Stand with counterbalance
Patent Information
- Application Number
- KR1020250024660
- Authority / Receiving Office
- KR · KR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-08-11
- Estimated Expiration
- 2045-02-25
Smart Images

Figure 112025021860952-PAT00001_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to a stand with a counterbalance applied thereto, and more specifically, to a stand with a counterbalance applied thereto in which a folding part is formed to be foldable in a scissor structure, a folding part is formed to be rotatable around a reference part, a link part that rotates along the reference part when the folding part rotates, a mounting part on the other side of the folding part for mounting an object, and a weight part on one side of the folding part for maintaining balance with the mounting part when the folding part rotates by the mounting part, so that even when the folding part is folded or rotated, the folding part does not tilt to one side and the object can be stably mounted. Background Technology
[0002] Korean Utility Model Publication No. 20-2025-0000158 discloses a stand-type smart device holder comprising: a support member and a base member that supports the support member; a flexible connecting member disposed on the support member; and a mounting member disposed on the flexible connecting member and on which a smart device is mounted, wherein the mounting member comprises a rotation guide ball disposed on the flexible connecting member; a mounting member rotatably disposed on the rotation guide ball and having a magnet embedded inside; and a magnetic head comprising a fastening member that fixes the rotation guide ball and the mounting member, wherein the support member comprises a first rod disposed on the base member; a second rod that moves up and down along the first rod; and a length reference member that fixes the second rod that has moved up and down from the first rod, wherein the length reference member comprises a length adjustment piece disposed on the first rod with a protrusion at its end; and a magnetic head comprising a length adjustment groove disposed on the second rod so that the protrusion of the length adjustment piece can be attached or detached.
[0003] In addition, Korean Patent Publication No. 10-2025-0012905 discloses a smart device holder characterized by having a rotating part formed at the bottom that is inserted between the top plate of the bed and the bottom of the mattress and is supported and fixed by the pressing force of the mattress, an upward stand having a length higher than the height of the mattress formed at one end of the rotating part, and a connecting part formed at the top of the stand in which a support means for fixing and supporting a smart device is installed.
[0004] However, in existing stands, there was a problem in that when a certain load was applied by the smart device to a support means that fixedly supports the smart device, the support means would descend due to the smart device, making it difficult for the stand to maintain balance. Prior art literature
[0005] (Patent Document 0001) KR 10-2025-0012905 A(Patent Document 0002) KR 20-2025-0000158 U The problem to be solved
[0006] The present invention has been devised to solve the above-mentioned problems, and the objective of the present invention is to provide a mounting bracket with a counterbalance applied so that the folding part is formed to be foldable in a scissor structure, the folding part is formed to be rotatable around a reference part, a link part that rotates along the reference part when the folding part rotates, a mounting part on the other side of the folding part for mounting an object, and a weight part on one side of the folding part to maintain balance with the mounting part when the folding part rotates by the mounting part, so that the folding part does not tilt to one side and can stably mount an object even when the folding part is folded or rotated.
[0007] In addition, the objective of the present invention is to provide a mounting bracket with a counterbalance applied thereto, wherein a folding portion formed to be foldable is rotatably coupled to a reference portion centered on the reference portion, and a link portion is rotatably coupled between the reference portion and the folding portion along a guide portion of the reference portion, so that when the folding portion rotates, the link portion rotates by the folding portion and the balance of the folding portion can be maintained at a constant level, thereby stably supporting an object.
[0008] In addition, the objective of the present invention is to provide a mounting bracket with a counterbalance applied thereto, wherein a connecting member is rotatably coupled to one side of a folding part, a rail part is movably coupled to the lower end of the connecting member, and a weight is screw-coupled to the lower end of the rail part so as to move up and down along a support part, so that when the folding part is folded or rotated by a mounting part, the connecting member and the rail part move up and down by the folding part and the weight is movably coupled by the rail part, thereby maintaining a constant balance of the folding part and allowing the user to easily adjust the angle of an object. means of solving the problem
[0009] In order to solve the above technical problems, a mounting bracket with a counterbalance applied according to an embodiment of the present invention is characterized by comprising: a reference part (10); a folding part (20) formed to be foldable or unfoldable and hinged to the rear of the reference part (10) so as to be rotatable around the reference part (10); a mounting part (30) coupled to the other side of the folding part (20) so as to be mounted on an object; a link part (35) hinged to be rotatable around the reference part (10) between the reference part (10) and the folding part (20), and rotating in the rotational direction of the folding part (20) by the folding part (20) when the folding part (20) rotates by the mounting part (30); and a weight part (40) coupled to one side of the folding part (20) so as to balance the left and right sides with the mounting part (30) when the folding part (20) rotates.
[0010] Additionally, the apparatus further comprises a support member (60) mounted on the ground, a pivot member (70) rotatably coupled to the upper part of the support member (60) and coupled to the reference member (10), a guide member (80) coupled to the center of the support member (60) to guide the weight member (40), a pivot pin (91) whose front end is rotatably coupled to the reference member (10) and whose rear end is coupled to the link member (35), and a movable pin (92) whose front end is movably coupled to the link member (35) along the link member (35) and whose rear end is coupled to the folding member (20), and the weight member (40) has an upper end rotatably coupled to one side of the folding member (20) and a connecting member (41) that moves up and down by the folding member (20), and an upper end coupled to the lower end of the connecting member (41) and moves up and down by the connecting member (41). It is characterized by including a rail portion (45) and a weight (50) coupled to the lower end of the rail portion (45) and moving up and down along the support portion (60) by the rail portion (45).
[0011] Additionally, the support member (60) includes a supporter (61) mounted on the ground and a fastening block (62) fixedly coupled to the center of the outer surface of the supporter (61), and the rotating member (70) includes a first rotating part (71) provided at the upper front of the support member (60) and a second rotating part (75) provided at the upper rear of the support member (60) and coupled to the rear of the first rotating part (71), and the folding member (20) includes a first inclined member (21) whose lower end is rotatably coupled to the upper end of the second inclined bar (43), a second inclined member (22) whose upper end is foldably coupled to the first inclined member (21), a third inclined member (23) whose lower end is foldably coupled to the second inclined member (22), and the third inclined member (23) and a third inclined member (23) adjacent to the third inclined member (23). It is characterized by including a fourth inclined member (24) for connection and a fifth inclined member (25) whose upper end is foldably connected to the third inclined member (23).
[0012] Additionally, the reference portion (10) is formed at the lower part of the reference portion (10) and includes a fixed block (11) coupled to the upper part of the rotating member (70) and a curved member (12) formed convexly in the right direction at the rear of the fixed block (11), and the link portion (35) is characterized by including a horizontal member (36) formed in the left-right direction at the center of the link portion (35) and a convex portion (37) formed convexly in the downward direction at the lower part of the horizontal member (36).
[0013] Additionally, a recessed hole (11a) is formed in the upward direction on the bottom surface of the fixed block (11), and a through hole (12a) is formed through one side of the front of the bending member (12) to which the second inclined member (22) and the third inclined member (23) are rotatably coupled, and a guide portion (12b) for the rotation of the rotation pin (91) is formed in a curved shape on the other side of the front of the bending member (12) so that the front end of the rotation pin (91) is rotatably coupled, and a pin hole (37a) to which the rear end of the rotation pin (91) is coupled is formed through the front of the convex portion (37), and a through portion (36a) to which the second inclined member (22) and the third inclined member (23) are rotatably coupled is formed through one side of the front of the horizontal member (36) corresponding to the through hole (12a), and the front of the horizontal member (36) On the other side, a horizontal hole (36b) is formed through which the front end of the movable pin (92) is movably connected, and the rear end of the movable pin (92) is connected to the fourth inclined member (24).
[0014] Additionally, the weight (50) comprises a movable frame (51) coupled to the lower end of the rail portion (45) and moving up and down along the supporter (61) by the rail portion (45), a first movable block (53) coupled to the lower end of the movable frame (51) and moving up and down along the supporter (61) by the movable frame (51), and a second movable block (54) coupled to the lower end of the first movable block (53) and moving up and down along the supporter (61) by the first movable block (53), and the guide member (80) comprises a first coupling member (81) coupled to the fastening block (62), a second coupling member (85) provided at the lower end of the first coupling member (81), and a guide plate (86) coupled between the first coupling member (81) and the second coupling member (85) to guide the up and down of the rail portion (45). The structure is characterized by including, and forming a connecting bracket (52) to which the lower end of the rail portion (45) is connected at the front and rear of the upper part of the moving frame (51), respectively, and forming a first inclined bar (42) at an angle at the lower part of the connecting member (41) such that its lower end is rotatably connected to the upper end of the rail portion (45), and forming a second inclined bar (43) at an angle at the upper part of the first inclined bar (42) such that its upper end is rotatably connected to one side of the folding portion (20). Effects of the invention
[0015] In a stand with a counterbalance applied according to one embodiment of the present invention, the folding part is formed to be foldable in a scissor structure, the folding part is formed to be rotatable around a reference part, a link part that rotates along the reference part when the folding part rotates, a mounting part on the other side of the folding part for mounting an object is provided, and a weight part is provided on one side of the folding part to maintain balance with the mounting part when the folding part rotates by the mounting part, so that even when the folding part is folded or rotated, the folding part does not tilt to one side and the object can be stably mounted.
[0016] In addition, in a stand with a counterbalance applied according to an embodiment of the present invention, a folding part formed to be foldable is rotatably coupled to a reference part around the reference part, and a link part is rotatably coupled between the reference part and the folding part along a guide part of the reference part, so that when the folding part rotates, the link part rotates by the folding part and can maintain the balance of the folding part at a constant level, thereby providing the effect of stably supporting an object.
[0017] In addition, in a mounting bracket with a counterbalance applied according to an embodiment of the present invention, a connecting member is rotatably coupled to one side of a folding part, a rail part is movably coupled to the lower end of the connecting member, and a weight is screw-coupled to the lower end of the rail part so as to move up and down along a support part. When the folding part is folded or rotated by the mounting part, the connecting member and the rail part move up and down by the folding part, and the weight is movably coupled by the rail part, thereby maintaining the balance of the folding part at a constant level, so that the user can easily adjust the angle of the object. Brief explanation of the drawing
[0018] FIG. 1 is a perspective view of a stand with a counterbalance applied according to an embodiment of the present invention. FIG. 2 is a front view of a stand with a counterbalance applied as shown in FIG. 1. Figure 3 is a plan view of a stand with a counterbalance applied as shown in Figure 1. Figure 4 is a cross-sectional view of a stand with a counterbalance applied as shown in Figure 4, cut along line AA. Figure 5 is a perspective view of the support member shown in Figure 1. FIG. 6 is an exploded perspective view of the rotating member, folding part, reference part and link part shown in FIG. 1. FIG. 7 is a detailed view of the rotating member, folding part, reference part and link part shown in FIG. 6. FIG. 8 is a detailed view of the rotating member, reference part, and support part shown in FIG. 4. Fig. 9 is an exploded perspective view of the weight shown in Fig. 1. FIG. 10 is an exploded perspective view of the guide member shown in FIG. 1. FIG. 11 is a perspective view of a stand with a counterbalance applied when the folding part rotates clockwise. FIG. 12 is a perspective view of a stand with a counterbalance applied when the folding part is folded and rotated clockwise. Specific details for implementing the invention
[0019] Hereinafter, in order to explain in detail enough for a person skilled in the art to easily implement the technical concept of the present invention, embodiments of the present invention will be described with reference to the attached drawings.
[0020] However, the following examples are merely illustrative to aid in understanding the present invention and do not reduce or limit the scope of the present invention.
[0021] Furthermore, the present invention may be implemented in various different forms and is not limited to the embodiments described herein.
[0022] FIG. 1 is a perspective view of a stand (1) with a counterbalance applied according to an embodiment of the present invention, and FIG. 2 is a front view of the stand (1) with a counterbalance applied as shown in FIG. 1.
[0023] Referring to FIGS. 1 and 2, a stand (1) with a counterbalance applied according to an embodiment of the present invention is configured to include a reference part (10), a folding part (20), a mounting part (30), a link part (35), and a weight part (40).
[0024] First, the reference part (10) is fixedly coupled to the upper part of the rotating member (70).
[0025] And, the folding part (20) is hinge-connected to the rear of the reference part (10) so as to be rotatable around the reference part (10), and is formed to be foldable or unfoldable. At this time, the folding part (20) is formed as a scissor structure that can be foldable or unfolded.
[0026] And, the mounting part (30) is connected to the other side of the folding part (20), and an object is mounted on the mounting part (30).
[0027] And, the link portion (35) is hinge-coupled between the reference portion (10) and the folding portion (20) so as to be rotatable around the reference portion (10), so that when the folding portion (20) is rotated by the mounting portion (30), the link portion (35) rotates in the rotational direction of the folding portion (20) by the folding portion (20).
[0028] And, the weight portion (40) is coupled to one side of the folding portion (20) and serves to balance the left and right sides with the mounting portion (30) when the folding portion (20) rotates.
[0029] Meanwhile, a mounting bracket (1) with a counterbalance applied according to one embodiment of the present invention is further configured to include a support member (60), a rotating member (70), a guide member (80), a rotating pin (91), and a moving pin (92).
[0030] First, the support member (60) is mounted on the ground. At this time, the support member (60) is formed in an up-and-down direction.
[0031] And, the pivot member (70) is rotatably coupled to the upper part of the support member (60) and coupled to the reference member (10). The reference member (10) can rotate with respect to the central axis in the vertical direction of the pivot member (70) by the pivot member (70).
[0032] And, the guide member (80) is coupled to the center of the support member (60) and guides the weight member (40).
[0033] And, the front end of the pivot pin (91) is rotatably connected to the reference part (10), and the rear end is connected to the link part (35). At this time, the pivot pin (91) is formed in the front-rear direction.
[0034] And, the front end of the movable pin (92) is connected to the link portion (35) so as to be movable along the link portion (35), and the rear end is connected to the folding portion (20). At this time, the movable pin (92) is formed in the front-rear direction.
[0035] Meanwhile, the weight portion (40) is configured to include a connecting member (41), a rail portion (45), and a weight (50).
[0036] First, the upper end of the connecting member (41) is rotatably coupled to one side of the folding part (20) and moves up and down by the folding part (20). Additionally, the connecting member (41) can rotate in a clockwise or counterclockwise direction by the rotational force of the folding part (20).
[0037] And, the upper end of the rail portion (45) is connected to the lower end of the connecting member (41), and moves up and down by the connecting member (41).
[0038] And, the weight (50) is connected to the lower end of the rail section (45) and moves up and down along the support section (60) by the rail section (45).
[0039] FIG. 3 is a plan view of a stand (1) with a counterbalance applied as shown in FIG. 1, FIG. 4 is a cross-sectional view of the stand (1) with a counterbalance applied as shown in FIG. 4 cut along line AA, and FIG. 5 is a perspective view of a support member (60) as shown in FIG. 1.
[0040] Referring to FIGS. 3 to 5, the support member (60) is configured to include a supporter (61) and a fastening block (62).
[0041] First, the supporter (61) is mounted on the ground. At this time, the supporter (61) is formed in the shape of a round bar in the vertical direction.
[0042] And, the fastening block (62) is fixedly coupled to the center of the outer surface of the supporter (61).
[0043] Meanwhile, the support member (60) is further configured to include a first shaft member (63), a second shaft member (64), a third shaft member (65), a first insertion member (66), a bending member (67), a shaft member (68), and a second insertion member (69).
[0044] First, the first shaft portion (63) is formed on the upper part of the supporter (61). At this time, the first shaft portion (63) is formed in the shape of a round bar in the vertical direction.
[0045] And, the second shaft portion (64) is formed on the upper part of the first shaft portion (63). At this time, the second shaft portion (64) is formed in the shape of a round bar in the vertical direction.
[0046] And, the third shaft portion (65) is formed on the upper part of the second shaft portion (64). At this time, the third shaft portion (65) is formed in the shape of a round bar in the vertical direction.
[0047] And, the first insert member (66) is formed on the upper part of the third shaft portion (65). At this time, the first insert member (66) is formed in a cylindrical shape in the vertical direction.
[0048] And, the bending member (67) is formed convexly in the upward direction on the upper part of the first insertion member (66).
[0049] And, the shaft portion (68) is formed on the upper part of the bending member (67). At this time, the shaft portion (68) is formed in the shape of a round bar in the vertical direction.
[0050] And, the second insert member (69) is fixedly coupled to the center of the shaft portion (68). At this time, the second insert member (69) is formed in a cylindrical shape in the vertical direction.
[0051] FIG. 6 is an exploded perspective view of the rotating member (70), folding part (20), reference part (10), and link part (35) shown in FIG. 1, FIG. 7 is a detailed view of the rotating member (70), folding part (20), reference part (10), and link part (35) shown in FIG. 6, and FIG. 8 is a detailed view of the rotating member (70), reference part (10), and support part (60) shown in FIG. 4.
[0052] Referring to FIGS. 6 to 8, the rotating member (70) is configured to include a first rotating part (71) and a second rotating part (75).
[0053] And, the first rotating part (71) is provided at the upper front of the support part (60).
[0054] And, the second rotating part (75) is provided at the upper rear of the support part (60) and is coupled to the rear of the first rotating part (71).
[0055] Meanwhile, on the upper part of the first rotating part (71), a first protrusion (72) is formed protruding upward to be inserted and coupled into the recessed hole (11a).
[0056] And, on the upper part of the second rotating part (75), a second protrusion (76) is formed protruding upward, which is inserted and coupled into the recessed hole (11a) and is provided at the rear of the first protrusion (72).
[0057] Meanwhile, the folding part (20) is configured to include a first inclined member (21), a second inclined member (22), a third inclined member (23), a fourth inclined member (24), and a fifth inclined member (25).
[0058] First, the lower end of the first inclined member (21) is rotatably connected to the upper end of the second inclined bar (43). At this time, the first inclined member (21) is formed to be inclined toward the upper right direction.
[0059] And, the upper portion of the second inclined member (22) is foldably connected to the first inclined member (21). At this time, the second inclined member (22) is formed to be inclined toward the lower right side.
[0060] And, the lower end of the third inclined member (23) is foldably connected to the second inclined member (22). At this time, the third inclined member (23) is formed to be inclined toward the upper right direction.
[0061] And, the fourth inclined member (24) connects the third inclined member (23) and the third inclined member (23) adjacent to the third inclined member (23). At this time, the fourth inclined member (24) is formed to be inclined toward the lower right direction.
[0062] And, the upper end of the fifth inclined member (25) is foldably connected to the third inclined member (23). At this time, the fifth inclined member (25) is formed to be inclined toward the lower right side.
[0063] Meanwhile, the above reference part (10) is configured to include a fixed block (11) and a bending member (12).
[0064] First, the fixed block (11) is formed at the lower part of the reference part (10) and coupled to the upper part of the rotating member (70). At this time, the fixed block (11) is formed in a cylindrical shape in the vertical direction.
[0065] And, the bending member (12) is formed convexly in the right direction at the rear of the fixed block (11).
[0066] Meanwhile, the above link portion (35) is configured to include a horizontal member (36) and a convex portion (37).
[0067] First, the horizontal member (36) is formed in the left-right direction at the center of the link member (35).
[0068] And, the convex portion (37) is formed convexly in the downward direction on the lower part of the horizontal member (36).
[0069] Meanwhile, a recessed hole (11a) is formed in the upper direction on the bottom surface of the fixed block (11). At this time, the upper part of the rotating member (70) is inserted and coupled into the recessed hole (11a).
[0070] And, a through hole (12a) is formed through one side of the front of the above-mentioned bending member (12) to which the second inclined member (22) and the third inclined member (23) are rotatably coupled.
[0071] Additionally, the front end of the pivot pin (91) is rotatably connected to the other side of the front of the above-mentioned bending member (12), so that a guide portion (12b) for the pivot pin (91) to rotate is formed in a curved manner. At this time, the guide portion (12b) is formed convexly in the right direction.
[0072] And, a pinhole (37a) is formed through the front of the convex portion (37) to which the rear end of the pivot pin (91) is connected.
[0073] And, on one side of the front of the horizontal member (36), a through-hole (36a) is formed corresponding to the through-hole (12a) so that the second inclined member (22) and the third inclined member (23) are rotatably connected.
[0074] Additionally, a horizontal hole (36b) is formed through the front side of the horizontal member (36) to which the front end of the movable pin (92) is movably connected. At this time, the horizontal hole (36b) is formed in the left and right directions.
[0075] And, the rear end of the above-mentioned moving pin (92) is connected to the fourth inclined member (24).
[0076] FIG. 9 is an exploded perspective view of the weight (50) shown in FIG. 1.
[0077] Referring to FIG. 9, the weight (50) is configured to include a movable frame (51), a first movable block (53), and a second movable block (54).
[0078] First, the moving frame (51) is connected to the bottom of the rail section (45) and moves up and down along the supporter (61) by the rail section (45).
[0079] And, the first moving block (53) is coupled to the lower part of the moving frame (51) and moves up and down along the supporter (61) by the moving frame (51).
[0080] First, the second moving block (54) is coupled to the lower part of the first moving block (53) and moves up and down along the supporter (61) by the first moving block (53).
[0081] FIG. 10 is an exploded perspective view of the guide member (80) shown in FIG. 1.
[0082] Referring to FIG. 10, the guide member (80) is configured to include a first coupling member (81), a second coupling member (85), and a guide plate (86).
[0083] First, the first connecting member (81) is connected to the fastening block (62).
[0084] And, the second connecting member (85) is provided at the lower part of the first connecting member (81).
[0085] And, the guide plate (86) is coupled between the first coupling member (81) and the second coupling member (85) to guide the raising and lowering of the rail portion (45). At this time, the guide plate (86) is formed in the shape of a disc having a predetermined thickness.
[0086] Meanwhile, a connecting bracket (52) to which the lower end of the rail portion (45) is connected is formed at the front and rear of the upper part of the movable frame (51). At this time, the connecting bracket (52) is formed in the shape of a square plate in the vertical direction.
[0087] Meanwhile, a first inclined bar (42) is formed at an angle at the lower part of the connecting member (41), with its lower end rotatably connected to the upper end of the rail part (45). At this time, the first inclined bar (42) is formed at an angle toward the lower right side.
[0088] Additionally, a second inclined bar (43) is formed at an angle on the upper part of the first inclined bar (42), with its upper end rotatably connected to one side of the folding part (20). At this time, the second inclined bar (43) is formed at an angle toward the lower right side. Furthermore, the angle of inclination of the second inclined bar (43) is formed to be greater than the angle of inclination of the first inclined bar (42).
[0089] Meanwhile, the first coupling member (81) is configured to include a fastening body (82) and a main body (84).
[0090] First, the fastening body (82) is coupled to the fastening block (62). At this time, the fastening body (82) is formed in the shape of a disc having a predetermined thickness.
[0091] And, the main body (84) is formed at the lower part of the fastening body (82). At this time, the main body (84) is formed in a cylindrical shape in the vertical direction.
[0092] Meanwhile, a through hole (86a) into which the main body (84) is inserted is formed through the upper surface of the guide plate (86).
[0093] Additionally, plate portions (87) are formed at the front and rear of the guide plate (86), respectively. At this time, the plate portions (87) are formed in the shape of a plate material having a predetermined thickness.
[0094] And, a guide hole (87a) is formed through the upper surface of the plate portion (87) to guide the raising and lowering of the rail portion (45).
[0095] Meanwhile, on the bottom surface of the first rotating part (71), a first insertion hole (71a) is formed by being recessed upwards, into which the upper end of the first insertion member (66) is inserted and coupled.
[0096] And, a bending member insertion hole (71b) into which the bending member (67) is inserted is formed by being sunk upward in the upper part of the first insertion hole (71a).
[0097] And, a first insertion hole (71c) into which the lower end of the shaft portion (68) is inserted is formed by being sunk upward in the upper part of the above-mentioned bending member insertion hole (71b).
[0098] And, a second insertion hole (71d) into which the second insertion member (69) is inserted is formed on the upper part of the first insertion hole (71c).
[0099] And, a second insertion hole (71e) into which the upper end of the shaft portion (68) is inserted is formed by being sunk upward in the upper part of the second insertion hole (71d).
[0100] And, a plurality of first brackets (62a) are formed on one side of the above-mentioned fastening block (62).
[0101] And, on one side of the above-mentioned fastening body (82), a plurality of second brackets (83) that are coupled to the first bracket (62a) are formed.
[0102] Meanwhile, a seating portion (82a) on which the fastening block (62) is seated is formed by being recessed downward in the center of the upper surface of the fastening body (82).
[0103] And, a fixing hole (84a) into which the supporter (61) is inserted is formed through the center of the bottom surface of the main body (84).
[0104] And, a fixing hole (85a) into which the supporter (61) is inserted is formed through the center of the upper surface of the second coupling member (85).
[0105] Meanwhile, the operating principle of the mounting bracket (1) to which a counterbalance is applied according to one embodiment of the present invention is as follows.
[0106] FIG. 11 is a perspective view of a stand (1) with a counterbalance applied when the folding part (20) rotates clockwise.
[0107] Referring to FIG. 11, when the mounting part (30) rotates clockwise, the folding part (20) rotates clockwise with respect to the reference part (10) by the mounting part (30).
[0108] And, when the folding part (20) rotates clockwise, the link part (35) rotates clockwise with respect to the center axis of the penetration part (36a) by the folding part (20).
[0109] And, when the link part (35) rotates clockwise, the moving pin (92) moves the horizontal hole (36b) of the link part (35) at an angle toward the right and lower direction.
[0110] And, the pivot pin (91) rotates clockwise along the guide portion (12b) when the link portion (35) rotates clockwise.
[0111] And, the weight portion (40) is raised and lowered so as to balance the left and right sides with the mounting portion (30) when the folding portion (20) rotates clockwise.
[0112] Specifically, the connecting member (41) is raised by the folding part (20) when the folding part (20) rotates clockwise.
[0113] At this time, the connecting member (41) can rotate clockwise by the rotational force of the folding part (20) when the folding part (20) rotates clockwise.
[0114] And, when the connecting member (41) is raised, the rail part (45) is raised by the connecting member (41).
[0115] And, when the weight (50) is raised by the rail part (45), the weight (50) is raised by the rail part (45).
[0116] Through this, the folding part (20) can maintain a constant balance and stably support an object mounted on the mounting part (30).
[0117] FIG. 12 is a perspective view of a stand (1) with a counterbalance applied when the folding part (20) is folded and rotated clockwise.
[0118] Referring to FIG. 12, when the folding part (20) is folded and rotated clockwise, the link part (35) rotates clockwise with respect to the center axis of the through part (36a) by the folding part (20).
[0119] In a stand (1) with a counterbalance applied according to one embodiment of the present invention, the folding part (20) is formed to be foldable in a scissor structure, and the folding part (20) is formed to be rotatable around a reference part (10). When the folding part (20) rotates, a link part (35) that rotates along the reference part (10) is provided, and a mounting part (30) on which an object is mounted is provided on the other side of the folding part (20). When the folding part (20) rotates by the mounting part (30), a weight part (40) is provided on one side of the folding part (20) to maintain balance with the mounting part (30). Thus, even when the folding part (20) is folded or rotated, the folding part (20) does not tilt to one side, and the object can be mounted stably.
[0120] In addition, in a stand (1) with a counterbalance applied according to an embodiment of the present invention, a folding part (20) formed to be foldable is rotatably coupled to a reference part (10) with the reference part (10) as the center, and a link part (35) is rotatably coupled between the reference part (10) and the folding part (20) along a guide part (12b) of the reference part (10), so that when the folding part (20) rotates, the link part (35) rotates by the folding part (20), and the balance of the folding part (20) can be maintained at a constant level, thereby providing the effect of stably supporting an object.
[0121] In addition, in a mounting bracket (1) with a counterbalance applied according to an embodiment of the present invention, a connecting member (41) is rotatably coupled to one side of a folding part (20), a rail part (45) is movably coupled to the lower end of the connecting member (41), and a weight (50) is movably coupled to the lower end of the rail part (45) along a support part (60). When the folding part (20) is folded or rotated by the mounting part (30), the connecting member (41) and the rail part (45) move up and down by the folding part (20), and the weight (50) moves up and down by the rail part (45), thereby maintaining the balance of the folding part (20) at a constant level, so that the user can easily adjust the angle of the object.
[0122] As described above, the main technical concept of the present invention is to provide a stand (1) with a counterbalance applied, and the embodiment described above with reference to the drawings is merely one embodiment, and the true scope of the rights of the present invention is based on the patent claims, but extends to equivalent embodiments that may exist in various forms. Explanation of the symbols
[0123] 1: Counterbalanced stand 10: Reference part 11: Fixed block 11a: Recess hole 12: Bent member 12a: Through hole 12b: Guide 20: Folding section 21: First inclined member 22: Second inclined member 23: Third inclined member 24: 4th inclined member 25: 5th inclined member 30: Mounting part 35: Link part 36: Horizontal member 36a: Penetration 36b: Horizontal hole 37: Convex part 37a: Pinhole 40: Weight part 41: Connecting member 42: First inclined bar 43: 2nd inclined bar 45: Rail section 50: Weight 51: Moving frame 52: Connecting bracket 53: First movable block 54: Second moving block 60: Support part 61: Supporter 62: Connecting Block 62a: First bracket 63: First shaft 64: Second Blessing 65: Third Blessing 66: First insertion member 67: Bending member 68: Shaft portion 69: Second insertion member 70: Rotating member 71: First rotating part 71a: First insertion hole 71b: Bent member insertion hole 71c: First insertion hole 71d: Second insertion hole 71e: Second insertion hole 72: First protrusion 75: Second rotating part 76: Second protrusion 80: Guide member 81: First connecting member 82: Fastening body 82a: Seating part 83: Second bracket 84: Main body 84a: Fixing hole 85: Second connecting member 85a: Fixing hole 86: Guide plate 86a: Through hole 87: Plate part 87a: Guide hole 91: Rotation pin 92: Moving pin
Claims
Claim 1 A support member (60) mounted on the ground, comprising: a reference member (10); a folding member (20) hinged to the rear of the reference member (10) so as to be rotatable around the reference member (10) and formed to be foldable or unfoldable; a mounting member (30) coupled to the other side of the folding member (20) so as to be mounted on an object; a link member (35) hinged to the reference member (10) and the folding member (20) so as to be rotatable around the reference member (10), and which rotates in the rotational direction of the folding member (20) by the folding member (20) when the folding member (20) rotates by the mounting member (30); and a weight member (40) coupled to one side of the folding member (20) to balance the left and right sides with the mounting member (30) when the folding member (20) rotates; The apparatus further comprises: a pivot member (70) rotatably coupled to the upper part of the support member (60) and coupled to the reference member (10); a guide member (80) coupled to the center of the support member (60) to guide the weight member (40); a pivot pin (91) having its front end rotatably coupled to the reference member (10) and its rear end coupled to the link member (35); and a movable pin (92) having its front end movably coupled to the link member (35) along the link member (35) and its rear end coupled to the folding member (20); wherein the weight member (40) comprises a connecting member (41) having its upper end rotatably coupled to one side of the folding member (20) and moving up and down by the folding member (20); and a rail member (45) having its upper end coupled to the lower end of the connecting member (41) and moving up and down by the connecting member (41). A counterbalanced mounting bracket characterized by including: a weight (50) coupled to the lower end of the rail portion (45) and moving up and down along the support portion (60) by the rail portion (45). Claim 2 delete Claim 3 In claim 1, a first inclined bar (42) is formed inclinedly at the lower end of the connecting member (41), with the lower end rotatably coupled to the upper end of the rail part (45), and a second inclined bar (43) is formed inclinedly at the upper end of the first inclined bar (42), with the upper end rotatably coupled to one side of the folding part (20); the support part (60) includes a supporter (61) mounted on the ground; and a fastening block (62) fixedly coupled to the center of the outer surface of the supporter (61); the rotating member (70) includes a first rotating part (71) provided at the upper front of the support part (60); and a second rotating part (75) provided at the upper rear of the support part (60) and coupled to the rear of the first rotating part (71); and the folding part (20) includes a first inclined member (21) with the lower end rotatably coupled to the upper end of the second inclined bar (43); A stand with a counterbalance applied, characterized by comprising: a second inclined member (22) whose upper portion is foldably coupled to the first inclined member (21); a third inclined member (23) whose lower portion is foldably coupled to the second inclined member (22); a fourth inclined member (24) for connecting the third inclined member (23) and the third inclined member (23) adjacent to the third inclined member (23); and a fifth inclined member (25) whose upper portion is foldably coupled to the third inclined member (23). Claim 4 A stand with a counterbalance applied, characterized in that, in claim 1, the reference part (10) comprises a fixed block (11) formed at the lower part of the reference part (10) and coupled to the upper part of the rotating member (70); and a curved member (12) formed convexly in the right direction at the rear of the fixed block (11); and the link part (35) comprises a horizontal member (36) formed in the left-right direction at the center of the link part (35); and a convex part (37) formed convexly in the lower direction at the lower part of the horizontal member (36). Claim 5 In claim 4, a recessed hole (11a) is formed in the upward direction on the bottom surface of the fixed block (11), a through hole (12a) is formed through one side of the front of the bending member (12) to which the second inclined member (22) and the third inclined member (23) are rotatably coupled, and a guide portion (12b) for the rotation of the rotation pin (91) is formed in a curved shape on the other side of the front of the bending member (12) to which the front end of the rotation pin (91) is rotatably coupled, and a pin hole (37a) to which the rear end of the rotation pin (91) is coupled is formed through the front of the convex portion (37), and a through portion (36a) corresponding to the through hole (12a) is formed through one side of the front of the horizontal member (36) to which the second inclined member (22) and the third inclined member (23) are rotatably coupled, and the A mounting bracket with a counterbalance applied, characterized in that a horizontal hole (36b) is formed through the front side of the horizontal member (36) to which the front end of the movable pin (92) is movably connected, and the rear end of the movable pin (92) is connected to the fourth inclined member (24). Claim 6 In claim 1, the weight (50) comprises: a movable frame (51) coupled to the lower end of the rail portion (45) and moving up and down along the supporter (61) by the rail portion (45); a first movable block (53) coupled to the lower end of the movable frame (51) and moving up and down along the supporter (61) by the movable frame (51); and a second movable block (54) coupled to the lower end of the first movable block (53) and moving up and down along the supporter (61) by the first movable block (53); and the guide member (80) comprises a first coupling member (81) coupled to the fastening block (62); and a second coupling member (85) provided at the lower end of the first coupling member (81). A counterbalanced mounting bracket comprising: a guide plate (86) coupled between the first coupling member (81) and the second coupling member (85) to guide the raising and lowering of the rail portion (45); and a connecting bracket (52) formed at the front and rear of the upper part of the movable frame (51) to which the lower end of the rail portion (45) is coupled.
Citation Information
Patent Citations
Medical stand device
JP1998272143A
Balance mechanism and mobile medical device having the same
US20200229894A1