Novel workbench device and system
By combining the support unit, platform unit, and pneumatic unit, the problem of existing work platform tables being unsuitable for installing components at different heights is solved, achieving automated height adjustment and cleaning, and improving the applicability and cleaning efficiency of the work platform.
Patent Information
- Application Number
- CN202520087424.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-01-14
AI Technical Summary
The existing work platform table is not suitable for the simultaneous use of components installed at different heights, and requires a lot of time for cleaning.
The system employs a combination of a support unit, a platform unit, and a pneumatic unit. The pneumatic unit drives the platform unit to reciprocate vertically, while the position detection unit and pressure detection unit provide precise control. Automatic cleaning is achieved through a drive unit and a cleaning unit.
This allows for the simultaneous use of components at different heights, improving connectivity, reducing cleaning time, and ensuring the cleanliness of the work platform.
Smart Images

Figure CN223834491U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of workbench, and in particular to a novel workbench device and system. Background Technology
[0002] Work platforms for valves or other components are primarily used for the installation, commissioning, and testing of valves and components. They provide installers with a stable working surface, facilitating precise assembly of valves and components, such as ensuring installation accuracy when installing valve stems, valve discs, and other parts. Simultaneously, they provide a suitable space for testing work, such as performing tests on valve sealing, opening, and closing performance.
[0003] Most existing work platforms are single-piece, flat, liftable tables, which are not suitable for simultaneous use of components that require installation at different heights. Furthermore, after each use, operators usually have to wipe and clean the work platform themselves, which takes a lot of time. If operators do not clean the work platform for a long time, it may affect the cleanliness of the work platform for the next use.
[0004] Currently, no effective solutions have been proposed for the problems of using components that are not suitable for installation at different heights at the same time and the need for a lot of time to clean them. Utility Model Content
[0005] The purpose of this utility model is to address the shortcomings of existing technologies by providing a new type of workbench device and system, in order to solve the problems of unsuitability for simultaneous use of components installed at different heights and the excessive time required for cleaning in related technologies.
[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0007] Firstly, a novel workbench device is provided, comprising:
[0008] A support unit, wherein the support unit is disposed on a horizontal plane;
[0009] A plurality of platform units are movably disposed at the top of the support unit for reciprocating motion in the vertical direction;
[0010] A plurality of pneumatic units are distributed at the bottom of the support unit. The output ends of the plurality of pneumatic units are respectively connected to the corresponding platform units. The air inlet of the pneumatic units is connected to a gas conveying device, which is used to drive the corresponding platform units to reciprocate in the vertical direction.
[0011] A plurality of position detection units are respectively disposed at the bottom end of the corresponding platform unit, for detecting the distance between the platform unit and the support unit;
[0012] A plurality of pressure detection units are respectively disposed in the corresponding pneumatic unit for detecting the internal air pressure state of the pneumatic unit;
[0013] The control unit is disposed on the support unit and is connected to a plurality of position detection units, a plurality of pressure detection units, and a gas delivery device.
[0014] In some embodiments, the support unit includes:
[0015] A first platform element is disposed on a horizontal plane, and a plurality of pneumatic units are disposed at the bottom end of the first platform element;
[0016] A plurality of mounting elements are distributed on the top of the first platform element, and the platform unit is disposed on the inner side of the mounting elements;
[0017] A plurality of first support elements are distributed at the bottom end of the first platform element and are respectively connected to the first platform element to support the first platform element.
[0018] In some embodiments, the support unit further includes:
[0019] The second platform element is disposed at the bottom end of the first platform element, and the control unit is disposed at the top end of the second platform element, and is respectively connected to a plurality of the first support elements.
[0020] In some embodiments, the pneumatic unit includes:
[0021] A pneumatic component is disposed at the bottom end of the support unit, and the output end of the pneumatic component is connected to the corresponding platform unit to drive the platform unit to reciprocate in the vertical direction.
[0022] A conveying element is disposed at the bottom end of the support unit. The inner side of the conveying element is provided with a corresponding pressure detection unit, which is connected to the air inlet and gas conveying device of the corresponding pneumatic element, respectively, for conveying air source to the pneumatic element.
[0023] In some embodiments, the control unit includes:
[0024] A control element is disposed at the bottom end of the support unit and is connected to the position detection unit, the pressure detection unit, and the gas delivery device, respectively.
[0025] A display element is disposed at the top of the support unit and connected to the control element for displaying data;
[0026] A power supply element is disposed at the bottom end of the support unit and connected to the control element for supplying power.
[0027] Furthermore, the new workbench device also includes:
[0028] A drive unit is disposed on the side end of the support unit and connected to the support unit;
[0029] A cleaning unit is disposed above the support unit and the plurality of platform units and connected to the drive unit, and is used to reciprocate in the horizontal direction under the action of the drive unit to clean the support unit and the plurality of platform units.
[0030] In some embodiments, the driving unit includes:
[0031] The second support element is disposed on the side end of the support unit and connected to the support unit;
[0032] The third support element is disposed on the side of the support unit and is symmetrically arranged with the second support element, and is connected to the support unit;
[0033] A through-slot element, wherein the through-slot element is disposed through the third support element;
[0034] A rotating element, which is rotatably connected to the second support element;
[0035] A driving element is disposed on the third support element, and the output end of the driving element passes through the through slot element and is connected to the rotating element to drive the rotating element to rotate.
[0036] A movable element is movably disposed on the rotating element and connected to the cleaning unit, for driving the cleaning unit to reciprocate in the horizontal direction;
[0037] A connecting element is provided, which passes through the moving element and is rotatably connected to the rotating element, and is used to drive the moving element to reciprocate in the horizontal direction under the action of the rotating element.
[0038] In some embodiments, the drive unit further includes:
[0039] At least one first sliding element is disposed between the second support element and the third support element, and is connected to the second support element and the third support element;
[0040] At least one second sliding element is provided, which passes through the moving element and is slidably connected to the first sliding element.
[0041] In some embodiments, the cleaning unit includes:
[0042] A fourth support element is disposed above the support unit and the plurality of platform units and connected to the drive unit, and is used to reciprocate in the horizontal direction under the action of the drive unit.
[0043] A cleaning element, detachably disposed on the fourth support element, is used to reciprocate horizontally under the action of the fourth support element to clean the support unit and the plurality of platform units.
[0044] Secondly, a workbench system is provided, comprising:
[0045] The novel workbench device as described in the first aspect;
[0046] A gas delivery device is connected to the pneumatic unit of the novel workbench device and to the control unit, for delivering a gas source to the pneumatic unit.
[0047] The present invention adopts the above technical solution and has the following technical effects compared with the prior art:
[0048] This utility model discloses a novel workbench device and system. By utilizing the coordinated use of a support unit, a platform unit, and a pneumatic unit, the platform units can be raised and lowered, allowing for the simultaneous use of components requiring different installation heights and improving overall synergy. The coordinated use of a position detection unit, a pressure detection unit, and a control unit detects the lifting height of the platform units and the air pressure within the pneumatic units, enabling more accurate control of each pneumatic unit. The coordinated use of a drive unit and a cleaning unit cleans the support unit and platform units, replacing manual operation, reducing time investment, and ensuring the cleanliness of the workbench after each use. Attached Figure Description
[0049] Figure 1 This is a three-dimensional structural schematic diagram of the novel workbench device according to an embodiment of the present utility model;
[0050] Figure 2This is a circuit connection block diagram of the novel workbench device according to an embodiment of the present utility model;
[0051] Figure 3 This is a three-dimensional structural schematic diagram of the support unit according to an embodiment of the present utility model;
[0052] Figure 4 This is a three-dimensional structural schematic diagram of the pneumatic unit according to an embodiment of the present utility model;
[0053] Figure 5 This is a circuit connection block diagram of the position detection unit, pressure detection unit, and control unit according to an embodiment of the present utility model;
[0054] Figure 6a This is a three-dimensional structural schematic diagram of the driving unit according to an embodiment of the present utility model;
[0055] Figure 6b This is a partial three-dimensional structural schematic diagram (a) of the driving unit according to an embodiment of the present utility model;
[0056] Figure 6c This is a partial three-dimensional structural schematic diagram (II) of the driving unit according to an embodiment of the present utility model;
[0057] Figure 7 This is a three-dimensional structural diagram of the cleaning unit according to an embodiment of the present utility model;
[0058] Figure 8 This is a structural schematic diagram of a workbench system according to an embodiment of the present utility model.
[0059] The attached figures are labeled as follows: 100, New type of workbench device;
[0060] 110. Support unit; 111. First platform element; 112. Mounting element; 113. First support element; 114. Second platform element;
[0061] 120. Platform Unit;
[0062] 130. Pneumatic unit; 131. Pneumatic component; 132. Conveying component;
[0063] 140. Position detection unit;
[0064] 150. Pressure detection unit;
[0065] 160. Control unit; 161. Control element; 162. Display element; 163. Power supply element;
[0066] 170. Drive unit; 171. Second support element; 172. Third support element; 173. Through slot element; 174. Rotating element; 175. Drive element; 176. Moving element; 177. Connecting element; 178. First sliding element; 179. Second sliding element;
[0067] 180. Cleaning unit; 181. Fourth support element; 182. Cleaning element;
[0068] 200. Gas conveying device. Detailed Implementation
[0069] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0070] It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0071] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, but this is not intended to limit the present invention.
[0072] Example 1
[0073] This embodiment relates to a novel workbench device of the present invention.
[0074] like Figure 1 , Figure 2As shown, a novel workbench device 100 includes a support unit 110, several platform units 120, several pneumatic units 130, several position detection units 140, several pressure detection units 150, and a control unit 160. The support unit 110 is positioned on a horizontal plane; several platform units 120 are movably mounted on the top of the support unit 110 for reciprocating motion in the vertical direction; several pneumatic units 130 are distributed at the bottom of the support unit 110, with their output ends connected to the corresponding platform units 120 and their inlets connected to a gas delivery device to drive the corresponding platform units 120 to reciprocate in the vertical direction; several position detection units 140 are mounted at the bottom of the corresponding platform units 120 for detecting the distance between the platform units 120 and the support unit 110; several pressure detection units 150 are mounted on the corresponding pneumatic units 130 for detecting the internal air pressure of the pneumatic units 130; and a control unit 160 is mounted on the support unit 110 and connected to the position detection units 140, the pressure detection units 150, and the gas delivery device.
[0075] In some embodiments, a plurality of platform units 120 are arranged in a rectangular array. That is, a plurality of platform units 120 are arranged along the length and width directions of the support unit 110.
[0076] In some of these implementations, the platform unit 120 has a rectangular cross-section.
[0077] In some of these embodiments, the platform unit 120 is made of stainless steel.
[0078] In some of these embodiments, platform unit 120 is a working platform.
[0079] The number of pneumatic units 130 matches the number of platform units 120. Generally, the number of pneumatic units 130 is equal to the number of platform units 120. That is, one pneumatic unit 130 is provided for each platform unit 120.
[0080] The number of position detection units 140 matches the number of platform units 120. Generally, the number of position detection units 140 is equal to the number of platform units 120. That is, one position detection unit 140 is provided for each platform unit 120.
[0081] In some embodiments, the position detection unit 140 is fixedly connected to the platform unit 120, including but not limited to bolt connections.
[0082] In some of these embodiments, the position detection unit 140 is a laser interferometer.
[0083] The number of pressure detection units 150 matches the number of pneumatic units 130. Generally, the number of pressure detection units 150 is equal to the number of pneumatic units 130. That is, one pressure detection unit 150 is provided for each pneumatic unit 130.
[0084] In some embodiments, the pressure detection unit 150 is fixedly connected to the pneumatic unit 130, including but not limited to threaded connections.
[0085] In some of these embodiments, the pressure detection unit 150 is a capacitive pressure sensor.
[0086] like Figure 3 As shown, the support unit 110 includes a first platform element 111, a plurality of mounting elements 112, and a plurality of first support elements 113. The first platform element 111 is disposed on a horizontal plane, and a plurality of pneumatic units 130 are disposed at its bottom end. The plurality of mounting elements 112 are distributed at the top end of the first platform element 111, and corresponding platform units 120 are disposed on the inner side of each mounting element 112. The plurality of first support elements 113 are distributed at the bottom end of the first platform element 111 and are respectively connected to the first platform element 111 to support it.
[0087] The cross-section of the first platform element 111 is rectangular.
[0088] In some of these embodiments, the first platform element 111 is made of stainless steel.
[0089] In some of these embodiments, the first platform element 111 is a first platform.
[0090] The cross-section of mounting element 112 is rectangular.
[0091] The dimensions of the mounting element 112 are matched with the dimensions of the first platform element 111. Generally, the length of the mounting element 112 is less than the length of the first platform element 111, the width of the mounting element 112 is less than the width of the first platform element 111, and the height of the mounting element 112 is equal to the height of the first platform element 111.
[0092] The dimensions of mounting element 112 are matched with the dimensions of platform unit 120. Generally, the length of the third platform element is equal to the length of platform unit 120, the width of the third platform element is equal to the width of platform unit 120, and the height of the third platform element is equal to the height of platform unit 120.
[0093] In some embodiments, a plurality of mounting elements 112 are arranged in a rectangular array. That is, a plurality of mounting elements 112 are arranged along the length and width directions of the first platform element 111.
[0094] In some of these embodiments, the mounting element 112 is a mounting slot.
[0095] The cross-section of the first support element 113 is rectangular.
[0096] The dimensions of the first support element 113 are matched with the dimensions of the first platform element 111. Generally, the length of the first support element 113 is less than the length of the first platform element 111, the width of the first support element 113 is less than the width of the first platform element 111, and the height of the first support element 113 is greater than the height of the first platform element 111.
[0097] In some embodiments, a plurality of first support elements 113 are distributed at the four corners of the first platform element 111. That is, at least one first support element 113 is provided at the four corners of the first platform element 111.
[0098] In some embodiments, there are four first support elements 113. The four first support elements 113 are distributed at the four corners of the first platform element 111.
[0099] In some of these embodiments, the first support element 113 is fixedly connected to the first platform element 111, including but not limited to bolted connections.
[0100] In some of these embodiments, the first support element 113 is made of stainless steel.
[0101] In some of these embodiments, the first support element 113 is a support leg.
[0102] Furthermore, the support unit 110 also includes a second platform element 114. The second platform element 114 is disposed at the bottom end of the first platform element 111, and a control unit 160 is disposed at the top end of the second platform element 114, and is respectively connected to a plurality of first support elements 113.
[0103] The cross-section of the second platform element 114 is rectangular.
[0104] The dimensions of the second platform element 114 are matched with the dimensions of the first platform element 111. Generally, the length of the second platform element 114 is less than the length of the first platform element 111, the width of the second platform element 114 is equal to the width of the first platform element 111, and the height of the second platform element 114 is less than the height of the first platform element 111.
[0105] The dimensions of the second platform element 114 are matched with the dimensions of the first support element 113. Generally, the length of the second platform element 114 is greater than the length of the first support element 113, the width of the second platform element 114 is greater than the width of the first support element 113, and the height of the second platform element 114 is less than the height of the first support element 113.
[0106] In some embodiments, the second platform element 114 is fixedly connected to the first support element 113, including but not limited to bolted connections.
[0107] In some of these embodiments, the second platform element 114 is made of stainless steel.
[0108] In some of these embodiments, the second platform element 114 is a second platform.
[0109] like Figure 4 As shown, the pneumatic unit 130 includes a pneumatic element 131 and a conveying element 132. The pneumatic element 131 is located at the bottom of the support unit 110, and its output end is connected to the corresponding platform unit 120, driving the platform unit 120 to reciprocate vertically. The conveying element 132 is located at the bottom of the support unit 110, and its inner side is equipped with a corresponding pressure detection unit 150, which is connected to the air inlet and gas conveying device of the corresponding pneumatic element 131, respectively, for conveying air to the pneumatic element 131.
[0110] Specifically, the pneumatic element 131 is disposed at the bottom end of the first platform element 111, and the output end of the pneumatic element 131 is connected to the corresponding platform unit 120.
[0111] In some embodiments, the pneumatic component 131 is fixedly connected to the first platform component 111 and the platform unit 120, including but not limited to bolt connections.
[0112] In some of these embodiments, the pneumatic element 131 is a cylinder.
[0113] In some embodiments, the conveying element 132 is fixedly connected to the pneumatic element 131, including but not limited to quick-connect couplings.
[0114] In some of these embodiments, the conveying element 132 is made of a flexible material.
[0115] In some of these embodiments, the delivery element 132 is a gas delivery hose.
[0116] like Figure 5As shown, the control unit 160 includes a control element 161, a display element 162, and a power supply element 163. The control element 161 is located at the bottom of the support unit 110 and is connected to the position detection unit 140, the pressure detection unit 150, and the gas delivery device. The display element 162 is located at the top of the support unit 110 and is connected to the control element 161 for displaying data. The power supply element 163 is located at the bottom of the support unit 110 and is connected to the control element 161 for supplying power.
[0117] Specifically, the control element 161 is disposed at the top of the second platform element 114; the display element 162 is disposed at the top of the first platform element 111 and connected to the first platform element 111; and the power supply element 163 is disposed at the top of the second platform element 114 and connected to the second platform element 114.
[0118] In some of these embodiments, the control element 161 is a circuit board.
[0119] In some embodiments, the display element 162 is fixedly connected to the first platform element 111, including but not limited to bolt connections.
[0120] In some of these embodiments, the display element 162 is made of LCD material.
[0121] In some embodiments, the power supply element 163 includes, but is not limited to, a battery that can be charged.
[0122] Furthermore, such as Figure 1 As shown, the novel workbench device 100 also includes a drive unit 170 and a cleaning unit 180. The drive unit 170 is disposed on the side of the support unit 110 and connected to the support unit 110; the cleaning unit 180 is disposed above the support unit 110 and several platform units 120 and connected to the drive unit 170, and is used to reciprocate horizontally under the action of the drive unit 170 to clean the support unit 110 and several platform units 120.
[0123] like Figure 6a , Figure 6b , Figure 6cAs shown, the drive unit 170 includes a second support element 171, a third support element 172, a through slot element 173, a rotating element 174, a drive element 175, a moving element 176, and a connecting element 177. The second support element 171 is disposed on the side end of the support unit 110 and connected to the support unit 110; the third support element 172 is disposed on the side of the support unit 110 and is symmetrically arranged with the second support element 171, and is connected to the support unit 110; the through slot element 173 is disposed through the third support element 172; the rotating element 174 is rotatably connected to the second support element 171; the driving element 175 is disposed on the third support element 172, and the output end of the driving element 175 passes through the through slot element 173 and is connected to the rotating element 174, for driving the rotating element 174 to rotate; the moving element 176 is movably disposed on the rotating element 174 and connected to the cleaning unit 180, for driving the cleaning unit 180 to reciprocate in the horizontal direction; the connecting element 177 is disposed through the moving element 176 and is rotatably connected to the rotating element 174, for driving the moving element 176 to reciprocate in the horizontal direction under the action of the rotating element 174.
[0124] Specifically, the second support element 171 is disposed at the rear end of the first platform element 111 and is connected to the first platform element 111; the third support element 172 is disposed at the rear end of the first platform element 111 and is connected to the first platform element 111.
[0125] The cross-section of the second support element 171 is rectangular.
[0126] The dimensions of the second support element 171 are matched with the dimensions of the first platform element 111. Generally, the length of the second support element 171 is less than the width of the first platform element 111, the width of the second support element 171 is less than the length of the first platform element 111, and the height of the second support element 171 is greater than the height of the first platform element 111.
[0127] In some embodiments, the second support element 171 is fixedly connected to the first platform element 111, including but not limited to bolted connections.
[0128] In some of these embodiments, the second support element 171 is made of stainless steel.
[0129] In some of these embodiments, the second support element 171 is the first support plate.
[0130] The cross-section of the third support element 172 is rectangular.
[0131] The dimensions of the third support element 172 are matched with the dimensions of the first platform element 111. Generally, the length of the third support element 172 is less than the width of the first platform element 111, the width of the third support element 172 is less than the length of the first platform element 111, and the height of the third support element 172 is greater than the height of the first platform element 111.
[0132] The dimensions of the third support element 172 are matched with the dimensions of the second support element 171. Generally, the length of the third support element 172 is equal to the length of the second support element 171, the width of the third support element 172 is equal to the width of the second support element 171, and the height of the third support element 172 is equal to the height of the second support element 171.
[0133] In some embodiments, the third support element 172 is fixedly connected to the first platform element 111, including but not limited to bolted connections.
[0134] In some of these embodiments, the third support element 172 is made of stainless steel.
[0135] In some of these embodiments, the third support element 172 is a second support plate.
[0136] The cross-section of the through-slot element 173 is circular.
[0137] The dimensions of the through-slot element 173 are matched with the dimensions of the third support element 172. Generally, the radial dimension of the through-slot element 173 is smaller than the length and height of the third support element 172, and the axial dimension of the through-slot element 173 is equal to the width of the third support element 172.
[0138] In some of these embodiments, the slot element 173 is a through slot.
[0139] The cross-section of the rotating element 174 is circular.
[0140] The dimensions of the rotating element 174 are matched with the dimensions of the slotted element 173. Generally, the radial dimension of the rotating element 174 is equal to the radial dimension of the slotted element 173, and the axial dimension of the rotating element 174 is greater than the axial dimension of the slotted element 173.
[0141] The dimensions of the rotating element 174 are matched with the dimensions of the second support element 171. Generally, the radial dimension of the rotating element 174 is smaller than the length and height of the second support element 171.
[0142] The axial dimension of the rotating element 174 is equal to the distance between the second support element 171 and the third support element 172.
[0143] The rotating element 174 and the second support element 171 are rotatably connected without separation. For example, the rotating element 174 and the second support element 171 are connected via a bearing housing.
[0144] In some of these embodiments, the rotating element 174 is made of stainless steel.
[0145] In some of these embodiments, the rotating element 174 is a lead screw.
[0146] In some embodiments, the drive element 175 is fixedly connected to the second support element 171 and the rotating element 174, including but not limited to bolt connections.
[0147] In some of these embodiments, the drive element 175 is a servo motor.
[0148] The cross-section of the movable element 176 is rectangular.
[0149] The dimensions of the movable element 176 are matched with the dimensions of the rotating element 174. Generally, the width and height of the movable element 176 are greater than the radial dimension of the rotating element 174, and the length of the movable element 176 is less than the axial dimension of the rotating element 174.
[0150] The dimensions of the movable element 176 are matched with the dimensions of the second support element 171 (third support element 172). Generally, the length of the movable element 176 is greater than the width of the second support element 171 (third support element 172), the width of the movable element 176 is less than the length of the second support element 171 (third support element 172), and the height of the movable element 176 is greater than the height of the second support element 171 (third support element 172).
[0151] In some embodiments, the movable element 176 is fixedly connected to the second support element 171 and the third support element 172, respectively, including but not limited to bolt connections.
[0152] In some of these embodiments, the movable element 176 is made of stainless steel.
[0153] In some of these embodiments, the moving element 176 is a moving block.
[0154] The cross-section of the connecting element 177 is circular.
[0155] The dimensions of the connecting element 177 are matched with the dimensions of the moving element 176. Generally, the radial dimension of the connecting element 177 is smaller than the length and height of the moving element 176, and the axial dimension of the connecting element 177 is equal to the width of the moving element 176.
[0156] The dimensions of the connecting element 177 are matched with the dimensions of the rotating element 174. Generally, the radial dimension of the connecting element 177 is equal to the radial dimension of the rotating element 174.
[0157] In some of these embodiments, the connecting element 177 is a threaded hole.
[0158] Furthermore, the drive unit 170 also includes at least one first sliding element 178 and at least one second sliding element 179. The first sliding element 178 is disposed between the second support element 171 and the third support element 172 and is connected to the second support element 171 and the third support element 172; the second sliding element 179 is disposed through the moving element 176 and is slidably connected to the first sliding element 178.
[0159] The cross-section of the first sliding element 178 is circular.
[0160] The dimensions of the first sliding element 178 are matched with the dimensions of the second support element 171 (third support element 172). Generally, the radial dimension of the first sliding element 178 is smaller than the length and height of the second support element 171 (third support element 172), and the axial dimension of the first sliding element 178 is larger than the width of the second support element 171 (third support element 172).
[0161] The axial dimension of the first sliding element 178 is equal to the distance between the second support element 171 and the third support element 172.
[0162] In some embodiments, there are multiple first sliding elements 178. The multiple first sliding elements 178 are spaced apart along the height direction of the second support element 171 (third support element 172).
[0163] In some embodiments, there are two first sliding elements 178. One first sliding element 178 is disposed above one side of the second support element 171 (third support element 172), and another first sliding element 178 is disposed below one side of the second support element 171 (third support element 172).
[0164] In some embodiments, the first sliding element 178 is fixedly connected to the second support element 171 and the third support element 172, including but not limited to bolt connections.
[0165] In some of these embodiments, the first sliding element 178 is made of stainless steel.
[0166] In some of these embodiments, the first sliding element 178 is a sliding rod.
[0167] The cross-section of the second sliding element 179 is circular.
[0168] The dimensions of the second sliding element 179 are matched with the dimensions of the moving element 176. Generally, the radial dimension of the second sliding element 179 is smaller than the length and height of the moving element 176, and the axial dimension of the second sliding element 179 is equal to the width of the moving element 176.
[0169] The dimensions of the second sliding element 179 are matched with the dimensions of the first sliding element 178. Generally, the radial dimension of the second sliding element 179 is equal to the radial dimension of the first sliding element 178, and the axial dimension of the second sliding element 179 is smaller than the axial dimension of the first sliding element 178.
[0170] The number of second sliding elements 179 matches the number of first sliding elements 178. Generally, the number of second sliding elements 179 is equal to the number of first sliding elements 178.
[0171] In some embodiments, there are multiple second sliding elements 179. These multiple second sliding elements 179 are spaced apart along the height direction of the moving element 176.
[0172] In some embodiments, there are two second sliding elements 179. One second sliding element 179 is disposed above one side of the moving element 176, and another second sliding element 179 is disposed below one side of the moving element 176.
[0173] In some of these embodiments, the second sliding element 179 is a sliding hole.
[0174] like Figure 7 As shown, the cleaning unit 180 includes a fourth support element 181 and a cleaning element 182. The fourth support element 181 is disposed above the support unit 110 and the plurality of platform units 120, and is connected to the drive unit 170 for reciprocating motion in the horizontal direction under the action of the drive unit 170. The cleaning element 182 is detachably disposed on the fourth support element 181 for reciprocating motion in the horizontal direction under the action of the fourth support element 181 to clean the support unit 110 and the plurality of platform units 120.
[0175] Specifically, the fourth support element 181 is disposed at the end of the movable element 176 and is located above the first platform element 111.
[0176] The cross-section of the fourth support element 181 is rectangular.
[0177] The dimensions of the fourth support element 181 are matched with the dimensions of the movable element 176. Generally, the length of the fourth support element 181 is greater than the width of the movable element 176, the width of the fourth support element 181 is equal to the length of the movable element 176, and the height of the fourth support element 181 is less than the height of the movable element 176.
[0178] The dimensions of the fourth support element 181 are matched with the dimensions of the first platform element 111. Generally, the length of the fourth support element 181 is greater than the width of the first platform element 111, the width of the fourth support element 181 is less than the length of the first platform element 111, and the height of the fourth support element 181 is greater than the height of the first platform element 111.
[0179] In some embodiments, the fourth support element 181 is fixedly connected to the movable element 176, including but not limited to bolted connections.
[0180] In some of these embodiments, the fourth support element 181 is made of stainless steel.
[0181] In some of these embodiments, the fourth support element 181 is a mounting bracket.
[0182] The cross-section of the cleaning element 182 is rectangular.
[0183] The dimensions of the cleaning element 182 are matched with the dimensions of the fourth support element 181. Generally, the length of the cleaning element 182 is equal to the length of the fourth support element 181, the width of the cleaning element 182 is not less than the width of the fourth support element 181, and the height of the cleaning element 182 is less than the height of the fourth support element 181.
[0184] In some embodiments, the cleaning element 182 and the fourth support element 181 are detachably connected, including but not limited to adhesive bonding.
[0185] In some of these embodiments, the cleaning element 182 is made of polyester fiber.
[0186] In some of these embodiments, the cleaning element 182 is a cleaning cloth.
[0187] The method of using this utility model is as follows:
[0188] (I) Adjustment Operation
[0189] Connect the conveying element 132 to the gas conveying device;
[0190] The gas delivery device is activated by the control element 161, which delivers the gas source to the pneumatic element 131 through the delivery element 132.
[0191] The platform unit 120 is driven to move vertically upward by the pneumatic component 131;
[0192] During the process, the position detection element detects the distance between the platform unit 120 and the first platform element 111;
[0193] The pressure detection element detects the air pressure status in the delivery element 132.
[0194] (II) Cleaning Operations
[0195] The drive element 175 is activated by the control element 161, so that its output end drives the rotating element 174 to rotate along the circumference of the connecting element 177.
[0196] The rotating element 174 drives the moving element 176 to move along the axial direction of the first sliding element 178;
[0197] The moving element 176 drives the cleaning element 182 to reciprocate along the surfaces of the first platform element 111 and the second platform element 114 via the fourth support element 181, thereby performing cleaning operations.
[0198] The advantages of this invention are as follows: by utilizing the cooperation between the support unit, platform unit, and pneumatic unit, the platform units can be raised and lowered, thereby meeting the simultaneous use of components that require installation at different heights and improving overall linkage; by utilizing the cooperation between the position detection unit, pressure detection unit, and control unit, the lifting height of the platform units and the air pressure status within the pneumatic units can be detected, allowing for more accurate control of each pneumatic unit; and by utilizing the cooperation between the drive unit and cleaning unit, the support unit and platform units can be cleaned, replacing manual operation, reducing time investment, and ensuring the cleanliness of the work platform table after each use.
[0199] Example 2
[0200] This embodiment relates to the workbench system of this utility model.
[0201] like Figure 8 As shown, a workbench system includes a novel workbench device 100 as described in Embodiment 1 and a gas delivery device 200. The gas delivery device 200 is connected to the pneumatic unit 130 of the novel workbench device 100 and to a control unit 160, and is used to deliver a gas source to the pneumatic unit 130.
[0202] Specifically, the gas delivery device 200 is connected to the delivery element 132 and to the control element 161.
[0203] In some of these embodiments, the gas delivery device 200 is a compressor.
[0204] The above description is only a preferred embodiment of the present utility model and does not limit the implementation method and protection scope of the present utility model. Those skilled in the art should realize that all solutions obtained by equivalent substitutions and obvious changes made based on the description and illustrations of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A novel workbench device, characterized in that, include: A support unit (110) is disposed on a horizontal plane; A plurality of platform units (120) are movably disposed on the top of the support unit (110) for reciprocating motion in the vertical direction; A plurality of pneumatic units (130) are distributed at the bottom end of the support unit (110). The output ends of the plurality of pneumatic units (130) are respectively connected to the corresponding platform unit (120). The air inlet of the pneumatic unit (130) is connected to a gas conveying device and is used to drive the corresponding platform unit (120) to reciprocate in the vertical direction. A plurality of position detection units (140) are respectively disposed at the bottom end of the corresponding platform unit (120) for detecting the distance between the platform unit (120) and the support unit (110); A plurality of pressure detection units (150) are respectively disposed on the corresponding pneumatic unit (130) for detecting the internal air pressure state of the pneumatic unit (130); A control unit (160) is disposed on the support unit (110) and is connected to a plurality of position detection units (140), a plurality of pressure detection units (150), and a gas delivery device.
2. The novel workbench device according to claim 1, characterized in that, The support unit (110) includes: A first platform element (111) is disposed on a horizontal plane, and a plurality of the pneumatic units (130) are disposed at the bottom end of the first platform element (111). A plurality of mounting elements (112) are distributed on the top of the first platform element (111), and the platform unit (120) is provided on the inner side of the mounting elements (112). A plurality of first support elements (113) are distributed at the bottom end of the first platform element (111) and are respectively connected to the first platform element (111) to support the first platform element (111).
3. The novel workbench device according to claim 2, characterized in that, The support unit (110) also includes: The second platform element (114) is disposed at the bottom end of the first platform element (111), and the control unit (160) is disposed at the top end of the second platform element (114), and is respectively connected to a plurality of the first support elements (113).
4. The novel workbench device according to claim 1, characterized in that, The pneumatic unit (130) includes: A pneumatic component (131) is disposed at the bottom end of the support unit (110). The output end of the pneumatic component (131) is connected to the corresponding platform unit (120) and is used to drive the platform unit (120) to reciprocate in the vertical direction. A conveying element (132) is disposed at the bottom end of the support unit (110). The inner side of the conveying element (132) is provided with a corresponding pressure detection unit (150), which is connected to the air inlet and gas conveying device of the corresponding pneumatic element (131) respectively, for conveying the air source to the pneumatic element (131).
5. The novel workbench device according to claim 1, characterized in that, The control unit (160) includes: A control element (161) is disposed at the bottom end of the support unit (110) and is connected to the position detection unit (140), the pressure detection unit (150), and the gas delivery device, respectively. Display element (162), which is disposed at the top of the support unit (110) and connected to the control element (161), is used to display data; A power supply element (163) is disposed at the bottom end of the support unit (110) and connected to the control element (161) for supplying power.
6. The novel workbench device according to any one of claims 1 to 5, characterized in that, Also includes: A drive unit (170) is disposed on the side end of the support unit (110) and connected to the support unit (110); A cleaning unit (180) is disposed above the support unit (110) and several platform units (120) and connected to the drive unit (170). The cleaning unit (180) is used to reciprocate in the horizontal direction under the action of the drive unit (170) to clean the support unit (110) and several platform units (120).
7. The novel workbench device according to claim 6, characterized in that, The drive unit (170) includes: The second support element (171) is disposed on the side end of the support unit (110) and connected to the support unit (110); The third support element (172) is disposed on the side of the support unit (110) and is symmetrically arranged with the second support element (171), and is connected to the support unit (110). A through-slot element (173) is provided, which penetrates the third support element (172); A rotating element (174) is rotatably connected to the second support element (171); A driving element (175) is disposed on the third support element (172). The output end of the driving element (175) passes through the through slot element (173) and is connected to the rotating element (174) to drive the rotating element (174) to rotate. A movable element (176) is movably disposed on the rotating element (174) and connected to the cleaning unit (180) for driving the cleaning unit (180) to reciprocate in the horizontal direction; A connecting element (177) is provided through the moving element (176) and is rotatably connected to the rotating element (174) for driving the moving element (176) to reciprocate in the horizontal direction under the action of the rotating element (174).
8. The novel workbench device according to claim 7, characterized in that, The drive unit (170) further includes: At least one first sliding element (178) is disposed between the second support element (171) and the third support element (172) and is connected to the second support element (171) and the third support element (172); At least one second sliding element (179) is disposed through the moving element (176) and is slidably connected to the first sliding element (178).
9. The novel workbench device according to claim 6, characterized in that, The cleaning unit (180) includes: The fourth support element (181) is disposed above the support unit (110) and a plurality of platform units (120) and is connected to the drive unit (170) for reciprocating in the horizontal direction under the action of the drive unit (170). A cleaning element (182) is detachably disposed on the fourth support element (181) and is used to reciprocate in the horizontal direction under the action of the fourth support element (181) to clean the support unit (110) and the plurality of platform units (120).
10. A workbench system, characterized in that, include: The novel worktable device (100) as described in any one of claims 1 to 9; A gas delivery device (200) is connected to the pneumatic unit (130) of the novel workbench device (100) and to the control unit (160) for delivering a gas source to the pneumatic unit (130).