Platform type thicknessing machine
By designing a table-type planer with an integrated structure of foldable support legs and base, the problem of low mobility of existing planers has been solved, achieving high efficiency and stability in use, as well as convenient mobility, thus improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- NANJING CHERVON IND
- Filing Date
- 2025-07-17
- Publication Date
- 2026-04-28
AI Technical Summary
Existing planers have low mobility, are heavy, and require separate worktables or supports when switching usage scenarios, resulting in poor mobility and a poor user experience.
A table-type planer was designed with an integrated structure of foldable support legs and base. The support legs are rotatable and can be supported, stored, and moved through fixing and unlocking mechanisms. It is equipped with height adjustment components and extension placement components to adapt to different usage scenarios.
It improves the mobility and stability of the planer, enhances storage and mobility, and reduces labor intensity and costs.
Smart Images

Figure CN121928642A_ABST
Abstract
Description
Technical Field
[0001] This application relates to an electric device, specifically a table-type planer. Background Technology
[0002] One type of planer in the related technology has both indoor and outdoor usage scenarios. When using the planer, a workbench or stand is required for support to raise the planer to a suitable operating height, especially in indoor usage scenarios where the planer is fixed in a specific position by the workbench or stand.
[0003] When switching between different use scenarios for the planer, the workbench or support also needs to be moved. Since the existing planers and workbench / support are separate units, the efficiency of movement is low. In addition, the planer is quite heavy, weighing up to 30kg, requiring considerable space for installation. Furthermore, the planer requires dust collection during use, further complicating its mobility and making it inconvenient and unpleasant for users.
[0004] This section provides background information related to this application, which is not necessarily prior art. Summary of the Invention
[0005] One object of this application is to solve or at least alleviate some or all of the aforementioned problems. To this end, one object of this application is to provide a table-type planer that is not only foldable and has support functions, but is also easy to move.
[0006] To achieve the above objectives, this application adopts the following technical solution: A table-type planer includes: a planer body, including a planer housing, with a planing chamber formed inside the planer housing; a power unit for driving the planer body to plan; a height adjustment unit disposed on the upper part of the planer body to adjust the height of the planing chamber; and extension placement units disposed on both sides of the planer body. The table-type planer further includes: a base for supporting the planer body, the base being disposed on the lower part of the planer body, and having a plurality of mounting portions formed on the base; and a plurality of support legs, each of which is mounted in one of the mounting portions and is rotatable relative to the base; wherein, among the plurality of support legs, at least one support leg has a rotation angle greater than or equal to 0° and less than or equal to 180°.
[0007] In some embodiments, the table-type planer further includes a fixing member that securely connects the support leg and the mounting part.
[0008] In some embodiments, the support leg rotates about the fixing member.
[0009] In some embodiments, the mounting section includes a first baffle, and the table-type planer further includes a connector connected to the support leg. The first baffle is provided with at least one mating part that mates with the connector.
[0010] In some embodiments, when the connector engages with the mating part, the support leg remains fixed in the mounting part; when the connector moves away from the mating part, the support leg can rotate relative to the base.
[0011] In some embodiments, the support leg has a storage position at the bottom of the base and a support position supporting the base; when the support leg is in the storage position or the support position, the connector engages with the mating part.
[0012] In some embodiments, the table-type planer further includes an upper unlocking mechanism, which includes a first guide member and a second guide member. The first guide member has a first guide hole coaxially arranged with the fixing member, and the second guide member has a second guide hole coaxially arranged with the connecting member.
[0013] In some embodiments, the upper unlocking mechanism further includes an upper wrench and a first pull rope. The upper wrench is rotatably mounted on the base. One end of the first pull rope is connected to the upper wrench, and the other end passes through the first guide hole and the second guide hole in sequence to connect to the connector. Rotation of the upper wrench can drive the connector away from the mating part.
[0014] In some embodiments, the table-type planer further includes a lower unlocking mechanism, which includes a lower pedal and a third guide member. The third guide member has a third guide hole coaxially arranged with the connector, and the lower pedal is rotatably mounted on the support leg.
[0015] In some embodiments, the lower unlocking mechanism further includes a second pull rope, one end of which is connected to the lower pedal, and the other end extends upward and passes through the third guide hole and the connector. Rotation of the lower pedal can drive the connector away from the mating part.
[0016] In some embodiments, the mounting portion includes a fixing groove, and the table-type planer further includes a toggle unlocking mechanism connected to the support leg. The toggle unlocking mechanism includes a toggle and a locking member. Rotating the toggle can drive the locking member to slide in the fixing groove. In some embodiments, the table-type planer further includes at least two rollers mounted on the same side of the base.
[0017] In some embodiments, the support leg has a storage location at the bottom of the base, and when the support leg is in the storage location on the same side as at least two rollers, the rotation of the rollers causes the table-type planer to move.
[0018] In some embodiments, the support leg is a retractable support leg.
[0019] In some embodiments, an anti-slip element is provided on the side of the support leg away from the mounting portion.
[0020] In some embodiments, a table-type planer includes: a planer body including a planer housing, the interior of which a planing chamber is formed; a power component for driving the planer body to plan; a height adjustment component disposed on the upper part of the planer body to adjust the height of the planing chamber; and extension placement components disposed on both sides of the planer body. The table-type planer further includes: a base for supporting the planer body, disposed on the lower part of the planer body; and a plurality of support legs mounted on the base and rotatable relative to the base. The support legs have handle positions away from the base, and when at least one of the support legs rotates to the handle position, the horizontal projections of the support leg at the handle position and the base in the horizontal plane do not overlap.
[0021] In some embodiments, the table-type planer further includes a fixing member and a connecting member. The fixing member is used to fix the support leg and the base. The support leg rotates around the fixing member. The connecting member is connected to the support leg. The base is provided with at least one mating part that mates with the connecting member.
[0022] In some embodiments, the table-type planer further includes a plurality of mounting portions disposed on the base for mounting support legs on the base; the mounting portion includes at least one fixing hole and a fixing groove communicating with the fixing hole.
[0023] In some embodiments, the table-type planer further includes a toggle unlocking mechanism connected to the support leg, and the mounting part installs the toggle unlocking mechanism on the base; the toggle unlocking mechanism includes a snap-fit element that cooperates with a fixing hole or fixing groove.
[0024] In some embodiments, when the snap-fit element engages with the fixing hole, the support leg is fixed in place; when the snap-fit element engages with the fixing groove, the support leg is rotatable relative to the base.
[0025] The advantages of this application are: The table-type planer provided in this application has a built-in rotatable support leg. The integrated design of the support leg and the base improves the mobility of the table-type planer. The support leg can rotate relative to the base, so that the support leg can be folded for storage or moved, improving storage and mobility. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of a table-type planer in its stowed state.
[0027] Figure 2 This is a schematic diagram of a table-type planer in transport mode.
[0028] Figure 3 yes Figure 2 Side view of the structure shown.
[0029] Figure 4 This is a schematic diagram of the base and support legs of a table-type planer in a supported state.
[0030] Figure 5 This is a schematic diagram of the base of a table-type planer.
[0031] Figure 6 This is a schematic diagram of the base of a table-type planer from another perspective.
[0032] Figure 7 yes Figure 4 A schematic diagram of the structure shown from another perspective.
[0033] Figure 8 yes Figure 7 Enlarged view of section A.
[0034] Figure 9 This is a schematic diagram of the support legs of a table-type planer.
[0035] Figure 10 This is a schematic diagram of a table-type planer with an upper unlocking mechanism.
[0036] Figure 11 yes Figure 10 Enlarged view of section B.
[0037] Figure 12 This is a schematic diagram of a table-type planer with a lower unlocking mechanism.
[0038] Figure 13 This is a schematic diagram of a table-type planer with a toggle unlocking mechanism.
[0039] Figure 14 yes Figure 13 A 3D view of the center lever unlocking mechanism.
[0040] Figure 15 yes Figure 13 Cross-sectional view of the central toggle unlocking mechanism.
[0041] Figure 16 yes Figure 13 A schematic diagram of the locking component in the center lever unlocking mechanism being engaged with the fixing hole.
[0042] Figure 17 yes Figure 13 A schematic diagram of the locking element in the center lever unlocking mechanism, away from the fixing hole.
[0043] Figure 18a This is a schematic diagram of a support leg including a first adjusting member and a second adjusting member in one embodiment.
[0044] Figure 18b yes Figure 18aThis is a diagram showing the corresponding support leg not being extended to the locked position.
[0045] Figure 19a yes Figure 18a A schematic diagram showing how the first and second adjusting components cause the support leg to be in a locked, stretched state.
[0046] Figure 19b yes Figure 19a A diagram showing the corresponding support leg in its extended and locked state.
[0047] 100. Planer body; 101. Planer housing; 102. Planer chamber; 103. Handle; 210. Power unit; 220. Height adjustment unit; 200. Extension placement component; 201. Extension plate; 300. Base; 310. Mounting part; 311. First baffle; 312. Mating part; 313. First pivot hole; 314. Second baffle; 315. Fixing hole; 316. Fixing groove; 400. Support leg; 401. Anti-slip component; 402. First support rod; 403. Second support rod; 410. Operating component; 420. First adjusting component; 421. First protrusion; 422. Second protrusion; 430. Second adjusting component; 431. Limiting block; 432. Limiting block rotation shaft; 433. Elastic component; 4311. Limiting protrusion; 500. Fastener; 501. First fastener; 502. Second fastener; 503. Third fastener; 600. Connector; 700. Roller; 800. Upper unlocking mechanism; 801. Upper wrench; 802. First pull rope; 803. First guide component; 804. Second guide component; 900. Lower unlocking mechanism; 901. Lower pedal; 902. Second pull rope; 903. Third guide component; 910. Toggle unlocking mechanism; 911. Housing; 9111. Shaft hole; 912. Toggle; 9121. Toggle surface; 913. Toggle shaft; 914. Fourth guide member; 9141. Guide surface; 9142. Guide shaft; 915. Elastic member; 916. Snap-fit member; 917. Connecting hole. Detailed Implementation
[0048] Before explaining any implementation of this application in detail, it should be understood that this application is not limited to its application to the structural details and component arrangements set forth in the following description or shown in the above drawings.
[0049] In this application, the terms "comprising," "including," "having," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.
[0050] In this application, the term "and / or" describes the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent three cases: A existing alone, A and B existing simultaneously, and B existing alone. Additionally, the character " / " in this application generally indicates that the preceding and following related objects have an "and / or" relationship.
[0051] In this application, the terms "connection," "combination," "coupling," and "installation" can refer to direct connection, combination, coupling, or installation, or indirect connection, combination, coupling, or installation. For example, a direct connection refers to two parts or components being connected together without the need for an intermediary, while an indirect connection refers to two parts or components each being connected to at least one intermediary, with the connection achieved through the intermediary. Furthermore, "connection" and "coupling" are not limited to physical or mechanical connections or couplings, but can also include electrical connections or couplings.
[0052] In this application, those skilled in the art will understand that relative terms (e.g., “about,” “approximately,” “basically,” etc.) used in conjunction with quantities or conditions are to include the values and have the meaning indicated by the context. For example, such relative terms include at least the degree of error associated with the measurement of a particular value, tolerances associated with the particular value due to manufacturing, assembly, use, etc. Such terms should also be considered as disclosing a range defined by the absolute values of the two endpoints. Relative terms may refer to a certain percentage (e.g., 1%, 5%, 10% or more) of the indicated value. Numerical values that do not use relative terms should also be disclosed as specific values with tolerances. Furthermore, “basically” when expressing relative angular relationships (e.g., substantially parallel, substantially perpendicular) may refer to a certain degree (e.g., 1 degree, 5 degrees, 10 degrees or more) added to or subtracted from the indicated angle.
[0053] In this application, those skilled in the art will understand that the function performed by a component can be performed by one component, multiple components, one part, or multiple parts. Similarly, the function performed by a part can also be performed by one part, one component, or a combination of multiple parts.
[0054] In this application, the directional terms "upper," "lower," "left," "right," "front," and "rear" are used to describe the orientation and positional relationships shown in the accompanying drawings and should not be construed as limiting the embodiments of this application. Furthermore, in the context, it should be understood that when an element is mentioned as being connected "upper" or "lower" to another element, it can be directly connected to the other element "upper" or "lower," or indirectly connected through an intermediate element. It should also be understood that directional terms such as upper side, lower side, left side, right side, front side, and rear side not only represent positive orientation but can also be understood as lateral orientation. For example, "below" can include directly below, lower left, lower right, lower front, and lower rear.
[0055] This application discloses a table-type planer, such as Figures 1 to 9 As shown, the table-type planer includes a planer body 100, a power unit 210, a height adjustment unit 220, and an extension placement unit 200. The planer body 100 includes a planer housing 101, inside which a planing chamber 102 is formed. The power unit 210 drives the planer body 100 to plan. The height adjustment unit 220 is located on the upper part of the planer body 100 to adjust the height of the planing chamber 102. The extension placement unit 200 is located on both sides of the planer body 100. Optionally, the extension placement unit 200 includes two extension plates 201 disposed on the planer body 100. The extension plates 201 are rotatably connected to the planer body and can rotate to an extended position and a retracted position. The specific structures of the power unit 210 and the height adjustment unit 220 are prior art and will not be described in detail here.
[0056] Continue to refer to Figure 2 As shown, the table planer also includes a base 300, which is located at the lower part of the planer body 100 and supports the planer body 100. Optionally, the base 300 and the planer body 100 are integrally formed to constitute the table planer. Optionally, the base 300 and the planer body 100 are separately formed but fixedly connected to constitute the table planer. Multiple mounting portions 310 are formed on the base 300. The table planer also includes multiple support legs 400, which are respectively installed in the multiple mounting portions 310. Each support leg 400 is rotatable relative to the base 300, and at least one of the support legs 400 has a rotation angle greater than or equal to 0° and less than or equal to 180°. It should be noted that when the table planer is moved to the work site, the multiple support legs 400 can rotate to an open state, thereby stably supporting the planer body 100 at a height convenient for the user to perform planing operations.
[0057] Compared to existing table-type planers that are separate components requiring individual transfer, the table-type planer provided in this application features integrated support legs 400. The integrated design of the support legs 400 and base 300 allows the planer to move together when switching usage scenarios, thereby improving mobility and reducing the user's workload. Furthermore, because the support legs 400 are rotatable relative to the base 300, they can be extended to support the base 300 or folded for storage or relocation, thus improving stability, storage convenience, and ease of movement. In addition, directly adding the support legs 400 to the base 300 is more economical and helps reduce costs.
[0058] In some parallel embodiments, multiple support legs 400 are directly mounted on the base 300, that is, multiple support legs 400 are directly mounted on the entire table-type planer, and the support legs 400 are rotatable relative to the base 300.
[0059] Continue to refer to Figure 2 As shown, in one embodiment, the base 300 is generally square in shape. The base 300 can be a square panel. Four mounting portions 310 are provided, each located at one of the four corners of the base 300. Correspondingly, four support legs 400 are provided, each rotatably connected to one of the four mounting portions 310. Of course, in other embodiments, the base 300 can be adjusted to other shapes as needed, such as circular or elliptical. The number of mounting portions 310 and support legs 400 can be adjusted as needed, for example, three, five, or more.
[0060] The mounting portion 310 is part of the base 300. In some embodiments, the mounting portion 310 is a frame structure composed of multiple plates. Optionally, the mounting portion 310 includes a first baffle 311, a mounting plate, and a second baffle 314. The mounting plate is connected to or integrally formed with the base body of the base 300. The first baffle 311 and the second baffle 314 are disposed on both sides of the mounting plate, and the first baffle 311, the mounting plate, and the second baffle 314 form a U-shaped mounting groove. The support leg 400 is rotatably mounted in the mounting groove. Of course, in other embodiments, the mounting portion 310 may only include the first baffle 311 and the mounting plate, or only include the first baffle 311.
[0061] To secure the support leg 400 to the mounting part 310, continue referring to... Figure 2 As shown, the table-type planer also includes a fixing member 500, which is fixedly connected to the support leg 400 and the mounting part 310. In some embodiments, the support leg 400 rotates about the fixing member 500.
[0062] Optionally, the fixing member 500 is a fixed shaft. A first rotating shaft hole 313 is provided on the first baffle 311, a second rotating shaft hole is provided on the second baffle 314, and a third rotating shaft hole is provided radially through the support leg 400. The fixed shaft passes through the first rotating shaft hole 313, the second rotating shaft hole and the third rotating shaft hole, and the central axis of the fixed shaft is the rotation axis of the support leg 400.
[0063] To lock the support leg 400 after it has rotated to the target angle, preventing it from rotating further, continue referring to... Figure 2 As shown, the table-type planer also includes a connector 600, which is connected to the support leg 400. The first baffle 311 has at least one mating part 312 that mates with the connector 600. When the connector 600 mates with the mating part 312, the support leg 400 is fixed in the mounting part 310 and remains stationary, i.e., the support leg 400 is locked. When the connector 600 moves away from the mating part 312, the support leg 400 can rotate relative to the base 300, at which point the support leg 400 is unlocked. Applying force to the support leg 400 adjusts its angle relative to the mounting part 310. Optionally, the connector 600 is a pin, and the mating part 312 is a socket.
[0064] It should be noted that the number of mating parts 312 is correspondingly set according to the number of positions that the support leg 400 needs to lock. In some embodiments, the support leg 400 has a storage position at the bottom of the base 300 and a support position supporting the base 300. When the support leg 400 is in the storage position or the support position, the connector 600 engages with the mating part 312. At this time, as... Figure 5 The mounting portion 310 located on the left side is shown as follows: Figure 6 As shown in the two mounting parts 310, there are two mating parts 312. When the connector 600 is mated with one of the mating parts 312, the support leg 400 is locked in the storage position. When the connector 600 is mated with the other mating part 312, the support leg 400 is locked in the support position.
[0065] In one specific embodiment, continue to refer to Figure 2 As shown, the support leg 400 in the storage position is parallel to the base body of the base 300 and rotates to be stored directly below the base body; the support leg 400 in the support position is perpendicular to or tilted outwards from the base body of the base 300. If the angle between the support leg 400 in the storage position and the base body of the base 300 is defined as 0°, then the angle between the support leg 400 in the support position and the base body of the base 300 is not less than 90°.
[0066] In other embodiments, the support leg 400, in addition to having a storage location at the bottom of the base 300 and a support location supporting the base 300, also has a handle location away from the base 300. In this case, the user can easily apply force to the entire table-type planer by gripping and rotating the support leg 400 to the handle location, causing the table-type planer to move. At this time, such as... Figure 5 As shown in the mounting part 310 on the right side, there are three mating parts 312. When the connector 600 is mated with the first mating part 312, the support leg 400 is locked in the storage position. When the connector 600 is mated with the second mating part 312, the support leg 400 is locked in the support position. When the connector 600 is mated with the third mating part 312, the support leg 400 is locked in the handle position.
[0067] In one specific embodiment, continue to refer to Figure 2 and Figure 3 As shown, the support leg 400 in the handle position is parallel to the base body of the base 300 and rotates to the outside of the base body. If the angle between the support leg 400 in the storage position and the base body of the base 300 is defined as 0°, then the angle between the support leg 400 in the handle position and the base body of the base 300 is 180°.
[0068] Furthermore, when at least one of the multiple support legs 400 is rotated to the handle position, the horizontal projections of the support leg 400 in the handle position and the base 300 in the horizontal plane do not overlap. This design allows the user to pull the table-type planer with less effort, similar to pulling a "rolling suitcase".
[0069] By adjusting the angles of the multiple support legs 400, the table-type planer can be adjusted to different states. In some embodiments, the table-type planer has a supported state (e.g., Figure 4 As shown), storage status (such as...) Figure 1 (as shown) and baggage status (such as) Figure 2 and Figure 3 As shown in the diagram, there are three types of support legs. Specifically, when the table-type planer is in the supported state, all support legs 400 rotate to the supported position; when the table-type planer is in the stored state, all support legs 400 rotate to the storage position; when the table-type planer is in the transport state, at least one support leg 400 rotates to the handle position, and the other support legs 400 can rotate to the storage position or other positions that do not affect the movement of the table-type planer. The number of support legs 400 in the handle position can be set to one or more as needed.
[0070] It should be further explained that, depending on the function of the support leg 400, the number of mating parts 312 provided on different mounting parts 310 can be the same or different. For example, when some support legs 400 need to be used as handles, that is, when the support leg 400 needs to switch between storage position, support position and handle position, then the number of mating parts 312 on it can be three; while for support legs 400 that do not need to be used as handles and only need to switch between storage position and support position, then the number of mating parts 312 on them can be only two or three.
[0071] Of course, depending on the function of the support leg 400, the maximum rotation angle of different support legs 400 can also be different. For example, when some support legs 400 need to be used as handles, that is, when the support leg 400 needs to switch between storage position, support position and handle position, the rotation angle of the support leg 400 is 0° to 180°; while the support leg 400 that does not need to be used as a handle and only needs to switch between storage position and support position has a rotation angle of 0° to α°, where α° is greater than or equal to 90° and less than 180°, for example, it can be 120°. In this state, a limiting plate can be set in the mounting groove to limit the rotation angle of the support leg 400, that is, when the support leg 400 rotates to α° and abuts against the limiting plate.
[0072] In some embodiments, the connector 600 can be unlocked from the mating part 312 by manually pressing the connector 600. Specifically, the connector 600 is connected to the support leg 400 by an elastic member, which provides elastic force to the connector 600, allowing the connector 600 to stably engage with the mating part 312. When unlocking is required, force is applied to the connector 600, which compresses the elastic member and disengages from the mating part 312. Optionally, the elastic member is a spring.
[0073] In some parallel embodiments, the connection 600 and the mating part 312 can be unlocked by manual tossing, specifically, as shown in the example. Figure 10 and Figure 11As shown, the table-type planer also includes an upper unlocking mechanism 800. The upper unlocking mechanism 800 includes an upper wrench 801, a first pull rope 802, a first guide member 803, and a second guide member 804. The first guide member 803 has a first guide hole, and the second guide member 804 has a second guide hole. The first guide hole of the first guide member 803 is coaxially arranged with the fixing member 500, and the second guide hole of the second guide member 804 is coaxially arranged with the connecting member 600. The upper wrench 801 is rotatably mounted on the base 300. One end of the first pull rope 802 is connected to the upper wrench 801, and the other end passes through the first guide hole and the second guide hole in sequence and is connected to the connecting member 600. Rotation of the upper wrench 801 can drive the connecting member 600 away from the mating part 312.
[0074] When it is necessary to unlock the connector 600 from the mating part 312, the user can gently lift the table-type planer and turn the upper wrench 801 with one hand, causing the upper wrench 801 to rotate around its axis of rotation. The rotating upper wrench 801 pulls the connector 600 away from the mating part 312 through the first pull rope 802. After that, the user can gently push the support leg 400 to make the support leg 400 rotate relative to the base 300. The first guide 803 and the second guide 804 can guide the movement of the first pull rope 802. Since the first guide hole of the first guide 803 is coaxially set with the fixing part 500, the length of the first pull rope 802 will not change no matter how the support leg 400 rotates, so that the setting of the first pull rope 802 will not affect the rotation of the support leg 400.
[0075] Optionally, the first pull rope 802 is a steel wire rope, and the first guide 803 and the second guide 804 are both plastic parts.
[0076] In some parallel embodiments, such as Figure 12 As shown, the table-type planer also includes a lower unlocking mechanism 900. The lower unlocking mechanism 900 includes a lower pedal 901, a second pull rope 902, and a third guide member 903. The third guide hole of the third guide member 903 is coaxially arranged with the connector 600. The lower pedal 901 is rotatably mounted on the support leg 400. One end of the second pull rope 902 is connected to the lower pedal 901, and the other end extends upward and passes through the third guide hole and the connector 600. The rotation of the lower pedal 901 can drive the connector 600 away from the mating part 312.
[0077] When it is necessary to unlock the connector 600 from the mating part 312, the user can gently lift the table-type planer and lightly step on the pedal 901, causing the lower pedal 901 to rotate around its axis of rotation. The rotating lower pedal 901 pulls the connector 600 away from the mating part 312 via the second pull rope 902. Afterwards, the user can gently push the support leg 400 to make the support leg 400 rotate relative to the base 300. The third guide member 903 is provided to guide the movement of the second pull rope 902.
[0078] Optionally, the second pull rope 902 is a steel wire rope, and the third guide 903 is a plastic part.
[0079] It should be noted that for one support leg 400 of the table-type planer, only the upper unlocking mechanism 800 or only the lower unlocking mechanism 900 can be set, or both the upper unlocking mechanism 800 and the lower unlocking mechanism 900 can be set at the same time.
[0080] In some embodiments, the table-type planer further includes a toggle unlocking mechanism 910, which includes a housing 911, a toggle 912, a toggle shaft 913, a fourth guide member 914, an elastic member 915, and a snap-fit member 916. The housing 911 is provided with a shaft hole 9111 that matches the toggle shaft 913 for fixing the toggle shaft 913 inside the housing 911.
[0081] like Figures 13 to 17 As shown, the toggle switch 912 is sleeved on the toggle shaft 913, and the toggle switch 912 can be rotated around the toggle shaft 913. The fourth guide member 914 includes a guide surface 9141 and a guide shaft 9142. One side of the guide surface 9141 contacts the toggle switch 912, and the other side of the guide surface 9141 contacts the guide shaft 9142. Optionally, the guide surface 9141 and the guide shaft 9142 are integrally formed. Optionally, the guide surface 9141 and the guide shaft 9142 are separately provided, and the guide surface 9141 and the guide shaft 9142 are fixedly connected.
[0082] The snap-fit element 916 is sleeved on the guide shaft 9142 and can rotate around the guide shaft 9142. Optionally, the guide shaft 9142 can be a stepped shaft, specifically, the area of the end of the guide shaft 9142 near the guide surface 9141 is larger than the area of the end of the guide shaft 9142 away from the guide surface 9141. Therefore, when the snap-fit element 916 is sleeved on the guide shaft 9142, it can engage with the steps at the two points of area change on the guide shaft 9142, preventing the snap-fit element 916 from slipping off the guide shaft 9142 onto the guide surface 9141. An elastic element 915 is also sleeved on the guide shaft 9142, specifically above the snap-fit element 916 on the guide shaft 9142. The elastic element 915 can be a spring.
[0083] like Figure 13 As shown, the table-type planer includes a first fixing member 501, a second fixing member 502, and a third fixing member 503. The first fixing member 501 and the second fixing member 502 are used to fix the first baffle 311 to the base 300. The third fixing member 503 is used to fixally connect the support leg 400 and the mounting part 310, and the support leg 400 rotates around the third fixing member 503. The third fixing member 503 is also used to fixally connect the toggle unlocking mechanism 910 and the mounting part 310, and the toggle unlocking mechanism 910 rotates around the third fixing member 503. The toggle unlocking mechanism 910 is connected to the support leg 400, meaning that the rotation of the support leg 400 drives the toggle unlocking mechanism 910 to rotate synchronously.
[0084] like Figure 14 As shown, a connecting hole 917 matching the support leg 400 is provided on the toggle unlocking mechanism 910, and the support leg 400 is connected to the toggle unlocking mechanism 910 through the connecting hole 917. A fixing member is also provided on one side of the connecting hole 917 to secure the support leg 400 inside the connecting hole 917, so that the toggle unlocking mechanism 910 and the support leg 400 are securely connected. The fixing member can be a screw or any other component that can provide a fixing function; this application is not limited to this. Furthermore, the toggle unlocking mechanism 910 and the support leg 400 can be fixedly connected in other ways; this application is not limited to these methods either.
[0085] The mounting part 310, which contacts the support leg 400 and the toggle unlocking mechanism 910, has at least one fixing hole 315 and a fixing groove 316 communicating with the fixing hole 315. The fixing groove 316 surrounds the third fixing member 503, and the fixing hole 315 is located on the side of the fixing groove 316 away from the third fixing member 503. The fixing hole 315 matches the snap-fit member 916. When the snap-fit member 916 is snapped into the fixing hole 315, the toggle unlocking mechanism 910 is fixed and remains stationary, and the support leg 400 connected to it is also fixed and remains stationary. When the snap-fit member 916 is located in the fixing groove 316, the snap-fit member 916 can slide in the fixing groove 316, at which time the support leg 400 and the toggle unlocking mechanism 910 can rotate. That is, the location of the fixing hole 315 determines the fixed position of the support leg 400. Optionally, the number of fixing holes 315 can be as follows: Figure 17 The three shown are examples. Furthermore, the number of fixing holes 315 can be other numbers, and the location of the fixing holes 315 can also be other locations; this application does not limit this.
[0086] Optionally, the fixing groove 316 can be arranged in a semi-circle around the third fixing member 503. Optionally, the fixing groove 316 can be arranged in a sector shape around the third fixing member 503 with a center of 135°. Optionally, the fixing groove 316 can be arranged in a sector shape around the third fixing member 503 with a center of 90°. In addition, the fixing groove 316 can also be arranged in a sector shape around the third fixing member 503 with other angles as centers, which is not limited in this application. The arrangement of the fixing groove 316 determines the rotation angle range of the support leg 400.
[0087] The specific implementation process for keeping the support leg 400 fixed and rotating is as follows.
[0088] like Figures 16 to 17 As shown, the toggle switch 912 includes a toggle surface 9121, which is parallel to the guide surface 9141 when the toggle switch 912 is not turned. When the latching member 916 slides in the fixing groove 316 near the fixing hole 315, the elastic member 915 applies pressure to the latching member 916, causing the latching member 916 to slide into the fixing hole 315. Based on the pressure of the elastic member 915, the latching member 916 is fixed in the fixing hole 315, thereby fixing the support leg 400 in place, allowing the support leg 400 to be locked in a storage position, a support position, or a handle position. When the position of the support leg 400 needs to be changed, the toggle switch 912 can be turned and rotated, thereby driving the latching member 916 to slide in the fixing groove 316. Specifically, when the toggle switch 912 is turned, the toggle surface 9121 and the guide surface 9141 are no longer parallel. The toggle surface 9121 presses against the guide surface 9141, causing the fourth guide member 914 to compress away from the fixing hole 315. The snap-fit member 916 located on the fourth guide member 914 is driven away from the fixing hole 315 and enters the fixing groove 316. Thus, the snap-fit member 916 can slide in the fixing groove 316, and the support leg 400 can rotate. Because the fourth guide member 914 is compressed away from the fixing hole 315 at this time, the elastic member 915 is compressed. After the toggle switch 912 is released, the snap-fit member 916 can slide back into the fixing hole 315 after sliding to a position close to the fixing hole 315.
[0089] When the position of the support leg 400 needs to be changed, the user can gently lift the table-type planer, turn the lever 912 by hand, and then gently push the support leg 400 to rotate it relative to the base 300. This is simple and requires little effort. To improve the mobility of the table-type planer in transport mode, in some embodiments, reference is continued to be made to... Figure 2 and Figure 3As shown, the table-type planer also includes at least two rollers 700, which are mounted on the same side of the base 300. The arrangement of the rollers 700 makes the friction between the table-type planer and the ground rolling friction, which helps to reduce frictional resistance and improve mobility. In some embodiments, when the support leg 400, which is on the same side as the at least two rollers 700, is in the storage position, the rotation of the rollers 700 causes the table-type planer to move.
[0090] The number of rollers 700 can be set to two, three, or more as needed. In some embodiments, if there are four support legs 400, when the table-type planer is in transport mode, two rollers 700 and the support legs 400 in the handle position are located on opposite sides of the base 300. When the support legs 400 in the handle position extend upwards, the rollers 700 are in contact with the ground. The user can drive the rollers 700 to roll on the ground by pulling the support legs 400 in the handle position. In a specific embodiment, there are four rollers 700, which are located at the four corners of the base 300. All four support legs 400 can rotate to the handle position, and the user can choose any support leg 400 as a handle as needed, making it more convenient to use.
[0091] Furthermore, a handle 103 is provided at the top edge of the planer body 100, allowing the user to lift the entire table planer by gripping the handle 103. When the planer body 100 is in a horizontal position, i.e., when the support legs 400 are in the supported position, the handle 103 and the rollers 700 are spaced apart in the vertical direction. When the table planer is in a vertical position, the handle 103 and the rollers 700 are spaced apart in the horizontal direction. Optionally, the distance between the outermost edge of the handle 103 and the side wall of the planer body 100 is equal to the distance between the outermost edge of the rollers 700 and the same side wall, ensuring that the table planer can be placed stably when in a vertical position.
[0092] To ensure a good user experience for users of different heights, in some embodiments, the support leg 400 is a telescopic support leg. Optionally, the support leg 400 includes multiple support rods, each with multiple locking holes spaced apart along its axial direction at its end. Adjacent support rods are connected by locking devices. By selecting different locking holes to install the locking devices, the length of the entire support leg 400 can be adjusted. Optionally, as... Figure 13As shown, an operating element 410 can also be provided between two adjacent support rods. When the operating element 410 is in the locked state, the two adjacent support rods are fixed, and the length of the support leg 400 cannot be adjusted. When the operating element 410 is in the unlocked state, the two adjacent support rods can slide relative to each other to adjust the length of the support leg 400. Of course, in other embodiments, the support leg 400 can also be made telescopic.
[0093] In some embodiments, such as Figures 18a to 19b As shown, the support leg 400 includes a first support rod 402 and a second support rod 403, with the second support rod 403 located inside the first support rod 402. The support leg 400 is provided with a first adjusting member 420 and a second adjusting member 430 for adjusting the length of the support leg 400. The first adjusting member 420 includes a first protrusion 421 and a second protrusion 422. The first protrusion 421 is disposed on the first support rod 402 and protrudes towards the second support rod 403. The second protrusion 422 is disposed on the second support rod 403 and protrudes towards the first support rod 402. The second adjusting member 430 includes a limiting block 431, a limiting block rotation shaft 432, and an elastic member 433, all disposed on the second support rod 403. The elastic member 433 abuts against the limiting block 431, and the elastic member 433 can push the limiting block 431 to rotate around the limiting block rotation shaft 432. The limiting block 431 also includes a limiting protrusion 4311, which can abut against the first support rod 402.
[0094] like Figure 18a and Figure 18b As shown, when the support leg 400 is not stretched to the locked position, the first protrusion 421 and the second protrusion 422 do not contact each other, the limiting protrusion 4311 is located inside the first support rod 402, the first support rod 402 abuts against the limiting block 431, and the limiting block 431 compresses the elastic member 433.
[0095] like Figure 19a and Figure 19bAs shown, when the support leg 400 is in the extended locked state, to ensure the stability of the support leg 400 after being extended, the second support rod 403 moves to a certain position outside the first support rod 402 and then locks. At this time, the second protrusion 422 abuts against the first protrusion 421, and the first protrusion 421 prevents the second protrusion 422 from continuing to move outside the first support rod 402, that is, the first protrusion 421 prevents the second support rod 403 from continuing to move outside the first support rod 402. At the same time, the limiting block 431 is no longer abutted by the first support rod 402, and the elastic element 433 pushes the limiting block 431 outside the second support rod 403. The limiting block 431 rotates around the limiting block rotation axis 432, causing the limiting protrusion 4311 to abut against the first support rod 402. The limiting protrusion 4311 prevents the second support rod 403 from moving inside the first support rod 402. Therefore, by preventing the second support rod 403 from moving outward from the first support rod 402 through the first adjusting member 420, and preventing the second support rod 403 from moving inward from the first support rod 402 through the second adjusting member 430, the support leg 400 is in a locked state after being stretched and will not extend or retract, so that the support leg 400 can stably support the planer body 100.
[0096] When it is necessary to retract the second support rod 403 into the first support rod 402 so that the support leg 400 is in a retracted state, press the lower limit protrusion 4311 along the direction inside the second support rod 403 and push the second support rod 403 towards the direction inside the first support rod 402 so that the support leg 400 retracts.
[0097] In some embodiments, an anti-slip element 401 is provided on the side of the support leg 400 away from the mounting portion 310. The anti-slip element 401 enables the table-type planer to be stably supported. Optionally, the anti-slip element 401 is a silicone sleeve fitted onto the support leg 400.
[0098] The foregoing has shown and described the basic principles, main features, and advantages of this application. Those skilled in the art should understand that the above embodiments do not limit this application in any way, and all technical solutions obtained by equivalent substitution or equivalent transformation fall within the protection scope of this application.
Claims
1. A table-type planer, comprising: The planer body (100) includes a planer housing (101), and a planer chamber (102) is formed inside the planer housing (101). The power unit (210) drives the planer body (100) to planer; A height adjustment component (220) is provided on the upper part of the planer body (100) to adjust the height of the planer chamber (102); Extended placement components (200) are disposed on both sides of the planer body (100); The table-type planer is characterized in that it further includes: A base (300) for supporting the planer body (100) is provided at the lower part of the planer body (100), and a plurality of mounting portions (310) are formed on the base (300). Multiple support legs (400) are respectively installed in multiple mounting portions (310), and each support leg (400) is rotatable relative to the base (300); Among the plurality of support legs (400), at least one of the support legs (400) has a rotation angle greater than or equal to 0° and less than or equal to 180°.
2. The table-type planer according to claim 1, characterized in that, The table-type planer also includes a fixing component (500), which is fixedly connected to the support leg (400) and the mounting part (310).
3. The table-type planer according to claim 2, characterized in that, The supporting leg (400) rotates about the fixing member (500).
4. The table-type planer according to claim 2, characterized in that, The mounting part (310) includes a first baffle (311), and the table planer also includes a connector (600). The connector (600) is connected to the support leg (400). The first baffle (311) is provided with at least one mating part (312) that cooperates with the connector (600).
5. The table-type planer according to claim 4, characterized in that, When the connector (600) engages with the mating part (312), the support leg (400) remains fixed in the mounting part (310); when the connector (600) moves away from the mating part (312), the support leg (400) is rotatable relative to the base (300).
6. The table-type planer according to claim 4, characterized in that, The support leg (400) has a storage position at the bottom of the base (300) and a support position supporting the base (300); when the support leg (400) is in the storage position or the support position, the connector (600) engages with the mating part (312).
7. The table-type planer according to claim 4, characterized in that, The table-type planer also includes an upper unlocking mechanism (800), which includes a first guide (803) and a second guide (804). The first guide hole of the first guide (803) is coaxially arranged with the fixing member (500), and the second guide hole of the second guide (804) is coaxially arranged with the connecting member (600).
8. The table-type planer according to claim 7, characterized in that, The upper unlocking mechanism (800) further includes an upper wrench (801) and a first pull rope (802). The upper wrench (801) is rotatably mounted on the base (300). One end of the first pull rope (802) is connected to the upper wrench (801), and the other end passes through the first guide hole and the second guide hole in sequence and is connected to the connector (600). The upper wrench (801) can drive the connector (600) away from the mating part (312) when rotated.
9. The table-type planer according to claim 4, characterized in that, The table-type planer also includes a lower unlocking mechanism (900), which includes a lower pedal (901) and a third guide (903). The third guide hole of the third guide (903) is coaxially arranged with the connector (600), and the lower pedal (901) is rotatably mounted on the support leg (400).
10. The table-type planer according to claim 9, characterized in that, The lower unlocking mechanism (900) also includes a second pull rope (902), one end of which is connected to the lower pedal (901), and the other end extends upward and passes through the third guide hole and the connector (600). The rotation of the lower pedal (901) can drive the connector (600) away from the mating part (312).
11. The table-type planer according to claim 1, characterized in that, The mounting part (310) includes a fixing groove (316), and the table-type planer also includes a toggle unlocking mechanism (910) connected to the support leg (400). The toggle unlocking mechanism (910) includes a toggle (912) and a snap-fit (916). When the toggle (912) is turned, it can drive the snap-fit (916) to slide in the fixing groove (316).
12. The table-type planer according to claim 1, characterized in that, The table-type planer also includes at least two rollers (700), which are mounted on the same side of the base (300).
13. The table-type planer according to claim 12, characterized in that, The support leg (400) has a storage location at the bottom of the base (300), and when the support leg (400) is in the storage location on the same side as at least two of the rollers (700), the rotation of the rollers (700) causes the table planer to move.
14. The table-type planer according to claim 1, characterized in that, The support leg (400) is a telescopic support leg.
15. The table-type planer according to claim 1, characterized in that, An anti-slip element (401) is provided on the side of the support leg (400) away from the mounting part (310).
16. A table-type planer, comprising: The planer body (100) includes a planer housing (101), and a planer chamber (102) is formed inside the planer housing (101). The power unit (210) drives the planer body (100) to planer; A height adjustment component (220) is provided on the upper part of the planer body (100) to adjust the height of the planer chamber (102); Extended placement components (200) are disposed on both sides of the planer body (100); The table-type planer is characterized in that it further includes: A base (300) for supporting the planer body (100) is provided at the lower part of the planer body (100); Multiple support legs (400) are mounted on the base (300) and are rotatable relative to the base (300); The support leg (400) has a handle position away from the base (300). When at least one of the support legs (400) rotates to the handle position, the horizontal projections of the support leg (400) at the handle position and the base (300) in the horizontal plane do not overlap.
17. The table-type planer according to claim 16, characterized in that, The table-type planer also includes a fixing part (500) and a connecting part (600). The fixing part (500) is used to fix the support leg (400) and the base (300). The support leg (400) rotates around the fixing part (500). The connecting part (600) is connected to the support leg (400). The base (300) is provided with at least one mating part (312) that cooperates with the connecting part (600).
18. The table-type planer according to claim 16, characterized in that, The table-type planer also includes a plurality of mounting parts (310) disposed on the base (300) for mounting the support leg (400) on the base (300); the mounting part (310) includes at least one fixing hole (315) and a fixing groove (316) communicating with the fixing hole (315).
19. The table-type planer according to claim 18, characterized in that, The table-type planer also includes a toggle unlocking mechanism (910) connected to the support leg (400). The mounting part (310) mounts the toggle unlocking mechanism (910) on the base (300). The toggle unlocking mechanism (910) includes a snap-fit member (916) that cooperates with the fixing hole (315) or the fixing groove (316).
20. The table-type planer according to claim 19, characterized in that, When the snap-fit (916) engages with the fixing hole (315), the support leg (400) is fixed and remains stationary; when the snap-fit (916) engages with the fixing groove (316), the support leg (400) is rotatable relative to the base (300).