proposed in the background art.

[0007] The technical solution adopted by the present invention to solve its technical problems is as follows: An automatic testing platform for APP development according to the present invention includes a protective housing and a double-layer baffle fixedly installed on the inner side wall surface of the protective housing, a support and limit plate movably lapped on the outer surface of the top of the double-layer baffle. A motor is fixedly installed on the inner side wall surface of the protective housing and at the middle position of the double-layer baffle. A toothed lifting arm is movably sleeved on the outer surface of the double-layer baffle. The outer surface of the output end of the motor is movably lapped on the outer surface of the toothed lifting arm. A closing cover is swingably connected to the top surface of the protective housing and at one side edge position. A retractable and pullable plate is arranged on the inner side wall surface of the closing cover. A limiting rod 1 is swingably connected to the top surface of the support and limit plate and at one side edge position. An LED display screen is fixedly installed on the outer surface of the limiting rod 1.

[0008] Preferably, motor threaded rods are fixedly installed at both side edge positions of the support and limit plate. A slider is threadedly movably sleeved on the output end of the motor threaded rod. A compression swing arm is movably sleeved on the outer surface of the slider. The other end of the compression swing arm is movably sleeved on the outer surface of the limiting rod 1.

[0009] Preferably, a keyboard is arranged at the middle position on the top surface of the support and limit plate. A rectangular groove is formed on the outer surface of the top end of the limiting rod 1. A limiting rod 2 is movably sleeved at one side edge position of the support and limit plate. Elastic buffer wires are fixedly connected to the inner side wall surface of the support and limit plate. The other ends of the limiting rod 2 and the elastic buffer wires are fixedly connected to an extrusion adsorption strip.

[0010] Preferably, docking convex blocks are fixedly connected to both side edge positions on the outer surface of the extrusion adsorption strip. The outer surface of the docking convex block is movably sleeved on the inner side wall surface of the rectangular groove.

[0011] Preferably, a blower is fixedly installed on one side surface of the protective housing and at the top edge position, and the position of the blower is at the middle position of the double-layer baffle. A filter screen is fixedly connected to the other side surface of the protective housing and at the bottom edge position.

[0012] Preferably, a mainframe is arranged on the inner side wall surface of the protective housing. A baffle is arranged on the outer surface of the protective housing and at the outer edge position of the mainframe.

[0013] Preferably, a limiting track strip is fixedly connected to the inner side wall surface of the closing cover and at one side edge position. One end of the retractable and pullable plate is movably sleeved on the inner side wall surface of the limiting track strip.

[0014] Preferably, an anti-slip fitting plate is fixedly connected to the top surface of the tooth-lifting arm, and the top surface of the anti-slip fitting plate is movably lapped on the bottom surface of the support limiting plate.

[0015] The beneficial effects of the present invention are as follows:

[0016] 1. For the automatic testing platform for APP development of the present invention, the motor is used to lower the tooth-lifting arm, so that the support limiting plate retracts into the protective housing. After retracting the retractable pull plate, a gap appears inside the closing cover. When the closing cover is swung so that the gap passes through the LED display screen and the closing cover is lapped on the top surface of the protective housing, and when the retractable pull plate is pulled, one side surface of the retractable pull plate is attached to the surface of the LED display screen. The support limiting plate is completely wrapped by the retractable pull plate and the protective housing, in a semi-closed environment, greatly reducing the risk that computer peripherals will be accidentally touched by external forces, which may lead to the breakdown of code operation.

[0017] 2. For the automatic testing platform for APP development of the present invention, after the closing cover is opened, the motor is rotated to push the tooth-lifting arm to move upward. At this time, the anti-slip fitting plate on the top surface of the tooth-lifting arm is used to lift the support limiting plate. By rotating the motor screw rod, the slider moves on the output end surface of the motor screw rod, pushing the compression swing arm and then driving the LED display screen and the first limiting rod to swing, so that the first limiting rod swings on the surface of the support limiting plate, and then the LED display screen on the outer surface of the first limiting rod is extended and lifted. At this time, a triangular support frame is formed among the first limiting rod, the support limiting plate and the compression swing arm. The triangular support frame at this time can keep the first limiting rod in a stable state, so that the LED display screen will not shake or close too much.

[0018] 3. For the automatic testing platform for APP development of the present invention, when the host is running, the fan is used to extract air from the inside of the protective housing. When the air inside the protective housing is quickly discharged, the air pressure inside the protective housing will be lost, and the outside air will pass through the filter screen and enter the inside of the protective housing. With the continuous and rapid flow of air, the heat source generated during the operation of the host will be carried away, achieving the effect of quickly cooling the host.

[0019] 4. For the automatic testing platform for APP development according to the present invention, after the code is transported and the sealing cover is removed, the motor screw rod is rotated, thereby driving the slider, the compression swing arm and the first limiting rod to close. At this time, the second limiting rod is used to pull the extrusion adsorption strip. When the LED display screen is lapped on the top surface of the keyboard, the second limiting rod is released, and the elastic buffer wire is used to elastically push the extrusion adsorption strip, so that the docking bumps on both side edges of the extrusion adsorption strip are docked to the inner side wall surface of the rectangular groove, thereby forming an integral body between the LED display screen and the support limiting plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The present invention will be further described below with reference to the accompanying drawings.

[0021] Figure 1 is a perspective view of the present invention;

[0022] Figure 2 is a perspective view of the protective housing of the present invention;

[0023] Figure 3 is an exploded perspective sectional view of the protective housing of the present invention;

[0024] Figure 4 is a sectional perspective view of the protective housing of the present invention;

[0025] Figure 5 is a perspective view of the sealing cover of the present invention;

[0026] Figure 6 is a perspective view of the support limiting plate closed of the present invention;

[0027] Figure 7 is a perspective view of the support limiting plate unfolded of the present invention;

[0028] Figure 8 is a sectional perspective view of the double-layer baffle of the present invention.

[0029] In the figure: 11. Protective housing; a1. Limit track strip; a2. Retractable pull plate; 111. Sealing cover; 112. Baffle; 113. Host; 114. Filter screen; 115. Fan; 12. Double-layer baffle; 121. Motor; 122. Tooth-lifting arm; 123. Anti-slip bonding plate; 13. Support limiting plate; 131. Motor screw rod; 132. Slider; 133. Compression swing arm; 134. First limiting rod; 135. Rectangular groove; 136. LED display screen; 137. Second limiting rod; 138. Elastic buffer wire; 139. Extrusion adsorption strip; 1310. Docking bump; 1311. Keyboard. DETAILED DESCRIPTION OF THE INVENTION

[0030] In order to make the technical means, creative features, achieved purposes and effects realized by the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.

[0031] As Figures 1 to 8 shown, an automatic test platform for APP development according to an embodiment of the present invention includes a protective housing 11 and a double-layer baffle 12 fixedly installed on the inner wall surface of the protective housing 11, a support limiting plate 13 movably lapped on the outer surface of the top of the double-layer baffle 12, a motor 121 fixedly installed on the inner wall surface of the protective housing 11 and located at the middle position of the double-layer baffle 12, a toothed lifting arm 122 movably sleeved on the outer surface of the double-layer baffle 12, the outer surface of the output end of the motor 121 movably lapped on the outer surface of the toothed lifting arm 122, a closing cover 111 swingably connected to the top surface of the protective housing 11 and located at one side edge position, a retractable pull plate a2 provided on the inner wall surface of the closing cover 111, a limiting rod 134 swingably connected to the top surface of the support limiting plate 13 and located at one side edge position, an LED display screen 136 fixedly installed on the outer surface of the limiting rod 134, a limiting track bar a1 fixedly connected to the inner wall surface of the closing cover 111 and located at one side edge position, one end of the retractable pull plate a2 movably sleeved on the inner wall surface of the limiting track bar a1, an anti-slip fitting plate 123 fixedly connected to the top surface of the toothed lifting arm 122, and the top surface of the anti-slip fitting plate 123 movably lapped on the bottom surface of the support limiting plate 13.

[0032] Cooperate with the motor 121 to lower the toothed lifting arm 122, so that the support limiting plate 13 retracts into the protective housing 11. After retracting the retractable pull plate a2, a gap appears inside the closing cover 111. Swing the closing cover 111 to pass the gap through the LED display screen 136 so that the closing cover 111 lapped on the top surface of the protective housing 11. Pull the retractable pull plate a2 so that one side surface of the retractable pull plate a2 fits on the surface of the LED display screen 136, and use the retractable pull plate a2 and the protective housing 11 to completely wrap the support limiting plate 13, creating a semi-closed environment, which greatly reduces the risk of accidental touch of computer peripherals by external forces, thereby preventing the code from crashing during operation.

[0033] As Figure 1 、 Figure 3 - Figure 4 and Figure 6 - Figure 7As shown, motor threaded rods 131 are fixedly installed on the edge positions of both sides of the support and limit plate 13, a slider 132 is movably sleeved on the output end of the motor threaded rod 131, a pressure-resistant swing arm 133 is movably sleeved on the outer surface of the slider 132, and the other end of the pressure-resistant swing arm 133 is movably sleeved on the outer surface of the limit rod 134, a keyboard 1311 is arranged on the top surface of the support and limit plate 13 and located in the middle position, and a rectangular recess is provided on the outer surface of the top end of the limit rod 134 Groove 135, a limiting rod 137 is movably sleeved on one side edge of the support limiting plate 13, an elastic buffer wire 138 is fixedly connected to the inner wall of the support limiting plate 13, an extrusion adsorption strip 139 is fixedly connected to the other end of the limiting rod 137 and the elastic buffer wire 138, and a docking protrusion 1310 is fixedly connected to the outer surface of the extrusion adsorption strip 139 and at the edge positions on both sides, and the outer surface of the docking protrusion 1310 is movably sleeved on the inner wall of the rectangular groove 135.

[0034] The mobile hard disk with the APP code is docked with the host 113, and the baffle 112 is closed on the outer surface of the host 113 to prevent the host 113 from contacting the outside. At this time, the closing cover 111 is opened and then rotated by the motor 121 to push the latch lifting arm 122 to move up. At this time, the anti-skid bonding plate 123 on the top surface of the latch lifting arm 122 is used to lift the support limit plate 13, and the motor threaded rod 131 is rotated to make the slider 132 move on the output end surface of the motor threaded rod 131, pushing the anti-pressure swing arm 133 while driving the LED display screen. 136 and the limit rod 134 swing, so that the limit rod 134 swings on the surface of the support limit plate 13, and then the LED display screen 136 on the outer surface of the limit rod 134 is extended and lifted up. At this time, a triangular support frame is formed between the limit rod 134, the support limit plate 13 and the pressure-resistant swing arm 133. At this time, the triangular support frame can keep the limit rod 134 in a stable state, so that the LED display screen 136 will not shake too much and close; cooperate with the keyboard 1311 to control the host 113 and run the APP inside the mobile hard disk;

[0035] After the code is transported and the closing cover 111 is removed, it rotates in cooperation with the motor screw rod 131, thereby driving the slider 132, the compression swing arm 133 and the first limiting rod 134 to close. At this time, the second limiting rod 137 is used to pull the extrusion adsorption strip 139. When the LED display screen 136 is lapped on the top surface of the keyboard 1311, the second limiting rod 137 is released and the elastic buffer wire 138 is used to elastically push the extrusion adsorption strip 139, so that the docking bumps 1310 on both side edges of the extrusion adsorption strip 139 are docked to the inner wall surface of the rectangular groove 135, thereby forming a whole between the LED display screen 136 and the support limiting plate 13.

[0036] As Figures 1 to 4 and Figure 8 As shown, a blower 115 is fixedly installed on one side surface of the protective housing 11 and at the top edge position, and the position of the blower 115 is set in the middle of the double-layer baffle 12. A filter screen 114 is fixedly connected to the other side surface of the protective housing 11 and at the bottom edge position. A main unit 113 is arranged on the inner wall surface of the protective housing 11. A baffle 112 is arranged on the outer surface of the protective housing 11 and at the outer edge position of the main unit 113.

[0037] When the main unit 113 is running, the blower 115 is used to extract air from the inside of the protective housing 11. When the air inside the protective housing 11 is quickly discharged, the air pressure inside the protective housing 11 will be lost, and the outside air will pass through the filter screen 114 and enter the inside of the protective housing 11. With the continuous and rapid flow of air, the heat source generated during the operation of the main unit 113 will be taken away, achieving the effect of quickly cooling the main unit 113.

[0038] Working principle: Connect a mobile hard drive containing APP code to the host 113, and enclose the baffle 112 on the outer surface of the host 113 to prevent the host 113 from contacting the outside world. At this time, after opening the sealing cover 111, rotate it through the motor 121 to push the tooth-lifting arm 122 to move upward. At this time, cooperate with the anti-slip fitting plate 123 on the top surface of the tooth-lifting arm 122 to lift the support limiting plate 13. Rotate the motor screw rod 131 to make the slider 132 move on the output end surface of the motor screw rod 131. While pushing the compression swing arm 133, it drives the LED display screen 136 and the first limiting rod 134 to swing, so that the first limiting rod 134 swings on the surface of the support limiting plate 13, and then extends and lifts the LED display screen 136 on the outer surface of the first limiting rod 134. At this time, cooperate with the first limiting rod 134, the support limiting plate 13 and the compression swing arm 133 to form a triangular support frame. At this time, the triangular support frame can make the first limiting rod 134 in a stable state, so that the LED display screen 136 will not shake or close too much; Control the host 113 with the keyboard 1311 to run the APP inside the mobile hard drive;

[0039] At this time, cooperate with the motor 121 to lower the tooth-lifting arm 122, so that the support limiting plate 13 retracts into the protective housing 11. After retracting and pulling out the pull-out plate a2, a gap appears inside the sealing cover 111. Swing the sealing cover 111 to pass the gap through the LED display screen 136 so that the sealing cover 111 overlaps on the top surface of the protective housing 11. Pull out the pull-out plate a2 so that one side surface of the pull-out plate a2 fits on the surface of the LED display screen 136. Use the pull-out plate a2 and the protective housing 11 to completely wrap the support limiting plate 13 in a semi-closed environment, greatly reducing the chance that computer peripherals will be accidentally touched by external forces, which may cause the code operation to collapse;

[0040] When the host 113 is running, cooperate with the fan 115 to extract air from the inside of the protective housing 11. When the air inside the protective housing 11 is quickly discharged, the air pressure inside the protective housing 11 will be lost, and the outside air will pass through the filter screen 114 and enter the inside of the protective housing 11. With the continuous and rapid flow of air, it will take away the heat source generated during the operation of the host 113, achieving the effect of quickly cooling the host 113;

[0041] After the code is transported and the closing cover 111 is removed, it is rotated in cooperation with the motor screw rod 131, thereby driving the slider 132, the compression swing arm 133 and the first limiting rod 134 to close. At this time, the second limiting rod 137 is used to pull the extrusion adsorption strip 139. When the LED display screen 136 is lapped on the top surface of the keyboard 1311, the second limiting rod 137 is loosened and the elastic buffer wire 138 is used to elastically push the extrusion adsorption strip 139, so that the docking bumps 1310 on both side edges of the extrusion adsorption strip 139 are docked to the inner wall surface of the rectangular groove 135, thereby forming an integral body between the LED display screen 136 and the support limiting plate 13.

[0042] The foregoing has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments, and what is described in the above embodiments and the specification is only to illustrate the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.

Claims

1. An automatic testing platform for APP development, comprising a protective shell (11), a double-layer baffle (12) fixedly mounted on the inner wall of the protective shell (11), and a support limit plate (13) movably overlapped on the outer surface of the top of the double-layer baffle (12), characterized in that: A motor (121) is fixedly mounted on the inner wall of the protective shell (11) and located at the middle position of the double-layer baffle (12); a latching lifting arm (122) is movably sleeved on the outer surface of the double-layer baffle (12); the outer surface of the output end of the motor (121) is movably overlapped on the outer surface of the latching lifting arm (122); a closing cover (111) is swingably connected to the top surface of the protective shell (11) and located at a side edge position; a retractable pull-out plate (a2) is provided on the inner wall of the closing cover (111); a limiting rod (134) is swingably connected to the top surface of the support limiting plate (13) and located at a side edge position; an LED display screen (136) is fixedly mounted on the outer surface of the limiting rod (134).

2. An automatic testing platform for APP development according to claim 1, characterized in that: A motor threaded rod (131) is fixedly mounted on the edge positions of both sides of the support limit plate (13); a slider (132) is movably sleeved on the output end of the motor threaded rod (131); a pressure-resistant swing arm (133) is movably sleeved on the outer surface of the slider (132); and the other end of the pressure-resistant swing arm (133) is movably sleeved on the outer surface of the limit rod 1 (134).

3. An automatic testing platform for APP development according to claim 2, characterized in that: A keyboard (1311) is arranged on the top surface of the support and limit plate (13) and in the middle position; a rectangular groove (135) is provided on the outer surface of the top end of the limit rod 1 (134); a limit rod 2 (137) is movably sleeved on the edge of one side of the support and limit plate (13); an elastic buffer wire (138) is fixedly connected to the inner wall surface of the support and limit plate (13); and an extrusion adsorption strip (139) is fixedly connected to the other end of the limit rod 2 (137) and the elastic buffer wire (138).

4. An automatic testing platform for APP development according to claim 3, characterized in that: The outer surface of the extrusion adsorption strip (139) is fixedly connected to a docking protrusion (1310) at the edge positions on both sides, and the outer surface of the docking protrusion (1310) is movably sleeved on the inner wall surface of the rectangular groove (135).

5. An automatic testing platform for APP development according to claim 4, characterized in that: A fan (115) is fixedly mounted on one side surface of the protective casing (11) and located at the top edge, and the fan (115) is arranged at the middle position of the double-layer baffle (12). A filter screen (114) is fixedly connected to the other side surface of the protective casing (11) and located at the bottom edge.

6. An automatic testing platform for APP development according to claim 5, characterized in that: A main machine (113) is arranged on the inner wall surface of the protective shell (11), and a baffle (112) is arranged on the outer surface of the protective shell (11) and at the outer edge of the main machine (113).

7. An automatic testing platform for APP development according to claim 1, characterized in that: The inner wall surface of the closing cover (111) is fixedly connected to a limiting track strip (a1) at a side edge position, and one end of the retractable pull-out plate (a2) is movably sleeved on the inner wall surface of the limiting track strip (a1).

8. An automatic testing platform for APP development according to claim 1, characterized in that: An anti-skid bonding plate (123) is fixedly connected to the top surface of the latching tooth lifting arm (122), and the top surface of the anti-skid bonding plate (123) is movably overlapped on the bottom surface of the supporting limiting plate (13).