Patent Description:
In addition to the basic function of clamping, for the existing manual clamps, during use, the magnitude of the clamping force are often difficult to be determined, which results in the blindness of clamping and makes it difficult to accurately achieve the purpose of clamping.

Examples of a clamping force visualization device and a clamp according to the prior art is known from <CIT>, <CIT>, <CIT>, and <CIT>. Document <CIT> discloses the preamble of claim <NUM>.

The technical problem to be solved and the technical task proposed in some embodiments of the present disclosure are to overcome the defect that it is difficult to determine the magnitude of a clamping force during use of an existing manual clamp; and a clamping force visualization clamp is provided, such that the magnitude of the clamping force is intuitively seen and read during clamping, thereby achieving accurate clamping.

In order to achieve the described object, a clamping force visualization device of some embodiments of the present disclosure includes a first clamping body for clamping an object, wherein the first clamping body is telescopically assembled on a base, an elastic element is provided between the first clamping body and the base, a clamping force scale and a reading indicator are respectively provided on the first clamping body and the base, and when the first clamping body clamps the object, the elastic element measures a clamping force, and the reading indicator points to the clamping force scale for reading.

As a preferred technical means of the clamping force visualization device, the base and the first clamping body are sleeved together, the base or the first clamping body located at an outer side is provided with the reading indicator or the clamping force scale, and the first clamping body or the base located at an inner side is provided with the visible clamping force scale or the reading indicator.

As a preferred technical means of the clamping force visualization device, the base is provided with an axial hole, the first clamping body is provided with a telescopic section, and the axial hole is sleeved on the telescopic section.

As a preferred technical means of the clamping force visualization device, the telescopic section is provided with an inner hole, and one end of the elastic element is supported at a bottom of the axial hole, and the other end of the elastic element is supported at a bottom of the inner hole.

As a preferred technical means of the clamping force visualization device, the base or the first clamping body is provided with a column, and the elastic element is a helical compression spring sleeved on the column.

As a preferred technical means of the clamping force visualization device, a window is provided on the base or the first clamping body at the outer side, and the reading indicator or the clamping force scale is provided at an edge of the window.

As a preferred technical means of the clamping force visualization device, a front end edge of the base or the first clamping body located at the outer side is used as the reading indicator, and the clamping force scale is provided on the first clamping body or the base located at the inner side.

According to the invention an adjustment screw is provided for the first clamping body, the adjustment screw passes through the first clamping body and is connected to the base, and the adjustment screw is screwed to adjust an initial pressure of the first clamping body on the elastic element.

In order to achieve the described object, a clamping force visualization clamp of some embodiments of the present disclosure includes the clamping force visualization device according to some embodiments of the present disclosure and a second clamping body (<NUM>) cooperating with the first clamping body to achieve clamping.

As a preferred technical means of the clamping force visualization clamp, the base is provided on a first arm, the second clamping body is provided on a second arm, the first arm is provided with a fixed handle in an integrated extending manner, the second arm is fixed on a guide rod, the guide rod is provided on the first arm in a penetrating manner, the first arm is provided with a force-applying handle, an unlocking handle, a force-applying clamping piece for applying a force to the guide rod, and a locking clamping piece for locking the guide rod on the first arm; the force-applying handle is linked with the force-applying clamping piece, such that when the force-applying handle and the fixed handle are gripped, the guide rod is caused to slide, and the second arm moves close to the first arm; and the unlocking handle is linked with the locking clamping piece, such that when the unlocking handle and the fixed handle are gripped, a locking of the locking clamping piece on the guide rod is released.

As a preferred technical means of the clamping force visualization clamp, the base is provided on a first arm, the second clamping body is provided on a second arm, the first arm is connected with a clamping handle and an unlocking handle, the second arm is fixed on a guide rod, and the guide rod is provided on the first arm in a penetrating manner.

As a preferred technical means of the clamping force visualization clamp, the base is provided on a first arm, the second clamping body is provided on a second arm, a first handle is extended from the first arm, a second handle is extended from the second arm, the first arm and the second arm are connected by a pivot, and a locking mechanism and an unlocking mechanism are provided between the first handle and the second handle.

As a preferred technical means of the clamping force visualization clamp, the base and the first arm are made integrally together.

As a preferred technical means of the clamping force visualization clamp, the base is assembled on the first arm.

As a preferred technical means of the clamping force visualization clamp, the base is mounted on the first arm in a snap-fit manner.

As a preferred technical means of the clamping force visualization clamp, the base is assembled on the first arm by a pin bolt.

In some embodiments of the present disclosure, a clamping body is telescopically assembled on a base, an elastic element is provided between the clamping body and the base, and a clamping force scale and a reading indicator are respectively provided on the clamping body and the base; and when an object is clamped, the elastic element measures a clamping force and the reading indicator points to the clamping force scale for reading, so that the magnitude of the clamping force can be intuitively seen and read during clamping, thereby realizing accurate clamping.

Hereinafter, some embodiments of the present disclosure are further described in combination with the drawings of the description.

A clamping force visualization device as shown in <FIG> and <FIG> includes a first clamping body <NUM> for clamping an object; the first clamping body <NUM> is telescopically assembled on a base <NUM>, an elastic element <NUM> is provided between the first clamping body <NUM> and the base <NUM>, a clamping force scale <NUM> is provided on the first clamping body <NUM>, and a reading indicator <NUM> is provided on the base <NUM>. When the first clamping body <NUM> clamps the object, the elastic element <NUM> measures a clamping force, and the reading indicator <NUM> points to the clamping force scale <NUM> for reading, such that the magnitude of the clamping force can be intuitively seen and read, thereby achieving accurate clamping. During clamping, as the magnitude of the clamping force changes, the position of the reading indicator and the clamping force scale will change relative to each other; therefore, as a specific implementation, the positions of the reading indicator and the clamping force scale can be exchanged.

In order to achieve a compact structure and accurate measurement, the base <NUM> and the first clamping body <NUM> are sleeved together. As shown in <FIG> and <FIG>, a window <NUM> is provided on the base <NUM> located at an outer side, and reading indicator <NUM> is provided at an edge of the window; and the clamping force scale <NUM> visible through the window is provided on the first clamping body <NUM> located at an inner side. As a specific implementation, the cases may be that a window is provided on the first clamping body located at an outer side, and the reading indicator is provided at an edge of the window; and the clamping force scale visible through the window is provided on the base located at an inner side. Further, the positions of the reading indicator and the clamping force scale may be exchanged regardless of which one of the base and the first clamping body is at the outer side.

In addition, as shown in <FIG>, a front end edge of the base <NUM> located at the outer side is used as the reading indicator, and the clamping force scale is provided on the first clamping body located at the inner side. Obviously, the cases may be that the front end edge of the first clamping body located at the outer side is used as the reading indicator, and the clamping force scale is provided on the base located at the inner side.

In order to avoid the inaccuracy of measurement of the clamping force caused by shaking of the clamping body, the base <NUM> is provided with an axial hole <NUM>, the first clamping body <NUM> is provided with a telescopic section <NUM>, and the axial hole <NUM> is sleeved on the telescopic section <NUM>. Further, the telescopic section <NUM> is provided with an inner hole <NUM>, one end of the elastic element <NUM> is supported at a bottom of the axial hole <NUM>, and the other end of the elastic element <NUM> is supported at a bottom of the inner hole <NUM>. The base is provided with a column <NUM>, and the elastic element <NUM> is a helical compression spring sleeved on the column <NUM>, so that the helical compression spring is supported by the column while ensuring a compact structure, thereby avoiding inaccuracy of measurement caused by bending of the helical compression spring when the helical compression spring is pressed. In view of the supporting function of the column of the helical compression spring, the column may also be provided on the first clamping body.

In order to calibrate and adjust the initial pressure of the elastic element, an adjustment screw <NUM> is provided for the first clamping body, and the adjustment screw <NUM> passes through the first clamping body and is connected to the base <NUM>, for maintaining the assembly relationship of the first clamping body, the base and the elastic element; and the initial pressure of the first clamping body on the elastic element can be adjusted by screwing the adjustment screw. Depending on use requirements, the initial pressure may be zero, or a certain pressure value. In view of this, the clamping force scale and the reading indicator may be marked (such as imprinting, laser marking, pad printing, etc.) at corresponding positions after the calibration and adjustment. As shown in the figures, the first clamping body includes a pad <NUM> at an end of the first clamping body, the pad shielding the adjustment screws. Likewise, a second clamping body includes a pad at an end of the second clamping body, and the pad can increase the contact with the clamped object while protecting the surface of the clamped object.

On the basis of the described clamping force visualization device, a clamp includes the clamping force visualization device and a second clamping body <NUM> cooperating with the first clamping body <NUM> to achieve clamping, i.e. being able to be used for clamping an object, and the clamp can take various forms.

The structure form of a type of clamp is as shown in <FIG>, which is an F clamp. A first clamping body <NUM> is provided on a first arm <NUM>, a second clamping body <NUM> is provided on a second arm <NUM>, and the first arm <NUM> is provided with a fixed handle <NUM> in an integrated extending manner, the second arm <NUM> is fixed on a guide rod <NUM>, and the guide rod <NUM> is provided on the first arm <NUM> in a penetrating manner, the first arm <NUM> is provided with a force-applying handle <NUM>, an unlocking handle <NUM>, a force-applying clamping piece <NUM> for applying a force to the guide rod, and a locking clamping piece <NUM> for locking the guide rod on the first arm. The force-applying handle <NUM> is linked with the force-applying clamping piece <NUM>, such that when the force-applying handle and the fixed handle are gripped, the guide rod <NUM> is caused to slide, and the second arm <NUM> moves close to the first arm <NUM>; and the unlocking handle <NUM> is linked with the locking clamping piece <NUM>, such that when the unlocking handle and the fixed handle are gripped, a locking of the locking clamping piece on the guide rod is released, for releasing the clamping.

The structure form of another type of clamp is as shown in <FIG>. A first clamping body <NUM> is provided on a first arm <NUM>, a second clamping body <NUM> is provided on a second arm <NUM>, the first arm <NUM> is connected with a clamping handle <NUM> and an unlocking handle <NUM>, the second arm <NUM> is fixed on a guide rod <NUM>, and the guide rod <NUM> is provided on the first arm <NUM> in a penetrating manner; clamping can be achieved by operating the clamping handle <NUM>, and unlocking of the clamping can be achieved by operating the unlocking handle <NUM>, for releasing the clamping.

The structure form of a third type of clamp is as shown in <FIG>. A first clamping body <NUM> is provided on a first arm <NUM>, a second clamping body <NUM> is provided on a second arm <NUM>, a first handle <NUM> is extended from the first arm <NUM>, and a second handle <NUM> is extended from the second arm <NUM>, the first arm <NUM> and the second arm <NUM> are connected by a pivot <NUM>, a locking mechanism <NUM> and an unlocking mechanism <NUM> are provided between the first handle <NUM> and the second handle <NUM>, the locking mechanism is a ratchet-pawl mechanism, and the unlocking mechanism includes a handle. By gripping the first handle <NUM> and the second handle <NUM>, clamping is achieved and locking is achieved by the locking mechanism; and unlocking is achieved by operating the unlocking mechanism, for releasing the clamping.

Regardless which structure form the clamp takes, the base <NUM> and the first arm <NUM> can be made integrally together as shown in <FIG>. Or, the base <NUM> is assembled on the first arm <NUM>, such that the base, the first clamping body and the elastic elements form an integral structure as shown in <FIG> and <FIG> and being independent of other structures of the clamp. This independent structure has a relatively small volume, and facilitates circulation between stations when calibrating and adjusting the initial pressure of the elastic element.

The base <NUM> shown in <FIG>, <FIG> and <FIG> is mounted on the first arm <NUM> in a snap-fit manner, specifically, the base <NUM> is provided with a clamping groove <NUM> as a connecting structure, one side (the lower side as shown in the figures) of the clamping groove is open, and the remaining sides are enclosed, and the base can be conveniently snap-fitted at the mounting position of the base by the opening. Correspondingly, one end of the first arm which fits the clamping groove is provided with a head fitting with the clamping groove, and a snap-fitting with a certain pre-tightening force is realized by using the elasticity of the material (such as engineering plastics), avoiding separation. Such an assembly manner particularly facilities assembly.

The base <NUM> shown in <FIG> is assembled at an end of the first arm <NUM> by a lateral (a direction perpendicular to the paper surface as shown in the figure) pin bolt, in which case the base is preferably sleeved with the first arm and the pin bolt is provided at the overlapping section between the base and the first arm in a penetrating manner.

Claim 1:
A clamping force visualization device, comprising:
a first clamping body (<NUM>) for clamping an object, wherein the first clamping body (<NUM>) being telescopically assembled on a base (<NUM>);
an elastic element (<NUM>) being provided between the first clamping body (<NUM>) and the base (<NUM>); and
a clamping force scale (<NUM>) and a reading indicator (<NUM>) being respectively provided on the first clamping body (<NUM>) and the base (<NUM>); and when the first clamping body (<NUM>) clamps the object, the elastic element (<NUM>) measures a clamping force, and the reading indicator (<NUM>) points to the clamping force scale (<NUM>) for reading;
characterized in that,
an adjustment screw (<NUM>) is provided for the first clamping body, the adjustment screw (<NUM>) passes through the first clamping body (<NUM>) and is connected to the base (<NUM>), and the adjustment screw is screwed to adjust an initial pressure of the first clamping body on the elastic element.