Auxiliary device for splicing door and window partition profiles

Through the electric push rod-driven placement plate and gear rod system, the precise butt and stable clamping of the profile are achieved, the position difference and shaking problems during the splicing of the profile are solved, the splicing effect is improved and the surface of the profile is protected.

CN223084148UActive Publication Date: 2025-07-11NANJING CREWELL ENERGY SAVING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422322163.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-07-11
Estimated Expiration
2034-09-24

AI Technical Summary

Technical Problem

Existing door and window partition profiles are prone to positional differences when splicing, affecting the accuracy of splicing.

Method used

Using an auxiliary device including an adjustment mechanism and a correction mechanism, the placement plate is driven to move through an electric push rod, and the tooth plate is inserted into the slot to drive the gear rod member to rotate, and the steel cable connected to the gear rod member is used to realize the synchronous movement of the clamp member and the correction and clamping of the profile.

Benefits of technology

提高了型材拼接的精准性,减少了型材晃动对拼接效果的影响,并通过滚轮减少摩擦力,橡胶块保护型材表面。

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Abstract

The utility model discloses an auxiliary device for splicing door and window partition profiles, which comprises an adjusting mechanism, the adjusting mechanism comprises two placing plates, the opposite ends of the two placing plates are connected by arranging an electric push rod, the opposite ends of the two placing plates are both fixedly provided with toothed plates, and the toothed plates are connected with the electric push rod. Inserting grooves corresponding to the toothed plates are formed in the opposite ends of the two containing plates, and the toothed plates are movably inserted into the inserting grooves. The correcting mechanism comprises a gear rod piece, a first assembling groove and a second assembling groove are formed in the side wall of the placing plate, the gear rod piece is rotationally arranged in the first assembling groove, and the toothed plate is meshed with the gear rod piece; when the device is used, when the gear rod piece rotates, the steel cable is wound, so that the winding piece is pulled to rotate through the steel cable, the gear rod piece and the winding piece are promoted to rotate synchronously, the clamping piece is promoted to move to correct the position of a profile, and then the splicing accuracy of two plates is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of profile splicing auxiliary devices, and particularly relates to an auxiliary device for splicing door and window partition profiles. Background Art

[0002] A partition refers to a facade specifically used for separating indoor spaces, with more flexible applications, such as partition walls, partitions, movable display boards, movable screens, movable partitions, movable screens, movable sound insulation walls, etc. When installing door and window partition profiles, the profiles need to be spliced together.

[0003] When some existing profiles are spliced, the operator needs to first fix the two profiles on the device, and then butt the two profiles together for splicing. However, when the two profiles are spliced together, the positions are prone to deviation, which is likely to affect the accuracy of profile splicing. Content of the Utility Model

[0004] The purpose of this part is to outline some aspects of the embodiments of the utility model and briefly introduce some preferred embodiments. Simplifications or omissions may be made in this part, as well as in the abstract and the name of the utility model, to avoid obscuring the purpose of this part, the abstract, and the name of the utility model, and such simplifications or omissions shall not be used to limit the scope of the utility model.

[0005] Therefore, the purpose of the utility model is to provide an auxiliary device for splicing door and window partition profiles, which can solve the problem that when some existing profiles are spliced, the operator needs to first fix the two profiles on the device, and then butt the two profiles together for splicing. However, when the two profiles are spliced together, the positions are prone to deviation, which is likely to affect the accuracy of profile splicing.

[0006] To solve the above technical problems, the utility model provides an auxiliary device for splicing door and window partition profiles, adopting the following technical scheme: including an adjustment mechanism, which includes two placement plates, and the relative ends of the two placement plates are connected by an electric push rod. Tooth plates are fixedly arranged at the relative ends of the two placement plates, and slots corresponding to the tooth plates are opened at the relative ends of the two placement plates. The tooth plates are movably inserted into the slots.

[0007] A correction mechanism, which includes a gear rod. A first assembly groove and a second assembly groove are opened on the side wall of the placement plate. The gear rod is rotatably arranged in the first assembly groove, and the tooth plate meshes with the gear rod. A winding member is rotatably arranged in the second assembly groove, and the winding member is connected to the gear rod by a steel cable. Clamping members are threadedly sleeved at both ends of the gear rod and the winding member. A chute corresponding to the clamping member is opened on the inner side of the placement plate, and the clamping member is slidably matched with the inner wall of the chute.

[0008] By adopting the above technical solution, in this solution, two profiles are first placed in two placement plates respectively, and then the electric push rod is started. The electric push rod pulls the two placement plates to move and makes the two profiles approach each other. As the placement plates move, the toothed plate is inserted into the slot and drives the gear rod to rotate. When the gear rod rotates, it makes the two clamping members move synchronously and corrects and clamps the position of the profile.

[0009] Optionally, the placement plate includes a horizontal plate and a vertical plate, and the shapes of both the horizontal plate and the vertical plate are "concave" shaped.

[0010] By adopting the above technical solution, in this solution, the cooperation of the horizontal plate and the vertical plate facilitates accommodating the bottom and side parts of the profile.

[0011] Optionally, rollers are arranged on the bottom surface of the horizontal plate.

[0012] By adopting the above technical solution, in this solution, the rollers facilitate reducing the friction between the horizontal plate and the ground, thereby reducing the pulling force required when the electric push rod pulls the placement plate to move.

[0013] Optionally, the slot communicates with the first assembly groove, the first assembly groove is opened on the side surface of the horizontal plate, and the second assembly groove is opened on the side surface of the vertical plate.

[0014] By adopting the above technical solution, in this solution, when the toothed plate is inserted into the slot through the communication between the slot and the first assembly groove, the toothed plate can be engaged with the gear rod, thereby facilitating driving the gear rod to rotate.

[0015] Optionally, the gear rod includes a double threaded rod and two transmission gears. The two transmission gears are respectively fixedly sleeved at both ends of the double threaded rod, and the transmission gears are engaged with the toothed plate.

[0016] By adopting the above technical solution, in this solution, the toothed plate facilitates driving the transmission gear and the double threaded rod to rotate. As the double threaded rod rotates, the clamping members at both ends of it move towards the middle of the double threaded rod simultaneously.

[0017] Optionally, the winding member is of a round rod structure, and both the double threaded rod and the winding member include two sections of external threads with opposite thread directions.

[0018] By adopting the above technical solution, in this solution, by setting two sections of external threads with opposite thread directions, when the winding member and the double threaded rod rotate, the clamping members at both ends of them move in opposite directions, thereby realizing the clamping and release of the profile.

[0019] Optionally, the clamping member includes an internal thread ring and a movable plate. The internal thread ring is movably sleeved on the double threaded rod and the winding member and is threadedly connected to the double threaded rod and the winding member. The movable plate is movably arranged in the chute and is fixedly connected to the outer wall of the internal thread ring.

[0020] By adopting the above technical solution, when the double threaded rod and the winding member rotate in this solution, the inner threaded ring drives the movable plate to slide along the inner wall of the chute, so that it is convenient to clamp and release the profile through the movable plate.

[0021] Optionally, a rubber block is fixedly arranged on the surface of the movable plate away from the inner side wall of the placing plate.

[0022] By adopting the above technical solution, this solution facilitates reducing the possibility of damage to the surface of the profile clamped by the movable plate through the rubber block.

[0023] In summary, the utility model includes at least one of the following beneficial effects:

[0024] When the gear rod rotates, the steel cable is wound, so that the winding member is driven to rotate through the steel cable, so as to promote the synchronous rotation of the gear rod and the winding member, and promote the clamping member to move to correct the position of the profile, thereby increasing the accuracy when two plates are spliced;

[0025] The electric push rod is used to pull the two placing plates to move and make the two profiles approach each other. As the placing plates move, the toothed plate is inserted into the slot and drives the gear rod to rotate, and at the same time, the winding member rotates, so as to clamp and fix the profile through the clamping member, thereby reducing the possibility that the shaking of the profile affects the splicing effect of the profile. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for describing the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present utility model, and those of ordinary skill in the art can also obtain other drawings based on these drawings without creative efforts.

[0027] Figure 1 It is a three-dimensional structure schematic diagram of the present utility model;

[0028] Figure 2 It is a partial three-dimensional structure sectional view of the present utility model;

[0029] Figure 3 It is a partial three-dimensional unfolded structure sectional view of the present utility model.

[0030] Explanation of reference numerals: 100, adjustment mechanism; 101, placing plate; 101a, horizontal plate; 101b, vertical plate; 102, electric push rod; 103, toothed plate; 104, slot.

[0031] 200. Calibration mechanism; 201. Gear rod member; 201a. Double threaded rod; 201b. Transmission gear; 202. First assembly groove; 203. Second assembly groove; 204. Winding member; 205. Steel cable; 206. Clamping member; 206a. Internal thread ring; 206b. Movable plate; 206c. Rubber block; 207. Slide groove. Detailed implementation mode

[0032] The following will further elaborate on the present utility model in conjunction with the attached Figures 1 - 3 drawings.

[0033] Example 1. Refer to Figures 1 - 3 , in this example, in order to solve the problem that when splicing some existing profiles, the operator needs to first fix the two profiles on the device and then butt the two profiles together for splicing. However, when the two profiles are butted together, the position is prone to deviation, which is likely to affect the accuracy of profile splicing. The present utility model discloses an auxiliary device for splicing profiles of door and window partitions,

[0034] including an adjustment mechanism 100, which includes two placement plates 101. The placement plates 101 include a horizontal plate 101a and a vertical plate 101b. The shapes of the horizontal plate 101a and the vertical plate 101b are both "concave" shaped. The cooperation of the horizontal plate 101a and the vertical plate 101b facilitates accommodating the bottom and side parts of the profile, and it is convenient to butt the two profiles together as the placement plate 101 moves.

[0035] The relative ends of the two placement plates 101 are connected by an electric push rod 102. First, place the two profiles in the two placement plates 101 respectively, and then start the electric push rod 102. The electric push rod 102 pulls the two placement plates 101 to move and makes the two profiles approach each other.

[0036] Tooth plates 103 are fixedly arranged at the relative ends of the two placement plates 101, and slots 104 corresponding to the tooth plates 103 are opened at the relative ends of the two placement plates 101. The tooth plates 103 are movably inserted into the slots 104. As the placement plates 101 move, the tooth plates 103 are inserted into the slots 104, and the cooperation of the tooth plates 103 and the slots 104 facilitates increasing the stability of the two placement plates 101 when moving.

[0037] A calibration mechanism 200, which includes a gear rod member 201. The electric push rod 102 pulls the two placement plates 101 to move and makes the two profiles approach each other. As the placement plates 101 move, the tooth plates 103 are inserted into the slots 104 and drive the gear rod member 201 to rotate.

[0038] The side wall of the placement plate 101 is provided with a first assembly groove 202 and a second assembly groove 203. The gear rod 201 is rotatably arranged in the first assembly groove 202, and the first assembly groove 202 facilitates the assembly of the gear rod 201. The toothed plate 103 meshes with the gear rod 201, and a winding member 204 is rotatably arranged in the second assembly groove 203, and the second assembly groove 203 facilitates the assembly of the winding member 204.

[0039] The winding member 204 and the gear rod 201 are connected by a steel cable 205. Thread sleeves 206 are sleeved on both ends of the gear rod 201 and the winding member 204. When the gear rod 201 rotates, it causes the two clamping members 206 to move synchronously to correct and clamp the position of the profile, and winds the steel cable 205 as the gear rod 201 rotates. Thus, the steel cable 205 pulls the winding member 204 to rotate and causes the two clamping members 206 to move to clamp and fix the side wall of the profile.

[0040] The gear rod 201 includes a double threaded rod 201a and two transmission gears 201b. The two transmission gears 201b are respectively fixedly sleeved on both ends of the double threaded rod 201a. The transmission gears 201b mesh with the toothed plate 103. The toothed plate 103 facilitates driving the transmission gears 201b and the double threaded rod 201a to rotate. As the double threaded rod 201a rotates, it causes the clamping members 206 at both ends to move towards the middle of the double threaded rod 201a simultaneously, thereby correcting the position of the profile and fixing the position of the profile.

[0041] The winding member 204 has a round rod structure. Both the double threaded rod 201a and the winding member 204 include external threads with opposite thread directions in two sections. By setting the external threads with opposite thread directions in two sections, when the winding member 204 and the double threaded rod 201a rotate, the clamping members 206 at both ends move in the opposite direction, thereby realizing the clamping and releasing of the profile.

[0042] Sliding grooves 207 corresponding to the clamping members 206 are provided inside the placement plate 101. The clamping members 206 are in sliding fit with the inner walls of the sliding grooves 207. The sliding grooves 207 facilitate the limitation of the clamping members 206, so that the clamping members 206 slide along the inner walls of the sliding grooves 207 when the gear rod 201 and the winding member 204 rotate.

[0043] The specific working principle is as follows: As the placement plate 101 moves, it causes the toothed plate 103 to insert into the slot 104 and drives the gear rod 201 to rotate. When the gear rod 201 rotates, it causes the two clamping members 206 to move synchronously to correct and clamp the position of the profile, and winds the steel cable 205 as the gear rod 201 rotates. Thus, the steel cable 205 pulls the winding member 204 to rotate and causes the two clamping members 206 to move to clamp and fix the side wall of the profile, thereby increasing the accuracy when two plates are spliced.

[0044] Example 2. Refer to Figures 2 - 3 , in this embodiment, in order to solve the problem that when some existing profiles are spliced, the stability of the splicing of the two profiles is easily affected when the profiles shake. Based on the same concept as in the above-mentioned Embodiment 1, the auxiliary device for splicing profiles for doors and windows partitions further includes:

[0045] Rollers are provided on the bottom surface of the horizontal plate 101a. The rollers facilitate reducing the friction between the horizontal plate 101a and the ground, thereby reducing the pulling force required for the electric push rod 102 to pull the placing plate 101 to move.

[0046] The slot 104 communicates with the first assembly groove 202. The first assembly groove 202 is opened on the side surface of the horizontal plate 101a, and the second assembly groove 203 is opened on the side surface of the vertical plate 101b. When the toothed plate 103 is inserted into the slot 104 through the communication between the slot 104 and the first assembly groove 202, the toothed plate 103 can be engaged with the gear rod 201, thereby facilitating driving the gear rod 201 to rotate.

[0047] The specific working principle is: First, place the two profiles in the two placing plates 101 respectively, and then start the electric push rod 102. The electric push rod 102 pulls the two placing plates 101 to move and prompts the two profiles to approach. As the placing plate 101 moves, the toothed plate 103 is inserted into the slot 104 and drives the gear rod 201 to rotate to wind up the steel cable 205. Thus, the winding member 204 is driven to rotate by the steel cable 205, and the two clamping members 206 are prompted to move to clamp and fix the side walls of the profiles, thereby reducing the possibility that the shaking of the profiles affects the splicing effect of the profiles.

[0048] Example 3. Refer to Figures 2 - 3 , in this embodiment, in order to solve the problem that the surface of the profile is easily damaged when some existing auxiliary devices clamp the profile. Based on the same concept as in the above-mentioned Embodiment 1, the auxiliary device for splicing profiles for doors and windows partitions further includes:

[0049] The clamping member 206 includes an internal thread ring 206a and a movable plate 206b. The internal thread ring 206a is movably sleeved on the double threaded rod 201a and the winding member 204 and is threadedly connected to the double threaded rod 201a and the winding member 204. The movable plate 206b is movably arranged in the chute 207 and is fixedly connected to the outer wall of the internal thread ring 206a. When the double threaded rod 201a and the winding member 204 rotate, the internal thread ring 206a drives the movable plate 206b to slide along the inner wall of the chute 207, thereby facilitating the clamping and releasing of the profile by the movable plate 206b.

[0050] A rubber block 206c is fixedly arranged on the side of the movable plate 206b away from the inner wall of the placing plate 101, and the rubber block 206c facilitates reducing the possibility of damage to the surface of the profile clamped by the movable plate 206b.

[0051] The specific working principle is as follows: When the double threaded rod 201a and the winding member 204 rotate, the internal thread ring 206a drives the movable plate 206b to slide along the inner wall of the chute 207, so that the movable plate 206b facilitates the clamping and releasing of the profile. At the same time, the rubber block 206c facilitates reducing the possibility of damage to the surface of the profile clamped by the movable plate 206b.

[0052] The above are all the preferred embodiments of the present invention, and the protection scope of the present invention is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present invention should be covered within the protection scope of the present invention.

Claims

1. An auxiliary device for splicing profiles of doors, windows and partitions, characterized in that: including, a regulating mechanism (100), which includes two placing plates (101). The opposite ends of the two placing plates (101) are connected by an electric push rod (102). Tooth plates (103) are fixedly arranged at the opposite ends of the two placing plates (101). Slots (104) corresponding to the tooth plates (103) are opened at the opposite ends of the two placing plates (101). The tooth plates (103) are movably inserted into the slots (104); a correcting mechanism (200), which includes a gear rod member (201). A first assembly groove (202) and a second assembly groove (203) are opened on the side wall of the placing plate (101). The gear rod member (201) is rotatably arranged in the first assembly groove (202). The tooth plate (103) meshes with the gear rod member (201). A winding member (204) is rotatably arranged in the second assembly groove (203). The winding member (204) is connected with the gear rod member (201) by a steel cable (205). Clamping members (206) are threadedly sleeved at both ends of the gear rod member (201) and the winding member (204). A sliding groove (207) corresponding to the clamping member (206) is opened on the inner side of the placing plate (101). The clamping member (206) is slidably matched with the inner wall of the sliding groove (207).

2. The auxiliary device for splicing profiles of doors, windows and partitions according to claim 1, wherein: The placing plate (101) includes a horizontal plate (101a) and a vertical plate (101b). The shapes of the horizontal plate (101a) and the vertical plate (101b) are both "concave" shaped.

3. The auxiliary device for splicing profiles of doors, windows and partitions according to claim 2, characterized in that: Rollers are arranged on the bottom surface of the horizontal plate (101a).

4. The auxiliary device for splicing profiles of doors, windows and partitions according to claim 3, wherein: The slot (104) communicates with the first assembly groove (202). The first assembly groove (202) is opened on the side surface of the horizontal plate (101a). The second assembly groove (203) is opened on the side surface of the vertical plate (101b).

5. The auxiliary device for splicing profiles of doors, windows and partitions according to claim 1, wherein: The gear rod member (201) includes a double threaded rod (201a) and two transmission gears (201b). The two transmission gears (201b) are respectively fixedly sleeved at both ends of the double threaded rod (201a). The transmission gear (201b) meshes with the tooth plate (103).

6. The auxiliary device for splicing profiles of doors, windows and partitions according to claim 5, characterized in that: The winding member (204) is of a round rod structure. Both the double threaded rod (201a) and the winding member (204) include two sections of external threads with opposite thread directions.

7. The auxiliary device for splicing profiles of doors, windows and partitions according to claim 6, characterized in that: The clamping member (206) includes an internal thread ring (206a) and a movable plate (206b). The internal thread ring (206a) is movably sleeved on the double threaded rod (201a) and the winding member (204) and is threadedly connected with the double threaded rod (201a) and the winding member (204). The movable plate (206b) is movably arranged in the sliding groove (207) and is fixedly connected with the outer wall of the internal thread ring (206a).

8. The auxiliary device for splicing profiles of doors, windows and partitions according to claim 7, wherein: A rubber block (206c) is fixedly arranged on the surface of the movable plate (206b) away from the inner side wall of the placing plate (101).