Industrial personal computer based on Intel technology and convenient to clean and dissipate heat

By setting up handles and cleaning mechanisms on the industrial control machine, the problem of reducing heat dissipation efficiency caused by dust accumulation is solved, convenient cleaning and stable operation are achieved, and equipment life is extended.

CN120371092AInactive Publication Date: 2025-07-25深圳市凌壹科技有限公司
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Patent Information

Application Number
CN202510839435.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-23
Publication Date
2025-07-25
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing industrial control machines are prone to accumulate dust after long-term operation, affecting the heat dissipation efficiency and may lead to increased equipment temperature, damage electronic components, and even causing system crashes.

Method used

Design an industrial control machine for easy cleaning. By setting handles and convenient cleaning mechanisms on the front side of the chassis, combined with the transmission pulley set and wipe board, the top of the chassis can be quickly cleaned; and the dustproof net on the front side of the chassis fan is cleaned through the radiating component cleaning mechanism to prevent the heat dissipation performance from degradation; the socket cleaning mechanism is used to clean the chassis interface to prevent poor contact.

Benefits of technology

It realizes convenient cleaning of industrial control machines, extends the service life of the equipment, ensures stable operation in various environments, and prevents degraded heat dissipation performance and poor contact.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to an industrial personal computer, and particularly relates to an industrial personal computer based on the Intel technology and convenient to clean and dissipate heat. An industrial personal computer convenient to clean and heat dissipation based on the Intel technology is convenient to clean dust, prolongs the service life of equipment and ensures stable operation of the equipment in various environments. The industrial personal computer comprises a case, handles are symmetrically arranged on the front side of the case left and right in a sliding mode, limiting blocks are arranged on the handles to limit the distance that the handles are pulled out, and a convenient cleaning mechanism is arranged on the upper surface of the case and is triggered through the handles. Through the convenient cleaning mechanism, the top of the case can be quickly cleaned by pulling a handle; through the heat dissipation component cleaning mechanism, a heat dissipation net on the front side of the heat dissipation fan can be rapidly cleaned in the process of pulling the handle, so that the heat dissipation performance of the heat dissipation fan is prevented from being reduced; and through the socket cleaning mechanism, interfaces of the case can be cleaned when the case is cleaned.
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Description

Technical Field

[0001] The present invention belongs to an industrial control computer, and particularly relates to an industrial control computer based on Intel technology that is easy to clean and convenient for heat dissipation. Background Art

[0002] An industrial control computer, also known as an industrial personal computer, is a computer designed specifically for industrial environments. Compared with ordinary personal computers, industrial control computers have stronger stability and reliability, can adapt to a wider temperature range, humidity changes, and stronger anti-interference ability, etc. They are widely used in fields such as manufacturing automation, data acquisition, and environmental monitoring. An industrial control computer based on Intel technology usually refers to an industrial computer that uses Intel processors or related technologies. Such industrial control computers utilize the technical advantages of Intel to provide strong support in computing performance, energy efficiency ratio, and compatibility.

[0003] Currently, the industrial control computers on the market usually lack effective dust-proof measures in the shell design. After long-term operation, a large amount of dust is likely to accumulate on the surface of the shell and internal components. These dusts not only affect the appearance of the device, but more importantly, they may hinder air circulation, reduce the heat dissipation efficiency, and thus cause the device temperature to rise. Excessive temperature may damage electronic components, and even cause system crashes or device failures, seriously affecting work efficiency and progress arrangements. Moreover, as the dust on the industrial control computer increases, the heat dissipation effect of the industrial control will also become worse.

[0004] To solve the above problems, there is an urgent need for an industrial control computer based on Intel technology that is easy to clean dust, so as to extend the service life of the device and ensure its stable operation in various environments, and is easy to clean and convenient for heat dissipation. Summary of the Invention

[0005] In order to overcome the shortcomings of the above-mentioned prior art, the present invention provides an industrial control computer based on Intel technology that is easy to clean dust, so as to extend the service life of the device and ensure its stable operation in various environments, and is easy to clean and convenient for heat dissipation.

[0006] Technical Solution: An industrial control computer based on Intel technology that is easy to clean and convenient for heat dissipation includes a chassis. On the left and right sides of the front side of the chassis, there are symmetrically arranged sliding handles. On the upper surface of the chassis, there is a convenient cleaning mechanism, which is triggered by the handle. The convenient cleaning mechanism includes an installation frame body. On the left and right sides of the top of the chassis, there are installation frame bodies. Inside the installation frame bodies, there are installed transmission pulley groups. On the inner side surfaces of the installation frame bodies, there are guiding tracks. Between the guiding tracks, there is a first wiping plate slidably connected. The left and right sides of the first wiping plate are respectively connected to the transmission pulley groups on both sides. At the bottom of the transmission pulley groups, there are first gears. At the rear sides of the handles, there are first racks. The first gears are meshed with the adjacent first racks.

[0007] In one embodiment, the convenient cleaning mechanism further includes a storage frame. A storage frame is provided on the top of the first wiping board, and a row of atomizing nozzles is provided at the bottom of the storage frame.

[0008] In one embodiment, the atomizing nozzles can rotate when spraying liquid.

[0009] In one embodiment, it further includes a heat dissipation component cleaning mechanism. Heat dissipation component cleaning mechanisms are provided on both the left and right sides of the chassis. The heat dissipation component cleaning mechanism includes a heat dissipation fan. Dust-proof nets are provided on the outer sides of the heat dissipation fans. Guide rods are vertically provided on both the front and rear sides of the heat dissipation fans. Sliders are slidably provided on the guide rods. A first spring is connected between the slider and the bottom end of the guide rod. A second wiping board is connected between the sliders on the same side. Push frames are slidably connected to the rear parts of the left and right inner walls of the chassis. Second racks are provided at the bottoms of the push frames and the handles. Second gears are rotatably provided in the chassis between the second racks. The second gears are engaged with the adjacent second racks.

[0010] In one embodiment, it further includes a folding cloth. A folding cloth is connected between the slider and the bottom of the chassis interior.

[0011] In one embodiment, a folding cloth is also connected between the first wiping board and the rear side of the installation frame body.

[0012] In one embodiment, the sides of the push frame and the handle close to the slider are both inclined outward slopes.

[0013] In one embodiment, it further includes a socket cleaning mechanism. A socket cleaning mechanism is provided at the bottom of the chassis. The socket cleaning mechanism includes a wedge-shaped plate. The wedge-shaped plate is slidably provided above the rear side of the chassis. A cylinder is provided at the rear side of the chassis below the wedge-shaped plate. A second spring is connected between the cylinder and the wedge-shaped plate. Pistons in the cylinder are symmetrically provided with piston rods. The piston rods pass upward through the upper wall of the cylinder and are connected to the wedge-shaped plate. A one-way pipe is provided at the bottom of the cylinder. A row of communicating pipes is provided at the bottom of the cylinder. The communicating pipes extend forward to the interface of the chassis.

[0014] The present invention has the following advantages: Through the convenient cleaning mechanism of the present invention, by pulling the handle, the top of the chassis can be quickly cleaned; through the heat dissipation component cleaning mechanism, during the process of pulling the handle, the heat dissipation net in front of the heat dissipation fan can be quickly cleaned to prevent the reduction of the heat dissipation performance of the heat dissipation fan; through the socket cleaning mechanism, when cleaning the chassis, the interfaces of the chassis can be cleaned to prevent the occurrence of poor contact. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a three-dimensional structural schematic diagram of the present invention.

[0016] Figure 2Schematic diagram of the three-dimensional structure inside the present invention.

[0017] Figure 3 Schematic diagram of the three-dimensional structure of the convenient cleaning mechanism of the present invention.

[0018] Figure 4 Bottom view of the convenient cleaning mechanism of the present invention.

[0019] Figure 5 For the present invention Figure 4 Enlarged view of A in

[0020] Figure 6 Schematic diagram of the three-dimensional structure of the material storage frame and atomizing nozzle of the present invention.

[0021] Figure 7 Schematic diagram of the three-dimensional structure of the heat dissipation component cleaning mechanism of the present invention.

[0022] Figure 8 Schematic diagram of the three-dimensional structure of the socket cleaning mechanism of the present invention.

[0023] In the reference numerals: 1, chassis; 2, handle; 3, convenient cleaning mechanism; 31, mounting frame body; 32, transmission pulley set; 33, guide track; 34, first wiping plate; 35, first rack; 36, first gear; 37, material storage frame; 38, atomizing nozzle; 4, heat dissipation component cleaning mechanism; 41, dust-proof net; 42, second rack; 43, second gear; 44, pushing frame; 45, guide rod; 46, slider; 47, first spring; 48, second wiping plate; 49, folding cloth; 410, heat dissipation fan; 5, socket cleaning mechanism; 51, wedge plate; 52, cylinder body; 53, piston rod; 54, second spring; 55, connecting pipe; 56, one-way pipe. Detailed implementation manners

[0024] The present invention will be further described below in conjunction with the embodiments shown in the drawings.

[0025] Embodiment: An industrial computer based on Intel technology that is easy to clean and has good heat dissipation, as Figures 1-6 shown, including a chassis 1, on the front side of the chassis 1, handles 2 are symmetrically and slidably arranged on the left and right. A limit block is arranged on the handle 2 to limit the distance that the handle 2 is pulled outwards. A convenient cleaning mechanism 3 is arranged on the upper surface of the chassis 1, and the convenient cleaning mechanism 3 is triggered by the handle 2.

[0026] As Figure 3 and Figure 6As shown in the figure, the convenient cleaning mechanism 3 includes a mounting frame 31. The mounting frame 31 is provided on both the left and right sides of the top of the chassis 1. A transmission pulley group 32 is installed in each mounting frame 31. The transmission pulley group 32 consists of a large pulley, a small pulley, and a flat belt wound between the large and small pulleys. The large pulley is installed at the front part inside the mounting frame 31, and the small pulley is installed at the rear part inside the mounting frame 31. Guide rails 33 are provided on the inner sides of the mounting frames 31. A first wiping plate 34 is slidably connected between the guide rails 33. The left and right sides of the first wiping plate 34 are respectively connected to the flat belts on both sides. A first gear 36 is provided at the bottom of each large pulley. A first rack 35 is provided at the rear side of each handle 2. The first gear 36 meshes with the adjacent first rack 35. By pulling the handle 2 back and forth, the first gear 36 can be driven to rotate, so that the transmission pulley group 32 rotates, driving the first wiping plate 34 to move back and forth to wipe the upper surface of the chassis 1. A storage box 37 is provided at the top of the first wiping plate 34, and a row of atomizing nozzles 38 is provided at the bottom of the storage box 37.

[0027] As Figure 7 As shown in the figure, it further includes a heat dissipation component cleaning mechanism 4. The heat dissipation component cleaning mechanism 4 is provided on both the left and right sides of the chassis 1. The heat dissipation component cleaning mechanism 4 includes a heat dissipation fan 410. A dustproof net 41 is provided on the outer side of each heat dissipation fan 410. Guide rods 45 are vertically provided on both the front and rear sides of the heat dissipation fan 410. Sliders 46 are slidably provided on the guide rods 45. A first spring 47 is connected between the slider 46 and the bottom end of the guide rod 45. A second wiping plate 48 is connected between the sliders 46 on the same side. A folding cloth 49 is connected between the slider 46 and the inner bottom of the chassis 1. A pushing frame 44 is slidably connected to the rear parts of the left and right inner walls of the chassis 1. The sides of the pushing frame 44 and the handle 2 close to the slider 46 are inclined outward. When the pushing frame 44 and the handle 2 approach each other, the slider 46 can be squeezed to move downward. Second racks 42 are provided at the bottoms of the pushing frame 44 and the handle 2. A second gear 43 is rotatably provided in the chassis 1 between the second racks 42. The second gear 43 meshes with the adjacent second rack 42. When the second gear 43 rotates, the pushing frame 44 and the handle 2 are driven to approach or separate from each other through the second rack 42.

[0028] As Figure 8As shown, it further includes a socket cleaning mechanism 5. The socket cleaning mechanism 5 is provided at the bottom of the chassis 1. The socket cleaning mechanism 5 includes a wedge-shaped plate 51. The wedge-shaped plate 51 is slidably provided above the rear side of the chassis 1. A cylinder block 52 is provided at the rear side of the chassis 1 below the wedge-shaped plate 51. A second spring 54 is connected between the cylinder block 52 and the wedge-shaped plate 51. Symmetrically arranged piston rods 53 are provided on the piston in the cylinder block 52. The piston rods 53 pass upward through the upper wall of the cylinder block 52 and are connected to the wedge-shaped plate 51. A one-way pipe 56 is provided at the bottom of the cylinder block 52. The one-way pipe 56 can only let air in and cannot let air out. A row of connecting pipes 55 is provided at the bottom of the cylinder block 52. The connecting pipes 55 extend forward to the interface of the chassis 1. When the piston moves up and down, the gas in the cylinder block 52 is discharged through the connecting pipes 55, and the gas blows on the interface of the chassis 1 to clean it.

[0029] After the industrial control computer is installed, when dust needs to be cleaned, move the handle 2 backward, driving the first rack 35 to move backward, and then driving the transmission pulley set 32 to rotate, so that the first cleaning plate 34 moves backward to clean the top of the chassis 1. When the first cleaning plate 34 moves to the rearmost side of the top of the chassis 1, pull the handle 2 forward, driving the first rack 35 to move forward, and then driving the transmission pulley set 32 to rotate, so that the first cleaning plate 34 moves forward to clean the top of the chassis 1. If there are stains on the top of the chassis 1 that cannot be cleaned by wiping, cleaning agent can be added to the storage frame 37. When the first cleaning plate 34 moves back and forth, it drives the storage frame 37 to move back and forth. During the movement of the storage frame 37, the atomizing nozzle 38 sprays the cleaning agent in the storage frame 37 onto the top of the chassis 1, so that the stains on the top of the chassis 1 can be better cleaned; when the handle 2 moves back and forth, it drives the second rack 42 at the front side to move back and forth. When the second rack 42 moves backward, it drives the second rack 42 at the rear side to move forward through the second gear 43. At this time, the pushing frame 44 and the handle 2 move closer to each other, and the pushing frame 44 and the handle 2 push the slider 46 downward, and then drive the second cleaning plate 48 to move downward to clean the dust-proof net 41. At the same time, the first spring 47 is compressed, and the folding cloth 49 can block the gap between the slider 46 and the chassis 1 to prevent dust from entering. When the second rack 42 moves forward, it drives the second rack 42 at the rear side to move backward through the second gear 43. At this time, the pushing frame 44 and the handle 2 move away from each other, and the first spring 47 resets to drive the second cleaning plate 48 to move upward and reset; when the first cleaning plate 34 moves backward and contacts the wedge plate 51, it pushes the wedge plate 51 downward, and then drives the piston rod 53 to move downward. The second spring 54 is compressed, and the piston rod 53 moves downward to discharge the gas in the cylinder body 52 through the connecting pipe 55 and blow it at the interface of the chassis 1 to clean the interface of the chassis 1. When the first cleaning plate 34 moves forward and resets, the second spring 54 resets, driving the wedge plate 51 to move upward and reset, and the piston rod 53 moves upward and resets. The outside gas enters the cylinder body 52 through the one-way pipe 56 for the next use.

[0030] Although the present disclosure has been shown and described with reference to specific exemplary embodiments thereof, those skilled in the art should understand that various changes in form and detail may be made therein without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. Therefore, the scope of the present disclosure should not be limited to the above embodiments, but should be determined not only by the appended claims but also by the equivalents of the appended claims.

Claims

1. An industrial computer based on Intel technology that is easy to clean and dissipate heat, including a chassis (1). On the front side of the chassis (1), handles (2) are symmetrically and slidably arranged on the left and right. A convenient cleaning mechanism (3) is arranged on the upper surface of the chassis (1). The convenient cleaning mechanism (3) is triggered by the handle (2). It is characterized in that, The convenient cleaning mechanism (3) includes an installation frame body (31). The installation frame bodies (31) are arranged on the left and right sides of the top of the chassis (1). The transmission pulley groups (32) are installed in the installation frame bodies (31). Guide rails (33) are arranged on the inner side surfaces of the installation frame bodies (31). A first wiping plate (34) is slidably connected between the guide rails (33). The left and right sides of the first wiping plate (34) are respectively connected to the transmission pulley groups (32) on both sides. First gears (36) are arranged at the bottoms of the transmission pulley groups (32). First racks (35) are arranged at the rear sides of the handles (2). The first gears (36) are meshed with the adjacent first racks (35).

2. An industrial computer based on Intel technology that is easy to clean and has good heat dissipation as described in claim 1, characterized in that, The convenient cleaning mechanism (3) further includes a material storage frame (37). The material storage frame (37) is arranged at the top of the first wiping plate (34). A row of atomizing nozzles (38) is arranged at the bottom of the material storage frame (37).

3. An industrial control computer based on Intel technology that is easy to clean and dissipate heat as described in claim 2, characterized in that, The atomizing nozzles (38) can rotate when spraying liquid.

4. An industrial computer based on Intel technology that is easy to clean and has good heat dissipation as claimed in claim 1, wherein, It further includes a heat dissipation component cleaning mechanism (4). The heat dissipation component cleaning mechanisms (4) are arranged on the left and right sides of the chassis (1). The heat dissipation component cleaning mechanism (4) includes a heat dissipation fan (410). Dust-proof nets (41) are arranged on the outer side surfaces of the heat dissipation fans (410). Guide rods (45) are vertically arranged on the front and rear sides of the heat dissipation fans (410). Sliders (46) are slidably arranged on the guide rods (45). A first spring (47) is connected between the sliders (46) and the bottom ends of the guide rods (45). A second wiping plate (48) is connected between the sliders (46) on the same side. The rear parts of the left and right inner walls of the chassis (1) are slidably connected with a pushing frame (44). Second racks (42) are arranged on the pushing frame (44) and the bottom of the handle (2). Second gears (43) are rotatably arranged in the chassis (1) between the second racks (42). The second gears (43) are meshed with the adjacent second racks (42).

5. An industrial control computer based on Intel technology that is easy to clean and dissipate heat as claimed in claim 4, characterized in that, It further includes a folding cloth (49). The folding cloth (49) is connected between the slider (46) and the inner bottom of the chassis (1).

6. An industrial control computer based on Intel technology that is easy to clean and has good heat dissipation as claimed in claim 1, wherein, A folding cloth (49) is also connected between the first wiping plate (34) and the rear side of the installation frame body (31).

7. An industrial control computer based on Intel technology that is easy to clean and dissipate heat as claimed in claim 4, characterized in that, The sides of the pushing frame (44) and the handle (2) close to the slider (46) are inclined planes sloping outward.

8. An industrial control computer based on Intel technology that is easy to clean and has good heat dissipation as claimed in claim 1, wherein, It further includes a socket cleaning mechanism (5). The socket cleaning mechanism (5) is arranged at the bottom of the chassis (1). The socket cleaning mechanism (5) includes a wedge-shaped plate (51). The wedge-shaped plate (51) is slidably arranged above the rear side of the chassis (1). A cylinder body (52) is arranged at the rear side of the chassis (1) below the wedge-shaped plate (51). A second spring (54) is connected between the cylinder body (52) and the wedge-shaped plate (51). The piston rods (53) are symmetrically arranged on the piston in the cylinder body (52). The piston rods (53) pass through the upper wall of the cylinder body (52) upward and are connected to the wedge-shaped plate (51). A one-way pipe (56) is arranged at the bottom of the cylinder body (52). A row of communicating pipes (55) is arranged at the bottom of the cylinder body (52). The communicating pipes (55) extend forward to the interface of the chassis (1).